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ATMEGA_HALL_EFFECT/ATMEGA_HALL_EFFECT.ino
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76
ATMEGA_HALL_EFFECT/ATMEGA_HALL_EFFECT.ino
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/*
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Measuring Current Using ACS712
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*/
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#include "math.h"
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const int analogIn = A0;
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int mVperAmp = 185; // 185 pour 5A, use 100 for 20A Module and 66 for 30A Module
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int RawValue= 0;
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int ACSoffset = 2500;
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double mp_offset = 0.040;
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double Voltage = 0;
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double Amps = 0;
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void setup(){
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Serial.begin(9600);
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pinMode(A0, INPUT);
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}
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void loop(){
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int i = 0;
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RawValue = 0;
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// Somme du courant alternatif pendant 20 ms ==> 50hz
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// Détermination du max et max pour hauteur de crete
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int vmin = 1024;
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int vmax = 0;
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for (i = 0; i < 20; i++) {
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int value = analogRead(analogIn);
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if (value >= 0) {
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RawValue += value;
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vmax = max(value,vmax);
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vmin = min(value,vmin);
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} else {
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i--;
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}
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delay(1);
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}
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// Serial.print("Raw Value = " );
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// Serial.print(RawValue);
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Serial.print("min = " );
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Serial.print(vmin);
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Serial.print(" max = " );
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Serial.print(vmax);
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// Serial.print(" i =" );
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// Serial.print(i);
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// RawValue = RawValue / i;
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// Tension continue
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// Voltage = (RawValue / 1023.0) * 5000; // Gets you mV
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// Amps = ((Voltage - ACSoffset) / mVperAmp);
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// La valeur maxi * racine carrée de 2 pour obtenir la tension "réelle"
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// La tension efficace pour l'effet Hall étant réduite d'un facteur 0,707
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Voltage = ((vmax - vmin) / 430.0) * 5000;
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Amps = max(5.5 * (vmax - vmin) / 473.0 -0.0580, 0.0); // <= pour le bruit
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// Serial.print(" Raw Value = " ); // shows pre-scaled value
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// Serial.print(RawValue);
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Serial.print("\t mV = "); // shows the voltage measured
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Serial.print(Voltage,3); // the '3' after voltage allows you to display 3 digits after decimal point
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Serial.print("\t Amps = "); // shows the voltage measured
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Serial.print(Amps,3); // the '3' after voltage allows you to display 3 digits after decimal point
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Serial.print("\t Watt = "); // shows the voltage measured
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Serial.print(Amps * 220,3);
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Serial.print("\t WattH = "); // shows the voltage measured
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Serial.println(Amps * 220 / 1200,3);
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delay(2500);
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}
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