单片机12864动态波形显示

合集下载

12864液晶画波形

12864液晶画波形

12864液晶画波形2009-08-19 19:22:0512864液晶画波形要能画波形,有一点是至关重要重要的,那就是打点,所谓打点,就是能在指定的X,Y的坐标处打上一个小黑点,12864液晶的操作就像大多数16位以上的处理器一样是字节或字或双字操作的,不像51和彩色液晶一样的位操作,所以要在12864上打点,就必须用“与或”的方式。

下面把打点的函数贴上,这是以前做温度波形显示的时候做的/****************打点******************/void point(uchar x,uchar y){uchar y1,hang,lie,msb_data,lsb_data,temp=0x01;if(y1!=y){msb_data=0;lsb_data=0;}y1=y;if(y<32){hang=0x80+y;lie=0x80;}if(y>31){hang=0x80+y-32;lie=0x88;}if(y>63)//return;{lcm_com(0x80);_nop_();hanzi("温度超出显示范围");while(1)flash();}lie=lie+x/16;if(x%16==0){msb_data=0;lsb_data=0;}if(x%16<8){msb_data=msb_data|(temp<<(7-x%16));lsb_data=0x00|lsb_data;}//保留以前的数据,把第x个点亮if(x%16==8){msb_data=msb_data|0x00;lsb_data=lsb_data|0x80;}if(x%16>8){msb_data=msb_data|0x00;lsb_data=lsb_data|(temp<<(15-x%16));}lcm_com(0x34);//扩充指令集lcm_com(hang);lcm_com(lie);lcm_dat(msb_data);lcm_dat(lsb_data);lcm_com(0x36);//绘图显示开}打点完成之后波形就相应的出来了,比如说要记录一个波形随时间变化,x坐标随着时间自动增加,x增加一个单位时相应y的值就得确定,在送个打点函数,波形就出来了。

单片机原理及应用 课程设计 12864点阵LCD的显示

单片机原理及应用 课程设计 12864点阵LCD的显示

《单片机原理及应用》课程设计题目128*64点阵LCD的显示院系信息学院专业通信工程姓名XXX学号XXXXX指导老师XXX报告日期2009.09.101.题目:128*64点阵LCD的显示2.原理简述12864点阵液晶显示模块(LCM)就是由128*64个液晶显示点组成的一个128列*64行的阵列。

每个显示点对应一位二进制数,1表示亮,0表示灭。

存储这些点阵信息的RAM称为显示数据存储器。

要显示某个图形或汉字就是将相应的点阵信息写入到相应的存储单元中。

图形或汉字的点阵信息当然由自己设计,问题的关键就是显示点在液晶屏上的位置(行和列)与其在存储器中的地址之间的关系。

由于多数液晶显示模块的驱动电路是由一片行驱动器和两片列驱动器构成,所以12864液晶屏实际上是由左右两块独立的64*64液晶屏拼接而成,每半屏有一个512*8 bits显示数据RAM。

左右半屏驱动电路及存储器分别由片选信号CS1和CS2选择。

(少数厂商为了简化用户设计,在模块中增加译码电路,使得128*64液晶屏就是一个整屏,只需一个片选信号。

)显示点在64*64液晶屏上的位置由行号(line,0~63)与列号(column,0~63)确定。

512*8 bits RAM中某个存储单元的地址由页地址(Xpage,0~7)和列地址(Yaddress,0~63)确定。

每个存储单元存储8个液晶点的显示信息。

为了使液晶点位置信息与存储地址的对应关系更直观关,将64*64液晶屏从上至下8等分为8个显示块,每块包括8行*64列个点阵。

每列中的8行点阵信息构成一个8bits二进制数,存储在一个存储单元中。

(需要注意:二进制的高低有效位顺序与行号对应关系因不同商家而不同)存放一个显示块的RAM区称为存储页。

即64*64液晶屏的点阵信息存储在8个存储页中,每页64个字节,每个字节存储一列(8行)点阵信息。

因此存储单元地址包括页地址(Xpage,0~7)和列地址(Yaddress,0~63)。

用LCD点阵JM12864C显示函数动态波形

用LCD点阵JM12864C显示函数动态波形

LCALL M()V LCALL M()V
SEND—BYTE A。#’13 SEND—BYTE A,#7r
;字节发送
LCALL LCALL RET
SEND—BYTE
DELAYl
;调用延时
同样,cI。R清屏命令子程序也是发送命令码CLR的ASCII码,但
CLR命令没有参数,无需发送参数。子程序如下:
()RDER—CLR:JNB P3.0,¥ ;检测模块是否为闲态
5.期刊论文 刘传宝.申立中.雷基林.徐淑亮.LIU Chuanbao.SHEN Lizhong.LEI Jilin.XU Shuliang 单片机
C167CS的 I/O口模拟串口与PC机通信进行数据采集实现方法的研究 -现代电子技术2007,30(3)
在做柴油机电控系统开发的过程中,为解决单片机C167CS与PC机通信问题,利用C167CS的I/O 口模拟串口与PC机进行通信,通过这种方法可以实现多个 串口,而且串口通讯高效、可靠、标准统一.系统包括目标机采集子程序、目标机数据发送子程序、上位机接收子程序等,并给出了硬件原理图.
长江大学学报(自科版) 2004年12月第1卷第4期 Journal of Yangtze University(Natural Science Edition)Dee.2004 V01.1 No.4
·67·
用LCD点阵JMl2864C显示函数动态波形
付润江 (长江大学电子信息学院,湖北荆州434023)
CLR
T。
;Tl必须由软件清0
RET
需要说明的是,上面两段子程序中的延时子程序DELAYl是必要的,可以通过实验确定,延时大
约不小于10ms,否则LCD无法正常显示。
3结 论

12864LCD液晶显示原理及使用方法

12864LCD液晶显示原理及使用方法

12864‎L CD液晶‎显示原理及‎使用方法液晶简介液晶是一种‎在一定温度‎范围内呈现‎既不同于固‎态液态又不‎同于气态的‎特殊物质态‎,它既具有各‎向异性的晶‎体所特有的‎双折射性又‎具有液体的‎流动性液晶‎显示器件(英文的简写‎为L CD)就是利用液‎晶态物质的‎液晶分子排‎列状态在电‎场中改变而‎调制外界光‎的被动型显‎示器件。

点阵式图形‎液晶显示屏‎是LCD 的一种能够‎动态显示图‎形汉字以及‎各种符号信‎息为各种电‎子产品提供‎了友好的人‎机界面点阵‎式图形液晶‎显示屏的主‎要特点如下‎(这些特点也‎就是LCD‎的特点):工作电压低‎、微功耗、体积小、可视面积大‎、无电磁辐射‎、数字接口、寿命长等特‎点。

12864‎L CD是一‎种图形点阵‎液晶显示器‎,它主要由行‎驱动器/列驱动器及‎128×64 全点阵液晶‎显示器组成‎。

可完成图形‎显示,也可以显示‎8×4 个(16×16 点阵)汉字或者显‎示16×4个(8×16 点阵)ASCII‎码。

分为两种,带字库的和‎不带字库的‎。

不带字库的‎L CD需要‎自己提供字‎库字模,此时可以根‎据个人喜好‎设置各种字‎体显示风格‎,设计上较为‎灵活。

带字库的L‎CD提供字‎库字模,但是只能显‎示GB23‎12的宋体‎。

各有优缺点‎,根据不同应‎用场景灵活‎选择。

其液晶模块‎原理图如下‎所示。

12864‎L CD点阵‎图形液晶模‎块原理框图‎下面给出了‎其应用连接‎电路,分别介绍其‎各引脚的功‎能和作用。

如下表所示‎:12864‎L CD 的引脚说明‎管脚号管脚‎名称LEV‎ER 管脚功能描‎述1GND 0 电源地2VCC+5.0V 电源电压3VLCD‎- 液晶显示器‎驱动电压4RS (D/I)‎H/LD/I=“H”,表示DB7‎∽DB0 为显示数据‎D/I=“L”,表示DB7‎∽DB0 为显示指令‎数据5R/W‎H/L‎R/W=“H”,E=“H”数据被读到‎D B7∽DB0R/W=“L”,E=“H→L”数据被写到‎IR或DR6EN H/L‎R/W=“L”,E 信号下降沿‎锁存DB7‎∽DB0R/W=“H”,E=“H”DDRAM‎数据读到D‎B7∽DB0 7DB0 H/L 数据线8DB1 H/L数据线9DB2 H/L 数据线10DB3‎H/L 数据线11DB4‎H/L数据线12DB5‎H/L数据线13DB6‎H/L数据线14DB7‎H/L数据线15CS1‎H/L H:选择芯片(右半屏)信号16CS2‎H/L H:选择芯片(左半屏)信号17RET‎H/L复位信号‎,低电平复位‎18VEE‎ -10VLC‎D驱动负电压‎19LED‎+- LED 背光板电源‎20LED‎-- LED 背光板电源‎12864‎L CD点阵‎图形液晶模‎块应用连接‎电路液晶驱动设‎置在理解12‎864LC‎D硬件原理‎和管脚功能‎之后,可以针对L‎CD进行驱‎动的编写,分两种情况‎:仿真环境下‎和实物开发‎板编程。

(完整版)12864显示波形

(完整版)12864显示波形

(完整版)12864显示波形Lcd12864。

c:#include ”lcd12864.h”void LCDDelay (char t){char i,j;for(i=0;i〈t;i++)for(j=0;j<10;j++);}void CheckState(){char dat;LCDRs = 0;LCDRw = 1;do{dat = 0x00;LCDEn = 1;LCDDelay(2);LCDEn=0;dat=0x80&dat;}while(!(dat==0x00));}void write_com (char cmdcode){CheckState ( );LCDRs = 0;LCDRw = 0;LCDData = cmdcode;LCDDelay (2);LCDEn = 1;LCDDelay (2);LCDEn = 0;}void write_data (char LCDDispdata){CheckState ( );LCDRs=1;LCDRw=0;LCDData=LCDDispdata;LCDDelay(2);LCDEn=1;LCDDelay(2);LCDEn=0;}void LCDInit (){(完整版)12864显示波形LCDDelay(100);LCDCs1=1;LCDCs2=1;LCDDelay(100);write_com(LCDDispOff);write_com(PageAdd+0);write_com(StartLine+0);write_com(LCDColAdd+0);write_com(LCDDispOn);}void LCDClear(){char k,j;LCDCs1=0;LCDCs2=0;write_com(PageAdd+0);write_com(LCDColAdd+0);for(k=0;k〈8;k++){write_com(PageAdd+k);for(j=0;j<64;j++){write_com(LCDColAdd+j);write_data(0x00);}}}void LCDWriteChinese (char leftright, char page, char column,char chinese[]){char i = 0,j=0;if(leftright==’L'){LCDCs1=0;LCDCs2=1;}else if (leftright == ’R'){LCDCs1 = 1;LCDCs2=0;}for(i=0;i〈2;i++){write_com(PageAdd+page+i);write_com(LCDColAdd+column);for(j=0;j〈16;j++){write_data(chinese[16*i+j]);}}}void LCDWriteChineseBlack(char leftright,char page,char column,char chinese[]){char i = 0, j =0;if(leftright=='L’){LCDCs1=0;LCDCs2=1;}else if(leftright==’R'){LCDCs1=1;LCDCs2=0;}for(i=0;i〈2;i++){write_com(PageAdd+page+i);write_com(LCDColAdd+column);for(j=0;j<16;j++){write_data(~chinese[16*i+j]);}}}void LCDWriteNum (char leftright,char page,char column, char num[]){char i =0,j=0;if(leftright==’L'){LCDCs1=0;LCDCs2=1;}else if (leftright==’R'){LCDCs1=1;LCDCs2=0;}for(i=0;i<2;i++){write_com(PageAdd+page+i);write_com(LCDColAdd+column);for(j=0;j〈8;j++){write_data(num[8*i+j]);}}}void LCDWriteNumBlack(char leftright,char page,char column,char num[]){char i=0,j=0;if(leftright==’L'){LCDCs1=0;LCDCs2=1;}else if(leftright==’R'){LCDCs1=1;LCDCs2=0;}for(i=0;i<2;i++){write_com(PageAdd+page+i);write_com(LCDColAdd+column);for(j=0;j<8;j++){write_data(~num[8*i+j]);}}}Lcd12864。

函数信号发生器的设计(12864实现动态波形显示)

函数信号发生器的设计(12864实现动态波形显示)

课程设计(论文)任务书电气与电子工程学院系自动化专业 13—2 班级一、课程设计(论文)题目简易信号发生器的设计二、课程设计(论文)工作自2016 年 1 月 5 日起至2016 年 1 月 14 日止。

三、课程设计(论文)的内容要求:课程设计不仅仅要求学生完成所规定的题目要求,同时还要培养学生良好的科学态度和严谨的设计习惯。

课程设计报告要求内容如下:(1)设计思想和设计说明(2)硬件原理框图(3)硬件原理图与软件配合介绍 (4)程序存储器和数据存储器的单元分配(5) 程序流程图 (6)系统功能描述(7) 设计调试过程总结(8) 附录里面包括:芯片资料、源程序清单和符合制图规范的硬件原理图的图纸。

设计要求内容:用D/A实现正弦信号,三角波信号,方波信号的输出,并且在LCD上显示出当前波形。

要求输出信号的频率和幅度可调。

设计内容:(1)满足设计要求内容。

(2)扩展锯齿波波形输出。

(3)汉字显示当前波形形状与当前频率的大小学生签名年月日课程设计(论文)评审意见(1)题目复杂程度:复杂()、较复杂()、一般()、简单()(2)总体方案的选择是否正确:正确()、较正确()、欠正确()、不正确()(3) 系统能否满足任务要求:满足()、较满足()、欠满足()、不满足()(4) 元器件选择是否合理:合理()、较合理()、欠合理()、不太合理()(5) 学习实践态度:好()、较好()、一般()、不太好()(6) 独立工作能力:强()、较强()、一般()、较差()(7) 回答问题是否正确:正确()、较正确()、基本正确()、大多不正确()(8) 图表是否符合标准:符合()、较符合()、基本符合()、大多不符合()(9) 撰写是否规范整洁:规范整洁()、较规范()、欠规范()、不太规范()总评成绩:优()、良()、中()、及格()、不及格()评阅人职称副教授2016 年 1 月日目录一、课程设计及要求及目的通过课程设计环节加深对单片机原理及应用技术的理解,提高理论结合实践的能力,提高单片机系统设计和开发的能力,初步学习一个完整的单片机系统的研发过程,并培养严谨细致的科研态度。

(完整word版)单片机12864动态波形显示

(完整word版)单片机12864动态波形显示

/****************************************************************************** ** 描述: ** 12864标准字库液晶演示数据p0,控制p2 ******************************************************************************** */#include <reg51.h>#include <math.h>#include <intrins.h>#define uchar unsigned char#define uint unsigned int/************* 12864LCD引脚定义*************/#define LCD_data P0 //数据口sbit LCD_RS = P2^6; //寄存器选择输入sbit LCD_RW = P2^5; //液晶读/写控制sbit LCD_EN = P2^7; //液晶使能控制sbit LCD_PSB = P3^2; //串/并方式控制sbit LCD_RST = P3^7; //液晶复位端口#define delayNOP(); {_nop_();_nop_();_nop_();_nop_();};/*********************************************************/uchar code DIS1[] = {"Vpp:"};uchar code DIS2[] = {"F:"};uchar DIS3[] = {"5V"};uchar DIS4[] = {"12Hz"};uchar D1[]={"0123456789"};/*********************************************************///正弦波代码uchar code tab[]={126,100,80,70,65,62,65,70,80,100,126,152,172,182,187,190,187,182,172,152};//背景图片uchar code Photo1[]={0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x01,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x01,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x01,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x01,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x01,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x01,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x01,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x01,0x00,0x00,0x00,0x00, 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x01,0x00,0x00,0x00,0x00, 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x01,0x00,0x00,0x00,0x00, 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x01,0x00,0x00,0x00,0x00, 0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x00,0x01,0x00,0x00,0x00,0x00, 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//*******************************************************************//* *//* 延时函数*//* *//*******************************************************************/void delay(int ms){while(ms--){uchar i;for(i=0;i<150;i++){_nop_();_nop_();_nop_();_nop_();}}}/*******************************************************************//* *//* 延时函数*//* *//*******************************************************************/void delay1(int ms){while(ms--){uchar y;for(y=0;y<100;y++) ;}}/*******************************************************************//* *//*检查LCD忙状态*/ /*lcd_busy为1时,忙,等待。

AVR单片机1路AD采集数据12864显示

AVR单片机1路AD采集数据12864显示

#include <iom128v.h>#include <macros.h>#define uchar unsigned char#define uint unsigned int#define PSBH PORTC|=BIT(0);#define PSBL PORTC&=~BIT(0);#define EH PORTC|=BIT(1);#define EL PORTC&=~BIT(1);#define RWH PORTC|=BIT(2);#define RWL PORTC&=~BIT(2);#define RSH PORTC|=BIT(3);#define RSL PORTC&=~BIT(3);void Delay_ms(uint z){uint x,y;for(x=z;x>0;x--)for(y=123;y>0;y--);}/**********************************************************液晶显示(串行方式)**********************************************************/void SendByte(uchar zdata) // 按照液晶的串口通信协议,发送数据{uchar i;for(i=0; i<8; i++){if((zdata << i) & 0x80){RWH;}else{RWL;}EL;EH;}}void write_LCD_cmd(uchar cmdcode) // 写串口指令{RSL;RSH;SendByte(0xf8);SendByte(cmdcode & 0xf0);SendByte((cmdcode << 4) & 0xf0);Delay_ms(2);}void write_LCD_dat(uchar Dispdata) // 写数据{RSL;RSH;SendByte(0xfa);SendByte(Dispdata & 0xf0);SendByte((Dispdata << 4) & 0xf0);Delay_ms(2);}void Display_str(uchar X,uchar Y,uchar *p)//显示字符串函数{uint i; //局部循环体控制变量switch(X){case 0:write_LCD_cmd( 0x80 + Y );break; //第一行case 1:write_LCD_cmd( 0x90 + Y );break; //第二行case 2:write_LCD_cmd( 0x88 + Y );break; //第三行case 3:write_LCD_cmd( 0x98 + Y );break; //第四行}for(i=0;p[i]!='\0';i++){write_LCD_dat(p[i]);}}//**********液晶初始化**********//void LCD_init(){PSBL; //串行方式Delay_ms(5);write_LCD_cmd(0x30);//选择基本指令操作Delay_ms(1);write_LCD_cmd(0x0C);//显示状态开关:整体显示开,光标显示关,光标显示反白关Delay_ms(1);write_LCD_cmd(0x01); //清除显示DDRAMDelay_ms(2);write_LCD_cmd(0x06);//启始点设定:光标右移Delay_ms(1);}void main(void){DDRD=0xFF;PORTD=0xFF;LCD_init();Display_str(0,0,"AD电压采集显示值");Display_str(1,0,"实际电压:");while(1);}。

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/****************************************************************************** ** 描述: ** 12864标准字库液晶演示数据p0,控制p2 ******************************************************************************** */#include <reg51.h>#include <math.h>#include <intrins.h>#define uchar unsigned char#define uint unsigned int/************* 12864LCD引脚定义*************/#define LCD_data P0 //数据口sbit LCD_RS = P2^6; //寄存器选择输入sbit LCD_RW = P2^5; //液晶读/写控制sbit LCD_EN = P2^7; //液晶使能控制sbit LCD_PSB = P3^2; //串/并方式控制sbit LCD_RST = P3^7; //液晶复位端口#define delayNOP(); {_nop_();_nop_();_nop_();_nop_();};/*********************************************************/uchar code DIS1[] = {"Vpp:"};uchar code DIS2[] = {"F:"};uchar DIS3[] = {"5V"};uchar DIS4[] = {"12Hz"};uchar D1[]={"0123456789"};/*********************************************************///正弦波代码uchar code tab[]={126,100,80,70,65,62,65,70,80,100,126,152,172,182,187,190,187,182,172,152};//背景图片uchar code 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//*******************************************************************//* *//* 延时函数*//* *//*******************************************************************/void delay(int ms){while(ms--){uchar i;for(i=0;i<150;i++){_nop_();_nop_();_nop_();_nop_();}}}/*******************************************************************//* *//* 延时函数*//* *//*******************************************************************/void delay1(int ms){while(ms--){uchar y;for(y=0;y<100;y++) ;}}/*******************************************************************//* *//*检查LCD忙状态*/ /*lcd_busy为1时,忙,等待。

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