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forked from me/IronOS

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19 Commits

Author SHA1 Message Date
Ben V. Brown
718cfc4612 Retune acceleromter to be more sensive 2016-09-29 13:44:14 +10:00
Ben V. Brown
5a581b7a9f Sleep mode bugfix and better display 2016-09-29 13:39:46 +10:00
Ben V. Brown
bbb758fd4c Remove unneeded old font 2016-09-29 13:27:59 +10:00
Ben V. Brown
d4fbe99b8b Accelerometer into motion deteection using App Note 2016-09-29 13:16:21 +10:00
Ben V. Brown
c98e4126b2 Redeuce delay in readings and make it restore timer so we now have awesome performance 2016-09-29 00:31:36 +10:00
Ben V. Brown
c6559312f0 Roughly functioning menu system
Has some functionality issues
Still need settings saving & movement detection
2016-09-21 11:19:41 +10:00
Ben V. Brown
f4d5b8b000 PID regulating (fix error being unsigned..) 2016-09-21 00:26:43 +10:00
Ben V. Brown
65659b7b99 Rough PID added 2016-09-21 00:17:26 +10:00
Ben V. Brown
52e92feae7 Moved to use EXTI to read button status
Temperature sensor appears to work (may need calibration work still)
2016-09-20 23:11:36 +10:00
Ben V. Brown
98ca6784a0 creating the temperature functions 2016-09-20 14:33:59 +10:00
Ben V. Brown
f700422878 Filling out more of the mode change logic 2016-09-19 00:02:16 +10:00
Ben V. Brown
5aa27348b5 Improve Key Names, Add Font drawing,Working on modes 2016-09-18 22:43:35 +10:00
Ben V. Brown
c7e2713004 Creating my own font table for the OLED 2016-09-17 21:13:15 +10:00
Ben V. Brown
4db03d5832 Rename mode to make more sense 2016-09-17 00:00:47 +10:00
Ben V. Brown
f355ff6c01 Temp control working
Fix pid error
Remove pointless static keywords
2016-09-16 22:36:24 +10:00
Ben V. Brown
96bda69a0a Fix heater drive
Needed to enable the AFIO clock for the disabling reset to work.
2016-09-16 21:52:28 +10:00
Ben V. Brown
252c98372d Merge branch 'dev' of github.com:Ralim/ts100 into dev 2016-09-16 19:28:10 +10:00
Ben V. Brown
1ec2477033 Removing USB
Need to refine the drive to the iron tip
2016-09-16 19:23:29 +10:00
Ben V. Brown
6b21844020 Update README.md 2016-09-15 21:25:31 +10:00
486 changed files with 41775 additions and 179982 deletions

2
.gitattributes vendored
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# Ignore all differences in line endings
* -crlf

4
.github/FUNDING.yml vendored
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# These are supported funding model platforms
ko_fi: ralim
custom: https://paypal.me/RalimTek

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name: CI
on: [push, pull_request]
jobs:
build_TS80:
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v2
- name: chmod
run: chmod +x setup.sh && chmod +x source/build.sh && sudo mkdir -p /build/cache && sudo chmod -R 777 /build
- name: Cached compiler source files
uses: actions/cache@v2
env:
cache-name: cache-compilers
with:
# we deliberately persist a cache folder forwards
path: /build/cache
key: ${{ runner.os }}-build-${{ env.cache-name }}
restore-keys: |
${{ runner.os }}-
- name: setup
run: ./setup.sh
- name: build TS80
run: cd source && ./build.sh -m TS80
- name: Archive TS80 artifacts
uses: actions/upload-artifact@v2
with:
name: TS80
path: |
source/Hexfile/TS80_*.hex
source/Hexfile/TS80_*.bin
if-no-files-found: error
build_TS80P:
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v2
- name: chmod
run: chmod +x setup.sh && chmod +x source/build.sh && sudo mkdir -p /build/cache && sudo chmod -R 777 /build
- name: Cached compiler source files
uses: actions/cache@v2
env:
cache-name: cache-compilers
with:
# we deliberately persist a cache folder forwards
path: /build/cache
key: ${{ runner.os }}-build-${{ env.cache-name }}
restore-keys: |
${{ runner.os }}-
- name: setup
run: ./setup.sh
- name: build TS80P
run: cd source && ./build.sh -m TS80P
- name: Archive TS80P artifacts
uses: actions/upload-artifact@v2
with:
name: TS80P
path: |
source/Hexfile/TS80P_*.hex
source/Hexfile/TS80P_*.bin
if-no-files-found: error
build_TS100:
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v2
- name: chmod
run: chmod +x setup.sh && chmod +x source/build.sh && sudo mkdir -p /build/cache && sudo chmod -R 777 /build
- name: Cached compiler source files
uses: actions/cache@v2
env:
cache-name: cache-compilers
with:
# we deliberately persist a cache folder forwards
path: /build/cache
key: ${{ runner.os }}-build-${{ env.cache-name }}
restore-keys: |
${{ runner.os }}-
- name: setup
run: ./setup.sh
- name: build TS100
run: cd source && ./build.sh -m TS100
- name: Archive TS100 artifacts
uses: actions/upload-artifact@v2
with:
name: TS100
path: |
source/Hexfile/TS100_*.hex
source/Hexfile/TS100_*.bin
if-no-files-found: error
build_Pinecil:
runs-on: ubuntu-latest
steps:
- uses: actions/checkout@v2
- name: chmod
run: chmod +x setup.sh && chmod +x source/build.sh && sudo mkdir -p /build/cache && sudo chmod -R 777 /build
- name: Cached compiler source files
uses: actions/cache@v2
env:
cache-name: cache-compilers
with:
# we deliberately persist a cache folder forwards
path: /build/cache
key: ${{ runner.os }}-build-${{ env.cache-name }}
restore-keys: |
${{ runner.os }}-
- name: setup
run: ./setup.sh
- name: build Pinecil
run: cd source && ./build.sh -m Pinecil
- name: Archive Pinecil artifacts
uses: actions/upload-artifact@v2
with:
name: Pinecil
path: |
source/Hexfile/Pinecil_*.hex
source/Hexfile/Pinecil_*.bin
if-no-files-found: error

216
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# Object files
*.o
*.ko
*.obj
*.elf
*.d
*.DS_Store
# Precompiled Headers
*.gch
*.pch
# Libraries
*.lib
*.a
*.la
*.lo
# Shared objects (inc. Windows DLLs)
*.dll
*.so
*.so.*
*.dylib
# Executables
*.exe
*.out
*.app
*.i*86
*.x86_64
# Debug files
*.dSYM/
*.su
source/.metadata/*
TS100/KiCad/TS100.bak
Logo GUI/TS100 Logo Editor/TS100 Logo Editor/obj/
Logo GUI/TS100 Logo Editor/TS100 Logo Editor/bin/
*.cache
Translation Editor/.vscode/
Translation Editor/__pycache__/
*.pyc
*.lst
*.mk
*.list
source/Hexfile/
source/Objects/
ci/artefacts/
ci/secrets/unencrypted/
codeship.aes
.vscode/settings.json
# Auto generated files
source/Core/Inc/unit.h
source/Core/Gen/
# IDE configs
.vs/*
.settings/*
..cproject.swp
# Visual Studios
.vscode/*
!.vscode/settings.json
!.vscode/tasks.json
!.vscode/launch.json
!.vscode/extensions.json
# Eclipse
.metadata
bin/
tmp/
*.tmp
*.bak
*.swp
*~.nib
local.properties
.settings/
.loadpath
.recommenders
# External tool builders
.externalToolBuilders/
# Locally stored "Eclipse launch configurations"
*.launch
# PyDev specific (Python IDE for Eclipse)
*.pydevproject
# CDT- autotools
.autotools
# Java annotation processor (APT)
.factorypath
# PDT-specific (PHP Development Tools)
.buildpath
# sbteclipse plugin
.target
# Tern plugin
.tern-project
# TeXlipse plugin
.texlipse
# STS (Spring Tool Suite)
.springBeans
# Code Recommenders
.recommenders/
# Annotation Processing
.apt_generated/
# Scala IDE specific (Scala & Java development for Eclipse)
.cache-main
.scala_dependencies
.worksheet
# Jetbrains
# Covers JetBrains IDEs: IntelliJ, RubyMine, PhpStorm, AppCode, PyCharm, CLion, Android Studio and WebStorm
# Reference: https://intellij-support.jetbrains.com/hc/en-us/articles/206544839
# User-specific stuff
.idea/**/workspace.xml
.idea/**/tasks.xml
.idea/**/usage.statistics.xml
.idea/**/dictionaries
.idea/**/shelf
# Sensitive or high-churn files
.idea/**/dataSources/
.idea/**/dataSources.ids
.idea/**/dataSources.local.xml
.idea/**/sqlDataSources.xml
.idea/**/dynamic.xml
.idea/**/uiDesigner.xml
.idea/**/dbnavigator.xml
# Gradle
.idea/**/gradle.xml
.idea/**/libraries
# CMake
cmake-build-*/
# Mongo Explorer plugin
.idea/**/mongoSettings.xml
# File-based project format
*.iws
# IntelliJ
out/
# mpeltonen/sbt-idea plugin
.idea_modules/
# JIRA plugin
atlassian-ide-plugin.xml
# Cursive Clojure plugin
.idea/replstate.xml
# Crashlytics plugin (for Android Studio and IntelliJ)
com_crashlytics_export_strings.xml
crashlytics.properties
crashlytics-build.properties
fabric.properties
# Editor-based Rest Client
.idea/httpRequests
CoreCompileInputs.cache
.vscode/settings.json
# Object files
*.o
*.ko
*.obj
*.elf
*.d
*.DS_Store
# Precompiled Headers
*.gch
*.pch
# Libraries
*.lib
*.a
*.la
*.lo
# Shared objects (inc. Windows DLLs)
*.dll
*.so
*.so.*
*.dylib
# Executables
*.exe
*.out
*.app
*.i*86
*.x86_64
*.hex
# Debug files
*.dSYM/
*.su
workspace/ts100/Debug/*
workspace/.metadata/*
workspace/ts100/.settings/language.settings.xml

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@@ -1,241 +0,0 @@
#!/usr/bin/env python
# coding=utf-8
from __future__ import division
import os
import sys
try:
from PIL import Image, ImageOps
except ImportError as error:
raise ImportError("{}: {} requres Python Imaging Library (PIL). "
"Install with `pip` or OS-specific package "
"management tool."
.format(error, sys.argv[0]))
VERSION_STRING = '0.01'
LCD_WIDTH = 96
LCD_HEIGHT = 16
LCD_NUM_BYTES = LCD_WIDTH * LCD_HEIGHT // 8
LCD_PADDED_SIZE = 1024
INTELHEX_DATA_RECORD = 0x00
INTELHEX_END_OF_FILE_RECORD = 0x01
INTELHEX_EXTENDED_LINEAR_ADDRESS_RECORD = 0x04
INTELHEX_BYTES_PER_LINE = 16
INTELHEX_MINIMUM_SIZE = 4096
def split16(word):
"""return high and low byte of 16-bit word value as tuple"""
return (word >> 8) & 0xff, word & 0xff
def intel_hex_line(record_type, offset, data):
"""generate a line of data in Intel hex format"""
# length, address offset, record type
record_length = len(data)
yield ':{:02X}{:04X}{:02X}'.format(record_length, offset, record_type)
# data
for byte in data:
yield "{:02X}".format(byte)
# compute and write checksum (now using unix style line endings for DFU3.45 compatibility
yield "{:02X}\n".format((((sum(data, # sum data ...
record_length # ... and other ...
+ sum(split16(offset)) # ... fields ...
+ record_type) # ... on line
& 0xff) # low 8 bits
^ 0xff) # two's ...
+ 1) # ... complement
& 0xff) # low 8 bits
def intel_hex(file, bytes_, start_address=0x0):
"""write block of data in Intel hex format"""
def write(generator):
file.write(''.join(generator))
if len(bytes_) % INTELHEX_BYTES_PER_LINE != 0:
raise ValueError("Program error: Size of LCD data is not evenly divisible by {}"
.format(INTELHEX_BYTES_PER_LINE))
address_lo = start_address & 0xffff
address_hi = (start_address >> 16) & 0xffff
write(intel_hex_line(INTELHEX_EXTENDED_LINEAR_ADDRESS_RECORD, 0,
split16(address_hi)))
size_written = 0
while size_written < INTELHEX_MINIMUM_SIZE:
offset = address_lo
for line_start in range(0, len(bytes_), INTELHEX_BYTES_PER_LINE):
write(intel_hex_line(INTELHEX_DATA_RECORD, offset,
bytes_[line_start:line_start + INTELHEX_BYTES_PER_LINE]))
size_written += INTELHEX_BYTES_PER_LINE
if size_written >= INTELHEX_MINIMUM_SIZE:
break
offset += INTELHEX_BYTES_PER_LINE
write(intel_hex_line(INTELHEX_END_OF_FILE_RECORD, 0, ()))
def img2hex(input_filename,
output_file,
preview_filename=None,
threshold=128,
dither=False,
negative=False):
"""
Convert 'input_filename' image file into Intel hex format with data
formatted for display on TS100 LCD and file object.
Input image is converted from color or grayscale to black-and-white,
and resized to fit TS100 LCD screen as necessary.
Optionally write resized/thresholded/black-and-white preview image
to file specified by name.
Optional `threshold' argument 8 bit value; grayscale pixels greater than
this become 1 (white) in output, less than become 0 (black).
Unless optional `dither', in which case PIL grayscale-to-black/white
dithering algorithm used.
Optional `negative' inverts black/white regardless of input image type
or other options.
"""
try:
image = Image.open(input_filename)
except BaseException as e:
raise IOError("error reading image file \"{}\": {}".format(input_filename, e))
# convert to luminance
# do even if already black/white because PIL can't invert 1-bit so
# can't just pass thru in case --negative flag
# also resizing works better in luminance than black/white
# also no information loss converting black/white to grayscale
if image.mode != 'L':
image = image.convert('L')
if image.size != (LCD_WIDTH, LCD_HEIGHT):
image = image.resize((LCD_WIDTH, LCD_HEIGHT), Image.BICUBIC)
if negative:
image = ImageOps.invert(image)
threshold = 255 - threshold # have to invert threshold
if dither:
image = image.convert('1')
else:
image = image.point(lambda pixel: 0 if pixel < threshold else 1, '1')
if preview_filename:
image.save(preview_filename)
''' DEBUG
for row in range(LCD_HEIGHT):
for column in range(LCD_WIDTH):
if image.getpixel((column, row)): sys.stderr.write('1')
else: sys.stderr.write('0')
sys.stderr.write('\n')
'''
# pad to this size (also will be repeated in output Intel hex file)
data = [0] * LCD_PADDED_SIZE
# magic/undocumented/required header in endian-reverse byte order
data[0] = 0x55
data[1] = 0xAA
data[2] = 0x0D
data[3] = 0xF0
# convert to TS100 LCD format
for ndx in range(LCD_WIDTH * 16 // 8):
bottom_half_offset = 0 if ndx < LCD_WIDTH else 8
byte = 0
for y in range(8):
if image.getpixel((ndx % LCD_WIDTH, y + bottom_half_offset)):
byte |= 1 << y
# store in endian-reversed byte order
data[4 + ndx + (1 if ndx % 2 == 0 else -1)] = byte
intel_hex(output_file, data, 0x0800F800)
def parse_commandline():
parser = argparse.ArgumentParser(
formatter_class=argparse.ArgumentDefaultsHelpFormatter,
description="Convert image file for display on TS100 LCD "
"at startup")
def zero_to_255(text):
value = int(text)
if not 0 <= value <= 255:
raise argparse.ArgumentTypeError("must be integer from 0 to 255 ")
return value
parser.add_argument('input_filename',
help="input image file")
parser.add_argument('output_filename',
help="output Intel hex file")
parser.add_argument('-p', '--preview',
help="filename of image preview (same data as "
"Intel hex file, as will appear on TS100 LCD)")
parser.add_argument('-n', '--negative',
action='store_true',
help="photo negative: exchange black and white "
"in output")
parser.add_argument('-t', '--threshold',
type=zero_to_255,
default=128,
help="0 to 255: gray (or color converted to gray) "
"above this becomes white, below becomes black; "
"ignored if using --dither")
parser.add_argument('-d', '--dither',
action='store_true',
help="use dithering (speckling) to convert gray or "
"color to black and white")
parser.add_argument('-f', '--force',
action='store_true',
help="force overwriting of existing files")
parser.add_argument('-v', '--version',
action='version',
version="%(prog)s version " + VERSION_STRING,
help="print version info")
return parser.parse_args()
if __name__ == "__main__":
import argparse
args = parse_commandline()
if os.path.exists(args.output_filename) and not args.force:
sys.stderr.write("Won't overwrite existing file \"{}\" (use --force "
"option to override)\n"
.format(args.output_filename))
sys.exit(1)
if args.preview and os.path.exists(args.preview) and not args.force:
sys.stderr.write("Won't overwrite existing file \"{}\" (use --force "
"option to override)\n"
.format(args.preview))
sys.exit(1)
try:
with open(args.output_filename, 'w', newline='\r\n') as output:
img2hex(args.input_filename,
output,
args.preview,
args.threshold,
args.dither,
args.negative)
except BaseException as error:
sys.stderr.write("Error converting file: {}\n".format(error))
sys.exit(1)

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@@ -1,392 +0,0 @@
EESchema Schematic File Version 2
LIBS:power
LIBS:device
LIBS:transistors
LIBS:conn
LIBS:linear
LIBS:regul
LIBS:74xx
LIBS:cmos4000
LIBS:adc-dac
LIBS:memory
LIBS:xilinx
LIBS:microcontrollers
LIBS:dsp
LIBS:microchip
LIBS:analog_switches
LIBS:motorola
LIBS:texas
LIBS:intel
LIBS:audio
LIBS:interface
LIBS:digital-audio
LIBS:philips
LIBS:display
LIBS:cypress
LIBS:siliconi
LIBS:opto
LIBS:atmel
LIBS:contrib
LIBS:valves
LIBS:stm32
LIBS:mma8652fc
LIBS:switches
LIBS:TS100-cache
EELAYER 25 0
EELAYER END
$Descr A4 11693 8268
encoding utf-8
Sheet 2 2
Title "TS100 Soldering Iron Schematic"
Date ""
Rev "2.46"
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Comment2 ""
Comment3 "Converted by Ben V. Brown"
Comment4 "KiCad port of published schematic"
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F 2 "" H 9438 5650 50 0001 C CNN
F 3 "" H 9400 5800 50 0001 C CNN
1 9400 5800
1 0 0 -1
$EndComp
Wire Wire Line
8200 5950 9400 5950
Connection ~ 8500 5950
Connection ~ 8800 5950
Connection ~ 9100 5950
Wire Wire Line
8200 5650 9400 5650
Connection ~ 9100 5650
Connection ~ 8800 5650
Connection ~ 8500 5650
$Comp
L GND #PWR208
U 1 1 591D78AD
P 8800 5950
F 0 "#PWR208" H 8800 5700 50 0001 C CNN
F 1 "GND" H 8800 5800 50 0000 C CNN
F 2 "" H 8800 5950 50 0001 C CNN
F 3 "" H 8800 5950 50 0001 C CNN
1 8800 5950
1 0 0 -1
$EndComp
$Comp
L VDD #PWR207
U 1 1 591D78DF
P 8800 5650
F 0 "#PWR207" H 8800 5500 50 0001 C CNN
F 1 "VDD" H 8800 5800 50 0000 C CNN
F 2 "" H 8800 5650 50 0001 C CNN
F 3 "" H 8800 5650 50 0001 C CNN
1 8800 5650
1 0 0 -1
$EndComp
Text Label 3050 6600 2 60 ~ 0
ACC_INT2
Text Label 3050 6500 2 60 ~ 0
ACC_INT1
Text Label 3100 3850 2 60 ~ 0
ACC_INT2
Text Label 3100 4050 2 60 ~ 0
ACC_INT1
$EndSCHEMATC

View File

@@ -1,63 +0,0 @@
update=18/05/2017 9:29:06 PM
version=1
last_client=kicad
[pcbnew]
version=1
LastNetListRead=
UseCmpFile=1
PadDrill=0.600000000000
PadDrillOvalY=0.600000000000
PadSizeH=1.500000000000
PadSizeV=1.500000000000
PcbTextSizeV=1.500000000000
PcbTextSizeH=1.500000000000
PcbTextThickness=0.300000000000
ModuleTextSizeV=1.000000000000
ModuleTextSizeH=1.000000000000
ModuleTextSizeThickness=0.150000000000
SolderMaskClearance=0.000000000000
SolderMaskMinWidth=0.000000000000
DrawSegmentWidth=0.200000000000
BoardOutlineThickness=0.100000000000
ModuleOutlineThickness=0.150000000000
[cvpcb]
version=1
NetIExt=net
[general]
version=1
[eeschema]
version=1
LibDir=
[eeschema/libraries]
LibName1=power
LibName2=device
LibName3=transistors
LibName4=conn
LibName5=linear
LibName6=regul
LibName7=74xx
LibName8=cmos4000
LibName9=adc-dac
LibName10=memory
LibName11=xilinx
LibName12=microcontrollers
LibName13=dsp
LibName14=microchip
LibName15=analog_switches
LibName16=motorola
LibName17=texas
LibName18=intel
LibName19=audio
LibName20=interface
LibName21=digital-audio
LibName22=philips
LibName23=display
LibName24=cypress
LibName25=siliconi
LibName26=opto
LibName27=atmel
LibName28=contrib
LibName29=valves
LibName30=stm32
LibName31=mma8652fc
LibName32=switches

View File

@@ -1,151 +0,0 @@
EESchema Schematic File Version 2
LIBS:power
LIBS:device
LIBS:transistors
LIBS:conn
LIBS:linear
LIBS:regul
LIBS:74xx
LIBS:cmos4000
LIBS:adc-dac
LIBS:memory
LIBS:xilinx
LIBS:microcontrollers
LIBS:dsp
LIBS:microchip
LIBS:analog_switches
LIBS:motorola
LIBS:texas
LIBS:intel
LIBS:audio
LIBS:interface
LIBS:digital-audio
LIBS:philips
LIBS:display
LIBS:cypress
LIBS:siliconi
LIBS:opto
LIBS:atmel
LIBS:contrib
LIBS:valves
LIBS:stm32
LIBS:mma8652fc
LIBS:switches
LIBS:TS100-cache
EELAYER 25 0
EELAYER END
$Descr A4 11693 8268
encoding utf-8
Sheet 1 2
Title "TS100 Soldering Iron Schematic"
Date "2017-05-18"
Rev "2.46"
Comp ""
Comment1 ""
Comment2 ""
Comment3 "Converted by Ben V. Brown"
Comment4 "KiCad port of published schematic"
$EndDescr
$Sheet
S 1450 1000 1450 1850
U 591D5966
F0 "STM32 & Accel Sub Board" 60
F1 "MCU_SubBoard.sch" 60
F2 "SWDIO" I R 2900 1100 60
F3 "SWCLK" I R 2900 1200 60
F4 "USB_D-" I R 2900 1350 60
F5 "USB_D+" I R 2900 1450 60
F6 "K1" I R 2900 1650 60
F7 "nCR" I R 2900 2150 60
F8 "TMP36" I R 2900 2250 60
F9 "K2" I R 2900 1750 60
F10 "SCL" I R 2900 2550 60
F11 "SDA" I R 2900 2650 60
F12 "Po" I R 2900 2050 60
F13 "Vb" I R 2900 1950 60
$EndSheet
$Comp
L BARREL_JACK J101
U 1 1 591D8B75
P 1600 3600
F 0 "J101" H 1600 3795 50 0000 C CNN
F 1 "BARREL_JACK" H 1600 3445 50 0000 C CNN
F 2 "" H 1600 3600 50 0001 C CNN
F 3 "" H 1600 3600 50 0001 C CNN
1 1600 3600
1 0 0 -1
$EndComp
Text Label 1900 3500 0 60 ~ 0
VIN
$Comp
L GND #PWR103
U 1 1 591D8F24
P 2000 3800
F 0 "#PWR103" H 2000 3550 50 0001 C CNN
F 1 "GND" H 2000 3650 50 0000 C CNN
F 2 "" H 2000 3800 50 0001 C CNN
F 3 "" H 2000 3800 50 0001 C CNN
1 2000 3800
1 0 0 -1
$EndComp
Wire Wire Line
1900 3600 2000 3600
Wire Wire Line
2000 3600 2000 3800
Wire Wire Line
1900 3700 2000 3700
Connection ~ 2000 3700
$Comp
L SW_Push SW1
U 1 1 591D9BC6
P 1400 4550
F 0 "SW1" H 1450 4650 50 0000 L CNN
F 1 "SW_Push" H 1400 4490 50 0000 C CNN
F 2 "" H 1400 4750 50 0001 C CNN
F 3 "" H 1400 4750 50 0001 C CNN
F 4 "-" H 1400 4550 60 0001 C CNN "bom_partno"
1 1400 4550
0 1 1 0
$EndComp
$Comp
L SW_Push SW101
U 1 1 591DA371
P 1700 4550
F 0 "SW101" H 1750 4650 50 0000 L CNN
F 1 "SW_Push" H 1700 4490 50 0000 C CNN
F 2 "" H 1700 4750 50 0001 C CNN
F 3 "" H 1700 4750 50 0001 C CNN
1 1700 4550
0 1 1 0
$EndComp
$Comp
L GND #PWR102
U 1 1 591DA3DA
P 1700 4750
F 0 "#PWR102" H 1700 4500 50 0001 C CNN
F 1 "GND" H 1700 4600 50 0000 C CNN
F 2 "" H 1700 4750 50 0001 C CNN
F 3 "" H 1700 4750 50 0001 C CNN
1 1700 4750
1 0 0 -1
$EndComp
$Comp
L GND #PWR101
U 1 1 591DA436
P 1400 4750
F 0 "#PWR101" H 1400 4500 50 0001 C CNN
F 1 "GND" H 1400 4600 50 0000 C CNN
F 2 "" H 1400 4750 50 0001 C CNN
F 3 "" H 1400 4750 50 0001 C CNN
1 1400 4750
1 0 0 -1
$EndComp
Text Label 1400 4350 0 60 ~ 0
K1
Text Label 1700 4350 0 60 ~ 0
K2
Text Label 2900 1750 0 60 ~ 0
K2
Text Label 2900 1650 0 60 ~ 0
K1
$EndSCHEMATC

View File

@@ -1,326 +0,0 @@
#MicroXplorer Configuration settings - do not modify
ADC1.Channel-0\#ChannelRegularConversion=ADC_CHANNEL_7
ADC1.Channel-1\#ChannelRegularConversion=ADC_CHANNEL_9
ADC1.Channel-2\#ChannelInjectedConversion=ADC_CHANNEL_8
ADC1.Channel-3\#ChannelInjectedConversion=ADC_CHANNEL_8
ADC1.Channel-4\#ChannelInjectedConversion=ADC_CHANNEL_8
ADC1.Channel-5\#ChannelInjectedConversion=ADC_CHANNEL_8
ADC1.ContinuousConvMode=ENABLE
ADC1.DataAlign=ADC_DATAALIGN_RIGHT
ADC1.DiscontinuousConvMode=DISABLE
ADC1.EnableAnalogWatchDog=false
ADC1.EnableRegularConversion=ENABLE
ADC1.ExternalTrigConv=ADC_SOFTWARE_START
ADC1.ExternalTrigInjecConv=ADC_EXTERNALTRIGINJECCONV_T2_CC1
ADC1.IPParameters=Rank-0\#ChannelRegularConversion,Channel-0\#ChannelRegularConversion,SamplingTime-0\#ChannelRegularConversion,NbrOfConversionFlag,DataAlign,ScanConvMode,ContinuousConvMode,DiscontinuousConvMode,EnableRegularConversion,NbrOfConversion,ExternalTrigConv,InjNumberOfConversion,EnableAnalogWatchDog,Rank-1\#ChannelRegularConversion,Channel-1\#ChannelRegularConversion,SamplingTime-1\#ChannelRegularConversion,master,Rank-2\#ChannelInjectedConversion,Channel-2\#ChannelInjectedConversion,SamplingTime-2\#ChannelInjectedConversion,InjectedOffset-2\#ChannelInjectedConversion,Rank-3\#ChannelInjectedConversion,Channel-3\#ChannelInjectedConversion,SamplingTime-3\#ChannelInjectedConversion,InjectedOffset-3\#ChannelInjectedConversion,Rank-4\#ChannelInjectedConversion,Channel-4\#ChannelInjectedConversion,SamplingTime-4\#ChannelInjectedConversion,InjectedOffset-4\#ChannelInjectedConversion,Rank-5\#ChannelInjectedConversion,Channel-5\#ChannelInjectedConversion,SamplingTime-5\#ChannelInjectedConversion,InjectedOffset-5\#ChannelInjectedConversion,ExternalTrigInjecConv,InjectedConvMode,Mode
ADC1.InjNumberOfConversion=4
ADC1.InjectedConvMode=None
ADC1.InjectedOffset-2\#ChannelInjectedConversion=0
ADC1.InjectedOffset-3\#ChannelInjectedConversion=0
ADC1.InjectedOffset-4\#ChannelInjectedConversion=0
ADC1.InjectedOffset-5\#ChannelInjectedConversion=0
ADC1.Mode=ADC_DUALMODE_REGSIMULT_INJECSIMULT
ADC1.NbrOfConversion=2
ADC1.NbrOfConversionFlag=1
ADC1.Rank-0\#ChannelRegularConversion=1
ADC1.Rank-1\#ChannelRegularConversion=2
ADC1.Rank-2\#ChannelInjectedConversion=1
ADC1.Rank-3\#ChannelInjectedConversion=2
ADC1.Rank-4\#ChannelInjectedConversion=3
ADC1.Rank-5\#ChannelInjectedConversion=4
ADC1.SamplingTime-0\#ChannelRegularConversion=ADC_SAMPLETIME_239CYCLES_5
ADC1.SamplingTime-1\#ChannelRegularConversion=ADC_SAMPLETIME_239CYCLES_5
ADC1.SamplingTime-2\#ChannelInjectedConversion=ADC_SAMPLETIME_239CYCLES_5
ADC1.SamplingTime-3\#ChannelInjectedConversion=ADC_SAMPLETIME_71CYCLES_5
ADC1.SamplingTime-4\#ChannelInjectedConversion=ADC_SAMPLETIME_239CYCLES_5
ADC1.SamplingTime-5\#ChannelInjectedConversion=ADC_SAMPLETIME_71CYCLES_5
ADC1.ScanConvMode=ADC_SCAN_ENABLE
ADC1.master=1
ADC2.Channel-0\#ChannelRegularConversion=ADC_CHANNEL_8
ADC2.Channel-1\#ChannelInjectedConversion=ADC_CHANNEL_8
ADC2.Channel-2\#ChannelInjectedConversion=ADC_CHANNEL_8
ADC2.Channel-3\#ChannelInjectedConversion=ADC_CHANNEL_8
ADC2.Channel-4\#ChannelInjectedConversion=ADC_CHANNEL_8
ADC2.ContinuousConvMode=DISABLE
ADC2.DataAlign=ADC_DATAALIGN_RIGHT
ADC2.DiscontinuousConvMode=DISABLE
ADC2.EnableAnalogWatchDog=false
ADC2.EnableRegularConversion=ENABLE
ADC2.IPParameters=Rank-0\#ChannelRegularConversion,Channel-0\#ChannelRegularConversion,SamplingTime-0\#ChannelRegularConversion,NbrOfConversionFlag,Rank-1\#ChannelInjectedConversion,Channel-1\#ChannelInjectedConversion,SamplingTime-1\#ChannelInjectedConversion,InjectedOffset-1\#ChannelInjectedConversion,Rank-2\#ChannelInjectedConversion,Channel-2\#ChannelInjectedConversion,SamplingTime-2\#ChannelInjectedConversion,InjectedOffset-2\#ChannelInjectedConversion,Rank-3\#ChannelInjectedConversion,Channel-3\#ChannelInjectedConversion,SamplingTime-3\#ChannelInjectedConversion,InjectedOffset-3\#ChannelInjectedConversion,Rank-4\#ChannelInjectedConversion,Channel-4\#ChannelInjectedConversion,SamplingTime-4\#ChannelInjectedConversion,InjectedOffset-4\#ChannelInjectedConversion,InjNumberOfConversion,Mode,DataAlign,ScanConvMode,ContinuousConvMode,DiscontinuousConvMode,EnableRegularConversion,NbrOfConversion,InjectedConvMode,EnableAnalogWatchDog
ADC2.InjNumberOfConversion=4
ADC2.InjectedConvMode=None
ADC2.InjectedOffset-1\#ChannelInjectedConversion=0
ADC2.InjectedOffset-2\#ChannelInjectedConversion=0
ADC2.InjectedOffset-3\#ChannelInjectedConversion=0
ADC2.InjectedOffset-4\#ChannelInjectedConversion=0
ADC2.Mode=ADC_DUALMODE_REGSIMULT_INJECSIMULT
ADC2.NbrOfConversion=1
ADC2.NbrOfConversionFlag=1
ADC2.Rank-0\#ChannelRegularConversion=1
ADC2.Rank-1\#ChannelInjectedConversion=1
ADC2.Rank-2\#ChannelInjectedConversion=2
ADC2.Rank-3\#ChannelInjectedConversion=3
ADC2.Rank-4\#ChannelInjectedConversion=4
ADC2.SamplingTime-0\#ChannelRegularConversion=ADC_SAMPLETIME_1CYCLE_5
ADC2.SamplingTime-1\#ChannelInjectedConversion=ADC_SAMPLETIME_1CYCLE_5
ADC2.SamplingTime-2\#ChannelInjectedConversion=ADC_SAMPLETIME_1CYCLE_5
ADC2.SamplingTime-3\#ChannelInjectedConversion=ADC_SAMPLETIME_1CYCLE_5
ADC2.SamplingTime-4\#ChannelInjectedConversion=ADC_SAMPLETIME_1CYCLE_5
ADC2.ScanConvMode=ADC_SCAN_ENABLE
Dma.ADC1.2.Direction=DMA_PERIPH_TO_MEMORY
Dma.ADC1.2.Instance=DMA1_Channel1
Dma.ADC1.2.MemDataAlignment=DMA_MDATAALIGN_HALFWORD
Dma.ADC1.2.MemInc=DMA_MINC_ENABLE
Dma.ADC1.2.Mode=DMA_CIRCULAR
Dma.ADC1.2.PeriphDataAlignment=DMA_PDATAALIGN_HALFWORD
Dma.ADC1.2.PeriphInc=DMA_PINC_DISABLE
Dma.ADC1.2.Priority=DMA_PRIORITY_VERY_HIGH
Dma.ADC1.2.RequestParameters=Instance,Direction,PeriphInc,MemInc,PeriphDataAlignment,MemDataAlignment,Mode,Priority
Dma.I2C1_RX.0.Direction=DMA_PERIPH_TO_MEMORY
Dma.I2C1_RX.0.Instance=DMA1_Channel7
Dma.I2C1_RX.0.MemDataAlignment=DMA_MDATAALIGN_BYTE
Dma.I2C1_RX.0.MemInc=DMA_MINC_ENABLE
Dma.I2C1_RX.0.Mode=DMA_NORMAL
Dma.I2C1_RX.0.PeriphDataAlignment=DMA_PDATAALIGN_BYTE
Dma.I2C1_RX.0.PeriphInc=DMA_PINC_DISABLE
Dma.I2C1_RX.0.Priority=DMA_PRIORITY_MEDIUM
Dma.I2C1_RX.0.RequestParameters=Instance,Direction,PeriphInc,MemInc,PeriphDataAlignment,MemDataAlignment,Mode,Priority
Dma.I2C1_TX.1.Direction=DMA_MEMORY_TO_PERIPH
Dma.I2C1_TX.1.Instance=DMA1_Channel6
Dma.I2C1_TX.1.MemDataAlignment=DMA_MDATAALIGN_BYTE
Dma.I2C1_TX.1.MemInc=DMA_MINC_ENABLE
Dma.I2C1_TX.1.Mode=DMA_NORMAL
Dma.I2C1_TX.1.PeriphDataAlignment=DMA_PDATAALIGN_BYTE
Dma.I2C1_TX.1.PeriphInc=DMA_PINC_DISABLE
Dma.I2C1_TX.1.Priority=DMA_PRIORITY_MEDIUM
Dma.I2C1_TX.1.RequestParameters=Instance,Direction,PeriphInc,MemInc,PeriphDataAlignment,MemDataAlignment,Mode,Priority
Dma.Request0=I2C1_RX
Dma.Request1=I2C1_TX
Dma.Request2=ADC1
Dma.RequestsNb=3
FREERTOS.FootprintOK=true
FREERTOS.INCLUDE_vTaskDelete=0
FREERTOS.IPParameters=Tasks01,configTICK_RATE_HZ,configMAX_PRIORITIES,configMINIMAL_STACK_SIZE,configTOTAL_HEAP_SIZE,INCLUDE_vTaskDelete,FootprintOK
FREERTOS.Tasks01=GUITask,0,512,StartGUITask,Default,NULL,Dynamic,NULL,NULL;PIDTask,0,256,StartPIDTask,Default,NULL,Dynamic,NULL,NULL;ROTTask,-2,256,StartRotationTask,Default,NULL,Dynamic,NULL,NULL
FREERTOS.configMAX_PRIORITIES=4
FREERTOS.configMINIMAL_STACK_SIZE=256
FREERTOS.configTICK_RATE_HZ=100
FREERTOS.configTOTAL_HEAP_SIZE=10240
File.Version=6
I2C1.DutyCycle=I2C_DUTYCYCLE_2
I2C1.I2C_Mode=I2C_Fast
I2C1.IPParameters=I2C_Mode,DutyCycle
IWDG.IPParameters=Prescaler
IWDG.Prescaler=IWDG_PRESCALER_256
KeepUserPlacement=false
Mcu.Family=STM32F1
Mcu.IP0=ADC1
Mcu.IP1=ADC2
Mcu.IP10=TIM3
Mcu.IP2=DMA
Mcu.IP3=FREERTOS
Mcu.IP4=I2C1
Mcu.IP5=IWDG
Mcu.IP6=NVIC
Mcu.IP7=RCC
Mcu.IP8=SYS
Mcu.IP9=TIM2
Mcu.IPNb=11
Mcu.Name=STM32F103T(8-B)Ux
Mcu.Package=VFQFPN36
Mcu.Pin0=PA6
Mcu.Pin1=PA7
Mcu.Pin10=PB5
Mcu.Pin11=PB6
Mcu.Pin12=PB7
Mcu.Pin13=VP_FREERTOS_VS_ENABLE
Mcu.Pin14=VP_IWDG_VS_IWDG
Mcu.Pin15=VP_SYS_VS_tim1
Mcu.Pin16=VP_TIM2_VS_ClockSourceINT
Mcu.Pin17=VP_TIM2_VS_no_output1
Mcu.Pin18=VP_TIM2_VS_no_output3
Mcu.Pin19=VP_TIM3_VS_ClockSourceINT
Mcu.Pin2=PB0
Mcu.Pin20=VP_TIM3_VS_no_output4
Mcu.Pin3=PB1
Mcu.Pin4=PA8
Mcu.Pin5=PA9
Mcu.Pin6=PA13
Mcu.Pin7=PA14
Mcu.Pin8=PB3
Mcu.Pin9=PB4
Mcu.PinsNb=21
Mcu.ThirdPartyNb=0
Mcu.UserConstants=
Mcu.UserName=STM32F103T8Ux
MxCube.Version=4.26.0
MxDb.Version=DB.4.0.260
NVIC.ADC1_2_IRQn=true\:5\:0\:false\:false\:true\:true\:true
NVIC.BusFault_IRQn=true\:0\:0\:false\:false\:true\:false\:true
NVIC.DMA1_Channel1_IRQn=true\:5\:0\:false\:false\:true\:true\:true
NVIC.DMA1_Channel6_IRQn=true\:5\:0\:false\:false\:true\:true\:true
NVIC.DMA1_Channel7_IRQn=true\:5\:0\:false\:false\:true\:true\:true
NVIC.DebugMonitor_IRQn=true\:0\:0\:false\:false\:true\:false\:true
NVIC.HardFault_IRQn=true\:0\:0\:false\:false\:true\:false\:true
NVIC.I2C1_ER_IRQn=true\:5\:0\:false\:false\:true\:true\:true
NVIC.I2C1_EV_IRQn=true\:5\:0\:false\:false\:true\:true\:true
NVIC.MemoryManagement_IRQn=true\:0\:0\:false\:false\:true\:false\:true
NVIC.NonMaskableInt_IRQn=true\:0\:0\:false\:false\:true\:false\:true
NVIC.PendSV_IRQn=true\:15\:0\:false\:false\:false\:true\:true
NVIC.PriorityGroup=NVIC_PRIORITYGROUP_4
NVIC.SVCall_IRQn=true\:0\:0\:false\:false\:false\:false\:true
NVIC.SysTick_IRQn=true\:15\:0\:false\:false\:true\:true\:true
NVIC.TIM1_UP_IRQn=true\:0\:0\:false\:false\:true\:false\:true
NVIC.TimeBase=TIM1_UP_IRQn
NVIC.TimeBaseIP=TIM1
NVIC.UsageFault_IRQn=true\:0\:0\:false\:false\:true\:false\:true
PA13.Locked=true
PA13.Mode=Serial_Wire
PA13.Signal=SYS_JTMS-SWDIO
PA14.Locked=true
PA14.Mode=Serial_Wire
PA14.Signal=SYS_JTCK-SWCLK
PA6.GPIOParameters=GPIO_Label
PA6.GPIO_Label=KEY_B
PA6.Locked=true
PA6.Signal=GPIO_Input
PA7.GPIOParameters=GPIO_Label
PA7.GPIO_Label=TMP36_INPUT
PA7.Locked=true
PA7.Signal=ADCx_IN7
PA8.GPIOParameters=GPIO_Label
PA8.GPIO_Label=OLED_RESET
PA8.Locked=true
PA8.Signal=GPIO_Output
PA9.GPIOParameters=GPIO_Label
PA9.GPIO_Label=KEY_A
PA9.Locked=true
PA9.Signal=GPIO_Input
PB0.GPIOParameters=GPIO_Label
PB0.GPIO_Label=TIP_TEMP
PB0.Locked=true
PB0.Signal=ADCx_IN8
PB1.GPIOParameters=GPIO_Label
PB1.GPIO_Label=VIN
PB1.Locked=true
PB1.Signal=ADCx_IN9
PB3.GPIOParameters=GPIO_Label
PB3.GPIO_Label=INT_Orientation
PB3.Locked=true
PB3.Signal=GPXTI3
PB4.GPIOParameters=GPIO_Label
PB4.GPIO_Label=PWM Out
PB4.Locked=true
PB4.Signal=S_TIM3_CH1
PB5.GPIOParameters=GPIO_Label
PB5.GPIO_Label=INT_Movement
PB5.Locked=true
PB5.Signal=GPXTI5
PB6.GPIOParameters=GPIO_Label
PB6.GPIO_Label=SCL
PB6.Mode=I2C
PB6.Signal=I2C1_SCL
PB7.GPIOParameters=GPIO_Label
PB7.GPIO_Label=SDA
PB7.Mode=I2C
PB7.Signal=I2C1_SDA
PCC.Checker=false
PCC.Line=STM32F103
PCC.MCU=STM32F103T(8-B)Ux
PCC.PartNumber=STM32F103T8Ux
PCC.Seq0=0
PCC.Series=STM32F1
PCC.Temperature=25
PCC.Vdd=3.3
PinOutPanel.RotationAngle=0
ProjectManager.AskForMigrate=true
ProjectManager.BackupPrevious=false
ProjectManager.CompilerOptimize=3
ProjectManager.ComputerToolchain=false
ProjectManager.CoupleFile=false
ProjectManager.CustomerFirmwarePackage=
ProjectManager.DefaultFWLocation=true
ProjectManager.DeletePrevious=true
ProjectManager.DeviceId=STM32F103T8Ux
ProjectManager.FirmwarePackage=STM32Cube FW_F1 V1.6.1
ProjectManager.FreePins=true
ProjectManager.HalAssertFull=false
ProjectManager.HeapSize=0x200
ProjectManager.KeepUserCode=true
ProjectManager.LastFirmware=true
ProjectManager.LibraryCopy=1
ProjectManager.MainLocation=Src
ProjectManager.PreviousToolchain=TrueSTUDIO
ProjectManager.ProjectBuild=false
ProjectManager.ProjectFileName=TS100.ioc
ProjectManager.ProjectName=TS100
ProjectManager.StackSize=0x400
ProjectManager.TargetToolchain=TrueSTUDIO
ProjectManager.ToolChainLocation=
ProjectManager.UnderRoot=true
ProjectManager.functionlistsort=1-MX_GPIO_Init-GPIO-false-HAL-true,2-MX_DMA_Init-DMA-false-HAL-true,3-MX_I2C1_Init-I2C1-false-HAL-true,4-MX_ADC1_Init-ADC1-false-HAL-true,5-SystemClock_Config-RCC-false-HAL-true,6-MX_TIM3_Init-TIM3-false-HAL-true,7-MX_IWDG_Init-IWDG-false-HAL-true,8-MX_TIM2_Init-TIM2-false-HAL-true,9-MX_ADC2_Init-ADC2-false-HAL-true
RCC.ADCFreqValue=8000000
RCC.ADCPresc=RCC_ADCPCLK2_DIV8
RCC.AHBFreq_Value=64000000
RCC.APB1CLKDivider=RCC_HCLK_DIV16
RCC.APB1Freq_Value=4000000
RCC.APB1TimFreq_Value=8000000
RCC.APB2Freq_Value=64000000
RCC.APB2TimFreq_Value=64000000
RCC.FCLKCortexFreq_Value=64000000
RCC.FamilyName=M
RCC.HCLKFreq_Value=64000000
RCC.IPParameters=ADCFreqValue,ADCPresc,AHBFreq_Value,APB1CLKDivider,APB1Freq_Value,APB1TimFreq_Value,APB2Freq_Value,APB2TimFreq_Value,FCLKCortexFreq_Value,FamilyName,HCLKFreq_Value,MCOFreq_Value,PLLCLKFreq_Value,PLLMCOFreq_Value,PLLMUL,PLLSourceVirtual,SYSCLKFreq_VALUE,SYSCLKSource,TimSysFreq_Value,USBFreq_Value,USBPrescaler
RCC.MCOFreq_Value=64000000
RCC.PLLCLKFreq_Value=64000000
RCC.PLLMCOFreq_Value=32000000
RCC.PLLMUL=RCC_PLL_MUL16
RCC.PLLSourceVirtual=RCC_PLLSOURCE_HSI_DIV2
RCC.SYSCLKFreq_VALUE=64000000
RCC.SYSCLKSource=RCC_SYSCLKSOURCE_PLLCLK
RCC.TimSysFreq_Value=64000000
RCC.USBFreq_Value=42666666.666666664
RCC.USBPrescaler=RCC_USBCLKSOURCE_PLL_DIV1_5
SH.ADCx_IN7.0=ADC1_IN7,IN7
SH.ADCx_IN7.ConfNb=1
SH.ADCx_IN8.0=ADC1_IN8,IN8
SH.ADCx_IN8.1=ADC2_IN8,IN8
SH.ADCx_IN8.ConfNb=2
SH.ADCx_IN9.0=ADC2_IN9
SH.ADCx_IN9.1=ADC1_IN9,IN9
SH.ADCx_IN9.ConfNb=2
SH.GPXTI3.0=GPIO_EXTI3
SH.GPXTI3.ConfNb=1
SH.GPXTI5.0=GPIO_EXTI5
SH.GPXTI5.ConfNb=1
SH.S_TIM3_CH1.0=TIM3_CH1,PWM Generation1 CH1
SH.S_TIM3_CH1.ConfNb=1
TIM2.Channel-PWM\ Generation1\ No\ Output=TIM_CHANNEL_1
TIM2.Channel-PWM\ Generation3\ No\ Output=TIM_CHANNEL_3
TIM2.IPParameters=Channel-PWM Generation1 No Output,Channel-PWM Generation3 No Output
TIM3.Channel-Output\ Compare4\ No\ Output=TIM_CHANNEL_4
TIM3.Channel-PWM\ Generation1\ CH1=TIM_CHANNEL_1
TIM3.ClockDivision=TIM_CLOCKDIVISION_DIV4
TIM3.IPParameters=Channel-PWM Generation1 CH1,OCFastMode_PWM-PWM Generation1 CH1,ClockDivision,Prescaler,Period,Channel-Output Compare4 No Output,OCMode_4,Pulse-Output Compare4 No Output
TIM3.OCFastMode_PWM-PWM\ Generation1\ CH1=TIM_OCFAST_ENABLE
TIM3.OCMode_4=TIM_OCMODE_ACTIVE
TIM3.Period=65535
TIM3.Prescaler=2000
TIM3.Pulse-Output\ Compare4\ No\ Output=65000
VP_FREERTOS_VS_ENABLE.Mode=Enabled
VP_FREERTOS_VS_ENABLE.Signal=FREERTOS_VS_ENABLE
VP_IWDG_VS_IWDG.Mode=IWDG_Activate
VP_IWDG_VS_IWDG.Signal=IWDG_VS_IWDG
VP_SYS_VS_tim1.Mode=TIM1
VP_SYS_VS_tim1.Signal=SYS_VS_tim1
VP_TIM2_VS_ClockSourceINT.Mode=Internal
VP_TIM2_VS_ClockSourceINT.Signal=TIM2_VS_ClockSourceINT
VP_TIM2_VS_no_output1.Mode=PWM Generation1 No Output
VP_TIM2_VS_no_output1.Signal=TIM2_VS_no_output1
VP_TIM2_VS_no_output3.Mode=PWM Generation3 No Output
VP_TIM2_VS_no_output3.Signal=TIM2_VS_no_output3
VP_TIM3_VS_ClockSourceINT.Mode=Internal
VP_TIM3_VS_ClockSourceINT.Signal=TIM3_VS_ClockSourceINT
VP_TIM3_VS_no_output4.Mode=Output Compare4 No Output
VP_TIM3_VS_no_output4.Signal=TIM3_VS_no_output4
board=TS100

View File

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View File

@@ -1,348 +0,0 @@
#MicroXplorer Configuration settings - do not modify
ADC1.Channel-31\#ChannelRegularConversion=ADC_CHANNEL_4
ADC1.Channel-32\#ChannelInjectedConversion=ADC_CHANNEL_2
ADC1.Channel-33\#ChannelInjectedConversion=ADC_CHANNEL_2
ADC1.Channel-34\#ChannelInjectedConversion=ADC_CHANNEL_2
ADC1.Channel-35\#ChannelInjectedConversion=ADC_CHANNEL_2
ADC1.ContinuousConvMode=DISABLE
ADC1.DataAlign=ADC_DATAALIGN_RIGHT
ADC1.DiscontinuousConvMode=DISABLE
ADC1.EnableAnalogWatchDog=false
ADC1.EnableRegularConversion=ENABLE
ADC1.ExternalTrigConv=ADC_SOFTWARE_START
ADC1.ExternalTrigInjecConv=ADC_INJECTED_SOFTWARE_START
ADC1.IPParameters=Rank-31\#ChannelRegularConversion,Channel-31\#ChannelRegularConversion,SamplingTime-31\#ChannelRegularConversion,NbrOfConversionFlag,master,Rank-32\#ChannelInjectedConversion,Channel-32\#ChannelInjectedConversion,SamplingTime-32\#ChannelInjectedConversion,InjectedOffset-32\#ChannelInjectedConversion,Rank-33\#ChannelInjectedConversion,Channel-33\#ChannelInjectedConversion,SamplingTime-33\#ChannelInjectedConversion,InjectedOffset-33\#ChannelInjectedConversion,Rank-34\#ChannelInjectedConversion,Channel-34\#ChannelInjectedConversion,SamplingTime-34\#ChannelInjectedConversion,InjectedOffset-34\#ChannelInjectedConversion,Rank-35\#ChannelInjectedConversion,Channel-35\#ChannelInjectedConversion,SamplingTime-35\#ChannelInjectedConversion,InjectedOffset-35\#ChannelInjectedConversion,InjNumberOfConversion,DataAlign,ScanConvMode,ContinuousConvMode,DiscontinuousConvMode,EnableRegularConversion,NbrOfConversion,ExternalTrigConv,ExternalTrigInjecConv,InjectedConvMode,EnableAnalogWatchDog
ADC1.InjNumberOfConversion=4
ADC1.InjectedConvMode=None
ADC1.InjectedOffset-32\#ChannelInjectedConversion=0
ADC1.InjectedOffset-33\#ChannelInjectedConversion=0
ADC1.InjectedOffset-34\#ChannelInjectedConversion=0
ADC1.InjectedOffset-35\#ChannelInjectedConversion=0
ADC1.NbrOfConversion=1
ADC1.NbrOfConversionFlag=1
ADC1.Rank-31\#ChannelRegularConversion=1
ADC1.Rank-32\#ChannelInjectedConversion=1
ADC1.Rank-33\#ChannelInjectedConversion=2
ADC1.Rank-34\#ChannelInjectedConversion=3
ADC1.Rank-35\#ChannelInjectedConversion=4
ADC1.SamplingTime-31\#ChannelRegularConversion=ADC_SAMPLETIME_1CYCLE_5
ADC1.SamplingTime-32\#ChannelInjectedConversion=ADC_SAMPLETIME_1CYCLE_5
ADC1.SamplingTime-33\#ChannelInjectedConversion=ADC_SAMPLETIME_1CYCLE_5
ADC1.SamplingTime-34\#ChannelInjectedConversion=ADC_SAMPLETIME_1CYCLE_5
ADC1.SamplingTime-35\#ChannelInjectedConversion=ADC_SAMPLETIME_1CYCLE_5
ADC1.ScanConvMode=ADC_SCAN_ENABLE
ADC1.master=1
ADC2.Channel-0\#ChannelRegularConversion=ADC_CHANNEL_3
ADC2.Channel-1\#ChannelInjectedConversion=ADC_CHANNEL_3
ADC2.Channel-2\#ChannelInjectedConversion=ADC_CHANNEL_3
ADC2.Channel-3\#ChannelInjectedConversion=ADC_CHANNEL_3
ADC2.Channel-4\#ChannelInjectedConversion=ADC_CHANNEL_3
ADC2.ContinuousConvMode=DISABLE
ADC2.DataAlign=ADC_DATAALIGN_RIGHT
ADC2.DiscontinuousConvMode=DISABLE
ADC2.EnableAnalogWatchDog=false
ADC2.EnableRegularConversion=ENABLE
ADC2.ExternalTrigConv=ADC_SOFTWARE_START
ADC2.IPParameters=Rank-0\#ChannelRegularConversion,Channel-0\#ChannelRegularConversion,SamplingTime-0\#ChannelRegularConversion,NbrOfConversionFlag,Rank-1\#ChannelInjectedConversion,Channel-1\#ChannelInjectedConversion,SamplingTime-1\#ChannelInjectedConversion,InjectedOffset-1\#ChannelInjectedConversion,Rank-2\#ChannelInjectedConversion,Channel-2\#ChannelInjectedConversion,SamplingTime-2\#ChannelInjectedConversion,InjectedOffset-2\#ChannelInjectedConversion,Rank-3\#ChannelInjectedConversion,Channel-3\#ChannelInjectedConversion,SamplingTime-3\#ChannelInjectedConversion,InjectedOffset-3\#ChannelInjectedConversion,Rank-4\#ChannelInjectedConversion,Channel-4\#ChannelInjectedConversion,SamplingTime-4\#ChannelInjectedConversion,InjectedOffset-4\#ChannelInjectedConversion,InjNumberOfConversion,DataAlign,ScanConvMode,ContinuousConvMode,DiscontinuousConvMode,EnableRegularConversion,NbrOfConversion,ExternalTrigConv,EnableAnalogWatchDog
ADC2.InjNumberOfConversion=0
ADC2.InjectedOffset-1\#ChannelInjectedConversion=0
ADC2.InjectedOffset-2\#ChannelInjectedConversion=0
ADC2.InjectedOffset-3\#ChannelInjectedConversion=0
ADC2.InjectedOffset-4\#ChannelInjectedConversion=0
ADC2.NbrOfConversion=1
ADC2.NbrOfConversionFlag=1
ADC2.Rank-0\#ChannelRegularConversion=1
ADC2.Rank-1\#ChannelInjectedConversion=1
ADC2.Rank-2\#ChannelInjectedConversion=2
ADC2.Rank-3\#ChannelInjectedConversion=3
ADC2.Rank-4\#ChannelInjectedConversion=4
ADC2.SamplingTime-0\#ChannelRegularConversion=ADC_SAMPLETIME_1CYCLE_5
ADC2.SamplingTime-1\#ChannelInjectedConversion=ADC_SAMPLETIME_1CYCLE_5
ADC2.SamplingTime-2\#ChannelInjectedConversion=ADC_SAMPLETIME_1CYCLE_5
ADC2.SamplingTime-3\#ChannelInjectedConversion=ADC_SAMPLETIME_1CYCLE_5
ADC2.SamplingTime-4\#ChannelInjectedConversion=ADC_SAMPLETIME_1CYCLE_5
ADC2.ScanConvMode=ADC_SCAN_DISABLE
Dma.I2C1_RX.0.Direction=DMA_PERIPH_TO_MEMORY
Dma.I2C1_RX.0.Instance=DMA1_Channel7
Dma.I2C1_RX.0.MemDataAlignment=DMA_MDATAALIGN_BYTE
Dma.I2C1_RX.0.MemInc=DMA_MINC_ENABLE
Dma.I2C1_RX.0.Mode=DMA_NORMAL
Dma.I2C1_RX.0.PeriphDataAlignment=DMA_PDATAALIGN_BYTE
Dma.I2C1_RX.0.PeriphInc=DMA_PINC_DISABLE
Dma.I2C1_RX.0.Priority=DMA_PRIORITY_MEDIUM
Dma.I2C1_RX.0.RequestParameters=Instance,Direction,PeriphInc,MemInc,PeriphDataAlignment,MemDataAlignment,Mode,Priority
Dma.I2C1_TX.1.Direction=DMA_MEMORY_TO_PERIPH
Dma.I2C1_TX.1.Instance=DMA1_Channel6
Dma.I2C1_TX.1.MemDataAlignment=DMA_MDATAALIGN_BYTE
Dma.I2C1_TX.1.MemInc=DMA_MINC_ENABLE
Dma.I2C1_TX.1.Mode=DMA_NORMAL
Dma.I2C1_TX.1.PeriphDataAlignment=DMA_PDATAALIGN_BYTE
Dma.I2C1_TX.1.PeriphInc=DMA_PINC_DISABLE
Dma.I2C1_TX.1.Priority=DMA_PRIORITY_MEDIUM
Dma.I2C1_TX.1.RequestParameters=Instance,Direction,PeriphInc,MemInc,PeriphDataAlignment,MemDataAlignment,Mode,Priority
Dma.Request0=I2C1_RX
Dma.Request1=I2C1_TX
Dma.RequestsNb=2
FREERTOS.FootprintOK=true
FREERTOS.INCLUDE_vTaskDelete=0
FREERTOS.IPParameters=Tasks01,configTICK_RATE_HZ,configMAX_PRIORITIES,configMINIMAL_STACK_SIZE,configTOTAL_HEAP_SIZE,INCLUDE_vTaskDelete,FootprintOK
FREERTOS.Tasks01=GUITask,0,512,StartGUITask,Default,NULL,Dynamic,NULL,NULL;PIDTask,0,256,StartPIDTask,Default,NULL,Dynamic,NULL,NULL;ROTTask,-2,256,StartRotationTask,Default,NULL,Dynamic,NULL,NULL
FREERTOS.configMAX_PRIORITIES=4
FREERTOS.configMINIMAL_STACK_SIZE=256
FREERTOS.configTICK_RATE_HZ=100
FREERTOS.configTOTAL_HEAP_SIZE=10240
File.Version=6
I2C1.DutyCycle=I2C_DUTYCYCLE_2
I2C1.I2C_Mode=I2C_Fast
I2C1.IPParameters=I2C_Mode,DutyCycle
IWDG.IPParameters=Prescaler
IWDG.Prescaler=IWDG_PRESCALER_256
KeepUserPlacement=false
Mcu.Family=STM32F1
Mcu.IP0=ADC1
Mcu.IP1=ADC2
Mcu.IP10=TIM3
Mcu.IP2=DMA
Mcu.IP3=FREERTOS
Mcu.IP4=I2C1
Mcu.IP5=IWDG
Mcu.IP6=NVIC
Mcu.IP7=RCC
Mcu.IP8=SYS
Mcu.IP9=TIM2
Mcu.IPNb=11
Mcu.Name=STM32F103T(8-B)Ux
Mcu.Package=VFQFPN36
Mcu.Pin0=PA0-WKUP
Mcu.Pin1=PA2
Mcu.Pin10=PA11
Mcu.Pin11=PA12
Mcu.Pin12=PA13
Mcu.Pin13=PA14
Mcu.Pin14=PA15
Mcu.Pin15=PB3
Mcu.Pin16=PB4
Mcu.Pin17=PB5
Mcu.Pin18=PB6
Mcu.Pin19=PB7
Mcu.Pin2=PA3
Mcu.Pin20=VP_FREERTOS_VS_ENABLE
Mcu.Pin21=VP_IWDG_VS_IWDG
Mcu.Pin22=VP_SYS_VS_ND
Mcu.Pin23=VP_SYS_VS_tim1
Mcu.Pin24=VP_TIM2_VS_ClockSourceINT
Mcu.Pin25=VP_TIM2_VS_no_output1
Mcu.Pin26=VP_TIM2_VS_no_output3
Mcu.Pin27=VP_TIM3_VS_ClockSourceINT
Mcu.Pin28=VP_TIM3_VS_no_output4
Mcu.Pin3=PA4
Mcu.Pin4=PA6
Mcu.Pin5=PB0
Mcu.Pin6=PB1
Mcu.Pin7=PA8
Mcu.Pin8=PA9
Mcu.Pin9=PA10
Mcu.PinsNb=29
Mcu.ThirdPartyNb=0
Mcu.UserConstants=
Mcu.UserName=STM32F103T8Ux
MxCube.Version=4.26.0
MxDb.Version=DB.4.0.260
NVIC.BusFault_IRQn=true\:0\:0\:false\:false\:true\:false\:true
NVIC.DMA1_Channel6_IRQn=true\:5\:0\:false\:false\:true\:true\:true
NVIC.DMA1_Channel7_IRQn=true\:5\:0\:false\:false\:true\:true\:true
NVIC.DebugMonitor_IRQn=true\:0\:0\:false\:false\:true\:false\:true
NVIC.HardFault_IRQn=true\:0\:0\:false\:false\:true\:false\:true
NVIC.I2C1_ER_IRQn=true\:5\:0\:false\:false\:true\:true\:true
NVIC.I2C1_EV_IRQn=true\:5\:0\:false\:false\:true\:true\:true
NVIC.MemoryManagement_IRQn=true\:0\:0\:false\:false\:true\:false\:true
NVIC.NonMaskableInt_IRQn=true\:0\:0\:false\:false\:true\:false\:true
NVIC.PendSV_IRQn=true\:15\:0\:false\:false\:false\:true\:true
NVIC.PriorityGroup=NVIC_PRIORITYGROUP_4
NVIC.SVCall_IRQn=true\:0\:0\:false\:false\:false\:false\:true
NVIC.SysTick_IRQn=true\:15\:0\:false\:false\:true\:true\:true
NVIC.TIM1_UP_IRQn=true\:0\:0\:false\:false\:true\:false\:true
NVIC.TimeBase=TIM1_UP_IRQn
NVIC.TimeBaseIP=TIM1
NVIC.UsageFault_IRQn=true\:0\:0\:false\:false\:true\:false\:true
PA0-WKUP.GPIOParameters=GPIO_Label
PA0-WKUP.GPIO_Label=RM
PA0-WKUP.Locked=true
PA0-WKUP.Signal=GPIO_Output
PA10.GPIOParameters=GPIO_Label
PA10.GPIO_Label=QC_DM_11K
PA10.Locked=true
PA10.Signal=GPIO_Output
PA11.GPIOParameters=GPIO_Label
PA11.GPIO_Label=USB_DM
PA11.Locked=true
PA11.Signal=GPIO_Analog
PA12.GPIOParameters=GPIO_Label
PA12.GPIO_Label=USB_DP
PA12.Locked=true
PA12.Signal=GPIO_Analog
PA13.GPIOParameters=GPIO_Label
PA13.GPIO_Label=QC_DP_SENSE
PA13.Locked=true
PA13.Signal=GPIO_Input
PA14.GPIOParameters=GPIO_Label
PA14.GPIO_Label=QC_DM_SENSE
PA14.Locked=true
PA14.Signal=GPIO_Input
PA15.GPIOParameters=GPIO_Label
PA15.GPIO_Label=OLED_RESET
PA15.Locked=true
PA15.Signal=GPIO_Output
PA2.GPIOParameters=GPIO_Label
PA2.GPIO_Label=ADC_VIN
PA2.Locked=true
PA2.Signal=ADCx_IN2
PA3.GPIOParameters=GPIO_Label
PA3.GPIO_Label=ADC_TIP
PA3.Locked=true
PA3.Signal=ADCx_IN3
PA4.GPIOParameters=GPIO_Label
PA4.GPIO_Label=ADC_TMP36
PA4.Locked=true
PA4.Signal=ADCx_IN4
PA6.GPIOParameters=GPIO_Label
PA6.GPIO_Label=PWM Out
PA6.Locked=true
PA6.Signal=S_TIM3_CH1
PA8.GPIOParameters=GPIO_Label
PA8.GPIO_Label=QC_DM_3K
PA8.Locked=true
PA8.Signal=GPIO_Output
PA9.GPIOParameters=GPIO_Label
PA9.GPIO_Label=MODEL_SEL
PA9.Locked=true
PA9.Signal=GPIO_Input
PB0.GPIOParameters=GPIO_Label
PB0.GPIO_Label=KEY_A
PB0.Locked=true
PB0.Signal=GPIO_Input
PB1.GPIOParameters=GPIO_Label
PB1.GPIO_Label=KEY_B
PB1.Locked=true
PB1.Signal=GPIO_Input
PB3.GPIOParameters=GPIO_Label
PB3.GPIO_Label=QC_DP_3K
PB3.Locked=true
PB3.Signal=GPIO_Output
PB4.GPIOParameters=GPIO_Label
PB4.GPIO_Label=IMU_INT2
PB4.Locked=true
PB4.Signal=GPXTI4
PB5.GPIOParameters=GPIO_Label
PB5.GPIO_Label=IMU_INT1
PB5.Locked=true
PB5.Signal=GPXTI5
PB6.GPIOParameters=GPIO_Label
PB6.GPIO_Label=SCL
PB6.Mode=I2C
PB6.Signal=I2C1_SCL
PB7.GPIOParameters=GPIO_Label
PB7.GPIO_Label=SDA
PB7.Mode=I2C
PB7.Signal=I2C1_SDA
PCC.Checker=false
PCC.Line=STM32F103
PCC.MCU=STM32F103T(8-B)Ux
PCC.PartNumber=STM32F103T8Ux
PCC.Seq0=0
PCC.Series=STM32F1
PCC.Temperature=25
PCC.Vdd=3.3
PinOutPanel.RotationAngle=0
ProjectManager.AskForMigrate=true
ProjectManager.BackupPrevious=false
ProjectManager.CompilerOptimize=3
ProjectManager.ComputerToolchain=false
ProjectManager.CoupleFile=false
ProjectManager.CustomerFirmwarePackage=
ProjectManager.DefaultFWLocation=true
ProjectManager.DeletePrevious=true
ProjectManager.DeviceId=STM32F103T8Ux
ProjectManager.FirmwarePackage=STM32Cube FW_F1 V1.6.1
ProjectManager.FreePins=true
ProjectManager.HalAssertFull=false
ProjectManager.HeapSize=0x200
ProjectManager.KeepUserCode=true
ProjectManager.LastFirmware=true
ProjectManager.LibraryCopy=1
ProjectManager.MainLocation=Src
ProjectManager.PreviousToolchain=SW4STM32
ProjectManager.ProjectBuild=false
ProjectManager.ProjectFileName=TS80.ioc
ProjectManager.ProjectName=TS80
ProjectManager.StackSize=0x400
ProjectManager.TargetToolchain=SW4STM32
ProjectManager.ToolChainLocation=
ProjectManager.UnderRoot=false
ProjectManager.functionlistsort=1-MX_GPIO_Init-GPIO-false-HAL-true,2-MX_DMA_Init-DMA-false-HAL-true,3-MX_I2C1_Init-I2C1-false-HAL-true,4-SystemClock_Config-RCC-false-HAL-true,5-MX_TIM3_Init-TIM3-false-HAL-true,6-MX_IWDG_Init-IWDG-false-HAL-true,7-MX_TIM2_Init-TIM2-false-HAL-true,8-MX_ADC1_Init-ADC1-false-HAL-true,9-MX_ADC2_Init-ADC2-false-HAL-true
RCC.ADCFreqValue=8000000
RCC.ADCPresc=RCC_ADCPCLK2_DIV8
RCC.AHBFreq_Value=64000000
RCC.APB1CLKDivider=RCC_HCLK_DIV16
RCC.APB1Freq_Value=4000000
RCC.APB1TimFreq_Value=8000000
RCC.APB2Freq_Value=64000000
RCC.APB2TimFreq_Value=64000000
RCC.FCLKCortexFreq_Value=64000000
RCC.FamilyName=M
RCC.HCLKFreq_Value=64000000
RCC.IPParameters=ADCFreqValue,ADCPresc,AHBFreq_Value,APB1CLKDivider,APB1Freq_Value,APB1TimFreq_Value,APB2Freq_Value,APB2TimFreq_Value,FCLKCortexFreq_Value,FamilyName,HCLKFreq_Value,MCOFreq_Value,PLLCLKFreq_Value,PLLMCOFreq_Value,PLLMUL,PLLSourceVirtual,SYSCLKFreq_VALUE,SYSCLKSource,TimSysFreq_Value,USBFreq_Value,USBPrescaler
RCC.MCOFreq_Value=64000000
RCC.PLLCLKFreq_Value=64000000
RCC.PLLMCOFreq_Value=32000000
RCC.PLLMUL=RCC_PLL_MUL16
RCC.PLLSourceVirtual=RCC_PLLSOURCE_HSI_DIV2
RCC.SYSCLKFreq_VALUE=64000000
RCC.SYSCLKSource=RCC_SYSCLKSOURCE_PLLCLK
RCC.TimSysFreq_Value=64000000
RCC.USBFreq_Value=42666666.666666664
RCC.USBPrescaler=RCC_USBCLKSOURCE_PLL_DIV1_5
SH.ADCx_IN2.0=ADC1_IN2,IN2
SH.ADCx_IN2.ConfNb=1
SH.ADCx_IN3.0=ADC1_IN3,IN3
SH.ADCx_IN3.1=ADC2_IN3,IN3
SH.ADCx_IN3.ConfNb=2
SH.ADCx_IN4.0=ADC1_IN4,IN4
SH.ADCx_IN4.ConfNb=1
SH.GPXTI4.0=GPIO_EXTI4
SH.GPXTI4.ConfNb=1
SH.GPXTI5.0=GPIO_EXTI5
SH.GPXTI5.ConfNb=1
SH.S_TIM3_CH1.0=TIM3_CH1,PWM Generation1 CH1
SH.S_TIM3_CH1.ConfNb=1
TIM2.Channel-PWM\ Generation1\ No\ Output=TIM_CHANNEL_1
TIM2.Channel-PWM\ Generation3\ No\ Output=TIM_CHANNEL_3
TIM2.IPParameters=Channel-PWM Generation1 No Output,Channel-PWM Generation3 No Output
TIM3.Channel-Output\ Compare4\ No\ Output=TIM_CHANNEL_4
TIM3.Channel-PWM\ Generation1\ CH1=TIM_CHANNEL_1
TIM3.ClockDivision=TIM_CLOCKDIVISION_DIV4
TIM3.IPParameters=Channel-PWM Generation1 CH1,OCFastMode_PWM-PWM Generation1 CH1,ClockDivision,Prescaler,Period,Channel-Output Compare4 No Output,OCMode_4,Pulse-Output Compare4 No Output
TIM3.OCFastMode_PWM-PWM\ Generation1\ CH1=TIM_OCFAST_ENABLE
TIM3.OCMode_4=TIM_OCMODE_ACTIVE
TIM3.Period=65535
TIM3.Prescaler=2000
TIM3.Pulse-Output\ Compare4\ No\ Output=65000
VP_FREERTOS_VS_ENABLE.Mode=Enabled
VP_FREERTOS_VS_ENABLE.Signal=FREERTOS_VS_ENABLE
VP_IWDG_VS_IWDG.Mode=IWDG_Activate
VP_IWDG_VS_IWDG.Signal=IWDG_VS_IWDG
VP_SYS_VS_ND.Mode=No_Debug
VP_SYS_VS_ND.Signal=SYS_VS_ND
VP_SYS_VS_tim1.Mode=TIM1
VP_SYS_VS_tim1.Signal=SYS_VS_tim1
VP_TIM2_VS_ClockSourceINT.Mode=Internal
VP_TIM2_VS_ClockSourceINT.Signal=TIM2_VS_ClockSourceINT
VP_TIM2_VS_no_output1.Mode=PWM Generation1 No Output
VP_TIM2_VS_no_output1.Signal=TIM2_VS_no_output1
VP_TIM2_VS_no_output3.Mode=PWM Generation3 No Output
VP_TIM2_VS_no_output3.Signal=TIM2_VS_no_output3
VP_TIM3_VS_ClockSourceINT.Mode=Internal
VP_TIM3_VS_ClockSourceINT.Signal=TIM3_VS_ClockSourceINT
VP_TIM3_VS_no_output4.Mode=Output Compare4 No Output
VP_TIM3_VS_no_output4.Signal=TIM3_VS_no_output4
board=TS100

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FROM ubuntu:20.04
LABEL maintainer="Ben V. Brown <ralim@ralimtek.com>"
WORKDIR /build
# Setup the ARM GCC toolchain
# Install any needed packages specified in requirements.txt
RUN apt-get update && \
apt-get install -y \
make \
bzip2 \
git \
python3 \
wget && \
apt-get clean
RUN wget -qO- https://armkeil.blob.core.windows.net/developer/Files/downloads/gnu-rm/9-2020q2/gcc-arm-none-eabi-9-2020-q2-update-x86_64-linux.tar.bz2 | tar -xj
RUN wget -qO- https://github.com/Ralim/nuclei-compiler/releases/download/2020.08/nuclei_riscv_newlibc_prebuilt_linux64_2020.08.tar.bz2 | tar -xj
# Add compiler to the path
ENV PATH "/build/gcc-arm-none-eabi-9-2020-q2-update/bin:$PATH"
ENV PATH "/build/gcc/bin/:$PATH"
COPY . /build/source
COPY ./ci /build/ci

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# Debugging Menu
In this firmware there is extra debugging information hidden under and extra menu.
This is accessed by holding the rear (B) button on the iron while its on the home screen.
This menu is meant to be simple, so it has no fancy GUI animations.
To move through the menu use the front (A) button.
To exit, use the rear (B) button again.
## Menu items
Items are shown in the menu on a single line, so they use short codes
### HW G
This indicates the High Water mark for the stack for the GUI thread. The smaller this number is, the less headroom we have in the stack.
As this is a Highwater mater, you should only trust this once you have walked through all GUI options to "hit" the worst one.
### HW M
This indicates the High Water mark for the stack for the movement detection thread. The smaller this number is, the less headroom we have in the stack.
### HW P
This indicates the High Water mark for the stack for the PID thread. The smaller this number is, the less headroom we have in the stack.
### Time
This just shows how many seconds the unit has been powered for.
### Move
This is the last timestamp of movement. When the iron is moved this should update to match the Time field (one before in the menu).
This can be used for checking performance of the movement dection code.
### RTip
This is the raw tip reading in uV. This can be used when assessing the calibration routines for example.
### CTip
This is the tip temperature in deg C.
This can be used with RTip for assessing temperature processing performance.
### CHan
This is the handle temperature in C. This is used for cold junction compensation of the tip temp.
This is shown in degrees C x10, so 200 == 20.0C
### Vin
The input voltage as read by the internal ADC. Can be used to sanity check its being read correctly.
### PCB
This is slightly miss-named, but preserving the name for now.
This indicates the PCB "version" number, which comes from the TS100 changing the model of accelerometer without warning.
This indicates the accelerometer that is fitted inside the unit.
- 0 = MMA8652
- 1 = LIS2DH12
- 2 = BMA223
- 99 = None detected (running in fallback without movement detection)
### PWR
This indicates the current power source for the iron.
This may change during power up as the sources are negotiated in turn.
- 0 = DC input (dumb)
- 1 = QC input (We used QC2/3 negotiation for current supply)
- 2 = PD input (We used the PD subsystem to negotiate for the current supply)
### Max
This indicates the max temp in C that the system estimates it can measure the tip reliably to.
This is dependant on a few factors including the handle temperature so it can move around during use.

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# Development
Building this software can be performed two ways, using the STMCubeIDE or using command line tools.
## STM Cube IDE
The easiest way to start working using the STM Cube IDE is to create a new project for the STM32F103RCTx.
Then once this is created remove the auto-generated source code.
Next drag the contents of the `source` folder into the project and choose to link to files.
You will need to update the build settings for include paths & point to the new `.ld` linker file
## Developing with command line tools & building a release
In the `source` folder there is a makefile that can be used to build the repository using command line tools.
when running the `make` command, specify which model of the device & the language you would like to use.
`make -j8 lang=EN model=TS80`
To build a release instead, run the build.sh script. This will update translations and also build every language for both TS100 and TS80 models.
## Updating languages
To update the language translation files & associated font map, execute the `make_translation.py` code from the translations directory.
## Building Pinecil
I highly reccomend using the command line tools and using docker to run the compiler.
Its a bit more fussy on setup than the STM tooling and this is by far the easiest way.
If you _need_ an IDE I have used [Nuclei's IDE](https://nucleisys.com/download.php)
And follow same idea as the STM Cube IDE notes above.

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# Flashing / Upgrading your iron
## Downloading source file
### Main release
Main releases are made to the [releases page](https://github.com/Ralim/IronOS/releases).
Download the zip file that matches your model of soldering iron, and extract it.
You then need to use the appropriate file type for your unit, in general Miniware irons are `.hex` and Pinecil is `.bin.`
Flash according to details below
### Bleeding edge / latest
For the _latest_ code, you will need to download the zip file from the artefacts page on the build for what you want.
Head to the [Actions](https://github.com/Ralim/IronOS/actions) page and then select the run for the appropriate branch you would like.
In general you probably want `master`.
Once you click on a run, scroll down to the "Artifacts" section and then click on your model to download a zip file.
Then this works the same as a production release (use the correct file).
## Miniware irons (TS100, TS80, TS80P)
This is completely safe, but if it goes wrong just put the .hex file from the official website onto the unit and you're back to the old firmware. Downloads for the hex files to flash are available on the [releases page.](https://github.com/Ralim/IronOS/releases) The file you want is called *(MODEL)_EN.hex* unless you want the translations, they are (MODEL)_*language short name*.hex. Where (MODEL) is either TS100 or TS80.
Officially the bootloader on the iron only works under Windows (use the built-in File Explorer, as alternative file managers or copy handlers like Teracopy will fail). However, users have reported that it does work under Mac, and can be made to work under Linux *sometimes*. Details over on the [wiki page](https://github.com/Ralim/ts100/wiki/Upgrading-Firmware).
1. Hold the button closest to the tip, and plug in the USB to the computer.
2. The unit will appear as a USB drive.
3. Drag the .hex file onto the USB drive.
4. The unit will disconnect and reconnect.
5. The filename will have changed to end in .RDY or .ERR
6. If it ends with .RDY you're done! Otherwise, something went wrong.
7. If it didn't work the first time, try copying the file again without disconnecting the iron, often it will work on the second shot.
8. Disconnect the USB and power up the iron. You're good to go.
For the more adventurous out there, you can also load this firmware onto the device using an SWD programmer.
On the bottom of the MCU riser PCB, there are 4 pads for programming. On v2.51A PCB revision `USB_D+` is shorted to `SWDIO` and `USB_D-` is shorted to `SWCLK` so debugging works without disassembly (attach while staying in the bootloader). Installing [dapboot from eDesignOSS](https://github.com/eDesignOSS/dapboot) (`make TARGET=TS100 -C src`) is recommended as it allows reliable flashing of binary files with [dfu-util](http://dfu-util.sourceforge.net/).
There is a complete device flash backup included in this repository. (Note this includes the bootloader, so will need an SWD programmer to load onto the unit).
For the TS80 the SWD pins are used for the QC negotiation, so you can actually connect to the SWD power via the USB connector.
# Mac
sgr1ff1n (Shane) commented in [issue 11](https://github.com/Ralim/ts100/issues/11) that upgrading worked on their Mac as per normal:
> I just wanted to say that I was able to update the firmware on my ts100 from the stock version to 1.08 found in this repository using my Mac. I simply followed the same steps however through Finder. I have a MacBook Pro (13-inch, Mid 2012) running Sierra 10.12.4 (16E195).
# Linux
While in past there were reports of unreliable upgrades, the consensus in [issue 11](https://github.com/Ralim/ts100/issues/11) is that things work mostly as expected in Linux.
@awigen has contributed a script [flash_ts100_linux.sh](https://raw.githubusercontent.com/Ralim/ts100/master/Flashing/flash_ts100_linux.sh) that works on Ubuntu 16.04 as well as other distro's.
If you want to do it manually (or if the script does not work for some reason) the general procedure is the same as for Windows, the differences are in the way to mount the unit and copy the firmware.
Remember that after flashing, the firmware filename will have changed to end in `.RDY` or `.ERR` or `.NOT` and only `.RDY` means the flashing was successful!
* The unit has to be mounted as ```msdos``` type (thanks @balrog-kun for having spotted it). You may disable automount, but unmounting the automounted drive and remounting as `msdos` works fine. You do not need to turn off automounting, but you do need to unmount the device with `umount`.
* It is recommended to use an all-caps filename for the firmware, even if successful flashing were done with lower case names.
* Avoid USB hubs, plug directly in your computer.
* If it fails, try again several times without unplugging. Just let it remount.
Example, to be run as root, once the unit has been plugged in DFU mode and auto-mounted:
```bash
FW=ts100.hex
unset NAME
eval $(lsblk -P -p -d --output NAME,MODEL|grep "DFU Disk")
[ -z ${NAME+x} ] && exit 1 # Could not find DFU device
umount "$NAME"
mkdir /tmp/mntdfu
mount -t msdos "$NAME" /tmp/mntdfu
cp "$FW" "/tmp/mntdfu/$(basename $FW|tr a-z A-Z)"
sync
umount /tmp/mntdfu
rmdir /tmp/mntdfu
```
Device will reboot and automount will rerun if not disabled.
Check the extension of your firmware, it should be `.RDY` now.
## Pinecil (Pine64)
The MCU used in the Pinecil supports usb-dfu.
To enter DFU mode, hold the button at the back of the iron while connecting to usb over usb-c.
Generally all usb controllers work, but some hubs have issues so avoiding hubs may be best.
Once the device is connected while holding the button, the screen will stay **off**.
This is normal, and then you can use the appropriate tool to load the .hex or .bin file as per your OS.
You can also refer to the Pine64 [Wiki](https://wiki.pine64.org/wiki/Pinecil)
### Linux and Mac
Using `dfu-util` you can flash the firmware using a command line as such:
```
dfu-util -d 28e9:0189 -a 0 -D Pinecil_EN.bin -s 0x08000000:mass-erase:force
```
### Windows
For windows the easiest tool to use is the vendors gui tool from [here](http://www.gd32mcu.com/download/down/document_id/176/path_type/1)
Should the link break, its called "GD32 MCU Dfu Tool" and can be grabbed from http://www.gd32mcu.com/en/download/
### FAQ
#### [Miniware] The file is showing up with the extension `.ERR`
This can occur duing the programming process if any of the checks in the bootloader fail. This is often triggered by anti-virus software or using a non-windows host OS.
First, try just copying the file a second time.
1. Attach the iron in DFU mode
2. Copy the hex file to the device
3. The device disconnects and connects with the `.ERR` file
4. Copy the same hex file again **DO NOT TRY AND DELETE THE OLD ONE**
5. The device will disconnect and reconnect again
6. The device _should_ now have the `.RDY` file
7. Your done.
If this fails, if you are on Mac or Linux reading the wiki page about programming can help. There is also a very long issue thread going through all of the different attempts around this too.
If you are on windows, its often to try another computer (friends, work, partners etc).
#### [Miniware] Device randomly disconnects or does not show up in DFU mode
First, check the USB cable your using has the data pins; test it on another device. There are a surprisingly large number of usb-micro cables that are power _only_.
Secondly, try other USB ports. Often different USB controllers will interact with the units differently due to design quirks in the miniware design.
## [Miniware] Alternative bootloader
If you are an advanced user, and you have used `usb-dfu` tools before, or you would like to learn; there is an alternative bootloader for these irons.
This will **NOT** show up as a USB storage drive, but instead show up using a standard DFU protocol device. You can then use dfu tools or GUI's to upgrade the iron using the `.bin` files that are posted to the releases page.
To change to dapboot based alternative bootloader, you need to flash the hex file from [here](https://github.com/eDesignOSS/ts100-bl-flasher/releases).
`ts100-stockbl.hex` will reflash the stock bootloader, `ts100-dapboot.hex` will flash the new dapboot based usb bootloader.
Note that this is only reccomended for users who know what they doing. If you dont not understand how this works; please dont flash this.

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# Version Changes
## V2.13
* First _official_ Pinecil release
* All of the wire for Pinecil releases added
* Updated Translations
* Delay accelerometer to help with entering sleep on startup
* Dual speed PWM to help with power limit control
* Improve heat up time
* Adds locking mode
* Improved docs all over the place
* Repo rename occured TS100 -> IronOS
* Hall effect sensor support added (not fitted in Pinecil but optional)
* QC 20V support for Pinecil
* CI upgrades for faster builds
* Fixed bug with accelerometer model on Pinecil
* Rework of all of the temperature curves for better accuracy
## V2.12
* Only released as pre-release
* [TS80P] Improvements to the PD negotiation to handle a few more adapters cleanly
* Pause on the last item in a list
* Clean up the menu (removed both enables and settings, so that you can turn things off easier)
* Removing the very old single line menu style.
## V2.11
* First TS80P support
* Added in a USB-PD driver stack for the FUSB302
* Fixed some graphical glitches
## V2.10
* GUI polish (animations and scroll bars)
* Power pulse to keep power supplies alive
* Adjustable tip response gain
## V2.09
* Adjustable steps in temperature adjustment
* Git hash now in build string
* Adjustable language to set if US units are available or not
* Some minor QC3 improvements
## V2.08
* Fixes auto start in sleep mode
* Power limiters
## V2.07
* QC fixes
* Cosmetic fixes for leading 0's
## V2.06
* Warning on settings reset
* Temp temp re-write
* Display calibration offset
* Hide some leading 0's
* Menu timeouts
## V2.05
* Language updates
## V2.04
* GUI updates
## V2.03
* Support for new accelerometers
## V2.02
* Adds small font
## V2.01
* Newer settings menu
## V2.00
* Complete re-write of the low layer system to use the STM32 HAL for easier development
* This allowed easier setup for the new ADC auto measuring system
* Better tip PWM control
* Moved to FreeRTOS for scheduling
* Complete re-write from blank
* Added detailed screen views
* Added smaller font for said screen views
## V1.17
* Added blinking cooldown display
* Allowed smaller sleep timeout values
* New font!
* Automatic startup option
## V1.16
* Added automatic rotation support
* Added power display graph
## V1.15
* Added support for a custom bootup logo to be programmed via the DFU bootloader
## V1.14
* Changed input voltage cutoff to be based on cell count rather than voltage
## V1.13
* Swapped buttons for menu to prevent accidentally changing first menu item
* Added auto key repeat
## V1.12
* Increases sensitivity options to be 1*9 with 0 off state
* Fixes issue where going from COOL *> soldering can leave screen off
## V1.11
* Boost mode
* Change sensitivity options to be 1*8
## V1.10
* Adds help text to settings
* Improves settings for the display update rate
## V1.09
* Adds display modes, for slowing down or simplifying the display
## V1.08
* Fix settings menu not showing flip display
## V1.07
* Adds shutdown time to automatically shutdown the iron after inactivity
## V1.06
* Changes H and C when the iron is heating to the minidso chevron like images
## V1.05
* Adds ability to calibrate the input voltage measurement
## V1.04
* Increased accuracy of the temperature control
* Improved PID response slightly
* Allows temperature offset calibration
* Nicer idle screen
## V1.03
* Improved Button handling
* Ability to set motion sensitivity
* DC voltmeter page shows input voltage
## V1.02
* Adds hold both buttons on IDLE to access the therometer mode
* Changes the exit soldering mode to be holding both buttons (Like original firmware)

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# Startup Logos
This firmware supports a user created bootup logo.
By default there is _not_ one included in the firmware, as this means that once flashed they generally stay.
## Generating the Logo files
The [Python script](https://github.com/Ralim/ts100/blob/master/Bootup%20Logo/python_logo_converter/img2ts100.py) converts an image passed into it on the command line to a HEX file to be uploaded to the iron in DFU mode (similar to the process described above). The image can be in color and any size, but it will be resized and converted to 1-bit color. However, it looks best if you create a 96x16 image in an image editor and color the pixels black or white manually.
The converter requires at least Python 3 and Pillow (if you don't have it, it will tell you to install PIL, which is an old version of the same thing). See [this page](https://stackoverflow.com/a/20061019/6705343) on StackOverflow about installing it.
What works can vary, but this command may work:
`python3 -m pip install Pillow`
Then, to convert an image:
`python3 img2ts100.py infile.png outfile.hex`
Run `python3 img2ts100.py --help` to see available options.
## Flashing the Logo
### Miniware (TS100/TS80/TS80P)
Upload the HEX file to the iron in DFU mode and, if the file's extension changes to .RDY, your custom splash screen should show up on startup.
You perform this the same way as if you were flashing a new firmware, and all of the existing notes around this apply.
### Pinecil
For the Pinecil, we require to flash the logo using dfu-util instead, which will only take `.bin` files rather than `.hex`.
To flash the logo, use the following steps:
- `python3 img2ts100.py input.png logo.hex`
- `riscv-nuclei-elf-objcopy -I ihex -O binary logo.hex logo.bin`
- `dfu-util -d 28e9:0189 -a 0 -D logo.bin -s 0x0800f800`
This will use the objcopy tool to convert the hex to a binary file, and then use dfu-util to flash it in the right location.
If you do not have `riscv-nuclei-elf-objcopy` installed, you can generally use any objcopy tool from any toolchain you do have.

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# Menu System
In this firmware for these soldering irons, all settings are adjustable on the device itself. This means you do **not** require a computer to change any settings.
## Soldering mode
In this mode the iron works as you would expect, pressing either button will take you to a temperature change screen.
Use each button to go up and down in temperature. Pressing both buttons will exit you from the temperature menu (or wait 3 seconds and it will time out).
Pressing both buttons or holding the button near the USB will exit the soldering mode.
Holding the button at the front of the iron will enter boost mode (if enabled).
## Settings Menu
This menu allows you to cycle through all the options and set their values.
The button near the USB cycles through the options, and the one near the tip changes the selected option.
Note that settings are not saved until you exit the menu.
If you leave the unit alone (ie don't press any buttons) on a setting, after 3 seconds the screen will scroll a rough description of the setting.
The menu is arranged so that the most often used settings are first.
With submenu's being selected to enter using the front button (as if you were going to change the setting).
Scrolling through the submenu will return you back to its entry location after you scroll through all of the options.
### Calibrating input voltage
Due to the tolerance on the resistors used for the input voltage divider, some irons can be up to 0.6V out on the voltage measurement.
Please calibrate your iron if you have any issues with the cutoff voltage.
Note that cutoff messages can also be triggered by using a power supply that is too weak and fails under the load of the iron.
To calibrate your iron:
1. Measure the input voltage with a multimeter and note it down.
2. Connect the input to your iron.
3. Enter the settings menu
4. Under the advanced submenu
5. Select the calibrate voltage option
6. Use the front and back buttons to adjust the displayed voltage to minimize the error to your original measurement
7. Hold both buttons to save and exit to the menu
### Calibrating tip offset (Set tip model)
Some tips will have an offset on their readings, to calibrate this out perform the following steps:
1. Connect power to your iron
2. Make sure the tip is at room temperature (ie. wait for a fair while after using the iron before calibration)
3. Enter the settings menu
4. Scroll down to the advanced menu, and then the temperature calibration
5. Press the button to change the option (tip button)
6. The display will start to scroll a warning message to check that the tip is at ambient temperature!
7. Press the button near the tip of the iron to confirm
8. The display will go to "...." for a short period of time as the unit measures the tip temperature and the handle temperature and compares them
9. The display will then go back to *TMP CAL* and it will display a number, this is your offset number. You generally dont need it unless debugging issues
10. Calibration is done, just exit the settings menu as normal
11. You're done, enjoy your iron!
### Boost mode
This allows you to change the front key (one near the tip) to become a boost button when you hold it for > 2 seconds. This allows you to set this button to change the soldering temperature for short periods. For example when soldering a big joint and you want to boost the temperature a bit.
The boost temperature is set in the settings menu.

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# Power & Performance
All of the irons are PWM controlled resistive heating elements.
This means that the electronics in the handle can only turn the heating element on and off.
This *means* that the power proivded in the tip is 100% controlled by the supply voltage used.
Both irons at their simplest are just a resistor connected to your power source via a switch.
When the switch is on, the power in the resistor is `Current (I) times Volts (V)`.
Current through the resistor is `Volts (V) divided by Resistance (R)`.
Combining these two gives the common equation, power is `Volts (V) squared / Resistance (R)`.
The resistance of the tip is fixed, ~7.5 ohms for the TS100/Pinecil and ~4.5 ohms for the TS80(P).
This means that for both irons, the power delivered to the soldering tip is proportional to the voltage used, squared.
This is why the TS100 performs poorly when run off 12V power supplies.
## Output Control & Regulation
Both soldering irons use a FET to switch the power to the soldering iron tip. This is a P-MOSFET and its controlled via a small transistor circuit, which in turn is controlled via the STM32. The STM32 controls this PWM output proportional to the output from the PID control loop running in the software.
To measure the tip temperature in the iron, the iron has a small op-amp connected across the terminals, this is setup to measure the voltage across the same terminals that are used the power the tip. In order to be able to read the small voltage generated by the thermocouple junction, the irons output must be turned off.
Once the output is turned off (via the FET), the system has a recovery time as the tip capacitance discharges and the op-amp exits saturation. After this delay period, the STM32 ADC samples the output of the op-amp 8 times quickly and then sets a flag to turn the PWM output back on.
This enforces a small dead time in the output signal while this occurs, so there is a balance between sampling the temperature often to maintain stable tip temperature control and sampling less often to increase the maximum power deliverable to the tip

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# Tip temperature measurement
The soldering irons use a modified N-type thermocouple in the tip to measure the tip temperature.
This is constructed for free by using a different type of metal to join one of the rings to the heating coil. This effectively creates a free temperature sensor for very low cost and construction difficulty.
The downsides of this are twofold; one, it is made using non-optimal metals and has a non-constant temperature response; and two, as this uses the same connections as the heating current, you can't measure the temperature while you are heating the tip.
## How a thermocouple works (brief)
A thermocouple uses a junction of two dissimilar metals to create a very small amount of power (microvolts). This can then be measured and used with a known transfer function to derive the temperature of the junction.
This has some fairly large limitations, but it also has the benefit of being extremely cheap.
Conventionally a thermocouple is created using two dissimilar metals that join, and then the other ends of these metals are terminated to copper contacts. These copper contacts are also part of the construction of the thermocouple and are referred to as the cold junction.
As there are these extra two joins between the thermocouple wires and the copper; these also have properties of their own in their reactions with temperature.
If the cold junction is held at 0 degree's C, then their effect is considered to be null, and so they can be ignored. However, in the real world the joins to copper are often at room temperature, and as such the measured voltage from the thermocouple must be compensated to remove the influence of these joints. This process is often called cold junction compensation.
Every time in the circuit there is a join between two different metals, there is a small thermocouple created, this means that _every_ soldered connection is also one.
## How these irons implement the temperature reading
If you analyse one of the open circuit schematics (Pinecil, TS100, TS80) they all use the same approximate formula.
This consists of an op-amp that is connected directly across the heating connections to the tip, and a separate handle temperature sensor.
When the iron is **not** heating the tip, the microcontroller uses the ADC to read the output from the op-amp. This produces a voltage that _should_ be linear to the temperature of (tip-handle). This value is then offset compensated (to remove ADC+op-amp offsets), and then converted into a temperature delta in C/K. This temperature delta can then be added to the handle temperature to derive the tip temperature in C.
Depending on the construction of the tip, the lookup values used for converting the tip reading in uV into degrees C/K varies. It is worth noting, however, that TS100 and Pinecil tips are approximately the same as the Hakko T12 tips. (In @Ralim's testing, to within measurement error). This makes sense as these tips are cheap and would have made an excellent design for Miniware to have cloned in making the TS100 in the first place.
## Implications of this
### Reading accuracy vs Heating performance tradeoff
Because the tip can only be measured when the unit is not heating, the more often the tip is measured (for finer temperature control) the less time the unit can spend heating up the tip. This means that for fast heat up and fine temperature control the firmware now implements two speeds to the controller loop. During heating up the system runs fewer temperature measurements and instead allows the tip to spend more time burning power. Once the unit is up to temperature the rate of taking temperature readings is doubled to allow for faster reaction times.
### Tip heat up lag time
As the temperature sensor is a part of the heater coil inside of the tip (or very close by, not entirely certain); the temperature reading is of the _inside_ of the tip, rather than the outside. The outside temperature is the most critical for the user as this is where the solder is actually melting and performing work.
The PID controller in the firmware is tuned to be slightly underdamped and thus more "jumpy" than some people would expect. This is based on the theory that if the inside of the tip is seeing the temperature droop; the outside temperature has dropped more and so we should overcompensate until they equalise.
This is why sometimes the temperature may flick around a little during use but the tip temperature itself is quite stable. The thermal mass of the tip smooths these small amounts out nicely for the user. Though seeing larger jumps on some tips than others _may_ indicate that the tip does not have optimal internal thermal bonding between the heater coil and the tip itself.
The firmware uses the theory that these irons are more towards the power users territory than most, so it tries to not hide the actual temperature. What some soldering iron controllers do is that they hide the actual measurement once you are within a certain tolerance of this. For example, on a digital Weller unit Ralim has to hand, if set to 350C, it will regulate to within around +-3 C but not indicate you are outside of this bad until you exceed +-5C. This gives the illusion that it's holding the temperature perfectly when in actuality it's moving around as well.
Given enough time (3-5 seconds) with no external cooling, the inside and outside temperatures of the tip will be equal. When testing the tip temperature accuracy try to allow time for the system to stabilise.
### Complexity of measurement
The firmware in these irons does a best-effort of calculating an accurate temperature, but as always there is a tradeoff between perfect accuracy and firmware complexity and setup. As these irons are built down to a cost, expecting accuracy greater than 1% is not really an option as the voltage reference is only 1% accurate at best. So _all_ measurements are affected by its accuracy. And the low-cost chips used in the irons do not come calibrated from the factory so we do not have an internal calibration we can use to try and measure this inaccuracy.
The firmware only accounts for cold junction compensation and then treats the remaining error as being a constant offset.
While the error is small, it is actually composed of both a constant offset as well as an offset that is linear to the handle temperature.
This offset that is linear to handle temperature is as of current not modelled into the firmware and there is assumed to be constant. This is generally "close enough" as once the unit is in use, the handle temperature is usually within 10C as the components inside warm-up from use. This means that this error is "relatively" constant once the unit is being used. However, this can cause odd behaviour when the tip temperature ~= room temperature. And can cause some jumping and movement in the readings when attempting to control the tip to sub 100C.
This is a known tradeoff that is made as the irons intended use case means that it will spend most of its time above 150C, at which point these errors are no longer the dominant error sources in the system.

View File

@@ -1,6 +0,0 @@
# Translation
If you would like to contribute a translation, use the [Translation Editor](http://htmlpreview.github.io/?https://github.com/Ralim/ts100/blob/master/Translations/TranslationEditor.html).
[Open a reference language file and optionally a target language file](https://github.com/Ralim/ts100/tree/master/Translations).
You can create a pull request with the new / updated json configuration file, and this will include this language into the new builds for the firmware.

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@@ -1,130 +0,0 @@
#!/bin/bash
# TS100 Flasher for Linux by Alex Wigen (https://github.com/awigen)
DIR_TMP="/tmp/ts100"
function usage() {
echo
echo "#################"
echo "# TS100 Flasher #"
echo "#################"
echo
echo " Usage: $0 <HEXFILE>"
echo
echo "This script has been tested to work on Fedora."
echo "If you experience any issues please open a ticket at:"
echo "https://github.com/Ralim/IronOS/issues/new"
echo
}
GAUTOMOUNT=0
function disable_gautomount {
GSETTINGS=$(which gsettings)
if [ $? -ne 0 ]; then
return 1
fi
gsettings get org.gnome.desktop.media-handling automount | grep true > /dev/null
if [ $? -eq 0 ]; then
GAUTOMOUNT=1
gsettings set org.gnome.desktop.media-handling automount false
fi
}
function enable_gautomount {
if [ "$GAUTOMOUNT" -ne 0 ]; then
gsettings set org.gnome.desktop.media-handling automount true
fi
}
function is_attached {
output=$(lsblk -b --raw --output NAME,MODEL | grep 'DFU.*Disk')
if [ $? -ne 0 ]; then
return 1
fi
DEVICE=$(echo $output | awk '{print "/dev/"$1}')
}
instructions="not printed"
function wait_for_ts100 {
is_attached
while [ $? -ne 0 ]; do
if [ "$instructions" = "not printed" ]; then
echo
echo "#####################################################"
echo "# Waiting for TS100 config disk device to appear #"
echo "# #"
echo "# Connect the soldering iron with a USB cable while #"
echo "# holding the button closest to the tip pressed #"
echo "#####################################################"
echo
instructions="printed"
fi
sleep 0.1
is_attached
done
}
function mount_ts100 {
mkdir -p "$DIR_TMP"
sudo mount -t msdos -o uid=$UID "$DEVICE" "$DIR_TMP"
if [ $? -ne 0 ]; then
echo "Failed to mount $DEVICE on $DIR_TMP"
exit 1
fi
}
function umount_ts100 {
mountpoint "$DIR_TMP" > /dev/null && sudo umount "$DIR_TMP"
if [ $? -ne 0 ]; then
echo "Failed to unmount $DIR_TMP"
exit 1
fi
rmdir "$DIR_TMP"
}
function cleanup {
enable_gautomount
if [ -d "$DIR_TMP" ]; then
umount_ts100
fi
}
trap cleanup EXIT
if [ "$#" -ne 1 ]; then
echo "Please provide a HEX file to flash"
usage
exit 1
fi
if [ ! -f "$1" ]; then
echo "'$1' is not a regular file, please provide a HEX file to flash"
usage
exit 1
fi
if [ $(head -c1 "$1") != ":" ] || [ $(tail -n1 "$1" | head -c1) != ":" ]; then
echo "'$1' doesn't look like a valid HEX file. Please provide a HEX file to flash"
usage
exit 1
fi
disable_gautomount
wait_for_ts100
echo "Found TS100 config disk device on $DEVICE"
mount_ts100
echo "Mounted config disk drive, flashing..."
cp -v "$1" "$DIR_TMP/ts100.hex"
sync
echo "Waiting for TS100 to flash"
sleep 5
echo "Remounting config disk drive"
umount_ts100
wait_for_ts100
mount_ts100
echo "Flash result: "
ls "$DIR_TMP"/ts100*

View File

@@ -1,31 +0,0 @@
Please edit this template and fill out all the information you can (where relevant). Failure to provide essential information can delay the response you receive.
_This is a [Bug/Feature Request/Question/Complaint]_
* **I have**
- [ ] Searched previous issues
- [ ] This is in _this_ firmware, not vendor "offical" firmware
- [ ] This is not a bug in the vendor bootloader (aka DFU)
- [ ] I have checked this is not already covered in the docs in `/Documentation`
* **What is the current behavior?**
* **What is the expected behavior?**
***Steps to reproduce the bug:***
- Turn on...
- Hold....
* **What is the motivation / use case for changing the behavior?**
* **What are you running:**
On the idle screen, you can hold the settings button and it will show you the firmware & PCB version.
If using a USB-C supply please note model number
- Firmware Version: 2.x?
- PCB Version: (1/2)
- Power Supply (Voltage and Current Rating) :

674
LICENSE
View File

@@ -1,674 +0,0 @@
GNU GENERAL PUBLIC LICENSE
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you grant is automatically extended to all recipients of the covered
work and works based on it.
A patent license is "discriminatory" if it does not include within
the scope of its coverage, prohibits the exercise of, or is
conditioned on the non-exercise of one or more of the rights that are
specifically granted under this License. You may not convey a covered
work if you are a party to an arrangement with a third party that is
in the business of distributing software, under which you make payment
to the third party based on the extent of your activity of conveying
the work, and under which the third party grants, to any of the
parties who would receive the covered work from you, a discriminatory
patent license (a) in connection with copies of the covered work
conveyed by you (or copies made from those copies), or (b) primarily
for and in connection with specific products or compilations that
contain the covered work, unless you entered into that arrangement,
or that patent license was granted, prior to 28 March 2007.
Nothing in this License shall be construed as excluding or limiting
any implied license or other defenses to infringement that may
otherwise be available to you under applicable patent law.
12. No Surrender of Others' Freedom.
If conditions are imposed on you (whether by court order, agreement or
otherwise) that contradict the conditions of this License, they do not
excuse you from the conditions of this License. If you cannot convey a
covered work so as to satisfy simultaneously your obligations under this
License and any other pertinent obligations, then as a consequence you may
not convey it at all. For example, if you agree to terms that obligate you
to collect a royalty for further conveying from those to whom you convey
the Program, the only way you could satisfy both those terms and this
License would be to refrain entirely from conveying the Program.
13. Use with the GNU Affero General Public License.
Notwithstanding any other provision of this License, you have
permission to link or combine any covered work with a work licensed
under version 3 of the GNU Affero General Public License into a single
combined work, and to convey the resulting work. The terms of this
License will continue to apply to the part which is the covered work,
but the special requirements of the GNU Affero General Public License,
section 13, concerning interaction through a network will apply to the
combination as such.
14. Revised Versions of this License.
The Free Software Foundation may publish revised and/or new versions of
the GNU General Public License from time to time. Such new versions will
be similar in spirit to the present version, but may differ in detail to
address new problems or concerns.
Each version is given a distinguishing version number. If the
Program specifies that a certain numbered version of the GNU General
Public License "or any later version" applies to it, you have the
option of following the terms and conditions either of that numbered
version or of any later version published by the Free Software
Foundation. If the Program does not specify a version number of the
GNU General Public License, you may choose any version ever published
by the Free Software Foundation.
If the Program specifies that a proxy can decide which future
versions of the GNU General Public License can be used, that proxy's
public statement of acceptance of a version permanently authorizes you
to choose that version for the Program.
Later license versions may give you additional or different
permissions. However, no additional obligations are imposed on any
author or copyright holder as a result of your choosing to follow a
later version.
15. Disclaimer of Warranty.
THERE IS NO WARRANTY FOR THE PROGRAM, TO THE EXTENT PERMITTED BY
APPLICABLE LAW. EXCEPT WHEN OTHERWISE STATED IN WRITING THE COPYRIGHT
HOLDERS AND/OR OTHER PARTIES PROVIDE THE PROGRAM "AS IS" WITHOUT WARRANTY
OF ANY KIND, EITHER EXPRESSED OR IMPLIED, INCLUDING, BUT NOT LIMITED TO,
THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
PURPOSE. THE ENTIRE RISK AS TO THE QUALITY AND PERFORMANCE OF THE PROGRAM
IS WITH YOU. SHOULD THE PROGRAM PROVE DEFECTIVE, YOU ASSUME THE COST OF
ALL NECESSARY SERVICING, REPAIR OR CORRECTION.
16. Limitation of Liability.
IN NO EVENT UNLESS REQUIRED BY APPLICABLE LAW OR AGREED TO IN WRITING
WILL ANY COPYRIGHT HOLDER, OR ANY OTHER PARTY WHO MODIFIES AND/OR CONVEYS
THE PROGRAM AS PERMITTED ABOVE, BE LIABLE TO YOU FOR DAMAGES, INCLUDING ANY
GENERAL, SPECIAL, INCIDENTAL OR CONSEQUENTIAL DAMAGES ARISING OUT OF THE
USE OR INABILITY TO USE THE PROGRAM (INCLUDING BUT NOT LIMITED TO LOSS OF
DATA OR DATA BEING RENDERED INACCURATE OR LOSSES SUSTAINED BY YOU OR THIRD
PARTIES OR A FAILURE OF THE PROGRAM TO OPERATE WITH ANY OTHER PROGRAMS),
EVEN IF SUCH HOLDER OR OTHER PARTY HAS BEEN ADVISED OF THE POSSIBILITY OF
SUCH DAMAGES.
17. Interpretation of Sections 15 and 16.
If the disclaimer of warranty and limitation of liability provided
above cannot be given local legal effect according to their terms,
reviewing courts shall apply local law that most closely approximates
an absolute waiver of all civil liability in connection with the
Program, unless a warranty or assumption of liability accompanies a
copy of the Program in return for a fee.
END OF TERMS AND CONDITIONS
How to Apply These Terms to Your New Programs
If you develop a new program, and you want it to be of the greatest
possible use to the public, the best way to achieve this is to make it
free software which everyone can redistribute and change under these terms.
To do so, attach the following notices to the program. It is safest
to attach them to the start of each source file to most effectively
state the exclusion of warranty; and each file should have at least
the "copyright" line and a pointer to where the full notice is found.
<one line to give the program's name and a brief idea of what it does.>
Copyright (C) <year> <name of author>
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
Also add information on how to contact you by electronic and paper mail.
If the program does terminal interaction, make it output a short
notice like this when it starts in an interactive mode:
<program> Copyright (C) <year> <name of author>
This program comes with ABSOLUTELY NO WARRANTY; for details type `show w'.
This is free software, and you are welcome to redistribute it
under certain conditions; type `show c' for details.
The hypothetical commands `show w' and `show c' should show the appropriate
parts of the General Public License. Of course, your program's commands
might be different; for a GUI interface, you would use an "about box".
You should also get your employer (if you work as a programmer) or school,
if any, to sign a "copyright disclaimer" for the program, if necessary.
For more information on this, and how to apply and follow the GNU GPL, see
<http://www.gnu.org/licenses/>.
The GNU General Public License does not permit incorporating your program
into proprietary programs. If your program is a subroutine library, you
may consider it more useful to permit linking proprietary applications with
the library. If this is what you want to do, use the GNU Lesser General
Public License instead of this License. But first, please read
<http://www.gnu.org/philosophy/why-not-lgpl.html>.

View File

@@ -1,18 +0,0 @@
Please try and fill out this template where possible, not all fields are required and can be removed.
* **Please check if the PR fulfills these requirements**
- [] The changes have been tested locally
- [] There are no breaking changes
* **What kind of change does this PR introduce?**
(Bug fix, feature, docs update, ...)
* **What is the current behavior?**
(You can also link to an open issue here)
* **What is the new behavior (if this is a feature change)?**
* **Other information**:

102
README.md
View File

@@ -1,91 +1,21 @@
![CI](https://github.com/Ralim/ts100/workflows/CI%20Build%20all/badge.svg)
![GitHub all](https://img.shields.io/github/downloads/ralim/IronOS/total)
![Latest Release](https://img.shields.io/github/v/release/ralim/IronOS)
# TS100
This is a complete open source re-write of the software for the ts100 soldering iron sold by minidso
# IronOS - Flexible Soldering iron control Firmware
This was started to remove the need for usb for changing system settings.
*This repository was formerly known as TS100, its the same great code. Just with more supported devices*
The software has similar functionality to the original firmware.
Originally concieved as an alternative firmware for the TS100, this firmware has evolved into a complex soldering iron control firmware.
The firmware implements all of the standard features of a "smart" soldering iron, with lots of little extras and tweaks.
I highly reccomend reading the installation guide fully when installing on your iron. And after install just explore the settings menu.
For soldering irons that are designed to be powered by "smart" power sources (QC and PD), the firmware supports settings around the negotiated power and voltage.
For soldering irons that are designed to be powered by batteries (TS100), settings for a cutoff voltage for battery protection are supported.
There are 25 languages currently supported as of present. When downloading the firmware for your soldering iron take note of the language code in the file name.
This project is considered feature complete for use as a soldering iron, *so please suggest any feature improvements you would like!*
*This firmware does **NOT** support the USB port while running for changing settings. This is done through the onscreen menu only. Logos are edited using the tool or python script and uploaded in DFU mode.*
## Key Features
* PID style iron temperature control
* Automatic sleep with selectable sensitivity
# Features Working
* Soldering / Temperature control
* Full PID Iron Temp
* Adjusting temperature
* Automatic sleep
* Motion wake support
* All settings exposed in intuitive menu
* (TS100) Set a voltage lower limit for Lithium batteries so you don't kill your battery pack
* (TS80) Set 18W or 24W settings for your power bank
* (TS80P) Automatically negotiates appropriate PD and falls back to QC mode like TS80
* (Pinecil) Supports all 3 power modes (PD,QC, DC In).
* Improved readability Fonts, supporting multiple languages
* Use hardware features to improve reliability
* Can disable movement detection if desired
* Boost mode lets you temporarily change the temperature when soldering (i.e. raise the temperature for short periods of time)
* (TS100/Pinecil) Battery charge level indicator if power source set to a lipo cell count
* (TS80/TS80P/Pinecil) Power bank operating voltage is displayed
* [Custom boot up logo support](Documentation/Logo.md)
* Automatic LCD rotation based on the orientation
* Basic settings menu
## Installation
For installation for your device, please refer to the [Flashing Guide](Documentation/Flashing.md).
## Menu System
This new firmware uses a new menu system to allow access to the settings on the device.
When on the main screen, the unit shows prompts for the two most common operations.
* Pressing the button near the tip enters soldering mode
* Pressing the button near the USB enters the settings menu
* Holding the button near the tip will enter soldering temperature adjust mode (This is the same as the one in the soldering menu, just to let you edit before heating up)
* Holding the button near the USB end will show the [debug menu](Documentation/DebugMenu.md)
Detailed operation details are over in the [Menu information.](Documentation/Menu.md)
## Thanks
If you love this firmware and want to continue my caffeine addiction, you can do so [here](https://paypal.me/RalimTek) (or email me for other options).
I also want to give a shout out to all of the [Fantastic Contributors](https://github.com/Ralim/ts100/graphs/contributors).
Especially to the following users, who have helped in various ways that are massively appreciated:
* [Dhiltonp](https://github.com/dhiltonp)
* [Mrkvozrout](https://github.com/Mrkvozrout)
* [JonnieZG](https://github.com/jonnieZG)
* [Federck](https://github.com/federck)
* [Jvitkauskas](https://github.com/jvitkauskas)
* [Doegox](https://github.com/doegox)
* [Perillamint](https://github.com/perillamint)
* [GeminiServer](https://github.com/GeminiServer)
* [Patrick Horlebein](https://github.com/PixelPirate)
* [Firebie](https://github.com/Firebie)
* [Agatti](https://github.com/agatti)
* [Discip](https://github.com/discip)
* [Paul Fertser](https://github.com/paulfertser)
Plus the huge number of people who have contributed translations, your effort is massively appreciated.
## Licence
The code created by the community is GNU GPLv3. Unless noted elsewhere.
Other components such as FreeRTOS/USB-PD have their own licence.
## Commercial Use
This software is provided as-is, so I cannot provide any commercial support for the firmware.
However, you are more than welcome to distribute links to the firmware, or provide irons with this software on them.
Please do not re-host the files, but rather link to this page, so that there are no old versions of the firmware scattered around.
# Features still to be implimented
* Input voltage UVLO measurement
* Saving settings to flash for persistance
* Improved GUI
* Manual Temp Calibration
* Use hardware I2C

21
SystemDesign.md Normal file
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@@ -0,0 +1,21 @@
# System Design
# Movement Detection
The unit has a MMA8652FC Accelerometer on the small sub board along with the STM32.
This is used for motion detection of the soldering iron.
# USB Disk
When the unit is plugged into the computer, it presents a FAT device to the operating system over the usb connection.
This is implemented using a ram buffer for the disk.
# Future improvements to be made
These features are things I would like to add to the firmware
* Use the sysTick hardware for timing of events
* Move all the settings to an on device menu system instead of usb link
* Move error codes into a unified struct
* Rewrite most of the OLED stack to not require hardcoded values
* Rework the modes of the unit to be neater

173
TS100/TS100.ioc Normal file
View File

@@ -0,0 +1,173 @@
#MicroXplorer Configuration settings - do not modify
ADC1.Channel-0\#ChannelRegularConversion=ADC_CHANNEL_7
ADC1.IPParameters=Rank-0\#ChannelRegularConversion,Channel-0\#ChannelRegularConversion,SamplingTime-0\#ChannelRegularConversion,NbrOfConversionFlag,master
ADC1.NbrOfConversionFlag=1
ADC1.Rank-0\#ChannelRegularConversion=1
ADC1.SamplingTime-0\#ChannelRegularConversion=ADC_SAMPLETIME_1CYCLE_5
ADC1.master=1
ADC2.Channel-0\#ChannelRegularConversion=ADC_CHANNEL_9
ADC2.IPParameters=Rank-0\#ChannelRegularConversion,Channel-0\#ChannelRegularConversion,SamplingTime-0\#ChannelRegularConversion,NbrOfConversionFlag
ADC2.NbrOfConversionFlag=1
ADC2.Rank-0\#ChannelRegularConversion=1
ADC2.SamplingTime-0\#ChannelRegularConversion=ADC_SAMPLETIME_1CYCLE_5
File.Version=6
KeepUserPlacement=false
Mcu.Family=STM32F1
Mcu.IP0=ADC1
Mcu.IP1=ADC2
Mcu.IP2=I2C1
Mcu.IP3=NVIC
Mcu.IP4=RCC
Mcu.IP5=SYS
Mcu.IP6=USB
Mcu.IPNb=7
Mcu.Name=STM32F103T(8-B)Ux
Mcu.Package=VFQFPN36
Mcu.Pin0=PA6
Mcu.Pin1=PA7
Mcu.Pin10=PB3
Mcu.Pin11=PB4
Mcu.Pin12=PB5
Mcu.Pin13=PB6
Mcu.Pin14=PB7
Mcu.Pin15=VP_SYS_VS_Systick
Mcu.Pin2=PB0
Mcu.Pin3=PB1
Mcu.Pin4=PA8
Mcu.Pin5=PA9
Mcu.Pin6=PA11
Mcu.Pin7=PA12
Mcu.Pin8=PA13
Mcu.Pin9=PA14
Mcu.PinsNb=16
Mcu.UserConstants=
Mcu.UserName=STM32F103T8Ux
MxCube.Version=4.16.1
MxDb.Version=DB.4.0.161
NVIC.BusFault_IRQn=true\:0\:0\:false\:false\:true
NVIC.DebugMonitor_IRQn=true\:0\:0\:false\:false\:true
NVIC.HardFault_IRQn=true\:0\:0\:false\:false\:true
NVIC.MemoryManagement_IRQn=true\:0\:0\:false\:false\:true
NVIC.NonMaskableInt_IRQn=true\:0\:0\:false\:false\:true
NVIC.PendSV_IRQn=true\:0\:0\:false\:false\:true
NVIC.PriorityGroup=NVIC_PRIORITYGROUP_4
NVIC.SVCall_IRQn=true\:0\:0\:false\:false\:true
NVIC.SysTick_IRQn=true\:0\:0\:false\:false\:true
NVIC.UsageFault_IRQn=true\:0\:0\:false\:false\:true
PA11.Mode=Device
PA11.Signal=USB_DM
PA12.Mode=Device
PA12.Signal=USB_DP
PA13.Locked=true
PA13.Mode=Serial_Wire
PA13.Signal=SYS_JTMS-SWDIO
PA14.Locked=true
PA14.Mode=Serial_Wire
PA14.Signal=SYS_JTCK-SWCLK
PA6.GPIOParameters=GPIO_Label
PA6.GPIO_Label=K2
PA6.Locked=true
PA6.Signal=GPIO_Input
PA7.GPIOParameters=GPIO_Label
PA7.GPIO_Label=TMP36_INPUT
PA7.Locked=true
PA7.Signal=ADCx_IN7
PA8.GPIOParameters=GPIO_Label
PA8.GPIO_Label=OLED_RESET
PA8.Locked=true
PA8.Signal=GPIO_Output
PA9.GPIOParameters=GPIO_Label
PA9.GPIO_Label=K1
PA9.Locked=true
PA9.Signal=GPIO_Input
PB0.GPIOParameters=GPIO_Label
PB0.GPIO_Label=IRON_TEMP
PB0.Locked=true
PB0.Signal=ADCx_IN8
PB1.GPIOParameters=GPIO_Label
PB1.GPIO_Label=Vb_DC_VOLTAGE
PB1.Locked=true
PB1.Signal=ADCx_IN9
PB3.GPIOParameters=GPIO_Label
PB3.GPIO_Label=INT2
PB3.Locked=true
PB3.Signal=GPXTI3
PB4.GPIOParameters=GPIO_Label
PB4.GPIO_Label=Po_IRON_POWER_CONTROL
PB4.Locked=true
PB4.Signal=GPIO_Output
PB5.GPIOParameters=GPIO_Label
PB5.GPIO_Label=INT1
PB5.Locked=true
PB5.Signal=GPXTI5
PB6.Mode=I2C
PB6.Signal=I2C1_SCL
PB7.Mode=I2C
PB7.Signal=I2C1_SDA
PCC.Checker=false
PCC.Line=STM32F103
PCC.MCU=STM32F103T(8-B)Ux
PCC.MXVersion=4.16.1
PCC.PartNumber=STM32F103T8Ux
PCC.Seq0=0
PCC.Series=STM32F1
PCC.Temperature=25
PCC.Vdd=3.3
ProjectManager.AskForMigrate=true
ProjectManager.BackupPrevious=false
ProjectManager.CompilerOptimize=2
ProjectManager.ComputerToolchain=false
ProjectManager.CoupleFile=false
ProjectManager.DeletePrevious=true
ProjectManager.DeviceId=STM32F103T8Ux
ProjectManager.FirmwarePackage=STM32Cube FW_F1 V1.4.0
ProjectManager.FreePins=false
ProjectManager.HalAssertFull=true
ProjectManager.HeapSize=0x200
ProjectManager.KeepUserCode=true
ProjectManager.LastFirmware=true
ProjectManager.LibraryCopy=1
ProjectManager.PreviousToolchain=SW4STM32
ProjectManager.ProjectBuild=false
ProjectManager.ProjectFileName=TS100.ioc
ProjectManager.ProjectName=TS100
ProjectManager.StackSize=0x400
ProjectManager.TargetToolchain=SW4STM32
ProjectManager.ToolChainLocation=C\:\\Users\\Ralim\\Repo\\ts100\\TS100
ProjectManager.UnderRoot=true
ProjectManager.functionlistsort=1-MX_GPIO_Init-GPIO-false,2-MX_I2C1_Init-I2C1-false,3-MX_ADC2_Init-ADC2-false,4-MX_USB_PCD_Init-USB-false,5-MX_ADC1_Init-ADC1-false
RCC.ADCFreqValue=12000000
RCC.ADCPresc=RCC_ADCPCLK2_DIV4
RCC.AHBFreq_Value=48000000
RCC.APB1CLKDivider=RCC_HCLK_DIV2
RCC.APB1Freq_Value=24000000
RCC.APB1TimFreq_Value=48000000
RCC.APB2Freq_Value=48000000
RCC.APB2TimFreq_Value=48000000
RCC.FCLKCortexFreq_Value=48000000
RCC.FamilyName=M
RCC.HCLKFreq_Value=48000000
RCC.IPParameters=ADCFreqValue,ADCPresc,AHBFreq_Value,APB1CLKDivider,APB1Freq_Value,APB1TimFreq_Value,APB2Freq_Value,APB2TimFreq_Value,FCLKCortexFreq_Value,FamilyName,HCLKFreq_Value,MCOFreq_Value,PLLCLKFreq_Value,PLLMCOFreq_Value,PLLMUL,PLLSource,PLLSourceVirtual,SYSCLKFreq_VALUE,SYSCLKSource,TimSysFreq_Value,USBFreq_Value
RCC.MCOFreq_Value=48000000
RCC.PLLCLKFreq_Value=48000000
RCC.PLLMCOFreq_Value=24000000
RCC.PLLMUL=RCC_PLL_MUL12
RCC.PLLSource=RCC_PLLSOURCE_HSI_DIV2
RCC.PLLSourceVirtual=RCC_PLLSOURCE_HSI_DIV2
RCC.SYSCLKFreq_VALUE=48000000
RCC.SYSCLKSource=RCC_SYSCLKSOURCE_PLLCLK
RCC.TimSysFreq_Value=48000000
RCC.USBFreq_Value=48000000
SH.ADCx_IN7.0=ADC1_IN7,IN7
SH.ADCx_IN7.ConfNb=1
SH.ADCx_IN8.0=ADC1_IN8,IN8
SH.ADCx_IN8.ConfNb=1
SH.ADCx_IN9.0=ADC2_IN9,IN9
SH.ADCx_IN9.ConfNb=1
SH.GPXTI3.0=GPIO_EXTI3
SH.GPXTI3.ConfNb=1
SH.GPXTI5.0=GPIO_EXTI5
SH.GPXTI5.ConfNb=1
VP_SYS_VS_Systick.Mode=SysTick
VP_SYS_VS_Systick.Signal=SYS_VS_Systick
board=TS100

View File

@@ -1,245 +0,0 @@
<!doctype html>
<html>
<head>
<script src="https://cdn.jsdelivr.net/npm/vue/dist/vue.js"></script>
<script src="translations_commons.js"></script>
<title>TS100 Bitmap Editor</title>
<style>
.matrix {
display: inline-block;
padding: 0px 0px 1px 1px ;
background-color: #666;
margin-top: 1em;
margin-bottom: 1em;
}
.matrix * {
font-size:0;
}
.c {
margin:1px 1px 0px 0px;
display: inline-block;
background-color: #fff;
height:10px;
width: 10px;
}
.x {
background-color: #000;
}
.header {
}
.data input, .data textarea {
margin-top: 1em;
width: 100%;
}
.actions {
}
</style>
<script>
var ink, pressed, ev;
function mousedown(e) {
c = window.event.target;
classes = c.className.split(" ");
if (classes.indexOf("c")<0) {
return;
}
ink = classes.indexOf("x")<0;
pressed = true;
ev = e;
enter(e);
}
function mouseup(e) {
ev = e;
pressed = false;
}
function enter(e) {
if (!pressed) {
return;
}
ev = e;
c = window.event.target;
paint(c, ink);
stringFromMatrix();
}
function paint(c, ink) {
var cellInk = isInk(c);
if (ink) {
if (!cellInk) {
c.className += " x";
}
} else {
if (cellInk) {
c.className = "c";
}
}
}
function isInk(c) {
try {
var classes = c.className.split(" ");
return classes.indexOf("x") >= 0;
} catch(e) {
return false;
}
}
function getMatrix() {
return document.getElementById("matrix");
}
function getCoordinatesFromId(str) {
i = str.indexOf('_');
return {
row: parseInt(str.substring(1, i)),
col: parseInt(str.substring(i+1))
}
}
function clearMatrix() {
for (var r = 0; r < app.matrix.rows; r++) {
for (var c = 0; c < app.matrix.cols; c++) {
paint(getCell(r, c), false);
}
}
}
function getCell(row, col) {
return document.getElementById("C"+row+"_"+col);
}
function toMatrix(str) {
app.encodedData = str;
clearMatrix();
var strs = str.split(/[ ,]/);
var pair = false;
var c = 0;
var rs = 7;
for (var i = 0; i<strs.length; i++) {
var d = strs[i];
if (d.length > 0) {
if (startsWith(d, "0x")) {
v = parseInt(d.substring(2), 16);
} else {
v = parseInt(d);
}
sv = padLeft(v.toString(2), "0", 8);
for (r = 0; r < 8; r++) {
paint(getCell(rs - r, c), sv.charAt(r) == '1');
}
c++;
if (c >= app.matrix.cols) {
c = 0;
rs += 8;
}
}
}
}
function stringFromMatrix() {
var str = "";
var delim = "";
var blocks = app.matrix.rows / 8;
var rs = 7;
for (var block = 0; block < blocks; block++) {
for (var c = 0; c < app.matrix.cols; c++) {
var b = 0;
for (var r = 0; r < 8; r++) {
var cell = document.getElementById("C"+(rs-r)+"_"+c);
if (isInk(cell)) {
b |= (1 << (7-r));
}
}
str += delim + "0x" + padLeft(b.toString(16).toUpperCase(), "0", 2);
delim = ",";
}
rs += 8;
}
app.encodedData = str;
return str;
}
function start() {
app = new Vue({
el : '#app',
data : {
matrix: {
cols: 12,
rows: 16
},
type: "big",
encodedData: ""
},
methods : {
VtoMatrix : function(val) {
toMatrix(val);
},
VchangeSize : function() {
if (app.type == "big") {
app.matrix.cols = 12;
app.matrix.rows = 16;
} else if (app.type == "small") {
app.matrix.cols = 6;
app.matrix.rows = 8;
} else if (app.type == "icon") {
app.matrix.cols = 16;
app.matrix.rows = 16;
} else if (app.type == "icon24") {
app.matrix.cols = 24;
app.matrix.rows = 16;
} else if (app.type == "screen") {
app.matrix.cols = 84;
app.matrix.rows = 16;
} else if (app.type == "fullscreen") {
app.matrix.cols = 96;
app.matrix.rows = 16;
}
stringFromMatrix();
}
}
});
toMatrix("0x00,0xF0,0x08,0x0E,0x02,0x02,0x02,0x02,0x0E,0x08,0xF0,0x00,0x00,0x3F,0x40,0x5C,0x5C,0x5C,0x5C,0x5C,0x5C,0x40,0x3F,0x00");
}
window.onload=start;
</script>
</head>
<body>
<div id="app">
<div class="header">
<select v-model="type" v-on:change="VchangeSize()">
<option value="small">Small Font (6x8)</option>
<option value="big">Big Font (12x16)</option>
<option value="icon">Icon (16x16)</option>
<option value="icon24">Icon (24x16)</option>
<option value="screen">Screen (84x16)</option>
<option value="fullscreen">Full Screen (96x16)</option>
</select>
</div>
<div id="matrix" class="matrix" onmousedown="mousedown(this)" onmouseup="mouseup(this)" ondragstart="return false">
<div :id="'R'+(r-1)" class="r" v-for="r in matrix.rows">
<div :id="'C'+(r-1)+'_'+(c-1)" class="c" onmouseenter="enter(this)" v-for="c in matrix.cols"></div>
</div>
</div>
<div class="actions">
<input type="button" value="Clear" onclick="clearMatrix();stringFromMatrix()">
</div>
<div class="data">
<textarea v-model="encodedData" style="width:100%" v-on:change="VtoMatrix(encodedData)" rows=5>
</div>
</div>
</body>
</html>

View File

@@ -1,329 +0,0 @@
<!DOCTYPE html>
<html>
<head>
<meta charset="UTF-8">
<title>TS100 Translation Editor</title>
<script src="https://cdn.jsdelivr.net/npm/vue/dist/vue.js"></script>
<script src="translations_commons.js"></script>
<script src="translations_def.js"></script>
<script>
var app;
var defMap = {};
function save(){
saveJSON(app.current, "translation_"+app.current.languageCode.toLowerCase()+".json");
}
function view(){
showJSON(app.current, "translation_"+app.current.languageCode.toLowerCase()+".json");
}
function fileChanged(e) {
var target = e;
var id = target.id;
var file = target.files[0];
if (!file) {
return;
}
var fr = new FileReader();
fr.onload = function(e) {
try {
var json = JSON.parse(e.target.result);
} catch (ex) {
console.log(ex);
alert("Invalid JSON file: " + file.name);
return;
}
if (id == "referent-lang-file") {
if (checkTranslationFile(file.name)) {
app.referent = json;
app.meta.referentLoaded = true;
}
} else if (id == "current-lang-file") {
if (checkTranslationFile(file.name)) {
app.current = json;
if (!app.current.cyrillicGlyphs){
app.current.cyrillicGlyphs = false;
}
app.meta.currentLoaded = true;
}
}
synchronizeData();
}
fr.readAsText(file);
}
function synchronizeData() {
app.obsolete = {};
copyMissing(app.def.messages, app.referent.messages, app.current.messages);
copyMissing(app.def.characters, app.referent.characters, app.current.characters);
copyMissing(app.def.menuGroups, app.referent.menuGroups, app.current.menuGroups);
copyMissing(app.def.menuOptions, app.referent.menuOptions, app.current.menuOptions);
}
/**
* Copy all missing properties from referent to current
* for each entry in definition
*/
function copyMissing(defList, referentMap, currentMap) {
if (!isDefined(defList) || !isDefined(referentMap) || !isDefined(currentMap)) {
return;
}
var len = defList.length;
for (var i = 0; i < len; i++) {
var id = defList[i].id;
if (!isDefined(referentMap[id])) {
referentMap[id] = '';
}
if (!isDefined(currentMap[id])) {
currentMap[id] = referentMap[id];
}
}
processObsolete(defList, currentMap);
}
// Passes through all entries from the given map.
// If a corresponding entry is not found in the defList, it is removed from the map, and added into the obsolete map.
function processObsolete(defList, map) {
// Index list to map for faster search
var defMap = copyArrayToMap(defList);
Object.keys(map).forEach(function(key) {
if (!isDefined(defMap[key])) {
app.obsolete[key] = { id : key, value : map[key]};
delete map[key];
}
});
}
function length(obj, mode) {
if (!isDefined(mode) || mode == 0) {
// return direct length
return obj.length;
}
// return the longest length in text2 array
return Math.max(isDefinedNN(obj.text2[0]) ? obj.text2[0].length : 0, isDefinedNN(obj.text2[1]) ? obj.text2[1].length : 0);
}
function getAttribute(obj, attribute) {
var d = "2";
var v = obj[attribute+d];
if (isDefined(v))
return v;
return obj[attribute];
}
function loaded() {
app = new Vue({
el : '#app',
data : {
meta : {
referentLoaded : false,
currentLoaded : false,
},
def : {
},
referent : {
messages : {}
},
current : {
loaded: false,
},
obsolete : {},
},
methods : {
validateInput: function(valMap, id, mode) {
var d = defMap[id];
var vLen = 0;
if (!isDefined(mode))
mode = 0;
try {
// Sum for complex length
for (var i = 0; i < d.lenSum.fields.length; i++) {
vLen += length(valMap[d.lenSum.fields[i]], mode);
}
d = d.lenSum;
} catch (e) {
// Single field length
vLen = length(valMap[id], mode);
}
var maxLen = getAttribute(d, 'maxLen', mode == 2);
var minLen = getAttribute(d, 'minLen', mode == 2);
var len = getAttribute(d, 'len', mode == 2);
if (isNumber(maxLen) && vLen > maxLen
|| isNumber(minLen) && vLen < minLen
|| isNumber(len) && vLen != len
) {
return "invalid";
}
},
constraintString: function(e) {
var str = "";
var delim = "";
var v;
d = "2";
if (isDefinedNN(e.lenSum)) {
str = "len("+(e.lenSum.fields+"").replace(/,/g," + ")+") -> ";
e = e.lenSum;
}
v = getAttribute(e, 'len', d);
if (isNumber(v)) {
str += delim + "len=" + v;
delim = " and ";
}
v = getAttribute(e, 'minLen', d);
if (isNumber(v)) {
str += delim + "len>=" + v;
delim = " and ";
}
v = getAttribute(e, 'maxLen', d);
if (isNumber(v)) {
str += delim + "len<=" + v;
delim = " and ";
}
return str;
}
}
});
app.def = def;
copyArrayToMap(app.def.messages, defMap);
copyArrayToMap(app.def.characters, defMap);
copyArrayToMap(app.def.menuGroups, defMap);
copyArrayToMap(app.def.menuOptions, defMap);
}
window.onload=loaded;
</script>
<link href="translations.css" rel="stylesheet" type="text/css">
</head>
<body>
<div id="app">
<h1>TS100 Translation Editor<span v-if="meta.currentLoaded"> - {{ current.languageLocalName }} [{{current.languageCode}}]</span></h1>
<table class="header data">
<tr>
<td class="label">Referent Language</td>
<td class="value">
<input type="file" id="referent-lang-file" onchange="fileChanged(this)" accept=".json">
<span class="selected" v-if="meta.referentLoaded">{{ referent.languageLocalName }} [{{referent.languageCode}}]</span>
</td>
</tr>
<tr v-if="meta.referentLoaded">
<td class="label">Current Language</td>
<td class="value">
<input type="file" id="current-lang-file" onchange="fileChanged(this)" accept=".json">
<span class="selected" v-if="meta.currentLoaded">{{ current.languageLocalName }} [{{current.languageCode}}]</span>
</td>
</tr>
<tr v-if="meta.currentLoaded">
<td class="label">Local Language Code</td>
<td class="value"><input type="text" v-model="current.languageCode" maxlength="8" v-on:change="current.languageCode=current.languageCode.toUpperCase()" class="short"></td>
</tr>
<tr v-if="meta.currentLoaded">
<td class="label">Local Language Name</td>
<td class="value"><input type="text" v-model="current.languageLocalName" class="short"></td>
</tr>
<tr v-if="meta.currentLoaded">
<td class="label">Font table to use</td>
<td class="value">
<select v-model="current.cyrillicGlyphs" v-on:change="current.cyrillicGlyphs = current.cyrillicGlyphs=='true'">
<option value="false">Latin Extended</option>
<option value="true">Cyrillic Glyphs</option>
</select>
</td>
</tr>
</table>
<div v-if="def.messages && referent.messages && current.messages">
<div class="footer">
<input type="button" value="Save" onclick="save()">
<input type="button" value="View" onclick="view()">
</div>
<div v-if="Object.keys(obsolete).length > 0">
<h2>Obsolete</h2>
<table class="data">
<tr v-for="entry in obsolete">
<td class="label"><div class="stringId">{{entry.id}}</div></td>
<td class="value"><div class="ref">{{entry.value}}</div></td>
</tr>
</table>
</div>
<h2>Messages and Strings</h2>
<table class="data">
<tr v-for="message in def.messages" v-bind:class="validateInput(current.messages, message.id)">
<td class="label"><div class="stringId">{{message.id}}</div></td>
<td class="value">
<div class="constraint">{{constraintString(message)}}</div>
<div class="ref">{{referent.messages[message.id]}}</div>
<div class="note" v-if="message.note">{{message.note}}</div>
<div class="tran"><input :id="'in_'+message.id" type="text" v-model="current.messages[message.id]" v-bind:class="{unchanged : current.messages[message.id] == referent.messages[message.id], empty : current.messages[message.id]==''}"></div>
</td>
</tr>
</table>
<h2>Characters</h2>
<table class="data">
<tr v-for="char in def.characters" v-bind:class="validateInput(current.characters, char.id)">
<td class="label"><div class="stringId">{{char.id}}</div></td>
<td class="value">
<div class="constraint">{{constraintString(char)}}</div>
<div class="ref">{{referent.characters[char.id]}}</div>
<div class="tran"><input type="text" v-model="current.characters[char.id]" v-bind:class="{unchanged : current.characters[char.id] == referent.characters[char.id], empty : current.characters[char.id].length != 1}"></div>
</td>
</tr>
</table>
<h2>Menu Groups</h2>
<table class="data">
<tr v-for="menu in def.menuGroups" v-bind:class="validateInput(current.menuGroups, menu.id, 2)">
<td class="label"><div class="stringId">{{menu.id}}</div></td>
<td class="value">
<div class="label">Menu Name</div>
<div class="constraint">{{constraintString(menu)}}</div>
<div class="ref">{{referent.menuGroups[menu.id].text2}}</div>
<div class="tran" v-bind:class="{unchanged : current.menuGroups[menu.id].text2[0] == referent.menuGroups[menu.id].text2[0] && current.menuGroups[menu.id].text2[1] == referent.menuGroups[menu.id].text2[1], empty : current.menuGroups[menu.id].text2[0] == '' || current.menuGroups[menu.id].text2[1] == ''}"><input type="text" v-model="current.menuGroups[menu.id].text2[0]"><input type="text" v-model="current.menuGroups[menu.id].text2[1]"></div>
<div class="label">Description</div>
<div class="ref">{{referent.menuGroups[menu.id].desc}}</div>
<div class="tran"><input type="text" v-model="current.menuGroups[menu.id].desc" v-bind:class="{unchanged : current.menuGroups[menu.id].desc == referent.menuGroups[menu.id].desc, empty : current.menuGroups[menu.id].desc == ''}"></div>
</td>
</tr>
</table>
<h2>Menu Options</h2>
<table class="data">
<tr v-for="menu in def.menuOptions" v-bind:class="validateInput(current.menuOptions, menu.id, 2)">
<td class="label"><div class="stringId">{{menu.id}}</div></td>
<td class="value">
<div v-bind:class="{hidden : false}">
<div class="label">Menu Name (Double-Line)</div>
<div class="constraint">{{constraintString(menu)}}</div>
<div class="ref">{{referent.menuOptions[menu.id].text2}}</div>
<div class="tran" v-bind:class="{unchanged : current.menuOptions[menu.id].text2[0] == referent.menuOptions[menu.id].text2[0] && current.menuOptions[menu.id].text2[1] == referent.menuOptions[menu.id].text2[1], empty : current.menuOptions[menu.id].text2[0] == '' || current.menuOptions[menu.id].text2[1] == ''}"><input type="text" v-model="current.menuOptions[menu.id].text2[0]"><input type="text" v-model="current.menuOptions[menu.id].text2[1]"></div>
</div>
<div class="label">Description</div>
<div class="ref">{{referent.menuOptions[menu.id].desc}}</div>
<div class="tran"><input type="text" v-model="current.menuOptions[menu.id].desc" v-bind:class="{unchanged : current.menuOptions[menu.id].desc == referent.menuOptions[menu.id].desc, empty : current.menuOptions[menu.id].desc == ''}"></div>
</td>
</tr>
</table>
<div class="footer">
<input type="button" value="Save" onclick="save()">
<input type="button" value="View" onclick="view()">
</div>
</div>
</div>
</body>
</html>

View File

@@ -1,322 +0,0 @@
<!DOCTYPE html>
<html>
<head>
<meta charset="UTF-8">
<title>TS100 Translation Parser</title>
<script src="https://cdn.jsdelivr.net/npm/vue/dist/vue.js"></script>
<script src="translations_commons.js"></script>
<script src="translations_def.js"></script>
<script>
var app;
var defMap = {};
var langMap = {};
var lang;
var defMsgMap;
var defCharMap;
var defGrpMap;
var defOptMap;
function save(langCode){
saveJSON(langMap[langCode], "translation_"+langCode.toLowerCase()+".json");
}
function view(langCode){
showJSON(langMap[langCode], "translation_"+langCode.toLowerCase()+".json");
}
function translationFileSelected(e) {
var target = e;
var id = target.id;
var file = target.files[0];
if (!file) {
return;
}
var fr = new FileReader();
fr.onload = function(e) {
parseTranslationFile(file.name, e.target.result);
}
fr.readAsText(file);
}
function parseTranslationFile(name, src) {
// remove multiline comments
src = src.replace(/\/\*[\s\S.]*?\*\//mg, "");
// remove single-line comments
src = src.replace(/\/\/.*/mg, "");
// remove empty lines
src = src.replace(/^\s*\n/gm, "");
var langCode = "";
var srcLines = src.split("\n");
var reMessage = /const\s+char\s*\*\s+([\w\d]+)\s*=\s*"(.*)"/;
var reSettingsDescStart = /const\s+char\s*\*\s+SettingsDescriptions\[/;
var reSettingsNamesStart = /const\s+char\s*\*\s+SettingsShortNames\[/;
var reSettingsMenuDescStart = /const\s+char\s*\*\s+SettingsMenuEntriesDescriptions\[/;
var reChar = /const\s+char\s+([\w\d]+)\s*=\s*'(\w)'/;
var reMenuMode = /SettingsShortNameType\s*=\s*SHORT_NAME_(\w+)_LINE/;
var reMenuStart = /\s*const\s+char\s*\*\s+SettingsMenuEntries\[/;
// var reString = /^\s*"(.*)"/;
var reString = /"(.*)"/;
var reSingleLine = /{\s*"(.*)"\s*}/;
var reDoubleLine = /{\s*"(.*)"\s*,\s*"(.*)"\s*}/;
var mode = '';
var entryIndex = 0;
for (var li = 0; li < srcLines.length; li++) {
// trim lines
line = srcLines[li] = srcLines[li].trim();
// if entering a new lang block
if (startsWith(line, "#ifdef LANG_")) {
mode = 'new-language';
langCode = line.substring(12);
lang = langMap[langCode];
// use existing or instantiate new
if (!isDefined(lang)) {
lang = {
languageCode: langCode,
cyrillicGlyphs: false,
messages: {},
characters: {},
menuGroups: {},
menuOptions: {}
};
langMap[langCode] = lang;
app.languages[app.languages.length] = langCode;
}
entryIndex = 0;
continue;
}
// Use Cyrillic glyphs
if (startsWith(line, "#define CYRILLIC_GLYPHS")) {
lang.cyrillicGlyphs = true;
entryIndex = 0;
continue;
}
// Menu type
reMenuMode.lastIndex = 0;
match = reMenuMode.exec(line);
if (match) {
entryIndex = 0;
continue;
}
// Messages
reMessage.lastIndex = 0;
match = reMessage.exec(line);
if (match) {
lang.messages[match[1]] = xunescape(match[2]);
entryIndex = 0;
continue;
}
// Chars descriptions
reChar.lastIndex = 0;
match = reChar.exec(line);
if (match) {
// found description block start
mode = 'char';
lang.characters[match[1]] = xunescape(match[2]);
entryIndex = 0;
continue;
}
// Settings descriptions
reSettingsDescStart.lastIndex = 0;
match = reSettingsDescStart.exec(line);
if (match) {
// found description block start
mode = 'settingsDesc';
entryIndex = 0;
continue;
}
reSettingsNamesStart.lastIndex = 0;
match = reSettingsNamesStart.exec(line);
if (match) {
// found description block start
mode = 'settingsNames';
entryIndex = 0;
continue;
}
reMenuStart.lastIndex = 0;
match = reMenuStart.exec(line);
if (match) {
// found description block start
mode = 'menu';
entryIndex = 0;
continue;
}
reSettingsMenuDescStart.lastIndex = 0;
match = reSettingsMenuDescStart.exec(line);
if (match) {
// found description block start
mode = 'menuDesc';
entryIndex = 0;
continue;
}
if (mode == 'menu') {
// processing menu group names
reString.lastIndex = 0;
match = reString.exec(line);
if (match) {
// found description string
var entry = getMenuGroup(entryIndex);
var m = match[1].split("\\n");
entry.text2[0] = xunescape(m[0]);
entry.text2[1] = xunescape(m[1]);
entryIndex++;
}
} else if (mode == 'menuDesc') {
// processing menu group descriptions
reString.lastIndex = 0;
match = reString.exec(line);
if (match) {
// found description string
var entry = getMenuGroup(entryIndex);
entry.desc = xunescape(match[1]);
entryIndex++;
}
} else if (mode == 'settingsDesc') {
// processing option descriptions
reString.lastIndex = 0;
match = reString.exec(line);
if (match) {
// found description string
var entry = getMenuOption(entryIndex);
entry.desc = xunescape(match[1]);
entryIndex++;
}
} else if (mode == 'settingsNames') {
reDoubleLine.lastIndex = 0;
match = reDoubleLine.exec(line);
if (match) {
var entry = getMenuOption(entryIndex);
entry.text2[0] = xunescape(match[1]);
entry.text2[1] = xunescape(match[2]);
entryIndex++;
} else {
reSingleLine.lastIndex = 0;
match = reSingleLine.exec(line);
if (match) {
var entry = getMenuOption(entryIndex);
entry.text = xunescape(match[1]);
entryIndex++;
}
}
}
}
app.done = 1;
}
function getMenuOption(entryIndex) {
var optionDef = def.menuOptions[entryIndex];
if (!isDefined(optionDef)) {
var s = "Could not find menu option with index "+entryIndex;
alert(s);
throw s;
}
var id = optionDef.id;
var entry = lang.menuOptions[id];
if (!isDefined(entry)) {
entry =
{
"text2": ["", ""],
"desc": ""
}
lang.menuOptions[id] = entry;
}
return entry;
}
function getMenuGroup(entryIndex) {
var optionDef = def.menuGroups[entryIndex];
if (!isDefined(optionDef)) {
var s = "Could not find menu group with index "+entryIndex;
alert(s);
throw s;
}
var id = optionDef.id;
var entry = lang.menuGroups[id];
if (!isDefined(entry)) {
entry =
{
"text2": ["", ""],
"desc": ""
}
lang.menuGroups[id] = entry;
}
return entry;
}
function markSaved(lang) {
document.getElementById("row_"+lang).classList.add("saved");
}
function loaded() {
app = new Vue({
el : '#app',
data : {
languages: [],
done : false,
def : {
}
},
methods : {
vSave : function(lang) {
save(lang);
markSaved(lang);
},
vView : function(lang) {
view(lang);
markSaved(lang);
}
}
});
app.def = def;
defMsgMap = copyArrayToMap(app.def.messages);
defCharMap = copyArrayToMap(app.def.characters);
defGrpMap = copyArrayToMap(app.def.menuGroups);
defOptMap = copyArrayToMap(app.def.menuOptions);
}
window.onload=loaded;
</script>
<link href="translations.css" rel="stylesheet" type="text/css">
</head>
<body>
<div id="app">
<h1>TS100 Translation Parser</h1>
<table class="header data">
<tr>
<td class="label">Translation.cpp</td>
<td class="value">
<input type="file" id="translation-cpp-file" onchange="translationFileSelected(this)" accept=".cpp">
</td>
</tr>
</table>
<div class="data" v-if="done">
<div class="value" v-for="lang in languages" :id="'row_'+lang">
<input type="button" :value="'Save '+lang" v-on:click="vSave(lang)">
<input type="button" :value="'View '+lang" v-on:click="vView(lang)">
</div>
</div>
</div>
</body>
</html>

View File

@@ -1,830 +0,0 @@
# coding=utf-8
def getFontMap():
font = {
" ": "0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,",
"!": "0x00,0x00,0x00,0x00,0x7C,0xFF,0xFF,0x7C,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x33,0x33,0x00,0x00,0x00,0x00,0x00,",
'"': "0x00,0x00,0x00,0x3C,0x3C,0x00,0x00,0x3C,0x3C,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,",
"#": "0x00,0x00,0x10,0x90,0xF0,0x7E,0x1E,0x90,0xF0,0x7E,0x1E,0x10,0x00,0x02,0x1E,0x1F,0x03,0x02,0x1E,0x1F,0x03,0x02,0x00,0x00,",
"$": "0x00,0x00,0x78,0xFC,0xCC,0xFF,0xFF,0xCC,0xCC,0x88,0x00,0x00,0x00,0x00,0x04,0x0C,0x0C,0x3F,0x3F,0x0C,0x0F,0x07,0x00,0x00,",
"%": "0x00,0x00,0x38,0x38,0x38,0x00,0x80,0xC0,0xE0,0x70,0x38,0x1C,0x00,0x30,0x38,0x1C,0x0E,0x07,0x03,0x01,0x38,0x38,0x38,0x00,",
"&": "0x00,0x00,0x00,0xB8,0xFC,0xC6,0xE2,0x3E,0x1C,0x00,0x00,0x00,0x00,0x00,0x1F,0x3F,0x31,0x21,0x37,0x1E,0x1C,0x36,0x22,0x00,",
"'": "0x00,0x00,0x00,0x00,0x27,0x3F,0x1F,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,",
"(": "0x00,0x00,0x00,0xF0,0xFC,0xFE,0x07,0x01,0x01,0x00,0x00,0x00,0x00,0x00,0x00,0x03,0x0F,0x1F,0x38,0x20,0x20,0x00,0x00,0x00,",
"(": "0x00,0x00,0x00,0xF0,0xFC,0xFE,0x07,0x01,0x01,0x00,0x00,0x00,0x00,0x00,0x00,0x03,0x0F,0x1F,0x38,0x20,0x20,0x00,0x00,0x00,",
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"{": "0x00,0x00,0x80,0xC0,0xFC,0x7E,0x07,0x03,0x03,0x03,0x00,0x00,0x00,0x00,0x00,0x01,0x1F,0x3F,0x70,0x60,0x60,0x60,0x00,0x00,",
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"¤": "0x00,0xF6,0xFE,0x18,0x0C,0x0C,0x0C,0x0C,0x18,0xFE,0xF6,0x00,0x00,0x1B,0x1F,0x06,0x0C,0x0C,0x0C,0x0C,0x06,0x1F,0x1B,0x00,",
"¥": "0x00,0x03,0x0F,0x3C,0xF0,0xC0,0xC0,0xF0,0x3C,0x0F,0x03,0x00,0x00,0x00,0x0A,0x0A,0x0A,0x3F,0x3F,0x0A,0x0A,0x0A,0x00,0x00,",
"¦": "0x00,0x00,0x00,0x00,0x00,0x1F,0x1F,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x00,0x00,",
"§": "0x00,0x00,0xDC,0xFE,0x22,0x22,0x22,0x22,0xE6,0xC4,0x00,0x00,0x00,0x00,0x08,0x19,0x11,0x11,0x11,0x11,0x1F,0x0E,0x00,0x00,",
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"©": "0x00,0xF0,0xF8,0x1C,0xCC,0xEC,0x2C,0x6C,0x4C,0x1C,0xF8,0xF0,0x00,0x07,0x0F,0x1C,0x19,0x1B,0x1A,0x1B,0x19,0x1C,0x0F,0x07,",
"«": "0x00,0x80,0xC0,0x60,0x20,0x00,0x80,0xC0,0x60,0x20,0x00,0x00,0x00,0x00,0x01,0x03,0x02,0x00,0x00,0x01,0x03,0x02,0x00,0x00,",
"¬": "0x18,0x18,0x18,0x18,0x18,0x18,0x18,0x18,0x18,0xF8,0xF8,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x03,0x03,0x00,",
"®": "0x00,0xF0,0xF8,0x1C,0xEC,0xEC,0xAC,0xEC,0x4C,0x1C,0xF8,0xF0,0x00,0x07,0x0F,0x1C,0x1B,0x1B,0x18,0x1B,0x1B,0x1C,0x0F,0x07,",
"¯": "0x00,0x00,0x00,0x00,0x00,0x0C,0x0C,0x0C,0x0C,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,",
"°": "0x00,0x00,0x00,0x1E,0x3F,0x33,0x33,0x3F,0x1E,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,",
"±": "0x00,0x00,0x00,0xC0,0xC0,0xF0,0xF0,0xC0,0xC0,0x00,0x00,0x00,0x00,0x00,0x00,0x18,0x18,0x1B,0x1B,0x18,0x18,0x00,0x00,0x00,",
"²": "0x00,0x00,0x19,0x1D,0x15,0x17,0x12,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,",
"³": "0x00,0x00,0x11,0x15,0x15,0x1F,0x0A,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,",
"´": "0x00,0x00,0x00,0x00,0x04,0x06,0x03,0x01,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,",
"µ": "0x00,0xF0,0xF0,0x00,0x00,0x00,0x00,0x00,0xF0,0xF0,0x00,0x00,0x00,0xFF,0xFF,0x0E,0x0C,0x0C,0x0C,0x06,0x0F,0x0F,0x00,0x00,",
"": "0x00,0x38,0x7C,0xC6,0x82,0xFE,0xFE,0x02,0xFE,0xFE,0x02,0x00,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x00,0x3F,0x3F,0x00,0x00,",
"¹": "0x00,0x00,0x12,0x1F,0x1F,0x10,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,",
"»": "0x00,0x20,0x60,0xC0,0x80,0x00,0x20,0x60,0xC0,0x80,0x00,0x00,0x00,0x02,0x03,0x01,0x00,0x00,0x02,0x03,0x01,0x00,0x00,0x00,",
"¼": "0x00,0x48,0x7C,0x7C,0x40,0x80,0xC0,0x60,0x30,0x10,0x00,0x00,0x00,0x00,0x04,0x06,0x03,0x01,0x06,0x07,0x04,0x1F,0x1F,0x00,",
"½": "0x00,0x48,0x7C,0x7C,0x40,0x80,0xC0,0x60,0x30,0x10,0x00,0x00,0x00,0x00,0x04,0x06,0x03,0x01,0x00,0x19,0x1D,0x17,0x12,0x00,",
"¾": "0x00,0x44,0x54,0x7C,0x28,0x80,0xC0,0x60,0x30,0x10,0x00,0x00,0x00,0x00,0x04,0x06,0x03,0x01,0x06,0x07,0x04,0x1F,0x1F,0x00,",
"¿": "0x00,0x00,0x00,0x80,0xC0,0xFB,0x7B,0x00,0x00,0x00,0x00,0x00,0x00,0x0E,0x1F,0x3B,0x31,0x30,0x30,0x30,0x38,0x1E,0x0E,0x00,",
"À": "0x00,0x00,0x00,0x80,0xE1,0x7B,0x7E,0xE4,0x80,0x00,0x00,0x00,0x00,0x38,0x3E,0x0F,0x0D,0x0C,0x0C,0x0D,0x0F,0x3E,0x38,0x00,",
"Á": "0x00,0x00,0x00,0x80,0xE4,0x7E,0x7B,0xE1,0x80,0x00,0x00,0x00,0x00,0x38,0x3E,0x0F,0x0D,0x0C,0x0C,0x0D,0x0F,0x3E,0x38,0x00,",
"Â": "0x00,0x00,0x00,0x84,0xE6,0x7B,0x7B,0xE6,0x84,0x00,0x00,0x00,0x00,0x38,0x3E,0x0F,0x0D,0x0C,0x0C,0x0D,0x0F,0x3E,0x38,0x00,",
"Ã": "0x00,0x00,0x00,0x82,0xE3,0x79,0x7B,0xE2,0x83,0x01,0x00,0x00,0x00,0x38,0x3E,0x0F,0x0D,0x0C,0x0C,0x0D,0x0F,0x3E,0x38,0x00,",
"Ä": "0x00,0x00,0x00,0x83,0xE3,0x78,0x78,0xE3,0x83,0x00,0x00,0x00,0x00,0x38,0x3E,0x0F,0x0D,0x0C,0x0C,0x0D,0x0F,0x3E,0x38,0x00,",
"Å": "0x00,0x00,0x00,0x80,0xE2,0x75,0x75,0xE2,0x80,0x00,0x00,0x00,0x00,0x38,0x3E,0x0F,0x0D,0x0C,0x0C,0x0D,0x0F,0x3E,0x38,0x00,",
"Æ": "0x00,0x00,0x80,0xF0,0x7C,0x1F,0xFF,0xFF,0xC3,0xC3,0x03,0x00,0x00,0x3C,0x3F,0x07,0x06,0x06,0x3F,0x3F,0x30,0x30,0x30,0x00,",
"Ç": "0x00,0xF0,0xFC,0x0E,0x07,0x03,0x03,0x03,0x07,0x1E,0x1C,0x00,0x00,0x01,0x07,0xCE,0xDC,0xF8,0xF8,0x18,0x1C,0x0E,0x06,0x00,",
"È": "0x00,0xF8,0xF8,0x99,0x9B,0x9E,0x9C,0x98,0x98,0x18,0x18,0x00,0x00,0x3F,0x3F,0x31,0x31,0x31,0x31,0x31,0x31,0x30,0x30,0x00,",
"É": "0x00,0xF8,0xF8,0x98,0x98,0x9C,0x9E,0x9B,0x99,0x18,0x18,0x00,0x00,0x3F,0x3F,0x31,0x31,0x31,0x31,0x31,0x31,0x30,0x30,0x00,",
"Ê": "0x00,0xF8,0xF8,0x9C,0x9E,0x9B,0x9B,0x9E,0x9C,0x18,0x18,0x00,0x00,0x3F,0x3F,0x31,0x31,0x31,0x31,0x31,0x31,0x30,0x30,0x00,",
"Ë": "0x00,0xF8,0xF8,0x9B,0x9B,0x98,0x98,0x9B,0x9B,0x18,0x18,0x00,0x00,0x3F,0x3F,0x31,0x31,0x31,0x31,0x31,0x31,0x30,0x30,0x00,",
"Ì": "0x00,0x00,0x00,0x19,0x1B,0xFE,0xFC,0x18,0x18,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"Í": "0x00,0x00,0x00,0x18,0x18,0xFC,0xFE,0x1B,0x19,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"Î": "0x00,0x00,0x00,0x1C,0x1E,0xFB,0xFB,0x1E,0x1C,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"Ï": "0x00,0x00,0x00,0x1B,0x1B,0xF8,0xF8,0x1B,0x1B,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"Ð": "0x00,0xC0,0xFF,0xFF,0xC3,0x03,0x03,0x07,0x0E,0xFC,0xF0,0x00,0x00,0x00,0x3F,0x3F,0x30,0x30,0x30,0x38,0x1C,0x0F,0x03,0x00,",
"Ñ": "0x00,0xF8,0xF8,0x72,0xE3,0xC1,0x83,0x02,0x03,0xF9,0xF8,0x00,0x00,0x3F,0x3F,0x00,0x00,0x01,0x03,0x07,0x0E,0x3F,0x3F,0x00,",
"Ò": "0x00,0xE0,0xF0,0x39,0x1B,0x1E,0x1C,0x18,0x38,0xF0,0xE0,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x38,0x1F,0x0F,0x00,",
"Ó": "0x00,0xE0,0xF0,0x38,0x18,0x1C,0x1E,0x1B,0x39,0xF0,0xE0,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x38,0x1F,0x0F,0x00,",
"Ô": "0x00,0xE0,0xF0,0x3C,0x1E,0x1B,0x1B,0x1E,0x3C,0xF0,0xE0,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x38,0x1F,0x0F,0x00,",
"Õ": "0x00,0xE0,0xF0,0x3A,0x1B,0x19,0x1B,0x1A,0x3B,0xF1,0xE0,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x38,0x1F,0x0F,0x00,",
"Ö": "0x00,0xE0,0xF0,0x3B,0x1B,0x18,0x18,0x1B,0x3B,0xF0,0xE0,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x38,0x1F,0x0F,0x00,",
"×": "0x00,0xF0,0xF8,0x1C,0x0C,0x8C,0xEC,0x7C,0x18,0xFC,0xF4,0x00,0x00,0x2F,0x3F,0x18,0x3E,0x37,0x31,0x30,0x38,0x1F,0x0F,0x00,",
"Ù": "0x00,0xF8,0xF8,0x01,0x03,0x06,0x04,0x00,0x00,0xF8,0xF8,0x00,0x00,0x07,0x1F,0x38,0x30,0x30,0x30,0x30,0x38,0x1F,0x07,0x00,",
"Ú": "0x00,0xF8,0xF8,0x00,0x00,0x04,0x06,0x03,0x01,0xF8,0xF8,0x00,0x00,0x07,0x1F,0x38,0x30,0x30,0x30,0x30,0x38,0x1F,0x07,0x00,",
"Û": "0x00,0xF8,0xF8,0x04,0x06,0x03,0x03,0x06,0x04,0xF8,0xF8,0x00,0x00,0x07,0x1F,0x38,0x30,0x30,0x30,0x30,0x38,0x1F,0x07,0x00,",
"Ü": "0x00,0xF8,0xF8,0x03,0x03,0x00,0x00,0x03,0x03,0xF8,0xF8,0x00,0x00,0x07,0x1F,0x38,0x30,0x30,0x30,0x30,0x38,0x1F,0x07,0x00,",
"Ý": "0x00,0x08,0x18,0x30,0x60,0xC4,0xC6,0x63,0x31,0x18,0x08,0x00,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x00,0x00,",
"ß": "0x00,0x00,0xC0,0xE0,0x30,0x10,0x10,0x30,0xE0,0xC0,0x00,0x00,0x00,0x00,0xFF,0xFF,0x21,0x21,0x21,0x33,0x3F,0x1E,0x00,0x00,",
"à": "0x00,0x00,0x40,0x60,0x62,0x66,0x6C,0x68,0x60,0xE0,0xC0,0x00,0x00,0x1C,0x3E,0x33,0x33,0x33,0x33,0x33,0x33,0x3F,0x3F,0x00,",
"á": "0x00,0x00,0x40,0x60,0x68,0x6C,0x66,0x62,0x60,0xE0,0xC0,0x00,0x00,0x1C,0x3E,0x33,0x33,0x33,0x33,0x33,0x33,0x3F,0x3F,0x00,",
"â": "0x00,0x00,0x40,0x68,0x6C,0x66,0x66,0x6C,0x68,0xE0,0xC0,0x00,0x00,0x1C,0x3E,0x33,0x33,0x33,0x33,0x33,0x33,0x3F,0x3F,0x00,",
"ã": "0x00,0x00,0x40,0x68,0x6C,0x64,0x6C,0x68,0x6C,0xE4,0xC0,0x00,0x00,0x1C,0x3E,0x33,0x33,0x33,0x33,0x33,0x33,0x3F,0x3F,0x00,",
"ä": "0x00,0x00,0x40,0x6C,0x6C,0x60,0x60,0x6C,0x6C,0xE0,0xC0,0x00,0x00,0x1C,0x3E,0x33,0x33,0x33,0x33,0x33,0x33,0x3F,0x3F,0x00,",
"å": "0x00,0x00,0x40,0x60,0x64,0x6A,0x6A,0x64,0x60,0xE0,0xC0,0x00,0x00,0x1C,0x3E,0x33,0x33,0x33,0x33,0x33,0x33,0x3F,0x3F,0x00,",
"æ": "0x00,0x80,0xC0,0x40,0x40,0xC0,0x80,0x40,0x40,0xC0,0x80,0x00,0x00,0x1C,0x3E,0x22,0x22,0x1F,0x3F,0x22,0x22,0x33,0x11,0x00,",
"ç": "0x00,0x80,0xC0,0xE0,0x60,0x60,0x60,0x60,0xE0,0xC0,0x80,0x00,0x00,0x0F,0x1F,0xB8,0xB0,0xF0,0xF0,0x30,0x38,0x18,0x08,0x00,",
"è": "0x00,0x80,0xC0,0xE0,0x62,0x66,0x6C,0x68,0x60,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x33,0x33,0x33,0x33,0x33,0x33,0x13,0x03,0x00,",
"é": "0x00,0x80,0xC0,0xE0,0x60,0x68,0x6C,0x66,0x62,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x3B,0x33,0x33,0x33,0x33,0x33,0x13,0x03,0x00,",
"ê": "0x00,0x80,0xC0,0xE8,0x6C,0x66,0x66,0x6C,0x68,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x33,0x33,0x33,0x33,0x33,0x33,0x13,0x03,0x00,",
"ë": "0x00,0x80,0xC0,0xEC,0x6C,0x60,0x60,0x6C,0x6C,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x33,0x33,0x33,0x33,0x33,0x33,0x13,0x03,0x00,",
"ì": "0x00,0x00,0x00,0x00,0x62,0xE6,0xEC,0x08,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"í": "0x00,0x00,0x00,0x00,0x68,0xEC,0xE6,0x02,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"î": "0x00,0x00,0x00,0x08,0x6C,0xE6,0xE6,0x0C,0x08,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"ï": "0x00,0x00,0x00,0x0C,0x6C,0xE0,0xEC,0x0C,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"ñ": "0x00,0x00,0xE0,0xE8,0x6C,0x64,0x6C,0x68,0xEC,0xC4,0x80,0x00,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x00,",
"ò": "0x00,0x80,0xC0,0xE0,0x62,0x66,0x6C,0x68,0xE0,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x38,0x1F,0x0F,0x00,",
"ó": "0x00,0x80,0xC0,0xE0,0x68,0x6C,0x66,0x62,0xE0,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x38,0x1F,0x0F,0x00,",
"ô": "0x00,0x80,0xC0,0xE8,0x6C,0x66,0x66,0x6C,0xE8,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x38,0x1F,0x0F,0x00,",
"õ": "0x00,0x80,0xC8,0xEC,0x64,0x6C,0x68,0x6C,0xE4,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x38,0x1F,0x0F,0x00,",
"ö": "0x00,0x80,0xC0,0xEC,0x6C,0x60,0x60,0x6C,0xEC,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x38,0x1F,0x0F,0x00,",
"÷": "0x00,0x00,0x80,0x80,0x80,0xB0,0xB0,0x80,0x80,0x80,0x00,0x00,0x00,0x00,0x01,0x01,0x01,0x0D,0x0D,0x01,0x01,0x01,0x00,0x00,",
"ø": "0x00,0x80,0xC0,0xE0,0x60,0x60,0x60,0xE0,0xC0,0xE0,0xA0,0x00,0x00,0x2F,0x3F,0x18,0x3C,0x36,0x33,0x31,0x38,0x1F,0x0F,0x00,",
"ù": "0x00,0xE0,0xE0,0x00,0x02,0x06,0x0C,0x08,0x00,0xE0,0xE0,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x18,0x3F,0x3F,0x00,",
"ú": "0x00,0xE0,0xE0,0x00,0x08,0x0C,0x06,0x02,0x00,0xE0,0xE0,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x18,0x3F,0x3F,0x00,",
"û": "0x00,0xE0,0xE0,0x08,0x0C,0x06,0x06,0x0C,0x08,0xE0,0xE0,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x18,0x3F,0x3F,0x00,",
"ü": "0x00,0xE0,0xE0,0x0C,0x0C,0x00,0x00,0x0C,0x0C,0xE0,0xE0,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x18,0x3F,0x3F,0x00,",
"ý": "0x00,0x00,0x60,0xE0,0x80,0x10,0x18,0x8C,0xE4,0x60,0x00,0x00,0x00,0x00,0x00,0x81,0xE7,0x7E,0x1E,0x07,0x01,0x00,0x00,0x00,",
"þ": "0x00,0x00,0x03,0xFF,0xFF,0x1B,0x18,0x18,0xF8,0xF0,0x00,0x00,0x00,0x00,0x30,0x3F,0x3F,0x36,0x06,0x06,0x07,0x03,0x00,0x00,",
"ÿ": "0x00,0x00,0x60,0xEC,0x8C,0x00,0x00,0x8C,0xEC,0x60,0x00,0x00,0x00,0x00,0x00,0x81,0xE7,0x7E,0x1E,0x07,0x01,0x00,0x00,0x00,",
"Ѐ": "0x00,0xFC,0xFC,0x8D,0x8F,0x8E,0x8C,0x8C,0x8C,0x0C,0x0C,0x00,0x00,0x3F,0x3F,0x31,0x31,0x31,0x31,0x31,0x31,0x30,0x30,0x00,",
"Ё": "0x00,0xFE,0xFE,0xC7,0xC7,0xC6,0xC6,0xC7,0xC7,0x06,0x06,0x00,0x00,0x3F,0x3F,0x30,0x30,0x30,0x30,0x30,0x30,0x30,0x30,0x00,",
"Ђ": "0x00,0x03,0xFF,0xFF,0x83,0xC3,0xC3,0xC3,0xC0,0x80,0x00,0x00,0x00,0x00,0x3F,0x3F,0x01,0x00,0x30,0x30,0x39,0x1F,0x0F,0x00,",
"Ѓ": "0x00,0xFC,0xFC,0x0C,0x0C,0x0C,0x0E,0x0F,0x0D,0x0C,0x0C,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,",
"Є": "0x00,0xF8,0xFC,0xCE,0xC7,0xC3,0xC3,0xC3,0x07,0x0E,0x0C,0x00,0x00,0x07,0x0F,0x1C,0x38,0x30,0x30,0x30,0x38,0x1C,0x0C,0x00,",
"Ѕ": "0x00,0x3C,0x7E,0x67,0xE3,0xC3,0xC3,0xC3,0x87,0x8E,0x0C,0x00,0x00,0x0C,0x1C,0x38,0x30,0x30,0x30,0x31,0x39,0x1F,0x0F,0x00,",
"І": "0x00,0x00,0x00,0x03,0x03,0xFF,0xFF,0x03,0x03,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"Ї": "0x00,0x00,0x00,0x0D,0x0D,0xFC,0xFC,0x0D,0x0D,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"Ј": "0x00,0x00,0x00,0x00,0x00,0x00,0x03,0x03,0x03,0xFF,0xFF,0x00,0x00,0x0E,0x1E,0x38,0x30,0x30,0x30,0x30,0x38,0x1F,0x0F,0x00,",
"Љ": "0x00,0x00,0xFE,0xFF,0x03,0x03,0xFF,0xFF,0xC0,0xC0,0x80,0x00,0x00,0x30,0x3F,0x1F,0x00,0x00,0x3F,0x3F,0x30,0x39,0x1F,0x0F,",
"Њ": "0x00,0xFF,0xFF,0xC0,0xC0,0xC0,0xFF,0xFF,0xC0,0xC0,0x80,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x3F,0x3F,0x30,0x39,0x1F,0x0F,",
"Ћ": "0x00,0x03,0xFF,0xFF,0xC3,0xC3,0xC3,0xC3,0xC0,0x80,0x00,0x00,0x00,0x00,0x3F,0x3F,0x01,0x00,0x00,0x00,0x01,0x3F,0x3F,0x00,",
"Ќ": "0x00,0xFF,0xFF,0xC0,0xE2,0xF3,0x39,0x1C,0x0E,0x07,0x03,0x00,0x00,0x3F,0x3F,0x00,0x01,0x03,0x07,0x0E,0x1C,0x38,0x30,0x00,",
"Ѝ": "0x00,0xFF,0xFF,0x00,0x01,0xC3,0xF2,0x38,0x0E,0xFF,0xFF,0x00,0x00,0x3F,0x3F,0x1C,0x07,0x03,0x00,0x00,0x00,0x3F,0x3F,0x00,",
"Ў": "0x00,0x07,0x1F,0x7C,0xF1,0xC1,0xC1,0xF1,0x7C,0x1F,0x07,0x00,0x00,0x00,0x30,0x30,0x3C,0x0F,0x07,0x01,0x00,0x00,0x00,0x00,",
"Џ": "0x00,0xFF,0xFF,0x00,0x00,0x00,0x00,0x00,0x00,0xFF,0xFF,0x00,0x00,0x1F,0x1F,0x18,0x18,0x78,0x78,0x18,0x18,0x1F,0x1F,0x00,",
# "A":"0x00,0x80,0xE0,0x78,0x1E,0x07,0x07,0x1E,0x78,0xE0,0x80,0x00,0x00,0x3F,0x3F,0x06,0x06,0x06,0x06,0x06,0x06,0x3F,0x3F,0x00," ,
"Б": "0x00,0xFF,0xFF,0xC3,0xC3,0xC3,0xC3,0xC3,0xC3,0x83,0x00,0x00,0x00,0x3F,0x3F,0x30,0x30,0x30,0x30,0x30,0x39,0x1F,0x0F,0x00,",
"В": "0x00,0xFF,0xFF,0xC3,0xC3,0xC3,0xC3,0xE7,0xFE,0xBC,0x00,0x00,0x00,0x3F,0x3F,0x30,0x30,0x30,0x30,0x30,0x39,0x1F,0x0F,0x00,",
"Г": "0x00,0xFF,0xFF,0x03,0x03,0x03,0x03,0x03,0x03,0x03,0x03,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,",
"Г": "0x00,0xFF,0xFF,0x03,0x03,0x03,0x03,0x03,0x03,0x03,0x03,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,",
"Д": "0x00,0x00,0xF8,0xFE,0x0F,0x03,0x03,0x03,0xFF,0xFF,0x00,0x00,0x00,0x70,0x7F,0x1F,0x18,0x18,0x18,0x18,0x1F,0x7F,0x70,0x00,",
"Е": "0x00,0xFF,0xFF,0xC3,0xC3,0xC3,0xC3,0xC3,0xC3,0x03,0x03,0x00,0x00,0x3F,0x3F,0x30,0x30,0x30,0x30,0x30,0x30,0x30,0x30,0x00,",
"Ж": "0x00,0x03,0x0F,0xFC,0xE0,0xFF,0xFF,0xE0,0xFC,0x0F,0x03,0x00,0x00,0x38,0x3F,0x07,0x00,0x3F,0x3F,0x00,0x07,0x3F,0x38,0x00,",
"Ж": "0x00,0x03,0x0F,0xFC,0xE0,0xFF,0xFF,0xE0,0xFC,0x0F,0x03,0x00,0x00,0x38,0x3F,0x07,0x00,0x3F,0x3F,0x00,0x07,0x3F,0x38,0x00,",
"И": "0x00,0xFF,0xFF,0x00,0x00,0xC0,0xF0,0x38,0x0E,0xFF,0xFF,0x00,0x00,0x3F,0x3F,0x1C,0x07,0x03,0x00,0x00,0x00,0x3F,0x3F,0x00,",
"Й": "0x00,0xFF,0xFF,0x00,0x02,0xC3,0xF1,0x38,0x0E,0xFF,0xFF,0x00,0x00,0x3F,0x3F,0x1C,0x07,0x03,0x00,0x00,0x00,0x3F,0x3F,0x00,",
"К": "0x00,0xFF,0xFF,0xC0,0xE0,0xF0,0x38,0x1C,0x0E,0x07,0x03,0x00,0x00,0x3F,0x3F,0x00,0x01,0x03,0x07,0x0E,0x1C,0x38,0x30,0x00,",
"Л": "0x00,0x00,0xF0,0xFC,0x1E,0x07,0x03,0x03,0x03,0xFF,0xFF,0x00,0x00,0x30,0x3F,0x1F,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x00,",
"М": "0x00,0xFF,0xFF,0x1E,0x78,0xE0,0xE0,0x78,0x1E,0xFF,0xFF,0x00,0x00,0x3F,0x3F,0x00,0x00,0x01,0x01,0x00,0x00,0x3F,0x3F,0x00,",
"Н": "0x00,0xFF,0xFF,0xC0,0xC0,0xC0,0xC0,0xC0,0xC0,0xFF,0xFF,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x00,",
"О": "0x00,0xF0,0xFC,0x0E,0x07,0x03,0x03,0x07,0x0E,0xFC,0xF0,0x00,0x00,0x03,0x0F,0x1C,0x38,0x30,0x30,0x38,0x1C,0x0F,0x03,0x00,",
"П": "0x00,0xFF,0xFF,0x03,0x03,0x03,0x03,0x03,0x03,0xFF,0xFF,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x00,",
"Р": "0x00,0xFF,0xFF,0x83,0x83,0x83,0x83,0x83,0xC7,0xFE,0x7C,0x00,0x00,0x3F,0x3F,0x01,0x01,0x01,0x01,0x01,0x01,0x00,0x00,0x00,",
"С": "0x00,0xF0,0xFC,0x0E,0x07,0x03,0x03,0x03,0x07,0x0E,0x0C,0x00,0x00,0x03,0x0F,0x1C,0x38,0x30,0x30,0x30,0x38,0x1C,0x0C,0x00,",
"Т": "0x00,0x03,0x03,0x03,0x03,0xFF,0xFF,0x03,0x03,0x03,0x03,0x00,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x00,0x00,",
"У": "0x00,0x07,0x1F,0x7C,0xF0,0xC0,0xC0,0xF0,0x7C,0x1F,0x07,0x00,0x00,0x00,0x30,0x30,0x3C,0x0F,0x07,0x01,0x00,0x00,0x00,0x00,",
"Ф": "0x00,0xF8,0xFC,0x0E,0x06,0xFF,0xFF,0x06,0x0E,0xFC,0xF8,0x00,0x00,0x03,0x07,0x0E,0x0C,0x3F,0x3F,0x0C,0x0E,0x07,0x03,0x00,",
"Х": "0x00,0x03,0x0F,0x3C,0xF0,0xC0,0xC0,0xF0,0x3C,0x0F,0x03,0x00,0x00,0x30,0x3C,0x0F,0x03,0x00,0x00,0x03,0x0F,0x3C,0x30,0x00,",
"Ц": "0x00,0xFF,0xFF,0x00,0x00,0x00,0x00,0x00,0xFF,0xFF,0x00,0x00,0x00,0x1F,0x1F,0x18,0x18,0x18,0x18,0x18,0x1F,0x7F,0x78,0x00,",
"Ч": "0x00,0x7F,0xFF,0xC0,0xC0,0xC0,0xC0,0xC0,0xC0,0xFF,0xFF,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x00,",
"Ш": "0x00,0xFF,0xFF,0x00,0x00,0xFF,0xFF,0x00,0x00,0xFF,0xFF,0x00,0x00,0x3F,0x3F,0x30,0x30,0x3F,0x3F,0x30,0x30,0x3F,0x3F,0x00,",
"Щ": "0x00,0xFF,0xFF,0x00,0x00,0xFF,0xFF,0x00,0x00,0xFF,0xFF,0x00,0x00,0x1F,0x1F,0x18,0x18,0x1F,0x1F,0x18,0x18,0x1F,0x7F,0x70,",
"Ъ": "0x03,0x03,0xFF,0xFF,0xC0,0xC0,0xC0,0xC0,0xC0,0x80,0x00,0x00,0x00,0x00,0x3F,0x3F,0x30,0x30,0x30,0x30,0x39,0x1F,0x0F,0x00,",
"Ы": "0x00,0xFF,0xFF,0xC0,0xC0,0xC0,0xC0,0x80,0x00,0x00,0xFF,0xFF,0x00,0x3F,0x3F,0x30,0x30,0x30,0x39,0x1F,0x0F,0x00,0x3F,0x3F,",
"Ь": "0x00,0xFF,0xFF,0xC0,0xC0,0xC0,0xC0,0xC0,0xC0,0x80,0x00,0x00,0x00,0x3F,0x3F,0x30,0x30,0x30,0x30,0x30,0x39,0x1F,0x0F,0x00,",
"Э": "0x00,0x0C,0x0E,0x07,0xC3,0xC3,0xC3,0xC7,0xCE,0xFC,0xF8,0x00,0x00,0x0C,0x1C,0x38,0x30,0x30,0x30,0x38,0x1C,0x0F,0x07,0x00,",
"Ю": "0x00,0xFF,0xFF,0xC0,0xFC,0xFE,0x07,0x03,0x07,0xFE,0xFC,0x00,0x00,0x3F,0x3F,0x00,0x0F,0x1F,0x38,0x30,0x38,0x1F,0x0F,0x00,",
"Я": "0x00,0x7C,0xFE,0xC7,0x83,0x83,0x83,0x83,0x83,0xFF,0xFF,0x00,0x00,0x30,0x38,0x1D,0x0F,0x07,0x03,0x01,0x01,0x3F,0x3F,0x00,",
"а": "0x00,0x00,0x30,0x30,0x30,0x30,0x30,0x30,0x30,0xF0,0xE0,0x00,0x00,0x1E,0x3F,0x33,0x33,0x33,0x33,0x33,0x33,0x3F,0x3F,0x00,",
"б": "0x00,0xE0,0xF0,0x30,0x30,0x30,0x30,0x30,0x30,0x30,0x00,0x00,0x00,0x1F,0x3F,0x33,0x33,0x33,0x33,0x33,0x33,0x3F,0x1E,0x00,",
"в": "0x00,0xF0,0xF0,0x30,0x30,0x30,0x30,0x30,0xF0,0xE0,0x00,0x00,0x00,0x3F,0x3F,0x33,0x33,0x33,0x33,0x33,0x33,0x3F,0x1E,0x00,",
"г": "0x00,0xF0,0xF0,0x30,0x30,0x30,0x30,0x30,0x30,0x30,0x30,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,",
"д": "0x00,0x00,0xC0,0xE0,0x70,0x30,0x30,0x30,0xF0,0xF0,0x00,0x00,0x00,0x60,0x7F,0x3F,0x30,0x30,0x30,0x30,0x3F,0x7F,0x60,0x00,",
"е": "0x00,0xE0,0xF0,0x30,0x30,0x30,0x30,0x30,0x30,0xF0,0xE0,0x00,0x00,0x1F,0x3F,0x33,0x33,0x33,0x33,0x33,0x33,0x33,0x33,0x00,",
"ж": "0x00,0x30,0xF0,0xC0,0x00,0xF0,0xF0,0x00,0xC0,0xF0,0x30,0x00,0x00,0x30,0x3C,0x0F,0x03,0x3F,0x3F,0x03,0x0F,0x3C,0x30,0x00,",
"з": "0x00,0x60,0x70,0x30,0x30,0x30,0x30,0x30,0x30,0xF0,0xE0,0x00,0x00,0x18,0x38,0x30,0x33,0x33,0x33,0x33,0x33,0x3F,0x1D,0x00,",
"З": "0x00,0x60,0x70,0x30,0x30,0x30,0x30,0x30,0x30,0xF0,0xE0,0x00,0x00,0x18,0x38,0x30,0x33,0x33,0x33,0x33,0x33,0x3F,0x1D,0x00,",
"и": "0x00,0xF0,0xF0,0x00,0x00,0x00,0x80,0xC0,0xE0,0xF0,0xF0,0x00,0x00,0x3F,0x3F,0x1C,0x0E,0x07,0x03,0x01,0x00,0x3F,0x3F,0x00,",
"й": "0x00,0xF0,0xF0,0x00,0x04,0x08,0x88,0xC4,0xE0,0xF0,0xF0,0x00,0x00,0x3F,0x3F,0x1C,0x0E,0x07,0x03,0x01,0x00,0x3F,0x3F,0x00,",
"к": "0x00,0xF0,0xF0,0x80,0x80,0xC0,0xE0,0x70,0x30,0x10,0x00,0x00,0x00,0x3F,0x3F,0x03,0x03,0x07,0x0E,0x1C,0x38,0x30,0x20,0x00,",
"л": "0x00,0x00,0xC0,0xE0,0x70,0x30,0x30,0x30,0x30,0xF0,0xF0,0x00,0x00,0x30,0x3F,0x1F,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x00,",
"м": "0x00,0xF0,0xF0,0xE0,0xC0,0x80,0x80,0xC0,0xE0,0xF0,0xF0,0x00,0x00,0x3F,0x3F,0x00,0x01,0x03,0x03,0x01,0x00,0x3F,0x3F,0x00,",
"н": "0x00,0xF0,0xF0,0x00,0x00,0x00,0x00,0x00,0x00,0xF0,0xF0,0x00,0x00,0x3F,0x3F,0x03,0x03,0x03,0x03,0x03,0x03,0x3F,0x3F,0x00,",
"о": "0x00,0xC0,0xE0,0x70,0x30,0x30,0x30,0x30,0x70,0xE0,0xC0,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x38,0x1F,0x0F,0x00,",
"п": "0x00,0xF0,0xF0,0x30,0x30,0x30,0x30,0x30,0x30,0xF0,0xF0,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x00,",
"р": "0x00,0xF0,0xF0,0x30,0x30,0x30,0x30,0x30,0x70,0xE0,0xC0,0x00,0x00,0xFF,0xFF,0x0C,0x0C,0x0C,0x0C,0x0C,0x0E,0x07,0x03,0x00,",
"с": "0x00,0xC0,0xE0,0x70,0x30,0x30,0x30,0x30,0x70,0x60,0x40,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x38,0x18,0x08,0x00,",
"т": "0x00,0x30,0x30,0x30,0x30,0xF0,0xF0,0x30,0x30,0x30,0x30,0x00,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x00,0x00,",
"у": "0x00,0x30,0xF0,0xC0,0x00,0x00,0x00,0x00,0xC0,0xF0,0x30,0x00,0x00,0x60,0xE0,0xC3,0xE7,0x7C,0x3C,0x0F,0x03,0x00,0x00,0x00,",
"ф": "0x00,0x80,0xC0,0x60,0x60,0xF0,0xF0,0x60,0x60,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x30,0x30,0xFF,0xFF,0x30,0x30,0x1F,0x0F,0x00,",
"х": "0x00,0x30,0x70,0xC0,0x80,0x00,0x00,0x80,0xC0,0x70,0x30,0x00,0x00,0x30,0x38,0x0C,0x07,0x03,0x03,0x07,0x0C,0x38,0x30,0x00,",
"ц": "0x00,0xF0,0xF0,0x00,0x00,0x00,0x00,0x00,0xF0,0xF0,0x00,0x00,0x00,0x3F,0x3F,0x30,0x30,0x30,0x30,0x30,0x3F,0xFF,0xF0,0x00,",
"ч": "0x00,0xF0,0xF0,0x00,0x00,0x00,0x00,0x00,0x00,0xF0,0xF0,0x00,0x00,0x01,0x03,0x03,0x03,0x03,0x03,0x03,0x03,0x3F,0x3F,0x00,",
"ш": "0x00,0xF0,0xF0,0x00,0x00,0xE0,0xE0,0x00,0x00,0xF0,0xF0,0x00,0x00,0x3F,0x3F,0x30,0x30,0x3F,0x3F,0x30,0x30,0x3F,0x3F,0x00,",
"щ": "0x00,0xF0,0xF0,0x00,0x00,0xF0,0xF0,0x00,0x00,0xF0,0xF0,0x00,0x00,0x3F,0x3F,0x30,0x30,0x3F,0x3F,0x30,0x30,0x3F,0xFF,0xE0,",
"ъ": "0x30,0x30,0xF0,0xF0,0x80,0x80,0x80,0x80,0x80,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x31,0x31,0x31,0x31,0x3B,0x1F,0x0E,0x00,",
"ы": "0x00,0xF0,0xF0,0x80,0x80,0x80,0x00,0x00,0x00,0xF0,0xF0,0x00,0x00,0x3F,0x3F,0x31,0x31,0x3B,0x1F,0x0E,0x00,0x3F,0x3F,0x00,",
"ь": "0x00,0xF0,0xF0,0x80,0x80,0x80,0x80,0x80,0x80,0x00,0x00,0x00,0x00,0x3F,0x3F,0x31,0x31,0x31,0x31,0x31,0x3B,0x1F,0x0E,0x00,",
"э": "0x00,0x40,0x60,0x70,0x30,0x30,0x30,0x30,0x70,0xE0,0xC0,0x00,0x00,0x08,0x18,0x38,0x30,0x33,0x33,0x33,0x3B,0x1F,0x0F,0x00,",
"ю": "0x00,0xF0,0xF0,0x00,0xE0,0xF0,0x30,0x30,0x30,0xF0,0xE0,0x00,0x00,0x3F,0x3F,0x03,0x1F,0x3F,0x30,0x30,0x30,0x3F,0x1F,0x00,",
"я": "0x00,0xC0,0xE0,0x70,0x30,0x30,0x30,0x30,0x30,0xF0,0xF0,0x00,0x00,0x21,0x33,0x3B,0x1E,0x0E,0x06,0x06,0x06,0x3F,0x3F,0x00,",
"ѐ": "0x00,0xE0,0xF0,0x32,0x36,0x36,0x34,0x30,0x30,0xF0,0xE0,0x00,0x00,0x1F,0x3F,0x33,0x33,0x33,0x33,0x33,0x33,0x33,0x33,0x00,",
"ё": "0x00,0xE0,0xF0,0x34,0x34,0x30,0x30,0x34,0x34,0xF0,0xE0,0x00,0x00,0x1F,0x3F,0x33,0x33,0x33,0x33,0x33,0x33,0x33,0x33,0x00,",
"ђ": "0x00,0x30,0xFC,0xFC,0x30,0xB0,0xB0,0xB0,0x80,0x80,0x00,0x00,0x00,0x00,0x3F,0x3F,0x07,0x03,0x01,0x01,0xC1,0xFF,0x3F,0x00,",
"ѓ": "0x00,0xF0,0xF0,0x30,0x30,0x34,0x36,0x32,0x30,0x30,0x30,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,",
"є": "0x00,0xC0,0xE0,0x70,0x30,0x30,0x30,0x30,0x70,0x60,0x40,0x00,0x00,0x0F,0x1F,0x3B,0x33,0x33,0x33,0x30,0x38,0x18,0x08,0x00,",
"ѕ": "0x00,0xE0,0xF0,0xB0,0xB0,0x30,0x30,0x30,0x30,0x70,0x60,0x00,0x00,0x18,0x39,0x31,0x33,0x33,0x33,0x37,0x36,0x3E,0x1C,0x00,",
"і": "0x00,0x00,0x00,0x00,0x30,0xF6,0xF6,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"ї": "0x00,0x00,0x00,0x04,0x34,0xF0,0xF4,0x04,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"ј": "0x00,0x00,0x00,0x00,0x00,0x30,0x30,0xF6,0xF6,0x00,0x00,0x00,0x00,0x00,0x00,0x60,0xE0,0xC0,0xC0,0xFF,0x7F,0x00,0x00,0x00,",
"љ": "0x00,0x00,0xE0,0xF0,0x30,0x30,0xF0,0xF0,0x00,0x00,0x00,0x00,0x00,0x30,0x3F,0x1F,0x00,0x00,0x3F,0x3F,0x33,0x33,0x1E,0x0C,",
"њ": "0x00,0xF0,0xF0,0x00,0x00,0x00,0xF0,0xF0,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x03,0x03,0x03,0x3F,0x3F,0x33,0x33,0x1E,0x0C,",
"ћ": "0x00,0x30,0xFC,0xFC,0xB0,0xB0,0xB0,0xB0,0x80,0x80,0x00,0x00,0x00,0x00,0x3F,0x3F,0x01,0x01,0x01,0x01,0x01,0x3F,0x3F,0x00,",
"ќ": "0x00,0xF0,0xF0,0x80,0x88,0xCC,0xE4,0x70,0x30,0x10,0x00,0x00,0x00,0x3F,0x3F,0x03,0x03,0x07,0x0E,0x1C,0x38,0x30,0x20,0x00,",
"ѝ": "0x00,0xF0,0xF0,0x00,0x06,0x0C,0x88,0xC0,0xE0,0xF0,0xF0,0x00,0x00,0x3F,0x3F,0x1C,0x0E,0x07,0x03,0x01,0x00,0x3F,0x3F,0x00,",
"ў": "0x00,0x30,0xF0,0xC0,0x04,0x08,0x08,0x04,0xC0,0xF0,0x30,0x00,0x00,0x60,0xE0,0xC3,0xE7,0x7C,0x3C,0x0F,0x03,0x00,0x00,0x00,",
"џ": "0x00,0xF0,0xF0,0x00,0x00,0x00,0x00,0x00,0x00,0xF0,0xF0,0x00,0x00,0x3F,0x3F,0x30,0x30,0xF0,0xF0,0x30,0x30,0x3F,0x3F,0x00,",
"Ā": "0x00,0x00,0x00,0xE0,0xF9,0x1D,0x1D,0xF9,0xE0,0x00,0x00,0x00,0x00,0x38,0x3F,0x07,0x06,0x06,0x06,0x06,0x07,0x3F,0x38,0x00,",
"ā": "0x00,0x00,0x40,0x60,0x68,0x68,0x68,0x68,0x68,0xE0,0xC0,0x00,0x00,0x1C,0x3E,0x33,0x33,0x33,0x33,0x33,0x33,0x3F,0x3F,0x00,",
"Ă": "0x00,0x00,0x00,0xE0,0xF9,0x1A,0x1A,0xF9,0xE0,0x00,0x00,0x00,0x00,0x38,0x3F,0x07,0x06,0x06,0x06,0x06,0x07,0x3F,0x38,0x00,",
"ă": "0x00,0x00,0x40,0x60,0x64,0x68,0x68,0x68,0x64,0xE0,0xC0,0x00,0x00,0x1C,0x3E,0x33,0x33,0x33,0x33,0x33,0x33,0x3F,0x3F,0x00,",
"Ą": "0x00,0x00,0x00,0xE0,0xFC,0x1F,0x1F,0xFC,0xE0,0x00,0x00,0x00,0x00,0x38,0x3F,0x07,0x06,0x06,0x06,0x06,0x67,0xBF,0xB8,0x00,",
"ą": "0x00,0x00,0x40,0x60,0x60,0x60,0x60,0x60,0x60,0xE0,0xC0,0x00,0x00,0x1C,0x3E,0x33,0x33,0x33,0x33,0x33,0x73,0xBF,0xBF,0x00,",
"Ć": "0x00,0x80,0xE0,0x70,0x38,0x18,0x1A,0x1B,0x39,0x70,0x60,0x00,0x00,0x03,0x0F,0x1C,0x38,0x30,0x30,0x30,0x38,0x1C,0x0C,0x00,",
"ć": "0x00,0x80,0xC0,0xE0,0x60,0x60,0x68,0x6C,0x64,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x30,0x18,0x08,0x00,",
"Ĉ": "0x00,0x80,0xE0,0x70,0x3A,0x1B,0x19,0x1B,0x3A,0x70,0x60,0x00,0x00,0x03,0x0F,0x1C,0x38,0x30,0x30,0x30,0x38,0x1C,0x0C,0x00,",
"ĉ": "0x00,0x80,0xC0,0xE0,0x68,0x6C,0x64,0x6C,0x68,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x30,0x18,0x08,0x00,",
"Ċ": "0x00,0x80,0xE0,0x70,0x38,0x18,0x1A,0x18,0x38,0x70,0x60,0x00,0x00,0x03,0x0F,0x1C,0x38,0x30,0x30,0x30,0x38,0x1C,0x0C,0x00,",
"ċ": "0x00,0x80,0xC0,0xE0,0x60,0x60,0x68,0x60,0x60,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x30,0x18,0x08,0x00,",
"Č": "0x00,0x80,0xE0,0x70,0x39,0x1B,0x1A,0x1B,0x39,0x70,0x60,0x00,0x00,0x03,0x0F,0x1C,0x38,0x30,0x30,0x30,0x38,0x1C,0x0C,0x00,",
"č": "0x00,0x80,0xC0,0xE0,0x64,0x6C,0x68,0x6C,0x64,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x30,0x18,0x08,0x00,",
"Ď": "0x00,0xF8,0xF8,0x19,0x1B,0x1A,0x1B,0x39,0x70,0xE0,0x80,0x00,0x00,0x3F,0x3F,0x30,0x30,0x30,0x30,0x38,0x1C,0x0F,0x03,0x00,",
"ď": "0x00,0x80,0xC0,0xE0,0x60,0x60,0xE0,0xFF,0xFF,0x00,0x05,0x03,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x3F,0x3F,0x00,0x00,0x00,",
"Đ": "0xC0,0xFF,0xFF,0xC3,0xC3,0x03,0x03,0x07,0x0E,0xFC,0xF0,0x00,0x00,0x3F,0x3F,0x30,0x30,0x30,0x30,0x38,0x1C,0x0F,0x03,0x00,",
"đ": "0x00,0x80,0xC0,0xE0,0x60,0x60,0x60,0xE4,0xC4,0xFF,0xFF,0x04,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x30,0x3F,0x3F,0x00,",
"Ē": "0x00,0xFC,0xFC,0x8C,0x8D,0x8D,0x8D,0x8D,0x8C,0x0C,0x0C,0x00,0x00,0x3F,0x3F,0x31,0x31,0x31,0x31,0x31,0x31,0x30,0x30,0x00,",
"ē": "0x00,0x80,0xC0,0xE0,0x68,0x68,0x68,0x68,0x68,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x3B,0x33,0x33,0x33,0x33,0x33,0x13,0x01,0x00,",
"Ĕ": "0x00,0xF8,0xF8,0x98,0x99,0x9A,0x9A,0x99,0x98,0x18,0x18,0x00,0x00,0x3F,0x3F,0x31,0x31,0x31,0x31,0x31,0x31,0x30,0x30,0x00,",
"ĕ": "0x00,0x80,0xC0,0xE0,0x64,0x68,0x68,0x68,0x64,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x3B,0x33,0x33,0x33,0x33,0x33,0x13,0x01,0x00,",
"Ė": "0x00,0xF8,0xF8,0x98,0x98,0x98,0x9A,0x98,0x98,0x18,0x18,0x00,0x00,0x3F,0x3F,0x31,0x31,0x31,0x31,0x31,0x31,0x30,0x30,0x00,",
"ė": "0x00,0x80,0xC0,0xE0,0x60,0x60,0x68,0x60,0x60,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x3B,0x33,0x33,0x33,0x33,0x33,0x13,0x01,0x00,",
"Ę": "0x00,0xFF,0xFF,0xC3,0xC3,0xC3,0xC3,0xC3,0xC3,0x03,0x03,0x00,0x00,0x3F,0x3F,0x30,0x30,0x30,0x30,0x30,0x70,0xB0,0xB0,0x00,",
"ę": "0x00,0x80,0xC0,0xE0,0x60,0x60,0x60,0x60,0x60,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x3B,0x33,0x33,0x73,0xB3,0xB3,0x13,0x01,0x00,",
"Ě": "0x00,0xF8,0xF8,0x98,0x99,0x9B,0x9A,0x9B,0x99,0x18,0x18,0x00,0x00,0x3F,0x3F,0x31,0x31,0x31,0x31,0x31,0x31,0x30,0x30,0x00,",
"ě": "0x00,0x80,0xC0,0xE0,0x64,0x6C,0x68,0x6C,0x64,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x3B,0x33,0x33,0x33,0x33,0x33,0x13,0x01,0x00,",
"Ĝ": "0x00,0x80,0xE0,0x70,0x1A,0x1B,0x19,0x1B,0x1A,0x38,0x30,0x00,0x00,0x03,0x0F,0x1C,0x38,0x30,0x33,0x33,0x33,0x3F,0x3F,0x00,",
"ĝ": "0x00,0x80,0xC0,0xE0,0x68,0x6C,0x64,0x6C,0x68,0xE0,0xE0,0x00,0x00,0x03,0xC7,0xCE,0xCC,0xCC,0xCC,0xCC,0xE6,0x7F,0x3F,0x00,",
"Ğ": "0x00,0x80,0xE0,0x70,0x1A,0x19,0x19,0x19,0x1A,0x38,0x30,0x00,0x00,0x03,0x0F,0x1C,0x38,0x30,0x33,0x33,0x33,0x3F,0x3F,0x00,",
"ğ": "0x00,0x80,0xC0,0xE0,0x68,0x64,0x64,0x64,0x68,0xE0,0xE0,0x00,0x00,0x03,0xC7,0xCE,0xCC,0xCC,0xCC,0xCC,0xE6,0x7F,0x3F,0x00,",
"Ġ": "0x00,0x80,0xE0,0x70,0x18,0x18,0x1A,0x18,0x18,0x38,0x30,0x00,0x00,0x03,0x0F,0x1C,0x38,0x30,0x33,0x33,0x33,0x3F,0x3F,0x00,",
"ġ": "0x00,0x80,0xC0,0xE0,0x60,0x60,0x68,0x60,0x60,0xE0,0xE0,0x00,0x00,0x03,0xC7,0xCE,0xCC,0xCC,0xCC,0xCC,0xE6,0x7F,0x3F,0x00,",
"Ģ": "0x00,0xF0,0xFC,0x0E,0x07,0x03,0xC3,0xC3,0xC3,0xC7,0xC6,0x00,0x00,0x03,0x0F,0x1C,0x38,0x30,0xB0,0x70,0x30,0x3F,0x3F,0x00,",
"ģ": "0x00,0x80,0xC0,0xE0,0x60,0x60,0x6C,0x6A,0x60,0xE0,0xE0,0x00,0x00,0x03,0xC7,0xCE,0xCC,0xCC,0xCC,0xCC,0xE6,0x7F,0x3F,0x00,",
"Ĥ": "0x00,0xFC,0xFC,0x80,0x82,0x81,0x81,0x82,0x80,0xFC,0xFC,0x00,0x00,0x3F,0x3F,0x01,0x01,0x01,0x01,0x01,0x01,0x3F,0x3F,0x00,",
"ĥ": "0x00,0xFE,0xFE,0xC0,0x62,0x63,0x61,0xE3,0xC2,0x80,0x00,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x00,0x00,",
"Ħ": "0x02,0xFF,0xFF,0xC2,0xC2,0xC2,0xC2,0xC2,0xC2,0xFF,0xFF,0x02,0x00,0x3F,0x3F,0x00,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x00,",
"ħ": "0x04,0xFF,0xFF,0xC4,0x64,0x60,0x60,0xE0,0xC0,0x80,0x00,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x00,0x00,",
"Ĩ": "0x00,0x00,0x00,0x1A,0x19,0xFB,0xFB,0x1A,0x19,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"ĩ": "0x00,0x00,0x00,0x08,0x64,0xEC,0xE8,0x04,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"Ī": "0x00,0x00,0x00,0x0C,0x0D,0xFD,0xFD,0x0D,0x0C,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"ī": "0x00,0x00,0x00,0x08,0x68,0xE8,0xE8,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"Ĭ": "0x00,0x00,0x00,0x18,0x19,0xFA,0xFA,0x19,0x18,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"ĭ": "0x00,0x00,0x00,0x00,0x64,0xE8,0xE8,0x04,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"Į": "0x00,0x00,0x00,0x03,0x03,0xFF,0xFF,0x03,0x03,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x7F,0xBF,0xB0,0x30,0x00,0x00,0x00,",
"į": "0x00,0x00,0x00,0x00,0x60,0xEC,0xEC,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x7F,0xBF,0xB0,0x30,0x00,0x00,0x00,",
"İ": "0x00,0x00,0x00,0x18,0x18,0xF8,0xFA,0x18,0x18,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"ı": "0x00,0x00,0x00,0x00,0x60,0xE0,0xE0,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"IJ": "0x00,0x03,0xFF,0xFF,0x03,0x00,0x00,0x00,0x03,0xFF,0xFF,0x00,0x00,0x30,0x3F,0x3F,0x30,0x0C,0x1C,0x30,0x30,0x3F,0x1F,0x00,",
"ij": "0x00,0x00,0x20,0xEC,0xEC,0x00,0x00,0x20,0xEC,0xEC,0x00,0x00,0x00,0x00,0x30,0x3F,0x3F,0x70,0xC0,0xC0,0xFF,0x7F,0x00,0x00,",
"Ĵ": "0x00,0x00,0x00,0x00,0x02,0x03,0x01,0x03,0x02,0xF8,0xF8,0x00,0x00,0x0E,0x1E,0x38,0x30,0x30,0x30,0x30,0x38,0x1F,0x07,0x00,",
"ĵ": "0x00,0x00,0x00,0x00,0x00,0x08,0x6C,0xE4,0xEC,0x08,0x00,0x00,0x00,0x00,0x00,0x60,0xE0,0xC0,0xC0,0xFF,0x7F,0x00,0x00,0x00,",
"Ķ": "0x00,0xFF,0xFF,0xC0,0xE0,0xF0,0x38,0x1C,0x0E,0x07,0x03,0x00,0x00,0x3F,0x3F,0x00,0x01,0xA3,0x67,0x0E,0x1C,0x38,0x30,0x00,",
"ķ": "0x00,0x00,0xFF,0xFF,0x00,0x80,0xC0,0xE0,0x60,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x03,0xA7,0x6F,0x1C,0x38,0x30,0x00,0x00,",
"ĸ": "0x00,0x00,0xE0,0xE0,0x00,0x80,0xC0,0xE0,0x60,0x20,0x00,0x00,0x00,0x00,0x3F,0x3F,0x03,0x07,0x0F,0x1C,0x38,0x30,0x00,0x00,",
"Ĺ": "0x00,0xF8,0xFA,0x03,0x01,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x30,0x30,0x30,0x30,0x30,0x30,0x30,0x30,0x00,",
"ĺ": "0x00,0x00,0x00,0x00,0x18,0xFA,0xFB,0x01,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"Ļ": "0x00,0xFF,0xFF,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x30,0x30,0xB0,0x70,0x30,0x30,0x30,0x30,0x00,",
"ļ": "0x00,0x00,0x00,0x00,0x03,0xFF,0xFF,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0xBF,0x7F,0x30,0x30,0x00,0x00,0x00,",
"Ľ": "0x00,0xFF,0xFF,0x00,0x00,0x05,0x03,0x00,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x30,0x30,0x30,0x30,0x30,0x30,0x30,0x30,0x00,",
"ľ": "0x00,0x00,0x00,0x00,0x03,0xFF,0xFF,0x00,0x05,0x03,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"Ŀ": "0x00,0xFF,0xFF,0x00,0x00,0x00,0x20,0x00,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x30,0x30,0x30,0x30,0x30,0x30,0x30,0x30,0x00,",
"ŀ": "0x00,0x00,0x00,0x00,0x03,0xFF,0xFF,0x00,0x40,0x00,0x00,0x00,0x00,0x00,0x00,0x30,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"Ł": "0x80,0xFF,0xFF,0x20,0x10,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x30,0x30,0x30,0x30,0x30,0x30,0x30,0x30,0x00,",
"ł": "0x00,0x00,0x00,0x00,0x83,0xFF,0xFF,0x20,0x10,0x00,0x00,0x00,0x00,0x00,0x00,0x31,0x30,0x3F,0x3F,0x30,0x30,0x00,0x00,0x00,",
"Ń": "0x00,0xFF,0xFF,0x0E,0x38,0xF2,0xC3,0x01,0x00,0xFF,0xFF,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x03,0x07,0x1C,0x3F,0x3F,0x00,",
"ń": "0x00,0x00,0xE0,0xE0,0x60,0x68,0x6C,0x64,0xE0,0xC0,0x80,0x00,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x00,",
"Ņ": "0x00,0xFF,0xFF,0x0E,0x38,0xF0,0xC0,0x00,0x00,0xFF,0xFF,0x00,0x00,0x3F,0x3F,0x00,0x00,0xA0,0x63,0x07,0x1C,0x3F,0x3F,0x00,",
"ņ": "0x00,0x00,0xE0,0xE0,0x60,0x60,0x60,0x60,0xE0,0xC0,0x80,0x00,0x00,0x00,0x3F,0x3F,0x00,0x00,0xA0,0x60,0x00,0x3F,0x3F,0x00,",
"Ň": "0x00,0xFF,0xFF,0x0E,0x38,0xF1,0xC2,0x01,0x00,0xFF,0xFF,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x03,0x07,0x1C,0x3F,0x3F,0x00,",
"ň": "0x00,0x00,0xE0,0xE0,0x64,0x6C,0x68,0x6C,0xE4,0xC0,0x80,0x00,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x00,",
"ʼn": "0x00,0x0A,0xE6,0xE0,0x60,0x60,0x60,0x60,0xE0,0xC0,0x80,0x00,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x00,0x00,0x3F,0x3F,0x00,",
"Ŋ": "0x00,0x00,0xFF,0xFF,0x06,0x03,0x03,0x03,0x07,0xFE,0xFC,0x00,0x00,0x00,0x3F,0x3F,0x00,0x00,0x20,0x20,0x30,0x1F,0x0F,0x00,",
"ŋ": "0x00,0x00,0xE0,0xE0,0x60,0x60,0x60,0x60,0xE0,0xC0,0x80,0x00,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0xC0,0xC0,0xFF,0x7F,0x00,",
"Ō": "0x00,0xC0,0xF0,0x38,0x1D,0x0D,0x0D,0x1D,0x38,0xF0,0xC0,0x00,0x00,0x03,0x0F,0x1C,0x38,0x30,0x30,0x38,0x1C,0x0F,0x03,0x00,",
"ō": "0x00,0x80,0xC0,0xE0,0x68,0x68,0x68,0x68,0xE0,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x38,0x1F,0x0F,0x00,",
"Ŏ": "0x00,0x80,0xE0,0x70,0x39,0x1A,0x1A,0x39,0x70,0xE0,0x80,0x00,0x00,0x03,0x0F,0x1C,0x38,0x30,0x30,0x38,0x1C,0x0F,0x03,0x00,",
"ŏ": "0x00,0x80,0xC0,0xE0,0x64,0x68,0x68,0x64,0xE0,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x38,0x1F,0x0F,0x00,",
"Ő": "0x00,0x80,0xE0,0x70,0x3A,0x19,0x1A,0x39,0x70,0xE0,0x80,0x00,0x00,0x03,0x0F,0x1C,0x38,0x30,0x30,0x38,0x1C,0x0F,0x03,0x00,",
"ő": "0x00,0x80,0xC0,0xE0,0x68,0x64,0x68,0x64,0xE0,0xC0,0x80,0x00,0x00,0x0F,0x1F,0x38,0x30,0x30,0x30,0x30,0x38,0x1F,0x0F,0x00,",
"Œ": "0xF0,0xFC,0x0E,0x03,0x03,0x07,0xFE,0xFF,0xC3,0xC3,0xC3,0x00,0x03,0x0F,0x1C,0x30,0x30,0x38,0x1F,0x3F,0x30,0x30,0x30,0x00,",
"œ": "0x80,0xC0,0xE0,0x60,0x60,0xE0,0xC0,0x60,0x60,0x60,0x40,0x80,0x0F,0x1F,0x38,0x30,0x30,0x1F,0x1F,0x3B,0x33,0x33,0x1B,0x09,",
"Ŕ": "0x00,0xF8,0xF8,0x98,0x98,0x9A,0x9B,0x99,0xF8,0xF0,0x60,0x00,0x00,0x3F,0x3F,0x01,0x01,0x03,0x07,0x0F,0x1D,0x38,0x30,0x00,",
"ŕ": "0x00,0x00,0xE0,0xE0,0xC0,0x60,0x68,0x6C,0x64,0xE0,0xC0,0x00,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,",
"Ŗ": "0x00,0xFF,0xFF,0x83,0x83,0x83,0x83,0x83,0xC7,0xFE,0x7C,0x00,0x00,0x3F,0x3F,0x01,0x01,0xA3,0x67,0x0F,0x1D,0x38,0x30,0x00,",
"ŗ": "0x00,0x00,0xE0,0xE0,0xC0,0x60,0x60,0x60,0x60,0xE0,0xC0,0x00,0x00,0x00,0x3F,0x3F,0x00,0xA0,0x60,0x00,0x00,0x00,0x00,0x00,",
"Ř": "0x00,0xF8,0xF8,0x99,0x9B,0x9A,0x9B,0x99,0xF8,0xF0,0x60,0x00,0x00,0x3F,0x3F,0x01,0x01,0x03,0x07,0x0F,0x1D,0x38,0x30,0x00,",
"ř": "0x00,0x00,0xE0,0xE0,0xC4,0x6C,0x68,0x6C,0x64,0xE0,0xC0,0x00,0x00,0x00,0x3F,0x3F,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,",
"Ś": "0x00,0x60,0xF0,0xF8,0x98,0x9A,0x9B,0x99,0x98,0x30,0x20,0x00,0x00,0x0C,0x1C,0x39,0x31,0x31,0x31,0x31,0x3B,0x1F,0x0E,0x00,",
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}
return font
def getSmallFontMap():
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"ş": "0x12, 0x55, 0x35, 0x15, 0x09, 0x00,",
"Š": "0x08, 0x55, 0x56, 0x55, 0x20, 0x00,",
"š": "0x48, 0x55, 0x56, 0x55, 0x24, 0x00,",
"Ţ": "0x01, 0x41, 0x3f, 0x01, 0x01, 0x00,",
"ţ": "0x02, 0x4f, 0x32, 0x10, 0x08, 0x00,",
"Ť": "0x04, 0x05, 0x7e, 0x05, 0x04, 0x00,",
"ť": "0x04, 0x3e, 0x44, 0x40, 0x23, 0x00,",
"Ŧ": "0x01, 0x09, 0x7f, 0x09, 0x01, 0x00,",
"ŧ": "0x14, 0x3e, 0x54, 0x40, 0x20, 0x00,",
"Ū": "0x3c, 0x41, 0x41, 0x41, 0x3c, 0x00,",
"ū": "0x3c, 0x41, 0x41, 0x21, 0x7c, 0x00,",
"Ŭ": "0x3c, 0x41, 0x42, 0x41, 0x3c, 0x00,",
"ŭ": "0x3c, 0x41, 0x41, 0x21, 0x7c, 0x00,",
"Ů": "0x3c, 0x40, 0x41, 0x40, 0x3c, 0x00,",
"ů": "0x3c, 0x41, 0x41, 0x21, 0x7c, 0x00,",
"Ŵ": "0x3c, 0x42, 0x39, 0x42, 0x3c, 0x00,",
"ŵ": "0x3c, 0x42, 0x31, 0x42, 0x3c, 0x00,",
"Ŷ": "0x04, 0x0a, 0x71, 0x0a, 0x04, 0x00,",
"ŷ": "0x04, 0x4a, 0x31, 0x12, 0x0c, 0x00,",
"Ÿ": "0x04, 0x09, 0x70, 0x09, 0x04, 0x00,",
"Ź": "0x44, 0x64, 0x56, 0x4d, 0x44, 0x00,",
"ź": "0x44, 0x64, 0x56, 0x4d, 0x44, 0x00,",
"Ż": "0x44, 0x64, 0x55, 0x4c, 0x44, 0x00,",
"ż": "0x44, 0x64, 0x55, 0x4c, 0x44, 0x00,",
"Ž": "0x44, 0x65, 0x56, 0x4d, 0x44, 0x00,",
"ž": "0x44, 0x65, 0x56, 0x4d, 0x44, 0x00,",
"ſ": "0x00, 0x04, 0x7e, 0x01, 0x01, 0x00,",
}
return font

View File

@@ -1,621 +0,0 @@
#!/usr/bin/env python3
# coding=utf-8
from __future__ import print_function
import json
import os
import io
from datetime import datetime
import sys
import fontTables
import re
import subprocess
TRANSLATION_CPP = "Translation.cpp"
UNIT_H = "unit.h"
try:
to_unicode = unicode
except NameError:
to_unicode = str
# Loading a single JSON file
def loadJson(fileName, skipFirstLine):
with io.open(fileName, mode="r", encoding="utf-8") as f:
if skipFirstLine:
f.readline()
obj = json.loads(f.read())
return obj
# Reading all language translations into a dictionary by langCode
def readTranslations(jsonDir):
langDict = {}
UnitDict = {}
# Read all translation files from the input dir
for fileName in os.listdir(jsonDir):
fileWithPath = os.path.join(jsonDir, fileName)
lf = fileName.lower()
# Read only translation_XX.json
if lf.startswith("translation_") and lf.endswith(".json"):
try:
lang = loadJson(fileWithPath, False)
except json.decoder.JSONDecodeError as e:
print("Failed to decode " + lf)
print(str(e))
sys.exit(2)
# Extract lang code from file name
langCode = fileName[12:-5].upper()
# ...and the one specified in the JSON file...
try:
langCodeFromJson = lang["languageCode"]
except KeyError:
langCodeFromJson = "(missing)"
try:
TempUnitF_FromJson = lang["tempUnitFahrenheit"]
except KeyError:
TempUnitF_FromJson = True # Default to true.
# ...cause they should be the same!
if langCode != langCodeFromJson:
raise ValueError(
"Invalid languageCode " + langCodeFromJson + " in file " + fileName
)
langDict[langCode] = lang
UnitDict[langCode] = TempUnitF_FromJson
return langDict, UnitDict
def writeStart(f):
f.write(
to_unicode(
"""// WARNING: THIS FILE WAS AUTO GENERATED BY make_translation.py. PLEASE DO NOT EDIT.
#include "Translation.h"
"""
)
)
def writeStartUnit(f):
f.write(
to_unicode(
"""// WARNING: THIS FILE WAS AUTO GENERATED BY make_translation.py. PLEASE DO NOT EDIT.
/**
* °F Fahrenheit Support
* You will find the default Fahrenheit configuration in the translation_xx.json
* If tempUnitFahrenheit is set to:
* true - you can switch in menu settings to Fahrenheit or Celsius.
* false - you see only Celsius. All settings are then is in Celsius only.
*/
#ifndef _UNIT_H
#define _UNIT_H\n
"""
)
)
def escapeC(s):
return s.replace('"', '\\"')
def getConstants():
# Extra constants that are used in the firmware that are shared across all languages
consants = []
consants.append(("SymbolPlus", "+"))
consants.append(("SymbolMinus", "-"))
consants.append(("SymbolSpace", " "))
consants.append(("SymbolDot", "."))
consants.append(("SymbolDegC", "C"))
consants.append(("SymbolDegF", "F"))
consants.append(("SymbolMinutes", "M"))
consants.append(("SymbolSeconds", "S"))
consants.append(("SymbolWatts", "W"))
consants.append(("SymbolVolts", "V"))
consants.append(("SymbolDC", "DC"))
consants.append(("SymbolCellCount", "S"))
consants.append(("SymbolVersionNumber", buildVersion))
return consants
def getDebugMenu():
constants = []
constants.append(datetime.today().strftime("%d-%m-%y"))
constants.append("HW G ") # High Water marker for GUI task
constants.append("HW M ") # High Water marker for MOV task
constants.append("HW P ") # High Water marker for PID task
constants.append("Time ") # Uptime (aka timestamp)
constants.append("Move ") # Time of last significant movement
constants.append("RTip ") # Tip reading in uV
constants.append("CTip ") # Tip temp in C
constants.append("CHan ") # Handle temp in C
constants.append("Vin ") # Input voltage
constants.append("PCB ") # PCB Version AKA IMU version
constants.append("PWR ") # Power Negotiation State
constants.append("Max ") # Max deg C limit
return constants
def getLetterCounts(defs, lang):
textList = []
# iterate over all strings
obj = lang["menuOptions"]
for mod in defs["menuOptions"]:
eid = mod["id"]
textList.append(obj[eid]["desc"])
obj = lang["messages"]
for mod in defs["messages"]:
eid = mod["id"]
if eid not in obj:
textList.append(mod["default"])
else:
textList.append(obj[eid])
obj = lang["characters"]
for mod in defs["characters"]:
eid = mod["id"]
textList.append(obj[eid])
obj = lang["menuOptions"]
for mod in defs["menuOptions"]:
eid = mod["id"]
textList.append(obj[eid]["text2"][0])
textList.append(obj[eid]["text2"][1])
obj = lang["menuGroups"]
for mod in defs["menuGroups"]:
eid = mod["id"]
textList.append(obj[eid]["text2"][0])
textList.append(obj[eid]["text2"][1])
obj = lang["menuGroups"]
for mod in defs["menuGroups"]:
eid = mod["id"]
textList.append(obj[eid]["desc"])
constants = getConstants()
for x in constants:
textList.append(x[1])
textList.extend(getDebugMenu())
# collapse all strings down into the composite letters and store totals for these
symbolCounts = {}
for line in textList:
line = line.replace("\n", "").replace("\r", "")
line = line.replace("\\n", "").replace("\\r", "")
if len(line):
# print(line)
for letter in line:
symbolCounts[letter] = symbolCounts.get(letter, 0) + 1
symbolCounts = sorted(
symbolCounts.items(), key=lambda kv: (kv[1], kv[0])
) # swap to Big -> little sort order
symbolCounts = list(map(lambda x: x[0], symbolCounts))
symbolCounts.reverse()
return symbolCounts
def getFontMapAndTable(textList):
# the text list is sorted
# allocate out these in their order as number codes
symbolMap = {}
symbolMap["\n"] = "\\x01" # Force insert the newline char
index = 2 # start at 2, as 0= null terminator,1 = new line
forcedFirstSymbols = ["0", "1", "2", "3", "4", "5", "6", "7", "8", "9"]
# enforce numbers are first
for sym in forcedFirstSymbols:
symbolMap[sym] = "\\x%0.2X" % index
index = index + 1
if len(textList) > (253 - len(forcedFirstSymbols)):
print("Error, too many used symbols for this version")
exit(1)
print("Generating fonts for {} symbols".format(len(textList)))
for sym in textList:
if sym not in symbolMap:
symbolMap[sym] = "\\x%0.2X" % index
index = index + 1
# Get the font table
fontTableStrings = []
fontSmallTableStrings = []
fontTable = fontTables.getFontMap()
fontSmallTable = fontTables.getSmallFontMap()
for sym in forcedFirstSymbols:
if sym not in fontTable:
print("Missing Large font element for {}".format(sym))
exit(1)
fontLine = fontTable[sym]
fontTableStrings.append(fontLine + "//{} -> {}".format(symbolMap[sym], sym))
if sym not in fontSmallTable:
print("Missing Small font element for {}".format(sym))
exit(1)
fontLine = fontSmallTable[sym]
fontSmallTableStrings.append(
fontLine + "//{} -> {}".format(symbolMap[sym], sym)
)
for sym in textList:
if sym not in fontTable:
print("Missing Large font element for {}".format(sym))
exit(1)
if sym not in forcedFirstSymbols:
fontLine = fontTable[sym]
fontTableStrings.append(fontLine + "//{} -> {}".format(symbolMap[sym], sym))
if sym not in fontSmallTable:
print("Missing Small font element for {}".format(sym))
exit(1)
fontLine = fontSmallTable[sym]
fontSmallTableStrings.append(
fontLine + "//{} -> {}".format(symbolMap[sym], sym)
)
outputTable = "const uint8_t USER_FONT_12[] = {" + to_unicode("\n")
for line in fontTableStrings:
# join font table int one large string
outputTable = outputTable + line + to_unicode("\n")
outputTable = outputTable + "};" + to_unicode("\n")
outputTable = outputTable + "const uint8_t USER_FONT_6x8[] = {" + to_unicode("\n")
for line in fontSmallTableStrings:
# join font table int one large string
outputTable = outputTable + line + to_unicode("\n")
outputTable = outputTable + "};" + to_unicode("\n")
return (outputTable, symbolMap)
def convStr(symbolConversionTable, text):
# convert all of the symbols from the string into escapes for their content
outputString = ""
for c in text.replace("\\r", "").replace("\\n", "\n"):
if c not in symbolConversionTable:
print("Missing font definition for {}".format(c))
else:
outputString = outputString + symbolConversionTable[c]
return outputString
def writeLanguage(languageCode, defs, f):
print("Generating block for " + languageCode)
lang = langDict[languageCode]
# Iterate over all of the text to build up the symbols & counts
textList = getLetterCounts(defs, lang)
# From the letter counts, need to make a symbol translator & write out the font
(fontTableText, symbolConversionTable) = getFontMapAndTable(textList)
f.write(to_unicode("\n#ifdef LANG_" + languageCode + "\n"))
f.write(fontTableText)
try:
langName = lang["languageLocalName"]
except KeyError:
langName = languageCode
f.write(to_unicode("// ---- " + langName + " ----\n\n"))
# ----- Writing SettingsDescriptions
obj = lang["menuOptions"]
f.write(to_unicode("const char* SettingsDescriptions[] = {\n"))
maxLen = 25
index = 0
for mod in defs["menuOptions"]:
eid = mod["id"]
if "feature" in mod:
f.write(to_unicode("#ifdef " + mod["feature"] + "\n"))
f.write(
to_unicode(
" /* ["
+ "{:02d}".format(index)
+ "] "
+ eid.ljust(maxLen)[:maxLen]
+ " */ "
)
)
f.write(
to_unicode(
'"'
+ convStr(symbolConversionTable, (obj[eid]["desc"]))
+ '",'
+ "//{} \n".format(obj[eid]["desc"])
)
)
if "feature" in mod:
f.write(to_unicode("#endif\n"))
index = index + 1
f.write(to_unicode("};\n\n"))
# ----- Writing Message strings
obj = lang["messages"]
for mod in defs["messages"]:
eid = mod["id"]
sourceText = ""
if "default" in mod:
sourceText = mod["default"]
if eid in obj:
sourceText = obj[eid]
translatedText = convStr(symbolConversionTable, sourceText)
f.write(
to_unicode(
"const char* "
+ eid
+ ' = "'
+ translatedText
+ '";'
+ "//{} \n".format(sourceText.replace("\n", "_"))
)
)
f.write(to_unicode("\n"))
# ----- Writing Characters
obj = lang["characters"]
for mod in defs["characters"]:
eid = mod["id"]
f.write(
to_unicode(
"const char* "
+ eid
+ ' = "'
+ convStr(symbolConversionTable, obj[eid])
+ '";'
+ "//{} \n".format(obj[eid])
)
)
f.write(to_unicode("\n"))
# Write out firmware constant options
constants = getConstants()
for x in constants:
f.write(
to_unicode(
"const char* "
+ x[0]
+ ' = "'
+ convStr(symbolConversionTable, x[1])
+ '";'
+ "//{} \n".format(x[1])
)
)
f.write(to_unicode("\n"))
# Debug Menu
f.write(to_unicode("const char* DebugMenu[] = {\n"))
for c in getDebugMenu():
f.write(
to_unicode(
'\t "' + convStr(symbolConversionTable, c) + '",' + "//{} \n".format(c)
)
)
f.write(to_unicode("};\n\n"))
# ----- Writing SettingsDescriptions
obj = lang["menuOptions"]
f.write(to_unicode("const char* SettingsShortNames[][2] = {\n"))
maxLen = 25
index = 0
for mod in defs["menuOptions"]:
eid = mod["id"]
if "feature" in mod:
f.write(to_unicode("#ifdef " + mod["feature"] + "\n"))
f.write(
to_unicode(
" /* ["
+ "{:02d}".format(index)
+ "] "
+ eid.ljust(maxLen)[:maxLen]
+ " */ "
)
)
f.write(
to_unicode(
'{ "'
+ convStr(symbolConversionTable, (obj[eid]["text2"][0]))
+ '", "'
+ convStr(symbolConversionTable, (obj[eid]["text2"][1]))
+ '" },'
+ "//{} \n".format(obj[eid]["text2"])
)
)
if "feature" in mod:
f.write(to_unicode("#endif\n"))
index = index + 1
f.write(to_unicode("};\n\n"))
# ----- Writing Menu Groups
obj = lang["menuGroups"]
f.write(to_unicode("const char* SettingsMenuEntries[" + str(len(obj)) + "] = {\n"))
maxLen = 25
for mod in defs["menuGroups"]:
eid = mod["id"]
f.write(to_unicode(" /* " + eid.ljust(maxLen)[:maxLen] + " */ "))
f.write(
to_unicode(
'"'
+ convStr(
symbolConversionTable,
(obj[eid]["text2"][0]) + "\\n" + obj[eid]["text2"][1],
)
+ '",'
+ "//{} \n".format(obj[eid]["text2"])
)
)
f.write(to_unicode("};\n\n"))
# ----- Writing Menu Groups Descriptions
obj = lang["menuGroups"]
f.write(
to_unicode(
"const char* SettingsMenuEntriesDescriptions[" + str(len(obj)) + "] = {\n"
)
)
maxLen = 25
for mod in defs["menuGroups"]:
eid = mod["id"]
f.write(to_unicode(" /* " + eid.ljust(maxLen)[:maxLen] + " */ "))
f.write(
to_unicode(
'"'
+ convStr(symbolConversionTable, (obj[eid]["desc"]))
+ '",'
+ "//{} \n".format(obj[eid]["desc"])
)
)
f.write(to_unicode("};\n\n"))
# ----- Block end
f.write(to_unicode("#endif\n"))
def writeUnit(languageCode, defs, f, UnitCodes):
print("Generating unit block for " + languageCode)
lang = langDict[languageCode]
unit = UnitDict[UnitCodes]
try:
langName = lang["languageLocalName"]
except KeyError:
langName = languageCode
f.write(to_unicode(" #ifdef LANG_" + languageCode + "\n"))
if unit:
f.write(to_unicode(" #define ENABLED_FAHRENHEIT_SUPPORT" + "\n"))
else:
f.write(to_unicode(" //#define ENABLED_FAHRENHEIT_SUPPORT" + "\n"))
# ----- Block end
f.write(to_unicode(" #endif /* ---- " + langName + " ---- */\n"))
def readVersion():
with open(os.path.relpath(jsonDir + "/../source/version.h"), "r") as version_file:
try:
for line in version_file:
if re.findall(r"^.*(?<=(#define)).*(?<=(BUILD_VERSION))", line):
line = re.findall(r"\"(.+?)\"", line)
if line:
version = line[0]
try:
version += (
"."
+ subprocess.check_output(
["git", "rev-parse", "--short=7", "HEAD"]
)
.strip()
.decode("ascii")
.upper()
)
# --short=7: the shorted hash with 7 digits. Increase/decrease if needed!
except OSError:
version += " git"
finally:
if version_file:
version_file.close()
return version
def read_opts():
"""Reading input parameters
First parameter = json directory
Second parameter = translation directory
Third paramter = unit directory
"""
if len(sys.argv) > 1:
jsonDir = sys.argv[1]
else:
jsonDir = "."
if len(sys.argv) > 2:
outFileTranslationCPP = sys.argv[2]
else:
outDir = os.path.relpath(jsonDir + "/../source/Core/Gen")
if not os.path.exists(outDir):
os.makedirs(outDir)
outFileTranslationCPP = os.path.join(outDir, TRANSLATION_CPP)
if len(sys.argv) > 3:
outFileUnitH = sys.argv[3]
else:
outDir = os.path.relpath(jsonDir + "/../source/Core/Inc")
outFileUnitH = os.path.join(outDir, UNIT_H)
if len(sys.argv) > 4:
raise Exception("Too many parameters!")
return jsonDir, outFileTranslationCPP, outFileUnitH
def orderOutput(langDict):
# These languages go first
mandatoryOrder = ["EN"]
# Then add all others in alphabetical order
sortedKeys = sorted(langDict.keys())
# Add the rest as they come
for key in sortedKeys:
if key not in mandatoryOrder:
mandatoryOrder.append(key)
return mandatoryOrder
def writeTarget(outFileTranslationCPP, outFileUnitH, defs, langCodes, UnitCodes):
# Start writing the file
with io.open(outFileTranslationCPP, "w", encoding="utf-8", newline="\n") as f:
writeStart(f)
for langCode in langCodes:
writeLanguage(langCode, defs, f)
with io.open(outFileUnitH, "w", encoding="utf-8", newline="\n") as f:
writeStartUnit(f)
for langCode, UnitCode in zip(langCodes, UnitCodes):
writeUnit(langCode, defs, f, UnitCode)
f.write(to_unicode("\n#endif /* _UNIT_H */\n"))
if __name__ == "__main__":
try:
jsonDir, outFileTranslationCPP, outFileUnitH = read_opts()
except:
print("usage: make_translation.py {json dir} {cpp dir}")
sys.exit(1)
try:
buildVersion = readVersion()
except:
print("error: could not get/extract build version")
sys.exit(1)
print("Build version: " + buildVersion)
print("Making " + outFileTranslationCPP + " from " + jsonDir)
print("Making " + outFileUnitH + " from " + jsonDir)
langDict, UnitDict = readTranslations(jsonDir)
defs = loadJson(os.path.join(jsonDir, "translations_def.js"), True)
langCodes = orderOutput(langDict)
UnitCodes = orderOutput(UnitDict)
writeTarget(outFileTranslationCPP, outFileUnitH, defs, langCodes, UnitCodes)
print("Done")

View File

@@ -1,279 +0,0 @@
{
"languageCode": "BG",
"languageLocalName": "Български",
"cyrillicGlyphs": true,
"messages": {
"SettingsCalibrationDone": "Калибрацията завършена!",
"SettingsCalibrationWarning": "Уверете се, че върха на поялника е със стайна температура преди да продължите!",
"SettingsResetWarning": "Сигурни ли сте, че искате да върнете фабричните настройки?",
"UVLOWarningString": "Ниско DC Напрежение",
"UndervoltageString": "Ниско Напрежение",
"InputVoltageString": "Входно V: ",
"WarningTipTempString": "Темп.: ",
"BadTipString": "ЛОШ ВРЪХ",
"SleepingSimpleString": "Сън",
"SleepingAdvancedString": "Хър Хър Хър...",
"WarningSimpleString": "ОХ!",
"WarningAdvancedString": "ВНИМАНИЕ! ТОПЛО!",
"SleepingTipAdvancedString": "Връх:",
"IdleTipString": "Връх:",
"IdleSetString": " Настройка:",
"TipDisconnectedString": "ПРЕКЪСНАТ ВРЪХ",
"SolderingAdvancedPowerPrompt": "Захранване: ",
"OffString": "Изкл.",
"ResetOKMessage": "Нулиране завършено",
"YourGainMessage": "Усилване:",
"SettingsResetMessage": "Настройките бяха\nнулирани!",
"NoAccelerometerMessage": "No accelerometer\ndetected!",
"NoPowerDeliveryMessage": "No USB-PD IC\ndetected!",
"LockingKeysString": " LOCKED",
"UnlockingKeysString": "UNLOCKED",
"WarningKeysLockedString": "!LOCKED!"
},
"characters": {
"SettingRightChar": "R",
"SettingLeftChar": "L",
"SettingAutoChar": "A",
"SettingFastChar": "F",
"SettingSlowChar": "S",
"SettingStartSolderingChar": "T",
"SettingStartSleepChar": "S",
"SettingStartSleepOffChar": "O",
"SettingStartNoneChar": "F",
"SettingSensitivityOff": "O",
"SettingSensitivityLow": "L",
"SettingSensitivityMedium": "M",
"SettingSensitivityHigh": "H",
"SettingLockDisableChar": "D",
"SettingLockBoostChar": "B",
"SettingLockFullChar": "F"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Поялник",
"Настройки"
],
"desc": "Настройки на поялника"
},
"PowerSavingMenu": {
"text2": [
"Режими",
"Настройки"
],
"desc": "Настройки енергоспестяване"
},
"UIMenu": {
"text2": [
"Интерфейс",
"Настройки"
],
"desc": "Настройки на интерфейса"
},
"AdvancedMenu": {
"text2": [
"Разширени",
"Настройки"
],
"desc": "Допълнителни настройки"
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Източник",
"захранване"
],
"desc": "Източник на захранване. Минимално напрежение. <DC 10V> <S 3.3V за клетка>"
},
"SleepTemperature": {
"text2": [
"Темп.",
"сън"
],
"desc": "Температура при режим \"сън\" <C>"
},
"SleepTimeout": {
"text2": [
"Време",
"сън"
],
"desc": "Включване в режим \"сън\" след: <Минути/Секунди>"
},
"ShutdownTimeout": {
"text2": [
"Време",
"изкл."
],
"desc": "Изключване след <Минути>"
},
"MotionSensitivity": {
"text2": [
"Усещане",
"за движение"
],
"desc": "Усещане за движение <0.Изключено 1.Слабо 9.Силно>"
},
"TemperatureUnit": {
"text2": [
"Единици за",
"температура"
],
"desc": "Единици за температура <C=Целзии F=Фаренхайт>"
},
"AdvancedIdle": {
"text2": [
"Детайлен",
"екран в покой"
],
"desc": "Покажи детайлна информация със ситен шрифт на екрана в режим на покой."
},
"DisplayRotation": {
"text2": [
"Ориентация",
"на дисплея"
],
"desc": "Ориентация на дисплея <A. Автоматично L. Лява Ръка R. Дясна Ръка>"
},
"BoostTemperature": {
"text2": [
"Турбо",
"темп."
],
"desc": "Температура за \"турбо\" режим"
},
"AutoStart": {
"text2": [
"Автоматичен",
"работен режим"
],
"desc": "Режим на поялника при включване на захранването. T=Работен, S=Сън, F=Изключен"
},
"CooldownBlink": {
"text2": [
"Мигай при",
"топъл поялник"
],
"desc": "След изключване от работен режим, индикатора за температура да мига докато човката на поялника все още е топла"
},
"TemperatureCalibration": {
"text2": [
"Калибриране",
"температура?"
],
"desc": "Калибриране на температурата"
},
"SettingsReset": {
"text2": [
"Фабрични",
"настройки?"
],
"desc": "Връщане на фабрични настройки"
},
"VoltageCalibration": {
"text2": [
"Калибриране",
"напрежение?"
],
"desc": "Калибриране на входното напрежение. Задръжте бутонa за изход"
},
"AdvancedSoldering": {
"text2": [
"Детайлен",
"работен екран"
],
"desc": "Детайлна информация в работен режим при запояване"
},
"ScrollingSpeed": {
"text2": [
"Скорост",
"на текста"
],
"desc": "Скорост на движение на този текст"
},
"TipModel": {
"text2": [
"Модел",
"на връх"
],
"desc": "Избор на модел на връх"
},
"SimpleCalibrationMode": {
"text2": [
"Бърза",
"калибрация"
],
"desc": "Бърза калибрация с използване на гореща вода"
},
"AdvancedCalibrationMode": {
"text2": [
"Прецизна",
"калибрация"
],
"desc": "Прецизна калибрация с използване на термо-двойка на върха на поялника"
},
"QCMaxVoltage": {
"text2": [
"Мощност на",
"захранване"
],
"desc": "Мощност на избраното захранване"
},
"PowerLimit": {
"text2": [
"Лимит на",
"мощност"
],
"desc": "Максимална мощност на поялника <W>"
},
"ReverseButtonTempChange": {
"text2": [
"Размяна",
"бутони +-?"
],
"desc": "Обръщане на бутоните \"+\" и \"-\" за промяна на температурата на върха на поялника"
},
"TempChangeShortStep": {
"text2": [
"Промяна T",
"бързо?"
],
"desc": "Промяна на температура при бързо натискане на бутон!"
},
"TempChangeLongStep": {
"text2": [
"Промяна Т",
"задържане?"
],
"desc": "Промяна на температура при задържане на бутон!"
},
"PowerPulsePower": {
"text2": [
"Захранващ",
"импулс"
],
"desc": "Поддържане на интензивност на захранващия импулс"
},
"TipGain": {
"text2": [
"Промяна",
"сила връх"
],
"desc": "Усилване на върха на поялника"
},
"HallEffSensitivity": {
"text2": [
"Hall Eff",
"Sensitivity"
],
"desc": "Sensitivity of the Hall effect sensor in detecting sleep <O=Off,L=Low,M=Medium,H=High>"
},
"LockingMode": {
"text2": [
"Allow buttons",
"locking"
],
"desc": "When soldering, long press on both buttons lock them <D=Disable, B=Boost only, F=Full locking>"
}
}
}

View File

@@ -1,279 +0,0 @@
{
"languageCode": "CS",
"languageLocalName": "Český",
"cyrillicGlyphs": false,
"messages": {
"SettingsCalibrationDone": "Kalibrace dokončena!",
"SettingsCalibrationWarning": "Ujistěte se, že hrot má pokojovou teplotu!",
"SettingsResetWarning": "Opravdu chcete resetovat zařízení do továrního nastavení?",
"UVLOWarningString": "Nízké DC",
"UndervoltageString": "! Nízké napětí !",
"InputVoltageString": "Napětí: ",
"WarningTipTempString": "Teplota: ",
"BadTipString": "ŠP. HROT",
"SleepingSimpleString": "Zzz ",
"SleepingAdvancedString": "Režim spánku...",
"WarningSimpleString": "PÁLÍ",
"WarningAdvancedString": "!! HORKÝ HROT !!",
"SleepingTipAdvancedString": "Hrot:",
"IdleTipString": "Hrot:",
"IdleSetString": " Cíl:",
"TipDisconnectedString": "HROT NEPŘIPOJEN",
"SolderingAdvancedPowerPrompt": "Ohřev: ",
"OffString": "Vyp",
"ResetOKMessage": "Reset OK",
"YourGainMessage": "Zisk:",
"SettingsResetMessage": "Tov. nas. obnov.",
"NoAccelerometerMessage": "No accelerometer\ndetected!",
"NoPowerDeliveryMessage": "No USB-PD IC\ndetected!",
"LockingKeysString": " LOCKED",
"UnlockingKeysString": "UNLOCKED",
"WarningKeysLockedString": "!LOCKED!"
},
"characters": {
"SettingRightChar": "P",
"SettingLeftChar": "L",
"SettingAutoChar": "A",
"SettingFastChar": "R",
"SettingSlowChar": "P",
"SettingStartSolderingChar": "T",
"SettingStartSleepChar": "S",
"SettingStartSleepOffChar": "O",
"SettingStartNoneChar": "F",
"SettingSensitivityOff": "O",
"SettingSensitivityLow": "L",
"SettingSensitivityMedium": "M",
"SettingSensitivityHigh": "H",
"SettingLockDisableChar": "D",
"SettingLockBoostChar": "B",
"SettingLockFullChar": "F"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Pájecí",
"nastavení"
],
"desc": "Nastavení pájení (boost, auto start...)."
},
"PowerSavingMenu": {
"text2": [
"Režim",
"spánku"
],
"desc": "Nastavení režimu spánku, automatického vypnutí..."
},
"UIMenu": {
"text2": [
"Uživatelské",
"rozhraní"
],
"desc": "Nastavení uživatelského rozhraní."
},
"AdvancedMenu": {
"text2": [
"Pokročilé",
"volby"
],
"desc": "Pokročilé volby (detailní obrazovky, kalibrace, tovární nastavení...)."
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Zdroj",
"napájení"
],
"desc": "Při nižším napětí ukončí pájení <DC=10V, ?S=?x3.3V pro LiPo, LiIon...>."
},
"SleepTemperature": {
"text2": [
"Teplota v",
"r. spánku"
],
"desc": "Teplota v režimu spánku."
},
"SleepTimeout": {
"text2": [
"Čas do",
"r. spánku"
],
"desc": "Čas do režimu spánku <Minut/Sekund>."
},
"ShutdownTimeout": {
"text2": [
"Čas do",
"vypnutí"
],
"desc": "Čas do automatického vypnutí <Minut>."
},
"MotionSensitivity": {
"text2": [
"Citlivost",
"det. pohybu"
],
"desc": "Citlivost detekce pohybu <0=Vyp, 1=Min, ... 9=Max>."
},
"TemperatureUnit": {
"text2": [
"Jednotky",
"teploty"
],
"desc": "Jednotky měření teploty <C=Celsius, F=Fahrenheit>."
},
"AdvancedIdle": {
"text2": [
"Podrobnosti",
"na vých. obr."
],
"desc": "Zobrazit podrobnosti na výchozí obrazovce?"
},
"DisplayRotation": {
"text2": [
"Orientace",
"obrazovky"
],
"desc": "Orientace obrazovky <A=Auto, L=Levák, P=Pravák>."
},
"BoostTemperature": {
"text2": [
"Teplota v",
"r. boost"
],
"desc": "Teplota v režimu boost."
},
"AutoStart": {
"text2": [
"Automatický",
"start"
],
"desc": "Při startu ihned nahřát hrot?"
},
"CooldownBlink": {
"text2": [
"Blikáni při",
"chladnutí"
],
"desc": "Blikání teploty při chladnutí, dokud je hrot horký?"
},
"TemperatureCalibration": {
"text2": [
"Kalibrovat",
"teplotu?"
],
"desc": "Kalibrace měření teploty."
},
"SettingsReset": {
"text2": [
"Tovární",
"nastavení?"
],
"desc": "Obnovení továrního nastavení."
},
"VoltageCalibration": {
"text2": [
"Kalibrovat",
"vstupní napětí?"
],
"desc": "Kalibrace vstupního napětí. Tlačítky uprav, podržením potvrď."
},
"AdvancedSoldering": {
"text2": [
"Podrobnosti",
"při pájení"
],
"desc": "Zobrazit podrobnosti při pájení?"
},
"ScrollingSpeed": {
"text2": [
"Rychlost",
"popisků"
],
"desc": "Rychlost posuvu popisků podobných tomuto <P=Pomalu, R=Rychle>"
},
"TipModel": {
"text2": [
"Model",
"hrotu"
],
"desc": "Výběr modelu hrotu."
},
"SimpleCalibrationMode": {
"text2": [
"Jednoduchá",
"kalibrace"
],
"desc": "Jednoduchá kalibrace pomocí horké vody."
},
"AdvancedCalibrationMode": {
"text2": [
"Pokročilá",
"kalibrace"
],
"desc": "Pokročilá kalibrace pomocí termočlánku na hrotu."
},
"QCMaxVoltage": {
"text2": [
"Výkon",
"ve wattech"
],
"desc": "Výkon použítého napájecího adaptéru ve wattech."
},
"PowerLimit": {
"text2": [
"Omezení",
"Výkonu"
],
"desc": "Maximální příkon <Watty>"
},
"ReverseButtonTempChange": {
"text2": [
"Prohodit",
"tl. +-?"
],
"desc": "Prohodí tlačítka plus a minus pro změnu teploty hrotu."
},
"TempChangeShortStep": {
"text2": [
"Krok teploty",
"krátký?"
],
"desc": "Velikost skoku při změně teploty krátkým stiskem tlačítka!"
},
"TempChangeLongStep": {
"text2": [
"Krok teploty",
"dlouhý?"
],
"desc": "Velikost skoku při změně teploty dlouhým stiskem tlačítka!"
},
"PowerPulsePower": {
"text2": [
"Intenzita",
"Výkon. pulsu"
],
"desc": "Puls pro udržení zařízení v chodu (kvůli power bankám)."
},
"TipGain": {
"text2": [
"Změnit",
"zisk hr."
],
"desc": "Zisk hrotu (měření)"
},
"HallEffSensitivity": {
"text2": [
"Hall Eff",
"Sensitivity"
],
"desc": "Sensitivity of the Hall effect sensor in detecting sleep <O=Off,L=Low,M=Medium,H=High>"
},
"LockingMode": {
"text2": [
"Allow buttons",
"locking"
],
"desc": "When soldering, long press on both buttons lock them <D=Disable, B=Boost only, F=Full locking>"
}
}
}

View File

@@ -1,279 +0,0 @@
{
"languageCode": "DA",
"languageLocalName": "Dansk",
"cyrillicGlyphs": false,
"messages": {
"SettingsCalibrationDone": "Calibration done!",
"SettingsCalibrationWarning": "Sørg for at loddespidsen er ved stuetemperatur, inden du fortsætter!",
"SettingsResetWarning": "Are you sure to reset settings to default values?",
"UVLOWarningString": "Lav Volt",
"UndervoltageString": "Undervoltage",
"InputVoltageString": "Input V: ",
"WarningTipTempString": "Tip Temp: ",
"BadTipString": "BAD TIP",
"SleepingSimpleString": "Zzzz",
"SleepingAdvancedString": "Dvale...",
"WarningSimpleString": "Varm",
"WarningAdvancedString": "VARM LODDESPIDS!",
"SleepingTipAdvancedString": "Tip:",
"IdleTipString": "Tip:",
"IdleSetString": " Set:",
"TipDisconnectedString": "TIP DISCONNECTED",
"SolderingAdvancedPowerPrompt": "Power: ",
"OffString": "Off",
"ResetOKMessage": "Reset OK",
"YourGainMessage": "Your gain:",
"SettingsResetMessage": "Settings were\nreset!",
"NoAccelerometerMessage": "No accelerometer\ndetected!",
"NoPowerDeliveryMessage": "No USB-PD IC\ndetected!",
"LockingKeysString": " LOCKED",
"UnlockingKeysString": "UNLOCKED",
"WarningKeysLockedString": "!LOCKED!"
},
"characters": {
"SettingRightChar": "H",
"SettingLeftChar": "V",
"SettingAutoChar": "A",
"SettingFastChar": "F",
"SettingSlowChar": "S",
"SettingStartSolderingChar": "L",
"SettingStartSleepChar": "D",
"SettingStartSleepOffChar": "O",
"SettingStartNoneChar": "S",
"SettingSensitivityOff": "O",
"SettingSensitivityLow": "L",
"SettingSensitivityMedium": "M",
"SettingSensitivityHigh": "H",
"SettingLockDisableChar": "D",
"SettingLockBoostChar": "B",
"SettingLockFullChar": "F"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Soldering",
"Settings"
],
"desc": "Soldering settings"
},
"PowerSavingMenu": {
"text2": [
"Sleep",
"Modes"
],
"desc": "Power Saving Settings"
},
"UIMenu": {
"text2": [
"User",
"Interface"
],
"desc": "User Interface settings"
},
"AdvancedMenu": {
"text2": [
"Advanced",
"Options"
],
"desc": "Advanced options"
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Power",
"source"
],
"desc": "Strømforsyning. Indstil Cutoff Spændingen. <DC 10V <S 3.3V per cell"
},
"SleepTemperature": {
"text2": [
"Sleep",
"temp"
],
"desc": "Dvale Temperatur <C>"
},
"SleepTimeout": {
"text2": [
"Sleep",
"timeout"
],
"desc": "Dvale Timeout <Minutter/Sekunder"
},
"ShutdownTimeout": {
"text2": [
"Shutdown",
"timeout"
],
"desc": "sluknings Timeout <Minutter"
},
"MotionSensitivity": {
"text2": [
"Motion",
"sensitivity"
],
"desc": "Bevægelsesfølsomhed <0.Slukket 1.Mindst følsom 9.Mest følsom"
},
"TemperatureUnit": {
"text2": [
"Temperature",
"unit"
],
"desc": "Temperatur Enhed <C=Celsius F=Fahrenheit"
},
"AdvancedIdle": {
"text2": [
"Detailed",
"idle screen"
],
"desc": "Vis detialieret information med en mindre skriftstørrelse på standby skærmen."
},
"DisplayRotation": {
"text2": [
"Display",
"orientation"
],
"desc": "Skærm Orientering <A. Automatisk V. Venstre Håndet H. Højre Håndet"
},
"BoostTemperature": {
"text2": [
"Boost",
"temp"
],
"desc": "Temperatur i \"boost\" mode"
},
"AutoStart": {
"text2": [
"Auto",
"start"
],
"desc": "Start automatisk med lodning når strøm sættes til. L=Lodning, D= Dvale tilstand,S=Slukket"
},
"CooldownBlink": {
"text2": [
"Cooldown",
"blink"
],
"desc": "Blink temperaturen på skærmen, mens spidsen stadig er varm."
},
"TemperatureCalibration": {
"text2": [
"Calibrate",
"temperature?"
],
"desc": "kalibrere spids temperatur."
},
"SettingsReset": {
"text2": [
"Factory",
"Reset?"
],
"desc": "Gendan alle indstillinger"
},
"VoltageCalibration": {
"text2": [
"Calibrate",
"input voltage?"
],
"desc": "VIN kalibrering. Knapperne justere, Lang tryk for at gå ud"
},
"AdvancedSoldering": {
"text2": [
"Detailed",
"solder screen"
],
"desc": "Vis detialieret information mens der loddes"
},
"ScrollingSpeed": {
"text2": [
"Scrolling",
"speed"
],
"desc": "Speed this text scrolls past at"
},
"TipModel": {
"text2": [
"Tip",
"Model"
],
"desc": "Tip Model selection"
},
"SimpleCalibrationMode": {
"text2": [
"Simple",
"Calibration"
],
"desc": "Simple Calibration using Hot water"
},
"AdvancedCalibrationMode": {
"text2": [
"Advanced",
"Calibration"
],
"desc": "Advanced calibration using thermocouple on the tip"
},
"QCMaxVoltage": {
"text2": [
"Power",
"Wattage"
],
"desc": "Power Wattage of the power adapter used"
},
"PowerLimit": {
"text2": [
"Power",
"Limit"
],
"desc": "Maximum power the iron can use <Watts>"
},
"ReverseButtonTempChange": {
"text2": [
"Key +-",
"reverse?"
],
"desc": "Reverse the tip temperature change buttons plus minus assignment."
},
"TempChangeShortStep": {
"text2": [
"Temp change",
"short?"
],
"desc": "Temperature change steps on short button press!"
},
"TempChangeLongStep": {
"text2": [
"Temp change",
"long?"
],
"desc": "Temperature change steps on long button press!"
},
"PowerPulsePower": {
"text2": [
"Power",
"Pulse W"
],
"desc": "Keep awake pulse power intensity"
},
"TipGain": {
"text2": [
"Modify",
"tip gain"
],
"desc": "Tip gain"
},
"HallEffSensitivity": {
"text2": [
"Hall Eff",
"Sensitivity"
],
"desc": "Sensitivity of the Hall effect sensor in detecting sleep <O=Off,L=Low,M=Medium,H=High>"
},
"LockingMode": {
"text2": [
"Allow buttons",
"locking"
],
"desc": "When soldering, long press on both buttons lock them <D=Disable, B=Boost only, F=Full locking>"
}
}
}

View File

@@ -1,280 +0,0 @@
{
"languageCode": "DE",
"languageLocalName": "Deutsch",
"cyrillicGlyphs": false,
"tempUnitFahrenheit": false,
"messages": {
"SettingsCalibrationDone": "Kalibrierung abgeschlossen!",
"SettingsCalibrationWarning": "Vor dem Fortfahren muss die Lötspitze vollständig abgekühlt sein!",
"SettingsResetWarning": "Sicher, dass alle Werte zurückgesetzt werden sollen?",
"UVLOWarningString": "V niedr.",
"UndervoltageString": "Unterspannung",
"InputVoltageString": "V Eingang: ",
"WarningTipTempString": "Temperatur: ",
"BadTipString": "Spitze Defekt",
"SleepingSimpleString": "Zzz ",
"SleepingAdvancedString": "Ruhemodus...",
"WarningSimpleString": "HEIß!",
"WarningAdvancedString": "! Achtung Heiß !",
"SleepingTipAdvancedString": "Temp:",
"IdleTipString": "Ist:",
"IdleSetString": " Soll:",
"TipDisconnectedString": "Spitze fehlt",
"SolderingAdvancedPowerPrompt": "Leistung: ",
"OffString": "Aus",
"NoAccelerometerMessage": "Kein Bewegungssensor\nerkannt!",
"NoPowerDeliveryMessage": "Kein USB-PD IC\nerkannt!",
"ResetOKMessage": "Reset OK",
"YourGainMessage": "Dein Faktor:",
"SettingsResetMessage": "Einstellungen\nzurückgesetzt!",
"LockingKeysString": "GESPERRT",
"UnlockingKeysString": "ENTSPERRT",
"WarningKeysLockedString": "!GESPERRT!"
},
"characters": {
"SettingRightChar": "R",
"SettingLeftChar": "L",
"SettingAutoChar": "A",
"SettingFastChar": "S",
"SettingSlowChar": "L",
"SettingStartSolderingChar": "L",
"SettingStartSleepChar": "R",
"SettingStartSleepOffChar": "K",
"SettingStartNoneChar": "A",
"SettingSensitivityOff": "A",
"SettingSensitivityLow": "N",
"SettingSensitivityMedium": "M",
"SettingSensitivityHigh": "H",
"SettingLockDisableChar": "D",
"SettingLockBoostChar": "B",
"SettingLockFullChar": "V"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Löt-",
"einstellungen"
],
"desc": "Löteinstellungen"
},
"PowerSavingMenu": {
"text2": [
"Ruhe-",
"modus"
],
"desc": "Energiespareinstellungen"
},
"UIMenu": {
"text2": [
"Anzeige-",
"einstellungen"
],
"desc": "Menüeinstellungen"
},
"AdvancedMenu": {
"text2": [
"Erweiterte",
"Optionen"
],
"desc": "Erweiterte Einstellungen"
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Spannungs-",
"quelle"
],
"desc": "Spannungsquelle (Abschaltspannung) <DC=10V, nS=n*3.3V für n LiIon-Zellen>"
},
"SleepTemperature": {
"text2": [
"Ruhe-",
"temperatur"
],
"desc": "Ruhetemperatur der Spitze"
},
"SleepTimeout": {
"text2": [
"Ruhever-",
"zögerung"
],
"desc": "System wechselt in Ruhemodus, wenn innerhalb dieser Dauer nicht bewegt <S=Sekunden | M=Minuten>"
},
"ShutdownTimeout": {
"text2": [
"Abschalt-",
"zeit"
],
"desc": "System schaltet ab, wenn innerhalb dieser Dauer nicht bewegt <M=Minuten>"
},
"MotionSensitivity": {
"text2": [
"Bewegungs-",
"empfindlichk."
],
"desc": "0=aus | 1=minimal | ... | 9=maximal"
},
"TemperatureUnit": {
"text2": [
"Temperatur-",
"einheit"
],
"desc": "C=Celsius | F=Fahrenheit"
},
"AdvancedIdle": {
"text2": [
"Detaillierte",
"Ruheansicht"
],
"desc": "Detaillierte Anzeige im Ruhemodus"
},
"DisplayRotation": {
"text2": [
"Anzeige-",
"ausrichtung"
],
"desc": "A=automatisch | L=linkshändig | R=rechtshändig"
},
"BoostTemperature": {
"text2": [
"Boost-",
"temperatur"
],
"desc": "Temperatur der Lötspitze im Boostmodus"
},
"AutoStart": {
"text2": [
"Start im",
"Lötmodus"
],
"desc": "Bestimmt das Heizverhalten beim Einschalten der Spannungsversorgung <A=aus | L=Lötmodus | R=Ruhemodus | K=Ruhemodus mit klater Spitze>"
},
"CooldownBlink": {
"text2": [
"Abkühl-",
"blinken"
],
"desc": "Temperaturanzeige blinkt beim Abkühlen, solange Spitze heiß ist"
},
"TemperatureCalibration": {
"text2": [
"Temperatur",
"kalibrieren?"
],
"desc": "Kalibrierung der Lötspitzentemperatur"
},
"SettingsReset": {
"text2": [
"Einstellungen",
"zurücksetzen?"
],
"desc": "Werte werden auf Werkseinstellungen zurückgesetzt!"
},
"VoltageCalibration": {
"text2": [
"Eingangsspannung",
"kalibrieren?"
],
"desc": "Kalibrierung der Eingangsspannung. Kurzer Tastendruck zum Einstellen, langer Tastendruck zum Verlassen."
},
"AdvancedSoldering": {
"text2": [
"Detaillierte",
"Lötansicht"
],
"desc": "Detaillierte Anzeige im Lötmodus"
},
"ScrollingSpeed": {
"text2": [
"Scroll-",
"geschw."
],
"desc": "Scrollgeschwindigkeit der Erläuterungen <L=langsam | S=schnell>"
},
"TipModel": {
"text2": [
"Löt-",
"spitze"
],
"desc": "Auswahl der Lötspitze"
},
"SimpleCalibrationMode": {
"text2": [
"Einfache",
"Kalibrierung"
],
"desc": "Einfache Kalibrierung mittels heißen Wassers"
},
"AdvancedCalibrationMode": {
"text2": [
"Erweiterte",
"Kalibrierung"
],
"desc": "Erweiterte Kalibrierung mittels eines Thermoelements an der Lötspitze"
},
"QCMaxVoltage": {
"text2": [
"Spannungs-",
"grenze"
],
"desc": "Maximal zulässige Spannung der verwendeten Spannungsversorgung <V=Volt>"
},
"PowerLimit": {
"text2": [
"Leistungs-",
"grenze"
],
"desc": "Maximale zulässige Leistungsaufnahme des Lötkolbens <W=Watt>"
},
"ReverseButtonTempChange": {
"text2": [
"+- Tasten",
"umkehren?"
],
"desc": "Tastenbelegung zur Temperaturänderung umkehren"
},
"TempChangeShortStep": {
"text2": [
"Temp-Schritt",
"Druck kurz"
],
"desc": "Schrittweite für Temperaturwechsel bei kurzem Tastendruck"
},
"TempChangeLongStep": {
"text2": [
"Temp-Schritt",
"Druck lang"
],
"desc": "Schrittweite für Temperaturwechsel bei langem Tastendruck"
},
"PowerPulsePower": {
"text2": [
"Leistungs-",
"impuls"
],
"desc": "Powerbank wird mittels eines Impulses wach gehalten <Watt>"
},
"TipGain": {
"text2": [
"Ändere",
"Spitzen Faktor"
],
"desc": "Spitzen Faktor"
},
"HallEffSensitivity": {
"text2": [
"Hall Sensor",
"Empfindlichkeit"
],
"desc": "Empfindlichkeit des Hall Effekt Sensors beim Erkennen des Ruhemodus <A=aus | N=niedrig | M=mittel | H=hoch>"
},
"LockingMode": {
"text2": [
"Knopf-",
"sperre"
],
"desc": "Langes drücken beider Knöpfe im Lötmodus, sperrt diese <D=deaktiviert | B=nur Boost | V=vollständig gesperrt>"
}
}
}

View File

@@ -1,280 +0,0 @@
{
"languageCode": "EN",
"languageLocalName": "English",
"cyrillicGlyphs": false,
"tempUnitFahrenheit": true,
"messages": {
"SettingsCalibrationDone": "Calibration done!",
"SettingsCalibrationWarning": "Please ensure the tip is at room temperature, before continuing!",
"SettingsResetWarning": "Sure you want to restore default settings?",
"UVLOWarningString": "DC LOW",
"UndervoltageString": "Undervoltage",
"InputVoltageString": "Input V: ",
"WarningTipTempString": "Tip temp: ",
"BadTipString": "BAD TIP",
"SleepingSimpleString": "Zzzz",
"SleepingAdvancedString": "Sleeping...",
"WarningSimpleString": "HOT!",
"WarningAdvancedString": "!!! HOT TIP !!!",
"SleepingTipAdvancedString": "Tip:",
"IdleTipString": "Tip:",
"IdleSetString": " Set:",
"TipDisconnectedString": "NO TIP",
"SolderingAdvancedPowerPrompt": "Power: ",
"OffString": "Off",
"ResetOKMessage": "Reset OK",
"YourGainMessage": "Your gain:",
"SettingsResetMessage": "Settings were\nreset!",
"NoAccelerometerMessage": "No accelerometer\ndetected!",
"NoPowerDeliveryMessage": "No USB-PD IC\ndetected!",
"LockingKeysString": "LOCKED",
"UnlockingKeysString": "UNLOCKED",
"WarningKeysLockedString": "!LOCKED!"
},
"characters": {
"SettingRightChar": "R",
"SettingLeftChar": "L",
"SettingAutoChar": "A",
"SettingFastChar": "F",
"SettingSlowChar": "S",
"SettingStartSolderingChar": "S",
"SettingStartSleepChar": "Z",
"SettingStartSleepOffChar": "R",
"SettingStartNoneChar": "O",
"SettingSensitivityOff": "O",
"SettingSensitivityLow": "L",
"SettingSensitivityMedium": "M",
"SettingSensitivityHigh": "H",
"SettingLockDisableChar": "D",
"SettingLockBoostChar": "B",
"SettingLockFullChar": "F"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Soldering",
"settings"
],
"desc": "Soldering settings"
},
"PowerSavingMenu": {
"text2": [
"Sleep",
"mode"
],
"desc": "Power saving settings"
},
"UIMenu": {
"text2": [
"User",
"interface"
],
"desc": "User interface settings"
},
"AdvancedMenu": {
"text2": [
"Advanced",
"options"
],
"desc": "Advanced options"
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Power",
"source"
],
"desc": "Power source. Sets cutoff voltage. <DC 10V> <S 3.3V per cell, disable power limit>"
},
"SleepTemperature": {
"text2": [
"Sleep",
"temp"
],
"desc": "Tip temperature while in \"sleep mode\""
},
"SleepTimeout": {
"text2": [
"Sleep",
"timeout"
],
"desc": "Interval before \"sleep mode\" kicks in <S=seconds | M=minutes>"
},
"ShutdownTimeout": {
"text2": [
"Shutdown",
"timeout"
],
"desc": "Interval before the iron shuts down <M=minutes>"
},
"MotionSensitivity": {
"text2": [
"Motion",
"sensitivity"
],
"desc": "0=off | 1=least sensitive | ... | 9=most sensitive"
},
"TemperatureUnit": {
"text2": [
"Temperature",
"unit"
],
"desc": "C=Celsius | F=Fahrenheit"
},
"AdvancedIdle": {
"text2": [
"Detailed",
"idle screen"
],
"desc": "Display detailed information in a smaller font on the idle screen"
},
"DisplayRotation": {
"text2": [
"Display",
"orientation"
],
"desc": "A=automatic | L=left-handed | R=right-handed"
},
"BoostTemperature": {
"text2": [
"Boost",
"temp"
],
"desc": "Temperature used in \"boost mode\""
},
"AutoStart": {
"text2": [
"Auto",
"start"
],
"desc": "Starts the iron into soldering mode on power up <O=off | S=soldering | Z=sleep | R=sleep at room temperature>"
},
"CooldownBlink": {
"text2": [
"Cooldown",
"blink"
],
"desc": "Flash the temperature after heating was halted, while the tip is still hot"
},
"TemperatureCalibration": {
"text2": [
"Calibrate",
"temperature?"
],
"desc": "Start tip temperature offset calibration"
},
"SettingsReset": {
"text2": [
"Factory",
"reset?"
],
"desc": "Reset settings to default"
},
"VoltageCalibration": {
"text2": [
"Calibrate",
"input voltage?"
],
"desc": "Start VIN calibration <long press to exit>"
},
"AdvancedSoldering": {
"text2": [
"Detailed",
"solder screen"
],
"desc": "Display detailed information in a smaller font on soldering screen"
},
"ScrollingSpeed": {
"text2": [
"Scrolling",
"speed"
],
"desc": "Speed info text scrolls past at <S=slow | F=fast>"
},
"TipModel": {
"text2": [
"Tip",
"model"
],
"desc": "Tip model selection"
},
"SimpleCalibrationMode": {
"text2": [
"Simple",
"calibration"
],
"desc": "Using hot water to calibrate tip"
},
"AdvancedCalibrationMode": {
"text2": [
"Advanced",
"calibration"
],
"desc": "Using a thermocouple on the tip to calibrate it"
},
"QCMaxVoltage": {
"text2": [
"QC",
"voltage"
],
"desc": "Desired max QC voltage the iron negotiates for"
},
"PowerLimit": {
"text2": [
"Power",
"limit"
],
"desc": "Maximum power the iron can use <W=watt>"
},
"ReverseButtonTempChange": {
"text2": [
"Reverse",
"+ - keys"
],
"desc": "Reverse assignment of temperature adjustment buttons"
},
"TempChangeShortStep": {
"text2": [
"Temp change",
"short"
],
"desc": "Temperature change increment on short button press"
},
"TempChangeLongStep": {
"text2": [
"Temp change",
"long"
],
"desc": "Temperature change increment on long button press"
},
"PowerPulsePower": {
"text2": [
"Power",
"pulse"
],
"desc": "Intensity of power of keep-awake-pulse <watt>"
},
"TipGain": {
"text2": [
"Modify",
"tip gain"
],
"desc": "Tip gain"
},
"HallEffSensitivity": {
"text2": [
"Hall sensor",
"sensitivity"
],
"desc": "Sensitivity of the Hall effect sensor to detect sleep <O=off | L=low | M=medium | H=high>"
},
"LockingMode": {
"text2": [
"Allow locking",
"buttons"
],
"desc": "When soldering, long press both buttons, to lock them <D=disable | B=\"boost mode\" only | F=full locking>"
}
}
}

View File

@@ -1,279 +0,0 @@
{
"languageCode": "ES",
"languageLocalName": "Castellano",
"cyrillicGlyphs": false,
"messages": {
"SettingsCalibrationDone": "¡Calibrada!",
"SettingsCalibrationWarning": "¡Asegúrate que la punta esté a temperatura ambiente antes de empezar!",
"SettingsResetWarning": "¿Quieres restablecer los ajustes?",
"UVLOWarningString": "CC BAJA",
"UndervoltageString": "Voltaje bajo",
"InputVoltageString": "Voltaje: ",
"WarningTipTempString": "Temp punta: ",
"BadTipString": "PT. ROTA",
"SleepingSimpleString": "Zzzz",
"SleepingAdvancedString": "En reposo...",
"WarningSimpleString": "QUEMA",
"WarningAdvancedString": "¡LA PUNTA QUEMA!",
"SleepingTipAdvancedString": "Punta:",
"IdleTipString": "Punta:",
"IdleSetString": " Aj:",
"TipDisconnectedString": "NO HAY PUNTA",
"SolderingAdvancedPowerPrompt": "Potencia: ",
"OffString": " No",
"ResetOKMessage": "Hecho. ",
"YourGainMessage": "Gananc.:",
"SettingsResetMessage": "Ajustes borrados",
"NoAccelerometerMessage": "No accelerometer\ndetected!",
"NoPowerDeliveryMessage": "No USB-PD IC\ndetected!",
"LockingKeysString": " LOCKED",
"UnlockingKeysString": "UNLOCKED",
"WarningKeysLockedString": "!LOCKED!"
},
"characters": {
"SettingRightChar": "D",
"SettingLeftChar": "I",
"SettingAutoChar": "A",
"SettingFastChar": "R",
"SettingSlowChar": "L",
"SettingStartSolderingChar": "S",
"SettingStartSleepChar": "R",
"SettingStartSleepOffChar": "F",
"SettingStartNoneChar": "N",
"SettingSensitivityOff": "O",
"SettingSensitivityLow": "L",
"SettingSensitivityMedium": "M",
"SettingSensitivityHigh": "H",
"SettingLockDisableChar": "D",
"SettingLockBoostChar": "B",
"SettingLockFullChar": "F"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Ajustes de",
"soldadura"
],
"desc": "Ajustes para soldar."
},
"PowerSavingMenu": {
"text2": [
"Modos de",
"reposo"
],
"desc": "Ajustes de ahorro energético."
},
"UIMenu": {
"text2": [
"Interfaz",
"de usuario"
],
"desc": "Ajustes de interfaz de usuario."
},
"AdvancedMenu": {
"text2": [
"Ajustes",
"avanzados"
],
"desc": "Ajustes avanzados."
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Fuente",
"de energía"
],
"desc": "Elige el tipo de fuente para limitar el voltaje <DC 10V> <S 3,3V por pila, ilimitado>"
},
"SleepTemperature": {
"text2": [
"Temperatura",
"en reposo"
],
"desc": "Temperatura de la punta en reposo."
},
"SleepTimeout": {
"text2": [
"Entrar",
"en reposo"
],
"desc": "Tiempo de inactividad para entrar en reposo <min/seg>"
},
"ShutdownTimeout": {
"text2": [
"Tiempo de",
"apagado"
],
"desc": "Tiempo de inactividad para apagarse <en minutos>"
},
"MotionSensitivity": {
"text2": [
"Detección de",
"movimiento"
],
"desc": "Tiempo de reacción al agarrar <0=no 1=menos sensible 9=más sensible>"
},
"TemperatureUnit": {
"text2": [
"Unidad de",
"temperatura"
],
"desc": "Unidad de temperatura <C=centígrados F=Fahrenheit>"
},
"AdvancedIdle": {
"text2": [
"Info extra en",
"modo reposo"
],
"desc": "Muestra información detallada en letra pequeña al reposar."
},
"DisplayRotation": {
"text2": [
"Orientación",
"de pantalla"
],
"desc": "Orientación de la pantalla <A=automático I=zurdo D=diestro>"
},
"BoostTemperature": {
"text2": [
"Ajustar la",
"temp. extra"
],
"desc": "Temperatura momentánea que se alcanza al apretar el botón del modo extra."
},
"AutoStart": {
"text2": [
"Calentar",
"al enchufar"
],
"desc": "Se calienta él solo al arrancar <S=entrar en modo soldar R=solo entrar en reposo F=en reposo pero mantiene la punta fría N=no>"
},
"CooldownBlink": {
"text2": [
"Parpadear",
"al enfriar"
],
"desc": "La temperatura en pantalla parpadea mientras la punta siga caliente."
},
"TemperatureCalibration": {
"text2": [
"Calibrar temp.",
"de la punta"
],
"desc": "Calibra la desviación térmica de la punta."
},
"SettingsReset": {
"text2": [
"Volver a ajustes",
"de fábrica"
],
"desc": "Restablece todos los ajustes a los valores originales."
},
"VoltageCalibration": {
"text2": [
"Calibrar voltaje",
"de entrada"
],
"desc": "Calibra VIN. Ajusta con ambos botones y mantén pulsado para salir."
},
"AdvancedSoldering": {
"text2": [
"Info extra",
"al soldar"
],
"desc": "Muestra más datos por pantalla cuando se está soldando."
},
"ScrollingSpeed": {
"text2": [
"Velocidad",
"del texto"
],
"desc": "Velocidad de desplazamiento del texto <R=rápida L=lenta>"
},
"TipModel": {
"text2": [
"Modelo de",
"punta"
],
"desc": "Elegir el modelo de punta actual."
},
"SimpleCalibrationMode": {
"text2": [
"Calibración",
"simple"
],
"desc": "Calibración simple con agua caliente."
},
"AdvancedCalibrationMode": {
"text2": [
"Calibración",
"avanzada"
],
"desc": "Calibrar con un termopar en la punta; más difícil."
},
"QCMaxVoltage": {
"text2": [
"Potencia de",
"entrada"
],
"desc": "Potencia en vatios del adaptador de corriente utilizado."
},
"PowerLimit": {
"text2": [
"Ajustar la",
"potenc. máx."
],
"desc": "Elige el límite de potencia máxima del soldador <en vatios>"
},
"ReverseButtonTempChange": {
"text2": [
"Invertir",
"botones +/-"
],
"desc": "Intercambia las funciones de subir y bajar la temperatura de los botones +/- para que funcionen al revés."
},
"TempChangeShortStep": {
"text2": [
"Cambio temp.",
"puls. cortas"
],
"desc": "Subir y bajar X grados de temperatura con cada pulsación corta de los botones +/-."
},
"TempChangeLongStep": {
"text2": [
"Cambio temp.",
"puls. largas"
],
"desc": "Subir y bajar X grados de temperatura con cada pulsación larga de los botones +/-."
},
"PowerPulsePower": {
"text2": [
"Pulsos bat.",
"constantes"
],
"desc": "Aplica unos pulsos necesarios para mantener encendidas ciertas baterías portátiles. En vatios."
},
"TipGain": {
"text2": [
"Ajustar ganancia",
"de punta"
],
"desc": "Modificar el valor de ganancia de la punta."
},
"HallEffSensitivity": {
"text2": [
"Hall Eff",
"Sensitivity"
],
"desc": "Sensitivity of the Hall effect sensor in detecting sleep <O=Off,L=Low,M=Medium,H=High>"
},
"LockingMode": {
"text2": [
"Allow buttons",
"locking"
],
"desc": "When soldering, long press on both buttons lock them <D=Disable, B=Boost only, F=Full locking>"
}
}
}

View File

@@ -1,279 +0,0 @@
{
"languageCode": "FI",
"languageLocalName": "Suomi",
"cyrillicGlyphs": false,
"messages": {
"SettingsCalibrationDone": "Calibration done!",
"SettingsCalibrationWarning": "Varmista että kärki on huoneenlämpöinen ennen jatkamista!",
"SettingsResetWarning": "Haluatko varmasti palauttaa oletusarvot?",
"UVLOWarningString": "DC LOW",
"UndervoltageString": "Alijännite",
"InputVoltageString": "Jännite: ",
"WarningTipTempString": "Lämpötila: ",
"BadTipString": "VIKATILA",
"SleepingSimpleString": "Zzzz",
"SleepingAdvancedString": "Lepotila...",
"WarningSimpleString": "HOT",
"WarningAdvancedString": "! KÄRKI KUUMA !",
"SleepingTipAdvancedString": "Kärki:",
"IdleTipString": "Kärki:",
"IdleSetString": " Asetus:",
"TipDisconnectedString": "KÄRKI ON IRTI",
"SolderingAdvancedPowerPrompt": "Teho: ",
"OffString": "OFF",
"ResetOKMessage": "Reset OK",
"YourGainMessage": "Your gain:",
"SettingsResetMessage": "Settings were\nreset!",
"NoAccelerometerMessage": "No accelerometer\ndetected!",
"NoPowerDeliveryMessage": "No USB-PD IC\ndetected!",
"LockingKeysString": " LOCKED",
"UnlockingKeysString": "UNLOCKED",
"WarningKeysLockedString": "!LOCKED!"
},
"characters": {
"SettingRightChar": "O",
"SettingLeftChar": "V",
"SettingAutoChar": "A",
"SettingFastChar": "N",
"SettingSlowChar": "H",
"SettingStartSolderingChar": "T",
"SettingStartSleepChar": "S",
"SettingStartSleepOffChar": "O",
"SettingStartNoneChar": "F",
"SettingSensitivityOff": "O",
"SettingSensitivityLow": "L",
"SettingSensitivityMedium": "M",
"SettingSensitivityHigh": "H",
"SettingLockDisableChar": "D",
"SettingLockBoostChar": "B",
"SettingLockFullChar": "F"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Juotos-",
"asetukset"
],
"desc": "Juotosasetukset"
},
"PowerSavingMenu": {
"text2": [
"Lepotilan",
"asetukset"
],
"desc": "Virransäästöasetukset"
},
"UIMenu": {
"text2": [
"Käyttö-",
"liittymä"
],
"desc": "Käyttöliittymän asetukset"
},
"AdvancedMenu": {
"text2": [
"Lisä-",
"asetukset"
],
"desc": "Lisäasetukset"
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Virtalähde",
"DC"
],
"desc": "Käytettävä virtalähde. Asettaa katkaisujänniteen. <DC 10V, 3S=9.9V, 4S=13.2V, 5S=16.5V, 6S=19.8V>"
},
"SleepTemperature": {
"text2": [
"Lepotilan",
"lämpötila"
],
"desc": "Lepotilan lämpötila. <C>"
},
"SleepTimeout": {
"text2": [
"Lepotilan",
"viive"
],
"desc": "Lepotilan viive. <minuuttia/sekuntia>"
},
"ShutdownTimeout": {
"text2": [
"Sammutus",
"viive"
],
"desc": "Automaattisen sammutuksen aikaviive. <minuuttia>"
},
"MotionSensitivity": {
"text2": [
"Liikkeen",
"herkkyys"
],
"desc": "Liikkeentunnistuksen herkkyys. <0=pois, 1=epäherkin, 9=herkin>"
},
"TemperatureUnit": {
"text2": [
"Lämpötilan",
"yksikkö"
],
"desc": "Lämpötilan yksikkö. <C=celsius, F=fahrenheit>"
},
"AdvancedIdle": {
"text2": [
"Tiedot",
"lepotilassa"
],
"desc": "Näyttää yksityiskohtaisemmat tiedot lepotilassa."
},
"DisplayRotation": {
"text2": [
"Näytön",
"kierto"
],
"desc": "Näytön kierto. <A=automaattinen O=oikeakätinen V=vasenkätinen>"
},
"BoostTemperature": {
"text2": [
"Tehostus-",
"lämpötila"
],
"desc": "Tehostustilan lämpötila"
},
"AutoStart": {
"text2": [
"Autom.",
"käynnistys"
],
"desc": "Käynnistää virrat kytkettäessä juotostilan automaattisesti. T=juotostila, S=Lepotila, F=Ei käytössä"
},
"CooldownBlink": {
"text2": [
"Jäähdytyksen",
"vilkutus"
],
"desc": "Vilkuttaa jäähtyessä juotoskärjen lämpötilaa sen ollessa vielä vaarallisen kuuma."
},
"TemperatureCalibration": {
"text2": [
"Kalibroi",
"lämpötila?"
],
"desc": "Kalibroi kärjen lämpötilaeron."
},
"SettingsReset": {
"text2": [
"Palauta",
"tehdasasetukset?"
],
"desc": "Palauta kaikki asetukset oletusarvoihin."
},
"VoltageCalibration": {
"text2": [
"Kalibroi",
"tulojännite?"
],
"desc": "Tulojännitten kalibrointi (VIN). Painikkeilla säädetään ja pitkään painamalla poistutaan."
},
"AdvancedSoldering": {
"text2": [
"Tarkempi",
"juotosnäyttö"
],
"desc": "Näyttää yksityiskohtaisemmat tiedot juotostilassa."
},
"ScrollingSpeed": {
"text2": [
"Tietojen",
"näyttönopeus"
],
"desc": "Näiden selitetekstien vieritysnopeus."
},
"TipModel": {
"text2": [
"Tip",
"Model"
],
"desc": "Tip Model selection"
},
"SimpleCalibrationMode": {
"text2": [
"Simple",
"Calibration"
],
"desc": "Simple Calibration using Hot water"
},
"AdvancedCalibrationMode": {
"text2": [
"Advanced",
"Calibration"
],
"desc": "Advanced calibration using thermocouple on the tip"
},
"QCMaxVoltage": {
"text2": [
"Power",
"Wattage"
],
"desc": "Power Wattage of the power adapter used"
},
"PowerLimit": {
"text2": [
"Power",
"Limit"
],
"desc": "Maximum power the iron can use <Watts>"
},
"ReverseButtonTempChange": {
"text2": [
"Key +-",
"reverse?"
],
"desc": "Reverse the tip temperature change buttons plus minus assignment."
},
"TempChangeShortStep": {
"text2": [
"Temp change",
"short?"
],
"desc": "Temperature change steps on short button press!"
},
"TempChangeLongStep": {
"text2": [
"Temp change",
"long?"
],
"desc": "Temperature change steps on long button press!"
},
"PowerPulsePower": {
"text2": [
"Power",
"Pulse W"
],
"desc": "Keep awake pulse power intensity"
},
"TipGain": {
"text2": [
"Modify",
"tip gain"
],
"desc": "Tip gain"
},
"HallEffSensitivity": {
"text2": [
"Hall Eff",
"Sensitivity"
],
"desc": "Sensitivity of the Hall effect sensor in detecting sleep <O=Off,L=Low,M=Medium,H=High>"
},
"LockingMode": {
"text2": [
"Allow buttons",
"locking"
],
"desc": "When soldering, long press on both buttons lock them <D=Disable, B=Boost only, F=Full locking>"
}
}
}

View File

@@ -1,279 +0,0 @@
{
"languageCode": "FR",
"languageLocalName": "Français",
"cyrillicGlyphs": false,
"messages": {
"SettingsCalibrationDone": "Calibration effectuée !",
"SettingsCalibrationWarning": "Assurez-vous que la panne soit à température ambiante avant de continuer !",
"SettingsResetWarning": "Voulez-vous vraiment réinitialiser les paramètres aux valeurs par défaut ?",
"UVLOWarningString": "DC FAIBL",
"UndervoltageString": "Sous-tension",
"InputVoltageString": "V d'entrée : ",
"WarningTipTempString": "Temp. Panne : ",
"BadTipString": "PANNE HS",
"SleepingSimpleString": "Zzzz",
"SleepingAdvancedString": "En veille...",
"WarningSimpleString": "CHAUD !",
"WarningAdvancedString": "ATTENTION ! CHAUD !",
"SleepingTipAdvancedString": "Panne : ",
"IdleTipString": "Act : ",
"IdleSetString": "Reg : ",
"TipDisconnectedString": "PANNE DÉBRANCHÉE",
"SolderingAdvancedPowerPrompt": "Puissance : ",
"OffString": "Off",
"ResetOKMessage": "Reset OK",
"YourGainMessage": "Gain : ",
"SettingsResetMessage": "Réglage réinit. !",
"NoAccelerometerMessage": "Accéléromètre\nnon détecté !",
"NoPowerDeliveryMessage": "Pas d'USB-PD\ndétecté !",
"LockingKeysString": "VERROUIL",
"UnlockingKeysString": "DEVERROU",
"WarningKeysLockedString": "! VERR. !"
},
"characters": {
"SettingRightChar": "D",
"SettingLeftChar": "G",
"SettingAutoChar": "A",
"SettingFastChar": "R",
"SettingSlowChar": "L",
"SettingStartSolderingChar": "A",
"SettingStartSleepChar": "V",
"SettingStartSleepOffChar": "O",
"SettingStartNoneChar": "D",
"SettingSensitivityOff": "D",
"SettingSensitivityLow": "B",
"SettingSensitivityMedium": "M",
"SettingSensitivityHigh": "H",
"SettingLockDisableChar": "D",
"SettingLockBoostChar": "B",
"SettingLockFullChar": "V"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Paramètres",
"de soudure"
],
"desc": "Paramètres de soudure"
},
"PowerSavingMenu": {
"text2": [
"Mode",
"veille"
],
"desc": "Paramètres d'économie d'énergie"
},
"UIMenu": {
"text2": [
"Interface",
"utilisateur"
],
"desc": "Paramètres de l'interface utilisateur"
},
"AdvancedMenu": {
"text2": [
"Options",
"avancées"
],
"desc": "Options avancées"
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Source",
"d'alim."
],
"desc": "Source d'alimentation. Règle la tension de coupure <DC=10V> <S=3.3V par cellules>"
},
"SleepTemperature": {
"text2": [
"Temp.",
"veille"
],
"desc": "Température en veille <C>"
},
"SleepTimeout": {
"text2": [
"Délai",
"veille"
],
"desc": "Délai avant mise en veille <S=secondes | M=minutes>"
},
"ShutdownTimeout": {
"text2": [
"Délai",
"extinction"
],
"desc": "Délai avant extinction <M=minutes>"
},
"MotionSensitivity": {
"text2": [
"Sensibilité",
"au mouvement"
],
"desc": "0=inactif | 1=peu sensible | ... | 9=très sensible"
},
"TemperatureUnit": {
"text2": [
"Unité de",
"température"
],
"desc": "Unité de température <C=Celsius | F=Fahrenheit>"
},
"AdvancedIdle": {
"text2": [
"Écran veille",
"détaillé"
],
"desc": "Afficher les informations détaillées lors de la veille."
},
"DisplayRotation": {
"text2": [
"Orientation",
"de l'écran"
],
"desc": "Orientation de l'affichage <A=automatique | G=gaucher | D=droitier>"
},
"BoostTemperature": {
"text2": [
"Temp.",
"Boost"
],
"desc": "Température du mode \"Boost\""
},
"AutoStart": {
"text2": [
"Démarrage",
"automatique"
],
"desc": "Démarrer automatiquement la soudure à l'allumage <D=désactivé | A=activé | V=mode veille | O=mode veille à température ambiante>"
},
"CooldownBlink": {
"text2": [
"Refroidir en",
"clignotant"
],
"desc": "Faire clignoter la température lors du refroidissement tant que la panne est chaude."
},
"TemperatureCalibration": {
"text2": [
"Étalonner",
"température"
],
"desc": "Étalonner température de la panne."
},
"SettingsReset": {
"text2": [
"Réinitialisation",
"d'usine"
],
"desc": "Réinitialiser tous les réglages"
},
"VoltageCalibration": {
"text2": [
"Étalonner",
"tension d'entrée"
],
"desc": "Étalonner tension d'entrée <appui long pour quitter>"
},
"AdvancedSoldering": {
"text2": [
"Écran soudure",
"détaillé"
],
"desc": "Afficher les informations détaillées pendant la soudure"
},
"ScrollingSpeed": {
"text2": [
"Vitesse de",
"défilement"
],
"desc": "Vitesse de défilement du texte <R=rapide | L=lent>"
},
"TipModel": {
"text2": [
"Modèle de",
"la panne"
],
"desc": "Sélection du modèle de la panne"
},
"SimpleCalibrationMode": {
"text2": [
"Calibration",
"simple"
],
"desc": "Calibration simple à l'aide d'eau chaude"
},
"AdvancedCalibrationMode": {
"text2": [
"Calibration",
"avancée"
],
"desc": "Calibration avancée à l'aide d'un thermocouple sur la panne"
},
"QCMaxVoltage": {
"text2": [
"Tension max.",
"QC"
],
"desc": "Tension maximale désirée avec une alimentation QC"
},
"PowerLimit": {
"text2": [
"Limite de",
"puissance"
],
"desc": "Puissance maximale utilisable <W=watts>"
},
"ReverseButtonTempChange": {
"text2": [
"Inverser les",
"touches + -"
],
"desc": "Inverser l'assignation des boutons d'ajustement de température de la panne."
},
"TempChangeShortStep": {
"text2": [
"Incrément",
"appui court"
],
"desc": "Incrément de changement de température sur appui court."
},
"TempChangeLongStep": {
"text2": [
"Incrément",
"appui long"
],
"desc": "Incrément de changement de température sur appui long."
},
"PowerPulsePower": {
"text2": [
"Puissance des",
"impulsions"
],
"desc": "Puissance des impulsions pour éviter la mise en veille des batteries <watt>"
},
"TipGain": {
"text2": [
"Modifier",
"gain panne"
],
"desc": "Modifier le gain de la panne"
},
"LockingMode": {
"text2": [
"Verrouiller",
"les boutons"
],
"desc": "Pendant la soudure, appuyer sur les deux boutons pour les verrouiller <D=désactivé | B=boost seulement | V=verr. total>"
},
"HallEffSensitivity": {
"text2": [
"Sensibilité",
"capteur effet hall"
],
"desc": "Sensibilité du capteur à effet Hall lors de la détection de mise en veille <D=désactivé | B=basse | M=moyenne | H=haute>"
}
}
}

View File

@@ -1,279 +0,0 @@
{
"languageCode": "HR",
"languageLocalName": "Hrvatski",
"cyrillicGlyphs": false,
"messages": {
"SettingsCalibrationDone": "Kalibracija gotova!",
"SettingsCalibrationWarning": "Provjerite da je vršak ohlađen na sobnu temperaturu prije nego što nastavite!",
"SettingsResetWarning": "Jeste li sigurni da želite sve postavke vratiti na tvorničke vrijednosti?",
"UVLOWarningString": "BATERIJA",
"UndervoltageString": "PRENIZAK NAPON",
"InputVoltageString": "Napajanje: ",
"WarningTipTempString": "Temp vrha: ",
"BadTipString": "LOŠ VRH",
"SleepingSimpleString": "Zzz ",
"SleepingAdvancedString": "SPAVANJE...",
"WarningSimpleString": "VRUĆ",
"WarningAdvancedString": "OPREZ, VRUĆE!",
"SleepingTipAdvancedString": "Vrh: ",
"IdleTipString": "Vrh: ",
"IdleSetString": " / ",
"TipDisconnectedString": "VRH NIJE SPOJEN!",
"SolderingAdvancedPowerPrompt": "Snaga: ",
"OffString": "Off",
"ResetOKMessage": "Reset OK",
"YourGainMessage": "Your gain:",
"SettingsResetMessage": "Settings were\nreset!",
"NoAccelerometerMessage": "No accelerometer\ndetected!",
"NoPowerDeliveryMessage": "No USB-PD IC\ndetected!",
"LockingKeysString": " LOCKED",
"UnlockingKeysString": "UNLOCKED",
"WarningKeysLockedString": "!LOCKED!"
},
"characters": {
"SettingRightChar": "D",
"SettingLeftChar": "L",
"SettingAutoChar": "A",
"SettingFastChar": "B",
"SettingSlowChar": "S",
"SettingStartSolderingChar": "T",
"SettingStartSleepChar": "S",
"SettingStartSleepOffChar": "O",
"SettingStartNoneChar": "F",
"SettingSensitivityOff": "O",
"SettingSensitivityLow": "L",
"SettingSensitivityMedium": "M",
"SettingSensitivityHigh": "H",
"SettingLockDisableChar": "D",
"SettingLockBoostChar": "B",
"SettingLockFullChar": "F"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Postavke",
"lemljenja"
],
"desc": "Postavke pri lemljenju"
},
"PowerSavingMenu": {
"text2": [
"Ušteda",
"energije"
],
"desc": "Postavke spavanja i štednje energije"
},
"UIMenu": {
"text2": [
"Korisničko",
"sučelje"
],
"desc": "Postavke korisničkog sučelja"
},
"AdvancedMenu": {
"text2": [
"Napredne",
"opcije"
],
"desc": "Upravljanje naprednim opcijama"
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Izvor",
"napajanja"
],
"desc": "Izvor napajanja. Postavlja napon isključivanja. <DC 10V> <S 3.3V po ćeliji>"
},
"SleepTemperature": {
"text2": [
"Temp",
"spavanja"
],
"desc": "Temperatura na koju se spušta lemilica nakon određenog vremena mirovanja. <C/F>"
},
"SleepTimeout": {
"text2": [
"Vrijeme",
"spavanja"
],
"desc": "Vrijeme mirovanja nakon kojega lemilica spušta temperaturu. <Minute/Sekunde>"
},
"ShutdownTimeout": {
"text2": [
"Vrijeme",
"gašenja"
],
"desc": "Vrijeme mirovanja nakon kojega će se lemilica ugasiti. <Minute>"
},
"MotionSensitivity": {
"text2": [
"Osjetljivost",
"pokreta"
],
"desc": "Osjetljivost prepoznavanja pokreta. <0=Ugašeno, 1=Najmanje osjetljivo, 9=Najosjetljivije>"
},
"TemperatureUnit": {
"text2": [
"Jedinica",
"temperature"
],
"desc": "Jedinica temperature. <C=Celzij, F=Fahrenheit>"
},
"AdvancedIdle": {
"text2": [
"Detalji",
"pri čekanju"
],
"desc": "Prikazivanje detaljnih informacija tijekom čekanja."
},
"DisplayRotation": {
"text2": [
"Rotacija",
"ekrana"
],
"desc": "Orijentacija ekrana. <A=Automatski, L=Ljevoruki, D=Desnoruki>"
},
"BoostTemperature": {
"text2": [
"Boost",
"temp"
],
"desc": "Temperatura u pojačanom (Boost) načinu."
},
"AutoStart": {
"text2": [
"Auto",
"start"
],
"desc": "Ako je aktivno, lemilica po uključivanju napajanja odmah počinje grijati."
},
"CooldownBlink": {
"text2": [
"Upozorenje",
"pri hlađenju"
],
"desc": "Bljeskanje temperature prilikom hlađenja, ako je lemilica vruća."
},
"TemperatureCalibration": {
"text2": [
"Kalibracija",
"temperature"
],
"desc": "Kalibriranje temperature mjeri razliku temperatura vrška i drške, dok je lemilica hladna."
},
"SettingsReset": {
"text2": [
"Tvorničke",
"postavke"
],
"desc": "Vraćanje svih postavki na tvorničke vrijednosti."
},
"VoltageCalibration": {
"text2": [
"Kalibracija",
"napona napajanja"
],
"desc": "Kalibracija ulaznog napona. Podešavanje gumbima, dugački pritisak za kraj."
},
"AdvancedSoldering": {
"text2": [
"Detalji",
"pri lemljenju"
],
"desc": "Prikazivanje detaljnih informacija tijekom lemljenja."
},
"ScrollingSpeed": {
"text2": [
"Brzina",
"poruka"
],
"desc": "Brzina kretanja dugačkih poruka. <B=brzo, S=sporo>"
},
"TipModel": {
"text2": [
"Model",
"Vrha"
],
"desc": "Odabir modela lemnog vrha"
},
"SimpleCalibrationMode": {
"text2": [
"Jednostavna",
"kalibracija"
],
"desc": "Kalibracija kipućom vodom"
},
"AdvancedCalibrationMode": {
"text2": [
"Napredna",
"kalibracija"
],
"desc": "Kalibracija korištenjem termo-elementa"
},
"QCMaxVoltage": {
"text2": [
"Snaga",
"napajanja"
],
"desc": "Snaga modula za napajanje"
},
"PowerLimit": {
"text2": [
"Power",
"Limit"
],
"desc": "Maximum power the iron can use <Watts>"
},
"ReverseButtonTempChange": {
"text2": [
"Key +-",
"reverse?"
],
"desc": "Reverse the tip temperature change buttons plus minus assignment."
},
"TempChangeShortStep": {
"text2": [
"Temp change",
"short?"
],
"desc": "Temperature change steps on short button press!"
},
"TempChangeLongStep": {
"text2": [
"Temp change",
"long?"
],
"desc": "Temperature change steps on long button press!"
},
"PowerPulsePower": {
"text2": [
"Power",
"Pulse W"
],
"desc": "Keep awake pulse power intensity"
},
"TipGain": {
"text2": [
"Modify",
"tip gain"
],
"desc": "Tip gain"
},
"HallEffSensitivity": {
"text2": [
"Hall Eff",
"Sensitivity"
],
"desc": "Sensitivity of the Hall effect sensor in detecting sleep <O=Off,L=Low,M=Medium,H=High>"
},
"LockingMode": {
"text2": [
"Allow buttons",
"locking"
],
"desc": "When soldering, long press on both buttons lock them <D=Disable, B=Boost only, F=Full locking>"
}
}
}

View File

@@ -1,279 +0,0 @@
{
"languageCode": "HU",
"languageLocalName": "Magyar",
"cyrillicGlyphs": false,
"messages": {
"SettingsCalibrationDone": "Kalibráció befejezve!",
"SettingsCalibrationWarning": "Folytatás előtt győződjön meg róla, hogy a páka szobahőmérsékletű!",
"SettingsResetWarning": "Biztosan visszaállítja a beállításokat az alapértelmezett értékekre?",
"UVLOWarningString": "DC KEVÉS",
"UndervoltageString": "Alulfeszültség",
"InputVoltageString": "Bemenet V: ",
"WarningTipTempString": "Hegy hő: ",
"BadTipString": "PÁKAHIBA",
"SleepingSimpleString": "Zzzz",
"SleepingAdvancedString": "Alvás...",
"WarningSimpleString": "FORRÓ!",
"WarningAdvancedString": "!! FORRÓ PÁKA !!",
"SleepingTipAdvancedString": "Páka:",
"IdleTipString": "Páka:",
"IdleSetString": "Cél:",
"TipDisconnectedString": "PÁKA LEVÉVE",
"SolderingAdvancedPowerPrompt": "Telj: ",
"OffString": "Ki",
"ResetOKMessage": "Törlés OK",
"YourGainMessage": "Erősítés:",
"SettingsResetMessage": "Beállítások\ntörölve!",
"NoAccelerometerMessage": "Nincs gyorsulásmérő!",
"NoPowerDeliveryMessage": "Nincs USB-PD IC!",
"LockingKeysString": "LEZÁRVA",
"UnlockingKeysString": "FELOLDVA",
"WarningKeysLockedString": "!LEZÁRVA!"
},
"characters": {
"SettingRightChar": "J",
"SettingLeftChar": "B",
"SettingAutoChar": "A",
"SettingFastChar": "G",
"SettingSlowChar": "L",
"SettingStartSolderingChar": "F",
"SettingStartSleepChar": "Z",
"SettingStartSleepOffChar": "S",
"SettingStartNoneChar": "K",
"SettingSensitivityOff": "0",
"SettingSensitivityLow": "A",
"SettingSensitivityMedium": "K",
"SettingSensitivityHigh": "M",
"SettingLockDisableChar": "K",
"SettingLockBoostChar": "B",
"SettingLockFullChar": "T"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Forrasztási",
"beállítások"
],
"desc": "Forrasztási beállítások"
},
"PowerSavingMenu": {
"text2": [
"Alvási",
"módok"
],
"desc": "Energiatakarékossági beállítások"
},
"UIMenu": {
"text2": [
"Felhasználói",
"felület"
],
"desc": "Felhasználói felület beállításai"
},
"AdvancedMenu": {
"text2": [
"Haladó",
"beállítások"
],
"desc": "Haladó beállítások"
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Áram",
"forrás"
],
"desc": "Kikapcsolási feszültség beállítása (DC:10V, S:3.3V/LiPo cella)"
},
"SleepTemperature": {
"text2": [
"Alvási",
"hőmérs."
],
"desc": "Hőmérséklet alvó módban <C/F>"
},
"SleepTimeout": {
"text2": [
"Alvás",
"időzítő"
],
"desc": "Alvási időzítő <perc/másodperc>"
},
"ShutdownTimeout": {
"text2": [
"Kikapcsolás",
"időzítő"
],
"desc": "Kikapcsolási időzítő <perc>"
},
"MotionSensitivity": {
"text2": [
"Mozgás",
"érzékenység"
],
"desc": "Mozgás érzékenység beállítása (0=kikapcsolva 1=legkevésbé érzékeny 9=legérzékenyebb)"
},
"TemperatureUnit": {
"text2": [
"Hőmérséklet",
"mértékegysége"
],
"desc": "Hőmérséklet mértékegysége (C=Celsius F=Fahrenheit)"
},
"AdvancedIdle": {
"text2": [
"Részletes",
"készenlét"
],
"desc": "Részletes információk megjelenítése kisebb betűméretben a készenléti képernyőn"
},
"DisplayRotation": {
"text2": [
"Kijelző",
"tájolása"
],
"desc": "Kijelző tájolása (A=automatikus B=balkezes J=jobbkezes)"
},
"BoostTemperature": {
"text2": [
"Boost",
"hőmérs."
],
"desc": "Hőmérséklet \"boost\" módban"
},
"AutoStart": {
"text2": [
"Automatikus",
"indítás"
],
"desc": "Bekapcsolás után automatikusan lépjen forrasztás módba (F=forrasztás S=szobahőmérséklet Z=alvó mód K=ki)"
},
"CooldownBlink": {
"text2": [
"Villogás",
"hűléskor"
],
"desc": "Villogjon a hőmérséklet hűlés közben, amíg a páka forró"
},
"TemperatureCalibration": {
"text2": [
"Hőmérséklet",
"kalibrálása?"
],
"desc": "Páka hőmérséklet-érzékelőjének kalibrálása"
},
"SettingsReset": {
"text2": [
"Gyári",
"beállítások?"
],
"desc": "Beállítások alaphelyzetbe állítása"
},
"VoltageCalibration": {
"text2": [
"Bemeneti fesz.",
"kalibrálása?"
],
"desc": "Bemeneti feszültség kalibrálása (röviden megnyomva módosítás, hosszan megnyomva kilépés)"
},
"AdvancedSoldering": {
"text2": [
"Részletes",
"forr.kép"
],
"desc": "Részletes információk megjelenítése forrasztás közben"
},
"ScrollingSpeed": {
"text2": [
"Görgetés",
"sebessége"
],
"desc": "Szöveggörgetés sebessége"
},
"TipModel": {
"text2": [
"Forr.páka",
"modell"
],
"desc": "Forrasztópáka modell kiválasztása"
},
"SimpleCalibrationMode": {
"text2": [
"Egyszerű",
"kalibráció"
],
"desc": "Egyszerű kalibrálás forró víz segítségével"
},
"AdvancedCalibrationMode": {
"text2": [
"Haladó",
"Kalibráció"
],
"desc": "Haladó kalibrálás hegyre helyezett hőelem segítségével"
},
"QCMaxVoltage": {
"text2": [
"Max. USB",
"fesz."
],
"desc": "Maximális USB feszültség (QuickCharge)"
},
"PowerLimit": {
"text2": [
"Teljesítm.",
"maximum"
],
"desc": "Maximális felvett teljesitmény beállitása"
},
"ReverseButtonTempChange": {
"text2": [
"+/- gomb",
"fordítva"
],
"desc": "Páka hőmérséklet növelés/csökkentés gombok felcserélése"
},
"TempChangeShortStep": {
"text2": [
"Hőm.váltás",
"rövid"
],
"desc": "Hőmérséklet váltás rövid gombnyomásra <C/F>"
},
"TempChangeLongStep": {
"text2": [
"Hőm.váltás",
"hosszú"
],
"desc": "Hőmérséklet váltás hosszú gombnyomásra <C/F>"
},
"PowerPulsePower": {
"text2": [
"Ébrentartó",
"pulzus W"
],
"desc": "Powerbankot ébrentartó áramfelvételi pulzusok nagysága <W>"
},
"TipGain": {
"text2": [
"Pákaerősítés",
""
],
"desc": "Pákaerősítés állítása"
},
"HallEffSensitivity": {
"text2": [
"Alvásérzékelő",
"érzékenység"
],
"desc": "Alvásérzékelő gyorsulásmérő érzékenysége (0=ki A=alacsony K=közepes M=magas)"
},
"LockingMode": {
"text2": [
"Lezárás",
"enged."
],
"desc": "Forrasztás közben mindkét gombot hosszan lenyomva rögzíti a hőmérsékletet (K=ki B=csak \"boost\" mód T=teljes lezárás)"
}
}
}

View File

@@ -1,279 +0,0 @@
{
"languageCode": "IT",
"languageLocalName": "Italiano",
"cyrillicGlyphs": false,
"messages": {
"SettingsCalibrationDone": "Calibrazione effettuata",
"SettingsCalibrationWarning": "Assicurati che la punta si trovi a temperatura ambiente prima di continuare!",
"SettingsResetWarning": "Ripristinare le impostazioni iniziali?",
"UVLOWarningString": "DC BASSA",
"UndervoltageString": "DC INSUFFICIENTE",
"InputVoltageString": "V ingresso:",
"WarningTipTempString": "Temp punta:",
"BadTipString": "PUNTA KO",
"SleepingSimpleString": "Zzz ",
"SleepingAdvancedString": "Riposo",
"WarningSimpleString": "HOT!",
"WarningAdvancedString": "PUNTA CALDA!",
"SleepingTipAdvancedString": "Punta:",
"IdleTipString": "T punta:",
"IdleSetString": "/",
"TipDisconnectedString": "PUNTA ASSENTE",
"SolderingAdvancedPowerPrompt": "Potenz:",
"OffString": "OFF",
"ResetOKMessage": "Reset OK",
"YourGainMessage": "Guad.: ",
"SettingsResetMessage": "Reset effettuato",
"NoAccelerometerMessage": "Accelerometro\nnon rilevato",
"NoPowerDeliveryMessage": "USB-PD non\ndisponibile",
"LockingKeysString": "Blocc.",
"UnlockingKeysString": "Sblocc.",
"WarningKeysLockedString": "BLOCCATO"
},
"characters": {
"SettingRightChar": "D",
"SettingLeftChar": "S",
"SettingAutoChar": "A",
"SettingFastChar": "V",
"SettingSlowChar": "L",
"SettingStartSolderingChar": "S",
"SettingStartSleepChar": "R",
"SettingStartSleepOffChar": "A",
"SettingStartNoneChar": "D",
"SettingSensitivityOff": "O",
"SettingSensitivityLow": "B",
"SettingSensitivityMedium": "M",
"SettingSensitivityHigh": "A",
"SettingLockDisableChar": "D",
"SettingLockBoostChar": "T",
"SettingLockFullChar": "C"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Opzioni",
"saldatura"
],
"desc": "Menù d'impostazioni della modalità Saldatura"
},
"PowerSavingMenu": {
"text2": [
"Risparmio",
"energetico"
],
"desc": "Menù d'impostazioni per il risparmio energetico"
},
"UIMenu": {
"text2": [
"Interfaccia",
"utente"
],
"desc": "Menù d'impostazioni dell'interfaccia utente"
},
"AdvancedMenu": {
"text2": [
"Opzioni",
"avanzate"
],
"desc": "Menù d'impostazioni avanzate"
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Sorgente",
"alimentaz"
],
"desc": "Scegli la sorgente di alimentazione; se a batteria, limita lo scaricamento al valore di soglia <DC: 10V; S: 3,3V per cella>"
},
"SleepTemperature": {
"text2": [
"Temp",
"riposo"
],
"desc": "Imposta la temperatura da mantenere in modalità Riposo <°C/°F>"
},
"SleepTimeout": {
"text2": [
"Timer",
"riposo"
],
"desc": "Imposta il timer per entrare in modalità Riposo <minuti/secondi>"
},
"ShutdownTimeout": {
"text2": [
"Timer",
"spegnimento"
],
"desc": "Imposta il timer per lo spegnimento <minuti>"
},
"MotionSensitivity": {
"text2": [
"Sensibilità",
"al movimento"
],
"desc": "Imposta la sensibilità al movimento per uscire dalla modalità Riposo <0: nessuna; 1: minima; 9: massima>"
},
"TemperatureUnit": {
"text2": [
"Unità di",
"temperatura"
],
"desc": "Scegli l'unità di misura per la temperatura <C: grado Celsius; F: grado Farenheit>"
},
"AdvancedIdle": {
"text2": [
"Interfaccia",
"testuale"
],
"desc": "Mostra informazioni dettagliate all'interno della schermata principale"
},
"DisplayRotation": {
"text2": [
"Orientamento",
"display"
],
"desc": "Imposta l'orientamento del display <A: automatico; S: mano sinistra; D: mano destra>"
},
"BoostTemperature": {
"text2": [
"Temp",
"«Turbo»"
],
"desc": "Imposta la temperatura della funzione «Turbo» <°C/°F>"
},
"AutoStart": {
"text2": [
"Avvio",
"automatico"
],
"desc": "Attiva automaticamente il saldatore quando viene alimentato <D: disattiva; S: saldatura; R: riposo; A: temperatura ambiente>"
},
"CooldownBlink": {
"text2": [
"Avviso",
"punta calda"
],
"desc": "Evidenzia il valore di temperatura durante il raffreddamento se la punta è ancora calda"
},
"TemperatureCalibration": {
"text2": [
"Calibrazione",
"temperatura"
],
"desc": "Calibra le rilevazioni di temperatura"
},
"SettingsReset": {
"text2": [
"Ripristino",
"impostazioni"
],
"desc": "Ripristina tutte le impostazioni"
},
"VoltageCalibration": {
"text2": [
"Calibrazione",
"tensione"
],
"desc": "Calibra la tensione in ingresso; regola con entrambi i tasti, tieni premuto il tasto superiore per uscire"
},
"AdvancedSoldering": {
"text2": [
"Dettagli",
"saldatura"
],
"desc": "Mostra informazioni dettagliate durante la modalità Saldatura"
},
"ScrollingSpeed": {
"text2": [
"Velocità",
"testo"
],
"desc": "Imposta la velocità di scorrimento del testo <L: lento; V: veloce>"
},
"TipModel": {
"text2": [
"Modello",
"punta"
],
"desc": "Seleziona il modello della punta in uso"
},
"SimpleCalibrationMode": {
"text2": [
"Calibrazione",
"semplice"
],
"desc": "Calibra le rilevazioni di temperatura tramite l'utilizzo di acqua calda"
},
"AdvancedCalibrationMode": {
"text2": [
"Calibrazione",
"avanzata"
],
"desc": "Calibra le rilevazioni di temperatura attraverso la termocoppia presente nella punta"
},
"QCMaxVoltage": {
"text2": [
"Voltaggio",
"Quick Charge"
],
"desc": "Imposta il massimo voltaggio necessario alla negoziazione con un alimentatore Quick Charge"
},
"PowerLimit": {
"text2": [
"Limite",
"potenza"
],
"desc": "Imposta il valore di potenza massima erogabile al saldatore <watt>"
},
"ReverseButtonTempChange": {
"text2": [
"Inversione",
"tasti"
],
"desc": "Inverti i tasti per aumentare o diminuire la temperatura della punta"
},
"TempChangeShortStep": {
"text2": [
"Temp passo",
"breve"
],
"desc": "Imposta il «passo» dei valori di temperatura ad una breve pressione dei tasti"
},
"TempChangeLongStep": {
"text2": [
"Temp passo",
"lungo"
],
"desc": "Imposta il «passo» dei valori di temperatura ad una lunga pressione dei tasti"
},
"PowerPulsePower": {
"text2": [
"Potenza",
"impulso"
],
"desc": "Regola la potenza d'impulso per prevenire lo standby eventuale dell'alimentatore <watt>"
},
"TipGain": {
"text2": [
"Guadagno",
"punta"
],
"desc": "Varia il guadagno della punta"
},
"HallEffSensitivity": {
"text2": [
"Effetto",
"Hall"
],
"desc": "Regola la sensibilità alla rilevazione di supporti metallici per entrare in modalità Riposo <O: OFF; B: bassa; M: media; A: alta>"
},
"LockingMode": {
"text2": [
"Blocco",
"tasti"
],
"desc": "Blocca i tasti durante la modalità Saldatura; tieni premuto entrambi per bloccare/sbloccare <D: disattiva; T: blocca «Turbo»; C: blocco completo>"
}
}
}

View File

@@ -1,279 +0,0 @@
{
"languageCode": "LT",
"languageLocalName": "Lietuvių",
"cyrillicGlyphs": false,
"messages": {
"SettingsCalibrationDone": "Kalibravimas atliktas!",
"SettingsCalibrationWarning": "Prieš tęsdami įsitikinkite, kad antgalis yra kambario temperatūros!",
"SettingsResetWarning": "Ar norite atstatyti nustatymus į numatytas reikšmes?",
"UVLOWarningString": "MAŽ VOLT",
"UndervoltageString": "Žema įtampa",
"InputVoltageString": "Įvestis V: ",
"WarningTipTempString": "Angal Temp: ",
"BadTipString": "BLOG ANT",
"SleepingSimpleString": "Zzzz",
"SleepingAdvancedString": "Miegu...",
"WarningSimpleString": "KRŠ!",
"WarningAdvancedString": "ANTGALIS KARŠTAS",
"SleepingTipAdvancedString": "Angal:",
"IdleTipString": "Ant:",
"IdleSetString": " Nust:",
"TipDisconnectedString": "NĖRA ANTGALIO",
"SolderingAdvancedPowerPrompt": "Galia: ",
"OffString": "Išj",
"ResetOKMessage": "Reset OK",
"YourGainMessage": "Gain:",
"SettingsResetMessage": "Nust. atstatyti!",
"NoAccelerometerMessage": "No accelerometer\ndetected!",
"NoPowerDeliveryMessage": "No USB-PD IC\ndetected!",
"LockingKeysString": " UŽRAKIN",
"UnlockingKeysString": "ATRAKIN",
"WarningKeysLockedString": "!UŽRAK!"
},
"characters": {
"SettingRightChar": "D",
"SettingLeftChar": "K",
"SettingAutoChar": "A",
"SettingFastChar": "G",
"SettingSlowChar": "L",
"SettingStartSolderingChar": "T",
"SettingStartSleepChar": "M",
"SettingStartSleepOffChar": "K",
"SettingStartNoneChar": "N",
"SettingSensitivityOff": "I",
"SettingSensitivityLow": "Ž",
"SettingSensitivityMedium": "V",
"SettingSensitivityHigh": "A",
"SettingLockDisableChar": "I",
"SettingLockBoostChar": "T",
"SettingLockFullChar": "V"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Litavimo",
"nustatymai"
],
"desc": "Litavimo nustatymai"
},
"PowerSavingMenu": {
"text2": [
"Miego",
"režimai"
],
"desc": "Energijos tausojimo nustatymai"
},
"UIMenu": {
"text2": [
"Naudotojo",
"sąsaja"
],
"desc": "Naudotojo sąsajos nustatymai"
},
"AdvancedMenu": {
"text2": [
"Išplėsti.",
"nustatymai"
],
"desc": "Išplėstiniai nustatymai"
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Maitinimo",
"šaltinis"
],
"desc": "Išjungimo įtampa. <DC 10V> arba celių (S) kiekis (3.3V per celę)>"
},
"SleepTemperature": {
"text2": [
"Miego",
"temperat."
],
"desc": "Miego temperatūra"
},
"SleepTimeout": {
"text2": [
"Miego",
"laikas"
],
"desc": "Užmigimo laikas <sekundės/minutės>"
},
"ShutdownTimeout": {
"text2": [
"Išjungimo",
"laikas"
],
"desc": "Išjungimo laikas <minutės>"
},
"MotionSensitivity": {
"text2": [
"Judesio",
"jautrumas"
],
"desc": "Judesio jautrumas <0=Išjungta, 1=Mažiausias, 9=Didžiausias>"
},
"TemperatureUnit": {
"text2": [
"Temperatūros",
"vienetai"
],
"desc": "Temperatūros vienetai <C=Celsijus, F=Farenheitas>"
},
"AdvancedIdle": {
"text2": [
"Detalus lau-",
"kimo ekranas"
],
"desc": "Ar rodyti papildomą informaciją mažesniu šriftu laukimo ekrane"
},
"DisplayRotation": {
"text2": [
"Ekrano",
"orientacija"
],
"desc": "Ekrano orientacija <A=Automatinė, K=Kairiarankiams, D=Dešiniarankiams>"
},
"BoostTemperature": {
"text2": [
"Turbo",
"temperat."
],
"desc": "Temperatūra turbo režimu"
},
"AutoStart": {
"text2": [
"Auto",
"paleidimas"
],
"desc": "Ar pradėti kaitininti iš karto įjungus lituoklį <N=Ne, T=Taip, M=Miegas, K=Miegoti kambario temperatūroje>"
},
"CooldownBlink": {
"text2": [
"Atvėsimo",
"mirksėjimas"
],
"desc": "Ar mirksėti temperatūrą ekrane kol vėstantis antgalis vis dar karštas"
},
"TemperatureCalibration": {
"text2": [
"Kalibruoti",
"temperatūrą?"
],
"desc": "Antgalio temperatūros kalibravimas"
},
"SettingsReset": {
"text2": [
"Atstatyti",
"nustatymus?"
],
"desc": "Nustatyti nustatymus iš naujo"
},
"VoltageCalibration": {
"text2": [
"Kalibruoti",
"įvesties įtampą?"
],
"desc": "Įvesties įtampos kalibravimas. Trumpai paspauskite, norėdami nustatyti, ilgai paspauskite, kad išeitumėte"
},
"AdvancedSoldering": {
"text2": [
"Detalus lita-",
"vimo ekranas"
],
"desc": "Ar rodyti išsamią informaciją lituojant"
},
"ScrollingSpeed": {
"text2": [
"Aprašymo",
"greitis"
],
"desc": "Greitis, kuriuo šis tekstas slenka"
},
"TipModel": {
"text2": [
"Antgalio",
"modelis"
],
"desc": "Antgalio modelio pasirinkimas"
},
"SimpleCalibrationMode": {
"text2": [
"Paprastas",
"kalibravimas"
],
"desc": "Paprastas kalibravimas naudojant karštą vandienį"
},
"AdvancedCalibrationMode": {
"text2": [
"Išplėstinis",
"kalibravimas"
],
"desc": "Išplėstinis kalibravimas naudojant termoelementą"
},
"QCMaxVoltage": {
"text2": [
"QC maitinimo",
"bloko įtampa"
],
"desc": "Maksimali QC maitinimo bloko įtampa"
},
"PowerLimit": {
"text2": [
"Galios",
"riba"
],
"desc": "Didžiausia galia, kurią gali naudoti lituoklis <Vatai>"
},
"ReverseButtonTempChange": {
"text2": [
"Sukeisti + -",
"mygtukus?"
],
"desc": "Sukeisti + - temperatūros keitimo mygtukus vietomis."
},
"TempChangeShortStep": {
"text2": [
"Temp. keitimas",
"trumpas spust."
],
"desc": "Temperatūros keitimo žingsnis trumpai spustėlėjus mygtuką!"
},
"TempChangeLongStep": {
"text2": [
"Temp. keitimas",
"ilgas pasp."
],
"desc": "Temperatūros keitimo žingsnis ilgai paspaudus mygtuką!"
},
"PowerPulsePower": {
"text2": [
"Power",
"Pulse W"
],
"desc": "Keep awake pulse power intensity"
},
"TipGain": {
"text2": [
"Modify",
"tip gain"
],
"desc": "Tip gain"
},
"HallEffSensitivity": {
"text2": [
"Holo",
"jutiklis"
],
"desc": "Holo jutiklio jautrumas nustatant miegą <I=Išjungtas, Ž=Žemas, V=Vidutinis, A=Aukštas>"
},
"LockingMode": {
"text2": [
"Mygtukų",
"užraktas"
],
"desc": "Lituodami, ilgai paspauskite abu mygtukus, kad juos užrakintumėte <I=Išjungta, T=Tik turbo režimas, V=Visiškas užrakinimas>"
}
}
}

View File

@@ -1,279 +0,0 @@
{
"languageCode": "NL",
"languageLocalName": "Nederlands",
"cyrillicGlyphs": false,
"messages": {
"SettingsCalibrationDone": "Calibratie klaar!",
"SettingsCalibrationWarning": "Zorg ervoor dat te punt op kamertemperatuur is voor je verder gaat!",
"SettingsResetWarning": "Weet je zeker dat je de fabrieksinstellingen terug wil zetten?",
"UVLOWarningString": "DC Laag",
"UndervoltageString": "Onderspanning",
"InputVoltageString": "Input V: ",
"WarningTipTempString": "Punt temp: ",
"BadTipString": "DEFECTE PUNT",
"SleepingSimpleString": "Zzzz",
"SleepingAdvancedString": "Slaapstand...",
"WarningSimpleString": "HEET!",
"WarningAdvancedString": "!!! PUNT HOT !!!",
"SleepingTipAdvancedString": "Punt:",
"IdleTipString": "Punt:",
"IdleSetString": " Zet:",
"TipDisconnectedString": "PUNT LOSGEKOPPELT",
"SolderingAdvancedPowerPrompt": "Vermogen: ",
"OffString": "Uit",
"ResetOKMessage": "Reset OK",
"YourGainMessage": "Niveau:",
"SettingsResetMessage": "Instellingen zijn\ngereset!",
"NoAccelerometerMessage": "No accelerometer\ndetected!",
"NoPowerDeliveryMessage": "No USB-PD IC\ndetected!",
"LockingKeysString": " GEBLOKKEERD",
"UnlockingKeysString": "GEDEBLOKKEERD",
"WarningKeysLockedString": "!GEBLOKKEERD!"
},
"characters": {
"SettingRightChar": "R",
"SettingLeftChar": "L",
"SettingAutoChar": "A",
"SettingFastChar": "F",
"SettingSlowChar": "S",
"SettingStartSolderingChar": "T",
"SettingStartSleepChar": "S",
"SettingStartSleepOffChar": "O",
"SettingStartNoneChar": "F",
"SettingLockDisableChar": "U",
"SettingLockBoostChar": "B",
"SettingLockFullChar": "V",
"SettingSensitivityOff": "O",
"SettingSensitivityLow": "L",
"SettingSensitivityMedium": "M",
"SettingSensitivityHigh": "H"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Soldeer",
"Instellingen"
],
"desc": "Soldeer instellingen"
},
"PowerSavingMenu": {
"text2": [
"Slaap",
"Modes"
],
"desc": "Stroom besparings instellingen"
},
"UIMenu": {
"text2": [
"Gebruikers-",
"interface"
],
"desc": "Gebruikers-interface instellingen"
},
"AdvancedMenu": {
"text2": [
"Geavanceerde",
"Instellingen"
],
"desc": "Geavanceerde Instellingen"
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Spannings-",
"bron"
],
"desc": "Spanningsbron. Stelt drempelspanning in. <DC 10V> <S 3.3V per cel>"
},
"SleepTemperature": {
"text2": [
"Slaap",
"temp"
],
"desc": "Temperatuur in slaapstand"
},
"SleepTimeout": {
"text2": [
"Slaap",
"time-out"
],
"desc": "Slaap time-out <Minuten/Seconden>"
},
"ShutdownTimeout": {
"text2": [
"Uitschakel",
"time-out"
],
"desc": "Automatisch afsluiten time-out <Minuten>"
},
"MotionSensitivity": {
"text2": [
"Bewegings-",
"gevoeligheid"
],
"desc": "Bewegingsgevoeligheid <0=uit 1=minst gevoelig 9=meest gevoelig>"
},
"TemperatureUnit": {
"text2": [
"Temperatuur",
"eenheid"
],
"desc": "Temperatuureenheid <C=Celsius F=Fahrenheit>"
},
"AdvancedIdle": {
"text2": [
"Gedetailleerd",
"startscherm"
],
"desc": "Gedetailleerde informatie weergeven in een kleiner lettertype op het startscherm."
},
"DisplayRotation": {
"text2": [
"Scherm-",
"oriëntatie"
],
"desc": "Schermoriëntatie <A=Automatisch L=Linkshandig R=Rechtshandig>"
},
"BoostTemperature": {
"text2": [
"Boost",
"temp"
],
"desc": "Temperatuur in boostmode"
},
"AutoStart": {
"text2": [
"Auto",
"start"
],
"desc": "Breng de soldeerbout direct op temperatuur bij het opstarten. <T=Soldeertemperatuur, S=Slaapstand-temperatuur, F=Uit>"
},
"CooldownBlink": {
"text2": [
"Afkoel",
"flikker"
],
"desc": "Temperatuur laten flikkeren in het hoofdmenu als de soldeerpunt aan het afkoelen is."
},
"TemperatureCalibration": {
"text2": [
"Calibreer",
"temperatuur?"
],
"desc": "Temperatuursafwijking van de soldeerpunt calibreren."
},
"SettingsReset": {
"text2": [
"Instellingen",
"resetten?"
],
"desc": "Alle instellingen terugzetten."
},
"VoltageCalibration": {
"text2": [
"Calibreer",
"input-voltage?"
],
"desc": "VIN Calibreren. <druk lang om te sluiten>."
},
"AdvancedSoldering": {
"text2": [
"Gedetailleerd",
"soldeerscherm"
],
"desc": "Gedetailleerde informatie weergeven in een kleiner lettertype op het soldeerscherm."
},
"ScrollingSpeed": {
"text2": [
"Scroll",
"snelheid"
],
"desc": "Snelheid waarmee de tekst scrolt."
},
"TipModel": {
"text2": [
"Punt",
"Model"
],
"desc": "Punt Model selecteren"
},
"SimpleCalibrationMode": {
"text2": [
"Simpele",
"Calibratie"
],
"desc": "Simpele Calibratie met warm water"
},
"AdvancedCalibrationMode": {
"text2": [
"Geavanceerde",
"Calibratie"
],
"desc": "Geavanceerde calibratie met een thermokoppel op de punt"
},
"QCMaxVoltage": {
"text2": [
"Power",
"Wattage"
],
"desc": "Wattage van de gebruikte voeding"
},
"PowerLimit": {
"text2": [
"Vermogen",
"limiet"
],
"desc": "Maximaal vermogen <Watts>"
},
"ReverseButtonTempChange": {
"text2": [
"Draai",
"+ - knoppen om"
],
"desc": "Keer de +- knoppen om de termperatuur van de punt te regelen om."
},
"TempChangeShortStep": {
"text2": [
"Temp veranderen",
"kort"
],
"desc": "Temperatuur verandering bij kort drukken"
},
"TempChangeLongStep": {
"text2": [
"Temp veranderen",
"lang"
],
"desc": "Temperatuur verandering bij lang drukken"
},
"PowerPulsePower": {
"text2": [
"Vermogen",
"Puls W"
],
"desc": "Vermogen van puls om soldeerbout aan te houden"
},
"TipGain": {
"text2": [
"Verander",
"punt gain"
],
"desc": "Punt gain"
},
"HallEffSensitivity": {
"text2": [
"Hall Eff",
"Sensitivity"
],
"desc": "Sensitivity of the Hall effect sensor in detecting sleep <O=Off,L=Low,M=Medium,H=High>"
},
"LockingMode": {
"text2": [
"Blokkeer",
"knoppen"
],
"desc": "Tijdens solderen lang op beide knoppen drukken, blokkeert ze. <U=Uit, B=Alleen boost, V=Volledig blokkeren>"
}
}
}

View File

@@ -1,279 +0,0 @@
{
"languageCode": "NL_BE",
"languageLocalName": "Vlaams",
"cyrillicGlyphs": false,
"messages": {
"SettingsCalibrationDone": "Gecalibreerd!",
"SettingsCalibrationWarning": "Zorg vooraf dat de punt op kamertemperatuur is!",
"SettingsResetWarning": "Ben je zeker dat je alle standaardwaarden wil resetten?",
"UVLOWarningString": "Voedingsspanning LAAG",
"UndervoltageString": "Onderspanning",
"InputVoltageString": "Voedingsspanning: ",
"WarningTipTempString": "Punt Temp: ",
"BadTipString": "DEFECT",
"SleepingSimpleString": "Zzz ",
"SleepingAdvancedString": "Slaapstand...",
"WarningSimpleString": "HEET",
"WarningAdvancedString": "!!! PUNT HEET !!!",
"SleepingTipAdvancedString": "Punt:",
"IdleTipString": "Punt:",
"IdleSetString": "Stel in:",
"TipDisconnectedString": "Punt ONTKOPPELD",
"SolderingAdvancedPowerPrompt": "Vermogen: ",
"OffString": "Uit",
"ResetOKMessage": "Reset OK",
"YourGainMessage": "Your gain:",
"SettingsResetMessage": "Settings were\nreset!",
"NoAccelerometerMessage": "No accelerometer\ndetected!",
"NoPowerDeliveryMessage": "No USB-PD IC\ndetected!",
"LockingKeysString": " LOCKED",
"UnlockingKeysString": "UNLOCKED",
"WarningKeysLockedString": "!LOCKED!"
},
"characters": {
"SettingRightChar": "R",
"SettingLeftChar": "L",
"SettingAutoChar": "A",
"SettingFastChar": "S",
"SettingSlowChar": "T",
"SettingStartSolderingChar": "T",
"SettingStartSleepChar": "S",
"SettingStartSleepOffChar": "O",
"SettingStartNoneChar": "F",
"SettingSensitivityOff": "O",
"SettingSensitivityLow": "L",
"SettingSensitivityMedium": "M",
"SettingSensitivityHigh": "H",
"SettingLockDisableChar": "D",
"SettingLockBoostChar": "B",
"SettingLockFullChar": "F"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Soldeer",
"Instellingen"
],
"desc": "Soldeerinstellingen"
},
"PowerSavingMenu": {
"text2": [
"Slaap",
"standen"
],
"desc": "Batterijspaarstanden"
},
"UIMenu": {
"text2": [
"Gebruikers-",
"Interface"
],
"desc": "Gebruikersinterface Instellingen"
},
"AdvancedMenu": {
"text2": [
"Gevorderde",
"Instellingen"
],
"desc": "Gevorderde Instellingen"
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Spannings-",
"bron"
],
"desc": "Spanningsbron. Stelt minimumspanning in. <DC 10V> <S 3.3V per cel>"
},
"SleepTemperature": {
"text2": [
"Slaap",
"temp"
],
"desc": "Temperatuur in slaapstand <°C>"
},
"SleepTimeout": {
"text2": [
"Slaap",
"time-out"
],
"desc": "Slaapstand time-out <Minuten/Seconden>"
},
"ShutdownTimeout": {
"text2": [
"Uitschakel",
"time-out"
],
"desc": "Automatisch afsluiten time-out <Minuten>"
},
"MotionSensitivity": {
"text2": [
"Bewegings-",
"gevoeligheid"
],
"desc": "Bewegingsgevoeligheid <0.uit 1.minst gevoelig 9.meest gevoelig>"
},
"TemperatureUnit": {
"text2": [
"Temperatuur",
"schaal"
],
"desc": "Temperatuurschaal <°C=Celsius °F=Fahrenheit>"
},
"AdvancedIdle": {
"text2": [
"Gedetailleerd",
"slaapscherm"
],
"desc": "Gedetailleerde informatie in een kleiner lettertype in het slaapscherm."
},
"DisplayRotation": {
"text2": [
"Scherm-",
"oriëntatie"
],
"desc": "Schermoriëntatie <A. Automatisch L. Linkshandig R. Rechtshandig>"
},
"BoostTemperature": {
"text2": [
"Verhogings",
"temp"
],
"desc": "Verhogingstemperatuur"
},
"AutoStart": {
"text2": [
"Auto",
"start"
],
"desc": "Breng de soldeerbout op temperatuur bij het opstarten. T=Soldeertemperatuur, S=Slaapstand-temperatuur, F=Uit"
},
"CooldownBlink": {
"text2": [
"Afkoel",
"knipper"
],
"desc": "Temperatuur knippert in hoofdmenu tijdens afkoeling."
},
"TemperatureCalibration": {
"text2": [
"Calibreer",
"temperatuur?"
],
"desc": "Temperatuur van de punt calibreren."
},
"SettingsReset": {
"text2": [
"Instellingen",
"resetten?"
],
"desc": "Alle instellingen resetten."
},
"VoltageCalibration": {
"text2": [
"Calibreer",
"voedingsspanning?"
],
"desc": "VIN Calibreren. Bevestigen door knoppen lang in te drukken."
},
"AdvancedSoldering": {
"text2": [
"Gedetailleerd",
"soldeerscherm"
],
"desc": "Gedetailleerde informatie in kleiner lettertype in soldeerscherm."
},
"ScrollingSpeed": {
"text2": [
"Scrol",
"snelheid"
],
"desc": "Scrolsnelheid van de tekst."
},
"TipModel": {
"text2": [
"Punt",
"Model"
],
"desc": "Gekozen punt"
},
"SimpleCalibrationMode": {
"text2": [
"Eenvoudige",
"Calibrering"
],
"desc": "Calibrering met heet water"
},
"AdvancedCalibrationMode": {
"text2": [
"Gevorderde",
"Calibrering"
],
"desc": "Calibrering met thermokoppel"
},
"QCMaxVoltage": {
"text2": [
"Vermogen",
"Watt"
],
"desc": "Vermogen van de adapter"
},
"PowerLimit": {
"text2": [
"Power",
"Limit"
],
"desc": "Maximum power the iron can use <Watts>"
},
"ReverseButtonTempChange": {
"text2": [
"Key +-",
"reverse?"
],
"desc": "Reverse the tip temperature change buttons plus minus assignment."
},
"TempChangeShortStep": {
"text2": [
"Temp change",
"short?"
],
"desc": "Temperature change steps on short button press!"
},
"TempChangeLongStep": {
"text2": [
"Temp change",
"long?"
],
"desc": "Temperature change steps on long button press!"
},
"PowerPulsePower": {
"text2": [
"Power",
"Pulse W"
],
"desc": "Keep awake pulse power intensity"
},
"TipGain": {
"text2": [
"Modify",
"tip gain"
],
"desc": "Tip gain"
},
"HallEffSensitivity": {
"text2": [
"Hall Eff",
"Sensitivity"
],
"desc": "Sensitivity of the Hall effect sensor in detecting sleep <O=Off,L=Low,M=Medium,H=High>"
},
"LockingMode": {
"text2": [
"Allow buttons",
"locking"
],
"desc": "When soldering, long press on both buttons lock them <D=Disable, B=Boost only, F=Full locking>"
}
}
}

View File

@@ -1,279 +0,0 @@
{
"languageCode": "NO",
"languageLocalName": "Norsk",
"cyrillicGlyphs": false,
"messages": {
"SettingsCalibrationDone": "Calibration done!",
"SettingsCalibrationWarning": "Sørg for at loddespissen har romtemperatur før du fortsetter!",
"SettingsResetWarning": "Er du sikker på at du vil tilbakestille til standardinnstillinger?",
"UVLOWarningString": "Lavspenn",
"UndervoltageString": "Underspenning",
"InputVoltageString": "Innspenn.: ",
"WarningTipTempString": "Spisstemp: ",
"BadTipString": "BAD TIP",
"SleepingSimpleString": "Zzzz",
"SleepingAdvancedString": "Dvale...",
"WarningSimpleString": "Varm",
"WarningAdvancedString": "VARM SPISS!",
"SleepingTipAdvancedString": "Spiss:",
"IdleTipString": "Spiss:",
"IdleSetString": "Set:",
"TipDisconnectedString": "SPISS FRAKOBLET",
"SolderingAdvancedPowerPrompt": "Effekt: ",
"OffString": "Av",
"ResetOKMessage": "Reset OK",
"YourGainMessage": "Your gain:",
"SettingsResetMessage": "Settings were\nreset!",
"NoAccelerometerMessage": "No accelerometer\ndetected!",
"NoPowerDeliveryMessage": "No USB-PD IC\ndetected!",
"LockingKeysString": " LOCKED",
"UnlockingKeysString": "UNLOCKED",
"WarningKeysLockedString": "!LOCKED!"
},
"characters": {
"SettingRightChar": "H",
"SettingLeftChar": "V",
"SettingAutoChar": "A",
"SettingFastChar": "H",
"SettingSlowChar": "L",
"SettingStartSolderingChar": "L",
"SettingStartSleepChar": "D",
"SettingStartSleepOffChar": "O",
"SettingStartNoneChar": "I",
"SettingSensitivityOff": "O",
"SettingSensitivityLow": "L",
"SettingSensitivityMedium": "M",
"SettingSensitivityHigh": "H",
"SettingLockDisableChar": "D",
"SettingLockBoostChar": "B",
"SettingLockFullChar": "F"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Lodde-",
"innst."
],
"desc": "Loddeinnstillinger"
},
"PowerSavingMenu": {
"text2": [
"Dvale-",
"innst."
],
"desc": "Dvaleinnstillinger"
},
"UIMenu": {
"text2": [
"Bruker-",
"grensesn."
],
"desc": "Brukergrensesnitt-innstillinger"
},
"AdvancedMenu": {
"text2": [
"Avanserte",
"valg"
],
"desc": "Avanserte valg"
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Kilde",
""
],
"desc": "Strømforsyning. Sett nedre spenning for automatisk nedstenging. <DC 10V <S 3.3V per celle"
},
"SleepTemperature": {
"text2": [
"DTmp",
""
],
"desc": "Dvaletemperatur <C>"
},
"SleepTimeout": {
"text2": [
"",
""
],
"desc": "Tid før dvale <Minutter/Sekunder"
},
"ShutdownTimeout": {
"text2": [
"AvTid",
""
],
"desc": "Tid før automatisk nedstenging <Minutter"
},
"MotionSensitivity": {
"text2": [
"BSensr",
""
],
"desc": "Bevegelsesfølsomhet <0.Inaktiv 1.Minst følsom 9.Mest følsom"
},
"TemperatureUnit": {
"text2": [
"TmpEnh",
""
],
"desc": "Temperaturskala <C=Celsius F=Fahrenheit"
},
"AdvancedIdle": {
"text2": [
"AvDvSk",
""
],
"desc": "Vis detaljert informasjon med liten skrift på dvaleskjermen."
},
"DisplayRotation": {
"text2": [
"SkRetn",
""
],
"desc": "Skjermretning <A. Automatisk V. Venstrehendt H. Høyrehendt"
},
"BoostTemperature": {
"text2": [
"KTmp",
""
],
"desc": "Temperatur i \"kraft\"-modus"
},
"AutoStart": {
"text2": [
"AStart",
""
],
"desc": "Start automatisk med lodding når strøm kobles til. L=Lodding, D=Dvale, I=Inaktiv"
},
"CooldownBlink": {
"text2": [
"KjBlnk",
""
],
"desc": "Blink temperaturen på skjermen mens spissen fortsatt er varm."
},
"TemperatureCalibration": {
"text2": [
"TempKal?",
""
],
"desc": "Kalibrer spiss-temperatur."
},
"SettingsReset": {
"text2": [
"TilbStl?",
""
],
"desc": "Tilbakestill alle innstillinger"
},
"VoltageCalibration": {
"text2": [
"KalSpIn?",
""
],
"desc": "Kalibrer spenning. Knappene justerer. Langt trykk for å gå ut"
},
"AdvancedSoldering": {
"text2": [
"AvLdSk",
""
],
"desc": "Vis detaljert informasjon ved lodding"
},
"ScrollingSpeed": {
"text2": [
"RullHa",
""
],
"desc": "Hastigheten på rulletekst"
},
"TipModel": {
"text2": [
"Tip",
"Model"
],
"desc": "Tip Model selection"
},
"SimpleCalibrationMode": {
"text2": [
"Simple",
"Calibration"
],
"desc": "Simple Calibration using Hot water"
},
"AdvancedCalibrationMode": {
"text2": [
"Advanced",
"Calibration"
],
"desc": "Advanced calibration using thermocouple on the tip"
},
"QCMaxVoltage": {
"text2": [
"Power",
"Wattage"
],
"desc": "Power Wattage of the power adapter used"
},
"PowerLimit": {
"text2": [
"Power",
"Limit"
],
"desc": "Maximum power the iron can use <Watts>"
},
"ReverseButtonTempChange": {
"text2": [
"Key +-",
"reverse?"
],
"desc": "Reverse the tip temperature change buttons plus minus assignment."
},
"TempChangeShortStep": {
"text2": [
"Temp change",
"short?"
],
"desc": "Temperature change steps on short button press!"
},
"TempChangeLongStep": {
"text2": [
"Temp change",
"long?"
],
"desc": "Temperature change steps on long button press!"
},
"PowerPulsePower": {
"text2": [
"Power",
"Pulse W"
],
"desc": "Keep awake pulse power intensity"
},
"TipGain": {
"text2": [
"Modify",
"tip gain"
],
"desc": "Tip gain"
},
"HallEffSensitivity": {
"text2": [
"Hall Eff",
"Sensitivity"
],
"desc": "Sensitivity of the Hall effect sensor in detecting sleep <O=Off,L=Low,M=Medium,H=High>"
},
"LockingMode": {
"text2": [
"Allow buttons",
"locking"
],
"desc": "When soldering, long press on both buttons lock them <D=Disable, B=Boost only, F=Full locking>"
}
}
}

View File

@@ -1,280 +0,0 @@
{
"languageCode": "PL",
"languageLocalName": "Polski",
"cyrillicGlyphs": false,
"tempUnitFahrenheit": false,
"messages": {
"SettingsCalibrationDone": "Kalibracja udana!",
"SettingsCalibrationWarning": "Przed kontynuowaniem upewnij się, że końcówka osiągnęła temperaturę pokojową!",
"SettingsResetWarning": "Czy na pewno chcesz przywrócić ustawienia fabryczne?",
"UVLOWarningString": "NIS. NAP",
"UndervoltageString": "Zbyt niskie nap.",
"InputVoltageString": "Nap. wej.:",
"WarningTipTempString": "Temp. grotu:",
"BadTipString": "ZŁY GROT",
"SleepingSimpleString": "Zzz!",
"SleepingAdvancedString": "Tr. uśpienia",
"WarningSimpleString": "HOT!",
"WarningAdvancedString": "GORĄCA KOŃCÓWKA!",
"SleepingTipAdvancedString": "Grot:",
"IdleTipString": "Grot:",
"IdleSetString": " Ust:",
"TipDisconnectedString": "GROT ODŁĄCZONY",
"SolderingAdvancedPowerPrompt": "Moc: ",
"OffString": "Wył",
"ResetOKMessage": "Reset OK",
"YourGainMessage": "Us.zysk:",
"SettingsResetMessage": "Ust. zresetowane",
"NoAccelerometerMessage": "No accelerometer\ndetected!",
"NoPowerDeliveryMessage": "No USB-PD IC\ndetected!",
"LockingKeysString": " ZABLOK.",
"UnlockingKeysString": "ODBLOK.",
"WarningKeysLockedString": "!ZABLOK!"
},
"characters": {
"SettingRightChar": "P",
"SettingLeftChar": "L",
"SettingAutoChar": "A",
"SettingFastChar": "S",
"SettingSlowChar": "W",
"SettingStartSolderingChar": "T",
"SettingStartSleepChar": "Z",
"SettingStartSleepOffChar": "O",
"SettingStartNoneChar": "B",
"SettingSensitivityOff": "O",
"SettingSensitivityLow": "N",
"SettingSensitivityMedium": "Ś",
"SettingSensitivityHigh": "W",
"SettingLockDisableChar": "W",
"SettingLockBoostChar": "B",
"SettingLockFullChar": "P"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Lutowanie",
""
],
"desc": "Ustawienia trybu lutowania"
},
"PowerSavingMenu": {
"text2": [
"Oszcz.",
"energii"
],
"desc": "Ustawienia oszczędzania energii"
},
"UIMenu": {
"text2": [
"Interfejs",
"użytkownika"
],
"desc": "Ustawienia interfejsu użytkownika"
},
"AdvancedMenu": {
"text2": [
"Ustawienia",
"zaawans."
],
"desc": "Ustawienia zaawansowane"
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Źródło",
"zasilania"
],
"desc": "Źródło zasilania. Ustaw napięcie odcięcia. <DC 10V> <S 3.3V dla ogniw Li, wyłącz limit mocy>"
},
"SleepTemperature": {
"text2": [
"Temp.",
"uśpienia"
],
"desc": "Temperatura w trybie uśpienia <°C>"
},
"SleepTimeout": {
"text2": [
"Czas do",
"uśpienia"
],
"desc": "Czas do przejścia w tryb uśpienia <minuty/sekundy>"
},
"ShutdownTimeout": {
"text2": [
"Czas do",
"wyłączenia"
],
"desc": "Czas do wyłączenia <minuty>"
},
"MotionSensitivity": {
"text2": [
"Czułość",
"wykr. ruchu"
],
"desc": "Czułość wykrywania ruchu <0-Wyłączona, 1-Minimalna, 9-Maksymalna>"
},
"TemperatureUnit": {
"text2": [
"Jednostka",
"temperatury"
],
"desc": "Jednostka temperatury <C-Celciusz, F-Fahrenheit>"
},
"AdvancedIdle": {
"text2": [
"Szeczegółowy",
"ekran bezczy."
],
"desc": "Wyświetla szczegółowe informacje za pomocą mniejszej czcionki na ekranie bezczynności"
},
"DisplayRotation": {
"text2": [
"Obrót",
"ekranu"
],
"desc": "Obrót ekranu <A-automatycznie, L-dla leworęcznych, P-dla praworęcznych>"
},
"BoostTemperature": {
"text2": [
"Temp.",
"boost"
],
"desc": "Temperatura w trybie \"boost\" "
},
"AutoStart": {
"text2": [
"Aut. uruch.",
"tr. lutowania"
],
"desc": "Automatyczne uruchamianie trybu lutowania po włączeniu zasilania.<B - wyłączone, T - lutowanie, Z - uśpienie, O - uśpienie w temp. pokojowej"
},
"CooldownBlink": {
"text2": [
"Mig. podczas",
"wychładzania"
],
"desc": "Temperatura miga podczas wychładzania, gdy grot jest wciąż gorący"
},
"TemperatureCalibration": {
"text2": [
"Kalibracja",
"temp. grotu"
],
"desc": "Kalibracja temperatury grotu lutownicy"
},
"SettingsReset": {
"text2": [
"Ustawienia",
"fabryczne"
],
"desc": "Resetuje wszystkie ustawienia"
},
"VoltageCalibration": {
"text2": [
"Kalibracja",
"napięcia"
],
"desc": "Kalibracja napięcia wejściowego. Krótkie naciśnięcie, aby ustawić, długie naciśnięcie, aby wyjść."
},
"AdvancedSoldering": {
"text2": [
"Sz. inf. w",
"tr. lutowania"
],
"desc": "Wyświetl szczegółowe informacje w trybie lutowania"
},
"ScrollingSpeed": {
"text2": [
"Sz. przew.",
"tekstu"
],
"desc": "Szybkość przewijania tekstu"
},
"TipModel": {
"text2": [
"Model",
"grotu"
],
"desc": "Wybór modelu grotu"
},
"SimpleCalibrationMode": {
"text2": [
"Prosta",
"kalibracja"
],
"desc": "Prosta kalibracja, używając gorącej wody"
},
"AdvancedCalibrationMode": {
"text2": [
"Zaawansowana",
"kalibracja"
],
"desc": "Zaawansowana kalibracja za pomocą termopary na grocie"
},
"QCMaxVoltage": {
"text2": [
"Moc",
"w W"
],
"desc": "Moc używanego zasilacza w <W>"
},
"PowerLimit": {
"text2": [
"Ogr.",
"mocy"
],
"desc": "Maksymalna moc <W>, jakiej może użyć lutownica"
},
"ReverseButtonTempChange": {
"text2": [
"Zamień przyc.",
"+ -"
],
"desc": "Zamienia działanie przycisków zmiany temperatury grotu"
},
"TempChangeShortStep": {
"text2": [
"Zm. temp.",
"kr. przyc."
],
"desc": "Wartość zmiany temperatury, po krótkim przyciśnięciu <°C>"
},
"TempChangeLongStep": {
"text2": [
"Zm. temp.",
"dł. przyc."
],
"desc": "Wartość zmiany temperatury, po długim przyciśnięciu <°C>"
},
"PowerPulsePower": {
"text2": [
"Moc",
"impulsu"
],
"desc": "W przypadku używania powerbanku, utrzymuj moc na poziomie <W> aby nie uśpić powerbanku"
},
"TipGain": {
"text2": [
"Zm. zysk",
"grotu"
],
"desc": "Własne ustawienia zysku grotu, celem lepszej kalibracji wysokich temperatur <uV/°C>"
},
"HallEffSensitivity": {
"text2": [
"Czułość",
"cz.Halla"
],
"desc": "Czułość czujnika Halla, używanego do przechodznia w tryb uśpienia <O-Wył,N-Niska,Ś=Średnia,W=Wysoka>"
},
"LockingMode": {
"text2": [
"Blokada",
"przycisków"
],
"desc": "W trybie lutowania, wciśnij oba przyciski aby je zablokować <O-Wyłączona, B-tylko Boost, P-pełna blokada>"
}
}
}

View File

@@ -1,279 +0,0 @@
{
"languageCode": "PT",
"languageLocalName": "Português",
"cyrillicGlyphs": false,
"messages": {
"SettingsCalibrationDone": "Calibração terminada!",
"SettingsCalibrationWarning": "A ponta deve estar à temperatura ambiente antes de continuar!",
"SettingsResetWarning": "Definições de fábrica?",
"UVLOWarningString": "DC BAIXO",
"UndervoltageString": "Subtensão",
"InputVoltageString": "Tensão ",
"WarningTipTempString": "Temperatura ",
"BadTipString": "ER PONTA",
"SleepingSimpleString": "Zzzz",
"SleepingAdvancedString": "Repouso...",
"WarningSimpleString": "TEMP",
"WarningAdvancedString": "TEMP ELEVADA!",
"SleepingTipAdvancedString": "Ponta:",
"IdleTipString": "Ponta:",
"IdleSetString": " Aj:",
"TipDisconnectedString": "SEM PONTA",
"SolderingAdvancedPowerPrompt": "Power: ",
"OffString": "Off",
"ResetOKMessage": "Reset OK",
"YourGainMessage": "Your gain:",
"SettingsResetMessage": "Settings were\nreset!",
"NoAccelerometerMessage": "No accelerometer\ndetected!",
"NoPowerDeliveryMessage": "No USB-PD IC\ndetected!",
"LockingKeysString": " LOCKED",
"UnlockingKeysString": "UNLOCKED",
"WarningKeysLockedString": "!LOCKED!"
},
"characters": {
"SettingRightChar": "D",
"SettingLeftChar": "C",
"SettingAutoChar": "A",
"SettingFastChar": "R",
"SettingSlowChar": "L",
"SettingStartSolderingChar": "T",
"SettingStartSleepChar": "S",
"SettingStartSleepOffChar": "O",
"SettingStartNoneChar": "F",
"SettingSensitivityOff": "O",
"SettingSensitivityLow": "L",
"SettingSensitivityMedium": "M",
"SettingSensitivityHigh": "H",
"SettingLockDisableChar": "D",
"SettingLockBoostChar": "B",
"SettingLockFullChar": "F"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Configurações",
"Solda"
],
"desc": "Configurações de soldagem"
},
"PowerSavingMenu": {
"text2": [
"Modos",
"Repouso"
],
"desc": "Configurações de economia de energia"
},
"UIMenu": {
"text2": [
"Interface",
"Utilizador"
],
"desc": "Configurações do interface do utilizador"
},
"AdvancedMenu": {
"text2": [
"Menu",
"Avançado"
],
"desc": "Opções avançadas"
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Fonte",
"alimentação"
],
"desc": "Fonte de alimentação. Define a tensão de corte. <DC=10V> <S=3.3V/célula>"
},
"SleepTemperature": {
"text2": [
"Temperat.",
"repouso"
],
"desc": "Temperatura de repouso <C>"
},
"SleepTimeout": {
"text2": [
"Tempo",
"repouso"
],
"desc": "Tempo para repouso <Minutos/Segundos>"
},
"ShutdownTimeout": {
"text2": [
"Tempo",
"desligam."
],
"desc": "Tempo para desligamento <Minutos>"
},
"MotionSensitivity": {
"text2": [
"Sensibilidade",
"movimento"
],
"desc": "Sensibilidade ao movimento <0=Desligado 1=Menor 9=Maior>"
},
"TemperatureUnit": {
"text2": [
"Unidade",
"temperatura"
],
"desc": "Unidade de temperatura <C=Celsius F=Fahrenheit>"
},
"AdvancedIdle": {
"text2": [
"Tela repouso",
"avançada"
],
"desc": "Exibe informações avançadas quando em espera"
},
"DisplayRotation": {
"text2": [
"Orientação",
"tela"
],
"desc": "Orientação da tela <A.utomática C.anhoto D.estro>"
},
"BoostTemperature": {
"text2": [
"Modo turbo",
"temperat."
],
"desc": "Ajuste de temperatura do modo \"turbo\""
},
"AutoStart": {
"text2": [
"Partida",
"automática"
],
"desc": "Aquece a ponta automaticamente ao ligar"
},
"CooldownBlink": {
"text2": [
"Piscar ao",
"arrefecer"
],
"desc": "Faz o valor da temperatura piscar durante o arrefecimento"
},
"TemperatureCalibration": {
"text2": [
"Calibrar",
"temperatura"
],
"desc": "Calibra a temperatura"
},
"SettingsReset": {
"text2": [
"Reset de",
"fábrica?"
],
"desc": "Reverte todos ajustes"
},
"VoltageCalibration": {
"text2": [
"Calibrar",
"tensão"
],
"desc": "Calibra a tensão de alimentação. Use os botões para ajustar o valor. Mantenha pressionado para sair"
},
"AdvancedSoldering": {
"text2": [
"Tela trabalho",
"avançada"
],
"desc": "Exibe informações avançadas durante o uso"
},
"ScrollingSpeed": {
"text2": [
"Velocidade",
"texto ajuda"
],
"desc": "Velocidade a que o texto é exibido"
},
"TipModel": {
"text2": [
"Ponta",
"Modelo"
],
"desc": "Selecção de modelo de ponta"
},
"SimpleCalibrationMode": {
"text2": [
"Calibração",
"Simples"
],
"desc": "Calibração simples com água quente"
},
"AdvancedCalibrationMode": {
"text2": [
"Calibração",
"Avançada"
],
"desc": "Calibração avançada com um termopar na ponta"
},
"QCMaxVoltage": {
"text2": [
"Potência",
"Fonte"
],
"desc": "Potência da fonte usada (Watt)"
},
"PowerLimit": {
"text2": [
"Power",
"Limit"
],
"desc": "Maximum power the iron can use <Watts>"
},
"ReverseButtonTempChange": {
"text2": [
"Key +-",
"reverse?"
],
"desc": "Reverse the tip temperature change buttons plus minus assignment."
},
"TempChangeShortStep": {
"text2": [
"Temp change",
"short?"
],
"desc": "Temperature change steps on short button press!"
},
"TempChangeLongStep": {
"text2": [
"Temp change",
"long?"
],
"desc": "Temperature change steps on long button press!"
},
"PowerPulsePower": {
"text2": [
"Power",
"Pulse W"
],
"desc": "Keep awake pulse power intensity"
},
"TipGain": {
"text2": [
"Modify",
"tip gain"
],
"desc": "Tip gain"
},
"HallEffSensitivity": {
"text2": [
"Hall Eff",
"Sensitivity"
],
"desc": "Sensitivity of the Hall effect sensor in detecting sleep <O=Off,L=Low,M=Medium,H=High>"
},
"LockingMode": {
"text2": [
"Allow buttons",
"locking"
],
"desc": "When soldering, long press on both buttons lock them <D=Disable, B=Boost only, F=Full locking>"
}
}
}

View File

@@ -1,279 +0,0 @@
{
"languageCode": "RU",
"languageLocalName": "Русский",
"cyrillicGlyphs": true,
"messages": {
"SettingsCalibrationDone": "Калибровка завершена!",
"SettingsCalibrationWarning": "Прежде чем продолжить, пожалуйста, убедитесь, что жало имеет комнатную температуру!",
"SettingsResetWarning": "Вы уверены, что хотите сбросить настройки к значениям по умолчанию?",
"UVLOWarningString": "НАПРЯЖ--",
"UndervoltageString": "Низк. напряжение",
"InputVoltageString": "Питание В: ",
"WarningTipTempString": "Темп. жала: ",
"BadTipString": "ЖАЛО--",
"SleepingSimpleString": "Zzzz",
"SleepingAdvancedString": "Ожидание...",
"WarningSimpleString": "ГОРЯЧО!",
"WarningAdvancedString": "!!! ГОРЯЧЕЕ ЖАЛО !!!",
"SleepingTipAdvancedString": "Жало:",
"IdleTipString": "Жало:",
"IdleSetString": " ->",
"TipDisconnectedString": "ЖАЛО ОТСОЕДИНЕНО",
"SolderingAdvancedPowerPrompt": "Питание: ",
"OffString": "Выкл.",
"ResetOKMessage": "Сброс OK",
"YourGainMessage": "Прирост:",
"SettingsResetMessage": "Настройки сброшены!",
"NoAccelerometerMessage": "No accelerometer\ndetected!",
"NoPowerDeliveryMessage": "No USB-PD IC\ndetected!",
"LockingKeysString": " LOCKED",
"UnlockingKeysString": "UNLOCKED",
"WarningKeysLockedString": "!LOCKED!"
},
"characters": {
"SettingRightChar": "П",
"SettingLeftChar": "Л",
"SettingAutoChar": "А",
"SettingFastChar": "Б",
"SettingSlowChar": "М",
"SettingStartSolderingChar": "П",
"SettingStartSleepChar": "О",
"SettingStartSleepOffChar": "К",
"SettingStartNoneChar": "В",
"SettingSensitivityOff": "O",
"SettingSensitivityLow": "L",
"SettingSensitivityMedium": "M",
"SettingSensitivityHigh": "H",
"SettingLockDisableChar": "D",
"SettingLockBoostChar": "B",
"SettingLockFullChar": "F"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Параметры",
"пайки"
],
"desc": "Параметры пайки"
},
"PowerSavingMenu": {
"text2": [
"Режимы",
"сна"
],
"desc": "Настройки режима ожидания"
},
"UIMenu": {
"text2": [
"Параметры",
"интерфейса"
],
"desc": "Настройки пользовательского интерфейса"
},
"AdvancedMenu": {
"text2": [
"Дополнител.",
"настройки"
],
"desc": "Дополнительные настройки"
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Источник",
"питания"
],
"desc": "Источник питания. Устанавливает напряжение отсечки. <DC 10В> <S 3.3В на ячейку, без лимита мощности>"
},
"SleepTemperature": {
"text2": [
"Темп.",
"ожидания"
],
"desc": "Температура режима ожидания"
},
"SleepTimeout": {
"text2": [
"Таймаут",
"ожидания"
],
"desc": "Время до перехода в режим ожидания <Минуты/Секунды>"
},
"ShutdownTimeout": {
"text2": [
"Таймаут",
"выключения"
],
"desc": "Время до отключения паяльника <Минуты>"
},
"MotionSensitivity": {
"text2": [
"Чувствительн.",
"акселерометра"
],
"desc": "Чувствительность акселерометра <0=Выкл., 1=Мин., 9=Макс.>"
},
"TemperatureUnit": {
"text2": [
"Единицы",
"температуры"
],
"desc": "Единицы измерения температуры <C=Цельcия, F=Фаренгейта>"
},
"AdvancedIdle": {
"text2": [
"Подробный",
"реж. ожидания"
],
"desc": "Отображать детальную информацию уменьшенным шрифтом на экране ожидания"
},
"DisplayRotation": {
"text2": [
"Ориентация",
"экрана"
],
"desc": "Ориентация экрана <А=Авто, Л=Левая рука, П=Правая рука>"
},
"BoostTemperature": {
"text2": [
"t° турбо",
"режима"
],
"desc": "Температура жала в турбо-режиме"
},
"AutoStart": {
"text2": [
"Авто",
"старт"
],
"desc": "Режим, в котором запускается паяльник при подаче питания <П=Пайка, О=Ожидание, К=Ожидание при комн. темп., В=Выкл.>"
},
"CooldownBlink": {
"text2": [
"Мигание t°",
"при остывании"
],
"desc": "Мигать температурой на экране охлаждения, пока жало еще горячее"
},
"TemperatureCalibration": {
"text2": [
"Калибровка",
"температуры"
],
"desc": "Калибровка термодатчика жала"
},
"SettingsReset": {
"text2": [
"Сброс",
"Настроек"
],
"desc": "Сброс настроек к значеням по умолчанию"
},
"VoltageCalibration": {
"text2": [
"Калибровка",
"напряжения"
],
"desc": "Калибровка входного напряжения <длинное нажатие для выхода>"
},
"AdvancedSoldering": {
"text2": [
"Подробный",
"экран пайки"
],
"desc": "Показывать детальную информацию на экране пайки"
},
"ScrollingSpeed": {
"text2": [
"Скорость",
"текста"
],
"desc": "Скорость прокрутки текста <М=медленно, Б=быстро>"
},
"TipModel": {
"text2": [
"Модель",
"жала"
],
"desc": "Выбор модели жала"
},
"SimpleCalibrationMode": {
"text2": [
"Упрощенная",
"калибровка"
],
"desc": "Упрощенная калибровка с использованием горячей воды"
},
"AdvancedCalibrationMode": {
"text2": [
"Улучшенная",
"калибровка"
],
"desc": "Улучшенная калибровка с импользованием термопары жала"
},
"QCMaxVoltage": {
"text2": [
"Мощность",
"питания"
],
"desc": "Мощность используемого источника питания"
},
"PowerLimit": {
"text2": [
"Максимальная",
"мощность"
],
"desc": "Максимальная мощность, которую может использовать паяльник <Ватт>"
},
"ReverseButtonTempChange": {
"text2": [
"Инвертировать",
"кнопки"
],
"desc": "Инвертировать кнопки изменения температуры"
},
"TempChangeShortStep": {
"text2": [
"Шаг темп.",
"кор. наж."
],
"desc": "Шаг изменения температуры при коротком нажатии кнопок"
},
"TempChangeLongStep": {
"text2": [
"Шаг темп.",
"длин. наж."
],
"desc": "Шаг изменения температуры при длинном нажатии кнопок"
},
"PowerPulsePower": {
"text2": [
"Мощность импульса",
"питания Вт"
],
"desc": "Мощность импульса удерживающего от сна источник питания"
},
"TipGain": {
"text2": [
"Изменить",
"усиление жала"
],
"desc": "Усиление жала"
},
"HallEffSensitivity": {
"text2": [
"Эффект Холла",
"чувствительность"
],
"desc": "Уровень чувствительности датчика холла в режиме сна <O=Выкл,L=Низкий,M=Средний,H=Высокий>"
},
"LockingMode": {
"text2": [
"Разрешить блокировку",
"кнопок"
],
"desc": "При работе длинное нажатие обеих кнопок блокирует их <D=Отключено, B=Только турбо, F=Полная блокировка>"
}
}
}

View File

@@ -1,279 +0,0 @@
{
"languageCode": "SK",
"languageLocalName": "Slovenčina",
"cyrillicGlyphs": false,
"messages": {
"SettingsCalibrationDone": "Kalibrácia hotová!",
"SettingsCalibrationWarning": "Najprv sa prosím uistite, že hrot má izbovú teplotu!",
"SettingsResetWarning": "Naozaj chcete obnovit továrenské nastavenia?",
"UVLOWarningString": "Nízke U!",
"UndervoltageString": "Nízke napätie",
"InputVoltageString": "Vstupné U: ",
"WarningTipTempString": "Tep. hrotu: ",
"BadTipString": "ZLÝ HROT",
"SleepingSimpleString": "Chrr",
"SleepingAdvancedString": "Pokojový režim..",
"WarningSimpleString": "PÁLI",
"WarningAdvancedString": "HROT JE HORÚCI !",
"SleepingTipAdvancedString": "Hrot:",
"IdleTipString": "Hrot:",
"IdleSetString": "Cieľ:",
"TipDisconnectedString": "HROT ODPOJENÝ",
"SolderingAdvancedPowerPrompt": "Výkon: ",
"OffString": "Vyp",
"ResetOKMessage": "Reset OK",
"YourGainMessage": "Zisk:",
"SettingsResetMessage": "Tov. nas. obnov.",
"NoAccelerometerMessage": "Bez pohyb. senz.",
"NoPowerDeliveryMessage": "Chýba čip USB-PD",
"LockingKeysString": " ZABLOK.",
"UnlockingKeysString": "ODBLOK.",
"WarningKeysLockedString": "!ZABLOK!"
},
"characters": {
"SettingRightChar": "P",
"SettingLeftChar": "L",
"SettingAutoChar": "A",
"SettingFastChar": "R",
"SettingSlowChar": "P",
"SettingStartSolderingChar": "S",
"SettingStartSleepChar": "K",
"SettingStartSleepOffChar": "O",
"SettingStartNoneChar": "N",
"SettingSensitivityOff": "Z",
"SettingSensitivityLow": "N",
"SettingSensitivityMedium": "S",
"SettingSensitivityHigh": "V",
"SettingLockDisableChar": "Z",
"SettingLockBoostChar": "B",
"SettingLockFullChar": "P"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Nastavenie",
"spájkovania"
],
"desc": "Nastavenie spájkovania"
},
"PowerSavingMenu": {
"text2": [
"Úsporný",
"režim"
],
"desc": "Nastavenia režimov úspory energie"
},
"UIMenu": {
"text2": [
"Nastavenie",
"zobrazenia"
],
"desc": "Nastavenie zobrazenia"
},
"AdvancedMenu": {
"text2": [
"Pokročilé",
"nastavenia"
],
"desc": "Pokročilé nastavenia"
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Zdroj",
"napätia"
],
"desc": "Zdroj napätia. Nastavenie napätia pre vypnutie (cutoff) <DC=10V, nS=n*3.3V pre LiIon články>"
},
"SleepTemperature": {
"text2": [
"Pokojová",
"teplota"
],
"desc": "Pokojová teplota (v nastavených jednotkách)"
},
"SleepTimeout": {
"text2": [
"Pokojový",
"režim po"
],
"desc": "Pokojový režim po <S=sekundách/M=minútach>"
},
"ShutdownTimeout": {
"text2": [
"Vypnutie",
"po"
],
"desc": "Čas na vypnutie <minúty>"
},
"MotionSensitivity": {
"text2": [
"Citlivosť",
"pohybu"
],
"desc": "Citlivosť detekcie pohybu <0=Vyp, 1=Min ... 9=Max>"
},
"TemperatureUnit": {
"text2": [
"Jednotka",
"teploty"
],
"desc": "Jednotky merania teploty <C=stupne Celzia, F=stupne Fahrenheita>"
},
"AdvancedIdle": {
"text2": [
"Detaily v",
"pokoj. režime"
],
"desc": "Zobraziť detailné informácie v pokojovom režime <T=Zap, F=Vyp>"
},
"DisplayRotation": {
"text2": [
"Orientácia",
"displeja"
],
"desc": "Orientácia displeja <A=Auto, L=Ľavák, P=Pravák>"
},
"BoostTemperature": {
"text2": [
"Boost",
"teplota"
],
"desc": "Cieľová teplota pre prudký náhrev (v nastavených jednotkách)"
},
"AutoStart": {
"text2": [
"Automatické",
"spustenie"
],
"desc": "Pri štarte spustiť režim spájkovania <S=Zap, N=Vyp, K=Spanok>"
},
"CooldownBlink": {
"text2": [
"Blikanie pri",
"chladnutí"
],
"desc": "Blikanie ukazovateľa teploty počas chladnutia hrotu"
},
"TemperatureCalibration": {
"text2": [
"Kalibrácia",
"teploty"
],
"desc": "Kalibrácia posunu teploty hrotu"
},
"SettingsReset": {
"text2": [
"Obnovenie",
"nastavení"
],
"desc": "Obnovenie nastavení na pôvodné hodnoty"
},
"VoltageCalibration": {
"text2": [
"Kalibrácia",
"nap. napätia"
],
"desc": "Kalibrácia napájacieho napätia. Krátke stlačenie mení nastavenie, dlhé stlačenie pre návrat"
},
"AdvancedSoldering": {
"text2": [
"Detaily počas",
"spájkovania"
],
"desc": "Zobrazenie detailov počas spájkovania"
},
"ScrollingSpeed": {
"text2": [
"Rýchlost",
"skrolovania"
],
"desc": "Rýchlosť pohybu tohto textu"
},
"TipModel": {
"text2": [
"Typ",
"hrotu"
],
"desc": "Zvolenie hrotu"
},
"SimpleCalibrationMode": {
"text2": [
"Zjednodušená",
"kalibrácia"
],
"desc": "Zjednodušená kalibrácia pomocou horúcej vody"
},
"AdvancedCalibrationMode": {
"text2": [
"Pokročilá",
"kalibrácia"
],
"desc": "Pokročilá kalibrácia meraním teploty hrotu"
},
"QCMaxVoltage": {
"text2": [
"Obmedzenie",
"výkonu"
],
"desc": "Obmedzenie výkonu podľa použitého zdroja"
},
"PowerLimit": {
"text2": [
"Obmedzenie",
"výkonu"
],
"desc": "Obmedzenie výkonu podľa použitého zdroja <watt>"
},
"ReverseButtonTempChange": {
"text2": [
"Otočenie",
"tlačidiel +/-"
],
"desc": "Prehodenie tlačidiel na nastavovanie teploty"
},
"TempChangeShortStep": {
"text2": [
"Malý krok",
"teploty"
],
"desc": "Zmena teploty pri krátkom stlačení tlačidla"
},
"TempChangeLongStep": {
"text2": [
"Veľký krok",
"teploty"
],
"desc": "Zmena teploty pri držaní tlačidla"
},
"PowerPulsePower": {
"text2": [
"Intenzita",
"impulzu"
],
"desc": "Impulz udržujúci napájací zdroj zapnutý (power banky) <watt>"
},
"TipGain": {
"text2": [
"Zisk",
"hrotu"
],
"desc": "Úprava zisku hrotu (meranie)"
},
"HallEffSensitivity": {
"text2": [
"Citliv.",
"Hall"
],
"desc": "Citlivosť Halloveho senzora pre detekciu spánku <Z=Zakázať,N=Nízka,S=Stredná,V=Vysoká>"
},
"LockingMode": {
"text2": [
"Povoliť zámok",
"tlačidiel"
],
"desc": "Zamknutie tlačidiel - dlhé stlačenie oboch naraz počas spájkovania <Z=Zakázať, B=Okrem boost, P=Plné zamknutie>"
}
}
}

View File

@@ -1,279 +0,0 @@
{
"languageCode": "SL",
"languageLocalName": "Slovenščina",
"cyrillicGlyphs": false,
"messages": {
"SettingsCalibrationDone": "Kalibracija opravljena!",
"SettingsCalibrationWarning": "Pred nadaljevanjem mora biti konica segreta na sobno temperaturo!",
"SettingsResetWarning": "Res želite ponastaviti na privzete nastavitve?",
"UVLOWarningString": "NIZKA U",
"UndervoltageString": "Nizka napetost",
"InputVoltageString": "Vhodna U: ",
"WarningTipTempString": "Temp. kon.: ",
"BadTipString": "KONICA?",
"SleepingSimpleString": "Zzzz",
"SleepingAdvancedString": "Spim...",
"WarningSimpleString": "VROČ",
"WarningAdvancedString": "!!VROČA KONICA!!",
"SleepingTipAdvancedString": "Konica",
"IdleTipString": "Kon:",
"IdleSetString": " temp:",
"TipDisconnectedString": "NI KONICE",
"SolderingAdvancedPowerPrompt": "Moč: ",
"OffString": "Off",
"ResetOKMessage": "Reset OK",
"YourGainMessage": "Ojačenje",
"SettingsResetMessage": "Nastavitve OK!",
"NoAccelerometerMessage": "Ni pospeševalnik",
"NoPowerDeliveryMessage": "Ni USB-PD čipa!",
"LockingKeysString": "ZAKLENJ.",
"UnlockingKeysString": "ODKLENJ.",
"WarningKeysLockedString": "ZAKLENJ."
},
"characters": {
"SettingRightChar": "D",
"SettingLeftChar": "L",
"SettingAutoChar": "S",
"SettingFastChar": "H",
"SettingSlowChar": "P",
"SettingStartSolderingChar": "S",
"SettingStartSleepChar": "Z",
"SettingStartSleepOffChar": "V",
"SettingStartNoneChar": "U",
"SettingSensitivityOff": "U",
"SettingSensitivityLow": "N",
"SettingSensitivityMedium": "S",
"SettingSensitivityHigh": "V",
"SettingLockDisableChar": "O",
"SettingLockBoostChar": "L",
"SettingLockFullChar": "P"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Nastavitve",
"spajkanja"
],
"desc": "Nastavitve spajkanja"
},
"PowerSavingMenu": {
"text2": [
"Način",
"spanja"
],
"desc": "Nastavitve varčevanja z energijo"
},
"UIMenu": {
"text2": [
"Uporabniški",
"vmesnik"
],
"desc": "Nastavitve uporabniškega vmesnika"
},
"AdvancedMenu": {
"text2": [
"Napredne",
"možnosti"
],
"desc": "Napredne možnosti"
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Vir",
"napajanja"
],
"desc": "Vir napajanja. Nastavi napetost izklopa. <DC 10V> <S 3.3V na celico>"
},
"SleepTemperature": {
"text2": [
"Temp. med",
"spanjem"
],
"desc": "Temperatura med spanjem"
},
"SleepTimeout": {
"text2": [
"Čas do",
"spanja"
],
"desc": "Čas pred spanjem <S=sekunde | M=minute>"
},
"ShutdownTimeout": {
"text2": [
"Čas do",
"izklopa"
],
"desc": "Čas do izklopa <M=minute>"
},
"MotionSensitivity": {
"text2": [
"Občutljivost",
"premikanja"
],
"desc": "0=izklopljeno | 1=najmanjša | ... | 9=največja"
},
"TemperatureUnit": {
"text2": [
"Enota za",
"temperaturo"
],
"desc": "Enota za temperaturo <C=celzij | F=fahrenheit>"
},
"AdvancedIdle": {
"text2": [
"Več info. na",
"mir. zaslonu"
],
"desc": "Prikaži več informacij z manjšo pisavo na mirovalnem zaslonu."
},
"DisplayRotation": {
"text2": [
"Orientacija",
"zaslona"
],
"desc": "S=samodejno | L=levičar | D=desničar"
},
"BoostTemperature": {
"text2": [
"Pospešena",
"temp."
],
"desc": "Temperatura v pospešenem načinu"
},
"AutoStart": {
"text2": [
"Samodejni",
"zagon"
],
"desc": "Samodejno gretje konice ob vklopu <U=ugasnjeno | S=spajkanje | Z=spanje | V=spanje na sobni temperaturi>"
},
"CooldownBlink": {
"text2": [
"Utripanje med",
"hlajenjem"
],
"desc": "Ko je konica še vroča, utripaj prikaz temperature med hlajenjem."
},
"TemperatureCalibration": {
"text2": [
"Kalibriram",
"temperaturo?"
],
"desc": "Kalibracija temperature na konici."
},
"SettingsReset": {
"text2": [
"Tovarniške",
"nastavitve?"
],
"desc": "Ponastavitev vseh nastavitev"
},
"VoltageCalibration": {
"text2": [
"Kalibriram",
"vhodno napetost?"
],
"desc": "Kalibracija VIN <nastavitve z gumbi, dolg pritisk za izhod>"
},
"AdvancedSoldering": {
"text2": [
"Več info na",
"zaslonu spaj."
],
"desc": "Prikaže več informacij z manjšo pisavo na zaslonu med spajkanjem."
},
"ScrollingSpeed": {
"text2": [
"Hitrost",
"besedila"
],
"desc": "Hitrost, s katero se prikazuje besedilo <P=počasi | H=hitro>"
},
"TipModel": {
"text2": [
"Tip",
"konice"
],
"desc": "Izbira tipa konice"
},
"SimpleCalibrationMode": {
"text2": [
"Preprosta",
"kalibracija"
],
"desc": "Preprosta kalibracija z vročo vodo."
},
"AdvancedCalibrationMode": {
"text2": [
"Napredna",
"kalibracija"
],
"desc": "Napredna kalibracija s termočlenom na konici"
},
"QCMaxVoltage": {
"text2": [
"QC",
"napetost"
],
"desc": "Moč napajalnega vira v vatih [W]"
},
"PowerLimit": {
"text2": [
"Meja",
"moči"
],
"desc": "Največja dovoljena moč v vatih [W]"
},
"ReverseButtonTempChange": {
"text2": [
"Obrni",
"tipki + -?"
],
"desc": "Zamenjaj funkciji gumbov."
},
"TempChangeShortStep": {
"text2": [
"Kratka sprememba",
"temperature?"
],
"desc": "Temperatura se spremeni ob kratkem pritisku na gumb."
},
"TempChangeLongStep": {
"text2": [
"Dolga sprememba",
"temperature?"
],
"desc": "Temperatura se spremeni ob dolgem pritisku na gumb."
},
"PowerPulsePower": {
"text2": [
"Pulz",
"moči"
],
"desc": "Velikost moči za vzdrževanje budnosti."
},
"TipGain": {
"text2": [
"Nastavi",
"moč kon."
],
"desc": "Nastavi moč konice."
},
"HallEffSensitivity": {
"text2": [
"Občut.",
"Hall son"
],
"desc": "Občutljivost Hallove sonde za zaznavanje spanja <U=ugasnjen | N=nizka | S=srednja | V=visoka>"
},
"LockingMode": {
"text2": [
"Omogoči",
"zaklep gumbov"
],
"desc": "Za zaklep med spajkanjem drži oba gumba <O=onemogoči | L=le pospešeno | P=polno>"
}
}
}

View File

@@ -1,279 +0,0 @@
{
"languageCode": "SR_CYRL",
"languageLocalName": "Српски",
"cyrillicGlyphs": true,
"messages": {
"SettingsCalibrationDone": "Калибрација готова",
"SettingsCalibrationWarning": "Проверите да ли је врх охлађен на собну температуру пре него што наставите",
"SettingsResetWarning": "Да ли заиста желите да вратите поставке на фабричке вредности?",
"UVLOWarningString": "НИЗ.НАП.",
"UndervoltageString": "ПРЕНИЗАК НАПОН",
"InputVoltageString": "Ул. напон: ",
"WarningTipTempString": "Темп. врха: ",
"BadTipString": "ЛОШ ВРХ",
"SleepingSimpleString": "Сан",
"SleepingAdvancedString": "Спавање...",
"WarningSimpleString": "ВРУЋ",
"WarningAdvancedString": "! ОПРЕЗ, ВРУЋЕ !",
"SleepingTipAdvancedString": "Врх:",
"IdleTipString": "Врх:",
"IdleSetString": " / ",
"TipDisconnectedString": "ВРХ НИЈЕ СПОЈЕН",
"SolderingAdvancedPowerPrompt": "Снага: ",
"OffString": "Иск",
"ResetOKMessage": "Reset OK",
"YourGainMessage": "Your gain:",
"SettingsResetMessage": "Settings were\nreset!",
"NoAccelerometerMessage": "No accelerometer\ndetected!",
"NoPowerDeliveryMessage": "No USB-PD IC\ndetected!",
"LockingKeysString": " LOCKED",
"UnlockingKeysString": "UNLOCKED",
"WarningKeysLockedString": "!LOCKED!"
},
"characters": {
"SettingRightChar": "Д",
"SettingLeftChar": "Л",
"SettingAutoChar": "А",
"SettingFastChar": "Б",
"SettingSlowChar": "С",
"SettingStartSolderingChar": "T",
"SettingStartSleepChar": "S",
"SettingStartSleepOffChar": "O",
"SettingStartNoneChar": "F",
"SettingSensitivityOff": "O",
"SettingSensitivityLow": "L",
"SettingSensitivityMedium": "M",
"SettingSensitivityHigh": "H",
"SettingLockDisableChar": "D",
"SettingLockBoostChar": "B",
"SettingLockFullChar": "F"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Поставке",
"лемљења"
],
"desc": "Поставке режима лемљења."
},
"PowerSavingMenu": {
"text2": [
"Уштеда",
"енергије"
],
"desc": "Поставке режима мировања."
},
"UIMenu": {
"text2": [
"Корисничко",
"сучеље"
],
"desc": "Поставке корисничког сучеља."
},
"AdvancedMenu": {
"text2": [
"Напредне",
"поставке"
],
"desc": "Напредне поставке."
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Врста",
"напајања"
],
"desc": "Тип напајања; одређује најнижи радни напон. <DC=адаптер (10V), S=батерија (3,3V по ћелији)>"
},
"SleepTemperature": {
"text2": [
"Темп.",
"спавања"
],
"desc": "Температура на коју се спушта лемилица након одређеног времена мировања. <C/F>"
},
"SleepTimeout": {
"text2": [
"Време до",
"спавања"
],
"desc": "Време мировања након кога лемилица спушта температуру. <M=минути, S=секунде>"
},
"ShutdownTimeout": {
"text2": [
"Време до",
"гашења"
],
"desc": "Време мировања након кога се лемилица гаси. <M=минути>"
},
"MotionSensitivity": {
"text2": [
"Осетљивост",
"на покрет"
],
"desc": "Осетљивост сензора покрета. <0=искључено, 1=најмање осетљиво, 9=најосетљивије>"
},
"TemperatureUnit": {
"text2": [
"Јединица",
"температуре"
],
"desc": "Јединице у којима се приказује температура. <C=целзијус, F=фаренхајт>"
},
"AdvancedIdle": {
"text2": [
"Детаљи током",
"мировања"
],
"desc": "Приказивање детаљних информација на екрану током мировања."
},
"DisplayRotation": {
"text2": [
"Оријентација",
"екрана"
],
"desc": "Како је окренут екран. <А=аутоматски, Л=за леворуке, Д=за десноруке>"
},
"BoostTemperature": {
"text2": [
"Темп.",
"појачања"
],
"desc": "Температура врха лемилице у току појачања."
},
"AutoStart": {
"text2": [
"Врући",
"старт"
],
"desc": "Лемилица одмах по покретању прелази у режим лемљења и греје се."
},
"CooldownBlink": {
"text2": [
"Упозорење",
"при хлађењу"
],
"desc": "Приказ температуре трепће приликом хлађења докле год је врх и даље врућ."
},
"TemperatureCalibration": {
"text2": [
"Калибрација",
"температуре"
],
"desc": "Калибрисање одступања температуре врха у односу на дршку."
},
"SettingsReset": {
"text2": [
"Фабричке",
"поставке"
],
"desc": "Враћање свих поставки на фабричке вредности."
},
"VoltageCalibration": {
"text2": [
"Калибрација",
"улазног напона"
],
"desc": "Калибрисање улазног напона. Подешава се на тастере; дуги притисак за крај."
},
"AdvancedSoldering": {
"text2": [
"Детаљи током",
"лемљења"
],
"desc": "Приказивање детаљних информација на екрану током лемљења."
},
"ScrollingSpeed": {
"text2": [
"Брзина",
"порука"
],
"desc": "Брзина кретања описних порука попут ове. <С=споро, Б=брзо>"
},
"TipModel": {
"text2": [
"Модел",
"врха"
],
"desc": "Одабир модела лемног врха."
},
"SimpleCalibrationMode": {
"text2": [
"Једноставна",
"калибрација"
],
"desc": "Једноставна калибрација кипућом водом."
},
"AdvancedCalibrationMode": {
"text2": [
"Напредна",
"калибрација"
],
"desc": "Напредна калибрација помоћу термопара."
},
"QCMaxVoltage": {
"text2": [
"Улазна",
"снага"
],
"desc": "Снага напајања у ватима."
},
"PowerLimit": {
"text2": [
"Power",
"Limit"
],
"desc": "Maximum power the iron can use <Watts>"
},
"ReverseButtonTempChange": {
"text2": [
"Key +-",
"reverse?"
],
"desc": "Reverse the tip temperature change buttons plus minus assignment."
},
"TempChangeShortStep": {
"text2": [
"Temp change",
"short?"
],
"desc": "Temperature change steps on short button press!"
},
"TempChangeLongStep": {
"text2": [
"Temp change",
"long?"
],
"desc": "Temperature change steps on long button press!"
},
"PowerPulsePower": {
"text2": [
"Power",
"Pulse W"
],
"desc": "Keep awake pulse power intensity"
},
"TipGain": {
"text2": [
"Modify",
"tip gain"
],
"desc": "Tip gain"
},
"HallEffSensitivity": {
"text2": [
"Hall Eff",
"Sensitivity"
],
"desc": "Sensitivity of the Hall effect sensor in detecting sleep <O=Off,L=Low,M=Medium,H=High>"
},
"LockingMode": {
"text2": [
"Allow buttons",
"locking"
],
"desc": "When soldering, long press on both buttons lock them <D=Disable, B=Boost only, F=Full locking>"
}
}
}

View File

@@ -1,279 +0,0 @@
{
"languageCode": "SR_LATN",
"languageLocalName": "Srpski",
"cyrillicGlyphs": false,
"messages": {
"SettingsCalibrationDone": "Kalibracija gotova",
"SettingsCalibrationWarning": "Proverite da li je vrh ohlađen na sobnu temperaturu pre nego što nastavite",
"SettingsResetWarning": "Da li zaista želite da vratite postavke na fabričke vrednosti?",
"UVLOWarningString": "NIZ.NAP.",
"UndervoltageString": "PRENIZAK NAPON",
"InputVoltageString": "Ul. napon: ",
"WarningTipTempString": "Temp. vrha: ",
"BadTipString": "LOŠ VRH",
"SleepingSimpleString": "Zzz",
"SleepingAdvancedString": "Spavanje...",
"WarningSimpleString": "VRUĆ",
"WarningAdvancedString": "! OPREZ, VRUĆE !",
"SleepingTipAdvancedString": "Vrh:",
"IdleTipString": "Vrh:",
"IdleSetString": " / ",
"TipDisconnectedString": "VRH NIJE SPOJEN",
"SolderingAdvancedPowerPrompt": "Snaga: ",
"OffString": "Isk",
"ResetOKMessage": "Reset OK",
"YourGainMessage": "Your gain:",
"SettingsResetMessage": "Settings were\nreset!",
"NoAccelerometerMessage": "No accelerometer\ndetected!",
"NoPowerDeliveryMessage": "No USB-PD IC\ndetected!",
"LockingKeysString": " LOCKED",
"UnlockingKeysString": "UNLOCKED",
"WarningKeysLockedString": "!LOCKED!"
},
"characters": {
"SettingRightChar": "D",
"SettingLeftChar": "L",
"SettingAutoChar": "A",
"SettingFastChar": "B",
"SettingSlowChar": "S",
"SettingStartSolderingChar": "T",
"SettingStartSleepChar": "S",
"SettingStartSleepOffChar": "O",
"SettingStartNoneChar": "F",
"SettingSensitivityOff": "O",
"SettingSensitivityLow": "L",
"SettingSensitivityMedium": "M",
"SettingSensitivityHigh": "H",
"SettingLockDisableChar": "D",
"SettingLockBoostChar": "B",
"SettingLockFullChar": "F"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Postavke",
"lemljenja"
],
"desc": "Postavke režima lemljenja."
},
"PowerSavingMenu": {
"text2": [
"Ušteda",
"energije"
],
"desc": "Postavke režima mirovanja."
},
"UIMenu": {
"text2": [
"Korisničko",
"sučelje"
],
"desc": "Postavke korisničkog sučelja."
},
"AdvancedMenu": {
"text2": [
"Napredne",
"postavke"
],
"desc": "Napredne postavke."
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Vrsta",
"napajanja"
],
"desc": "Tip napajanja; određuje najniži radni napon. <DC=adapter (10V), S=baterija (3,3V po ćeliji)>"
},
"SleepTemperature": {
"text2": [
"Temp.",
"spavanja"
],
"desc": "Temperatura na koju se spušta lemilica nakon određenog vremena mirovanja. <C/F>"
},
"SleepTimeout": {
"text2": [
"Vreme do",
"spavanja"
],
"desc": "Vreme mirovanja nakon koga lemilica spušta temperaturu. <M=minuti, S=sekunde>"
},
"ShutdownTimeout": {
"text2": [
"Vreme do",
"gašenja"
],
"desc": "Vreme mirovanja nakon koga se lemilica gasi. <M=minuti>"
},
"MotionSensitivity": {
"text2": [
"Osetljivost",
"na pokret"
],
"desc": "Osetljivost senzora pokreta. <0=isključeno, 1=najmanje osetljivo, 9=najosetljivije>"
},
"TemperatureUnit": {
"text2": [
"Jedinica",
"temperature"
],
"desc": "Jedinice u kojima se prikazuje temperatura. <C=celzijus, F=farenhajt>"
},
"AdvancedIdle": {
"text2": [
"Detalji tokom",
"mirovanja"
],
"desc": "Prikazivanje detaljnih informacija na ekranu tokom mirovanja."
},
"DisplayRotation": {
"text2": [
"Orijentacija",
"ekrana"
],
"desc": "Kako je okrenut ekran. <A=automatski, L=za levoruke, D=za desnoruke>"
},
"BoostTemperature": {
"text2": [
"Temp.",
"pojačanja"
],
"desc": "Temperatura vrha lemilice u toku pojačanja."
},
"AutoStart": {
"text2": [
"Vrući",
"start"
],
"desc": "Lemilica odmah po pokretanju prelazi u režim lemljenja i greje se."
},
"CooldownBlink": {
"text2": [
"Upozorenje",
"pri hlađenju"
],
"desc": "Prikaz temperature trepće prilikom hlađenja dokle god je vrh i dalje vruć."
},
"TemperatureCalibration": {
"text2": [
"Kalibracija",
"temperature"
],
"desc": "Kalibrisanje odstupanja temperature vrha u odnosu na dršku."
},
"SettingsReset": {
"text2": [
"Fabričke",
"postavke"
],
"desc": "Vraćanje svih postavki na fabričke vrednosti."
},
"VoltageCalibration": {
"text2": [
"Kalibracija",
"ulaznog napona"
],
"desc": "Kalibrisanje ulaznog napona. Podešava se na tastere; dugi pritisak za kraj."
},
"AdvancedSoldering": {
"text2": [
"Detalji tokom",
"lemljenja"
],
"desc": "Prikazivanje detaljnih informacija na ekranu tokom lemljenja."
},
"ScrollingSpeed": {
"text2": [
"Brzina",
"poruka"
],
"desc": "Brzina kretanja opisnih poruka poput ove. <S=sporo, B=brzo>"
},
"TipModel": {
"text2": [
"Model",
"vrha"
],
"desc": "Odabir modela lemnog vrha."
},
"SimpleCalibrationMode": {
"text2": [
"Jednostavna",
"kalibracija"
],
"desc": "Jednostavna kalibracija kipućom vodom."
},
"AdvancedCalibrationMode": {
"text2": [
"Napredna",
"kalibracija"
],
"desc": "Napredna kalibracija pomoću termopara."
},
"QCMaxVoltage": {
"text2": [
"Ulazna",
"snaga"
],
"desc": "Snaga napajanja u vatima."
},
"PowerLimit": {
"text2": [
"Power",
"Limit"
],
"desc": "Maximum power the iron can use <Watts>"
},
"ReverseButtonTempChange": {
"text2": [
"Key +-",
"reverse?"
],
"desc": "Reverse the tip temperature change buttons plus minus assignment."
},
"TempChangeShortStep": {
"text2": [
"Temp change",
"short?"
],
"desc": "Temperature change steps on short button press!"
},
"TempChangeLongStep": {
"text2": [
"Temp change",
"long?"
],
"desc": "Temperature change steps on long button press!"
},
"PowerPulsePower": {
"text2": [
"Power",
"Pulse W"
],
"desc": "Keep awake pulse power intensity"
},
"TipGain": {
"text2": [
"Modify",
"tip gain"
],
"desc": "Tip gain"
},
"HallEffSensitivity": {
"text2": [
"Hall Eff",
"Sensitivity"
],
"desc": "Sensitivity of the Hall effect sensor in detecting sleep <O=Off,L=Low,M=Medium,H=High>"
},
"LockingMode": {
"text2": [
"Allow buttons",
"locking"
],
"desc": "When soldering, long press on both buttons lock them <D=Disable, B=Boost only, F=Full locking>"
}
}
}

View File

@@ -1,279 +0,0 @@
{
"languageCode": "SV",
"languageLocalName": "Svenska",
"cyrillicGlyphs": false,
"messages": {
"SettingsCalibrationDone": "Calibration done!",
"SettingsCalibrationWarning": "Please ensure the tip is at room temperature before continuing!",
"SettingsResetWarning": "Are you sure you want to reset settings to default values?",
"UVLOWarningString": "DC LÅG",
"UndervoltageString": "Underspänning",
"InputVoltageString": "Inspän. V: ",
"WarningTipTempString": "Spetstemp: ",
"BadTipString": "SPETSFEL",
"SleepingSimpleString": "Zzzz",
"SleepingAdvancedString": "Viloläge...",
"WarningSimpleString": "VARM",
"WarningAdvancedString": "!! SPETS VARM !!",
"SleepingTipAdvancedString": "Spets:",
"IdleTipString": "Spets:",
"IdleSetString": " Ange:",
"TipDisconnectedString": "SPETS URTAGEN",
"SolderingAdvancedPowerPrompt": "Ström: ",
"OffString": "Av",
"ResetOKMessage": "Reset OK",
"YourGainMessage": "Your gain:",
"SettingsResetMessage": "Settings were\nreset!",
"NoAccelerometerMessage": "No accelerometer\ndetected!",
"NoPowerDeliveryMessage": "No USB-PD IC\ndetected!",
"LockingKeysString": " LOCKED",
"UnlockingKeysString": "UNLOCKED",
"WarningKeysLockedString": "!LOCKED!"
},
"characters": {
"SettingRightChar": "H",
"SettingLeftChar": "V",
"SettingAutoChar": "A",
"SettingFastChar": "S",
"SettingSlowChar": "L",
"SettingStartSolderingChar": "T",
"SettingStartSleepChar": "S",
"SettingStartSleepOffChar": "O",
"SettingStartNoneChar": "F",
"SettingSensitivityOff": "O",
"SettingSensitivityLow": "L",
"SettingSensitivityMedium": "M",
"SettingSensitivityHigh": "H",
"SettingLockDisableChar": "D",
"SettingLockBoostChar": "B",
"SettingLockFullChar": "F"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Lödnings-",
"inställningar"
],
"desc": "Lödningsinställningar"
},
"PowerSavingMenu": {
"text2": [
"Vilo-",
"lägen"
],
"desc": "Viloläges-inställningar"
},
"UIMenu": {
"text2": [
"Användar-",
"gränssnitt"
],
"desc": "Användargränssnitts-inställningar"
},
"AdvancedMenu": {
"text2": [
"Avancerade",
"alternativ"
],
"desc": "Avancerade alternativ"
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Ström-",
"källa"
],
"desc": "Strömkälla. Anger lägsta spänning. <DC 10V> <S 3.3V per cell>"
},
"SleepTemperature": {
"text2": [
"Vilo-",
"temp"
],
"desc": "Vilotemperatur <C>"
},
"SleepTimeout": {
"text2": [
"Vilo-",
"timeout"
],
"desc": "Vilo-timeout <Minuter/Seconder>"
},
"ShutdownTimeout": {
"text2": [
"Avstängn.",
"timeout"
],
"desc": "Avstängnings-timeout <Minuter>"
},
"MotionSensitivity": {
"text2": [
"Rörelse-",
"känslighet"
],
"desc": "Rörelsekänslighet <0.Av 1.minst känslig 9.mest känslig>"
},
"TemperatureUnit": {
"text2": [
"Temperatur-",
"enheter"
],
"desc": "Temperaturenhet <C=Celsius F=Fahrenheit>"
},
"AdvancedIdle": {
"text2": [
"Detaljerad",
"vid inaktiv"
],
"desc": "Visa detaljerad information i mindre typsnitt när inaktiv."
},
"DisplayRotation": {
"text2": [
"Visnings",
"läge"
],
"desc": "Visningsläge <A. Automatisk V. Vänsterhänt H. Högerhänt>"
},
"BoostTemperature": {
"text2": [
"Turbo-",
"temp"
],
"desc": "Temperatur i \"turbo\"-läge"
},
"AutoStart": {
"text2": [
"Auto",
"start"
],
"desc": "Startar automatiskt lödpennan vid uppstart. T=Lödning, S=Viloläge, F=Av"
},
"CooldownBlink": {
"text2": [
"Nedkylnings-",
"blink"
],
"desc": "Blinka temperaturen medan spetsen kyls av och fortfarande är varm."
},
"TemperatureCalibration": {
"text2": [
"Kalibrera",
"temperatur?"
],
"desc": "Kalibrera spets-kompensation."
},
"SettingsReset": {
"text2": [
"Fabriks-",
"inställ?"
],
"desc": "Återställ alla inställningar"
},
"VoltageCalibration": {
"text2": [
"Kalibrera",
"inspänning?"
],
"desc": "Inspänningskalibrering. Knapparna justerar, håll inne för avslut"
},
"AdvancedSoldering": {
"text2": [
"Detaljerad",
"lödng.skärm"
],
"desc": "Visa detaljerad information vid lödning"
},
"ScrollingSpeed": {
"text2": [
"Beskrivning",
"rullhast."
],
"desc": "Hastighet som den här texten rullar i"
},
"TipModel": {
"text2": [
"Tip",
"Model"
],
"desc": "Tip Model selection"
},
"SimpleCalibrationMode": {
"text2": [
"Simple",
"Calibration"
],
"desc": "Simple Calibration using Hot water"
},
"AdvancedCalibrationMode": {
"text2": [
"Advanced",
"Calibration"
],
"desc": "Advanced calibration using thermocouple on the tip"
},
"QCMaxVoltage": {
"text2": [
"Power",
"Wattage"
],
"desc": "Power Wattage of the power adapter used"
},
"PowerLimit": {
"text2": [
"Power",
"Limit"
],
"desc": "Maximum power the iron can use <Watts>"
},
"ReverseButtonTempChange": {
"text2": [
"Key +-",
"reverse?"
],
"desc": "Reverse the tip temperature change buttons plus minus assignment."
},
"TempChangeShortStep": {
"text2": [
"Temp change",
"short?"
],
"desc": "Temperature change steps on short button press!"
},
"TempChangeLongStep": {
"text2": [
"Temp change",
"long?"
],
"desc": "Temperature change steps on long button press!"
},
"PowerPulsePower": {
"text2": [
"Power",
"Pulse W"
],
"desc": "Keep awake pulse power intensity"
},
"TipGain": {
"text2": [
"Modify",
"tip gain"
],
"desc": "Tip gain"
},
"HallEffSensitivity": {
"text2": [
"Hall Eff",
"Sensitivity"
],
"desc": "Sensitivity of the Hall effect sensor in detecting sleep <O=Off,L=Low,M=Medium,H=High>"
},
"LockingMode": {
"text2": [
"Allow buttons",
"locking"
],
"desc": "When soldering, long press on both buttons lock them <D=Disable, B=Boost only, F=Full locking>"
}
}
}

View File

@@ -1,297 +0,0 @@
{
"languageCode": "TR",
"languageLocalName": "Türkçe",
"cyrillicGlyphs": false,
"messages": {
"SettingsCalibrationDone": "Kalibrasyon tamamlandı!",
"SettingsCalibrationWarning": "Lütfen devam etmeden önce ucun oda sıcaklığında olduğunu garantiye alın!",
"SettingsResetWarning": "Ayarları varsayılan değerlere sıfırlamak istediğinizden emin misiniz?",
"UVLOWarningString": "Güç Az",
"UndervoltageString": "Düşük Voltaj",
"InputVoltageString": "Giriş V: ",
"WarningTipTempString": "Uç Sıcaklığı: ",
"BadTipString": "KÖTÜ UÇ",
"SleepingSimpleString": "Zzzz",
"SleepingAdvancedString": "Bekleme Modu ...",
"WarningSimpleString": "SICAK!",
"WarningAdvancedString": "UYARI! UÇ SICAK!",
"SleepingTipAdvancedString": "Uç:",
"IdleTipString": "Uç:",
"IdleSetString": " Ayarla:",
"TipDisconnectedString": "UÇ ÇIKARILDI",
"SolderingAdvancedPowerPrompt": "Güç: ",
"OffString": "Kapalı",
"ResetOKMessage": "Sıfırlama Tamam",
"YourGainMessage": "Kazancınız:",
"SettingsResetMessage": "Ayarlar Sıfırlandı",
"NoAccelerometerMessage": "No accelerometer\ndetected!",
"NoPowerDeliveryMessage": "No USB-PD IC\ndetected!"
},
"characters": {
"SettingRightChar": "R",
"SettingLeftChar": "L",
"SettingAutoChar": "A",
"SettingFastChar": "F",
"SettingSlowChar": "S",
"SettingStartSolderingChar": "T",
"SettingStartSleepChar": "S",
"SettingStartSleepOffChar": "O",
"SettingStartNoneChar": "F",
"SettingSensitivityOff": "O",
"SettingSensitivityLow": "L",
"SettingSensitivityMedium": "M",
"SettingSensitivityHigh": "H",
"SettingLockDisableChar": "D",
"SettingLockBoostChar": "B",
"SettingLockFullChar": "F"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Lehimleme",
"Ayarları"
],
"desc": "Lehimleme Ayarları"
},
"PowerSavingMenu": {
"text2": [
"Uyku",
"Modları"
],
"desc": "Güç Tasarrufu Ayarları"
},
"UIMenu": {
"text2": [
"Kullanıcı",
"Arayüzü"
],
"desc": "Kullanıcı Arayüzü Ayarları"
},
"AdvancedMenu": {
"text2": [
"Gelişmiş",
"Ayarlar"
],
"desc": "Gelişmiş Ayarlar"
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"GÇKYN",
""
],
"desc": "\"Güç Kaynağı\". En düşük çalışma voltajını ayarlar. <DC 10V> <S 3.3V hücre başına>"
},
"SleepTemperature": {
"text2": [
"BKSC",
""
],
"desc": "Bekleme Modu Sıcaklığı <C>"
},
"SleepTimeout": {
"text2": [
"BMZA",
""
],
"desc": "Bekleme Modu Zaman Aşımı <Dakika/Saniye>"
},
"ShutdownTimeout": {
"text2": [
"KPTZA",
""
],
"desc": "Kapatma Zaman Aşımı <Dakika>"
},
"MotionSensitivity": {
"text2": [
"HARHAS",
""
],
"desc": "Hareket Hassasiyeti <0.Kapalı 1.En az duyarlı 9.En duyarlı>"
},
"TemperatureUnit": {
"text2": [
"SCKBRM",
""
],
"desc": "Sıcaklık Birimi <C=Celsius F=Fahrenheit>"
},
"AdvancedIdle": {
"text2": [
"AYRBİL",
""
],
"desc": "Boş ekranda ayrıntılı bilgileri daha küçük bir yazı tipi ile göster."
},
"DisplayRotation": {
"text2": [
"GRNYÖN",
""
],
"desc": "Görüntü Yönlendirme <A. Otomatik L. Solak R. Sağlak>"
},
"BoostEnabled": {
"text2": [
"YÜKPER",
""
],
"desc": "Lehimleme yaparken ön tuşa basmak anlık sıcaklık yükselişi sağlar. (450C)"
},
"BoostTemperature": {
"text2": [
"YKSC",
""
],
"desc": "Yüksek Performans Modu Sıcaklığı"
},
"AutoStart": {
"text2": [
"OTOBAŞ",
""
],
"desc": "Güç verildiğinde otomatik olarak lehimleme modunda başlat. T=Lehimleme Modu, S= Uyku Modu,F=Kapalı"
},
"CooldownBlink": {
"text2": [
"SĞGÖST",
""
],
"desc": "Soğutma ekranında uç hala sıcakken derece gösterilsin."
},
"TemperatureCalibration": {
"text2": [
"SCK KAL?",
""
],
"desc": "Ucu kalibre et."
},
"SettingsReset": {
"text2": [
"SIFIRLA?",
""
],
"desc": "Bütün ayarları sıfırlar"
},
"VoltageCalibration": {
"text2": [
"VOL KAL?",
""
],
"desc": "Voltaj Girişi Kalibrasyonu. Düğmeler ayarlar, çıkmak için uzun bas."
},
"AdvancedSoldering": {
"text2": [
"GELLHM",
""
],
"desc": "\"Gelişmiş Lehimleme\" Lehimleme yaparken detaylı bilgi göster"
},
"ScrollingSpeed": {
"text2": [
"YZKYHZ",
""
],
"desc": "Bu yazının kayma hızı S= Yavaş, F= Hızlı"
},
"TipModel": {
"text2": [
"Uç",
"Modeli"
],
"desc": "Uç Modeli seçimi"
},
"SimpleCalibrationMode": {
"text2": [
"Basit",
"Kalibrasyon"
],
"desc": "Sıcak su kullanarak basit kalibrasyon"
},
"AdvancedCalibrationMode": {
"text2": [
"Gelişmiş",
"Kalibrasyon"
],
"desc": "Uçtaki ısı sensörünü kullanarak gelişmiş kalibrasyon"
},
"QCMaxVoltage": {
"text2": [
"QC",
"Voltage"
],
"desc": "Desired max QC Voltage negotiated for"
},
"PowerInput": {
"text2": [
"Güç",
"Miktarı(W)"
],
"desc": "Kullanılan adaptörün watt biriminden güç miktarı"
},
"PowerLimitEnable": {
"text2": [
"P Limit",
"Enable"
],
"desc": "Güç sınırlamayı aç"
},
"PowerLimit": {
"text2": [
"Power",
"Limit"
],
"desc": "Havyanın kullanacağı en yüksek güç <Watts>"
},
"ReverseButtonTempChange": {
"text2": [
"Key +-",
"reverse?"
],
"desc": "\"Düğme Yerleri Rotasyonu\" Sıcaklık ayar düğmelerinin yerini değiştirin"
},
"TempChangeShortStep": {
"text2": [
"Temp change",
"short?"
],
"desc": "Kısa basışlardaki sıcaklık derecesi atlama oranı"
},
"TempChangeLongStep": {
"text2": [
"Temp change",
"long?"
],
"desc": "Uzun başışlardaki sıcaklık derecesi atlama oranı"
},
"PowerPulsePower": {
"text2": [
"Power",
"Pulse W"
],
"desc": "Güç girişi voltajı ölçüm yoğunluğunu sık tut."
},
"TipGain": {
"text2": [
"Modify",
"tip gain"
],
"desc": "Kazancınız"
},
"HallEffSensitivity": {
"text2": [
"Hall Eff",
"Sensitivity"
],
"desc": "Sensitivity of the Hall effect sensor in detecting sleep <O=Off,L=Low,M=Medium,H=High>"
},
"LockingMode": {
"text2": [
"Allow buttons",
"locking"
],
"desc": "When soldering, long press on both buttons lock them <D=Disable, B=Boost only, F=Full locking>"
}
}
}

View File

@@ -1,279 +0,0 @@
{
"languageCode": "UK",
"languageLocalName": "Українська",
"cyrillicGlyphs": true,
"messages": {
"SettingsCalibrationDone": "Калібрування виконане!",
"SettingsCalibrationWarning": "Переконайтеся, що жало охололо до кімнатної температури, перш ніж продовжувати!",
"SettingsResetWarning": "Ви дійсно хочете скинути налаштування до значень за замовчуванням? <A - Так, В - Ні>",
"UVLOWarningString": "АККУМ--",
"UndervoltageString": "Низ. напруга",
"InputVoltageString": "Жив.(B): ",
"WarningTipTempString": "Жало t°: ",
"BadTipString": "ЖАЛО--",
"SleepingSimpleString": "ZzZzz",
"SleepingAdvancedString": "Очікування...",
"WarningSimpleString": "ГАРЯЧЕ!",
"WarningAdvancedString": "!!! ГАРЯЧЕ ЖАЛО !!!",
"SleepingTipAdvancedString": "Жало:",
"IdleTipString": "Жало:",
"IdleSetString": " ->",
"TipDisconnectedString": "Жало вимкнено!",
"SolderingAdvancedPowerPrompt": "Живлення: ",
"OffString": "Вимк",
"ResetOKMessage": "Скидання OK",
"YourGainMessage": "Приріст:",
"SettingsResetMessage": "Налаштування скинуті!",
"NoAccelerometerMessage": "Акселерометр\nне виявлено!",
"NoPowerDeliveryMessage": "USB-PD IC\nне виявлено!",
"LockingKeysString": " ЗАБЛОКОВАНО",
"UnlockingKeysString": "РОЗБЛОКОВАНО",
"WarningKeysLockedString": "!ЗАБЛОКОВАНО!"
},
"characters": {
"SettingRightChar": "П",
"SettingLeftChar": "Л",
"SettingAutoChar": "A",
"SettingFastChar": "Ш",
"SettingSlowChar": "П",
"SettingStartSolderingChar": "П",
"SettingStartSleepChar": "О",
"SettingStartSleepOffChar": "К",
"SettingStartNoneChar": "В",
"SettingSensitivityOff": "В",
"SettingSensitivityLow": "Н",
"SettingSensitivityMedium": "С",
"SettingSensitivityHigh": "М",
"SettingLockDisableChar": "В",
"SettingLockBoostChar": "Т",
"SettingLockFullChar": "П"
},
"menuGroups": {
"SolderingMenu": {
"text2": [
"Параметри",
"пайки"
],
"desc": "Налаштування для режиму пайки. Діють при включеному жалі."
},
"PowerSavingMenu": {
"text2": [
"Режим",
"сну"
],
"desc": "Налаштування при бездіяльності. Корисно що б не обпектися і з часом не спалити житло."
},
"UIMenu": {
"text2": [
"Інтерфейс",
""
],
"desc": "Параметри користувальницького інтерфейсу."
},
"AdvancedMenu": {
"text2": [
"Додаткові",
"параметри"
],
"desc": "Розширені налаштування. Додаткові зручності."
}
},
"menuOptions": {
"DCInCutoff": {
"text2": [
"Джерело",
"живлення"
],
"desc": "Встановлення напруги відключення. <DC - 10V, 3S - 9.9V, 4S - 13.2V, 5S - 16.5V, 6S - 19.8V>"
},
"SleepTemperature": {
"text2": [
"Темпер.",
"сну"
],
"desc": "Температура режиму очікування <C°/F°>"
},
"SleepTimeout": {
"text2": [
"Тайм-аут",
"сну"
],
"desc": "Час до переходу в режим очікування <Хвилини/Секунди>"
},
"ShutdownTimeout": {
"text2": [
"Часу до",
"вимкнення"
],
"desc": "Час до відключення <Хвилини>"
},
"MotionSensitivity": {
"text2": [
"Чутл. сенсо-",
"ру руху"
],
"desc": "Акселерометр <0 - Вимк. 1 - мін. чутливості 9 - макс. чутливості>"
},
"TemperatureUnit": {
"text2": [
"Формат темпе-",
"ратури(C°/F°)"
],
"desc": "Одиниця виміру температури <C - Цельсій, F - Фаренгейт>"
},
"AdvancedIdle": {
"text2": [
"Детальний ре-",
"жим очікуван."
],
"desc": "Показувати детальну інформацію маленьким шрифтом на домашньому екрані"
},
"DisplayRotation": {
"text2": [
"Автоповорот",
"екрану"
],
"desc": "Орієнтація дисплея <A - Автоповорот, Л - Лівша, П - Правша>"
},
"BoostTemperature": {
"text2": [
"Темпер.",
"Турбо"
],
"desc": "Температура в Турбо-режимі"
},
"AutoStart": {
"text2": [
"Гарячий",
"старт"
],
"desc": "Режим з яким запускається паяльник при подачі живлення <П=Пайка, О=Очікування, К=Очікування при кімн. темп., В=Вимк.>"
},
"CooldownBlink": {
"text2": [
"Показ t° при",
"охолодж."
],
"desc": "Показувати температуру на екрані охолодження, поки жало залишається гарячим, при цьому екран моргає"
},
"TemperatureCalibration": {
"text2": [
"Калібровка",
"температури"
],
"desc": "Калібрування температурного датчика."
},
"SettingsReset": {
"text2": [
"Скинути всі",
"налаштування?"
],
"desc": "Скидання всіх параметрів до стандартних значень."
},
"VoltageCalibration": {
"text2": [
"Калібрування",
"напруги"
],
"desc": "Калібрування напруги входу. Налаштувати кнопками, натиснути і утримати щоб завершити."
},
"AdvancedSoldering": {
"text2": [
"Детальний ре-",
"жим пайки"
],
"desc": "Показувати детальну інформацію при пайці."
},
"ScrollingSpeed": {
"text2": [
"Швидкість",
"тексту"
],
"desc": "Швидкість прокрутки тексту <П=повільно, Ш=швидко>"
},
"TipModel": {
"text2": [
"Модель",
"Жало"
],
"desc": "Вибір моделі жала"
},
"SimpleCalibrationMode": {
"text2": [
"Просте",
"Калібрування"
],
"desc": "Просте калібрування з використанням гарячої води"
},
"AdvancedCalibrationMode": {
"text2": [
"Детальне",
"Калібрування"
],
"desc": "Калібрування за допомогою термопари"
},
"QCMaxVoltage": {
"text2": [
"Потужність",
"дж. живл."
],
"desc": "Потужність джерела живлення в Ватах"
},
"PowerLimit": {
"text2": [
"Макс.",
"потуж."
],
"desc": "Макс. потужність, яку може використовувати паяльник <Ват>"
},
"ReverseButtonTempChange": {
"text2": [
"Інвертувати",
"кнопки +-?"
],
"desc": "Інвертувати кнопки зміни температури."
},
"TempChangeShortStep": {
"text2": [
"Зм. темп.",
"коротко?"
],
"desc": "Змінювати температуру при короткому натисканні!"
},
"TempChangeLongStep": {
"text2": [
"Зм. темп.",
"довго?"
],
"desc": "Змінювати температуру при довгому натисканні!"
},
"PowerPulsePower": {
"text2": [
"Пульс.",
"Навантаж."
],
"desc": "Деякі PowerBank-и з часом вимк. живлення, якщо пристрій споживає дуже мало енергії (це потрібно щоб паяльник не вимкнувся з часом)"
},
"TipGain": {
"text2": [
"Modify",
"tip gain"
],
"desc": "Tip gain"
},
"HallEffSensitivity": {
"text2": [
"Чутливість",
"Ефекту Холла"
],
"desc": "Чутливість датчика ефекту Холла при виявленні сну <В=Вимк,Н=Низький,С=Середній,М=Макс>"
},
"LockingMode": {
"text2": [
"Дозволити",
"блокування кнопок"
],
"desc": "Під час пайки тривале натискання обох кнопок заблокує їх <В=Вимк, Т=Тільки турбо, П=Повне>"
}
}
}

View File

@@ -1,110 +0,0 @@
* {
font-family: sans-serif;
}
h1 {
color: #66A;
}
h1 span {
color: #000;
}
table.data, div.data {
border: 1px solid #888;
width: 100%;
}
div.value {
margin: 2px;
}
.header input {
width: 50% !important;
}
input.short {
width: 150px !important;
font-family: monospace;
}
.header .selected {
display: block;
font-family: monospace;
}
.stringId {
font-family: monospace;
font-weight: bold;
}
.label {
background-color: #ddf;
padding: 0.5em;
width: 20%;
color: #66A;
}
.value {
background-color: #eef;
}
.value .label {
width: 99%;
font-weight: bold;
}
td input {
width: 99%;
}
input.unchanged, input.empty, .unchanged input, .empty input {
background-color: #ffc;
}
input.invalid, .invalid input {
background-color: #f99;
}
.ref, .tran input {
font-family: monospace;
}
.ref::before, .ref::after {
color: #99F;
font-family: sans-serif;
content: "\"";
}
.note {
color : #66A;
font-style: italic;
}
div.constraint {
float: right;
display: inline-block;
font-family: monospace;
color: #66A;
}
.invalid .constraint {
color: #f00;
}
.value {
font-size: smaller;
}
.hidden {
display: none;
}
.footer {
margin-top: 0.5em;
margin-bottom: 0.5em;
}
.saved {
background-color: #ddd;
}

View File

@@ -1,68 +0,0 @@
function saveToFile(txt, filename){
var a = document.createElement('a');
a.setAttribute("style", "display: none");
document.body.appendChild(a);
a.setAttribute('href', 'data:application/json;charset=utf-8,'+encodeURIComponent(txt));
a.setAttribute('download', filename);
a.click();
document.body.removeChild(a);
}
function saveJSON(obj, filename){
var txt = JSON.stringify(obj,"", "\t");
saveToFile(txt, filename);
}
function showJSON(obj, filename) {
var txt = JSON.stringify(obj,"", "\t");
var a = window.open("", "_blank").document;
a.write("<PLAINTEXT>");
a.write(txt);
a.title = filename;
}
function startsWith(str, prefix) {
return str.substring(0, prefix.length) == prefix;
}
function endsWith(str, suffix) {
return str.substring(str.length-suffix.length) == suffix;
}
function isDefined(obj) {
return typeof obj !== 'undefined';
}
function isNumber(obj) {
return isDefined(obj) && obj != null;
}
function isDefinedNN(obj) {
return isDefined(obj) && obj != null;
}
function padLeft(str, chr, maxLen) {
str = str.toString();
return str.length < maxLen ? padLeft(chr + str, chr, maxLen) : str;
}
// sourceArray contains a list of objects that have a property "id". This methods makes a map using the "id" as a key, and the owning object as a value.
function copyArrayToMap(sourceArray, map) {
if (!isDefined(map)) {
map = {};
}
var len = sourceArray.length;
for (var i = 0; i<len; i++) {
var v = sourceArray[i];
map[v.id] = v;
}
return map;
}
function checkTranslationFile(fileName) {
return startsWith(fileName, "translation_") && endsWith(fileName, ".json") || confirm("Are you sure that you want to use "+fileName+" instead of a translation_*.json file?");
}
function xunescape(str) {
return str.replace(/\\/g, "");
}

View File

@@ -1,351 +0,0 @@
var def =
{
"messages": [
{
"id": "SettingsCalibrationDone"
},
{
"id": "SettingsCalibrationWarning"
},
{
"id": "SettingsResetWarning"
},
{
"id": "UVLOWarningString",
"maxLen": 8
},
{
"id": "UndervoltageString",
"maxLen": 16
},
{
"id": "InputVoltageString",
"maxLen": 11,
"note": "Preferably end with a space"
},
{
"id": "WarningTipTempString",
"maxLen": 12,
"note": "Preferably end with a space"
},
{
"id": "BadTipString",
"maxLen": 8
},
{
"id": "SleepingSimpleString",
"maxLen": 4
},
{
"id": "SleepingAdvancedString",
"maxLen": 16
},
{
"id": "WarningSimpleString",
"maxLen": 4
},
{
"id": "WarningAdvancedString",
"maxLen": 16
},
{
"id": "SleepingTipAdvancedString",
"maxLen": 6
},
{
"id": "IdleTipString",
"lenSum":
{
"fields": ["IdleTipString", "IdleSetString"],
"maxLen": 10
}
},
{
"id": "IdleSetString",
"lenSum":
{
"fields": ["IdleTipString", "IdleSetString"],
"maxLen": 10
},
"note": "Preferably start with a space"
},
{
"id": "TipDisconnectedString",
"maxLen": 16
},
{
"id": "SolderingAdvancedPowerPrompt",
"maxLen": null
},
{
"id": "OffString",
"maxLen": 3
},
{
"id": "ResetOKMessage",
"maxLen": 8
},
{
"id": "YourGainMessage",
"maxLen": 8,
"default": "Your Gain"
},
{
"id": "SettingsResetMessage",
"maxLen": 16,
"default": "Settings were\nreset!"
},
{
"id": "NoAccelerometerMessage",
"maxLen": 16,
"default": "No accelerometer\ndetected!"
},
{
"id": "NoPowerDeliveryMessage",
"maxLen": 16,
"default": "No USB-PD IC\ndetected!"
},
{
"id": "LockingKeysString",
"maxLen": 8,
"default": "LOCKING"
},
{
"id": "UnlockingKeysString",
"maxLen": 8,
"default": "UNLOCK"
},
{
"id": "WarningKeysLockedString",
"maxLen": 8,
"default": "LOCKED!"
}
],
"characters": [
{
"id": "SettingRightChar",
"len": 1
},
{
"id": "SettingLeftChar",
"len": 1
},
{
"id": "SettingAutoChar",
"len": 1
},
{
"id": "SettingFastChar",
"len": 1
},
{
"id": "SettingSlowChar",
"len": 1
},
{
"id": "SettingStartSolderingChar",
"len": 1
},
{
"id": "SettingStartSleepChar",
"len": 1
},
{
"id": "SettingStartSleepOffChar",
"len": 1
},
{
"id": "SettingStartNoneChar",
"len": 1
},
{
"id": "SettingSensitivityOff",
"len": 1
},
{
"id": "SettingSensitivityLow",
"len": 1
},
{
"id": "SettingSensitivityMedium",
"len": 1
},
{
"id": "SettingSensitivityHigh",
"len": 1
}, {
"id": "SettingLockDisableChar",
"len": 1,
"default": "D"
},
{
"id": "SettingLockBoostChar",
"len": 1,
"default": "B"
},
{
"id": "SettingLockFullChar",
"len": 1,
"default": "F"
}
],
"menuGroups": [
{
"id": "SolderingMenu",
"maxLen": 11
},
{
"id": "PowerSavingMenu",
"maxLen": 11
},
{
"id": "UIMenu",
"maxLen": 11
},
{
"id": "AdvancedMenu",
"maxLen": 11
}
],
"menuOptions": [
{
"id": "DCInCutoff",
"maxLen": 5,
"maxLen2": 11
},
{
"id": "SleepTemperature",
"maxLen": 4,
"maxLen2": 9
},
{
"id": "SleepTimeout",
"maxLen": 4,
"maxLen2": 9
},
{
"id": "ShutdownTimeout",
"maxLen": 5,
"maxLen2": 11
},
{
"id": "MotionSensitivity",
"maxLen": 6,
"maxLen2": 13
},
{
"id": "TemperatureUnit",
"maxLen": 6,
"maxLen2": 13
},
{
"id": "AdvancedIdle",
"maxLen": 6,
"maxLen2": 13
},
{
"id": "DisplayRotation",
"maxLen": 6,
"maxLen2": 13
},
{
"id": "BoostTemperature",
"maxLen": 4,
"maxLen2": 9
},
{
"id": "AutoStart",
"maxLen": 6,
"maxLen2": 13
},
{
"id": "CooldownBlink",
"maxLen": 6,
"maxLen2": 13
},
{
"id": "TemperatureCalibration",
"maxLen": 8,
"maxLen2": 16
},
{
"id": "SettingsReset",
"maxLen": 8,
"maxLen2": 16
},
{
"id": "VoltageCalibration",
"maxLen": 8,
"maxLen2": 16
},
{
"id": "AdvancedSoldering",
"maxLen": 6,
"maxLen2": 13
},
{
"id": "ScrollingSpeed",
"maxLen": 6,
"maxLen2": 11
},
{
"id": "TipModel",
"maxLen": 8,
"maxLen2": 16
},
{
"id": "SimpleCalibrationMode",
"maxLen": 8,
"maxLen2": 16
},
{
"id": "AdvancedCalibrationMode",
"maxLen": 8,
"maxLen2": 16
},
{
"id": "QCMaxVoltage",
"maxLen": 8,
"maxLen2": 16
},
{
"id": "PowerLimit",
"maxLen": 5,
"maxLen2": 11
},
{
"id": "ReverseButtonTempChange",
"maxLen": 6,
"maxLen2": 16
},
{
"id": "TempChangeShortStep",
"maxLen": 8,
"maxLen2": 16
},
{
"id": "TempChangeLongStep",
"maxLen": 6,
"maxLen2": 16
},
{
"id": "PowerPulsePower",
"maxLen": 6,
"maxLen2": 16
},
{
"id": "TipGain",
"maxLen": 6,
"maxLen2": 8
},
{
"id": "HallEffSensitivity",
"maxLen": 6,
"maxLen2": 8
}, {
"id": "LockingMode",
"maxLen": 6,
"maxLen2": 13
}
]
}

25
VERSION.txt Normal file
View File

@@ -0,0 +1,25 @@
v2.11 update (2015/08/03)
1, optimizing the key for delay;
2, optimized display processing
3, optimization of high-temperature alarm;
4, to increase the maximum voltage alarm;
5, the newly added screen protection, enter standby interface for some time, the screen will shut itself down, or move the iron screen button will automatically light up;
6, optimizing the movement decision
v2.10 update (2015/07/14)
1, temperature calibration is not refresh bug;
2, Cancel USB-powered thermometer into the function;
---Original --
v2.11 <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>(20150803)
1<EFBFBD><EFBFBD> <09>Ż<EFBFBD><C5BB><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ʱ<EFBFBD><CAB1><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
2<EFBFBD><EFBFBD> <09>Ż<EFBFBD><C5BB><EFBFBD>ʾ<EFBFBD><CABE><EFBFBD><EFBFBD>
3<EFBFBD><EFBFBD> <09>Ż<EFBFBD><C5BB><EFBFBD><EFBFBD>±<EFBFBD><C2B1><EFBFBD><EFBFBD><EFBFBD>
4<EFBFBD><EFBFBD> <09><><EFBFBD>߱<EFBFBD><DFB1><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ߵ<EFBFBD>ѹ<EFBFBD><D1B9>
5<EFBFBD><EFBFBD> <09>¼<EFBFBD><C2BC><EFBFBD><EFBFBD><EFBFBD>Ļ<EFBFBD><C4BB><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ܣ<EFBFBD><DCA3><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>һ<EFBFBD><D2BB>ʱ<EFBFBD><CAB1><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ļ<EFBFBD><C4BB><EFBFBD>Լ<EFBFBD><D4BC>رգ<D8B1><D5A3><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>ƶ<EFBFBD><C6B6><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>Ļ<EFBFBD><C4BB><EFBFBD>Զ<EFBFBD><D4B6><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>
6<EFBFBD><EFBFBD> <09>Ż<EFBFBD><C5BB>ƶ<EFBFBD><C6B6>ж<EFBFBD>
v2.10 <20><><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD><EFBFBD>(20150714)
1<EFBFBD><EFBFBD> <09><EFBFBD>У׼ʱû<CAB1><C3BB>ˢ<EFBFBD>µ<EFBFBD>bug<75><67>
2<EFBFBD><EFBFBD> ȡ<><C8A1>USB<53><42><EFBFBD><EFBFBD>ʱ<EFBFBD><CAB1><EFBFBD><EFBFBD><EFBFBD>¶ȼƵĹ<C6B5><C4B9>ܣ<EFBFBD>

View File

@@ -1,2 +0,0 @@
#!/usr/bin/env bash
docker-compose run --rm builder /bin/bash /build/ci/buildAll.sh

View File

@@ -1,13 +0,0 @@
#!/usr/bin/env bash
set -e
set -u
mkdir -p /build/ci/artefacts
# Build STM code
cd /build/source/source/
bash ./build.sh || exit 1
echo "All Firmware built"
# Copy out all the final resulting files we would like to store for the next op
cp -r /build/source/source/Hexfile/*.hex /build/ci/artefacts/
cp -r /build/source/source/Hexfile/*.bin /build/ci/artefacts/

View File

@@ -1 +0,0 @@
2b9eeccc33470f9d3cda26983b9d2dc6 gcc-arm-none-eabi-9-2020-q2-update-x86_64-linux.tar.bz2

View File

@@ -1 +0,0 @@
add5b6a9b12987d0e72f55a4d2cd0f3b nuclei_riscv_newlibc_prebuilt_linux64_2020.08.tar.bz2

View File

@@ -1,11 +0,0 @@
version: "3"
services:
builder:
stdin_open: true
tty: true
build:
context: .
command: /bin/bash
volumes:
- ./ci:/build/ci
- ./:/build/source

View File

@@ -1,35 +0,0 @@
#!/bin/bash
set -e
# Setup shell file to setup the environment on an ubuntu machine
sudo apt-get update && sudo apt-get install -y make bzip2 git python3 wget
sudo mkdir -p /build
cd /build
#Download source files to cache folder
# Remember if these are updated, you need to update the md5 file respectively
# Github checks out under $GITHUB_WORKSPACE
MDPATH=${GITHUB_WORKSPACE:-/build/source/}
sudo mkdir -p /build/cache
cd /build/cache/
if md5sum -c $MDPATH/ci/gcc-arm-none-eabi-9-2020-q2-update-x86_64-linux.tar.bz2.md5; then
echo "Good MD5 ARM"
else
echo "ARM MD5 Mismatch, downloading fresh"
sudo wget -q https://armkeil.blob.core.windows.net/developer/Files/downloads/gnu-rm/9-2020q2/gcc-arm-none-eabi-9-2020-q2-update-x86_64-linux.tar.bz2 -O gcc-arm-none-eabi-9-2020-q2-update-x86_64-linux.tar.bz2
fi
if md5sum -c $MDPATH/ci/nuclei_riscv_newlibc_prebuilt_linux64_2020.08.tar.bz2.md5; then
echo "Good MD5 RISCV"
else
echo "RISCV MD5 Mismatch, downloading fresh"
sudo wget -q https://github.com/Ralim/nuclei-compiler/releases/download/2020.08/nuclei_riscv_newlibc_prebuilt_linux64_2020.08.tar.bz2 -O nuclei_riscv_newlibc_prebuilt_linux64_2020.08.tar.bz2
fi
echo "Extracting compilers"
sudo tar -xj -f gcc-arm-none-eabi-9-2020-q2-update-x86_64-linux.tar.bz2 -C /build/
sudo tar -xj -f nuclei_riscv_newlibc_prebuilt_linux64_2020.08.tar.bz2 -C /build/
echo "Link into PATH"
sudo ln -s /build/gcc-arm-none-eabi-9-2020-q2-update/bin/* /usr/local/bin
sudo ln -s /build/gcc/bin/* /usr/local/bin

View File

@@ -1,138 +0,0 @@
# Roughly based on LLVM, tweaked a tad for readability on wide screens
---
Language: Cpp
# BasedOnStyle: LLVM
AccessModifierOffset: -2
AlignAfterOpenBracket: Align
AlignConsecutiveMacros: true
AlignConsecutiveAssignments: true
AlignConsecutiveDeclarations: true
AlignEscapedNewlines: Left
AlignOperands: true
AlignTrailingComments: true
AllowAllArgumentsOnNextLine: true
AllowAllConstructorInitializersOnNextLine: true
AllowAllParametersOfDeclarationOnNextLine: true
AllowShortBlocksOnASingleLine: Empty
AllowShortCaseLabelsOnASingleLine: false
AllowShortFunctionsOnASingleLine: All
AllowShortLambdasOnASingleLine: All
AllowShortIfStatementsOnASingleLine: Never
AllowShortLoopsOnASingleLine: false
AlwaysBreakAfterDefinitionReturnType: None
AlwaysBreakAfterReturnType: None
AlwaysBreakBeforeMultilineStrings: false
AlwaysBreakTemplateDeclarations: MultiLine
BinPackArguments: true
BinPackParameters: true
BraceWrapping:
AfterCaseLabel: false
AfterClass: false
AfterControlStatement: false
AfterEnum: false
AfterFunction: false
AfterNamespace: false
AfterObjCDeclaration: false
AfterStruct: false
AfterUnion: false
AfterExternBlock: false
BeforeCatch: false
BeforeElse: false
IndentBraces: false
SplitEmptyFunction: true
SplitEmptyRecord: true
SplitEmptyNamespace: true
BreakBeforeBinaryOperators: true
BreakBeforeBraces: Attach
BreakBeforeInheritanceComma: false
BreakInheritanceList: BeforeColon
BreakBeforeTernaryOperators: true
BreakConstructorInitializersBeforeComma: false
BreakConstructorInitializers: BeforeColon
BreakAfterJavaFieldAnnotations: false
BreakStringLiterals: true
ColumnLimit: 200
CommentPragmas: '^ IWYU pragma:'
CompactNamespaces: false
ConstructorInitializerAllOnOneLineOrOnePerLine: false
ConstructorInitializerIndentWidth: 4
ContinuationIndentWidth: 4
Cpp11BracedListStyle: true
DeriveLineEnding: true
DerivePointerAlignment: false
DisableFormat: false
ExperimentalAutoDetectBinPacking: false
FixNamespaceComments: true
ForEachMacros:
- foreach
- Q_FOREACH
- BOOST_FOREACH
IncludeBlocks: Preserve
IncludeCategories:
- Regex: '^"(llvm|llvm-c|clang|clang-c)/'
Priority: 2
SortPriority: 0
- Regex: '^(<|"(gtest|gmock|isl|json)/)'
Priority: 3
SortPriority: 0
- Regex: '.*'
Priority: 1
SortPriority: 0
IncludeIsMainRegex: '(Test)?$'
IncludeIsMainSourceRegex: ''
IndentCaseLabels: false
IndentGotoLabels: true
IndentPPDirectives: None
IndentWidth: 2
IndentWrappedFunctionNames: false
JavaScriptQuotes: Leave
JavaScriptWrapImports: true
KeepEmptyLinesAtTheStartOfBlocks: true
MacroBlockBegin: ''
MacroBlockEnd: ''
MaxEmptyLinesToKeep: 1
NamespaceIndentation: None
ObjCBinPackProtocolList: Auto
ObjCBlockIndentWidth: 2
ObjCSpaceAfterProperty: false
ObjCSpaceBeforeProtocolList: true
PenaltyBreakAssignment: 2
PenaltyBreakBeforeFirstCallParameter: 19
PenaltyBreakComment: 300
PenaltyBreakFirstLessLess: 120
PenaltyBreakString: 1000
PenaltyBreakTemplateDeclaration: 10
PenaltyExcessCharacter: 1000000
PenaltyReturnTypeOnItsOwnLine: 60
PointerAlignment: Right
ReflowComments: true
SortIncludes: true
SortUsingDeclarations: true
SpaceAfterCStyleCast: false
SpaceAfterLogicalNot: false
SpaceAfterTemplateKeyword: true
SpaceBeforeAssignmentOperators: true
SpaceBeforeCpp11BracedList: false
SpaceBeforeCtorInitializerColon: true
SpaceBeforeInheritanceColon: true
SpaceBeforeParens: ControlStatements
SpaceBeforeRangeBasedForLoopColon: true
SpaceInEmptyBlock: false
SpaceInEmptyParentheses: false
SpacesBeforeTrailingComments: 1
SpacesInAngles: false
SpacesInConditionalStatement: false
SpacesInContainerLiterals: true
SpacesInCStyleCastParentheses: false
SpacesInParentheses: false
SpacesInSquareBrackets: false
SpaceBeforeSquareBrackets: false
Standard: Latest
StatementMacros:
- Q_UNUSED
- QT_REQUIRE_VERSION
TabWidth: 8
UseCRLF: false
UseTab: Never
...

View File

@@ -1,77 +0,0 @@
#include "BSP_Flash.h"
#include "BSP_Power.h"
#include "BSP_QC.h"
#include "Defines.h"
#include "Model_Config.h"
#include <stdbool.h>
#include <stdint.h>
/*
* BSP.h -- Board Support
*
* This exposes functions that are expected to be implemented to add support for different hardware
*/
#ifndef BSP_BSP_H_
#define BSP_BSP_H_
#ifdef __cplusplus
extern "C" {
#endif
// maximum htim2 PWM value
extern const uint16_t powerPWM;
// htim2.Init.Period, the full PWM cycle
extern uint16_t totalPWM;
// Called first thing in main() to init the hardware
void preRToSInit();
// Called once the RToS has started for any extra work
void postRToSInit();
// Called once from preRToSInit()
void BSPInit(void);
// Called to reset the hardware watchdog unit
void resetWatchdog();
// Accepts a output level of 0.. to use to control the tip output PWM
void setTipPWM(uint8_t pulse);
// Returns the Handle temp in C, X10
uint16_t getHandleTemperature();
// Returns the Tip temperature ADC reading in raw units
uint16_t getTipRawTemp(uint8_t refresh);
// Returns the main DC input voltage, using the adjustable divisor + sample flag
uint16_t getInputVoltageX10(uint16_t divisor, uint8_t sample);
// Switch to the most suitable PWM freq given the desired period;
// returns true if the switch was performed and totalPWM changed
bool tryBetterPWM(uint8_t pwm);
// Readers for the two buttons
// !! Returns 1 if held down, 0 if released
uint8_t getButtonA();
uint8_t getButtonB();
// This is a work around that will be called if I2C starts to bug out
// This should toggle the SCL line until SDA goes high to end the current transaction
void unstick_I2C();
// Reboot the IC when things go seriously wrong
void reboot();
// If the user has programmed in a bootup logo, draw it to the screen from flash
// Returns 1 if the logo was printed so that the unit waits for the timeout or button
uint8_t showBootLogoIfavailable();
// delay wrapper for delay using the hardware timer (used before RTOS)
void delay_ms(uint16_t count);
// Used to allow knowledge of if usb_pd is being used
uint8_t usb_pd_detect();
bool getHallSensorFitted();
// If the iron has a hall effect sensor in the handle, return an signed count of the reading
// If the sensor is single polarity (or polarity insensitive) just return 0..32768
int16_t getRawHallEffect();
// Returns true if power is from dumb "DC" input rather than "smart" QC or PD
bool getIsPoweredByDCIN();
#ifdef __cplusplus
}
#endif
#endif /* BSP_BSP_H_ */

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#include "BSP.h"

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@@ -1,26 +0,0 @@
/*
* BSP_Flash.h
*
* Created on: 29 May 2020
* Author: Ralim
*/
#include "stdint.h"
#ifndef BSP_BSP_FLASH_H_
#define BSP_BSP_FLASH_H_
#ifdef __cplusplus
extern "C" {
#endif
/*
* Wrappers to allow read/writing to a sector of flash that we use to store all of the user settings
*
* Should allow reading and writing to the flash
*/
// Erase the flash, then save the buffer. Returns 1 if worked
uint8_t flash_save_buffer(const uint8_t *buffer, const uint16_t length);
void flash_read_buffer(uint8_t *buffer, const uint16_t length);
#ifdef __cplusplus
}
#endif
#endif /* BSP_BSP_FLASH_H_ */

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@@ -1,16 +0,0 @@
/*
* BSP_PD.h
*
* Created on: 21 Jul 2020
* Author: Ralim
*/
#ifndef USER_BSP_PD_H_
#define USER_BSP_PD_H_
#include "BSP.h"
/*
* An array of all of the desired voltages & minimum currents in preferred order
*/
extern const uint16_t USB_PD_Desired_Levels[];
extern const uint8_t USB_PD_Desired_Levels_Len;
#endif /* USER_BSP_PD_H_ */

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@@ -1,23 +0,0 @@
#include "stdint.h"
/*
* BSP_Power.h -- Board Support for Power control
*
* These functions are hooks used to allow for power control
*
*/
#ifndef BSP_POWER_H_
#define BSP_POWER_H_
#ifdef __cplusplus
extern "C" {
#endif
// Called periodically in the movement handling thread
// Can be used to check any details for the power system
void power_check();
#ifdef __cplusplus
}
#endif
#endif

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@@ -1,42 +0,0 @@
/*
* BSP_QC.h
*
* Created on: 29 May 2020
* Author: Ralim
*/
#ifndef BSP_BSP_QC_H_
#define BSP_BSP_QC_H_
#include "stdint.h"
#ifdef __cplusplus
extern "C" {
#endif
// Init GPIO for QC neg
void QC_Init_GPIO();
// Set the DP pin to 0.6V
void QC_DPlusZero_Six();
// Set the DM pin to 0.6V
void QC_DNegZero_Six();
// Set the DP pin to 3.3V
void QC_DPlusThree_Three();
// Set the DM pin to 3.3V
void QC_DNegThree_Three();
// Turn on weak pulldown on the DM pin
// This is used as a helper for some power banks
void QC_DM_PullDown();
// Turn off the pulldown
void QC_DM_No_PullDown();
// Turn on output drivers that were initally disabled to prevent spike through QC disable mode
void QC_Post_Probe_En();
// Check if DM was pulled down
// 1=Pulled down, 0 == pulled high
uint8_t QC_DM_PulledDown();
// Re-sync if required
void QC_resync();
#ifdef __cplusplus
}
#endif
#endif /* BSP_BSP_QC_H_ */

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@@ -1,18 +0,0 @@
/*
* Defines.h
*
* Created on: 29 May 2020
* Author: Ralim
*/
#ifndef BSP_DEFINES_H_
#define BSP_DEFINES_H_
enum Orientation { ORIENTATION_LEFT_HAND = 0, ORIENTATION_RIGHT_HAND = 1, ORIENTATION_FLAT = 3 };
// It is assumed that all hardware implements an 8Hz update period at this time
#define PID_TIM_HZ (8)
#define TICKS_SECOND configTICK_RATE_HZ
#define TICKS_MIN (60 * TICKS_SECOND)
#define TICKS_100MS (TICKS_SECOND / 10)
#endif /* BSP_DEFINES_H_ */

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@@ -1,340 +0,0 @@
// BSP mapping functions
#include "BSP.h"
#include "I2C_Wrapper.hpp"
#include "Model_Config.h"
#include "Pins.h"
#include "Setup.h"
#include "history.hpp"
#include "main.hpp"
#include <IRQ.h>
volatile uint16_t PWMSafetyTimer = 0;
volatile uint8_t pendingPWM = 0;
const uint16_t powerPWM = 255;
static const uint8_t holdoffTicks = 14; // delay of 8 ms
static const uint8_t tempMeasureTicks = 14;
uint16_t totalPWM; // htim2.Init.Period, the full PWM cycle
static bool fastPWM;
// 2 second filter (ADC is PID_TIM_HZ Hz)
history<uint16_t, PID_TIM_HZ> rawTempFilter = {{0}, 0, 0};
void resetWatchdog() { HAL_IWDG_Refresh(&hiwdg); }
#ifdef TEMP_NTC
// Lookup table for the NTC
// Stored as ADCReading,Temp in degC
static const uint16_t NTCHandleLookup[] = {
// ADC Reading , Temp in C
29189, 0, //
29014, 1, //
28832, 2, //
28644, 3, //
28450, 4, //
28249, 5, //
28042, 6, //
27828, 7, //
27607, 8, //
27380, 9, //
27146, 10, //
26906, 11, //
26660, 12, //
26407, 13, //
26147, 14, //
25882, 15, //
25610, 16, //
25332, 17, //
25049, 18, //
24759, 19, //
24465, 20, //
24164, 21, //
23859, 22, //
23549, 23, //
23234, 24, //
22915, 25, //
22591, 26, //
22264, 27, //
21933, 28, //
21599, 29, //
21261, 30, //
20921, 31, //
20579, 32, //
20234, 33, //
19888, 34, //
19541, 35, //
19192, 36, //
18843, 37, //
18493, 38, //
18143, 39, //
17793, 40, //
17444, 41, //
17096, 42, //
16750, 43, //
16404, 44, //
16061, 45, //
// 15719, 46, //
// 15380, 47, //
// 15044, 48, //
// 14710, 49, //
// 14380, 50, //
// 14053, 51, //
// 13729, 52, //
// 13410, 53, //
// 13094, 54, //
// 12782, 55, //
// 12475, 56, //
// 12172, 57, //
// 11874, 58, //
// 11580, 59, //
// 11292, 60, //
};
#endif
uint16_t getHandleTemperature() {
#ifdef TEMP_NTC
// TS80P uses 100k NTC resistors instead
// NTCG104EF104FT1X from TDK
// For now not doing interpolation
int32_t result = getADC(0);
for (uint32_t i = 0; i < (sizeof(NTCHandleLookup) / (2 * sizeof(uint16_t))); i++) {
if (result > NTCHandleLookup[(i * 2) + 0]) {
return NTCHandleLookup[(i * 2) + 1] * 10;
}
}
return 45 * 10;
#endif
#ifdef TEMP_TMP36
// We return the current handle temperature in X10 C
// TMP36 in handle, 0.5V offset and then 10mV per deg C (0.75V @ 25C for
// example) STM32 = 4096 count @ 3.3V input -> But We oversample by 32/(2^2) =
// 8 times oversampling Therefore 32768 is the 3.3V input, so 0.1007080078125
// mV per count So we need to subtract an offset of 0.5V to center on 0C
// (4964.8 counts)
//
int32_t result = getADC(0);
result -= 4965; // remove 0.5V offset
// 10mV per C
// 99.29 counts per Deg C above 0C. Tends to read a tad over across all of my sample units
result *= 100;
result /= 994;
return result;
#endif
}
uint16_t getTipInstantTemperature() {
uint16_t sum = 0; // 12 bit readings * 8 -> 15 bits
uint16_t readings[8];
// Looking to reject the highest outlier readings.
// As on some hardware these samples can run into the op-amp recovery time
// Once this time is up the signal stabilises quickly, so no need to reject minimums
readings[0] = hadc1.Instance->JDR1;
readings[1] = hadc1.Instance->JDR2;
readings[2] = hadc1.Instance->JDR3;
readings[3] = hadc1.Instance->JDR4;
readings[4] = hadc2.Instance->JDR1;
readings[5] = hadc2.Instance->JDR2;
readings[6] = hadc2.Instance->JDR3;
readings[7] = hadc2.Instance->JDR4;
for (int i = 0; i < 8; i++) {
sum += readings[i];
}
return sum; // 8x over sample
}
uint16_t getTipRawTemp(uint8_t refresh) {
if (refresh) {
uint16_t lastSample = getTipInstantTemperature();
rawTempFilter.update(lastSample);
return lastSample;
} else {
return rawTempFilter.average();
}
}
uint16_t getInputVoltageX10(uint16_t divisor, uint8_t sample) {
// ADC maximum is 32767 == 3.3V at input == 28.05V at VIN
// Therefore we can divide down from there
// Multiplying ADC max by 4 for additional calibration options,
// ideal term is 467
#ifdef MODEL_TS100
#define BATTFILTERDEPTH 32
#else
#define BATTFILTERDEPTH 8
#endif
static uint8_t preFillneeded = 10;
static uint32_t samples[BATTFILTERDEPTH];
static uint8_t index = 0;
if (preFillneeded) {
for (uint8_t i = 0; i < BATTFILTERDEPTH; i++)
samples[i] = getADC(1);
preFillneeded--;
}
if (sample) {
samples[index] = getADC(1);
index = (index + 1) % BATTFILTERDEPTH;
}
uint32_t sum = 0;
for (uint8_t i = 0; i < BATTFILTERDEPTH; i++)
sum += samples[i];
sum /= BATTFILTERDEPTH;
if (divisor == 0) {
divisor = 1;
}
return sum * 4 / divisor;
}
void setTipPWM(uint8_t pulse) {
PWMSafetyTimer = 10; // This is decremented in the handler for PWM so that the tip pwm is
// disabled if the PID task is not scheduled often enough.
pendingPWM = pulse;
}
static void switchToFastPWM(void) {
fastPWM = true;
totalPWM = powerPWM + tempMeasureTicks * 2 + holdoffTicks;
htim2.Instance->ARR = totalPWM;
// ~3.5 Hz rate
htim2.Instance->CCR1 = powerPWM + holdoffTicks * 2;
// 2 MHz timer clock/2000 = 1 kHz tick rate
htim2.Instance->PSC = 2000;
}
static void switchToSlowPWM(void) {
fastPWM = false;
totalPWM = powerPWM + tempMeasureTicks + holdoffTicks;
htim2.Instance->ARR = totalPWM;
// ~1.84 Hz rate
htim2.Instance->CCR1 = powerPWM + holdoffTicks;
// 2 MHz timer clock/4000 = 500 Hz tick rate
htim2.Instance->PSC = 4000;
}
bool tryBetterPWM(uint8_t pwm) {
if (fastPWM && pwm == powerPWM) {
// maximum power for fast PWM reached, need to go slower to get more
switchToSlowPWM();
return true;
} else if (!fastPWM && pwm < 230) {
// 254 in fast PWM mode gives the same power as 239 in slow
// allow for some reasonable hysteresis by switching only when it goes
// below 230 (equivalent to 245 in fast mode)
switchToFastPWM();
return true;
}
return false;
}
// These are called by the HAL after the corresponding events from the system
// timers.
void HAL_TIM_PeriodElapsedCallback(TIM_HandleTypeDef *htim) {
// Period has elapsed
if (htim->Instance == TIM2) {
// we want to turn on the output again
PWMSafetyTimer--;
// We decrement this safety value so that lockups in the
// scheduler will not cause the PWM to become locked in an
// active driving state.
// While we could assume this could never happen, its a small price for
// increased safety
htim2.Instance->CCR4 = pendingPWM;
if (htim2.Instance->CCR4 && PWMSafetyTimer) {
HAL_TIM_PWM_Start(&htim3, TIM_CHANNEL_1);
} else {
HAL_TIM_PWM_Stop(&htim3, TIM_CHANNEL_1);
}
} else if (htim->Instance == TIM1) {
// STM uses this for internal functions as a counter for timeouts
HAL_IncTick();
}
}
void HAL_TIM_PWM_PulseFinishedCallback(TIM_HandleTypeDef *htim) {
// This was a when the PWM for the output has timed out
if (htim->Channel == HAL_TIM_ACTIVE_CHANNEL_4) {
HAL_TIM_PWM_Stop(&htim3, TIM_CHANNEL_1);
}
}
void unstick_I2C() {
GPIO_InitTypeDef GPIO_InitStruct;
int timeout = 100;
int timeout_cnt = 0;
// 1. Clear PE bit.
hi2c1.Instance->CR1 &= ~(0x0001);
/**I2C1 GPIO Configuration
PB6 ------> I2C1_SCL
PB7 ------> I2C1_SDA
*/
// 2. Configure the SCL and SDA I/Os as General Purpose Output Open-Drain, High level (Write 1 to GPIOx_ODR).
GPIO_InitStruct.Mode = GPIO_MODE_OUTPUT_OD;
GPIO_InitStruct.Pull = GPIO_PULLUP;
GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_LOW;
GPIO_InitStruct.Pin = SCL_Pin;
HAL_GPIO_Init(SCL_GPIO_Port, &GPIO_InitStruct);
HAL_GPIO_WritePin(SCL_GPIO_Port, SCL_Pin, GPIO_PIN_SET);
GPIO_InitStruct.Pin = SDA_Pin;
HAL_GPIO_Init(SDA_GPIO_Port, &GPIO_InitStruct);
HAL_GPIO_WritePin(SDA_GPIO_Port, SDA_Pin, GPIO_PIN_SET);
while (GPIO_PIN_SET != HAL_GPIO_ReadPin(SDA_GPIO_Port, SDA_Pin)) {
// Move clock to release I2C
HAL_GPIO_WritePin(SCL_GPIO_Port, SCL_Pin, GPIO_PIN_RESET);
asm("nop");
asm("nop");
asm("nop");
asm("nop");
HAL_GPIO_WritePin(SCL_GPIO_Port, SCL_Pin, GPIO_PIN_SET);
timeout_cnt++;
if (timeout_cnt > timeout)
return;
}
// 12. Configure the SCL and SDA I/Os as Alternate function Open-Drain.
GPIO_InitStruct.Mode = GPIO_MODE_AF_OD;
GPIO_InitStruct.Pull = GPIO_PULLUP;
GPIO_InitStruct.Speed = GPIO_SPEED_FREQ_LOW;
GPIO_InitStruct.Pin = SCL_Pin;
HAL_GPIO_Init(SCL_GPIO_Port, &GPIO_InitStruct);
GPIO_InitStruct.Pin = SDA_Pin;
HAL_GPIO_Init(SDA_GPIO_Port, &GPIO_InitStruct);
HAL_GPIO_WritePin(SCL_GPIO_Port, SCL_Pin, GPIO_PIN_SET);
HAL_GPIO_WritePin(SDA_GPIO_Port, SDA_Pin, GPIO_PIN_SET);
// 13. Set SWRST bit in I2Cx_CR1 register.
hi2c1.Instance->CR1 |= 0x8000;
asm("nop");
// 14. Clear SWRST bit in I2Cx_CR1 register.
hi2c1.Instance->CR1 &= ~0x8000;
asm("nop");
// 15. Enable the I2C peripheral by setting the PE bit in I2Cx_CR1 register
hi2c1.Instance->CR1 |= 0x0001;
// Call initialization function.
HAL_I2C_Init(&hi2c1);
}
uint8_t getButtonA() { return HAL_GPIO_ReadPin(KEY_A_GPIO_Port, KEY_A_Pin) == GPIO_PIN_RESET ? 1 : 0; }
uint8_t getButtonB() { return HAL_GPIO_ReadPin(KEY_B_GPIO_Port, KEY_B_Pin) == GPIO_PIN_RESET ? 1 : 0; }
void BSPInit(void) { switchToFastPWM(); }
void reboot() { NVIC_SystemReset(); }
void delay_ms(uint16_t count) { HAL_Delay(count); }

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/*
* BSP_PD.c
*
* Created on: 21 Jul 2020
* Author: Ralim
*/
#include "BSP_PD.h"
#include "Model_Config.h"
#ifdef POW_PD
/*
* An array of all of the desired voltages & minimum currents in preferred order
*/
const uint16_t USB_PD_Desired_Levels[] = {
// mV desired input, mA minimum required current
12000, 2400, // 12V @ 2.4A
9000, 2000, // 9V @ 2A
5000, 100, // 5V @ whatever
};
const uint8_t USB_PD_Desired_Levels_Len = 3;
#endif

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@@ -1,176 +0,0 @@
/*
FreeRTOS V9.0.0 - Copyright (C) 2016 Real Time Engineers Ltd.
All rights reserved
VISIT http://www.FreeRTOS.org TO ENSURE YOU ARE USING THE LATEST VERSION.
This file is part of the FreeRTOS distribution.
FreeRTOS is free software; you can redistribute it and/or modify it under
the terms of the GNU General Public License (version 2) as published by the
Free Software Foundation >>!AND MODIFIED BY!<< the FreeRTOS exception.
***************************************************************************
>>! NOTE: The modification to the GPL is included to allow you to !<<
>>! distribute a combined work that includes FreeRTOS without being !<<
>>! obliged to provide the source code for proprietary components !<<
>>! outside of the FreeRTOS kernel. !<<
***************************************************************************
FreeRTOS is distributed in the hope that it will be useful, but WITHOUT ANY
WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
FOR A PARTICULAR PURPOSE. Full license text is available on the following
link: http://www.freertos.org/a00114.html
***************************************************************************
* *
* FreeRTOS provides completely free yet professionally developed, *
* robust, strictly quality controlled, supported, and cross *
* platform software that is more than just the market leader, it *
* is the industry's de facto standard. *
* *
* Help yourself get started quickly while simultaneously helping *
* to support the FreeRTOS project by purchasing a FreeRTOS *
* tutorial book, reference manual, or both: *
* http://www.FreeRTOS.org/Documentation *
* *
***************************************************************************
http://www.FreeRTOS.org/FAQHelp.html - Having a problem? Start by reading
the FAQ page "My application does not run, what could be wrong?". Have you
defined configASSERT()?
http://www.FreeRTOS.org/support - In return for receiving this top quality
embedded software for free we request you assist our global community by
participating in the support forum.
http://www.FreeRTOS.org/training - Investing in training allows your team to
be as productive as possible as early as possible. Now you can receive
FreeRTOS training directly from Richard Barry, CEO of Real Time Engineers
Ltd, and the world's leading authority on the world's leading RTOS.
http://www.FreeRTOS.org/plus - A selection of FreeRTOS ecosystem products,
including FreeRTOS+Trace - an indispensable productivity tool, a DOS
compatible FAT file system, and our tiny thread aware UDP/IP stack.
http://www.FreeRTOS.org/labs - Where new FreeRTOS products go to incubate.
Come and try FreeRTOS+TCP, our new open source TCP/IP stack for FreeRTOS.
http://www.OpenRTOS.com - Real Time Engineers ltd. license FreeRTOS to High
Integrity Systems ltd. to sell under the OpenRTOS brand. Low cost OpenRTOS
licenses offer ticketed support, indemnification and commercial middleware.
http://www.SafeRTOS.com - High Integrity Systems also provide a safety
engineered and independently SIL3 certified version for use in safety and
mission critical applications that require provable dependability.
1 tab == 4 spaces!
*/
#ifndef FREERTOS_CONFIG_H
#define FREERTOS_CONFIG_H
/*-----------------------------------------------------------
* Application specific definitions.
*
* These definitions should be adjusted for your particular hardware and
* application requirements.
*
* THESE PARAMETERS ARE DESCRIBED WITHIN THE 'CONFIGURATION' SECTION OF THE
* FreeRTOS API DOCUMENTATION AVAILABLE ON THE FreeRTOS.org WEB SITE.
*
* See http://www.freertos.org/a00110.html.
*----------------------------------------------------------*/
/* USER CODE BEGIN Includes */
/* Section where include file can be added */
/* USER CODE END Includes */
/* Ensure stdint is only used by the compiler, and not the assembler. */
#if defined(__ICCARM__) || defined(__CC_ARM) || defined(__GNUC__)
#include <stdint.h>
extern uint32_t SystemCoreClock;
#endif
#define configUSE_PREEMPTION 1
#define configSUPPORT_STATIC_ALLOCATION 1
#define configSUPPORT_DYNAMIC_ALLOCATION 0
#define configUSE_IDLE_HOOK 1
#define configUSE_TICK_HOOK 0
#define configCPU_CLOCK_HZ (SystemCoreClock)
#define configTICK_RATE_HZ ((TickType_t)1000)
#define configMAX_PRIORITIES (6)
#define configMINIMAL_STACK_SIZE ((uint16_t)256)
#define configTOTAL_HEAP_SIZE ((size_t)1024 * 14) /*Currently use about 9000*/
#define configMAX_TASK_NAME_LEN (32)
#define configUSE_16_BIT_TICKS 0
#define configUSE_MUTEXES 1
#define configQUEUE_REGISTRY_SIZE 8
#define configUSE_TIMERS 0
#define configUSE_PORT_OPTIMISED_TASK_SELECTION 1
#define configCHECK_FOR_STACK_OVERFLOW 2 /*Bump this to 2 during development and bug hunting*/
/* Co-routine definitions. */
#define configUSE_CO_ROUTINES 0
#define configMAX_CO_ROUTINE_PRIORITIES (2)
/* Set the following definitions to 1 to include the API function, or zero
to exclude the API function. */
#define INCLUDE_vTaskPrioritySet 1
#define INCLUDE_uxTaskPriorityGet 0
#define INCLUDE_vTaskDelete 0
#define INCLUDE_vTaskCleanUpResources 0
#define INCLUDE_vTaskSuspend 0
#define INCLUDE_vTaskDelayUntil 0
#define INCLUDE_vTaskDelay 1
#define INCLUDE_xTaskGetSchedulerState 1
#define INCLUDE_uxTaskGetStackHighWaterMark 1
/* Cortex-M specific definitions. */
#ifdef __NVIC_PRIO_BITS
/* __BVIC_PRIO_BITS will be specified when CMSIS is being used. */
#define configPRIO_BITS __NVIC_PRIO_BITS
#else
#define configPRIO_BITS 4
#endif
/* The lowest interrupt priority that can be used in a call to a "set priority"
function. */
#define configLIBRARY_LOWEST_INTERRUPT_PRIORITY 15
/* The highest interrupt priority that can be used by any interrupt service
routine that makes calls to interrupt safe FreeRTOS API functions. DO NOT CALL
INTERRUPT SAFE FREERTOS API FUNCTIONS FROM ANY INTERRUPT THAT HAS A HIGHER
PRIORITY THAN THIS! (higher priorities are lower numeric values. */
#define configLIBRARY_MAX_SYSCALL_INTERRUPT_PRIORITY 5
/* Interrupt priorities used by the kernel port layer itself. These are generic
to all Cortex-M ports, and do not rely on any particular library functions. */
#define configKERNEL_INTERRUPT_PRIORITY (configLIBRARY_LOWEST_INTERRUPT_PRIORITY << (8 - configPRIO_BITS))
/* !!!! configMAX_SYSCALL_INTERRUPT_PRIORITY must not be set to zero !!!!
See http://www.FreeRTOS.org/RTOS-Cortex-M3-M4.html. */
#define configMAX_SYSCALL_INTERRUPT_PRIORITY (configLIBRARY_MAX_SYSCALL_INTERRUPT_PRIORITY << (8 - configPRIO_BITS))
/* Normal assert() semantics without relying on the provision of an assert.h
header file. */
/* USER CODE BEGIN 1 */
#define configASSERT(x) \
if ((x) == 0) { \
taskDISABLE_INTERRUPTS(); \
for (;;) \
; \
}
/* USER CODE END 1 */
/* Definitions that map the FreeRTOS port interrupt handlers to their CMSIS
standard names. */
#define vPortSVCHandler SVC_Handler
#define xPortPendSVHandler PendSV_Handler
#if configUSE_TIMERS
#define configTIMER_TASK_PRIORITY 2
#define configTIMER_QUEUE_LENGTH 8
#define configTIMER_TASK_STACK_DEPTH (512 / 4)
#endif
#endif /* FREERTOS_CONFIG_H */

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@@ -1,91 +0,0 @@
/*
* FRToSI2C.cpp
*
* Created on: 14Apr.,2018
* Author: Ralim
*/
#include "BSP.h"
#include "Setup.h"
#include <I2C_Wrapper.hpp>
SemaphoreHandle_t FRToSI2C::I2CSemaphore = nullptr;
StaticSemaphore_t FRToSI2C::xSemaphoreBuffer;
void FRToSI2C::CpltCallback() {
hi2c1.State = HAL_I2C_STATE_READY; // Force state reset (even if tx error)
if (I2CSemaphore) {
xSemaphoreGiveFromISR(I2CSemaphore, NULL);
}
}
bool FRToSI2C::Mem_Read(uint16_t DevAddress, uint16_t MemAddress, uint8_t *pData, uint16_t Size) {
if (!lock())
return false;
if (HAL_I2C_Mem_Read(&hi2c1, DevAddress, MemAddress, I2C_MEMADD_SIZE_8BIT, pData, Size, 500) != HAL_OK) {
I2C_Unstick();
unlock();
return false;
}
unlock();
return true;
}
bool FRToSI2C::I2C_RegisterWrite(uint8_t address, uint8_t reg, uint8_t data) { return Mem_Write(address, reg, &data, 1); }
uint8_t FRToSI2C::I2C_RegisterRead(uint8_t add, uint8_t reg) {
uint8_t tx_data[1];
Mem_Read(add, reg, tx_data, 1);
return tx_data[0];
}
bool FRToSI2C::Mem_Write(uint16_t DevAddress, uint16_t MemAddress, uint8_t *pData, uint16_t Size) {
if (!lock())
return false;
if (HAL_I2C_Mem_Write(&hi2c1, DevAddress, MemAddress, I2C_MEMADD_SIZE_8BIT, pData, Size, 500) != HAL_OK) {
I2C_Unstick();
unlock();
return false;
}
unlock();
return true;
}
bool FRToSI2C::Transmit(uint16_t DevAddress, uint8_t *pData, uint16_t Size) {
if (!lock())
return false;
if (HAL_I2C_Master_Transmit_DMA(&hi2c1, DevAddress, pData, Size) != HAL_OK) {
I2C_Unstick();
unlock();
return false;
}
return true;
}
bool FRToSI2C::probe(uint16_t DevAddress) {
if (!lock())
return false;
uint8_t buffer[1];
bool worked = HAL_I2C_Mem_Read(&hi2c1, DevAddress, 0x0F, I2C_MEMADD_SIZE_8BIT, buffer, 1, 1000) == HAL_OK;
unlock();
return worked;
}
void FRToSI2C::I2C_Unstick() { unstick_I2C(); }
void FRToSI2C::unlock() { xSemaphoreGive(I2CSemaphore); }
bool FRToSI2C::lock() { return xSemaphoreTake(I2CSemaphore, (TickType_t)50) == pdTRUE; }
bool FRToSI2C::writeRegistersBulk(const uint8_t address, const I2C_REG *registers, const uint8_t registersLength) {
for (int index = 0; index < registersLength; index++) {
if (!I2C_RegisterWrite(address, registers[index].reg, registers[index].val)) {
return false;
}
if (registers[index].pause_ms)
delay_ms(registers[index].pause_ms);
}
return true;
}

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