SKU: OT6683 Número de artículo: XR792 EAN: 8720828223475
MAX7219 es un IC que se utiliza para controlar paneles LED de cátodo común, pantallas de 7 segmentos e indicadores de nivel que se comunican a través de la interfaz SPI. Esta placa tiene una pantalla LED de matriz de puntos 8x8. Se pueden encadenar varios módulos mediante conexiones de cabecera.
Especificaciones:
Así conectas el Módulo matriz LED MAX7219 Azul a un Arduino UNO o ESP32, con un sketch de ejemplo que puedes subir directamente.
Este proyecto demuestra cómo controlar una matriz LED 8x8 usando el chip controlador MAX7219. El sketch despierta la matriz, ajusta un nivel de brillo cómodo y anima un punto rebotando por todas las filas y columnas.
/*
* ==================================================================
* 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);
}
}
}
Bibliotecas necesarias: LedControl 1.0.6
Wiring diagram and example code generated by Codey.online — https://www.codey.online
Este proyecto muestra patrones y animaciones personalizados en un módulo de matriz LED MAX7219 8x8 usando SPI por hardware. El ESP32 se comunica con el controlador a través de GPIO 23 (MOSI/DIN), GPIO 18 (SCK/CLK) y GPIO 5 (CS), alimentando la pantalla directamente desde el pin 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