750 lines
		
	
	
		
			18 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			750 lines
		
	
	
		
			18 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
| #include "adc_cfg.h"
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| #include "gpio_cfg.h"
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| #include "base/delay.h"
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| #include "timer_cfg.h"
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| #include "base/utility.h"
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| #include "power.h"
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| volatile uint16_t ad0_adc_sample[AD_SCAN_SAMPLE*AD_SCAN_COUNT];
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| #define ADC1_SAMPLE_BUF_LEN 200
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| #define ADC1_SAMPLE_BUF_LEN2 20
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| 
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| 
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| 
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| volatile uint16_t FireBus_ADC_Buf[FIREBUS_ADC_BUF_LEN];
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| 
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| 
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| volatile uint16_t adc1_sample_buf[ADC1_SAMPLE_BUF_LEN];
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| void AdcDef_Init(void)
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| {
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| 	
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| 	ADC_InitTypeDef ADC_InitStructure;
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| 	DMA_InitTypeDef DMA_InitStructure;
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| 	GPIO_InitTypeDef GPIO_InitStructure;
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| 	RCC_APB2PeriphClockCmd(RCC_APB2Periph_ADC1, ENABLE );
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| 	RCC_APB2PeriphClockCmd(RCC_APB2Periph_ADC2, ENABLE );
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| 	RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOA,ENABLE);
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| 	RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOC,ENABLE);
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| 	RCC_AHBPeriphClockCmd(RCC_AHBPeriph_DMA1,ENABLE);
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| 
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| 	RCC_ADCCLKConfig(RCC_PCLK2_Div6);  //12MHz		
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| 
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| 	//GPIO 配置
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| 	GPIO_InitStructure.GPIO_Pin= VCC_2V5_Pin | VCC_1V25_Pin | V_LA_M_Pin | V_LA_H_Pin | R_AD_01_Pin;
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| 	GPIO_InitStructure.GPIO_Mode=GPIO_Mode_AIN;
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| 	GPIO_InitStructure.GPIO_Speed=GPIO_Speed_50MHz;
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| 	GPIO_Init(GPIOA,&GPIO_InitStructure);
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| 	GPIO_Write(GPIOA,GPIO_InitStructure.GPIO_Pin);
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| 	
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| 		//GPIO 配置
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| 	GPIO_InitStructure.GPIO_Pin= AD_OUTA_Pin | AD_OUTB_Pin | AN_UA_Pin | AN_MAL_Pin | AN_CAP_AD_Pin;
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| 	GPIO_InitStructure.GPIO_Mode=GPIO_Mode_AIN;
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| 	GPIO_InitStructure.GPIO_Speed=GPIO_Speed_50MHz;
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| 	GPIO_Init(GPIOA,&GPIO_InitStructure);
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| 	GPIO_Write(GPIOC,GPIO_InitStructure.GPIO_Pin);
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| 
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| 	ADC_DeInit(ADC1);
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| 	ADC_InitStructure.ADC_Mode = ADC_Mode_Independent;
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| 	ADC_InitStructure.ADC_ScanConvMode = ENABLE;
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| 	ADC_InitStructure.ADC_ContinuousConvMode = ENABLE;
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| 	ADC_InitStructure.ADC_ExternalTrigConv = ADC_ExternalTrigConv_None;
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| 	ADC_InitStructure.ADC_DataAlign = ADC_DataAlign_Right;
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| 	ADC_InitStructure.ADC_NbrOfChannel = AD_SCAN_SAMPLE;
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| 	ADC_Init(ADC1, &ADC_InitStructure);
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| 	ADC_TempSensorVrefintCmd(ENABLE);
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| 
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| 
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| 
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| 	ADC_RegularChannelConfig(ADC1, VCC_2V5_CH,  1, ADC_SampleTime_239Cycles5);
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| 	ADC_RegularChannelConfig(ADC1, VCC_1V25_CH,  2, ADC_SampleTime_239Cycles5);
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| 	ADC_RegularChannelConfig(ADC1, V_LA_M_CH,  3, ADC_SampleTime_239Cycles5);
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| 	ADC_RegularChannelConfig(ADC1, V_LA_H_CH,  4, ADC_SampleTime_239Cycles5);
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| 	ADC_RegularChannelConfig(ADC1, AD_OUTA_CH,  5, ADC_SampleTime_239Cycles5);
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| 	ADC_RegularChannelConfig(ADC1, AD_OUTB_CH,  6, ADC_SampleTime_239Cycles5);
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| 	ADC_RegularChannelConfig(ADC1, ADC_Channel_16, 7, ADC_SampleTime_71Cycles5);
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| 	ADC_RegularChannelConfig(ADC1, ADC_Channel_17, 8, ADC_SampleTime_71Cycles5);
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| 
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| 	DMA_DeInit(DMA1_Channel1);
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| 	DMA_InitStructure.DMA_PeripheralBaseAddr = (uint32_t)&ADC1->DR;
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| 	DMA_InitStructure.DMA_MemoryBaseAddr = (uint32_t)ad0_adc_sample;
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| 	DMA_InitStructure.DMA_DIR = DMA_DIR_PeripheralSRC;
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| 	DMA_InitStructure.DMA_BufferSize = AD_SCAN_SAMPLE*AD_SCAN_COUNT;
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| 	DMA_InitStructure.DMA_PeripheralInc = DMA_PeripheralInc_Disable;
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| 	DMA_InitStructure.DMA_MemoryInc = DMA_MemoryInc_Enable;
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| 	DMA_InitStructure.DMA_PeripheralDataSize = DMA_PeripheralDataSize_HalfWord;
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| 	DMA_InitStructure.DMA_MemoryDataSize = DMA_MemoryDataSize_HalfWord;
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| 	DMA_InitStructure.DMA_Mode = DMA_Mode_Circular;
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| 	DMA_InitStructure.DMA_Priority = DMA_Priority_Medium;
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| 	DMA_InitStructure.DMA_M2M = DISABLE;
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| 	DMA_Init(DMA1_Channel1,&DMA_InitStructure);
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| 	DMA_Cmd(DMA1_Channel1,ENABLE);	 
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| 
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| 	ADC_Cmd(ADC1, ENABLE);  
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| 	ADC_ResetCalibration(ADC1);
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| 	while(ADC_GetResetCalibrationStatus(ADC1));
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| 
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| 	ADC_StartCalibration(ADC1);
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| 	while(ADC_GetCalibrationStatus(ADC1));     
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| 	 
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| 	ADC_DMACmd(ADC1,ENABLE);
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| 	ADC_SoftwareStartConvCmd(ADC1, ENABLE);
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| 	
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| 	
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| 	
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| 	ADC_DeInit(ADC2);
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| 	ADC_InitStructure.ADC_Mode = ADC_Mode_Independent;
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| 	ADC_InitStructure.ADC_ScanConvMode = DISABLE;
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| 	ADC_InitStructure.ADC_ContinuousConvMode = DISABLE;
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| 	ADC_InitStructure.ADC_ExternalTrigConv = ADC_ExternalTrigConv_None;
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| 	ADC_InitStructure.ADC_DataAlign = ADC_DataAlign_Right;
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| 	ADC_InitStructure.ADC_NbrOfChannel = 1;
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| 	ADC_Init(ADC2, &ADC_InitStructure);
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| 	
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| 	ADC_Cmd(ADC2, ENABLE);  
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| 	ADC_ResetCalibration(ADC2);
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| 	while(ADC_GetResetCalibrationStatus(ADC2));
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| 
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| 	ADC_StartCalibration(ADC2);
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| 	while(ADC_GetCalibrationStatus(ADC2));     
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| 	 
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| 	ADC_DMACmd(ADC2,ENABLE);
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| 	ADC_SoftwareStartConvCmd(ADC2, ENABLE);
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| }
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| 
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| 
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| void StartADC2Channel(uint32_t  channel, uint32_t speed)
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| {
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| 
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|   ADC_RegularChannelConfig(ADC2,channel,1,speed);
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| 	ADC_SoftwareStartConvCmd(ADC2,ENABLE);
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| 	delay_us(100);
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| }
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| 
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| void StartADC1Channel(uint32_t  channel)
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| {
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| 	
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| 	ADC_RegularChannelConfig(ADC1,channel,1,ADC_SampleTime_71Cycles5);
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| 	ADC_SoftwareStartConvCmd(ADC1,ENABLE);
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| 	delay_us(100);
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| 	//adc_calibration_enable(ADC0);
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| }
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| 
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| /*
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| 使用该函数,对ADC2触发一次采样,到用该函数前,应调用一次StartADC1Channel(ch)
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| */
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| uint32_t GetADC2_Fast(void)
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| {
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| 	uint16_t time_out = 10000;
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| 	uint16_t temp = 0;
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| 	ADC_ClearFlag(ADC2,ADC_FLAG_EOC);//清除转换结束标志
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| 	ADC_SoftwareStartConvCmd(ADC2,ENABLE);//启动转换
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| 	while((time_out > 0) && (	ADC_GetFlagStatus(ADC2,ADC_FLAG_EOC) == RESET))
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| 	{
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| 		time_out--;
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| 	}
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| 	temp = ADC_GetConversionValue(ADC2) & 0x0FFF;
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| 	return temp;
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| }
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| /*
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| 使用该函数,对ADC触发一次采样,到用该函数前,应调用一次StartADC0Channel(ch)
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| */
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| uint16_t GetADC_Fast(ADC_TypeDef* adc_periph)
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| {
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| 	uint16_t time_out = 10000;
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| 	uint16_t temp = 0;
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| 	ADC_ClearFlag(adc_periph,ADC_FLAG_EOC);//清除转换结束标志
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| 	ADC_SoftwareStartConvCmd(adc_periph,ENABLE);//启动转换
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| 	while((time_out > 0) && (	ADC_GetFlagStatus(adc_periph,ADC_FLAG_EOC) == RESET))
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| 	{
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| 		time_out--;
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| 	}
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| 	temp = ADC_GetConversionValue(adc_periph) & 0x0FFF;
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| 	return temp;
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| }
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| 
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| uint32_t GetADC1_Fast(void)
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| {
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| 	return GetADC_Fast(ADC1);
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| }
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| 
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| 
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| uint32_t GetADC2_Value(uint32_t channel)
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| {
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| 	StartADC2Channel(channel,ADC_SPEED_MIDLE);
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| 	return GetADC2_Fast();
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| }
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| 
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| /*
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| 	ADC_RegularChannelConfig(ADC1, VCC_2V5_CH,  1, ADC_SampleTime_239Cycles5);
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| 	ADC_RegularChannelConfig(ADC1, VCC_1V25_CH,  2, ADC_SampleTime_239Cycles5);
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| 	ADC_RegularChannelConfig(ADC1, V_LA_M_CH,  3, ADC_SampleTime_239Cycles5);
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| 	ADC_RegularChannelConfig(ADC1, V_LA_H_CH,  4, ADC_SampleTime_239Cycles5);
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| 	ADC_RegularChannelConfig(ADC1, AD_OUTA_CH,  5, ADC_SampleTime_239Cycles5);
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| 	ADC_RegularChannelConfig(ADC1, AD_OUTB_CH,  6, ADC_SampleTime_239Cycles5);
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| 	ADC_RegularChannelConfig(ADC1, ADC_Channel_16, 7, ADC_SampleTime_71Cycles5);
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| 	ADC_RegularChannelConfig(ADC1, ADC_Channel_17, 8, ADC_SampleTime_71Cycles5);
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| 
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| */
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| void GetADC1_Value(uint32_t channel,uint16_t* buf,uint16_t len)
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| {
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| 	uint8_t i = 0;
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| 	volatile uint16_t* buf_head = 0;
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| 	switch(channel)
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| 	{
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| 		case VCC_2V5_CH: buf_head = ad0_adc_sample;break;
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| 		case VCC_1V25_CH: buf_head = ad0_adc_sample+1;break;
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| 		case V_LA_M_CH: buf_head = ad0_adc_sample+2;break;
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| 		case V_LA_H_CH: buf_head = ad0_adc_sample+3;break;
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| 		case AD_OUTA_CH: buf_head = ad0_adc_sample+4;break;
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| 		case AD_OUTB_CH: buf_head = ad0_adc_sample+5;break;		
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| 		case ADC_Channel_16:buf_head = ad0_adc_sample+6;break;
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| 		case ADC_Channel_17:buf_head = ad0_adc_sample+7;break;
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| 		default:buf_head = 0;break;
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| 	}
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| 	if(buf_head == 0)
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| 		return;
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| 	if(len > AD_SCAN_COUNT)
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| 		len = AD_SCAN_COUNT;
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| 	for(i=0; i < len ; i++)
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| 	{
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| 		buf[i] = buf_head[i*AD_SCAN_SAMPLE];
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| 	}
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| 	
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| 	
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| }
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| 
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| float Get_Temperature(void)
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| {
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| 	uint32_t ad_v;
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|   GetADC1_Value(ADC_Channel_16,(uint16_t*)&ad_v,1);
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| 	float temper = (1.43f - ad_v*3.3f/4096) * 1000 / 4.3f + 25;
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| 	return temper;
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| }
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| 
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| 
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| /*************************ADC App****************************************/
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| /*
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| @brief 稳定获取总线电流
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| @rtv 返回电流值 0.1uA
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| */
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| uint16_t ADC_GetBaseStableCur(void)
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| {
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| 	uint16_t us_count = 0;
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| 	uint16_t us_temp = 0;
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| 	uint32_t ul_base;
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| 	StartADC2Channel(AN_UA_CH,ADC_SPEED_SLOW);
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| 	Power_SetSampleCurrentRange(R100_0uA_160uA_UC);
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| 	delay_ms(100);
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| 	while(us_count < ADC1_SAMPLE_BUF_LEN)
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| 	{
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| 		adc1_sample_buf[us_count] =  GetADC_Fast(ADC_CURR_DE);
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| 		delay_us(20);
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| 		if(us_count == 0)
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| 		{
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| 			ul_base = adc1_sample_buf[us_count] ;
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| 		}else{
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| 			ul_base += adc1_sample_buf[us_count] ;
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| 			ul_base >>= 1;
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| 		}
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| 		us_count++;
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| 	}
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| 	
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| 	for(us_count = 0; us_count < ADC1_SAMPLE_BUF_LEN; us_count++)
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| 	{
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| 		ul_base = (ul_base*8 +  adc1_sample_buf[us_count]*2 )/10;
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| 		adc1_sample_buf[us_count] = ul_base;
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| 	}
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| 	Bubble_Sort_u16((uint16_t *)adc1_sample_buf,us_count);
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| 	
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| 	us_count = (ADC1_SAMPLE_BUF_LEN>>2);
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| 	us_temp = ADC1_SAMPLE_BUF_LEN - (ADC1_SAMPLE_BUF_LEN>>2);
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| 	while(us_count < us_temp)
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| 	{
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| 		ul_base += adc1_sample_buf[us_count++];
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| 	}
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| 	us_temp -= (ADC1_SAMPLE_BUF_LEN>>2);
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| 	ul_base = ul_base / us_temp;
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| 	ul_base = Power_ConvCur(ul_base,R100_0uA_160uA_UC);
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| 	return ul_base;
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| }
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| 
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| 
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| /*
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| @brief 稳定获取总线电流
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| @rtv 返回电流值 0.1uA
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| */
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| uint16_t ADC_Comm1p6mA_EndCur(void)
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| {
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| 	uint16_t us_count = 0;
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| 	uint16_t us_temp = 0;
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| 	uint32_t ul_base;
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| 	StartADC2Channel(AN_UA_CH,ADC_SPEED_SLOW);
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| 	Power_SetSampleCurrentRange(R10_0p1mA_1p6mA_UC);
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| 	delay_ms(1);
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| 	while(us_count < ADC1_SAMPLE_BUF_LEN2)
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| 	{
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| 		adc1_sample_buf[us_count] =  GetADC_Fast(ADC_CURR_DE);
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| 		delay_us(1);
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| 		if(us_count == 0)
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| 		{
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| 			ul_base = adc1_sample_buf[us_count] ;
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| 		}else{
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| 			ul_base += adc1_sample_buf[us_count] ;
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| 			ul_base >>= 1;
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| 		}
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| 		us_count++;
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| 	}
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| 	
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| 	for(us_count = 0; us_count < ADC1_SAMPLE_BUF_LEN2; us_count++)
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| 	{
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| 		ul_base = (ul_base*8 +  adc1_sample_buf[us_count]*2 )/10;
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| 		adc1_sample_buf[us_count] = ul_base;
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| 	}
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| 	Bubble_Sort_u16((uint16_t *)adc1_sample_buf,us_count);
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| 	
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| 	us_count = (ADC1_SAMPLE_BUF_LEN2>>2);
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| 	us_temp = ADC1_SAMPLE_BUF_LEN2 - (ADC1_SAMPLE_BUF_LEN2>>2);
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| 	while(us_count < us_temp)
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| 	{
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| 		ul_base += adc1_sample_buf[us_count++];
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| 	}
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| 	us_temp -= (ADC1_SAMPLE_BUF_LEN2>>2);
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| 	ul_base = ul_base / us_temp;
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| 	ul_base = Power_ConvCur(ul_base,R10_0p1mA_1p6mA_UC);
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| 	return ul_base;
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| }
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| 
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| /*
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| @brief 电流降到指定电流下的时间
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| @param  执行时间 单位0.1ms
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| @rtv 最大波动AD值
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| */
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| uint16_t AD_CurMonitor(uint32_t ul_times)
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| {
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| 	uint32_t ul_count = 0, ul_count2;
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| 	uint16_t us_count = 0;
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| 	uint16_t aus_adc[20];
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| 	uint16_t us_maxadv,us_minadv = 0;
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| 	uint16_t ul_shake = 0;
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| 	LED1_Out = 0;
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| 	for(ul_count2 =0; ul_count2 < 20;ul_count2++)
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| 	{ 
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| 		aus_adc[ul_count2] = ADC_GetCurADCFast();
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| 	}
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| 	LED1_Out = 1;
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| 	ul_count2 = 0;
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| 	while(ul_times > 0)
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| 	{
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| 		ul_count = 0;
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| 		Get100usCount();
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| 		while(ul_count< 50000 && ul_count < ul_times)
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| 		{
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| 			us_maxadv = 0;
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| 			us_minadv = 0xFFF;
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| 			
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| 			for(us_count = 0; us_count < 20;us_count++)
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| 			{
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| 				if(aus_adc[us_count] > us_maxadv)
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| 				{
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| 					us_maxadv = aus_adc[us_count];
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| 				}
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| 				if(aus_adc[us_count] < us_minadv)
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| 				{
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| 					us_minadv = aus_adc[us_count];
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| 				}
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| 			}
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| 			ul_count2 %= 20;
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| 			aus_adc[ul_count2++] =   ADC_GetCurADCFast();
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| 			if(us_maxadv < us_minadv)
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| 			{
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| 				us_minadv = 4096;
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| 			}else{
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| 				us_minadv = us_maxadv - us_minadv;
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| 			}
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| 			if(ul_shake < us_minadv)
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| 			{
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| 				ul_shake = us_minadv;
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| 				if(ul_shake > 500){
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| 					LED1_Out = 0;
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| 					delay_us(50);
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| 					LED1_Out = 1;
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| 				}
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| 			}
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| 			delay_us(40);
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| 			ul_count = GET_COUNTTIM_VAL();
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| 		}
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| 		if(ul_count >= ul_times)
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| 		{
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| 			LED1_Out = 0;
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| 			return ul_shake;
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| 		}
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| 		ul_times -= ul_count;
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| 	}
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| 	LED1_Out= 0;
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| 	return ul_shake;
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| }
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| 
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| 
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| 
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| static void ad_gets(uint16_t *v,int num)
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| {
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| 	for(int i =0; i < num;i++)
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| 	{ 
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| 		v[i] = ADC_GetCurADCFast();
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| 	}
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| }
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| /*rc{ 重写电流采集 }*/
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| uint16_t AD_CurMonitor_(uint32_t ul_times)
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| {
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| 	uint32_t ul_count = 0, ul_count2;
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| 	uint16_t us_count = 0;
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| 	uint16_t aus_adc[20];
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| 	uint16_t us_maxadv=0,us_minadv = 4096;
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| 	uint16_t ul_shake = 0;
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|   uint16_t us_mid;
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| 	ul_count2 = 0;
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| 	while(ul_times > 0)
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| 	{
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| 		ul_count = 0;
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| 		Get100usCount();
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| 		while(ul_count< 50000 && ul_count < ul_times)
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| 		{
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| 			us_maxadv = 0;
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| 			us_minadv = 0xFFF;
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| 			
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|       ad_gets(aus_adc,20);
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|       Bubble_Sort_u16(aus_adc,20);
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|       us_mid=aus_adc[10];
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|       if(us_mid>us_maxadv){
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|         us_maxadv=us_mid;
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|       }
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|       if(us_mid<us_minadv){
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|         us_minadv=us_mid;
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|       }
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|       
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| 			if(ul_shake < us_maxadv-us_minadv)
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| 			{
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| 				ul_shake = us_maxadv-us_minadv;
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| 			}
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| 			delay_us(40);
 | ||
| 			ul_count = GET_COUNTTIM_VAL();
 | ||
| 		}
 | ||
| 		if(ul_count >= ul_times)
 | ||
| 		{
 | ||
| 			LED1_Out = 0;
 | ||
| 			return ul_shake;
 | ||
| 		}
 | ||
| 		ul_times -= ul_count;
 | ||
| 	}
 | ||
| 	LED1_Out= 0;
 | ||
| 	return ul_shake;
 | ||
| }
 | ||
| 
 | ||
| 
 | ||
| 
 | ||
| 
 | ||
| 
 | ||
| 
 | ||
| 
 | ||
| 
 | ||
| /*
 | ||
| @brief 电流降到指定电流下的时间
 | ||
| @param 采样超时
 | ||
| @param end_adv 检测启动和结束判线
 | ||
| @param 最大电流ad
 | ||
| @param 电流下降过程中最大向上波动
 | ||
| @rtv 时间采集值0.1ms
 | ||
| */
 | ||
| 
 | ||
| 
 | ||
| uint16_t AD_GetChgEnergy(uint16_t sample_timeout, uint16_t end_adv,uint16_t* max_cul,uint16_t *shake_adv)
 | ||
| {
 | ||
| 	uint16_t aus_adc_v[5];
 | ||
| 	uint16_t aus_adv_shake[20];
 | ||
| 	uint16_t time_out;
 | ||
| 	uint16_t us_count = 0;
 | ||
| 	uint16_t us_shake_count = 0;
 | ||
| 	uint16_t us_shake_minadc,us_shake_maxadc;
 | ||
| 	uint8_t  start_flag = 0,shake_flag = 0;
 | ||
| 	Get100usCount();
 | ||
| 	ADC_ClearFlag(ADC_CURR_DE,ADC_FLAG_EOC);//清除转换结束标志
 | ||
| 	ADC_SoftwareStartConvCmd(ADC_CURR_DE, ENABLE);	//启动转换
 | ||
| 	aus_adc_v[4] = 0xFFFF;
 | ||
| 	*max_cul = 0;
 | ||
| 	*shake_adv = 0;
 | ||
| 	LED1_Out = 0;
 | ||
| 	if(end_adv == 0 || end_adv == 0xFFFF)
 | ||
| 	{
 | ||
| 		return 0;
 | ||
| 	}
 | ||
| 	while(GetCountTimerCnt() < sample_timeout)
 | ||
| 	{
 | ||
| 			time_out = 2000;
 | ||
| 			while((time_out > 0) && (	ADC_GetFlagStatus(ADC_CURR_DE,ADC_FLAG_EOC) == RESET))
 | ||
| 			{
 | ||
| 				time_out--;
 | ||
| 			}
 | ||
| 			aus_adc_v[us_count] =   ADC_GetConversionValue(ADC_CURR_DE) & 0x0FFF;
 | ||
| 			aus_adv_shake[us_shake_count] = aus_adc_v[us_count];
 | ||
| 			ADC_ClearFlag(ADC_CURR_DE,ADC_FLAG_EOC);//清除转换结束标志
 | ||
| 			ADC_SoftwareStartConvCmd(ADC_CURR_DE, ENABLE);	//启动转换
 | ||
| 			us_count++;
 | ||
| 			us_shake_count++;
 | ||
| 			us_count %= 5;
 | ||
| 			us_shake_count %= 20;
 | ||
| 			if((us_shake_count == 0) && (start_flag > 0))
 | ||
| 			{
 | ||
| 				shake_flag ++;
 | ||
| 			}
 | ||
| 			if(shake_flag == 2)
 | ||
| 			{
 | ||
| 				LED1_Out = 1;
 | ||
| 				shake_flag = 1;
 | ||
| 				time_out = 0;
 | ||
| 				us_shake_maxadc = 0;
 | ||
| 				us_shake_minadc = 0x0FFF;
 | ||
| 				while(time_out < 20)
 | ||
| 				{
 | ||
| 					if(aus_adv_shake[time_out] > us_shake_maxadc)
 | ||
| 					{
 | ||
| 						us_shake_maxadc = aus_adv_shake[time_out];
 | ||
| 					}
 | ||
| 					if(aus_adv_shake[time_out] < us_shake_minadc)
 | ||
| 					{
 | ||
| 						us_shake_minadc = aus_adv_shake[time_out];
 | ||
| 					}
 | ||
| 					time_out++;
 | ||
| 				}
 | ||
| 				us_shake_minadc = us_shake_maxadc - us_shake_minadc;
 | ||
| 				if(us_shake_minadc > 900)
 | ||
| 				{
 | ||
| 					us_shake_minadc = 0;
 | ||
| 				}
 | ||
| 				if(*shake_adv < us_shake_minadc)
 | ||
| 				{
 | ||
| 					*shake_adv = us_shake_minadc;
 | ||
| 				}
 | ||
| 			}
 | ||
| 			
 | ||
| 			if(us_count  == 0)
 | ||
| 			{
 | ||
| 				Bubble_Sort_u16(aus_adc_v,5);
 | ||
| 				if((aus_adc_v[0] > end_adv) && start_flag == 0)
 | ||
| 				{
 | ||
| 						start_flag = 1;
 | ||
| 						Get100usCount();//未启动重新设置计数器
 | ||
| 				}
 | ||
| 				 //连续5个都大于判线值
 | ||
| 				else if(start_flag >0 )
 | ||
| 				{
 | ||
| 					if(*max_cul < aus_adc_v[2])
 | ||
| 					{
 | ||
| 						*max_cul = aus_adc_v[2];
 | ||
| 					}					
 | ||
| 					if(aus_adc_v[4] < end_adv)
 | ||
| 					{
 | ||
| 						LED1_Out = 0;
 | ||
| 						return Get100usCount();
 | ||
| 					}
 | ||
| 				}else if(start_flag == 0)
 | ||
| 				{
 | ||
| 						if(GetCountTimerCnt() > 10000)
 | ||
| 						{
 | ||
| 							return 0;
 | ||
| 						}
 | ||
| 				}
 | ||
| 				
 | ||
| 			}
 | ||
| 	}
 | ||
| 	return 40000;
 | ||
| }
 | ||
| 
 | ||
| /*获取桥丝电阻*/
 | ||
| void AD_SampleResistor(uint16_t* channels_re)
 | ||
| {
 | ||
| 	uint16_t aus_sample[32];
 | ||
| 	uint8_t uc_index = 0;
 | ||
| 	const static float resistor_cur = 2.49f;
 | ||
| 	const static float res_mutli = RES_MULTIPLE;
 | ||
| 	/*
 | ||
| 	Gpio_ResistorSwitch
 | ||
| 	@param 0 全关 
 | ||
| 			1 通道1-4通,过桥丝
 | ||
| 			2 通道2-3通,过桥丝
 | ||
| 			3 通道1-3通,测阻抗
 | ||
| 			4 通道2-4通,测阻抗
 | ||
| 	
 | ||
| 	*/
 | ||
| 	float f_r1,f_r2,f_r3,f_r4;
 | ||
| 	ADC_ResistorChannelSet(ADC_SPEED_MIDLE);
 | ||
| 	Gpio_ResistorSwitch(1);
 | ||
| 	delay_ms(50);
 | ||
| 	for(uc_index = 0; uc_index < 32; uc_index++)
 | ||
| 	{
 | ||
| 		aus_sample[uc_index] =  ADC_GetResistorADCFast();
 | ||
| 	}
 | ||
| 	Bubble_Sort_u16(aus_sample,uc_index);
 | ||
| 	f_r1 = 0;
 | ||
| 	for(uc_index = 8; uc_index < 24; uc_index++)
 | ||
| 	{
 | ||
| 		f_r1 += aus_sample[uc_index];
 | ||
| 	}
 | ||
| 	f_r1 = (((f_r1 /res_mutli)*1000)/4096)*3.3f/resistor_cur/16;
 | ||
| 	
 | ||
| 	Gpio_ResistorSwitch(2);
 | ||
| 	delay_ms(50);
 | ||
| 	
 | ||
| 	for(uc_index = 0; uc_index < 32; uc_index++)
 | ||
| 	{
 | ||
| 		aus_sample[uc_index] =  ADC_GetResistorADCFast();
 | ||
| 	}
 | ||
| 	Bubble_Sort_u16(aus_sample,uc_index);
 | ||
| 	f_r2 = 0;
 | ||
| 	for(uc_index = 8; uc_index < 24; uc_index++)
 | ||
| 	{
 | ||
| 		f_r2 += aus_sample[uc_index];
 | ||
| 	}
 | ||
| 	f_r2 = (((f_r2 /res_mutli)*1000)/4096)*3.3f/resistor_cur/16;
 | ||
| 	
 | ||
| 	Gpio_ResistorSwitch(3);
 | ||
| 	delay_ms(50);
 | ||
| 	
 | ||
| 	for(uc_index = 0; uc_index < 32; uc_index++)
 | ||
| 	{
 | ||
| 		aus_sample[uc_index] =  ADC_GetResistorADCFast();
 | ||
| 	}
 | ||
| 	Bubble_Sort_u16(aus_sample,uc_index);
 | ||
| 	f_r3 = 0;
 | ||
| 	for(uc_index = 8; uc_index < 24; uc_index++)
 | ||
| 	{
 | ||
| 		f_r3 += aus_sample[uc_index];
 | ||
| 	}
 | ||
| 	f_r3 = (((f_r3 /res_mutli)*1000)/4096)*3.3f/resistor_cur/16;
 | ||
| 	
 | ||
| 	Gpio_ResistorSwitch(4);
 | ||
| 	delay_ms(50);
 | ||
| 	
 | ||
| 	for(uc_index = 0; uc_index < 32; uc_index++)
 | ||
| 	{
 | ||
| 		aus_sample[uc_index] =  ADC_GetResistorADCFast();
 | ||
| 	}
 | ||
| 	Bubble_Sort_u16(aus_sample,uc_index);
 | ||
| 	f_r4 = 0;
 | ||
| 	for(uc_index = 8; uc_index < 24; uc_index++)
 | ||
| 	{
 | ||
| 		f_r4 += aus_sample[uc_index];
 | ||
| 	}
 | ||
| 	f_r4 = (((f_r4 /res_mutli)*1000)/4096)*3.3f/resistor_cur/16;
 | ||
| 	
 | ||
| 	Gpio_ResistorSwitch(0);
 | ||
| 	
 | ||
| 	channels_re[0] = (uint16_t) (((f_r1+f_r2-f_r3-f_r4)/2+0.005f)*100);
 | ||
| 	channels_re[1] =  (uint16_t) ((f_r1+0.005f)*100);
 | ||
| 	channels_re[2] =  (uint16_t) ((f_r2+0.005f)*100);
 | ||
| 	channels_re[3] =  (uint16_t) ((f_r3+0.005f)*100);
 | ||
| 	channels_re[4] =  (uint16_t) ((f_r4+0.005f)*100);
 | ||
| 
 | ||
| }
 | ||
| 
 | ||
| /*测量电容电压*/
 | ||
| uint16_t AD_SampleCap(uint16_t delay)
 | ||
| {
 | ||
| 	uint32_t ul_ad = 0,ul_ad2 = 0;
 | ||
| 	uint8_t uc_index = 0;
 | ||
| 	uint16_t aus_sample[32];
 | ||
| 	Gpio_CAPSwitch(1);
 | ||
| 	ADC_CAPVolChannelSet(ADC_SPEED_MIDLE);
 | ||
| 	delay_ms(1500);
 | ||
| 	for(uc_index = 0; uc_index < 32; uc_index++)
 | ||
| 	{
 | ||
| 		aus_sample[uc_index] =  ADC_GetCAPVolADCFast();
 | ||
| 	}
 | ||
| 	Bubble_Sort_u16(aus_sample,uc_index);
 | ||
| 	ul_ad = 0;
 | ||
| 	for(uc_index = 8; uc_index < 24; uc_index++)
 | ||
| 	{
 | ||
| 		ul_ad += aus_sample[uc_index];
 | ||
| 	}
 | ||
| 	//
 | ||
| 	ul_ad >>= 4;
 | ||
| 	
 | ||
| 	while(delay > 0)
 | ||
| 	{
 | ||
| 		delay_os_ms(100);
 | ||
| 		delay--;
 | ||
| 	}
 | ||
| 	
 | ||
| 	for(uc_index = 0; uc_index < 32; uc_index++)
 | ||
| 	{
 | ||
| 		aus_sample[uc_index] =  ADC_GetCAPVolADCFast();
 | ||
| 	}
 | ||
| 	Bubble_Sort_u16(aus_sample,uc_index);
 | ||
| 	ul_ad2 = 0;
 | ||
| 	for(uc_index = 8; uc_index < 24; uc_index++)
 | ||
| 	{
 | ||
| 		ul_ad2 += aus_sample[uc_index];
 | ||
| 	}
 | ||
| 	//ul_ad2 = ((ul_ad2 *25*11*100/board_st.v2p5_adc/16)+5)/10;
 | ||
| 	ul_ad2 >>= 4;
 | ||
| 	
 | ||
| 	if(ul_ad < ul_ad2)
 | ||
| 	{
 | ||
| 		ul_ad = 0;
 | ||
| 	}else{
 | ||
| 		ul_ad = ul_ad - ul_ad2;
 | ||
| 		ul_ad = ((Power_ADVGetCalVal_106(ul_ad)*11)/100+5)/10 ;//((ul_ad *25*11*1000/board_st.v2p5_adc )+5)/10;
 | ||
| 	}
 | ||
| 	Gpio_CAPSwitch(0);
 | ||
| 	return ul_ad;
 | ||
| }
 | ||
| 
 | ||
| /*
 | ||
| @brief 获取总线电流上升时间
 | ||
| @param0 采样判线AD值
 | ||
| @param1 采样超时 单位0.01ms
 | ||
| @rtv    等待时间
 | ||
| */
 | ||
| uint16_t AD_GetBusCurUp(uint16_t ad_line ,uint16_t time_out)
 | ||
| {
 | ||
| 	uint16_t aus_adc_v[5];
 | ||
| 	uint16_t us_count = 0;
 | ||
| 	uint16_t us_index = 0;
 | ||
| 	uint8_t  uc_start = 0;
 | ||
| 	Get10usCount();
 | ||
| 	ADC_ClearFlag(ADC_CURR_DE,ADC_FLAG_EOC);//清除转换结束标志
 | ||
| 	ADC_SoftwareStartConvCmd(ADC_CURR_DE, ENABLE);	//启动转换
 | ||
| 	while(GetCountTimerCnt() < time_out)
 | ||
| 	{
 | ||
| 			time_out = 2000;
 | ||
| 			while((time_out > 0) && (	ADC_GetFlagStatus(ADC_CURR_DE,ADC_FLAG_EOC) == RESET))
 | ||
| 			{
 | ||
| 				time_out--;
 | ||
| 			}
 | ||
| 			aus_adc_v[us_count] =   ADC_GetConversionValue(ADC_CURR_DE) & 0x0FFF;
 | ||
| 			ADC_ClearFlag(ADC_CURR_DE,ADC_FLAG_EOC);//清除转换结束标志
 | ||
| 			ADC_SoftwareStartConvCmd(ADC_CURR_DE, ENABLE);	//启动转换
 | ||
| 			if(us_count == 4)
 | ||
| 			{
 | ||
| 				uc_start = 1;
 | ||
| 			}
 | ||
| 			us_count++;
 | ||
| 			us_count %= 5;
 | ||
| 			if(uc_start == 0)
 | ||
| 			{
 | ||
| 				continue;
 | ||
| 			}
 | ||
| 			for(us_index = 0; us_index < 5; us_index++)
 | ||
| 			{
 | ||
| 				if(ad_line < aus_adc_v[us_index])
 | ||
| 				{
 | ||
| 					break;
 | ||
| 				}
 | ||
| 			}
 | ||
| 			if(us_index == 5)
 | ||
| 			{
 | ||
| 				return GetCountTimerCnt();
 | ||
| 			}
 | ||
| 			
 | ||
| 	}
 | ||
| 	return 0;
 | ||
| }
 | 
