简易温控器程序 简易温控器 DS18B20 掉电储存 蓝牙无线读取 长短键设置 LCD1602显示
单片机源程序如下:
- // 业余爱好简易无线温控
- //DS18B20 LCD1602显示 按键设置 增加 长短键 上限 下限 设置值掉电保存 无线APP读取
- //函数文件
- //主函数 温度读取 LCD1602 按键 I2C
- #include <reg52.h>
- #include <intrins.h>
- #include<string.h>
-
- sfr PLC = 0x97;
- bit flag1s = 0; //1s 定时标志
- unsigned char T0RH = 0; //T0 重载值的高字节
- unsigned char T0RL = 0; //T0 重载值的低字节
- void ConfigTimer0(unsigned int ms);
-
- unsigned char IntToString(unsigned char *str, int dat);
- extern bit Start18B20();
- extern bit Get18B20Temp(int *temp);
- extern void shumaguanb(signed char sed);
- extern void shumaguana(signed char sec);
- unsigned char shangcha ();
- unsigned char xiacha() ;
- extern void saomiao();
- extern tm1637(unsigned char C,S) ;
- extern void InitLcd1602();
- extern void LcdShowStr(unsigned char x, unsigned char y, unsigned char *str);
- extern void xianshi(unsigned char x,sec);
- extern unsigned char shezhi();
- extern void I2CStart();
- extern void I2CStop();
- extern unsigned char I2CReadNAK();
- extern bit I2CWrite(unsigned char dat);
- unsigned char E2ReadByte(unsigned char addr);
- void E2WriteByte(unsigned char addr, unsigned char dat);
- bit cmdArrived = 0; //命令到达标志,即接收到上位机下发的命令
- unsigned char cmdIndex ; //命令索引,即与上位机约定好的数组编号
- unsigned char cntTxd = 0; //串口发送计数器
- unsigned char *ptrTxd; //串口发送指针
- unsigned char array1[20] = "1-Hello! \r\n";
- void ConfigUART(unsigned int baud);
-
- unsigned char R[10]="C-Tmpe\r\n";
- unsigned char T[10]="C-Scz\r\n";
- unsigned char M[10]="C-Xcz\r\n";
- unsigned char d[20];
-
- unsigned char sc[10];
- unsigned char xc[10];
- sbit out=P2^5;//温度输出
- sbit K=P1^4;
-
- void main()
- {
- static unsigned char shangchazhi;
- static unsigned char xiachazhi;
- unsigned char c;
-
-
-
-
- bit res;
- int temp; //读取到的当前温度值
- int intT, decT; //温度值的整数和小数部分
- unsigned char len;
- unsigned char str[12];
- unsigned char S[12];
- unsigned char X[12];
- shangchazhi=E2ReadByte(0x02);
- xiachazhi=E2ReadByte(0x05);
- EA = 1; //开总中断
- ConfigTimer0(10); //T0 定时 10ms
- ConfigUART(9600); //配置波特率为 9600
- Start18B20(); //启动 DS18B20
- InitLcd1602(); //初始化液晶
-
- while (1)
- {
-
- K=0;
-
-
- if (cmdArrived)
- {
- cmdArrived = 0;
- if( cmdIndex=='A')
- {
- strcpy(d,str);
- strcat(d,R);
-
- ptrTxd =d; //数组 1 的首地址赋值给发送指针
- cntTxd = sizeof(d); //数组 1 的长度赋值给发送计数器
-
- TI = 1; //手动方式启动发送中断,处理数据发送
- }
- else if (cmdIndex=='B')
- {
- len = IntToString(sc, shangchazhi); //整数部分转换为字符串
- sc[len] = '\0';
-
- strcpy(d,sc);
- strcat(d,T);
- ptrTxd =d; //数组 1 的首地址赋值给发送指针
- cntTxd = sizeof(d); //数组 1 的长度赋值给发送计数器
-
-
- TI = 1; //手动方式启动发送中断,处理数据发送
- }
- else if (cmdIndex=='C')
- {
- len = IntToString(xc, xiachazhi); //整数部分转换为字符串
- xc[len] = '\0';
-
- strcpy(d,xc);
- strcat(d,M);
- ptrTxd =d; //数组 1 的首地址赋值给发送指针
- cntTxd = sizeof(d); //数组 1 的长度赋值给发送计数器
-
-
- TI = 1; //手动方式启动发送中断,处理数据发送
- }
-
-
-
-
- }
-
- if (flag1s) //每秒更新一次温度
- {
- flag1s = 0;
- res = Get18B20Temp(&temp); //读取当前温度
- if (res) //读取成功时,刷新当前温度显示
- {
- intT = temp >> 4; //分离出温度值整数部分
- decT = temp & 0xF; //分离出温度值小数部分
- len = IntToString(str, intT); //整数部分转换为字符串
- str[len++] = '.'; //添加小数点
- decT = (decT*10) / 16; //二进制的小数部分转换为 1 位十进制位
- str[len++] = decT + '0'; //十进制小数位再转换为 ASCII 字符
- while (len < 6) //用空格补齐到 6 个字符长度
- {
- str[len++] = ' ';
- }
- str[len] = '\0'; //添加字符串结束符
- LcdShowStr(0, 0, "Temp") ;
- LcdShowStr(5, 0, str); //显示到液晶屏上
-
- }
- else //读取失败时,提示错误信息
- {
- LcdShowStr(0, 0, "error!");
- }
-
- if (intT>=shangchazhi)
- {
- out=1;
- LcdShowStr(11, 0, "OFF");
-
- }
-
- else if (intT<=xiachazhi)
- {
- LcdShowStr(11, 0, "ON");
- out=0;
-
-
- }
-
-
- Start18B20(); //重新启动下一次转换
- }
-
- LcdShowStr(0, 1, "B-") ;
- S[0] = (shangchazhi/100%10) + '0';
- S[1] = (shangchazhi/10%10) + '0';
- S[2] = (shangchazhi%10) + '0';
- S[3] = '\0';
- LcdShowStr(3, 1, S) ; //上差显示
- LcdShowStr(7, 1, "C-") ;
- X[0] = (xiachazhi/100%10) + '0';
- X[1] = (xiachazhi/10%10) + '0';
- X[2] = (xiachazhi%10) + '0';
- X[3] = '\0';
- LcdShowStr(11, 1, X) ; //上差显示
- c=shezhi();
-
- if (c==0)
- { c=shezhi();
- LcdShowStr(15, 0,"A" ); //显示到液晶屏上
-
- }
- if(c==1)
- {
-
- shangchazhi= shangcha();
- LcdShowStr(15, 0,"B" ); //显示到液晶屏上
- E2WriteByte(0x02, shangchazhi);
-
-
- }
- if (c==2)
- {
-
- xiachazhi=xiacha();
- LcdShowStr(15, 0,"C" ); //显示到液晶屏上
- E2WriteByte(0x05, xiachazhi);
-
- }
-
-
-
-
- }
- }
- /* 整型数转换为字符串, str-字符串指针, dat-待转换数,返回值-字符串长度 */
- unsigned char IntToString(unsigned char *str, int dat)
- {
- signed char i = 0;
- unsigned char len = 0;
- unsigned char buf[6];
- if (dat < 0) //如果为负数,首先取绝对值,并在指针上添加负号
- {
- dat = -dat;
- *str++ = '-';
- len++;
- }
- do { //先转换为低位在前的十进制数组
- buf[i++] = dat % 10;
- dat /= 10;
- } while (dat > 0);
- len += i; //i 最后的值就是有效字符的个数
- while (i-- > 0) //将数组值转换为 ASCII 码反向拷贝到接收指针上
- {
- *str++ = buf[i] + '0';
- }
- *str = '\0'; //添加字符串结束符
- return len; //返回字符串长度
- }
- /* 配置并启动 T0, ms-T0 定时时间 */
- void ConfigTimer0(unsigned int ms)
- {
- unsigned long tmp; //临时变量
- tmp = 11059200 / 12; //定时器计数频率
- tmp = (tmp * ms) / 1000; //计算所需的计数值
- tmp = 65536 - tmp; //计算定时器重载值
- tmp = tmp + 12; //补偿中断响应延时造成的误差
- T0RH = (unsigned char)(tmp>>8); //定时器重载值拆分为高低字节
- T0RL = (unsigned char)tmp;
- TMOD &= 0xF0; //清零 T0 的控制位
- TMOD |= 0x01; //配置 T0 为模式 1
- TH0 = T0RH; //加载 T0 重载值
- TL0 = T0RL;
- ET0 = 1; //使能 T0 中断
- TR0 = 1; //启动 T0
- }
- /* T0 中断服务函数,完成 1 秒定时 */
- void InterruptTimer0() interrupt 1
- {
- static unsigned char tmr1s = 0;
- TH0 = T0RH; //重新加载重载值
- TL0 = T0RL;
- tmr1s++;
- if (tmr1s >= 100) //定时 1s
- {
- tmr1s = 0;
- flag1s = 1;
- }
- }
- /* 读取 EEPROM 中的一个字节, addr-字节地址 */
- unsigned char E2ReadByte(unsigned char addr)
- {
- unsigned char dat;
- I2CStart();
- I2CWrite(0x50<<1); //寻址器件,后续为写操作
- I2CWrite(addr); //写入存储地址
- I2CStart(); //发送重复启动信号
- I2CWrite((0x50<<1)|0x01); //寻址器件,后续为读操作
- dat = I2CReadNAK(); //读取一个字节数据
- I2CStop();
- return dat;
- }
- /* 向 EEPROM 中写入一个字节, addr-字节地址 */
- void E2WriteByte(unsigned char addr, unsigned char dat)
- {
- I2CStart();
- I2CWrite(0x50<<1); //寻址器件,后续为写操作
- I2CWrite(addr); //写入存储地址
- I2CWrite(dat); //写入一个字节数据
- I2CStop();
- }
- /* 串口配置函数, baud-通信波特率 */
- void ConfigUART(unsigned int baud)
- {
- SCON = 0x50; //配置串口为模式 1
- TMOD &= 0x0F; //清零 T1 的控制位
- TMOD |= 0x20; //配置 T1 为模式 2
- TH1 = 256 - (11059200/12/32)/baud; //计算 T1 重载值
- TL1 = TH1; //初值等于重载值
- ET1 = 0; //禁止 T1 中断
- ES = 1; //使能串口中断
- TR1 = 1; //启动 T1
- }
- /* UART 中断服务函数 */
- void InterruptUART() interrupt 4
- {
- if (RI) //接收到字节
- {
- ……………………
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