Arduino Weather station with BME280 sensor and NOKIA 5110 LCD
- Arduino board
- Nokia 5110 LCD screen
- BME280 sensor module with 3.3V regulator and level shifter —-> BME280 datasheet
- 5 x 3.3k ohm resistor
- 5 x 2.2k ohm resistor
- Breadboard
- Jumper wires


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#include <SPI.h> // include SPI library
#include <Adafruit_GFX.h> // include adafruit graphics library
#include <Adafruit_PCD8544.h> // include adafruit PCD8544 (Nokia 5110) library
#include <Adafruit_BME280.h> // include adafruit library for BME280 sensor
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// Nokia 5110 LCD module connections (CLK, DIN, D/C, CS, RST)
Adafruit_PCD8544 display = Adafruit_PCD8544(7, 6, 5, 4, 3);
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// define device I2C address: 0x76 or 0x77 (0x77 is library default address)
#define BME280_I2C_ADDRESS 0x76
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bme280.begin(BME280_I2C_ADDRESS)
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// get temperature, pressure and altitude from library
float temp = bme280.readTemperature(); // get temperature
float humidity = bme280.readHumidity(); // get humidity in %
float pressure = bme280.readPressure() / 100; // get pressure
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/*
* Arduino weather station using BME280 sensor and Nokia 5110 LCD.
* BME280 is barometric pressure, temperature and humidity sensor.
* This is a free software with NO WARRANTY.
* http://simple-circuit.com/
*/
#include <SPI.h> // include SPI library
#include <Adafruit_GFX.h> // include adafruit graphics library
#include <Adafruit_PCD8544.h> // include adafruit PCD8544 (Nokia 5110) library
#include <Adafruit_BME280.h> // include adafruit library for BME280 sensor
// Nokia 5110 LCD module connections (CLK, DIN, D/C, CS, RST)
Adafruit_PCD8544 display = Adafruit_PCD8544(7, 6, 5, 4, 3);
// define device I2C address: 0x76 or 0x77 (0x77 is library default address)
#define BME280_I2C_ADDRESS 0x76
Adafruit_BME280 bme280;
void setup()
{
// initialize the display
display.clearDisplay(); // clear the screen and buffer
display.begin();
// you can change the contrast around to adapt the display
// for the best viewing!
display.setContrast(50);
display.setTextSize(1);
display.setTextColor(BLACK, WHITE);
if ( !bme280.begin(BME280_I2C_ADDRESS) )
{ // connection error!
display.setCursor(0, 0);
display.println("Connection");
display.print("error!");
display.display();
while (1); // stay here!
}
display.setCursor(7, 0);
display.print("TEMPERATURE:");
display.setCursor(16, 16);
display.print("HUMIDITY:");
display.setCursor(16, 33);
display.print("PRESSURE:");
display.display();
}
// variable declaration
char text[12];
// main loop
void loop()
{
// get temperature and pressure from library
float temp = bme280.readTemperature(); // get temperature in degree Celsius
float humidity = bme280.readHumidity(); // get humidity in %
float pressure = bme280.readPressure() / 100; // get pressure in hPa
// print data on the LCD screen
// 1: print temperature
display.setCursor(15, 8);
if(temp >= 0)
display.print(' ');
else
display.print('-');
sprintf(text, "%02u.%02u C", (int)abs(temp), (int)(abs(temp) * 100) % 100);
display.print(text);
display.drawRect(53, 8, 3, 3, BLACK); // print degree symbol ( ° )
// 2: print humidity
sprintf(text, "%02u.%02u %%", (int)humidity, (int)(humidity * 100) % 100);
display.setCursor(21, 24);
display.print(text);
// 3: print pressure
sprintf(text, "%04u.%02u hPa", (int)pressure, (int)((uint32_t)(pressure * 100) % 100));
display.setCursor(9, 41);
display.print(text);
// now update the display
display.display();
delay(2000); // wait 2 seconds
}
// end of code.
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