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36bf6b886a
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f965ba8fb2
7 changed files with 8 additions and 143 deletions
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25
README.md
25
README.md
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@ -3,31 +3,8 @@
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A tiny tank cooler.
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A tiny tank cooler.
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Used components:
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Used components:
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----------------
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Arduino nano (old bootloader)
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Arduino nano
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PC fan 120mm 5V
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PC fan 120mm 5V
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PWM D4184 MOS breakout board
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PWM D4184 MOS breakout board
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USB-C connector
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USB-C connector
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Connections:
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------------
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USB-C D+ <-> Pin4 CH430 chip
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USB-C D- <-> Pin5 CH430 chip
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VIN <-> PWM board (+)
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VIN <-> USB-C V+
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GND <-> USB-C GND
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GND <-> BMP280 breakout board GND
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GND <-> PWM breakout board GND
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D9 <-> PWM Pin of the breakout board
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A4 <-> SCL pin of BMP280 breakout board
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A5 <-> SDA pin of BMP280 breakout board
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PWM board load <-> PC fan (+)
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PWM board GNC <-> PC fan (-)
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@ -1,73 +0,0 @@
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#define FAN_PIN 9 // D9
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#define L_LED_PIN 13 // D13
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#define BMP280_I2C_ADDRESS 0x76 // BMP280 conneciton: D1 = SCL; D2 = SDA
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// minimum value to start both fan's is 110
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// without queeking noise is 255
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#define FAN_ON_TEMP 26.0
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#define FAN_OFF_MAX_TEMP 25.0
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#define FAN_ON_STATE HIGH
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#define FAN_OFF_STATE LOW
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#define BMP280_CHECK_INTERVAL_MS 2000 // every 60000 = 60 seconds
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float bmp280_temp = -99.9;
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uint32_t bmp280_lastcheck_millis = BMP280_CHECK_INTERVAL_MS;
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uint8_t fan_state = LOW;
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float sensor_bmp280_temperature();
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void setup()
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{
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// put your setup code here, to run once:
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// setup serial
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Serial.begin(115200);
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Serial.println();
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delay(1000);
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// setup BMP280
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Serial.println("Sensor BMP280 init status: " + String(sensor_bmp280_begin(BMP280_I2C_ADDRESS)));
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bmp280_temp = sensor_bmp280_temperature();
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// setup FAN Pin
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pinMode(FAN_PIN, OUTPUT);
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pinMode(L_LED_PIN, OUTPUT);
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}
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void loop()
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{
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// put your main code here, to run repeatedly:
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if ((bmp280_lastcheck_millis + BMP280_CHECK_INTERVAL_MS) <= millis())
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{
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bmp280_temp = sensor_bmp280_temperature();
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Serial.println("Temperature: " + String(bmp280_temp) + "°C");
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digitalWrite(L_LED_PIN, HIGH);
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if (fan_state > 0 && bmp280_temp <= FAN_OFF_MAX_TEMP)
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{
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fan_state = FAN_OFF_STATE; // off
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}
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if (bmp280_temp >= FAN_ON_TEMP)
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{
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fan_state = FAN_ON_STATE;
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}
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Serial.println("FAN state: " + String(fan_state));
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digitalWrite(FAN_PIN, fan_state);
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digitalWrite(L_LED_PIN, LOW);
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bmp280_lastcheck_millis = millis();
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}
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}
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@ -1,39 +0,0 @@
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#include <Adafruit_BMP280.h> // Install from library manager - sensor board info: https://www.bastelgarage.ch/bmp280-temperatur-luftdruck-sensor
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Adafruit_BMP280 _sensor_bmp280;
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Adafruit_Sensor *_sensor_bmp280_temp = _sensor_bmp280.getTemperatureSensor();
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Adafruit_Sensor *_sensor_bmp280_pressure = _sensor_bmp280.getPressureSensor();
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#define BPM280_TEMP_FACTOR 1.0
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bool sensor_bmp280_begin(uint8_t addr) {
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bool status = _sensor_bmp280.begin(addr);
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if (status) {
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Serial.println("BMP280 Connected");
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_sensor_bmp280.setSampling(Adafruit_BMP280::MODE_NORMAL, /* Operating Mode. */
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Adafruit_BMP280::SAMPLING_X2, /* Temp. oversampling */
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Adafruit_BMP280::SAMPLING_X16, /* Pressure oversampling */
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Adafruit_BMP280::FILTER_X16, /* Filtering. */
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Adafruit_BMP280::STANDBY_MS_500); /* Standby time. */
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} else {
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Serial.println("Could not find a valid BMP280 sensor, check wiring or try a different address!");
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Serial.println("SensorID was: " + String(_sensor_bmp280.sensorID()));
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Serial.println(" ID of 0xFF probably means a bad address, a BMP180 or BMP085");
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Serial.println(" ID of 0x56-0x58 represents a BMP280,");
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Serial.println(" ID of 0x60 represents a BME280,");
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Serial.println(" ID of 0x61 represents a BME680.");
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}
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return status;
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}
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float sensor_bmp280_temperature() {
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sensors_event_t temp_event, pressure_event;
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_sensor_bmp280_temp->getEvent(&temp_event);
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return temp_event.temperature * BPM280_TEMP_FACTOR;
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}
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