My_GetAdc.c
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#include "hardware.h"
#include "math.h"
#include "sys.h"
#include "all_value.h"
#include "My_GetAdc.h"
//float Vol[2]={0,0};//采集的电压
//u16 VolAll[2]={0,0};//采集的电压
//u8 VolGetNums[2]={0,0};//采集的电压
//u8 VolWorking[2]={0,0};//采集的电压
//u8 VoChanel;
//void Get_Adca(u8 ch,u8 times) //此输出是对应口的当前时刻的真实采集信息,数字信号值,可能会有干扰
//{
// if (ch==ADC_Channel_4)VoChanel=0;
// else if (ch==ADC_Channel_5)VoChanel=1;
//
//// if ((VoChanel==0) &&(TIM3_AdcNums[0]>=10)&&(VolWorking[0]==0)&&(VolWorking[1]==0))
////{VolWorking[0]=1;
////VolWorking[1]=0;}
//// if ((VoChanel==1) &&(TIM3_AdcNums[1]>=10)&&(VolWorking[1]==0)&&(VolWorking[0]==0))
////{VolWorking[1]=1;
////VolWorking[0]=0;}
//
// if ((TIM3_AdcNums[VoChanel]>=10)&&(VolWorking[VoChanel]==1))
// {
//
// ADC_RegularChannelConfig(ADC1,ch,1, ADC_SampleTime_480Cycles );
// ADC_SoftwareStartConv(ADC1);
//// ADC_GetFlagStatus(ADC1, ADC_FLAG_EOC );
//// if (ADC_GetFlagStatus(ADC1, ADC_FLAG_EOC ))
//// {
////// VolAll[VoChanel]+=ADC_GetConversionValue(ADC1);
//// TIM3_AdcNums[VoChanel]=0;
////// VolGetNums[VoChanel]++;
//// VolWorking[VoChanel]=0;
////
////// if (VolGetNums[VoChanel]>=times)
////// {
////// Vol[VoChanel]=(float)VolAll[VoChanel]/times/4096*3.3*3.2;
////// VolGetNums[VoChanel]=0;VolAll[VoChanel]=0;}
//// Vol[VoChanel]=(float)ADC_GetConversionValue(ADC1)/4096*3.3*3.2;
//// TIM3_AdcWaitNums[VoChanel]=0;
//// }
//// else
//// {
//// if(TIM3_AdcWaitNums[VoChanel]>=100)
//// {
//// if (Ceshi[9]){
//// Vol[VoChanel]=0;
//// VolGetNums[VoChanel]=0;
//// VolAll[VoChanel]=0;}
//// }
//// }
// }
//}