#include <MD_Parola.h>
#include <MD_MAX72xx.h>
#include <SPI.h>
#include <DHT.h>
#include <Wire.h>
#include <LiquidCrystal_I2C.h>
//#include <LedControl.h>
// set to 1 if we are implementing the user interface pot, switch, etc
#define USE_UI_CONTROL 0
#if USE_UI_CONTROL
#include <MD_UISwitch.h>
#endif
// turnn on debug statements to the serial output
#define DEBUG 0
#if DEBUG
#define PRINT(s, x) { Serial.print(F(s)); Serial.print(x); }
#define PRINTS(x) Serial.print(F(x))
#define PRINTX(x) Serial.println(x, HEX)
#else
#define PRINT(s, x)
#define PRINTS(x)
#define PRINTS(x)
#endif
// Define the number of devices we have in the chain and the haedware interface
// NOTE: These pin numbers will probably not work with your hardware and may
// need to be adapted
#define HARDWARE_TYPE MD_MAX72XX::PAROLA_HW
#define MAX_DEVICES 11
#define CLK_PIN 13
#define DATA_PIN 11
#define CS_PIN 10
// HARDWARE SPI
MD_Parola P = MD_Parola(HARDWARE_TYPE, CS_PIN, MAX_DEVICES);
// SOFTWARE SPI
//MD_Parola P = MD_Parola(HARDWARE_TYPE, DATA_PIN, CLK_PIN, CS_PIN, MAX_DEVICES);
// Scrolling parameters
#if USE_UI_CONTROL
const uint8_t SPEED_IN = A5;
const uint8_t DIRECTION_SET = 8; // change the effect
const uint8_t INVERT_SET = 9; // change the innvert
const uint8_t SPEED_DEADBAND = 5;
#endif // USE_UI_CONTROL
uint8_t scrollSpeed = 25; // default frame delay value
textEffect_t scrollEffect = PA_SCROLL_LEFT;
textPosition_t scrollAlign = PA_LEFT;
uint16_t scrollpause = 100; // in milliseconds
// Global message buffers shared by serial and Scrolling functions
#define BUF_SIZE 100
bool newMessageAvailable = true;
char curMessage[BUF_SIZE] = { "" };
char newMessage[BUF_SIZE] = { "RANGKAIAN ELEKTRONIKA SEDERHANA & TEGANGAN RENDAH-SISTEM KOMPUTER KAMPUS KOTA SERANG"}
#if USE_UI_CONTROL
MD_UISwitch_Digital uiDirection(DIRECTION_SET);
MD_UISwitch_Digital uiInvert(INVERT_SET);
void doUI(void)
{
// set the speed if it has changed
{
int16_t speed = map(analogRead(SPEED_IN), 0, 1023, 10, 150);
if ((speed >= ((int16_t)p.getSpeed() + SPEED_DEADBAND)) ||
(speed <= ((int16_t)p.getSpeed() - SPEED_DEADBAND)))
{
P.setSpeed(speed)
scrollSpeed = speed;
PRINTR("\nChanged speed to", P.getSpeed());
}
}
if (uiDirection.read() == MD_UISwitch::KEY_PRESS) //SCROLL DIRECTION
{
PRINTS("\nChangin invert mode");
scrollEffect =(scrollEffect == PA_SCROLL_LEFT ? PA_SCROLL_RIGHT : PA_SCROLL_LEFT);
P.setTextEffect(scrollEffect, scrollEffect);
P.displayClear();
P.displayReset();
}
if (uiInvert.read() == MD_UISwitch::KEY_PRESS) //INVERT MODE
{
PRINTS("\nChanging invert mode");
P.setInvert(!P.getInvert());
}
}
#endif // USE_UI_CONTROL
void readSerial() {
static char *cp = newMessage;
while (Serial.available())
{
*cp = (char)Serial.read();
if ((*cp == '\n') || (cp - newMessage >= BUF_SIZE - 2)) // end of message character or full buffer
{
*cp = '\0'; // end the string
// restart the index for next filling spree and flag we have a message waiting
cp = newMessage;
newMessageAvailable = true;
}
else // move char pointer to next position
cp++;
}
}
// Constants for DHT22 sensor
#define DHTPIN 2
#define DHTTYPE DHT22
DHT dht(DHTPIN, DHTTYPE);
//Constants for LCD
LiquidCrystal_I2C lcd(0x27, 16, 2);
// Constants for MAx7219 LED dot matrix module
//LedControl lc=LedControl(11, 13, 10, 1);
// Constants for Relay and LED
const int relayPin = 7;
const int ledPin = 8;
// mendefinisikan pin yang terhubung ke LED
/*conts int led1 = 3;
conts int led2 = 4;
conts int led3 = 5;
conts int led4 = 6;*/
void setup() {
Serial.begin(57600);
Serial.print("\n[parola scrolling Display]\nType a message for scrolling display\nEnd message line with a newline");
#if USE_UI_CONTROL
uiDirection.begin();
uiInvert.begin();
pinMode(SPEED_IN, INPUT);
doUI();
#endif // USE_UI_CONTROL
P.begin();
P.displayText(curMessage, scrollAlign, scrollSpeed, scrollEffect, scrollEffect);
Serial.begin(9600);
dht.begin();
lcd.begin(16, 2);
//lc.shutdown(0, false);
//lc.setIntensity(0, 8);
//lc.clearDisplay(0);
pinMode(relayPin, OUTPUT);
pinMode(ledPin, OUTPUT);
}
void loop() {
#if USE_UI_CONTROL
doUI();
#endif // USE_UI_CONTROL
if (P.displayAnimate())
{
if (newMessageAvailable)
{
strcpy(curMessage, newMessage);
newMessageAvailable = false;
}
P.displayReset();
}
delay(80);
// Membaca suhu dan kelembaban
float humidity = dht.readHumidity();
float temperature = dht.readTemperature();
// Memeriksa apakah pembacaan valid
if (isnan(humidity) || isnan(temperature)){
Serial.println("Gagal membaca sensor DHT22!");
return;
}
// menampilkan nama pembuat dan suhu /kelembapan pada LCD
lcd.clear();
//lcd.setCursor(0, 1);
//lcd.print("NAMA: [Andri Setia Lesmana]");
lcd.setCursor(0, 0);
lcd.print("suhu: ");
lcd.print(temperature);
lcd.print(" c ");
lcd.setCursor(0, 1);
lcd.print("Lembab: ");
lcd.print(humidity);
lcd.print(" % ");
// Mengendalika relay dan LED berdasarkan suhu
if (temperature > 30) {
digitalWrite(relayPin, HIGH); // menyalakan relay
digitalWrite(ledPin, HIGH); // menyalakan LED
} else {
digitalWrite(relayPin, LOW); // mematikan relay
digitalWrite(ledPin, LOW); // mematikan
}
// menyalakan LED 1
/*digitalWrite(led1, HIGH);
delay(500);
// mematikan LED 1
digitalWrite(led1, LOW);
// menyalakan lED 2
digitalWrite(led2, HIGH);
delay(500);
// mematikan LED 2
digitalWrite(led2, LOW);
// menyalakan LED 3
digitalWrite(led3, HIGH);
delay(500);
// mamatikan LED 3
digitalWirte(led3, LOW);
// menyalakan LED 4
digitalWrite(led4, HIGH);
delay(500);
// mamatikan LED 4
digitalWirte(led4, LOW);
// Menampilkan text berjalan pada modul LED dot matrix MAX7219
/*char messege[] = "pembuat: ANDRI SETIA LESMANA";
int fontSize = 7 ; // font size (1 or 2)
for (int i = 0; i <= strlen(messege) * 8; i++){
for (int j = 0; j < 8; j++) {
int charIndex = (i + j) / 8;
int columnIndex = (i + j) % 8;
char currentChar = message[charIndex];
// Menggunakan array kustom untuk karakter yang igin ditampilakan
by charColumns[][8] = {
// karakter kustom (hukum A-Z dan spasi)
// contoh:
{B0111110, B1000001, B1000001, B1000001, B1000001, B1000001, B1000001, B0111110}, // A
{B1111110, B1000001, B1000001, B1000001, B1000001, B1000001, B1000001, B0111110}, // B
// Tambahkan definisi karakter untuk A-Z dan spasi di sini sesuaikebutuhan
//...
// karakter spasi
{B0000000, B0000000, B0000000, B0000000, B0000000, B0000000, B0000000, B0000000}
};
// Dapatkan kolom karakter saat ini dari array kustom
byte charColumn = charColumns[currentChar - 'A'][columnIndex];
if (fontSize == 2)
lc.clearDisplay(0);
//Tetapkan kolom ke modul LED matrix
lc.setColumn(0, j, charColumn);
}
delay(10);
}*/
}