AHT10/examples/AHT10_AVR_LCD_i2c/AHT10_AVR_LCD_i2c.ino
2020-03-20 18:59:33 -04:00

130 lines
5.0 KiB
C++

/***************************************************************************************************/
/*
This is an Arduino library for Aosong ASAIR AHT10, AHT15 Digital Humidity & Temperature Sensor
written by : enjoyneering79
sourse code: https://github.com/enjoyneering/
This chip uses I2C bus to communicate, specials pins are required to interface
Board: SDA SCL Level
Uno, Mini, Pro, ATmega168, ATmega328..... A4 A5 5v
Mega2560................................. 20 21 5v
Due, SAM3X8E............................. 20 21 3.3v
Leonardo, Micro, ATmega32U4.............. 2 3 5v
Digistump, Trinket, ATtiny85............. 0/physical pin no.5 2/physical pin no.7 5v
Blue Pill, STM32F103xxxx boards.......... PB7 PB6 3.3v/5v
ESP8266 ESP-01........................... GPIO0/D5 GPIO2/D3 3.3v/5v
NodeMCU 1.0, WeMos D1 Mini............... GPIO4/D2 GPIO5/D1 3.3v/5v
ESP32.................................... GPIO21/D21 GPIO22/D22 3.3v
Frameworks & Libraries:
ATtiny Core - https://github.com/SpenceKonde/ATTinyCore
ESP32 Core - https://github.com/espressif/arduino-esp32
ESP8266 Core - https://github.com/esp8266/Arduino
STM32 Core - https://github.com/stm32duino/Arduino_Core_STM32
- https://github.com/rogerclarkmelbourne/Arduino_STM32
GNU GPL license, all text above must be included in any redistribution,
see link for details - https://www.gnu.org/licenses/licenses.html
*/
/***************************************************************************************************/
#include <Wire.h>
#include <AHT10.h>
#include <LiquidCrystal_I2C.h> //https://github.com/enjoyneering/LiquidCrystal_I2C
#define LCD_ROWS 4 //qnt. of lcd rows
#define LCD_COLUMNS 20 //qnt. of lcd columns
#define DEGREE_SYMBOL 0xDF //degree symbol from LCD ROM
uint8_t readStatus = 0;
const uint8_t temperature_icon[8] PROGMEM = {0x04, 0x0A, 0x0A, 0x0E, 0x0E, 0x1F, 0x1F, 0x0E}; //PROGMEM saves variable to flash & keeps dynamic memory free
const uint8_t humidity_icon[8] PROGMEM = {0x04, 0x0E, 0x0E, 0x1F, 0x1F, 0x1F, 0x0E, 0x00};
const uint8_t plus_minus_icon[8] PROGMEM = {0x00, 0x04, 0x0E, 0x04, 0x00, 0x0E, 0x00, 0x00};
AHT10 myAHT10(AHT10_ADDRESS_0X38);
LiquidCrystal_I2C lcd(PCF8574_ADDR_A21_A11_A01, 4, 5, 6, 16, 11, 12, 13, 14, POSITIVE);
void setup()
{
Serial.begin(115200);
Serial.println();
/* LCD connection check */
while (lcd.begin(LCD_COLUMNS, LCD_ROWS) != true) //20 colums, 4 rows
{
Serial.println(F("PCF8574 is not connected or lcd pins declaration is wrong. Only pins numbers: 4,5,6,16,11,12,13,14 are legal."));
delay(5000);
}
/* AHT10 connection check */
while (myAHT10.begin() != true)
{
lcd.print(F("AHT10 Error")); //(F()) saves string to flash & keeps dynamic memory free
Serial.println(F("AHT10 not connected or fail to load calibration coefficient"));
delay(5000);
}
//Wire.setClock(400000); //experimental I2C speed! 400KHz, default 100KHz
lcd.clear();
lcd.print(F("AHT10 OK"));
delay(2000);
lcd.clear();
/* load custom symbol to CGRAM */
lcd.createChar(0, temperature_icon);
lcd.createChar(1, humidity_icon);
lcd.createChar(2, plus_minus_icon);
/* prints static text */
lcd.setCursor(0, 0);
lcd.write(0); //print custom tempereture symbol from CGRAM
lcd.setCursor(0, 1); //set 1-st colum & 2-nd row, first colum & row started at zero
lcd.write(1); //print custom humidity symbol from CGRAM
}
void loop()
{
readStatus = myAHT10.readRawData(); //read 6 bytes from AHT10 over I2C
/* prints dynamic temperature data */
lcd.setCursor(1, 0);
if (readStatus != AHT10_ERROR)
{
lcd.print(myAHT10.readTemperature(AHT10_USE_READ_DATA)); //use previously read 6 bytes
lcd.write(2); //print custom plus/minus symbol
lcd.print(F("0.3"));
lcd.write(DEGREE_SYMBOL); //print degree symbol from the LCD ROM
lcd.print(F("C "));
}
else
{
lcd.print(F("i2c error "));
}
/* prints dynamic humidity data */
lcd.setCursor(1, 1);
if (readStatus != AHT10_ERROR)
{
lcd.print(myAHT10.readHumidity(AHT10_USE_READ_DATA)); //use previously read 6 bytes
lcd.write(2);
lcd.print(F("2% "));
}
else
{
lcd.print(F("i2c error "));
}
delay(10000); //recomended polling frequency 8sec..30sec
}