SKU: OT6683 Číslo položky: XR792 EAN: 8720828223475
MAX7219 je IC používaný pro řízení LED panelů se společnou katodou, 7segmentových displejů a úrovňových indikátorů komunikujících přes rozhraní SPI. Tato deska má 8x8 LED displej s bodovou maticí. Více modulů lze řetězit pomocí headerových propojek.
Specifikace:
Takto připojíš LED Matrix Module MAX7219 Modrá k Arduino UNO nebo ESP32, s ukázkovým sketchem, který můžeš hned nahrát.
Tento projekt ukazuje, jak ovládat 8x8 LED matici pomocí řídicího čipu MAX7219. Sketch probudí matici, nastaví příjemnou úroveň jasu a animuje odrážející se bod přes všechny řádky a sloupce.
/*
* ==================================================================
* Generated by Codey.online — https://www.codey.online
* ==================================================================
* Project : MAX7219 8x8 LED Matrix Display Demo
* Board : Arduino UNO (arduino:avr:uno)
* Parts : LED Matrix Module MAX7219
* Libraries : LedControl 1.0.6
*
* Codey Online is an AI-powered browser IDE for Arduino and ESP32.
* Describe your project and Codey writes the code, draws the wiring
* diagram and uploads it to your board, straight from the browser.
* This code is free to use, modify and share, without warranty.
* ==================================================================
*/
#include <LedControl.h>
const int DIN_PIN = 11;
const int CLK_PIN = 13;
const int CS_PIN = 10;
// Create LedControl instance: LedControl(DIN, CLK, CS, number_of_matrices)
LedControl lc = LedControl(DIN_PIN, CLK_PIN, CS_PIN, 1);
// 8x8 bitmap for a smile icon
const byte SMILE[8] = {
B00111100,
B01000010,
B10100101,
B10000001,
B10100101,
B10011001,
B01000010,
B00111100
};
// 8x8 bitmap for a heart icon
const byte HEART[8] = {
B00000000,
B01100110,
B11111111,
B11111111,
B01111110,
B00111100,
B00011000,
B00000000
};
void drawBitmap(const byte bitmap[]) {
for (int row = 0; row < 8; row++) {
lc.setRow(0, row, bitmap[row]);
}
}
void setup() {
Serial.begin(115200);
// Wake up MAX7219 from power-saving mode
lc.shutdown(0, false);
// Set medium brightness (0 to 15)
lc.setIntensity(0, 6);
// Clear the display
lc.clearDisplay(0);
Serial.println(F("MAX7219 Matrix initialized!"));
}
void loop() {
// Display Heart
drawBitmap(HEART);
delay(1500);
// Display Smile
drawBitmap(SMILE);
delay(1500);
// Pixel sweep effect
lc.clearDisplay(0);
for (int row = 0; row < 8; row++) {
for (int col = 0; col < 8; col++) {
lc.setLed(0, row, col, true);
delay(25);
lc.setLed(0, row, col, false);
}
}
}
Potřebné knihovny: LedControl 1.0.6
Wiring diagram and example code generated by Codey.online — https://www.codey.online
Tento projekt zobrazuje vlastní vzory a animace na 8x8 modulu LED matice MAX7219 pomocí hardware SPI. ESP32 komunikuje s driverem přes GPIO 23 (MOSI/DIN), GPIO 18 (SCK/CLK) a GPIO 5 (CS) a napájí displej přímo z pinu 5V VIN.
/*
* ==================================================================
* Generated by Codey.online — https://www.codey.online
* ==================================================================
* Project : MAX7219 LED Matrix Display with ESP32
* Board : ESP32 DEVKIT V1 (esp32:esp32:esp32doit-devkit-v1)
* Parts : LED Matrix Module MAX7219
* Libraries : none (built-in)
*
* Codey Online is an AI-powered browser IDE for Arduino and ESP32.
* Describe your project and Codey writes the code, draws the wiring
* diagram and uploads it to your board, straight from the browser.
* This code is free to use, modify and share, without warranty.
* ==================================================================
*/
#include <SPI.h>
const int CS_PIN = 5;
// MAX7219 register addresses
const byte REG_NOOP = 0x00;
const byte REG_DECODE = 0x09;
const byte REG_INTENSITY = 0x0A;
const byte REG_SCANLIMIT = 0x0B;
const byte REG_SHUTDOWN = 0x0C;
const byte REG_DISPTEST = 0x0F;
// Bitmaps for 8x8 graphics
const byte smile[8] = {
0b00111100,
0b01000010,
0b10100101,
0b10000001,
0b10100101,
0b10011001,
0b01000010,
0b00111100
};
const byte heart[8] = {
0b00000000,
0b01100110,
0b11111111,
0b11111111,
0b11111111,
0b01111110,
0b00111100,
0b00011000
};
void writeRegister(byte reg, byte data) {
digitalWrite(CS_PIN, LOW);
SPI.transfer(reg);
SPI.transfer(data);
digitalWrite(CS_PIN, HIGH);
}
void clearDisplay() {
for (byte row = 1; row <= 8; row++) {
writeRegister(row, 0x00);
}
}
void drawBitmap(const byte bitmap[8]) {
for (byte row = 0; row < 8; row++) {
writeRegister(row + 1, bitmap[row]);
}
}
void setup() {
pinMode(CS_PIN, OUTPUT);
digitalWrite(CS_PIN, HIGH);
// Initialize hardware SPI (VSPI: SCK=18, MOSI=23)
SPI.begin();
// Configure MAX7219
writeRegister(REG_DISPTEST, 0x00); // Normal operation
writeRegister(REG_SCANLIMIT, 0x07); // Scan all 8 digits/rows
writeRegister(REG_DECODE, 0x00); // No BCD decoding (raw matrix mode)
writeRegister(REG_INTENSITY, 0x04); // Brightness (0x00 to 0x0F)
writeRegister(REG_SHUTDOWN, 0x01); // Wake up module
clearDisplay();
}
void loop() {
// Display smiley face
drawBitmap(smile);
delay(2000);
// Display heart
drawBitmap(heart);
delay(2000);
// Row sweep animation
clearDisplay();
for (byte i = 1; i <= 8; i++) {
writeRegister(i, 0xFF);
delay(100);
}
for (byte i = 1; i <= 8; i++) {
writeRegister(i, 0x00);
delay(100);
}
}
Wiring diagram and example code generated by Codey.online — https://www.codey.online