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@ -39,10 +39,10 @@ VCC | GND
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```
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```
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The following pins are used:
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The following pins are used:
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* GPIO4 PM1006 particle sensor
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* GPIO4 PM1006 particle sensor PIN REST on Vindriktning board
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* GPIO2 WS2812 stripe out of three LEDs, replacing the original LEDs at front
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* GPIO2 WS2812 stripe out of three LEDs, replacing the orignal LEDs at front
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* GPIO15 Red LED (optional)
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* GPIO15 Red LED (optional)
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* GPIO12 Green LED (optional)
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* GPIO12 Green LED (optional) Used as 3.3V Supply for the I2C sensor
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* GPIO13 Blue LED (optional)
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* GPIO13 Blue LED (optional)
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* GPIO13 VCC of I2C (3.3 V)
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* GPIO13 VCC of I2C (3.3 V)
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* GPIO14 I2C clock
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* GPIO14 I2C clock
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@ -55,4 +55,6 @@ The following pins are used:
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* some wire
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* some wire
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# Sources
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# Sources
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For the Witty board
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* [https://github.com/amkuipers/witty Witty pinout]
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* [https://github.com/amkuipers/witty Witty pinout]
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* [https://arduino.ua/products_pictures/large_AOC361-5.jpg Schematics]
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@ -36,7 +36,7 @@
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#define SENSOR_PM1006_RX D2 /**< GPIO4 */
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#define SENSOR_PM1006_RX D2 /**< GPIO4 */
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#define SENSOR_PM1006_TX -1 /**< Unused */
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#define SENSOR_PM1006_TX -1 /**< Unused */
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#define WITTY_RGB_R D8 /**< GPIO15 */
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#define WITTY_RGB_R D8 /**< GPIO15 */
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#define WITTY_RGB_G D6 /**< GPIO12 */
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#define WITTY_RGB_G D6 /**< GPIO12 Used as 3.3V Power supply for the I2C Sensor */
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#define WITTY_RGB_B D7 /**< GPIO13 */
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#define WITTY_RGB_B D7 /**< GPIO13 */
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#define PM1006_BIT_RATE 9600
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#define PM1006_BIT_RATE 9600
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#define PM1006_MQTT_UPDATE 5000 /**< Check the sensor every 10 seconds; New measurement is done every 20seconds by the sensor */
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#define PM1006_MQTT_UPDATE 5000 /**< Check the sensor every 10 seconds; New measurement is done every 20seconds by the sensor */
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@ -242,7 +242,9 @@ void bmpPublishValues() {
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gasNode.setProperty(NODE_GAS).send(String((bmx.gas_resistance / 1000.0)));
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gasNode.setProperty(NODE_GAS).send(String((bmx.gas_resistance / 1000.0)));
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humidityNode.setProperty(NODE_HUMIDITY).send(String(bmx.humidity));
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humidityNode.setProperty(NODE_HUMIDITY).send(String(bmx.humidity));
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#endif
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#endif
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log(MQTT_LEVEL_DEBUG, String("Temp" + String(bmx.readTemperature()) + "\tPressure:" +
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String(bmx.readPressure() / 100.0F) + "\t Altitude:"+
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String(bmx.readAltitude(SEALEVELPRESSURE_HPA))), MQTT_LOG_I2READ);
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if ( (rgbTemp.get()) && (!mSomethingReceived) ) {
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if ( (rgbTemp.get()) && (!mSomethingReceived) ) {
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if (bmx.readTemperature() < TEMPBORDER) {
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if (bmx.readTemperature() < TEMPBORDER) {
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strip.setPixelColor(0, strip.Color(0,0,255));
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strip.setPixelColor(0, strip.Color(0,0,255));
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@ -418,6 +420,8 @@ void setup()
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strip.show();
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strip.show();
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digitalWrite(WITTY_RGB_B, HIGH);
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digitalWrite(WITTY_RGB_B, HIGH);
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} else {
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} else {
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digitalWrite(WITTY_RGB_R, HIGH);
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digitalWrite(WITTY_RGB_G, LOW);
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strip.fill(strip.Color(128,0,0));
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strip.fill(strip.Color(128,0,0));
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for (int i=0;i < (PIXEL_COUNT / 2); i++) {
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for (int i=0;i < (PIXEL_COUNT / 2); i++) {
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strip.setPixelColor(0, strip.Color(0,0,128));
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strip.setPixelColor(0, strip.Color(0,0,128));
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@ -464,4 +468,5 @@ void log(int level, String message, int statusCode)
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Homie.getMqttClient().publish(logTopic, 2, false, buffer.c_str());
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Homie.getMqttClient().publish(logTopic, 2, false, buffer.c_str());
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delete logTopic;
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delete logTopic;
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}
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}
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Homie.getLogger() << (level) << "@" << (statusCode) << " " << (message) << endl;
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}
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}
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