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📄 tmp100.c

📁 包含了AD7714的中文使用资料和源码资料
💻 C
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/************************************************************************************************
*Filename   :TMP100.C
*Programmer :nm
*ProgramDate:09.27.2006
*************************************************************************************************/
#include <math.h>
#include <regxag49.sfr>
#include <stdio.h>
#include <cxa.h>
#include <string.h>



#define FALSE 0
#define TRUE  1
#define CtrlRegAddr 0x01
#define CtrlRegData 0x0e0 //control register initial set:SD=0,TM=0,POL=0,(F1F0)=00,(R!R0)=11, OS=1 
#define TMP0addrW 0x90          /*slave address + write*/
#define TMP0addrR 0x91          /*slave address + read*/
#define TMP1addrW 0x98          /*slave address + write*/
#define TMP1addrR 0x99          /*slave address + read*/

#define TMP_CLK P1_0
#define TMP_SDA P1_2
#define SDA1 P4OUT |= BIT0
#define SDA0 P4OUT &= ~BIT0
#define SCL1 P2OUT |= BIT2
#define SCL0 P2OUT &= ~BIT2

void TMP_IIC_Initial(void);
void TMP_Read_Temp(void);
unsigned char TMP_ErrFlg;//BIT0--3:TEMP0 0000:ok BIT0=1:err@config BIT1=1:err@data
                         //BIT4--7:TEMP1 0000:ok BIT4=1:err@config BIT1=5:err@data
unsigned int TempCold0;
unsigned int TempCold1;
_near unsigned int Cold_data[2]_at(0x50);
void delay10us(unsigned char loop)
{
	unsigned char i,j;
	for(i=0;i<loop;i++)
	{
		for(j=0;j<10;j++)_nop();
	}			
}
void    TMP_Set_SDA_high(void)
{
    TMP_SDA = 1;;
    delay10us(1);

}
void    TMP_Set_SDA_low(void)
{
    TMP_SDA = 0;;
    delay10us(1);

}
void    TMP_Set_sck_high(void)
{
    TMP_CLK = 1;
    delay10us(1);
 }
 
void    TMP_Set_sck_low(void)
{
    TMP_CLK = 0;
    delay10us(1);

}
// -------------------------------------------------------------------
//    TMP_IIC_GetACK 
//    1) The acknowledge-related clock pulse is generated by the master.
//    2) The transmitter (Tx) release the SDA line (HIGH) during the
//       acknowledge clock pulse.
//    3) The receiver (Rx) must pull down the SDA line during the
//       acknowledge clock pulse so that it remains stable LOW during
//       the HIGH period of this clock pulse.
//
//    Return:
//       LOW if OK
//  -------------------------------------------------------------------
unsigned char TMP_IIC_GetACK (void)
{
    unsigned char i;
    unsigned char bResult;
    TMP_Set_SDA_high();//转输入
    TMP_Set_sck_high();
    bResult = 1;
    for(i=0;i<250;i++)
    {
        if(TMP_SDA == 0)
        {
            bResult = 0;
            i = 250;//OK立即退出
        }
    }
    TMP_Set_sck_low();
    return ( bResult );
} // TMP_IIC_GetACK
// -------------------------------------------------------------------
//    TMP_IIC_SetACK 
//             __          ____
//        SDA:   \________/
//                  ____
//        SCL: ____/    \____
//
//  -------------------------------------------------------------------
void TMP_IIC_SetACK (void)
{
     TMP_Set_sck_low();
     TMP_Set_SDA_low();
     TMP_Set_sck_high();
     TMP_Set_sck_low();
} // TMP_IIC_SetACK


// ---------------------------------------------------------------------
//    TMP_IIC_SetNAK
//               ____
//    SCK:   ___/    \____
//           _____________
//    SDA:
//   -------------------------------------------------------------------
void TMP_IIC_SetNAK (void)
{
    TMP_Set_sck_low();
    TMP_Set_SDA_high();
    TMP_Set_sck_high();
    TMP_Set_sck_low();
} // TMP_IIC_SetNAK
// -------------------------------------------------------------------
//    TMP_IIC_START - START condition (SDA falling edge).
//             ____
//        SDA:     \_____
//             _____
//        SCL:      \__
//
//  -------------------------------------------------------------------
void TMP_IIC_START (void)
{
     _nop();
     _nop();
     _nop();
     _nop();
     TMP_Set_SDA_high();
     TMP_Set_sck_high();//prepare for start condition
     TMP_Set_SDA_low();
     TMP_Set_sck_low();
} // TMP_IIC_START


// -------------------------------------------------------------------
//    TMP_IIC_STOP - STOP condition (SDA rising edge).
//             ____       __
//        SDA: ____\_____/
//             __     _______
//        SCL: __\___/
//
//  -------------------------------------------------------------------
void TMP_IIC_STOP (void)
{
     _nop();
     _nop();
     _nop();
     _nop();
     TMP_Set_sck_low();
     TMP_Set_SDA_low();//prepare for stop condition
     TMP_Set_sck_high();
     TMP_Set_SDA_high();
     delay10us(255);//delay time from stop to start time must >10mS

} // TMP_IIC_STOP

// -------------------------------------------------------------------
//    TMP_IIC_TxByte - Parallel serial conversion.
//             __ ________
//        SDA: __X_state__
//             ________
//        SCL: _____/  \__
//
//  -------------------------------------------------------------------
void TMP_IIC_TxByte (unsigned char bValue)
{
    unsigned char i ;
    for(i = 0 ; i < 8 ; i++)
    {
        if( bValue & 0x80)
            TMP_Set_SDA_high();
        else
            TMP_Set_SDA_low();
        TMP_Set_sck_high();
        TMP_Set_sck_low();
        bValue = bValue << 1 ;
    }
} //TMP_IIC_TxByte

// -------------------------------------------------------------------
//    TMP_IIC_RxByte -
//                ______
//        SDA: --<_read_>--
//             _________
//        SCL: __/      \__
//
//  -------------------------------------------------------------------
unsigned char    TMP_IIC_RxByte (void)
{
    unsigned char    bResult;
    unsigned char    i;

    bResult = 0x00;                    // clear value //
    TMP_Set_SDA_high();//转输入
    delay10us(1);                          
    for ( i=0;i<8;i++)                 // Read all bits //
    {
        TMP_Set_sck_high();
        bResult <<=1;                  // Set Result to correct value   //
        if (TMP_SDA == 1)     // Sampling SDA input level //
            bResult |= 0x01;
        else
            bResult &= 0xFE;
        TMP_Set_sck_low();
    }
    return( bResult );
} // TMP_IIC_RxByte



//  *********************************************************************
//  Function    :   TMP_Read_Data
//  Description :
//  Arguments   :   DevSel      : Device ID
//                  addr        : read address
//  Return      :   data in the address
//  Side Effect :
//  *********************************************************************
unsigned char TMP_Read_Data ( unsigned char devnum,unsigned char addr,unsigned char *val)
{
    unsigned char    bError;
    unsigned char DevSel;
    
    if(devnum==0)DevSel = TMP0addrW;
    else         DevSel = TMP1addrW;
    TMP_IIC_START();                        // START condition
    TMP_IIC_TxByte((char)(DevSel&0x0fe));   //write DevEel adress
    bError = TMP_IIC_GetACK();
    if ( bError )
        return FALSE;
    TMP_IIC_TxByte ( addr );                // write addr
    bError = TMP_IIC_GetACK();              
    if ( bError )
        return FALSE;
    TMP_IIC_START();
    TMP_IIC_TxByte((char)(DevSel|0x01));    //read DevEel adress
    bError = TMP_IIC_GetACK();              
    if ( bError )
        return FALSE;
    *val=TMP_IIC_RxByte();                  //read data1 & Set_sck_low
    val++;
    *val=TMP_IIC_RxByte();                  //read data2 & Set_sck_low
    TMP_IIC_SetNAK ();
    TMP_IIC_STOP();                         // STOP condition
    return TRUE;

}

//  *********************************************************************
//  Function    :   TMP_IIC_Write
//  Description :
//  Arguments   :   DevSel      : Device ID 
//                              AS pin '0' : ID is 40h
//                              AS pin '1' : ID is 42h
//                  * pBuffer   : Buffer pointer
//                                 but normal is not more than 8) 
//                  count       : size of buffer normal is less than 8
//  Return      :
//  Side Effect :
//  *********************************************************************
unsigned char TMP_Write_Config ( unsigned char devnum, unsigned char addr,unsigned char data )
{
    //unsigned char     idx;
    unsigned char     bError;
    unsigned char DevSel;
    
    if(devnum==0)DevSel = TMP0addrW;
    else         DevSel = TMP1addrW;
    TMP_IIC_START();                        // START condition
    TMP_IIC_TxByte ( DevSel );              // write DevEel adress
    bError = TMP_IIC_GetACK();              
    if ( bError )
        return FALSE;
        
    TMP_IIC_TxByte ( addr );                //  write addr
    bError = TMP_IIC_GetACK();              
    if ( bError )
        return FALSE;
        
    TMP_IIC_TxByte(data);         //  write Data
    bError = TMP_IIC_GetACK();         
    if (bError )
        return FALSE;
    TMP_IIC_STOP();                     // STOP condition
    return(TRUE);
}

void TMP_Cofig(unsigned char devnum)
{
    unsigned char flg;
    unsigned char wdata;
    
    wdata = CtrlRegData;
    flg=TMP_Write_Config(devnum,CtrlRegAddr,wdata);
    if(devnum==0)
    {
        if(flg==TRUE)TMP_ErrFlg&=0x0fe;
        else         TMP_ErrFlg|=0x01;
    }
    else
    {
        if(flg==TRUE)TMP_ErrFlg&=0x0ef;
        else         TMP_ErrFlg|=0x10;
    }
}
    
    
    
// -------------------------------------------------------------------
//      TMP_IIC_Initial
//	initial IIC bus before use
//	look for SDA high in each cycle while SCL is high
//--------------------------------------------------------------------
void TMP_IIC_Initial(void)
{
	TMP_Set_sck_low();
	TMP_IIC_STOP();
	delay10us(255);
	TMP_Cofig(0);
	TMP_Cofig(1);
	TMP_Cofig(0);
}
void TMP_Read_Temp(void)
{
    unsigned char flg;
	unsigned char data[2];
	unsigned int tempu16;
	TempCold0 = 0xffff;
	flg = TMP_Read_Data(0,0,&data[0]);
	if(flg==TRUE)
	{
	    TMP_ErrFlg&=0x0fe;
	    tempu16=data[0];
	    tempu16<<=8;
	    tempu16 &= 0xff00;
	    tempu16+=((unsigned int)data[1])&0x00ff;
	    tempu16>>=4;
	    if((tempu16&0x0800)!=0)tempu16|=0xf000;
	    TempCold0 = tempu16;
	}
	else TMP_ErrFlg|=0x01;
	
	TempCold1 = 0xffff;
	flg = TMP_Read_Data(1,0,&data[0]);
	if(flg==TRUE)
	{
	    TMP_ErrFlg&=0x0ef;
	    tempu16=data[0];
	    tempu16<<=8;
	    tempu16 &= 0xff00;
	    tempu16+=((unsigned int)data[1])&0x00ff;
	    tempu16>>=4;
	    if((tempu16&0x0800)!=0)tempu16|=0xf000;
	    TempCold1 = tempu16;
	}
	else TMP_ErrFlg|=0x10;
	Cold_data[0] = TempCold0;
	Cold_data[1] = TempCold1;
}

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