2020-09-07 11:40:01 +02:00
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/*
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7_Inkplate_easyC example for e-radionica.com Inkplate 6
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For this example you will need a micro USB cable, Inkplate 6,
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BME680 sensor with easyC connector on it: https://e-radionica.com/en/bme680-breakout-made-by-e-radionica.html
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and a easyC cable: https://e-radionica.com/en/easyc-cable-20cm.html
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Select "Inkplate 6(ESP32)" from Tools -> Board menu.
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Don't have "Inkplate 6(ESP32)" option? Follow our tutorial and add it:
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https://e-radionica.com/en/blog/add-inkplate-6-to-arduino-ide/
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This example will show you how you can read temperature, humidity, air pressure and gas data from BME680.
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In order to compile this example successfuly, you will also need to download and install
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Adafruit BME680 library: https://github.com/adafruit/Adafruit_BME680
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and Adafruit Sensor library ( https://github.com/adafruit/Adafruit_Sensor ).
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If you don't know how to install library you can read our tutorial https://e-radionica.com/en/blog/arduino-library/
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Want to learn more about Inkplate? Visit www.inkplate.io
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Looking to get support? Write on our forums: http://forum.e-radionica.com/en/
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15 July 2020 by e-radionica.com
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*/
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2020-09-14 12:07:34 +02:00
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#include "Inkplate.h" //Include Inkplate library to the sketch
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#include <Adafruit_Sensor.h> //Adafruit library for sensors
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#include "Adafruit_BME680.h" //Adafruit library for BME680 Sensor
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2020-09-07 11:40:01 +02:00
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2020-09-14 12:07:34 +02:00
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Inkplate display(INKPLATE_1BIT); //Create an object on Inkplate library and also set library into 1 Bit mode (Monochrome)
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Adafruit_BME680 bme; //Create an object on Adafruit BME680 library
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//(with no arguments sent to constructor, that means we are using I2C communication for BME680 sensor)
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2020-09-07 11:40:01 +02:00
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2020-09-14 12:07:34 +02:00
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int n = 0; //Variable that keep track on how many times screen has been partially updated
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void setup()
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{
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display.begin(); //Init Inkplate library (you should call this function ONLY ONCE)
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display.clearDisplay(); //Clear frame buffer of display
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display.display(); //Put clear image on display
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display.setTextSize(2); //Set text scaling to two (text will be two times bigger than normal)
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2020-09-07 11:40:01 +02:00
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2020-09-14 12:07:34 +02:00
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if (!bme.begin(0x76))
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{ //Init. BME680 library. e-radionica.com BME680 sensor board uses 0x76 I2C address for sensor
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2020-09-07 11:40:01 +02:00
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display.println("Sensor init failed!");
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display.println("Check sensor wiring/connection!");
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display.partialUpdate();
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2020-09-14 12:07:34 +02:00
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while (1)
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;
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2020-09-07 11:40:01 +02:00
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}
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//Set up oversampling and filter initialization for the sensor
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bme.setTemperatureOversampling(BME680_OS_8X);
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bme.setHumidityOversampling(BME680_OS_2X);
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bme.setPressureOversampling(BME680_OS_4X);
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bme.setIIRFilterSize(BME680_FILTER_SIZE_3);
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bme.setGasHeater(320, 150); // 320*C for 150 ms
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}
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2020-09-14 12:07:34 +02:00
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void loop()
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{
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if (!bme.performReading())
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{ //If sending command to start reading data fails, send error message to display
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2020-09-07 11:40:01 +02:00
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display.clearDisplay();
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display.setCursor(0, 0);
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display.print("Failed to read data from sensor");
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display.partialUpdate();
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2020-09-14 12:07:34 +02:00
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}
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else
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{ //Otherwise, clear frame buffer of epaper display
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display.clearDisplay(); //Print out new data
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2020-09-07 11:40:01 +02:00
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display.setCursor(0, 0);
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display.print("Air temperature: ");
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display.print(bme.temperature);
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display.println(" *C");
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display.print("Air pressure: ");
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display.print(bme.pressure / 100.0);
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display.println(" hPa");
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display.print("Air humidity: ");
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display.print(bme.humidity);
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display.println(" %");
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display.print("Gas sensor resistance: ");
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display.print(bme.gas_resistance / 1000.0);
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display.println(" kOhms");
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2020-09-14 12:07:34 +02:00
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if (n > 20)
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{ //If display has been partially updated more than 20 times, do a full refresh, otherwise, perform a partial update.
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2020-09-07 11:40:01 +02:00
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display.display();
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n = 0;
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2020-09-14 12:07:34 +02:00
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}
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else
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{
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2020-09-07 11:40:01 +02:00
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display.partialUpdate();
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n++;
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}
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}
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2020-09-14 12:07:34 +02:00
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delay(2000); //Wait a little bit between readings
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2020-09-07 11:40:01 +02:00
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}
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