mirror of
https://github.com/Ralim/IronOS.git
synced 2025-02-26 07:53:55 +00:00
@@ -16,5 +16,5 @@ extern volatile uint16_t ADC1ConvertedValue[2];
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uint16_t Get_ADC1Value(uint8_t i);
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uint16_t readIronTemp(uint16_t calibration_temp, uint8_t read,uint16_t setPointTemp); //read the iron temp in C X10
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uint16_t readDCVoltage();/*Get the system voltage X10*/
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uint16_t readDCVoltage(uint16_t divFactor);/*Get the system voltage X10*/
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#endif /* ANALOG_H_ */
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@@ -17,16 +17,17 @@
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#include "Settings.h"
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#include "Analog.h"
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enum {
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STARTUP, //we are sitting on the prompt to push a button
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SOLDERING,
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TEMP_ADJ,
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SETTINGS,
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SLEEP,
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COOLING,
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UVLOWARN,
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THERMOMETER,
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DCINDISP,
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TEMPCAL,
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STARTUP, //we are sitting on the prompt to push a button
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SOLDERING, //Normal operating mode
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TEMP_ADJ, //Adjust the set temperature
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SETTINGS, //Settings menu
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SLEEP, //Iron is snoozing due to lack of use
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COOLING, //Iron is cooling down -> Warning screen
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UVLOWARN, //Unit tripped low voltage
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THERMOMETER, //Read the tip temp
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DCINDISP, //Disp the input voltage && Cal the DCin voltage divider
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TEMPCAL, //Cal tip temp offset
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} operatingMode;
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enum {
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@@ -11,7 +11,7 @@
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#define SETTINGS_H_
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#include <stdint.h>
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#include "stm32f10x_flash.h"
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#define SETTINGSVERSION 0x03 /*Change this if you change the struct below to prevent people getting out of sync*/
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#define SETTINGSVERSION 0x04 /*Change this if you change the struct below to prevent people getting out of sync*/
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#define SETTINGSOPTIONSCOUNT 6 /*Number of settings in the settings menu*/
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#define MOTION_HIGH (0x00)
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#define MOTION_MED (0x10)
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@@ -30,6 +30,7 @@ struct {
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uint8_t flipDisplay:1; //If true we want to invert the display for lefties
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uint8_t sensitivity:7; //Sensitivity of accelerometer
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uint16_t tempCalibration; //Temperature calibration value
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uint16_t voltageDiv; //Voltage divisor factor
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} systemSettings;
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void saveSettings();
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@@ -10,12 +10,12 @@
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//Reads the dc input and returns it as X10 voltage (ie 236 = 23.6V)
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//Seems unstable below 9.5V input
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uint16_t readDCVoltage() {
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uint16_t readDCVoltage(uint16_t divFactor) {
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uint16_t reading = 0;
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for (u8 i = 0; i < 10; i++) {
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reading += ADC_GetConversionValue(ADC2);
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}
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reading /= 144; //take the average and convert to X10 voltage
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reading /= divFactor; //take the average and convert to X10 voltage
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return reading; //return the read voltage
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}
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@@ -37,7 +37,7 @@ void setup() {
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readIronTemp(systemSettings.tempCalibration, 0,0); //load the default calibration value
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Init_Oled(systemSettings.flipDisplay); //Init the OLED display
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OLED_DrawString("VER 1.04", 8); //
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OLED_DrawString("VER 1.05", 8); //
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delayMs(800); //Pause to show version number
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Start_Watchdog(1000); //start the system watch dog as 1 second timeout
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}
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@@ -5,7 +5,7 @@
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* Author: Ralim <ralim@ralimtek.com>
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*/
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#include "Modes.h"
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uint8_t tempCalStatus = 0;
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uint8_t CalStatus = 0;
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//This does the required processing and state changes
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void ProcessUI() {
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uint8_t Buttons = getButtons(); //read the buttons status
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@@ -51,7 +51,7 @@ void ProcessUI() {
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return;
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}
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}
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uint16_t voltage = readDCVoltage(); //get X10 voltage
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uint16_t voltage = readDCVoltage(systemSettings.voltageDiv); //get X10 voltage
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if ((voltage / 10) < systemSettings.cutoutVoltage) {
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operatingMode = UVLOWARN;
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lastModeChange = millis();
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@@ -180,9 +180,10 @@ void ProcessUI() {
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if (Buttons == BUT_A) {
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//Single button press, cycle over to the DC display
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CalStatus = 0;
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operatingMode = DCINDISP;
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} else if (Buttons == BUT_B) {
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tempCalStatus = 0;
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CalStatus = 0;
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operatingMode = TEMPCAL;
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} else if (Buttons == (BUT_A | BUT_B)) {
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//If the user is holding both button, exit the screen
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@@ -193,13 +194,37 @@ void ProcessUI() {
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break;
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case DCINDISP: {
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//This lets the user check the input voltage
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if (Buttons == BUT_A) {
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//Single button press, cycle over to the temp display
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operatingMode = THERMOMETER;
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} else if (Buttons == (BUT_A | BUT_B)) {
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//If the user is holding both button, exit the screen
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operatingMode = STARTUP;
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if (CalStatus == 0) {
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if (Buttons == BUT_A) {
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//Single button press, cycle over to the temp display
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operatingMode = THERMOMETER;
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} else if (Buttons == BUT_B) {
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//dc cal mode
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CalStatus = 1;
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} else if (Buttons == (BUT_A | BUT_B)) {
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//If the user is holding both button, exit the screen
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operatingMode = STARTUP;
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}
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} else {
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//User is calibrating the dc input
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if (Buttons == BUT_A) {
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if (!systemSettings.flipDisplay)
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systemSettings.voltageDiv++;
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else
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systemSettings.voltageDiv--;
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} else if (Buttons == BUT_B) {
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if (!systemSettings.flipDisplay)
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systemSettings.voltageDiv--;
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else
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systemSettings.voltageDiv++;
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} else if (Buttons == (BUT_A | BUT_B)) {
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CalStatus = 0;
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saveSettings();
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}
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if (systemSettings.voltageDiv < 120)
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systemSettings.voltageDiv = 160;
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else if (systemSettings.voltageDiv > 160)
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systemSettings.voltageDiv = 120;
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}
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}
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@@ -210,13 +235,13 @@ void ProcessUI() {
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operatingMode = THERMOMETER;
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} else if (Buttons == BUT_A) {
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//Try and calibrate
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if (tempCalStatus == 0) {
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if (CalStatus == 0) {
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if ((readTipTemp() < 300) && (readSensorTemp() < 300)) {
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tempCalStatus = 1;
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CalStatus = 1;
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systemSettings.tempCalibration = readTipTemp();
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saveSettings();
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} else {
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tempCalStatus = 2;
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CalStatus = 2;
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}
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}
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} else if (Buttons == (BUT_A | BUT_B)) {
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@@ -237,7 +262,7 @@ void drawTemp(uint16_t temp, uint8_t x) {
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if (systemSettings.displayTempInF)
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temp = (temp * 9 + 1600) / 5;/*Convert to F -> T*(9/5)+32*/
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if (temp % 10 > 5)
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temp += 10;//round up
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temp += 10; //round up
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OLED_DrawThreeNumber(temp / 10, x);
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}
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@@ -370,26 +395,30 @@ void DrawUI() {
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drawTemp(temp, 5);
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break;
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case DCINDISP: {
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uint16_t voltage = readDCVoltage(); //get X10 voltage
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OLED_DrawString("IN", 2);
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OLED_DrawChar((voltage / 100) % 10, 2);
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voltage -= (voltage / 100) * 100;
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OLED_DrawChar((voltage / 10) % 10, 3);
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voltage -= (voltage / 10) * 10;
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OLED_DrawChar('.', 4);
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OLED_DrawChar(voltage % 10, 5);
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OLED_DrawChar('V', 6);
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OLED_DrawChar(' ', 7);
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uint16_t voltage = readDCVoltage(systemSettings.voltageDiv); //get X10 voltage
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if (CalStatus == 0 || ((millis() % 1000) > 500)) {
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OLED_DrawString("IN", 2);
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OLED_DrawChar((voltage / 100) % 10, 2);
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voltage -= (voltage / 100) * 100;
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OLED_DrawChar((voltage / 10) % 10, 3);
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voltage -= (voltage / 10) * 10;
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OLED_DrawChar('.', 4);
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OLED_DrawChar(voltage % 10, 5);
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OLED_DrawChar('V', 6);
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OLED_DrawChar(' ', 7);
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} else {
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OLED_DrawString("IN ", 8);
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}
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}
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break;
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case TEMPCAL: {
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if (tempCalStatus == 0) {
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if (CalStatus == 0) {
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OLED_DrawString("CAL TEMP", 8);
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} else if (tempCalStatus == 1) {
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} else if (CalStatus == 1) {
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OLED_DrawString("CAL OK ", 8);
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} else if (tempCalStatus == 2) {
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} else if (CalStatus == 2) {
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OLED_DrawString("CAL FAIL", 8);
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}
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}
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@@ -51,6 +51,6 @@ void resetSettings() {
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systemSettings.flipDisplay=0; //Default to right handed mode
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systemSettings.sensitivity=0x00; //Default high sensitivity
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systemSettings.tempCalibration=239; //Default to their calibration value
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systemSettings.voltageDiv=144; //Default divider from schematic
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}
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