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d39b92dba0 |
37
MQ135.cpp
37
MQ135.cpp
@ -20,12 +20,22 @@ v1.0 - First release
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/*!
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@brief Default constructor
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@param[in] pin The analog input pin for the readout of the sensor
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@param[in] pin The analog input pin for the readout of the sensor
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@param[in] rload Load resistance on board, in KOhms
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@param[in] rzero Calibration sensor resistance at atmospheric CO2 level, in KOhms
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@param[in] atmoco2 Atmospheric CO2 level for calibration purposes, in PPM
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@param[in] vref analogRead() reference voltage, in volts
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@param[in] vc Test voltage applied to the A pins of MQ-135, in volts
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*/
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/**************************************************************************/
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MQ135::MQ135(uint8_t pin) {
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MQ135::MQ135(uint8_t pin, float rload, float rzero, float atmoco2, float vref, float vc) {
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_pin = pin;
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_rload = rload;
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_rzero = rzero;
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_atmoco2 = atmoco2;
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_vref = vref;
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_vc = vc;
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}
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@ -40,7 +50,12 @@ MQ135::MQ135(uint8_t pin) {
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*/
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/**************************************************************************/
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float MQ135::getCorrectionFactor(float t, float h) {
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return CORA * t * t - CORB * t + CORC - (h-33.)*CORD;
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//return CORA * t * t - CORB * t + CORC - (h-33.)*CORD;
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// This formula is reduced from temperature and humidity dependency graph,
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// found in this datasheet:
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// http://china-total.com/Product/meter/gas-sensor/MQ135.pdf
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return (1.30732 - 0.0116044 * t) * (2.20591 - 0.296456 * log(h));
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}
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/**************************************************************************/
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@ -52,7 +67,13 @@ float MQ135::getCorrectionFactor(float t, float h) {
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/**************************************************************************/
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float MQ135::getResistance() {
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int val = analogRead(_pin);
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return ((1023./(float)val) - 1.)*RLOAD;
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float r;
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//r = ((1023./(float)val) - 1.)*_rload;
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// or taking Vref and Vc into account:
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r = ((1023. * _rload * _vc) / ((float)val * _vref)) - _rload;
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return r;
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}
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/**************************************************************************/
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@ -78,7 +99,7 @@ float MQ135::getCorrectedResistance(float t, float h) {
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*/
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/**************************************************************************/
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float MQ135::getPPM() {
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return PARA * pow((getResistance()/RZERO), -PARB);
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return PARA * pow((getResistance()/_rzero), PARB);
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}
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/**************************************************************************/
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@ -93,7 +114,7 @@ float MQ135::getPPM() {
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*/
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/**************************************************************************/
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float MQ135::getCorrectedPPM(float t, float h) {
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return PARA * pow((getCorrectedResistance(t, h)/RZERO), -PARB);
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return PARA * pow((getCorrectedResistance(t, h)/_rzero), PARB);
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}
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/**************************************************************************/
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@ -104,7 +125,7 @@ float MQ135::getCorrectedPPM(float t, float h) {
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*/
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/**************************************************************************/
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float MQ135::getRZero() {
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return getResistance() * pow((ATMOCO2/PARA), (1./PARB));
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return getResistance() * pow((_atmoco2/PARA), (1./-PARB));
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}
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/**************************************************************************/
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@ -119,5 +140,5 @@ float MQ135::getRZero() {
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*/
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/**************************************************************************/
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float MQ135::getCorrectedRZero(float t, float h) {
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return getCorrectedResistance(t, h) * pow((ATMOCO2/PARA), (1./PARB));
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return getCorrectedResistance(t, h) * pow((_atmoco2/PARA), (1./-PARB));
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}
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41
MQ135.h
41
MQ135.h
@ -21,29 +21,52 @@ v1.0 - First release
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#include "WProgram.h"
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#endif
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/// The load resistance on the board
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#define RLOAD 10.0
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/// Calibration resistance at atmospheric CO2 level
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#define RZERO 76.63
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/// The load resistance on the board, in KOhms
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#define MQ135_RLOAD 10.0
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/// Calibration sensor resistance at atmospheric CO2 level, in KOhms
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#define MQ135_RZERO 76.63
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/// Parameters for calculating ppm of CO2 from sensor resistance
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#define PARA 116.6020682
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#define PARB 2.769034857
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//#define PARA 116.6020682
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//#define PARB (-2.769034857)
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/// Correlation parameters from Davide Gironi <http://davidegironi.blogspot.ru/2014/01/cheap-co2-meter-using-mq135-sensor-with.html>
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#define PARA 56.0820
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#define PARB (-5.9603)
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/*
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/// Parameters to model temperature and humidity dependence
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#define CORA 0.00035
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#define CORB 0.02718
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#define CORC 1.39538
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#define CORD 0.0018
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*/
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/// Atmospheric CO2 level for calibration purposes
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#define ATMOCO2 397.13
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/// Atmospheric CO2 level for calibration purposes, in PPM.
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/// See http://co2now.org/
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#define MQ135_ATMOCO2 397.16
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/// Test voltage applied to the A pins of MQ-135, in volts. Usually, it's equal to power supply voltage.
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#define MQ135_VC 5.0
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/// analogRead reference voltage, in volts. By default it's a power supply voltage on Arduino. Can be changed with analogReference().
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#define MQ135_VREF 5.0
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class MQ135 {
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private:
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uint8_t _pin;
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// Calibration sensor resistance at atmospheric CO2 level, in KOhms
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float _rzero;
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// Atmospheric CO2 level for calibration purposes, in PPM, see http://co2now.org/
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float _atmoco2;
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// analogRead reference voltage, in volts
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float _vref;
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// Load resistance on board, in KOhms
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float _rload;
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// Test voltage applied to the A pins of MQ-135, in volts
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float _vc;
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public:
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MQ135(uint8_t pin);
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MQ135(uint8_t pin, float rload = MQ135_RLOAD, float rzero = MQ135_RZERO,
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float atmoco2 = MQ135_ATMOCO2, float vref = MQ135_VREF,
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float vc = MQ135_VC);
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float getCorrectionFactor(float t, float h);
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float getResistance();
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float getCorrectedResistance(float t, float h);
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@ -1,4 +1,7 @@
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MQ135
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=====
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Arduino library for the MQ135
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Arduino library for the MQ135 Air Quality sensor. Read about using this library
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[here](https://hackaday.io/project/3475-sniffing-trinket/log/12363-mq135-arduino-library).
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A project using this library: [Sniffing
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Trinket](https://hackaday.io/project/3475-sniffing-trinket).
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