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| Author | SHA1 | Date | |
|---|---|---|---|
| 9b2e729683 | |||
| c5521a08fa |
@ -19,6 +19,10 @@ extern "C" {
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#include <avr/eeprom.h>
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#include <avr/eeprom.h>
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#include <stdbool.h>
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#include <stdbool.h>
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// The code is inspired by "EEPROM handling" form avr-libc
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// web link: https://www.nongnu.org/avr-libc/user-manual/group__avr__eeprom.html
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// Struct for information on the controller.
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// Struct for information on the controller.
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typedef struct {
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typedef struct {
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uint16_t ms_fanspeed_sample_rate;
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uint16_t ms_fanspeed_sample_rate;
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@ -29,6 +29,7 @@ extern "C" {
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* and inspiration form practice 6 for TCA0 setup
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* and inspiration form practice 6 for TCA0 setup
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*/
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*/
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// Fan history variables
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// Fan history variables
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extern volatile uint16_t fan1_history[512];
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extern volatile uint16_t fan1_history[512];
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extern volatile uint16_t fan2_history[512];
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extern volatile uint16_t fan2_history[512];
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@ -23,7 +23,9 @@ extern "C" {
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#define T_0 298.15
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#define T_0 298.15
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#define B 3950
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#define B 3950
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#define R_1 1000
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#define R_1 1000
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#define ledpin PIN3_bm
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// Takes inn messured value
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#define ALERT_PIN PIN3_bm
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#define ALERT_PIN PIN3_bm
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// Takes inn messured value
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// Takes inn messured value
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@ -5,6 +5,9 @@ void init_alarm_gpio(){
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PORTB.DIRSET = ALERT_PIN;
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PORTB.DIRSET = ALERT_PIN;
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}
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}
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// The code is inspired by "Arduino thermistor guide" by valtentina Vogelman, 1 november 2023
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// https://www.build-electronic-circuits.com/arduino-thermistor/
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float calculate_thermistor_temp(float thermistor_voltage){
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float calculate_thermistor_temp(float thermistor_voltage){
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float R_thermistor;
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float R_thermistor;
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float V_1;
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float V_1;
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52
prosjekt.X/thermistor-temp.c.save
Normal file
52
prosjekt.X/thermistor-temp.c.save
Normal file
@ -0,0 +1,52 @@
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#include "themistor-temp.h"
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void init_led(){
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PORTB.DIRSET = ledpin;
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}
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https://www.build-electronic-circuits.com/arduino-thermistor/
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float calculate_thermistor_temp(float thermistor_voltage){
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float R_thermistor;
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float V_1;
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float ln;
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float T_thermistor;
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float V_thermistor;
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#define V_TOT 5
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// Calculate Voltage over thermistor
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V_thermistor = (V_TOT/1024)*thermistor_voltage;
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// Voltage accross R_1
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V_1 = V_TOT - V_thermistor;
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// Calculate Thermistor resistanse
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R_thermistor = (V_thermistor)/ (V_1 / R_1);
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// Steinhart-Harts formula
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ln = log(R_thermistor/R_T0);
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T_thermistor = (1/ ((ln/B) + (1/T_0)));
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// Temperatur in celcius
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T_thermistor -= 273.15;
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return T_thermistor;
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}
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// returns error message if the messured thermistor temp is higher than
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// Choosen max_temp
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bool voltage_threshold_bool(float thermistor_temp, uint8_t max_temp){
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// Return true if temp is higher then max value
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return (thermistor_temp >= max_temp);
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}
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//print if the maximum threshold is exceeded.
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void alert_voltage_threshold_exceeded(bool voltage_threshold_bool){
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if (voltage_threshold_bool){
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printf("Error: maximum temperature exceeded");
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PORTB.OUTSET = ledpin;
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} else{
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PORTB.OUTCLR = ledpin;
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}
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}
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@ -17,6 +17,7 @@ void ADC0_init(void) {
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VREF.ADC0REF = VREF_REFSEL_VDD_gc; /* Internal reference */
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VREF.ADC0REF = VREF_REFSEL_VDD_gc; /* Internal reference */
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ADC0.CTRLA = ADC_ENABLE_bm /* ADC Enable: enabled */
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ADC0.CTRLA = ADC_ENABLE_bm /* ADC Enable: enabled */
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| ADC_RESSEL_10BIT_gc; /* 10-bit mode */
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| ADC_RESSEL_10BIT_gc; /* 10-bit mode */
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/* Select ADC channel */
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/* Select ADC channel */
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ADC0.MUXPOS = ADC_MUXPOS_AIN6_gc;
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ADC0.MUXPOS = ADC_MUXPOS_AIN6_gc;
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}
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}
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