STM32 串口打印ADC采集電壓
ADC是單片機(jī)也是STM32在工控上常用功能之一,用來采集電壓,溫度等作為指標(biāo)提供給其他部分進(jìn)行對應(yīng)的操作,使用32的固件庫進(jìn)行配置相當(dāng)方便。
這里利用串口打印的方式觀察采集到的電壓。
#include "adc.h"
void adc_init()
{
GPIO_InitTypeDef GPIO_InitStructure;
ADC_InitTypeDef ADC_InitStructure; RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOA,ENABLE); RCC_APB2PeriphClockCmd(RCC_APB2Periph_ADC1,ENABLE); RCC_APB2PeriphClockCmd(RCC_APB2Periph_AFIO,ENABLE);
GPIO_InitStructure.GPIO_Pin=GPIO_Pin_1;//ADC GPIO_InitStructure.GPIO_Mode=GPIO_Mode_AIN; // GPIO_InitStructure.GPIO_Speed=GPIO_Speed_50MHz;
GPIO_Init(GPIOA,&GPIO_InitStructure);
ADC_InitStructure.ADC_Mode =ADC_Mode_Independent;//獨(dú)立工作ADC_InitStructure.ADC_ScanConvMode = DISABLE; //單次掃描 ADC_InitStructure.ADC_ContinuousConvMode = DISABLE; //單次轉(zhuǎn)換 ADC_InitStructure.ADC_ExternalTrigConv = ADC_ExternalTrigConv_None;//軟件啟動
ADC_InitStructure.ADC_DataAlign = ADC_DataAlign_Right;//右對齊數(shù)據(jù) ADC_InitStructure.ADC_NbrOfChannel = 1;
ADC_Init(ADC1, &ADC_InitStructure);
ADC_RegularChannelConfig(ADC1, ADC_Channel_1, 1,ADC_SampleTime_7Cycles5);//通道規(guī)則組設(shè)置
ADC_Cmd(ADC1,ENABLE);
ADC_ResetCalibration(ADC1);//ADC寄存器重置
while(ADC_GetResetCalibrationStatus(ADC1));//獲取重置狀態(tài)
ADC_StartCalibration(ADC1);//開啟指定校準(zhǔn)寄存器
while(ADC_GetCalibrationStatus(ADC1));//獲取校準(zhǔn)
ADC_SoftwareStartConvCmd(ADC1, ENABLE);//開啟軟件啟動
}
#include "printf.h"
int fputc(int ch,FILE *p) //
{
USART_SendData(USART1,(u8)ch);
while(USART_GetFlagStatus(USART1,USART_FLAG_TXE)==RESET);
return ch;
}
void printf_init()
{
GPIO_InitTypeDef GPIO_InitStructure;
USART_InitTypeDef USART_InitStructure;
NVIC_InitTypeDef NVIC_InitStructure;
RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOA,ENABLE);
RCC_APB2PeriphClockCmd(RCC_APB2Periph_USART1,ENABLE);
RCC_APB2PeriphClockCmd(RCC_APB2Periph_AFIO,ENABLE);
GPIO_InitStructure.GPIO_Pin=GPIO_Pin_9;
GPIO_InitStructure.GPIO_Mode=GPIO_Mode_AF_PP;
GPIO_InitStructure.GPIO_Speed=GPIO_Speed_50MHz;
GPIO_Init(GPIOA,&GPIO_InitStructure);
GPIO_InitStructure.GPIO_Pin=GPIO_Pin_10;
GPIO_InitStructure.GPIO_Mode=GPIO_Mode_IN_FLOATING;
GPIO_Init(GPIOA,&GPIO_InitStructure);
USART_InitStructure.USART_BaudRate = 9600;
USART_InitStructure.USART_WordLength = USART_WordLength_8b;
USART_InitStructure.USART_StopBits = USART_StopBits_1;
USART_InitStructure.USART_Parity = USART_Parity_No;
USART_InitStructure.USART_HardwareFlowControl =USART_HardwareFlowControl_None;
USART_InitStructure.USART_Mode = USART_Mode_Tx | USART_Mode_Rx;
// USART_InitStructure.USART_Clock = USART_Clock_Disable;
// USART_InitStructure.USART_CPOL = USART_CPOL_High;
// USART_InitStructure.USART_CPHA = USART_CPHA_1Edge;
// USART_InitStructure.USART_LastBit = USART_LastBit_Enable;
USART_Init(USART1, &USART_InitStructure);
USART_Cmd(USART1, ENABLE);
USART_ITConfig(USART1, USART_IT_RXNE, ENABLE);
USART_ClearFlag(USART1,USART_FLAG_TC);
NVIC_PriorityGroupConfig(NVIC_PriorityGroup_1);
NVIC_InitStructure.NVIC_IRQChannel = USART1_IRQn;
NVIC_InitStructure.NVIC_IRQChannelPreemptionPriority = 0;
NVIC_InitStructure.NVIC_IRQChannelSubPriority = 1;
NVIC_InitStructure.NVIC_IRQChannelCmd = ENABLE;
NVIC_Init(&NVIC_InitStructure);
}
int main()
{
u8 i = 0;
float ad = 0;
printf_init();
adc_init();
while(1){
for(i = 0;i < 10;i++){
ADC_SoftwareStartConvCmd(ADC1, ENABLE);
while(!ADC_GetFlagStatus(ADC1,ADC_FLAG_EOC));//轉(zhuǎn)換結(jié)束標(biāo)志
ad=ad+ADC_GetConversionValue(ADC1);//累加轉(zhuǎn)換結(jié)果
}
ad /= 10;
printf("ad : %.3f Vrn",ad*3.3/4096);
delay_ms(1000);
delay_ms(1000);
}
}