/* 数据端口 LCD_DB0 P00 LCD_DB1 P01 . . . . . . LCD_DB7 P07 总之:P0用于数据传输,1次传送8位数据 LCD_E P27 LCD_RS P26 LCD_RW P36 RS = 0,指向指令寄存器 RS = 1,指向数据寄存器 R/W = 0写操作 R/W = 1读操作 */ #include <reg52.h> //#define LCM_RW P3^6 //定义引脚 //#define LCM_RS P3^7 //#define LCM_E P3^5 sbit LCM_RW =P3^6 ;//定义引脚 sbit LCM_RS =P2^6; sbit LCM_E =P2^7; #define LCM_Data P0 #define Busy 0x80 //用于检测LCM状态字中的Busy标识 #define uchar unsigned char void WriteDataLCM(uchar WDLCM); void WriteCommandLCM(unsigned char WCLCM,BuysC); unsigned char ReadDataLCM(void); unsigned char ReadStatusLCM(void); void LCMInit(void); void DisplayOneChar(unsigned char X, unsigned char Y, unsigned char DData); void DisplayListChar(unsigned char X, unsigned char Y, unsigned char code *DData); void Delay5Ms(void); void Delay400Ms(void); unsigned char code cdle_net[] = {"huanglu"}; unsigned char code email[] = {"freedom"}; void main(void) { Delay400Ms(); //启动等待,等LCM讲入工作状态 LCMInit(); //LCM初始化 Delay5Ms(); //延时片刻(可不要) DisplayListChar(0, 0, cdle_net); DisplayListChar(0, 1, email); ReadDataLCM();//测试用句无意义 while(1); } //写数据 void WriteDataLCM(uchar WDLCM) { ReadStatusLCM(); //检测忙 LCM_Data = WDLCM; LCM_RS = 1;//用数据寄存器 LCM_RW = 0;//写操作 LCM_E = 0; //若晶振速度太高可以在这后加小的延时 LCM_E = 0; //延时 LCM_E = 1; } //写指令 void WriteCommandLCM(uchar WCLCM, BuysC) //BuysC为0时忽略忙检测 { if (BuysC) ReadStatusLCM(); //根据需要检测忙 LCM_Data = WCLCM; LCM_RS = 0; //指令寄存器 LCM_RW = 0; //写操作 LCM_E = 0; LCM_E = 0; LCM_E = 1; } //读数据 unsigned char ReadDataLCM(void) { LCM_RS = 1; LCM_RW = 1; LCM_E = 0; LCM_E = 0; LCM_E = 1; return(LCM_Data); } /* 忙时等待 全局变量:LCM_Data, LCM_RS, LCM_RW, LCM_E, Busy 工作原理:当Busy = 1,代表忙时,等待; 当Busy = 0,代表不忙,结束等待! */ unsigned char ReadStatusLCM(void) { LCM_Data = 0xFF; LCM_RS = 0; //指令寄存器 LCM_RW = 1; //读 LCM_E = 0; LCM_E = 0; LCM_E = 1; while (LCM_Data & Busy); //检测忙信号,等待,直到忙时 标志位 为0 return(LCM_Data); } void LCMInit(void) //LCM初始化 { LCM_Data = 0; WriteCommandLCM(0x38,0); //三次显示模式设置,不检测 忙信号 0x38 = 0011 1000 Delay5Ms(); WriteCommandLCM(0x38,0); Delay5Ms(); WriteCommandLCM(0x38,0); Delay5Ms(); //RS RW 7 6 5 4 3 D C B WriteCommandLCM(0x38,1); //显示模式设置,开始要求每次检测忙信号 WriteCommandLCM(0x08,1); //关闭显示 0x08 = 0000 1 0 0 0 WriteCommandLCM(0x01,1); //显示清屏 0x01 = 0000 0 0 0 1 WriteCommandLCM(0x06,1); // 显示光标移动设置 0x06 = 0000 0 1 1 0 显示移位,左移 WriteCommandLCM(0x0C,1); // 显示开及光标设置 0x0c = 0000 1 1 0 0 } //按指定位置显示一个字符 void DisplayOneChar(unsigned char X, unsigned char Y, unsigned char DData) { Y &= 0x1; //0001 //X &= 0xF; //限制X不能大于15,Y不能大于1 //1111 //当Y = 1时,开始写第二行,Y = 0时,写第一行 if (Y) X |= 0x40; //当要显示第二行时地址码+0x40; X |= 0x80; //算出指令码 X = X + 0X80 WriteCommandLCM(X, 0); //这里不检测忙信号,发送地址码 WriteDataLCM(DData); } //按指定位置显示一串字符 void DisplayListChar(unsigned char X, unsigned char Y, unsigned char code *DData) { unsigned char ListLength; ListLength = 0; Y &= 0x1; //有了此限定后,Y可以为0,或者为1 X &= 0xF; //X 最大为15,最小为0 while (DData[ListLength] > 0x20) //若到达字串尾则退出 { if (X <= 0xF) //X坐标应小于0xF { DisplayOneChar(X, Y, DData[ListLength]); //显示单个字符 ListLength++; X++; } } } //5ms延时 void Delay5Ms(void) { unsigned int TempCyc = 5552; while(TempCyc--); } //400ms延时 void Delay400Ms(void) { unsigned char TempCycA = 5; unsigned int TempCycB; while(TempCycA--) { TempCycB=7269; while(TempCycB--); } }