La idea es que el usuario quiere generar un ritmo. El usuario va a colocar imanes sobre la superficie de un disco giratorio. Las posiciones de los imanes representarán los tiempos de los sonidos de la caja de ritmo. Los imanes van a moverse. Sensores estacionarios de campos magnéticos van a detectar cuando los imanes pasan por el sensor.

Motor original

1290 rpm

84.7 cm de cinturón de goma

Motor Paso a Paso

Sensores Hall (para detectar campos magnéticos)

Videos

Codigo 1


#define led 13  
#define buzzer 11
#define analogPin A0

uint16_t analogVal;

void setup () {
  pinMode (led, OUTPUT);
  pinMode (buzzer, OUTPUT);
  Serial.begin(9600);
}

void loop () {
  analogVal = analogRead(analogPin);
  analogVal -= 640;
  

  Serial.print("0, "); Serial.print("300, "); 
  Serial.println(analogVal);
  if (analogVal > 50) {
    digitalWrite(led, HIGH);
    digitalWrite(buzzer, HIGH);
  }
  else {
    digitalWrite(led, LOW);
    digitalWrite(buzzer, LOW);
  }
  delayMicroseconds(1000);
}

Codigo 2

#define led 13  
#define buzzer 11
#define hall0 A0
#define hall1 A1

uint16_t hall0val;
uint16_t hall1val;

void setup () {
  pinMode (led, OUTPUT);
  pinMode (buzzer, OUTPUT);
  Serial.begin(9600);
}

void loop () {
  hall0val = analogRead(hall0);
  hall0val -= 640;
  
  hall1val = analogRead(hall1);
  hall1val -= 640;

  //Serial.print("0, "); Serial.print("300, "); 
  Serial.print(hall0val);
  Serial.print(" ");
  Serial.println(hall1val);

  if (hall0val > 50 || hall1val > 50) {
    digitalWrite(led, HIGH);
    digitalWrite(buzzer, HIGH);
  }
  else {
    digitalWrite(led, LOW);
    digitalWrite(buzzer, LOW);
  }
 // delayMicroseconds(300000);
   delay(500);
}

Codigo 3

#define led 13 #define buzzer 11 #define hall0 A0 #define hall1 A1 uint16_t hall0val; uint16_t hall1val; const int OUT0_PIN = 6; const int OUT1_PIN = 13; const int DURACION_MS = 50; const int HALL_OFFSET = 640; const int HALL_THRES = 50; void setup () { pinMode (led, OUTPUT); pinMode (buzzer, OUTPUT); pinMode (OUT0, OUTPUT); pinMode (OUT1, OUTPUT); Serial.begin(9600); } bool out0_on = false; void loop () { int out0_off_time = 0; int out1_off_time = 1; bool out0_on = false; bool out1_on = false; hall0val = analogRead(hall0) - HALL_OFFSET; hall1val = analogRead(hall1) - HALL_OFFSET; //Serial.print("0, "); Serial.print("300, "); Serial.print(hall0val); Serial.print(" "); Serial.println(hall1val); if (millis() > out0_off_time && out0_on == true) { digitalWrite(OUT0, LOW); out0_on = false; } if (millis() > out1_off_time && out1_on == true) { digitalWrite(OUT1, LOW); out0_on = false; } if (hall0val > HALL_THRES) { digitalWrite(OUT0, HIGH); out0_off_time = millis() + DURACION_MS; out0_on = true; } if (hall1val > HALL_THRES) { digitalWrite(OUT1, HIGH); out1_off_time = millis() + DURACION_MS; out1_on = true; } }