常用函数
1 | void RCC_ADCCLKConfig(uint32_t RCC_PCLK2); |
配置ADCCLK分频器,可以对APB2的72MHz选择2、4、6、8分频,输入到ADCCLK。
1 | void ADC_DeInit(ADC_TypeDef* ADCx); |
恢复缺省配置
1 | void ADC_Init(ADC_TypeDef* ADCx, ADC_InitTypeDef* ADC_InitStruct); |
初始化
1 | void ADC_StructInit(ADC_InitTypeDef* ADC_InitStruct); |
结构体初始化
1 | void ADC_Cmd(ADC_TypeDef* ADCx, FunctionalState NewState); |
ADC上电,开关控制。
1 | void ADC_DMACmd(ADC_TypeDef* ADCx, FunctionalState NewState); |
开启DMA输出信号,如果使用DMA转运数据,调用此函数。
1 | void ADC_ITConfig(ADC_TypeDef* ADCx, uint16_t ADC_IT, FunctionalState NewState); |
中断输出控制,控制某个中断,通往NVIC。
1234 | void ADC_ResetCalibration(ADC_TypeDef* ADCx);FlagStatus ADC_GetResetCalibrationStatus(ADC_TypeDef* ADCx);void ADC_StartCalibration(ADC_TypeDef* ADCx);FlagStatus ADC_GetCalibrationStatus(ADC_TypeDef* ADCx); |
在ADC初始化完成后,依次调用完成校准。
1 | void ADC_SoftwareStartConvCmd(ADC_TypeDef* ADCx, FunctionalState NewState); |
ADC软件开始转换控制,用于软件触发函数,软件触发转换
1 | FlagStatus ADC_GetSoftwareStartConvStatus(ADC_TypeDef* ADCx); |
ADC获取软件开始转换状态,给SWSTART位置1,开始转换,返回SWSTART状态。(一般不用)
12 | void ADC_DiscModeChannelCountConfig(ADC_TypeDef* ADCx, uint8_t Number);void ADC_DiscModeCmd(ADC_TypeDef* ADCx, FunctionalState NewState); |
配置间断模式,第一个函数是每个几个通道间断一次,第二个函数是是否启用间断模式。
1 | void ADC_RegularChannelConfig(ADC_TypeDef* ADCx, uint8_t ADC_Channel, uint8_t Rank, uint8_t ADC_SampleTime); |
ADC规则组通道配置,给序列的每个位置填写指定的通道。
1 | void ADC_ExternalTrigConvCmd(ADC_TypeDef* ADCx, FunctionalState NewState); |
ADC外部触发转换控制,是否允许外部触发转换。
1 | uint16_t ADC_GetConversionValue(ADC_TypeDef* ADCx); |
ADC获取转换值,获取AD转换数据寄存器,读取结果。
1 | uint32_t ADC_GetDualModeConversionValue(void); |
ADC获取双模式转换器,双ADC模式读取转换结果。
12345678910 | void ADC_AutoInjectedConvCmd(ADC_TypeDef* ADCx, FunctionalState NewState);void ADC_InjectedDiscModeCmd(ADC_TypeDef* ADCx, FunctionalState NewState);void ADC_ExternalTrigInjectedConvConfig(ADC_TypeDef* ADCx, uint32_t ADC_ExternalTrigInjecConv);void ADC_ExternalTrigInjectedConvCmd(ADC_TypeDef* ADCx, FunctionalState NewState);void ADC_SoftwareStartInjectedConvCmd(ADC_TypeDef* ADCx, FunctionalState NewState);FlagStatus ADC_GetSoftwareStartInjectedConvCmdStatus(ADC_TypeDef* ADCx);void ADC_InjectedChannelConfig(ADC_TypeDef* ADCx, uint8_t ADC_Channel, uint8_t Rank, uint8_t ADC_SampleTime);void ADC_InjectedSequencerLengthConfig(ADC_TypeDef* ADCx, uint8_t Length);void ADC_SetInjectedOffset(ADC_TypeDef* ADCx, uint8_t ADC_InjectedChannel, uint16_t Offset);uint16_t ADC_GetInjectedConversionValue(ADC_TypeDef* ADCx, uint8_t ADC_InjectedChannel); |
对ADC注入组进行配置。
123 | void ADC_AnalogWatchdogCmd(ADC_TypeDef* ADCx, uint32_t ADC_AnalogWatchdog);void ADC_AnalogWatchdogThresholdsConfig(ADC_TypeDef* ADCx, uint16_t HighThreshold, uint16_t LowThreshold);void ADC_AnalogWatchdogSingleChannelConfig(ADC_TypeDef* ADCx, uint8_t ADC_Channel); |
对模拟看门狗进行配置
1 | void ADC_TempSensorVrefintCmd(FunctionalState NewState); |
开启内部通道:ADC温度传感器、内部参考电压控制
1234 | FlagStatus ADC_GetFlagStatus(ADC_TypeDef* ADCx, uint8_t ADC_FLAG);void ADC_ClearFlag(ADC_TypeDef* ADCx, uint8_t ADC_FLAG);ITStatus ADC_GetITStatus(ADC_TypeDef* ADCx, uint16_t ADC_IT);void ADC_ClearITPendingBit(ADC_TypeDef* ADCx, uint16_t ADC_IT); |
AD单通道
AD.c
1234567891011121314151617181920212223242526272829303132333435363738394041424344 | #include "stm32f10x.h" void AD_Init(void){ RCC_APB2PeriphClockCmd(RCC_APB2Periph_ADC1,ENABLE); RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOA,ENABLE); RCC_ADCCLKConfig(RCC_PCLK2_Div6); GPIO_InitTypeDef GPIO_InitStructure; GPIO_InitStructure.GPIO_Mode = GPIO_Mode_AIN; GPIO_InitStructure.GPIO_Pin = GPIO_Pin_0; GPIO_InitStructure.GPIO_Speed = GPIO_Speed_50MHz; GPIO_Init(GPIOA, &GPIO_InitStructure); ADC_RegularChannelConfig(ADC1,ADC_Channel_0,1,ADC_SampleTime_55Cycles5); ADC_InitTypeDef ADC_InitStructure; ADC_InitStructure.ADC_DataAlign = ADC_DataAlign_Right; ADC_InitStructure.ADC_ExternalTrigConv = ADC_ExternalTrigConv_None; ADC_InitStructure.ADC_Mode = ADC_Mode_Independent; ADC_InitStructure.ADC_ContinuousConvMode = DISABLE; ADC_InitStructure.ADC_ScanConvMode = DISABLE; ADC_InitStructure.ADC_NbrOfChannel = 1; ADC_Init(ADC1,&ADC_InitStructure); ADC_Cmd(ADC1,ENABLE); ADC_ResetCalibration(ADC1); while (ADC_GetResetCalibrationStatus(ADC1) == SET); ADC_StartCalibration(ADC1); while (ADC_GetCalibrationStatus(ADC1) == SET);} uint16_t AD_GetValue(void){ ADC_SoftwareStartConvCmd(ADC1,ENABLE); while (ADC_GetFlagStatus(ADC1,ADC_FLAG_EOC) == RESET); return ADC_GetConversionValue(ADC1); } |
main.c
12345678910111213141516171819202122 | #include "stm32f10x.h" #include "Delay.h"#include "OLED.h"#include "AD.h"uint16_t ADValue;int main(void){ OLED_Init(); AD_Init(); OLED_ShowString(1,1,"ADValue:"); OLED_ShowString(2,1,"Voltage:0.00V"); while(1) { ADValue = AD_GetValue(); OLED_ShowNum(1,9,ADValue,4); OLED_ShowNum(2,9,((float)ADValue/4095*3.3),1); OLED_ShowNum(2,11,((uint16_t)(((float)ADValue/4095*3.3)*100)%100),2); Delay_ms(100); }} |
AD多通道
AD.c
1234567891011121314151617181920212223242526272829303132333435363738394041424344 | #include "stm32f10x.h" void AD_Init(void){ RCC_APB2PeriphClockCmd(RCC_APB2Periph_ADC1,ENABLE); RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOA,ENABLE); RCC_ADCCLKConfig(RCC_PCLK2_Div6); GPIO_InitTypeDef GPIO_InitStructure; GPIO_InitStructure.GPIO_Mode = GPIO_Mode_AIN; GPIO_InitStructure.GPIO_Pin = GPIO_Pin_0 | GPIO_Pin_1 | GPIO_Pin_2 | GPIO_Pin_3; GPIO_InitStructure.GPIO_Speed = GPIO_Speed_50MHz; GPIO_Init(GPIOA, &GPIO_InitStructure); ADC_InitTypeDef ADC_InitStructure; ADC_InitStructure.ADC_DataAlign = ADC_DataAlign_Right; ADC_InitStructure.ADC_ExternalTrigConv = ADC_ExternalTrigConv_None; ADC_InitStructure.ADC_Mode = ADC_Mode_Independent; ADC_InitStructure.ADC_ContinuousConvMode = DISABLE; ADC_InitStructure.ADC_ScanConvMode = DISABLE; ADC_InitStructure.ADC_NbrOfChannel = 1; ADC_Init(ADC1,&ADC_InitStructure); ADC_Cmd(ADC1,ENABLE); ADC_ResetCalibration(ADC1); while (ADC_GetResetCalibrationStatus(ADC1) == SET); ADC_StartCalibration(ADC1); while (ADC_GetCalibrationStatus(ADC1) == SET);} uint16_t AD_GetValue(uint8_t ADC_Channel){ ADC_RegularChannelConfig(ADC1,ADC_Channel,1,ADC_SampleTime_55Cycles5); ADC_SoftwareStartConvCmd(ADC1,ENABLE); while (ADC_GetFlagStatus(ADC1,ADC_FLAG_EOC) == RESET); return ADC_GetConversionValue(ADC1); } |
main.c
1234567891011121314151617181920212223242526272829 | #include "stm32f10x.h" #include "Delay.h"#include "OLED.h"#include "AD.h"uint16_t AD0,AD1,AD2,AD3;int main(void){ OLED_Init(); AD_Init(); OLED_ShowString(1,1,"AD0:"); OLED_ShowString(2,1,"AD1:"); OLED_ShowString(3,1,"AD2:"); OLED_ShowString(4,1,"AD3:"); while(1) { AD0 = AD_GetValue(ADC_Channel_0); AD1 = AD_GetValue(ADC_Channel_1); AD2 = AD_GetValue(ADC_Channel_2); AD3 = AD_GetValue(ADC_Channel_3); OLED_ShowNum(1,5,AD0,4); OLED_ShowNum(2,5,AD1,4); OLED_ShowNum(3,5,AD2,4); OLED_ShowNum(4,5,AD3,4); Delay_ms(100); }} |