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首页 > (完整word版)12864中文字库说明书ST7920

(完整word版)12864中文字库说明书ST7920

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(完整word版)12864中文字库说明书ST792012864C-1液晶中文显示模块(一)概述3(一)(二)外形尺寸1方框图32外型尺寸图4(二)(三)模块的接口4(三)(四)硬件说明5(五)指令说明7(四)(五)读写操作时序8(五)(六)交流参数11(六)(七)软件初始化过程12(七)(八)应用举例13(八)(九)附录1半宽字符表202汉字字符表21、概述12864C-1是一种具有4位/8位并行、2线或3线串行多种接口方式,内部含有国标一级、二级简体中文字库的点阵图形液晶显示模块;其显示分辨率为128X64,内置8192个16*16点汉字,和128个16*8点ASCII字符集...
(完整word版)12864中文字库说明书ST7920
12864C-1液晶中文显示模块(一)概述3(一)(二)外形尺寸1方框图32外型尺寸图4(二)(三)模块的接口4(三)(四)硬件说明5(五)指令说明7(四)(五)读写操作时序8(五)(六)交流参数11(六)(七)软件初始化过程12(七)(八)应用举例13(八)(九)附录1半宽字符表202汉字字符表21、概述12864C-1是一种具有4位/8位并行、2线或3线串行多种接口方式,内部含有国标一级、二级简体中文字库的点阵图形液晶显示模块;其显示分辨率为128X64,内置8192个16*16点汉字,和128个16*8点ASCII字符集.利用该模块灵活的接口方式和简单、方便的操作指令,可构成全中文人机交互图形界面。可以显示8X4行16X16点阵的汉字.也可完成图形显示•低电压低功耗是其又一显著特点。由该模块构成的液晶显示与同类型的图形点阵液晶显示模块相比,不论硬件电路结构或显示程序都要简洁得多,且该模块的价格也略低于相同点阵的图形液晶模块。基本特性:低电源电压(VDD:+3.0--+5.5V)显示分辨率:128X64点内置汉字字库,提供8192个16X16点阵汉字(简繁体可选)内置128个16X8点阵字符2MHZ寸钟频率显示方式:STN半透、正显驱动方式:1/32DUTY,1/5BIAS视角方向:6点背光方式:侧部高亮白色LED,功耗仅为普通LED的1/5—1/10通讯方式:串行、并口可选内置DC-DC转换电路,无需外加负压无需片选信号,简化软件工作温度:0C-+55C,存储温度:-20C-+60C二、方框图三、模块接口说明2.1串口接口笹脚信号管脚号名称LEVEL功能1'VSSOV电源地2VDD+5V电源正(3.0V.5V)3V0—对比度(亮度)调整4CSILL模纽片选端,高电平冇效5S1DH/L串存数据输入端6CLKH/L串行同步时律匕升沿时渎取15灿LL「串口方式(见注释1)17/RESETHl复位端,低电平有效(见注释2)19AVDD背光源电1E+5V(见注释3)20K「VSS廿光源负端叽(见注释3)*注释1如在实际应用中仅使用串口通讯模式,可将PSB接固定低电平,也可以将模块上的J8和“GND用焊锡短接。*注释2:模块内部接有上电复位电路,因此在不需要经常复位的场合可将该端悬空。*注释3:如背光和模块共用一个电源,可以将模块上的JA、JK用焊锡短接。22并行接口管脚号管脚名称电平管脚功能描述1VSS0V电源地2VCC3.0+5V电源正3V0-对比度(亮度)调整4RS(CS)H/LRS=“H”,表示DB7DB0为显示数据RS=“L”,表示DB7DB0为显示指令数据5R/W(SID)H/LR/W=“H,E=“H,数据被读到DB7DB0R/W=“L”,E=“HRL”,DB7——DB0的数据被写到IR或DR6E(SCLK)H/L使能信号7DB0H/L三态数据线8DB1H/L三态数据线9DB2H/L三态数据线10DB3H/L三态数据线11DB4H/L三态数据线12DB5H/L三态数据线13DB6H/L三态数据线14DB7H/L三态数据线15PSBH/LH:8位或4位并口方式,L:串口方式(见注释1)16NC-空脚17/RESETH/L复位端,低电平有效(见注释2)18VOUT-LCD驱动电压输出端19AVDD背光源正端(+5V)(见注释3)20KVSS背光源负端(见注释3)*注释1如在实际应用中仅使用并口通讯模式,可将PSB接固定高电平,也可以将模块上的J8和“VCC用焊锡短接。*注释2:模块内部接有上电复位电路,因此在不需要经常复位的场合可将该端悬空。*注释3:如背光和模块共用一个电源,可以将模块上的JA、JK用焊锡短接。模块主要硬件构成说明控制器接口信号说明:1、1、RSR/W的配合选择决定控制界面的4种模式:RSR/W功能说明LLMPU写指令到指令暂存器(IR)LH读出忙标志(BF及地址记数器(AC)的状态—HLMPU写入数据到数据暂存器(DRHHMPU从数据暂存器(DR)中读出数据2、E信号E状态执行动作结果高一->低I/O缓冲一—>DR配合/W进行写数据或指令高DR-—>I/O缓冲配合R进行读数据或指令低/低一->高无动作•忙标志:BFBF标志提供内部工作情况.BF=1表示模块在进行内部操作,此时模块不接受外部指令和数据.BF=0时,模块为准备状态,随时可接受外部指令和数据•利用STATUSRD指令,可以将BF读到DB7总线,从而检验模块之工作状态•字型产生ROM(CGROM字型产生ROMCGRO)提供8192个此触发器是用于模块屏幕显示开和关的控制。DFF=1为开显示(DISPLAYON),DDRAM的就显示在屏幕上,DFF=0为关显示(DISPLAYOFF)。DFF的状态是指令DISPLAYON/OFF和RST信号控制的。显示数据RAM(DDRAM模块内部显示数据RAM提供64X2个位元组的空间,最多可控制4行16字(64个字)的中文字型显示,当写入显示数据RAM时,可分别显示CGROM与CGRAM勺字型;此模块可显示三种字型,分别是半角英数字型(16*8)、CGRAM字型及CGRO的中文字型,三种字型的选择,由在DDRAM中写入的编码选择,在0000H—0006H的编码中(其代码分别是0000、0002、0004、0006共4个)将选择CGRA啲自定义字型,02H—7FH的编码中将选择半角英数字的字型,至于A1以上的编码将自动的结合下一个位元组,组成两个位元组的编码形成中文字型的编码BIG5(A140-D75F),GB(A1A0-F7FFH。•字型产生RAM(CGRAM)字型产生RAM提供图象定义(造字)功能,可以提供四组16X16点的自定义图象空间,使用者可以将内部字型没有提供的图象字型自行定义到CGRAI中,便可和CGROI中的定义一样地通过DDRAMI示在屏幕中。•地址计数器AC地址计数器是用来贮存DDRAM/CGRA之一的地址,它可由设定指令暂存器来改变,之后只要读取或是写入DDRAM/CGRAM®时,地址计数器的值就会自动加一,当RS为“0”时而R/W为“1”时,地址计数器的值会被读取到DB6-—DB0中。•光标/闪烁控制电路此模块提供硬体光标及闪烁控制电路,由地址计数器的值来指定DDRAI中的光标或闪烁位置。五、指令说明模块控制芯片提供两套控制命令,基本指令和扩充指令如下:指令表1:(RE=Q基本指令)指令指令码功能RSR/WD7D6D5D4D3D2D1D0清除显示0000000001将DDRA填满"20H",并且设定DDRA的地址计数器(AC到"00H"地址归位000000001X设定DDRA的地址计数器(AC)到"00H",并且将游标移到开头原点位置;这个指令不改变DDRA的内容显示状态开/关0000001DCBD=1:整体显示ONC=1:游标ONB=1:游标位置反白允许进入点设定00000001I/DS指疋在数据的读取与与入时,设疋游标的移动方向及指定显示的移位游标或显示移位控制000001S/CR/LXX设定游标的移动与显示的移位控制位;这个指令不改变DDRAM勺内容功能设定00001DLXREXXDL=0/1:4/8位数据RE=1:扩充指令操作RE=0:基本指令操作设定CGRAM地址0001AC5AC4AC3AC2AC1AC0设定CGRAM地址设定DDRAM地址0010AC5AC4AC3AC2AC1AC0设定DDRAM地址(显示位址)第一行:80H—87H第二行:90H—97H读取忙标志和地址01BFAC6AC5AC4AC3AC2AC1AC0读取忙标志(BF)可以确认内部动作是否完成,同时可以读出地址计数器(AC)的值写数据至URAM10数据将数据D7——D0写入到内部的RAI(DDRAM/CGRAM/IRAM/GRAM)读出RAM的值11数据从内部RAM卖取数据D7——D0(DDRAM/CGRAM/IRAM/GRAM)指令表2:(RE=1:扩充指令)指指令码功能令RSR/WD7D6D5D4D3D2D1D0待命模式0000000001进入待命模式,执行其他指令都棵终止待命模式卷动地址开关开启000000001SRSR-1允许输入垂直卷动地址SR=0允许输入IRAM和CGRA地址反白选择00000001R1R0选择2行中的任一行作反白显示,并可决定反白与否。初始值R1R0=00,第一次设定为反白显示,再次设定变回正常睡眠模式0000001SLXXSL=0:进入睡眠模式SL=1:脱离睡眠模式扩充功能设定00001CLXREG0CL=0/1:4/8位数据RE=1:扩充指令操作RE=0:基本指令操作G=1/0:绘图开关设定绘图RAM地址0010AC60AC50AC4AC3AC3AC2AC2AC1AC1AC0AC0设定绘图RAM先设定垂直(列)地址AC6AC5•AC0再设定水平(行)地址AC3AC2AC1AC0将以上16位地址连续写入即可备注;当IC1在接受指令前,微处理器必须先确认其内部处于非忙碌状态,即读取BF标志时,BF需为零,方可接受新的指令;如果在送出一个指令前并不检查BF标志,那么在前一个指令和这个指令中间必须延长一段较长的时间,即是等待前一个指令确实执行完成。六、读写时序图6.1数据传输过程r\zxXXClSIL'TuningDiagramofS-bitParallelBusModeDaraTran^feiTimingDiagramof4*biiPanllelBusModeDataTransfer8位和4位数据线的传输过程12345€78910丄1坨L31百丄刍1€E7边192021222324丽Rffi。…HFffl…[□血氈F10DX—RAMI'pjjcrLowZZ><2>?reAfcjrffi吋加gtiarafromMPUeSTSJO/TcEnableCyvlcTimePinE1200■■H5Tj>a-EnablePulseWtdrhPinE140■■Tr.TfEnableFallTimeFinE•25怦TasAddits^SrttrpTiiiitPins:RS.RW.E10■-tisTahAddressHoldTimcPins:RS.RW.E20■■”nsTkwDjtfiSetupTimePhu:DBO-DB740■E)5TkDauHoldTmiePitiv;DBO*DB720--ReadSlodcfRcatinigDatafi~omST^920ioMPL1TcEivibJeCyt;kTunePinE1200■Tpu-EnablePulseWidthPinE140--IHTr.TfEnabkRixFt>llTimcPinE--25inTasAddiffssSetupTimePins:RS.RW.E10■■TahAddres.*HoldTinxPun:RS.RWT20-■TdcrDfltaDelayTimePins:DBO“DB〕_!S-100IlsThDataHoldTuncPins;DBO-DB720■WInterfaceModewithLCDDnverfST^921iTcwhClockPukeuithHighPhis:CL1,CL2800--inTcwlClockPulsewithLowPins:CLLCL2SOO-■TcsrClockSciupTimePins:CLLCL2500■■El、TsvDataScmpTiiiKPin;D300■-nvTqhDaTSHoldTunePin:D300»■—TdmMDelayTimePiirM^1000■1000交流参数(Ta=25oC,Vdd=4.5V-5.5V)八、软件初始化8•位元介面:Waittime40xnsXRESETLOW■*IHGIlFiiiirtionRSRWDB7DB6DB^DB4DBSDmDBlDBOoV01X0XXFiiiiHinn片f|RSRWDB6DB5DB4DBJDB:OBIDBO000011XOXXriirf10f,nSWaittmf>37a$FDkp]ayOXOFFcoutrolRSRMDB?DB?DH4DB3DH2UHIUHo000000EhCB1FWaittmie>100uS1FDisplaydealRSRUDR-I1B牡DR*DB4DBADB2DBlDBOa0000000011FWaitraue>1OmS1fEulrymodeseiRSRXVDB™DB6DB?DB4DB3DBMDB1DBO00QQ0001ID$InitializationendPOWERWaitrime40ntsXRESETLD\1►HIGHfunctionsetRSRx\ns?D06DB5I)H4DB3DB2DH1DBD000010XXXXWaittmic>100uSFunnionsefRSR[>B7D站DR*DB4DBADB2DHLDBO°00010XXXX00X0XXXXXX1FWailtime>100uSDhplnyOX/OFFcanTro)RsRUDB7DB6BB5DB4DBJDB2DB1DBO000000XXXX0V1DCBXXXXWaitlime-lOOuSDhphydearRSRWDB7liHnDB5DB4DB3DB±DB1DBO00fl00aXXXX0ufl001XXXXWaitrime:,LK)mSEntnmodesetR5RTWDB-1)B51IB4DB3DB2DB1DBO00o000XXXX00fl1IBgXXXXIiiirinliy^riona\d应用举例:1、使用前的准备先给模块加上工作电压,此过程亦可以初步检测2、字符显示FYD12864-0402B每屏可显示4行8列共32个16X16点阵的汉字,每个显示RAM可显示1个中J-V0(3PIN)5KrVOUT(18PIN)文字符或2个16X8点阵全高ASCII码字符,即每屏最多可实现32个中文字符或64个ASCII码字符的显示。FYD12864-0402B内部提供128X2字节的字符显示RAM缓冲区(DDRA)字符显示是通过将字符显示编码写入该字符显示RAM实现的。根据写入内容的不同,可分别在液晶屏上显示CGROM中文字库)、HCGROMASCII码字库)及CGRAM(自定义字形)的内容。三种不同字符/字型的选择编码范围为:0000〜0006H(其代码分别是0000、0002、0004、0006共4个)显示自定义字型,02H〜7FH显示半宽ASCII码字符,A1A0I〜F7FFH显示8192种GB2312中文字库字形。字符显示RAM在液晶模块中的地址80H〜9FH=字符显示的RAM的地址与32个字符显示区域有着——对应的关系,其对应关系如下表所示。80H81H82H83H84H85H86H87H90H91H92H:93H94HP95H96H97H88H89H8AH—8BH8CH8DH8EH8FH98H99H9AH9BH9CH9DH9EH9FH3、图形显示先设垂直地址再设水平地址(连续写入两个字节的资料来完成垂直与水平的坐标地址)垂直地址范围AC5...AC0水平地址范围AC3-AC0绘图RAM的地址计数器(AC)只会对水平地址(X轴)自动加一,当水平地址=0FH时会重新设为00H但并不会对垂直地址做进位自动加一,故当连续写入多笔资料时,程序需自行判断垂直地址是否需重新设定。GDRAM的坐标地址与资料排列顺序如下图3、应用说明用FYD12864-0402B显示模块时应注意以下几点:欲在某一个位置显示中文字符时,应先设定显示字符位置,即先设定显示地址,再写入中文字符编码。显示ASCII字符过程与显示中文字符过程相同。不过在显示连续字符时,只须设定一次显示地址,由模块自动对地址加1指向下一个字符位置,否则,显示的字符中将会有一个空ASCII字符位置。当字符编码为2字节时,应先写入高位字节,再写入低位字节。模块在接收指令前,向处理器必须先确认模块内部处于非忙状态,即读取BF标志时BF需为“0”方可接受新的指令。如果在送出一个指令前不检查BF标志,则在前一个指令和这个指令中间必须延迟一段较长的时间,即等待前一个指令确定执行完成。指令执行的时间请参考指令表中的指令执行时间说明。⑤“RE为基本指令集与扩充指令集的选择控制位。当变更“RE后,以后的指令集将维持在最后的状态,除非再次变更“RE位,否则使用相同指令集时,无需每次均重设“RE位o4、4、YD12864-0402B与单片机80C51的一种接口如图所示FYV口辭」EJC1HP编程参考(部分)'g5IKFWFl6P[7R5TRXWF305、5、■*********************************************PJ(XAIjO)列KADIJPC2(AD2)叭4FJ蛍扎Z?J:START:ORG0000HMOVSP,#60HLJMPDISP■*********************************>主程序入口地址ORG0040HDISP:CLRPSBLCALLDELAYSETBPSB;将PSB置1,通信方式为8位数据并口LCALLDELAYMOVCOM,#30H;功能设置---8BIT控制界面,基本指令集ACALLWRI;调用写指令子程序LCALLDELAY;延迟39uSMOVCOM,#0CH;显示打开,光标关,反白显示关ACALLWRI;调用写指令子程序LCALLDELAY;延迟39uSMOVCOM,#01HACALLWRILCALLDELAY清除屏幕显示,将DDRA啲地址计数器归零调用写指令子程序延迟39uSMOVCOM,#06H;DDRAM的地址计数器(AC力口1ACALLWRI;调用写指令子程序LCALLDELAY;延迟39uS.****************************************************JDISPLAY5A:MOVR2,#64;DDRAM地址记数器设为最大值MOVR1,#10HMOVCOM,#80H;DDRAM地址0000000ACALLWRIDISP5A:MOVDAT,R1ACALLWRD;INCR1DJNZR2,DISP5ALCALLDELAY1;1S.*************************************JDISPLAY5:MOVR2,#64;DDRAMMOVR1,#0DEHMOVCOM,#80H;DDRAMACALLWRIDISP5:MOVDAT,#0B4HACALLWRD;MOVDAT,R1ACALLWRD;INCR1DJNZR2,DISP5LCALLDELAY1;1S.**********************************JMOVCOM,#01H;ACALLWRI;LCALLDELAYMOVCOM,#32H;ACALLWRI;LCALLDELAY;MOVCOM,#36H;ACALLWRI;LCALLDELAY;DISPLAY6:MOVDPTR,#DAB2;MOVR2,#32;32MOVR3,#80H;YDISP6:MOVCOM,R3;INCR3;YLCALLWRIMOVCOM,#80H;LCALLWRIMOVR1,#16;16*8DISP7:CLRA写入第二字节数据延时子程序以上是写入半角字符地址记数器设为最大值地址0000000写入第一字节数据写入第二字节数据延时子程序以上是从字库中“崔”字处开始显示清屏调用写指令子程序功能设置---8BIT控制界面,绘图显示ON调用写指令子程序延迟39uS功能设置---8BIT控制界面,扩充指令集调用写指令子程序延迟39uS图形数据入口地址行,(双屏结构中上半屏)地址寄存器设置绘图区的Y地址坐标地址加1设置绘图区的X地址坐标列MOVCA,@A+DPTRMOVDAT,ALCALLWRDINCDPTRDJNZDJNZR1,DISP7R2,DISP6;写满全屏的16*8字节X64MOVR2,#32;32行,(双屏结构的下半屏)MOVR3,#80H;Y地址寄存器DISP8:MOVCOM,R3>设置绘图区的Y地址坐标INCR3;Y地址加1LCALLWRIMOVCOM,#88H>设置绘图区的X地址坐标LCALLWRIMOVR1,#16;16*8列DISP9:CLRAMOVCA,@A+DPTRMOVDAT,ALCALLWRDINCDPTRDJNZR1,DISP9DJNZR2,DISP8;写满全屏的16*8字节X64LCALLDELAY1;1S延时子程序INCDPTRDJNZR1,DISP7ADJNZR2,DISP6A>写满全屏的16*8字节X64MOVR2,#32;32行,(双屏结构的下半屏)MOVR3,#80H;Y地址寄存器DISP8A:MOVCOM,R3>设置绘图区的Y地址坐标INCR3;Y地址加1LCALLWRIMOVCOM,#88H>设置绘图区的X地址坐标LCALLWRIMOVR1,#16;16*8列DISP9A:CLRAMOVCA,@A+DPTRMOVDAT,ALCALLWRDINCDPTRDJNZR1,DISP9ADJNZR2,DISP8A;写满全屏的16*8字节X64LCALLDELAY1;1S延时子程序LJMPSTART;从开始处循环显示■***************************************>WRI:PUSHACC以上是写入一幅图画(电子制作实验室)电予制作—实验室»■»,lie-gang.c«aCLRRSSETBRWWRI1:MOVP0,#0FFHSETBEMOVA,P0CLREJBACC.7,WRI1CLRRWMOVP0,COMSETBECLREPOPACCRET■******************************************>WRD:PUSHACCCLRRSSETBRWWRD1:MOVP0,#0FFHSETBEMOVA,P0CLREJBACC.7,WRD1SETBRSCLRRWMOVP0,DATSETBECLREPOPACC以上是写指令子程序RET■******************************************>DELAY:MOVR7,#0FFHDELAY4:MOVR6,#00FHLOOP2:DJNZR6,LOOP2DJNZR7,DELAY4RETDELAY1:MOVR4,#08HDELAY11:MOVR7,#0FFHDELAY41:MOVR6,#0FFHDJNZR6,$DJNZR7,DELAY41DJNZR4,DELAY11RETXX:MOVR5,#0FFHXX1:MOVR6,#0FFHXX2:DJNZR6,XX2DJNZR5,XX1RET■******************************************>DAB2:DB0FFH,0FFH,0FFH,0FFH,0FFH,0FFH,0FFH,0FFH,0FFH,0FFH,0FFH,0FFH,0FFH,0FFH,0FFH,0FFHDB080H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,001HDB080H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,001HDB080H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,001HDB080H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,001HDB080H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,001HDB080H,000H,000H,000H,000H,000H,000H,000H,000H,000H,000H,03FH,0FFH,0F0H,000H,001HDB080H,0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