Difference between revisions of "Arduino::LEDControl"
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LEDControl bobliotēka - programmatūra, lai ar Arduino varetu darbinat 8x8 LED matricu, ko vada MAX7219 vai MAX7221 kontrolieris. |
LEDControl bobliotēka - programmatūra, lai ar Arduino varetu darbinat 8x8 LED matricu, ko vada MAX7219 vai MAX7221 kontrolieris. |
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== Draiveris == |
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[https://www.dropbox.com/s/xhmao0hcd1fgd21/max7219.h?dl=1 Max7219.h] draivera kods: |
[https://www.dropbox.com/s/xhmao0hcd1fgd21/max7219.h?dl=1 Max7219.h] draivera kods: |
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//===== |
//=================================== |
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// MAX 7219 easy driver |
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// |
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// Assume the following connection to the Arduino pins: |
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// |
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// VCC => Arduino 5V |
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// GND => Arduino GND |
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// DIN => Arduino 11 |
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// CS => Arduino 10 |
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// CLK => Arduino 13 |
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//=================================== |
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#include <SPI.h> |
#include <SPI.h> |
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// You may redefine this pin |
// You may redefine this pin |
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#ifndef |
#ifndef SS_PIN |
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#define SS_PIN 10 |
#define SS_PIN 10 |
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#endif |
#endif |
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//------------------------------------------ |
//------------------------------------------ |
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void max72SendCMD(uint8_t address, uint8_t value) { |
void max72SendCMD(uint8_t address, uint8_t value) { |
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digitalWrite(SS_PIN, LOW); |
digitalWrite(SS_PIN, LOW); |
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SPI.transfer(address); // Send address. |
SPI.transfer(address); // Send address. |
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SPI.transfer(value); // Send the value. |
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SPI.transfer(address); // Send address. |
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SPI.transfer(value); // Send the value. |
SPI.transfer(value); // Send the value. |
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digitalWrite(SS_PIN, HIGH); // Finish transfer. |
digitalWrite(SS_PIN, HIGH); // Finish transfer. |
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//------------------------------------------ |
//------------------------------------------ |
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// Send data to |
// Send data to one max7219 (matrix) |
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//------------------------------------------ |
//------------------------------------------ |
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void max72SendDATA(uint8_t address, uint8_t value |
void max72SendDATA(uint8_t address, uint8_t value) { |
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uint8_t i; |
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digitalWrite(SS_PIN, LOW); |
digitalWrite(SS_PIN, LOW); |
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SPI.transfer(address); // Send address. |
SPI.transfer(address); // Send address. |
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SPI.transfer(value); // Send the value. |
SPI.transfer(value); // Send the value. |
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SPI.transfer(address); // Send address. |
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SPI.transfer(v2); // Send the value. |
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digitalWrite(SS_PIN, HIGH); // Finish transfer. |
digitalWrite(SS_PIN, HIGH); // Finish transfer. |
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} |
} |
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max72SendCMD(MAX7219_SHUTDOWN, 0x01); // Turn on chip. |
max72SendCMD(MAX7219_SHUTDOWN, 0x01); // Turn on chip. |
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} |
} |
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//================ |
//================ |
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== Piemērs lietojuma programmai == |
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[https://www.dropbox.com/s/k77jv799rs8yt8n/leo-8x8matrix_random.ino?dl=1 Programma], kas izspīdina nejaušus punktus uz LED matricas |
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#include "max7219.h |
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Piemērs programmai, kas izspīdina nejaušus punktus uz LED matricas |
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//-------------------- |
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//-------------------- |
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void setup() |
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{ |
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Serial.begin(9600); |
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Serial.println("Debug MAX7219"); |
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max72Init(); |
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} |
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//-------------------- |
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//-------------------- |
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void loop() |
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{ |
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int i=0, ud=1; |
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for(;;) |
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{ |
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i += ud; |
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if (i>255) {ud=-1;i=255;} |
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if (i<0) {ud=1 ;i=0;} |
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if (row++>8) row=1; |
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max72SendDATA(row, random(0,255)); |
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max72SendCMD(MAX7219_BRIGHTNESS, i>>4); |
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delay(10); |
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} |
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} |
Latest revision as of 10:28, 1 November 2016
LEDControl bobliotēka - programmatūra, lai ar Arduino varetu darbinat 8x8 LED matricu, ko vada MAX7219 vai MAX7221 kontrolieris.
Draiveris
Max7219.h draivera kods:
//=================================== // MAX 7219 easy driver // // Assume the following connection to the Arduino pins: // // VCC => Arduino 5V // GND => Arduino GND // DIN => Arduino 11 // CS => Arduino 10 // CLK => Arduino 13 //=================================== #include <SPI.h> // You may redefine this pin #ifndef SS_PIN #define SS_PIN 10 #endif // MAX7219 SPI LED Driver #define MAX7219_TEST 0x0f // in real code put into a .h file #define MAX7219_BRIGHTNESS 0x0a // in real code put into a .h file #define MAX7219_SCAN_LIMIT 0x0b // in real code put into a .h file #define MAX7219_DECODE_MODE 0x09 // in real code put into a .h file #define MAX7219_SHUTDOWN 0x0C // in real code put into a .h file //------------------------------------------ // Send a command to max7219 //------------------------------------------ void max72SendCMD(uint8_t address, uint8_t value) { digitalWrite(SS_PIN, LOW); SPI.transfer(address); // Send address. SPI.transfer(value); // Send the value. digitalWrite(SS_PIN, HIGH); // Finish transfer. } //------------------------------------------ // Send data to one max7219 (matrix) //------------------------------------------ void max72SendDATA(uint8_t address, uint8_t value) { digitalWrite(SS_PIN, LOW); SPI.transfer(address); // Send address. SPI.transfer(value); // Send the value. digitalWrite(SS_PIN, HIGH); // Finish transfer. } //------------------------------------------ // Call this from setup() //------------------------------------------ void max72Init() { pinMode(SS_PIN, OUTPUT); SPI.setBitOrder(MSBFIRST); // Reverse the SPI Data o/p. SPI.begin(); // Start SPI // Run test - All LED segments lit. max72SendCMD(MAX7219_TEST, 0x01); delay(1000); max72SendCMD(MAX7219_TEST, 0x00); // Finish test mode. max72SendCMD(MAX7219_DECODE_MODE, 0x00); // Disable BCD mode. max72SendCMD(MAX7219_BRIGHTNESS, 0x00); // Use lowest intensity. max72SendCMD(MAX7219_SCAN_LIMIT, 0x0f); // Scan all digits. max72SendCMD(MAX7219_SHUTDOWN, 0x01); // Turn on chip. } //================
Piemērs lietojuma programmai
Programma, kas izspīdina nejaušus punktus uz LED matricas
#include "max7219.h //-------------------- //-------------------- void setup() { Serial.begin(9600); Serial.println("Debug MAX7219"); max72Init(); } //-------------------- //-------------------- void loop() { uint8_t row=0; int i=0, ud=1; for(;;) { i += ud; if (i>255) {ud=-1;i=255;} if (i<0) {ud=1 ;i=0;} if (row++>8) row=1; max72SendDATA(row, random(0,255)); max72SendCMD(MAX7219_BRIGHTNESS, i>>4); delay(10); } }