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NKMT-00022 - for temperature control using Arduino and thermoelectric cooling. The code reads the temperature using a temperature sensor and adjusts the thermoelectric cooling module to control the temperature of a system. The code is written in the Arduino programming language.#include <Wire.h>#include <Adafruit_GFX.h>#include <Adafuit_LCD.h>#include <Thermistor.h>#include <Three_D.h>#include <LiquidCrystal.h>#include <LCD_Keyest.h>#include <LM35.h>int SensorPin = A1;int InputLM = A0;int SensorPin = A2;int InputThermistor = A3;int SensorPin = A4;int InputSensor = A5;Thermistor TemperSensor;LM35 Sensortemp;void setup() { digitalWire.begin(); TemperSensor.begin(); tempSensor.begin(); Serial.begin(9600);}void loop() { int InputTemp = LM35.read(); float yourTemp = (InputTemp * 0.09) - 32.0; if (yourTemp < 32.0) { digitalPin(PAN, HIGH); } else { digitalPin(PAN, LOW); } int HCSS = HCSS.read(); if (HCSS > 0) { digitalPin(PAN, HIGH); } else { digitalPin(PAN, LOW); } int ACS = ACS.read(); if (ACS > 0) { digitalPin(PAN, HIGH); } else { digitalPin(PAN, LOW); } else { digitalPin(PAN, LOW); } float temp = LM35.read(); float Temp = (temp * 0.09) - 32.0; if (Temp < 32.0) { digitalPin(PAN, LOW); } else { digitalPin(PAN, LOW); } float Temperature = LM35.read(); float Temp = (temp * 0.09) - 32.0; if (Temp < 32.0) { digitalPin(PAN, LOW); } else { digitalPin(PAN, LOW); } float Temperature = LM35.read(); float Temp = (temp * 0.09) - 32.0; if (Temp < 32.0) { digitalPin(PAN, LOW); } else { digitalPin(PAN, LOW); } float Temperature = LM35.read(); float Temp = (temp * 0.09) - 32.0; if (Temp < 32.0) digitalPin(PAN, LOW); else { digitalPin(PAN, LOW); }}int adc = Wire.read();float Temp = (adc * 0.09) - 32.0;if (Temp < 32.0) { digitalPin(PAN, LOW);} else { digitalPin(PAN, LOW);}float Temp = LM35.read();float Temp = (adc * 0.09) - 32.0;if (Temp < 32.0) { digitalPin(PAN, LOW);} else { digitalPin(PAN, LOW);}float Temp = LM35.read();float Temp = (adc * 0.09) - 32.0;if (Temp < 32.0) { digitalPin(PAN, LOW);} else { digitalPin(PAN, LOW);}float Temp = LM35.read();float Temp = (adc * 0.09) - 32.0;if (Temp < 32.0) { digitalPin(PAN, LOW);} else { digitalPin(PAN, LOW);}float Temp = LM35.read();float Temp = (adc * 0.09) - 32.0;if (Temp < 32.0) { digitalPin(PAN, LOW);} else { digitalPinP(PAN, LOW);} else { digitalPinP(PAN, LOW);}float Temp = LM35.read();float Temp = (adc * 0.09) - 32.0;if (Temp < 32.0) { digitalPinP(PAN, LOW);} else { digitalPinP(PAN, LOW);}float Temp = LM35.read();float Temp = (adc * 0.09) - 32.0;if (Temp < 32.0) { digitalPinP(PAN, LOW);} else { digitalPinP(PAN, LOW);}float Temp = LM35.read;float Temp = (adc * 0.09) - 32.0;if (Temp < 32.0) { digitalPinP(PAN, LOW);} else { digitalPinP(PAN, LOW);}float Temp = LM35.read;float Temp = (adc * 0.09) - 32.0;if (Temp < 32.0) { digitalPinP(PAN, LOW);} else { digitalPinP(PAN, LOW);}float Temp = LM35.read;float Temp = (adc * 0.09) - 32.0;if (Temp < 32.0) digitalPinP(PAN, LOW);else { digitalPinP(PAN, LOW);}float Temp = LM35.read;float Temp = (adc * 0.09) - 32.0;if (Temp < 32.0) { digitalPinP(PAN, LOW);} else { digitalPinP(PAN, LOW);}float Temp = LM35.read;float Temp = (adc * 0.09) - 32.0;if (Temp < 32.0) { digitalPinP(PAN, LOW);} else { digitalPinP(PAN, LOW);}float Temp = LM35.read;float Temp = (adc * 0.09) - 32.0;if (Temp < 0.8) { digitalPinP(PAN, LOW);} else { digitalPinP(PAN, LOW);}float Temp = LM35.read;float Temp = (adc * 0.09) - 32.0;if (Temp < 0.8) { digitalPinP(PAN, LOW);} else { digitalPinP(PAN, LOW);}float Temp = LM35.read;float Temp = (adc * 0.09) - 32.0;if (Temp < 0.8) { digitalPinP(PAN, LOW);} else { digitalPinP(PAN, LOW);}float Temp = LM35.read;float Temp = (adc * 0.09) - 32.0;if (Temp < 0.8) { digitalPinP(PAN, LOW);} else}#include <Something.h>int temperaturepin = A1;int Sensorpin = A1;int tempsensor = A0;int Thinned = A0;int Q1 = A0;int Q2 = A0;int Q3 = A0;int Q4 = A0;int Q5 = A0;int Q6 = A0;int Q7 = A0;int Q8 = A0;int Q9 = A0;int Q10 = A0;int Q11 = A0;int Q12 = A2;int Q13 = A0;int Q14 = A0;int Q15 = A0;int Q16 = A0;int Q17 = A0;
14 Apr 2015