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📄 eco_energy_last.c

📁 基于MCS—51系列单片机的燃气智能系统的开发应用
💻 C
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/*********************************************************************
*MCU:AT89C2051
*晶振:6MHZ
*仿真环境:V5/T
*COPYRIGHT:pxg
**********************************************************************/

#include <reg51.h>
#include <intrins.h>
#include <stdio.h>

#define uchar unsigned char
#define uint  unsigned int
sbit dq = P3^7;            //18B20单总线位变量
sbit P3_3 = P3^3;        //数码管个十百位的位选端位变量
sbit P3_4 = P3^4;
sbit P3_5 = P3^5;
sbit P1_0 = P1^0;        //4055译码器的输入接口
sbit P1_1 = P1^1;
sbit P1_2 = P1^2;
sbit P1_3 = P1^3;
sbit P1_4 = P1^4;        //LED控制端
sbit P3_2 = P3^2;        //测试端口
sbit up = P1^7;          //上翻键
sbit set = P3^0;         //设定键
sbit down = P3^1;        //下翻键
bit  flag;
static uint Temperature;   //温度采样值
static uchar temp_buff[9]; //存储读取的字节,read scratchpad为9字节,read rom ID为8字节
static uchar id_buff[8];
static uchar *p;
static uchar crc_data;
static uchar code CrcTable [256]={
0,  94, 188,  226,  97,  63,  221,  131,  194,  156,  126,  32,  163,  253,  31,  65,
157,  195,  33,  127,  252,  162,  64,  30,  95,  1,  227,  189,  62,  96,  130,  220,
35,  125,  159,  193,  66,  28,  254,  160,  225,  191,  93,  3,  128,  222,  60,  98,
190,  224,  2,  92,  223,  129,  99,  61,  124,  34,  192,  158,  29,  67,  161,  255,
70,  24,  250,  164,  39,  121,  155,  197,  132,  218,  56,  102,  229,  187,  89,  7,
219,  133, 103,  57,  186,  228,  6,  88,  25,  71,  165,  251,  120,  38,  196,  154,
101,  59, 217,  135,  4,  90,  184,  230,  167,  249,  27,  69,  198,  152,  122,  36,
248,  166, 68,  26,  153,  199,  37,  123,  58,  100,  134,  216,  91,  5,  231,  185,
140,  210, 48,  110,  237,  179,  81,  15,  78,  16,  242,  172,  47,  113,  147,  205,
17,  79,  173,  243,  112,  46,  204,  146,  211,  141,  111,  49,  178,  236,  14,  80,
175,  241, 19,  77,  206,  144,  114,  44,  109,  51,  209,  143,  12,  82,  176,  238,
50,  108,  142,  208,  83,  13,  239,  177,  240,  174,  76,  18,  145,  207,  45,  115,
202,  148, 118,  40,  171,  245,  23,  73,  8,  86,  180,  234,  105,  55,  213, 139,
87,  9,  235,  181,  54,  104,  138,  212,  149,  203,  41,  119,  244,  170,  72,  22,
233,  183,  85,  11,  136,  214,  52,  106,  43,  117,  151,  201,  74,  20,  246,  168,
116,  42,  200,  150,  21,  75,  169,  247,  182,  232,  10,  84,  215,  137,  107,  53};
static uint LED_one,LED_two,LED_three;  //百位,十位,个位的显示数变量
static uchar opera_flag;
static uint sum;
static uint num;
static uint tempera[5] = {0};       //温度实时采样值
static uint Temperature_final;      //显示温度
static uint Page_flag;               //显示页面标志
static uint Scantime_flag;         //扫键时间标志
static uint Key_value;              //键值
static uint timing_num;             //计数标志
static uint timing_wink_num;       //闪烁计数标志
static uint bdata Bit_flag;        //定义位变量
sbit Keyscan_flag = Bit_flag^1;    //按键确认标志
sbit Up_flag = Bit_flag^2;         //上翻键确认标志
sbit Set_flag = Bit_flag^3;        //设定键确认标志
sbit Down_flag = Bit_flag^4;       //下翻键确认标志
sbit Type_data_flag = Bit_flag^5;   //数据类型标志
void Display_key_1(void);
void Display_key_2(void);
void Key_scan(void);

/************************************************************
*Function:延时处理
*parameter:
*Return:
*Modify:
*************************************************************/
void TempDelay (uchar us)
{
    while(us--);
}
/************************************************************
*Function:18B20初始化
*parameter:
*Return:
*Modify:
*************************************************************/
void Init18b20 (void)
{
    dq=1;
    _nop_();
    dq=0;
    TempDelay(43);   //delay 530 uS//80
    _nop_();
    dq=1;
    TempDelay(7);   //delay 100 uS//14
    _nop_();
    _nop_();
    _nop_();
    if(dq==0)
        flag = 1;   //detect 1820 success!
    else
        flag = 0;    //detect 1820 fail!
    TempDelay(10);       //20
    _nop_();
    _nop_();
    dq = 1;
}
/************************************************************
*Function:向18B20写入一个字节
*parameter:
*Return:
*Modify:
*************************************************************/
void WriteByte (uchar wr)  //单字节写入
{
    uchar i;
    for (i=0;i<8;i++)
    {
        dq = 0;
        _nop_();
        dq=wr&0x01;
        TempDelay(3);   //delay 45 uS //5
        _nop_();
        _nop_();
        dq=1;
        wr >>= 1;
    }
}
/************************************************************
*Function:读18B20的一个字节
*parameter:
*Return:
*Modify:
*************************************************************/
uchar ReadByte (void)     //读取单字节
{
    uchar i,u=0;
    for(i=0;i<8;i++)
    {
        dq = 0;
        u >>= 1;
        dq = 1;
        if(dq==1)
        u |= 0x80;
        TempDelay (2);
        _nop_();
    }
        return(u);
}
/************************************************************
*Function:读18B20
*parameter:
*Return:
*Modify:
*************************************************************/
void read_bytes (uchar j)
{
  uchar i;
  for(i=0;i<j;i++)
  {
    *p = ReadByte();
    p++;
  }
}
/************************************************************
*Function:CRC校验
*parameter:
*Return:
*Modify:
*************************************************************/
uchar CRC (uchar j)
{
    uchar i,crc_data=0;
    for(i=0;i<j;i++)  //查表校验
    crc_data = CrcTable[crc_data^temp_buff[i]];
    return (crc_data);
}
/************************************************************
*Function:读取温度
*parameter:
*Return:
*Modify:
*************************************************************/
void GemTemp (void)
{
   read_bytes (9);
   if (CRC(9)==0) //校验正确
   {
       Temperature = temp_buff[1]*0x100 + temp_buff[0];
       Temperature /= 16;
       TempDelay(1);
   }
}
/************************************************************
*Function:内部配置
*parameter:
*Return:
*Modify:
*************************************************************/
void Config18b20 (void)  //重新配置报警限定值和分辨率
{
     Init18b20();
     WriteByte(0xcc);  //skip rom
     WriteByte(0x4e);  //write scratchpad
     WriteByte(0x19);  //上限
     WriteByte(0x1a);  //下限
     WriteByte(0x7f);     //set 11 bit (0.125)
     Init18b20();
     WriteByte(0xcc);  //skip rom
     WriteByte(0x48);  //保存设定值
     Init18b20();
     WriteByte(0xcc);  //skip rom
     WriteByte(0xb8);  //回调设定值
}
/************************************************************
*Function:读18B20ID
*parameter:
*Return:
*Modify:
*************************************************************/
void ReadID (void)//读取器件 id
{
    Init18b20();
    WriteByte(0x33);  //read rom
    read_bytes(8);
}
/************************************************************
*Function:18B20ID全处理
*parameter:
*Return:
*Modify:
*************************************************************/
void TemperatuerResult(void)
{

   switch(opera_flag)
   {
     case 0:
    {
    p = id_buff;
      ReadID();
       opera_flag++;
     }break;
     case 1:
     {
     Config18b20();
   Init18b20 ();
   WriteByte(0xcc);   //skip rom
   WriteByte(0x44);   //Temperature convert
   Init18b20 ();
   WriteByte(0xcc);   //skip rom
   WriteByte(0xbe);   //read Temperature
   p = temp_buff;
    opera_flag++;
   }break;

   case 2:
   {
   GemTemp();
    opera_flag++ ;
    }break;

    default:break;
   }
}
/************************************************************
*function:解析要显示的各个位值
*parameter:
*Return:
*Modify:
*************************************************************/
void Trans_temp(uint x)
{
    LED_one = (x) / 100;			//转换百位值
    LED_two = (x % 100)/10;
    LED_three = x % 10;
}

/************************************************************
*function:在数码管显示
*parameter:
*Return:
*Modify:
*************************************************************/
void Dis_play_temp(int x,int y,int z,int k)
{
      if((x == 9)&&(y == 9)&&(z == 9))
      {
          P3_3 = 1;
          P3_4 = 1;
          P3_5 = 1;
      }
      else if(1 == k)
      {
            switch(x)
	    {
	        case 0:
		    {
			    P1_3 = 0;
			    P1_2 = 0;
			    P1_1 = 0;
			    P1_0 = 0;
			    P3_3 = 0;
			    P3_4 = 1;
			    P3_5 = 1;
			};break;
			case 1:
		    {
			    P1_3 = 0;
				P1_2 = 0;
				P1_1 = 0;
				P1_0 = 1;
				P3_3 = 0;
			    P3_4 = 1;
				P3_5 = 1;
			};break;
			case 2:
		    {
			    P1_3 = 0;
				P1_2 = 0;
				P1_1 = 1;
				P1_0 = 0;
				P3_3 = 0;
			    P3_4 = 1;
				P3_5 = 1;
			};break;
            case 3:
		    {
			    P1_3 = 0;
				P1_2 = 0;
				P1_1 = 1;
				P1_0 = 1;
				P3_3 = 0;
			    P3_4 = 1;
				P3_5 = 1;
			};break;
			case 4:
		    {
			    P1_3 = 0;
				P1_2 = 1;
				P1_1 = 0;
				P1_0 = 0;
				P3_3 = 0;
			    P3_4 = 1;
				P3_5 = 1;
			};break;
			case 5:
		    {
			    P1_3 = 0;
				P1_2 = 1;
				P1_1 = 0;
				P1_0 = 1;
				P3_3 = 0;
			    P3_4 = 1;
				P3_5 = 1;
			};break;
			 case 6:
		    {
			    P1_3 = 0;
				P1_2 = 1;
				P1_1 = 1;
				P1_0 = 0;
				P3_3 = 0;
			    P3_4 = 1;
				P3_5 = 1;
			};break;
			 case 7:
		    {
			    P1_3 = 0;
				P1_2 = 1;
				P1_1 = 1;
				P1_0 = 1;
				P3_3 = 0;
			    P3_4 = 1;
				P3_5 = 1;
			};break;
			 case 8:
		    {
			    P1_3 = 1;
				P1_2 = 0;
				P1_1 = 0;
				P1_0 = 0;
				P3_3 = 0;
			    P3_4 = 1;
				P3_5 = 1;
			};break;
			 case 9:
		    {
			    P1_3 = 1;
				P1_2 = 0;
				P1_1 = 0;
				P1_0 = 1;
				P3_3 = 0;
			    P3_4 = 1;
				P3_5 = 1;
			};break;
                   }
             }
            else if(2 == k)
            {
              switch(y)
	      {
	        case 0:
		    {
			    P1_3 = 0;
				P1_2 = 0;
				P1_1 = 0;
				P1_0 = 0;
				P3_3 = 1;
			    P3_4 = 0;
				P3_5 = 1;

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