arduino/LM35BH1750LCDI2C_ArduinoI2C/LM35BH1750LCDI2C_ArduinoI2C.ino
2015-08-26 01:39:01 +02:00

116 lines
2.7 KiB
C++

// Written 2015 by Johannes Findeisen <you@hanez.org>
#include <Wire.h>
#include <BH1750FVI.h>
#include <LiquidCrystal_I2C.h>
BH1750FVI LightSensor;
LiquidCrystal_I2C lcd(0x27, 16, 2); // set the LCD address to 0x27 for a 20 chars and 4 line display
// Define how many samples should be collected every $collectDelay miliseconds.
// After sample collection the temperature is beeing calculated and then
// send to the LCD.
int samples = 8;
// Collect delay between each sample.
int collectDelay = 1000;
// The pin where the status LED is connected to.
int ledPin = 13;
// The analog input pin where the LM35 is connected to.
int tempPin = 0;
// Just some variable initializations.
float tempC = 0;
float tempClast = 0;
float tempF = 0;
uint16_t lux = 0;
int photo = 0;
void setup()
{
pinMode(ledPin, OUTPUT);
Wire.begin();
LightSensor.begin();
LightSensor.SetAddress(Device_Address_L); // Address 0x23
LightSensor.SetMode(Continuous_H_resolution_Mode);
lcd.init();
lcd.backlight();
// Get data for the first time.
// Read this to understand the temperature calculation:
// http://www.danielandrade.net/2008/07/05/temperature-sensor-arduino/
tempC = (5.0 * analogRead(tempPin) * 100.0) / 1024.0;
tempClast = tempC;
// Celsius to Fahrenheit conversion
tempF = (tempC * 9) / 5 + 32;
// Get light sensor data
lux = LightSensor.GetLightIntensity();
// Get data from other Arduino on 0x07
read_wire();
// Refresh the LCD output
lcd_refresh();
}
void loop()
{
int i;
tempC = 0;
for (i = 0; i <= (samples - 1); i++) {
tempC = tempC + ((5.0 * analogRead(tempPin) * 100.0) / 1024.0);
digitalWrite(ledPin, HIGH);
delay((collectDelay / 2));
digitalWrite(ledPin, LOW);
delay((collectDelay / 2));
}
// Calculate temperature
tempC = tempC / (float)samples;
// Celsius to Fahrenheit conversion.
tempF = (tempC * 9) / 5 + 32;
// Get light sensor data
lux = LightSensor.GetLightIntensity();
// Get data from I2C attached Arduino
read_wire();
// Print results to the display.
lcd_refresh();
// Remember current temperature for next run.
tempClast = tempC;
}
// Prints results to the display
void lcd_refresh() {
lcd.clear();
lcd.setCursor(0, 0);
lcd.print(lux);
lcd.print("Lux/");
lcd.print(photo);
lcd.print((char)0b11110100); // Thats the sign for Ohm but the value is not Ohm. I use this sign to represent the photo resister value
lcd.setCursor(0, 1);
lcd.print(tempC);
lcd.print((char)223); // ASCII code 223 = "°"
lcd.print("C/");
lcd.print(tempF);
lcd.print((char)223); // ASCII code 223 = "°"
lcd.print("F");
}
void read_wire() {
Wire.requestFrom(7, 1); // request 1 bytes from slave device #7
photo = Wire.read();
}