remostat
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@@ -53,7 +53,7 @@ INCLUDE = -I$(PRJ_SRC_DIR) -I$(LIB_INC_DIR) -I$(SPL_INC_DIR)
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# collect all source directories
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VPATH=$(PRJ_SRC_DIR):$(SPL_SRC_DIR)
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.PHONY: clean
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.PHONY: clean unlock flash all
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all: $(TARGET)
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@@ -70,5 +70,8 @@ $(TARGET): $(PRJ_OBJECTS)
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flash: $(TARGET)
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stm8flash -c stlinkv2 -p $(DEVICE_FLASH) -s flash -w $(TARGET)
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unlock:
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stm8flash -c stlinkv2 -p stm8s103f3 -u
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clean:
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rm $(OUTPUT_DIR)/*
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@@ -0,0 +1,14 @@
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# Regulátor pro remosku
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Umožňuje omezení výkonu remosky pomocí SSR relé. Napájení je přes čínský zdroj Hi-Link.
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Používám čínský modul STM8S103F, protože to bylo to nejlevnější co jsem ho našel v šuplíku. Na tohle je Bluepill STM32F103 škoda. Tohle je můj první reálný projekt s STM8, na takhle jednoduché věci úplně stačí.
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Nemá to teplotní čidlo, řízení je přímovazební. Pro remosku to stačí. Perioda PWM je cca 1s, jde nastavit v kódu.
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Zapojení:
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- D2 = AIN, jezdec potenciometru
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- C7 = bypass přepínač, výstup bude na 100%, pokud je spojen se zemí
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- C4 = výstup pro SSR
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+2
-1
@@ -12,10 +12,11 @@ volatile uint16_t time_ms;
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* Putchar for printf
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* @param c - char to print
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*/
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void putchar(char c)
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int putchar(int c)
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{
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while ((UART1->SR & UART1_SR_TXE) == 0);
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UART1->DR = (u8)c;
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return 1;
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}
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/**
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+1
-1
@@ -15,7 +15,7 @@ void UART1_RX_IRQHandler(void) INTERRUPT(18);
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void TIM4_UPD_OVF_IRQHandler(void) INTERRUPT(23);
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/** putchar, used by the SDCC stdlib */
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void putchar(char c);
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int putchar(int c);
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/**
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* Simple init (UART, LED, timebase)
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+22
-5
@@ -2,10 +2,12 @@
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#include <stdio.h>
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#include "bootstrap.h"
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#define LEVEL_TOP 400
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#define LEVEL_MAX 370
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#define LEVEL_TOP 1024
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#define LEVEL_MAX 1000
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volatile uint16_t level = 200;
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volatile uint16_t level = 0;
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#define BYPASSBTN_PIN (1 << 7)
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/**
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* Set PWM level
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@@ -13,7 +15,8 @@ volatile uint16_t level = 200;
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void PWM_Write(void)
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{
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uint16_t tmp = level;
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if (tmp > LEVEL_MAX) tmp = LEVEL_MAX;
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//if (tmp > LEVEL_MAX) tmp = LEVEL_MAX;
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if (tmp >= LEVEL_MAX) tmp = LEVEL_TOP;
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TIM1_SetCompare4(tmp);
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}
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@@ -22,6 +25,13 @@ void PWM_Cmd(FunctionalState fs)
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TIM1_CtrlPWMOutputs(fs);
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}
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void BYPASSBTN_Setup()
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{
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GPIO_Init(GPIOC,GPIO_PIN_7,GPIO_MODE_IN_PU_NO_IT);
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//GPIOC->DDR &= ~BYPASSBTN_PIN;
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//GPIOC->CR1 |= BYPASSBTN_PIN;
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}
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/**
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* Set up the PWM generation
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*/
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@@ -32,7 +42,7 @@ void PWM_Setup()
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//GPIOC->CR1 &= ~GPIO_PIN_4; // open drain
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GPIOC->CR2 |= GPIO_PIN_4; // fast
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TIM1_TimeBaseInit(0, TIM1_COUNTERMODE_UP, LEVEL_TOP, 0);
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TIM1_TimeBaseInit(1 << 14, TIM1_COUNTERMODE_UP, LEVEL_TOP, 0);
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TIM1_OC4Init(TIM1_OCMODE_PWM1,
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TIM1_OUTPUTSTATE_ENABLE,
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@@ -63,6 +73,7 @@ void main(void)
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SimpleInit();
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PWM_Setup();
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AIN_Setup();
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BYPASSBTN_Setup();
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// Go
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PWM_Cmd(ENABLE);
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@@ -76,7 +87,13 @@ void main(void)
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// adjust level
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if (ADC1_GetFlagStatus(ADC1_FLAG_EOC)) {
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conv = ADC1_GetConversionValue();
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if (0 == (GPIOC->IDR & BYPASSBTN_PIN)) {
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conv = LEVEL_TOP;
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}
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level = conv;
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PWM_Write();
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}
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}
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