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- 2018-1-10
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新手上路
由PA0改为PA2后,一上电高电平时间一直显示为65536,PA2原本准备外接脉冲计数,但是在没有外接的情况下,上电就有脉冲了代码如下,还请指导
#include "led.h"
#include "delay.h"
#include "key.h"
#include "sys.h"
#include "usart.h"
#include "timer.h"
extern u8 TIM5CH3_CAPTURE_STA;
extern u16 TIM5CH3_CAPTURE_VAL;
static uint16_t temp1;
int main(void)
{
u32 temp=0;
u16 k=0;
delay_init();
NVIC_Configuration();
uart_init(9600);
LED_Init();
TIM5_Cap_Init(0XFFFF,72-1);
while(1)
{
delay_ms(10);
if(TIM5CH3_CAPTURE_STA&0X80)
{
temp=TIM5CH3_CAPTURE_STA&0X3F;
temp*=65536;//òç3öê±¼ä×üoí
temp+=TIM5CH3_CAPTURE_VAL;
printf("HIGH:%d us\r\n",temp);
if(TIM5CH3_CAPTURE_STA&0X40)
{
temp1++;
}
TIM5CH3_CAPTURE_STA=0;
printf("count:%d pluse\r\n",temp1);
k=TIM_GetCounter(TIM5);
printf("count1:%d pluse\r\n",k);
TIM5CH3_CAPTURE_STA=0;
}
}
}
TIM_ICInitTypeDef TIM5_ICInitStructure;
void TIM5_Cap_Init(u16 arr,u16 psc)
{
GPIO_InitTypeDef GPIO_InitStructure;
TIM_TimeBaseInitTypeDef TIM_TimeBaseStructure;
NVIC_InitTypeDef NVIC_InitStructure;
RCC_APB1PeriphClockCmd(RCC_APB1Periph_TIM5, ENABLE);
RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOA, ENABLE);
GPIO_InitStructure.GPIO_Pin = GPIO_Pin_2;
GPIO_InitStructure.GPIO_Mode = GPIO_Mode_IPD;
GPIO_Init(GPIOA, &GPIO_InitStructure);
GPIO_ResetBits(GPIOA,GPIO_Pin_2);
//3õê¼»ˉ¶¨ê±Æ÷5 TIM5
TIM_TimeBaseStructure.TIM_Period = arr;
TIM_TimeBaseStructure.TIM_Prescaler =psc;
TIM_TimeBaseStructure.TIM_ClockDivision = TIM_CKD_DIV1;
TIM_TimeBaseStructure.TIM_CounterMode = TIM_CounterMode_Up;
TIM_TimeBaseInit(TIM5, &TIM_TimeBaseStructure);
//3õê¼»ˉTIM5êäèë2¶»ñ2Îêy
TIM5_ICInitStructure.TIM_Channel = TIM_Channel_3;
TIM5_ICInitStructure.TIM_ICPolarity = TIM_ICPolarity_Rising;
TIM5_ICInitStructure.TIM_ICSelection = TIM_ICSelection_DirectTI;
TIM5_ICInitStructure.TIM_ICPrescaler = TIM_ICPSC_DIV1;
TIM5_ICInitStructure.TIM_ICFilter = 0x00;
TIM_ICInit(TIM5, &TIM5_ICInitStructure);
//ÖD¶Ï·Ö×é3õê¼»ˉ
NVIC_InitStructure.NVIC_IRQChannel = TIM5_IRQn;
NVIC_InitStructure.NVIC_IRQChannelPreemptionPriority = 2;
NVIC_InitStructure.NVIC_IRQChannelSubPriority = 0;
NVIC_InitStructure.NVIC_IRQChannelCmd = ENABLE;
NVIC_Init(&NVIC_InitStructure);
TIM_ITConfig(TIM5,TIM_IT_Update|TIM_IT_CC1,ENABLE);
TIM_Cmd(TIM5,ENABLE );
}
u8 TIM5CH3_CAPTURE_STA=0;
u16 TIM5CH3_CAPTURE_VAL;
void TIM5_IRQHandler(void)
{
if((TIM5CH3_CAPTURE_STA&0X80)==0)
{
if (TIM_GetITStatus(TIM5, TIM_IT_Update) != RESET)
{
if(TIM5CH3_CAPTURE_STA&0X40)
{
if((TIM5CH3_CAPTURE_STA&0X3F)==0X3F)
{
TIM5CH3_CAPTURE_STA|=0X80;
TIM5CH3_CAPTURE_VAL=0XFFFF;
}else TIM5CH3_CAPTURE_STA++;
}
}
if (TIM_GetITStatus(TIM5, TIM_IT_CC1) != RESET)
{
if(TIM5CH3_CAPTURE_STA&0X40)
{
TIM5CH3_CAPTURE_STA|=0X80;
TIM5CH3_CAPTURE_VAL=TIM_GetCapture1(TIM5);
TIM_OC1PolarityConfig(TIM5,TIM_ICPolarity_Rising);
}else
{
TIM5CH3_CAPTURE_STA=0;
TIM5CH3_CAPTURE_VAL=0;
TIM_SetCounter(TIM5,0);
TIM5CH3_CAPTURE_STA|=0X40;
TIM_OC1PolarityConfig(TIM5,TIM_ICPolarity_Falling);
}
}
}
TIM_ClearITPendingBit(TIM5, TIM_IT_CC1|TIM_IT_Update);
}
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