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/***************************************************************************
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* Example sketch for the ADS1115_WE library
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*
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* This sketch shows how you can use the alert pin as conversion ready alert pin.
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* It works in continuous mode as well as in single shot mode.
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* Please note that you need to enable the alert pin with setAlertPinMode. Choose any
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* parameter except ADS1115_DISABLE_ALERT.
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*
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* Further information can be found on:
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* https://wolles-elektronikkiste.de/ads1115 (German)
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* https://wolles-elektronikkiste.de/en/ads1115-a-d-converter-with-amplifier (English)
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*
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***************************************************************************/
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#include<ADS1115_WE.h>
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#include<Wire.h>
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#define I2C_ADDRESS 0x48
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int interruptPin = 2;
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volatile bool convReady = false;
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/* There are several ways to create your ADS1115_WE object:
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* ADS1115_WE adc = ADS1115_WE(); -> uses Wire / I2C Address = 0x48
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* ADS1115_WE adc = ADS1115_WE(I2C_ADDRESS); -> uses Wire / I2C_ADDRESS
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* ADS1115_WE adc = ADS1115_WE(&Wire); -> you can pass any TwoWire object / I2C Address = 0x48
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* ADS1115_WE adc = ADS1115_WE(&Wire, I2C_ADDRESS); -> all together
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*/
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ADS1115_WE adc = ADS1115_WE(I2C_ADDRESS);
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void setup() {
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Wire.begin();
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Serial.begin(9600);
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pinMode(interruptPin, INPUT_PULLUP);
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if(!adc.init()){
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Serial.println("ADS1115 not connected!");
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}
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/* Set the voltage range of the ADC to adjust the gain
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* Please note that you must not apply more than VDD + 0.3V to the input pins!
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*
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* ADS1115_RANGE_6144 -> +/- 6144 mV
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* ADS1115_RANGE_4096 -> +/- 4096 mV
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* ADS1115_RANGE_2048 -> +/- 2048 mV (default)
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* ADS1115_RANGE_1024 -> +/- 1024 mV
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* ADS1115_RANGE_0512 -> +/- 512 mV
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* ADS1115_RANGE_0256 -> +/- 256 mV
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*/
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adc.setVoltageRange_mV(ADS1115_RANGE_6144); //comment line/change parameter to change range
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/* Set the inputs to be compared
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*
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* ADS1115_COMP_0_1 -> compares 0 with 1 (default)
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* ADS1115_COMP_0_3 -> compares 0 with 3
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* ADS1115_COMP_1_3 -> compares 1 with 3
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* ADS1115_COMP_2_3 -> compares 2 with 3
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* ADS1115_COMP_0_GND -> compares 0 with GND
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* ADS1115_COMP_1_GND -> compares 1 with GND
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* ADS1115_COMP_2_GND -> compares 2 with GND
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* ADS1115_COMP_3_GND -> compares 3 with GND
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*/
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adc.setCompareChannels(ADS1115_COMP_0_GND); //comment line/change parameter to change channels
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/* Set number of conversions out of limit after which the alert pin will assert
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* - or you can disable the alert (including conversion ready alert)
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*
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* ADS1115_ASSERT_AFTER_1 -> after 1 conversion
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* ADS1115_ASSERT_AFTER_2 -> after 2 conversions
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* ADS1115_ASSERT_AFTER_4 -> after 4 conversions
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* ADS1115_DISABLE_ALERT -> disable comparator / alert pin (default)
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*/
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adc.setAlertPinMode(ADS1115_ASSERT_AFTER_1); //needed in this sketch to enable alert pin (doesn't matter if you choose after 1,2 or 4)
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/* Set the conversion rate in SPS (samples per second)
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* Options should be self-explaining:
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*
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* ADS1115_8_SPS
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* ADS1115_16_SPS
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* ADS1115_32_SPS
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* ADS1115_64_SPS
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* ADS1115_128_SPS (default)
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* ADS1115_250_SPS
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* ADS1115_475_SPS
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* ADS1115_860_SPS
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*/
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adc.setConvRate(ADS1115_8_SPS); //comment line/change parameter to change SPS
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/* Set continuous or single shot mode:
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*
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* ADS1115_CONTINUOUS -> continuous mode
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* ADS1115_SINGLE -> single shot mode (default)
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*/
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//adc.setMeasureMode(ADS1115_CONTINUOUS); // the conversion ready alert pin also works in continuous mode
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/* Choose maximum limit or maximum and minimum alert limit (window) in volts - alert pin will
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* assert when measured values are beyond the maximum limit or outside the window
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* Upper limit first: setAlertLimit_V(MODE, maximum, minimum)
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* In max limit mode the minimum value is the limit where the alert pin assertion will be cleared
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* (if not latched)
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*
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* ADS1115_MAX_LIMIT
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* ADS1115_WINDOW
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*
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*/
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//adc.setAlertModeAndLimit_V(ADS1115_MAX_LIMIT, 3.0, 1.5); //uncomment if you want to change the default
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/* Enable or disable latch. If latch is enabled the alert pin will assert until the
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* conversion register is read (getResult functions). If disabled the alert pin assertion
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* will be cleared with next value within limits.
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*
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* ADS1115_LATCH_DISABLED (default)
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* ADS1115_LATCH_ENABLED
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*/
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//adc.setAlertLatch(ADS1115_LATCH_ENABLED); //uncomment if you want to change the default
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/* Sets the alert pin polarity if active:
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*
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* ADS1115_ACT_LOW -> active low (default)
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* ADS1115_ACT_HIGH -> active high
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*/
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//adc.setAlertPol(ADS1115_ACT_LOW); //uncomment if you want to change the default
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/* With this function the alert pin assert, when a conversion is ready.
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* In order to deactivate, use the setAlertLimit_V function
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*/
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adc.setAlertPinToConversionReady(); //needed for this sketch
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Serial.println("ADS1115 Example Sketch - Single Shot, Conversion Ready Alert Pin controlled");
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Serial.println();
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attachInterrupt(digitalPinToInterrupt(interruptPin), convReadyAlert, FALLING);
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adc.startSingleMeasurement();
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}
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/* In this example I measure 32 times before the result is output. This is only to slow down
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* the output rate. I want to show that the output rate is controlled by the conversion ready
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* signals and not by a delay.
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*/
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void loop() {
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float voltage = 0.0;
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static int counter = 0;
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if(convReady){
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counter++;
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convReady = false;
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if(counter==32){ // counter is 32, conversion rate is 8 SPS --> 4s
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voltage = adc.getResult_V(); // alternative: getResult_mV for Millivolt
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Serial.print("Channel 0 vs GND [V]: ");
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Serial.println(voltage);
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Serial.println("-------------------------------");
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counter = 0;
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}
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adc.startSingleMeasurement();
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}
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}
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void convReadyAlert(){
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convReady = true;
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}
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