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          EEPW首頁(yè) > 嵌入式系統(tǒng) > 設(shè)計(jì)應(yīng)用 > 基于STM32和DS1302設(shè)計(jì)的時(shí)鐘程序

          基于STM32和DS1302設(shè)計(jì)的時(shí)鐘程序

          作者: 時(shí)間:2012-09-13 來(lái)源:網(wǎng)絡(luò) 收藏

          //******************************

          void ds1302set_time()

          {

          u8 i;

          GPIOA->CRL=0XFF000FFF;

          GPIOA->CRL|=0X00333000; //PA3-4

          GPIOA->ODR|=73; //PA3-4置高電平

          dat_pros();

          write_ds1302_byte(0x8e,0x00); //************del wr protect

          for(i=0;i7;i++)

          {

          write_ds1302_byte(write_add[i],settime[i]);

          }

          write_ds1302_byte(0x8e,0x80);//**************add wr protect

          }

          //*****************************

          void ds1302d_convert()

          {

          disp[0]=d[0]/10;

          disp[1]=d[0]%10;

          disp[2]=d[1]/10;

          disp[3]=d[1]%10;

          disp[4]=d[2]/10;

          disp[5]=d[2]%10;

          disp[6]=d[3]/10;

          disp[7]=d[3]%10;

          disp[8]=d[4]/10;

          disp[9]=d[4]%10;

          disp[10]=d[5]/10;

          disp[11]=d[5]%10;

          disp[12]=d[6]/10;

          disp[13]=d[6]%10;

          }

          void ds1302read_time()

          {

          u8 i;

          for(i=0;i7;i++)

          {

          settime[i]=read_ds1302_byte(read_add[i]);

          }

          d[0]=settime[0]/16*10+settime[0]%16;

          d[1]=settime[1]/16*10+settime[1]%16;

          d[2]=settime[2]/16*10+settime[2]%16;

          d[3]=settime[3]/16*10+settime[3]%16;

          d[4]=settime[4]/16*10+settime[4]%16;

          d[5]=settime[5]/16*10+settime[5]%16;

          d[6]=settime[6]/16*10+settime[6]%16;

          //d_convert();

          }

          應(yīng)用舉例

          main.c

          #include "stm32f10x.h"

          #include"1602.h"

          #include"ds1302.h"

          EXTI_InitTypeDef EXTI_InitStructure;

          ErrorStatus HSEStartUpStatus;

          /* Private function prototypes -----------------------------------------------*/

          void RCC_Configuration(void);

          void GPIO_Configuration(void);

          void NVIC_Configuration(void);

          u8 table[]="2010-4-30";

          u8 table1[3]="hjw";

          u8 table2[2]="00";

          void Delay(unsigned short time)//nms

          {

          unsigned short i, j;

          for(; time > 0; time--){

          for(j = 0; j 10; j++){

          for(i = 0; i 1000; i++);

          }

          }

          }

          int main(void)

          {

          //u8 i;

          /* System Clocks Configuration */

          RCC_Configuration();

          /* NVIC configuration */

          NVIC_Configuration();

          /* Configure the GPIO ports */

          GPIO_Configuration();

          lcd1602_init();

          ds1302set_time();

          while (1)

          {

          ds1302read_time();

          ds1302d_convert();

          write1602_Achar(1,2,disp[8]);

          write1602_Achar(1,3,disp[9]); //顯示 時(shí)

          write1602_Achar(1,4,0x0a);//':'

          write1602_Achar(1,5,disp[10]);

          write1602_Achar(1,6,disp[11]);

          write1602_Achar(1,7,0x0a);//顯示分

          write1602_Achar(1,8,disp[12]);

          write1602_Achar(1,9,disp[13]);//顯示秒

          }

          }

          void RCC_Configuration(void)

          {

          RCC_DeInit();

          /* Enable HSE */

          RCC_HSEConfig(RCC_HSE_ON);

          /* Wait till HSE is ready */

          HSEStartUpStatus = RCC_WaitForHSEStartUp();

          if(HSEStartUpStatus == SUCCESS)

          {

          /* Enable Prefetch Buffer */

          FLASH_PrefetchBufferCmd(FLASH_PrefetchBuffer_Enable);

          /* Flash 2 wait state */

          FLASH_SetLatency(FLASH_Latency_2);

          /* HCLK = SYSCLK */

          RCC_HCLKConfig(RCC_SYSCLK_Div1);

          /* PCLK2 = HCLK */

          RCC_PCLK2Config(RCC_HCLK_Div1);

          /* PCLK1 = HCLK/2 */

          RCC_PCLK1Config(RCC_HCLK_Div2);

          /* PLLCLK = 8MHz * 9 = 72 MHz */

          RCC_PLLConfig(RCC_PLLSource_HSE_Div1, RCC_PLLMul_9);

          /* Enable PLL */

          RCC_PLLCmd(ENABLE);

          /* Wait till PLL is ready */

          while(RCC_GetFlagStatus(RCC_FLAG_PLLRDY) == RESET)

          {

          }

          /* Select PLL as system clock source */

          RCC_SYSCLKConfig(RCC_SYSCLKSource_PLLCLK);

          /* Wait till PLL is used as system clock source */

          while(RCC_GetSYSCLKSource() != 0x08)

          {

          }

          }

          /* Enable Key Button GPIO Port, GPIO_LED and AFIO clock */

          RCC_APB2PeriphClockCmd(RCC_APB2Periph_GPIOC|RCC_APB2Periph_GPIOA| RCC_APB2Periph_GPIOD | RCC_APB2Periph_GPIOB

          | RCC_APB2Periph_AFIO, ENABLE);

          }

          /*******************************************

          * Function Name : GPIO_Configuration

          * Description : Configures the different GPIO ports.

          * Input : None

          * Output : None

          * Return : None

          ***************************************/

          void GPIO_Configuration(void)

          {

          GPIO_InitTypeDef GPIO_InitStructure;

          GPIO_InitStructure.GPIO_Pin =GPIO_Pin_All;

          GPIO_InitStructure.GPIO_Speed =GPIO_Speed_50MHz;

          GPIO_InitStructure.GPIO_Mode =GPIO_Mode_Out_PP;

          GPIO_Init(GPIOB, GPIO_InitStructure);

          }

          void NVIC_Configuration(void)

          {

          //NVIC_InitTypeDef NVIC_InitStructure;

          #ifdef VECT_TAB_RAM

          /* Set the Vector Table base location at 0x20000000 */

          NVIC_SetVectorTable(NVIC_VectTab_RAM, 0x0);

          #else /* VECT_TAB_FLASH */

          /* Set the Vector Table base location at 0x08000000 */

          NVIC_SetVectorTable(NVIC_VectTab_FLASH, 0x0);

          #endif

          }


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