为简化总线式RS485隔离器的设计,提出基于脉冲变压器的总线式RS485隔离器的技术方案。该方案具有简单实用、无需电源、无需考虑数据流向、在有限范围内波特率自适应、底层用户群体易于理解和掌控等特点。给出了基本实验电路和脉冲变压器的主要设计依据。基于脉冲变压器的总线式RS485隔离器,尤其适合工业环境下半双工的A、B两线制RS485通信网的升级改造,其基本思想也适用于全双工的W、X、Y、Z四线制RS485/RS422通信网。
上传时间: 2013-10-07
上传用户:lizx30340
介绍了一种可调的高压脉冲发生器,该发生器主要由储能电容器组、氢闸流管、电压调节器、保护电路、高压变压器等部件组成。
上传时间: 2013-12-06
上传用户:stella2015
基于高频谐振电路研制的高压脉冲电容器充电电源, 采用IGBT 构成电源的软开关电路和闭环变频控制充电电流的方式。对输出端负载大范围变化引起的谐振频率漂移, 采用微调开关时间, 保证了变换器开关零切换, 显著降低了导通、关断时IGBT 的损耗.
上传时间: 2014-12-24
上传用户:aeiouetla
一颗强劲的CPU可以带着我们在复杂的数码世界里飞速狂奔,一块超酷的显示卡会带着我们在绚丽的3D世界里领略那五光十色的震撼,一块发烧级的声卡更能带领我们进入那美妙的音乐殿堂,一个强劲而稳定工作的电脑电源,则是我们的计算机能出色工作的必要保证。 计算机开关电源工作电压较高,通过的电流较大,又工作在有自感电动势的状态下,因此,使用过程中故障率较高。对于电源产生的故障,不少朋友束手无策,其实,只要有一点 首先,我们要知道计算机开关电源的工作原理。电源先将高电压交流电(220V)通过全桥二极管(图1、2)整流以后成为高电压的脉冲直流电,再经过电容滤波(图3)以后成为高压直流电。电子电路知识,就可以轻松的维修电源。此时,控制电路控制大功率把从次级线圈输出的降压后的高频低压交流电通过整流滤波转换为能使电脑工作的低电压强电流的直流电。其中,控制电路是必不可少的部分。它能有效的监控输出端的电压值,并向功率开关三极管发出信号控制电压上下调整的幅度。在计算机开关电源中,由于电源输入部分工作在高电压、大电流的状态下,故障率最高;其次输出直流部分的整流二极管、保护二极管、大功率开关三极管较易损坏;再就是脉宽调制器TL494的4脚电压是保护电路的关键测试点。通过对多台电源的维修,总结出了对付电源常见故障的方法。
上传时间: 2013-10-19
上传用户:waitingfy
MAX29X是美国MAXIM公司生瓣的8阶开关电容低通滤波器,由于价格便宜、使用方便、设计简单,在通讯、信号自理等领域得到了广泛的应用。本文就其工作原理、电气参数、设计注意事项等问题作了讨论,具有一定的实用参考价值。关键词:开关电容、滤波器、设计 1 引言 开关电容滤波器在近些年得到了迅速的发展,世界上一些知名的半导体厂家相继推出了自己的开头电容滤波器集成电路,使形状电容滤波器的发展上了一个新台阶。 MAXIM公司在模拟器件生产领域颇具影响,它生产MAX291/292/293/294/295/296/297系列8阶低通开关电容滤波器由于使用方便(基本上不需外接元件)、设计简单(频率响应函数是固定的,只需确定其拐角频率即截止频率)、尺寸小(有8-pin DIP封装)等优点,在ADC的反混叠滤波、噪声分析、电源噪声抑制等领域得到了广泛的应用。 MAX219/295为巴特活思(型滤波器,在通频带内,它的增益最稳定,波动小,主要用于仪表测量等要求整个通频带内增益恒定的场合。MAX292/296为贝塞尔(Bessel)滤波器,在通频带内它的群时延时恒定的,相位对频率呈线性关系,因此脉冲信号通过MAX292/296之后尖峰幅度小,稳定速度快。由于脉冲信号通过贝塞尔滤波器之后所有频率分量的延迟时间是相同的,故可保证波形基本不变。关于巴特活和贝塞尔滤波器的特性可能图1来说明。图1的踪迹A为加到滤波器输入端的3kHz的脉冲,这里我们把滤波器的截止频率设为10kHZ。踪迹B通过MAX292/296后的波形。从图中可以看出,由于MAX292/296在通带内具有线性相位特性,输出波形基本上保持了方波形状,只是边沿处变圆了一些。方波通过MAX291/295之后,由于不同频率的信号产生的时延不同,输出波形中就出现了尖峰(overshoot)和铃流(ringing)。 MAX293/294/297为8阶圆型(Elliptic)滤波器,它的滚降速度快,从通频带到阻带的过渡带可以作得很窄。在椭圆型滤波器中,第一个传输零点后输出将随频率的变高而增大,直到第二个零点处。这样几番重复就使阻事宾频响呈现波浪形,如图2所示。阻带从fS起算起,高于频率fS处的增益不会超过fS处的增益。在椭圆型滤波中,通频带内的增益存在一定范围的波动。椭圆型滤波器的一个重要参数就是过渡比。过渡比定义为阻带频率fS与拐角频率(有时也等同为截止频率)由时钟频率确定。时钟既可以是外接的时钟,也可以是自己的内部时钟。使用内部时钟时只需外接一个定时用的电容既可。 在MAX29X系列滤波器集成电路中,除了滤波器电路外还有一个独立的运算放大器(其反相输入端已在内部接地)。用这个运算放大器可以组成配合MAX29X系列滤波器使用后的滤波、反混滤波等连续时间低通滤波器。 下面归纳一下它们的特点: ●全部为8阶低通滤波器。MAX291/MAX295为巴特沃思滤波器;MAX292/296为贝塞尔滤波器;MAX293/294/297为椭圆滤波器。 ●通过调整时钟,截止频率的调整范围为:0.1Hz~25kHz(MAX291/292/293*294);0.1Hz~kHz(MAX295/296/297)。 ●既可用外部时钟也可用内部时钟作为截止频率的控制时钟。 ●时钟频率和截止频率的比率:10∶1(MAX291/292/293/294);50∶1(MAX295/296/297)。 ●既可用单+5V电源供电也可用±5V双电源供电。 ●有一个独立的运算放大器可用于其它应用目的。 ●8-pin DIP、8-pin SO和宽SO-16多种封装。2 管脚排列和主要电气参数 MAX29X系列开头电容滤波器的管脚排列如图3所示。 管脚功能定义如下: CLK:时钟输入。 OP OUT:独立运放的输出端。 OP INT:独立运放的同相输入端。 OUT:滤波器输出。 IN:滤波器输入。 V-:负电源 。双电源供电时搛-2.375~-5.5V之间的电压,单电源供电时V--=-V。 V+:正电源。双电源供电时V+=+2.35~+5.5V,单电源供电时V+=+4.75~+11.0V。 GND:地线。单电源工作时GND端必须用电源电压的一半作偏置电压。 NC:空脚,无连线。 MAX29X的极限电气参数如下: 电源(V+~V-):12V 输入电压(任意脚):V--0.3V≤VIN≤V++0.3V 连续工作时的功耗:8脚塑封DIP:727mW;8脚SO:471mW;16脚宽SO:762mW;8脚瓷封DIP:640mW。 工作温度范围:MAX29-C-:0℃~+70℃;MAX29-E-:-40℃~+85℃;MAX29-MJA:-55℃~+125℃;保存温度范围:-65℃~+160℃;焊接温度(10秒):+300℃; 大多数的形状电容滤波器都采用四节级连结构,每一节包含两个滤波器极点。这种方法的特点就是易于设计。但采用这种方法设计出来的滤波器的特性对所用元件的元件值偏差很敏感。基于以上考虑,MAX29X系列用带有相加和比例功能的开关电容持了梯形无源滤波器,这种方法保持了梯形无源滤波器的优点,在这种结构中每个元件的影响作用是对于整个频率响应曲线的,某元件值的误差将会分散到所有的极点,因此不值像四节级连结构那样对某一个极点特别明显的影响。3 MAX29X的频率特性 MAX29X的频率特性如图4所示。图中的fs都假定为1kHz。4 设计考虑 下面对MAX29X系列形状电容滤波器的使用做些讨论。4.1 时钟信号 MAX29X系列开头电容滤波器推荐使用的时钟信号最高频率为2.5MHz。根据对应的时钟频率和拐角频率的比值,MAX291/MAX292/MAX293/MAX294的拐角频率最高为25kHz.MAX295/MAX296/MAX297的拐角频率最高为50kHz 。 MAX29X系列开关电容滤波器的时钟信号既可幅外部时钟直接驱动也可由内部振荡器产生。使用外部时钟时,无论是采用单电源供电还是双电源供电,CLK可直接和采用+5V供电的CMOS时钟信号发生器的输出相连。通过调整外部时钟的频率,可完成滤波器拐角的实时调整。 当使用内部时钟时,振荡器的频率由接在CLK端上的电容VCOSC决定: fCOSC (kHz)=105/3COSC (pF) 4.2 供电 MAX29X系列开关电容滤波器既可用单电源工作也可用双电源工作。双电源供电时的电源电压范围为±2.375~±5.5V。在实际电路中一般要在正负电源和GND之间接一旁路电容。 当采用单电源供电时,V-端接地,而GND端要通过电阻分压获得一个电压参考,该电压参考的电压值为1/2的电源电压,参见图5。4.3 输入信号幅度范围限制 MAX29X允许的输入信号的最大范围为V--0.3V~V++0.3V。一般情况下在+5V单电源供电时输入信号范围取1V~4V,±5V双电源供电时,输入信号幅度范围取±4V。如果输入信号超过此范围,总谐波失真THD和噪声就大大增加;同样如果输入信号幅度过小(VP-P<1V),也会造成THD和噪声的增加。4.4 独立运算放大器的用法 MAX29X中都设计有一个独立的运算放大器,这个放大器和滤波器的实现无直接关系,用这个放大器可组成一个一阶和二阶滤波器,用于实现MAX29X之前的反混叠滤波功能鄞MAX29X之后的时钟噪声抑制功能。这个运算放大器的反相端已在内部和GND相连。 图6是用该独立运放组成的2阶低通滤波器的电路,它的拐角频率为10kHz,输入阻抗为22Ω,可满足MAX29X形状电容滤波器的最小负载要求(MAX29X的输出负载要求不小于20kΩ)可以通过改变R1、R2、R3、C1、C2的元件值改变拐角频率。具体的元件值和拐角频率的对应关系参见表1。
上传时间: 2013-10-18
上传用户:macarco
数字序列发生器是在数字系统中每个循环周期中,1和0数码按一定的规则顺序排列产生的序列信号电路。移位寄存器中的数据可以在移位脉冲作用下一次逐位右移或左移,数据既可以并行输入、并行输出,也可以串行输入、串行输出,还可以并行输入、串行输出,串行输入、并行输出,十分灵活,用途也很广。本文给定序列循环长度为16,用户自定义输入序列,并可控制其顺序与逆序输出,利用4个74LS194移位寄存器移位输出进行设计,完成状态转移,并将最终结果显示出发光二极管上。
上传时间: 2013-10-29
上传用户:fdfadfs
本书从应用的角度,详细地介绍了MCS-51单片机的硬件结构、指令系统、各种硬件接口设计、各种常用的数据运算和处理程序及接口驱动程序的设计以及MCS-51单片机应用系统的设计,并对MCS-51单片机应用系统设计中的抗干扰技术以及各种新器件也作了详细的介绍。本书突出了选取内容的实用性、典型性。书中的应用实例,大多来自科研工作及教学实践,且经过检验,内容丰富、翔实。 本书可作为工科院校的本科生、研究生、专科生学习MCS-51单片机课程的教材,也可供从事自动控制、智能仪器仪表、测试、机电一体化以及各类从事MCS-51单片机应用的工程技术人员参考。 第一章 单片微型计等机概述 1.1 单片机的历史及发展概况 1.2 单片机的发展趋势 1.3 单片机的应用 1.3.1 单片机的特点 1.3.2 单片机的应用范围 1.4 8位单片机的主要生产厂家和机型 1.5 MCS-51系列单片机 第二章 MCS-51单片机的硬件结构 2.1 MCS-51单片机的硬件结构 2.2 MCS-51的引脚 2.2.1 电源及时钟引脚 2.2.2 控制引脚 2.2.3 I/O口引脚 2.3 MCS-51单片机的中央处理器(CPU) 2.3.1 运算部件 2.3.2 控制部件 2.4 MCS-51存储器的结构 2.4.1 程序存储器 2.4.2 内部数据存储器 2.4.3 特殊功能寄存器(SFR) 2.4.4 位地址空间 2.4.5 外部数据存储器 2.5 I/O端口 2.5.1 I/O口的内部结构 2.5.2 I/O口的读操作 2.5.3 I/O口的写操作及负载能力 2.6 复位电路 2.6.1 复位时各寄存器的状态 2.6.2 复位电路 2.7 时钟电路 2.7.1 内部时钟方式 2.7.2 外部时钟方式 2.7.3 时钟信号的输出 第三章 MCS-51的指令系统 3.1 MCS-51指令系统的寻址方式 3.1.1 寄存器寻址 3.1.2 直接寻址 3.1.3 寄存器间接寻址 3.1.4 立即寻址 3.1.5 基址寄存器加变址寄存器间址寻址 3.2 MCS-51指令系统及一般说明 3.2.1 数据传送类指令 3.2.2 算术操作类指令 3.2.3 逻辑运算指令 3.2.4 控制转移类指令 3.2.5 位操作类指令 第四章 MCS-51的定时器/计数器 4.1 定时器/计数器的结构 4.1.1 工作方式控制寄存器TMOD 4.1.2 定时器/计数器控制寄存器TCON 4.2 定时器/计数器的四种工作方式 4.2.1 方式0 4.2.2 方式1 4.2.3 方式2 4.2.4 方式3 4.3 定时器/计数器对输入信号的要求 4.4 定时器/计数器编程和应用 4.4.1 方式o应用(1ms定时) 4.4.2 方式1应用 4.4.3 方式2计数方式 4.4.4 方式3的应用 4.4.5 定时器溢出同步问题 4.4.6 运行中读定时器/计数器 4.4.7 门控制位GATE的功能和使用方法(以T1为例) 第五章 MCS-51的串行口 5.1 串行口的结构 5.1.1 串行口控制寄存器SCON 5.1.2 特殊功能寄存器PCON 5.2 串行口的工作方式 5.2.1 方式0 5.2.2 方式1 5.2.3 方式2 5.2.4 方式3 5.3 多机通讯 5.4 波特率的制定方法 5.4.1 波特率的定义 5.4.2 定时器T1产生波特率的计算 5.5 串行口的编程和应用 5.5.1 串行口方式1应用编程(双机通讯) 5.5.2 串行口方式2应用编程 5.5.3 串行口方式3应用编程(双机通讯) 第六章 MCS-51的中断系统 6.1 中断请求源 6.2 中断控制 6.2.1 中断屏蔽 6.2.2 中断优先级优 6.3 中断的响应过程 6.4 外部中断的响应时间 6.5 外部中断的方式选择 6.5.1 电平触发方式 6.5.2 边沿触发方式 6.6 多外部中断源系统设计 6.6.1 定时器作为外部中断源的使用方法 6.6.2 中断和查询结合的方法 6.6.3 用优先权编码器扩展外部中断源 第七章 MCS-51单片机扩展存储器的设计 7.1 概述 7.1.1 只读存储器 7.1.2 可读写存储器 7.1.3 不挥发性读写存储器 7.1.4 特殊存储器 7.2 存储器扩展的基本方法 7.2.1 MCS-51单片机对存储器的控制 7.2.2 外扩存储器时应注意的问题 7.3 程序存储器EPROM的扩展 7.3.1 程序存储器的操作时序 7.3.2 常用的EPROM芯片 7.3.3 外部地址锁存器和地址译码器 7.3.4 典型EPROM扩展电路 7.4 静态数据存储的器扩展 7.4.1 外扩数据存储器的操作时序 7.4.2 常用的SRAM芯片 7.4.3 64K字节以内SRAM的扩展 7.4.4 超过64K字节SRAM扩展 7.5 不挥发性读写存储器扩展 7.5.1 EPROM扩展 7.5.2 SRAM掉电保护电路 7.6 特殊存储器扩展 7.6.1 双口RAMIDT7132的扩展 7.6.2 快擦写存储器的扩展 7.6.3 先进先出双端口RAM的扩展 第八章 MCS-51扩展I/O接口的设计 8.1 扩展概述 8.2 MCS-51单片机与可编程并行I/O芯片8255A的接口 8.2.1 8255A芯片介绍 8.2.2 8031单片机同8255A的接口 8.2.3 接口应用举例 8.3 MCS-51与可编程RAM/IO芯片8155H的接口 8.3.1 8155H芯片介绍 8.3.2 8031单片机与8155H的接口及应用 8.4 用MCS-51的串行口扩展并行口 8.4.1 扩展并行输入口 8.4.2 扩展并行输出口 8.5 用74LSTTL电路扩展并行I/O口 8.5.1 用74LS377扩展一个8位并行输出口 8.5.2 用74LS373扩展一个8位并行输入口 8.5.3 MCS-51单片机与总线驱动器的接口 8.6 MCS-51与8253的接口 8.6.1 逻辑结构与操作编址 8.6.2 8253工作方式和控制字定义 8.6.3 8253的工作方式与操作时序 8.6.4 8253的接口和编程实例 第九章 MCS-51与键盘、打印机的接口 9.1 LED显示器接口原理 9.1.1 LED显示器结构 9.1.2 显示器工作原理 9.2 键盘接口原理 9.2.1 键盘工作原理 9.2.2 单片机对非编码键盘的控制方式 9.3 键盘/显示器接口实例 9.3.1 利用8155H芯片实现键盘/显示器接口 9.3.2 利用8031的串行口实现键盘/显示器接口 9.3.3 利用专用键盘/显示器接口芯片8279实现键盘/显示器接口 9.4 MCS-51与液晶显示器(LCD)的接口 9.4.1 LCD的基本结构及工作原理 9.4.2 点阵式液晶显示控制器HD61830介绍 9.5 MCS-51与微型打印机的接口 9.5.1 MCS-51与TPμp-40A/16A微型打印机的接口 9.5.2 MCS-51与GP16微型打印机的接口 9.5.3 MCS-51与PP40绘图打印机的接口 9.6 MCS-51单片机与BCD码拨盘的接口设计 9.6.1 BCD码拨盘 9.6.2 BCD码拨盘与单片机的接口 9.6.3 拨盘输出程序 9.7 MCS-51单片机与CRT的接口 9.7.1 SCIBCRT接口板的主要特点及技术参数 9.7.2 SCIB接口板的工作原理 9.7.3 SCIB与MCS-51单片机的接口 9.7.4 SCIB的CRT显示软件设计方法 第十章 MCS-51与D/A、A/D的接口 10.1 有关DAC及ADC的性能指标和选择要点 10.1.1 性能指标 10.1.2 选择ABC和DAC的要点 10.2 MCS-51与DAC的接口 10.2.1 MCS-51与DAC0832的接口 10.2.2 MCS-51同DAC1020及DAC1220的接口 10.2.3 MCS-51同串行输入的DAC芯片AD7543的接口 10.3 MCS-51与ADC的接口 10.3.1 MCS-51与5G14433(双积分型)的接口 10.3.2 MCS-51与ICL7135(双积分型)的接口 10.3.3 MCS-51与ICL7109(双积分型)的接口 10.3.4 MCS-51与ADC0809(逐次逼近型)的接口 10.3.5 8031AD574(逐次逼近型)的接口 10.4 V/F转换器接口技术 10.4.1 V/F转换器实现A/D转换的方法 10.4.2 常用V/F转换器LMX31简介 10.4.3 V/F转换器与MCS-51单片机接口 10.4.4 LM331应用举例 第十一章 标准串行接口及应用 11.1 概述 11.2 串行通讯的接口标准 11.2.1 RS-232C接口 11.2.2 RS-422A接口 11.2.3 RS-485接口 11.2.4 各种串行接口性能比较 11.3 双机串行通讯技术 11.3.1 单片机双机通讯技术 11.3.2 PC机与8031单片机双机通讯技术 11.4 多机串行通讯技术 11.4.1 单片机多机通讯技术 11.4.2 IBM-PC机与单片机多机通讯技术 11.5 串行通讯中的波特率设置技术 11.5.1 IBM-PC/XT系统中波特率的产生 11.5.2 MCS-51单片机串行通讯波特率的确定 11.5.3 波特率相对误差范围的确定方法 11.5.4 SMOD位对波特率的影响 第十二章 MCS-51的功率接口 12.1 常用功率器件 12.1.1 晶闸管 12.1.2 固态继电器 12.1.3 功率晶体管 12.1.4 功率场效应晶体管 12.2 开关型功率接口 12.2.1 光电耦合器驱动接口 12.2.2 继电器型驱动接口 12.2.3 晶闸管及脉冲变压器驱动接口 第十三章 MCS-51单片机与日历的接口设计 13.1 概述 13.2 MCS-51单片机与实时日历时钟芯片MSM5832的接口设计 13.2.1 MSM5832性能及引脚说明 13.2.2 MSM5832时序分析 13.2.3 8031单片机与MSM5832的接口设计 13.3 MCS-51单片机与实时日历时钟芯片MC146818的接口设计 13.3.1 MC146818性能及引脚说明 13.3.2 MC146818芯片地址分配及各单元的编程 13.3.3 MC146818的中断 13.3.4 8031单片机与MC146818的接口电路设计 13.3.5 8031单片机与MC146818的接口软件设计 第十四章 MCS-51程序设计及实用子程序 14.1 查表程序设计 14.2 散转程序设计 14.2.1 使用转移指令表的散转程序 14.2.2 使用地地址偏移量表的散转程序 14.2.3 使用转向地址表的散转程序 14.2.4 利用RET指令实现的散转程序 14.3 循环程序设计 14.3.1 单循环 14.3.2 多重循环 14.4 定点数运算程序设计 14.4.1 定点数的表示方法 14.4.2 定点数加减运算 14.4.3 定点数乘法运算 14.4.4 定点数除法 14.5 浮点数运算程序设计 14.5.1 浮点数的表示 14.5.2 浮点数的加减法运算 14.5.3 浮点数乘除法运算 14.5.4 定点数与浮点数的转换 14.6 码制转换 ……
上传时间: 2013-11-06
上传用户:xuanjie
带中文字库的128X64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128×64, 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8×4行16×16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方案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:128×64点 内置汉字字库,提供8192个16×16点阵汉字(简繁体可选) 内置 128个16×8点阵字符 2MHZ时钟频率 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,简化软件设计 工作温度: 0℃ - +55℃ ,存储温度: -20℃ - +60℃ 12864(带字库汉字显示演示程序) ;*************************************************************************** ;* sxj1974@163.com (51c51 test web) www.8951.com * ;* Create by :石学军 www.51c51.com 更多例程请登陆网站 * ;*************************************************************************** RS EQU P2.0 RW EQU P2.1 E EQU P2.2 PSB EQU P2.3 RST EQU P2.5 ;----------------------------------------------- LCD_X EQU 30H LCD_Y EQU 31H COUNT EQU 32H COUNT1 EQU 33H COUNT2 EQU 34H COUNT3 EQU 35H ;----------------------------------------------- LCD_DATA EQU 36H LCD_DATA1 EQU 37H LCD_DATA2 EQU 38H STORE EQU 39H ;----------------------------------------------- ORG 0000H LJMP MAIN ORG 0100H ;----------------------------------------------- MAIN: MOV SP,#5FH CLR RST ;复位 LCALL DELAY4 SETB RST NOP SETB PSB ;通讯方式为8位数据并口 ;********************初始化********************** LGS0: MOV A,#34H ;34H--扩充指令操作 LCALL SEND_I MOV A,#30H ;30H--基本指令操作 LCALL SEND_I MOV A,#01H ;清除显示 LCALL SEND_I MOV A,#06H ;指定在资料写入或读取时,光标的移动方向 LCALL SEND_I ;DDRAM 的地址计数器(AC)加1 MOV A,#0CH ;开显示,关光标,不闪烁 LCALL SEND_I ;=============================================== TU_PLAY1: MOV DPTR,#TU_TAB1 ;显示图形 LCALL PHO_DISP LCALL DELAY3 ;================================================= ;;显示汉字和字符 ;加入80ms的延时,使你能够看清楚显示的过程 ;根据汉字显示坐标分段写入(顺序写入) ;================================================= HAN_WR2: LCALL CLEAR_P HAN_WR2A: MOV DPTR,#TAB1A ;显示汉字和字符 MOV COUNT,#10H ;地址计数器设为16。 MOV A,#80H ;第一行起始地址 LCALL SEND_I LCALL QUSHU HAN_WR2B: MOV DPTR,#TAB1B ;显示汉字和字符 MOV COUNT,#10H ;地址计数器设为16。 MOV A,#90H ;第二行起始地址 LCALL SEND_I LCALL QUSHU HAN_WR2C: MOV DPTR,#TAB1C ;显示汉字和字符 MOV COUNT,#10H ;地址计数器设为16。 MOV A,#88H ;第三行起始地址 LCALL SEND_I LCALL QUSHU HAN_WR2D: MOV DPTR,#TAB1D ;显示汉字和字符 MOV COUNT,#10H ;地址计数器设为16。 MOV A,#98H ;第四行起始地址 LCALL SEND_I LCALL QUSHU LCALL DELAY3 LCALL FLASH LCALL CLEAR_P JMP TU_PLAY2 ;---------------------------------------------- ;TU_PLAY1: MOV DPTR,#TU_TAB1 ;显示图形 LCALL PHO_DISP LCALL DELAY3 ;---------------------------------------------- TU_PLAY2: MOV DPTR,#TU_TAB2 ;显示图形 LCALL PHO_DISP LCALL DELAY3 ;---------------------------------------------- TU_PLAY3: MOV DPTR,#TU_TAB4 ;显示图形 LCALL PHO_DISP LCALL DELAY3 ;----------------------------------------------- ;显示点阵 ;----------------------------------------------- LATPLAY1: MOV A,#01H ;清屏 LCALL SEND_I MOV LCD_DATA1,#0CCH ;显示点阵 MOV LCD_DATA2,#0CCH LCALL LAT_DISP LCALL DELAY3 LCALL CLEAR_P KU_PLAY2: LJMP TU_PLAY1 ;=============================================== ;全屏显示图形子程序 ;=============================================== PHO_DISP: MOV COUNT3,#02H MOV LCD_X,#80H PHO_DISP1: MOV LCD_Y,#80H MOV COUNT2,#20H PHO_DISP2: MOV COUNT1,#10H LCALL WR_ZB PHO_DISP3: CLR A MOVC A,@A+DPTR LCALL SEND_D INC DPTR DJNZ COUNT1,PHO_DISP3 INC LCD_Y DJNZ COUNT2,PHO_DISP2 MOV LCD_X,#88H DJNZ COUNT3,PHO_DISP1 MOV A,#36H LCALL SEND_I MOV A,#30H LCALL SEND_I RET ;---------------------------------------------- CLRRAM: MOV LCD_DATA1,#00H ;GDRAM写0子程序 MOV LCD_DATA2,#00H LCALL LAT_DISP RET ;============================================== ;显示点阵子程序 ;============================================== LAT_DISP: MOV COUNT3,#02H MOV LCD_X,#80H LAT_DISP1: MOV LCD_Y,#80H CLR F0 MOV COUNT2,#20H LAT_DISP2: MOV COUNT1,#10H LCALL WR_ZB LAT_DISP3: JB F0,LAT_DISP32 MOV LCD_DATA,LCD_DATA1 AJMP LAT_DISP31 LAT_DISP32: MOV LCD_DATA,LCD_DATA2 LAT_DISP31: MOV A,LCD_DATA LCALL SEND_D DJNZ COUNT1,LAT_DISP31 INC LCD_Y CPL F0 DJNZ COUNT2,LAT_DISP2 MOV LCD_X,#88H DJNZ COUNT3,LAT_DISP1 MOV A,#36H LCALL SEND_I MOV A,#30H LCALL SEND_I RET ;--------------------------------------------- WR_ZB: MOV A,#34H LCALL SEND_I MOV A,LCD_Y LCALL SEND_I MOV A,LCD_X LCALL SEND_I MOV A,#30H LCALL SEND_I RET ;=============================================== FLASH: MOV A,#08H ;关闭显示 LCALL SEND_I LCALL DELAY5 MOV A,#0CH ;开显示,关光标,不闪烁 LCALL SEND_I LCALL DELAY5 MOV A,#08H ;关闭显示 LCALL SEND_I LCALL DELAY5 MOV A,#0CH ;开显示,关光标,不闪烁 LCALL SEND_I LCALL DELAY5 MOV A,#08H ;关闭显示 LCALL SEND_I LCALL DELAY5 RET ;================================================== ;清屏 ;================================================== CLEAR_P: MOV A,#01H ;清屏 LCALL SEND_I MOV A,#34H LCALL SEND_I MOV A,#30H LCALL SEND_I RET ;================================================== ;查表取数据送显示 ;================================================== QUSHU: CLR A MOVC A,@A+DPTR ;查表取数据 LCALL SEND_D ;送显示 INC DPTR LCALL DELAY4 ;延时80ms, DJNZ COUNT,QUSHU RET ;=============================================== ;写数据子程序 ;RS=1,RW=0,E=高脉冲,D0-D7=数据 ;=============================================== SEND_D: LCALL CHK_BUSY ;写数据子程序 SETB RS CLR RW MOV P0,A SETB E NOP NOP CLR E RET ;=============================================== ;写指令子程序 ;RS=0,RW=0,E=高脉冲,D0-D7=指令码 ;=============================================== SEND_I: LCALL CHK_BUSY CLR RS CLR RW MOV P0,A SETB E NOP NOP CLR E RET ;================================================ ;读数据子程序 ;RS=1,RW=1,E=H,D0-D7=数据 ;================================================ READ_D: LCALL CHK_BUSY ;读数据子程序 SETB RS SETB RW SETB E NOP MOV A,P0 CLR E MOV STORE,A RET ;================================================ ;;测忙碌子程序 ;RS=0,RW=1,E=H,D0-D7=状态字 ;================================================ CHK_BUSY: MOV P0,#0FFH ;测忙碌子程序 CLR RS SETB RW SETB E JB P0.7,$ CLR E RET ;================================================ ;延时子程序 DELAY3: MOV R5,#16H DEL31: MOV R6,#100 DEL32: MOV R7,#0FFH DEL33: DJNZ R7,DEL33 DJNZ R6,DEL32 DJNZ R5,DEL31 RET DELAY2: MOV R6,#0CH DEL21: MOV R7,#18H DEL22: DJNZ R7,DEL22 DJNZ R6,DEL21 RET DELAY1: MOV R6,#06H DEL11: MOV R7,#08H DEL12: DJNZ R7,DEL12 DJNZ R6,DEL11 RET DELAY4: MOV R6,#100 DEL41: MOV R7,#200 DEL42: DJNZ R7,DEL42 DJNZ R6,DEL41 RET DELAY5: MOV R5,#05H DEL51: MOV R6,#100 DEL52: MOV R7,#0FFH DEL53: DJNZ R7,DEL53 DJNZ R6,DEL52 DJNZ R5,DEL51 RET ;*********************************************** TAB1: TAB1A: DB ' 51单片机学习网(深圳学林电子有限公司) ' ;显示在第一行 TAB1C: DB '自学单片机第一站' ;显示在第三行 TAB1B: DB ' WWW.8951.COM ' ;显示在第二行 TAB1D: DB 'TEL 755-89956892' ;显示在第四行 ;*-------------------------------------------------------------------- * ;* Bitmap点阵数据表 * ;* 图片: E:\图形8.bmp,横向取模左高位,数据排列:从左到右从上到下 * ;* 图片尺寸: 128 * 64 * ;*-------------------------------------------------------------------- * TU_TAB1: ; 数据表 db 0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh db 80h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 00h, 00h, 00h, 3Ch, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 00h, 00h, 00h, 7Fh, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 00h, 00h, 00h,0FFh,0C0h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 00h, 00h, 01h,0BFh,0F8h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 00h, 00h, 01h,0FFh,0DCh, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 00h, 00h, 01h, 1Fh,0FEh, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 00h, 00h, 01h,0DFh,0FFh, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 00h, 00h, 00h,0FFh,0FFh, 19h, 8Ch, 03h, 06h, 00h, 18h, 00h,0FFh,0E1h db 80h, 00h, 00h, 00h, 00h, 3Fh,0FFh, 0Ch,0CCh, 03h, 06h, 00h, 18h, 00h,0FFh,0E1h db 80h, 00h, 00h, 00h, 00h, 7Fh,0FFh, 04h, 58h, 03h, 06h, 01h,0FFh,0C0h, 00h,0C1h db 80h, 00h, 00h, 00h, 00h, 7Fh,0DAh, 3Fh,0FEh, 0Fh,0DFh,0C1h,0FFh,0C0h, 01h, 81h db 80h, 00h, 00h, 00h, 00h, 7Fh, 8Ch, 3Fh,0FEh, 0Fh,0DFh,0C1h, 98h,0C0h, 07h, 01h db 80h, 00h, 00h, 00h, 00h, 7Fh,0B8h, 30h, 06h, 03h, 06h, 01h, 98h,0C0h, 06h, 01h db 80h, 00h, 00h, 00h, 00h,0FEh,0C0h, 0Fh,0F8h, 03h, 8Eh, 01h,0FFh,0C3h,0FFh,0F9h db 80h, 00h, 00h, 00h, 00h, 7Eh, 00h, 0Fh,0F8h, 07h,0CFh, 01h, 98h,0C3h,0FFh,0F9h db 80h, 00h, 00h, 00h, 00h, 7Fh, 00h, 00h, 60h, 07h, 5Fh, 81h, 98h,0C0h, 06h, 01h db 80h, 00h, 00h, 00h, 00h, 7Fh, 80h, 3Fh,0FEh, 0Fh, 36h,0C1h,0FFh,0C0h, 06h, 01h db 80h, 00h, 00h, 00h, 00h, 1Fh, 80h,0BFh,0FEh, 0Bh, 36h, 61h,0FFh,0C0h, 06h, 01h db 80h, 00h, 00h, 00h, 00h, 1Fh,0C7h, 00h,0C0h, 03h, 66h, 21h, 98h, 30h, 06h, 01h db 80h, 00h, 00h, 00h, 15h, 5Fh,0C7h, 00h,0C0h, 03h, 06h, 00h, 18h, 30h, 06h, 01h db 80h, 00h, 02h,0E0h, 06h, 7Fh,0CEh, 03h,0C0h, 03h, 06h, 00h, 1Fh,0F0h, 1Eh, 01h db 80h, 00h, 04h, 54h, 4Fh,0FFh,0FCh, 01h, 80h, 03h, 06h, 00h, 0Fh,0E0h, 0Ch, 01h db 80h, 00h, 03h,0FDh, 3Fh,0FFh,0D9h,0C0h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 1Dh,0FFh,0FFh,0FFh, 87h, 80h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 2Bh,0FFh,0F8h, 7Fh, 06h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 3Fh,0BFh,0F8h, 09h, 0Fh, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 1Fh, 9Fh,0F0h, 00h,0BCh, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 9Dh,0FEh, 1Fh, 8Fh,0F0h, 00h,0F8h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 9Fh,0FCh, 17h, 8Fh,0F0h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 81h,0FFh,0CFh, 9Fh,0E0h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 82h,0FFh,0FFh, 9Ch, 80h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 81h, 7Fh,0FFh,0FCh, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 6Fh,0FEh, 30h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 03h,0FCh, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 34h, 14h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 0Eh, 18h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 02h, 30h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 01h,0E0h, 00h, 00h, 7Fh, 04h, 00h, 3Fh, 82h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 00h, 00h, 00h, 00h, 7Fh, 0Ch, 00h, 3Fh, 86h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 00h, 00h, 00h, 00h, 7Fh, 1Ch, 00h, 3Fh, 8Eh, 00h, 00h, 00h, 00h, 01h db 83h,0BBh, 9Dh,0DCh,0EEh,0E0h, 70h, 7Ch, 38h, 38h, 3Eh, 00h,0E0h, 38h, 3Bh, 31h db 83h,0BBh, 9Dh,0DCh,0EEh,0E0h, 70h, 7Ch, 3Ch, 38h, 3Eh, 00h,0F0h, 7Ch, 3Fh,0F9h db 83h,0BBh, 9Dh,0DCh,0EEh,0E0h, 76h, 1Ch, 7Eh, 3Bh, 0Eh, 01h,0F8h,0FEh, 3Fh,0F9h db 83h,0BBh, 9Dh,0DCh,0EEh,0E0h, 7Fh, 1Ch, 76h, 3Fh, 8Eh, 01h,0D8h,0EEh, 3Bh,0B9h db 83h,0BBh, 9Dh,0DCh,0EEh,0E0h, 7Fh, 1Ch, 76h, 3Fh, 8Eh, 01h,0D8h,0EEh, 3Bh,0B9h db 83h,0BBh, 9Dh,0DCh,0EEh,0E0h, 77h, 1Ch, 76h, 3Bh, 8Eh, 01h,0D8h,0EEh, 3Bh,0B9h db 81h,0BBh, 0Dh,0D8h, 6Eh,0C0h, 07h, 1Ch, 70h, 03h, 8Eh, 01h,0C0h,0EEh, 3Bh,0B9h db 81h,0ABh, 0Dh, 58h, 6Ah,0C0h, 07h, 1Ch, 70h, 03h, 8Eh, 01h,0C0h,0EEh, 3Bh,0B9h db 81h,0ABh, 0Dh, 58h, 6Ah,0C0h, 77h, 1Ch, 70h, 3Bh, 8Eh, 01h,0C0h,0EEh, 3Bh,0B9h db 81h,0ABh, 0Dh, 58h, 6Ah,0C0h, 77h, 1Ch, 76h, 3Bh, 8Eh, 01h,0D8h,0EEh, 3Bh,0B9h db 81h,0EFh, 0Fh, 78h, 7Bh,0C0h, 77h, 1Ch, 76h, 3Bh, 8Eh, 01h,0D8h,0EEh, 3Bh,0B9h db 81h,0EFh, 0Fh, 78h, 7Bh,0DCh, 77h, 1Ch, 76h, 3Bh, 8Eh, 39h,0D8h,0EEh, 3Bh,0B9h db 81h,0EFh, 0Fh, 78h, 7Bh,0DCh, 7Fh, 1Ch, 7Eh, 3Fh, 8Eh, 39h,0F8h,0FEh, 3Bh,0B9h db 81h,0EFh, 0Fh, 78h, 7Bh,0DCh, 3Eh, 1Ch, 3Ch, 1Fh, 0Eh, 38h,0F0h, 7Ch, 3Bh,0B9h db 81h,0EFh, 0Fh, 78h, 7Bh,0DCh, 1Ch, 1Ch, 3Ch, 0Eh, 0Eh, 38h,0F0h, 78h, 3Bh,0B9h db 80h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh ;*-------------------------------------------------------------------- * ;* Bitmap点阵数据表 * ;* 图片: E:\图形12.bmp,横向取模左高位,数据排列:从左到右从上到下 * ;* 图片尺寸: 128 * 64 * ;*-------------------------------------------------------------------- * TU_TAB2: ; 数据表 db 40h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 03h, 65h,0E8h, 80h, 00h, 01h db 9Ah,0D6h,0B4h, 42h, 00h, 00h, 00h, 00h, 00h, 00h, 34h,0DAh,0D0h, 00h, 00h, 01h db0A4h, 00h, 02h, 10h, 6Bh, 30h, 00h, 00h, 00h, 00h, 8Bh,0FFh, 30h, 00h, 00h, 01h db 42h,0D6h,0B0h, 42h, 80h, 00h, 00h, 00h, 00h, 16h, 77h,0FEh,0C0h, 00h, 00h, 01h db 42h,0D6h,0B0h, 42h, 80h, 00h, 00h, 00h, 00h, 16h, 77h,0FEh,0C0h, 00h, 00h, 01h db0B9h, 20h, 04h, 00h, 00h, 02h, 10h, 00h, 00h, 00h,0BCh,0BCh, 00h, 00h, 00h, 01h db 46h,0D6h,0B1h,0ACh, 6Bh, 30h, 00h, 00h, 02h, 29h,0CBh, 40h, 00h, 00h, 00h, 01h db0FFh,0F9h, 04h, 01h, 00h, 00h, 00h, 00h, 01h, 16h,0B4h,0A0h, 00h, 00h, 00h, 01h db0FFh,0FFh,0F2h, 50h, 00h, 40h, 00h, 00h, 00h, 29h, 4Bh, 00h, 00h, 00h, 00h, 01h db0FFh,0FFh,0F2h, 50h, 00h, 40h, 00h, 00h, 00h, 29h, 4Bh, 00h, 00h, 00h, 00h, 01h db0FFh,0FFh,0BDh, 82h, 94h, 00h, 40h, 00h, 00h,0C9h, 30h, 02h, 00h, 00h, 00h, 01h db0FFh,0FFh,0FBh,0B0h, 00h, 08h, 00h, 00h, 05h, 16h, 44h, 40h, 00h, 00h, 00h, 01h db0FFh,0FFh,0FFh,0EFh, 90h, 40h, 00h, 00h, 00h, 21h, 00h, 04h,0C8h, 30h, 00h, 01h db0A5h,0FFh,0FFh,0FDh, 6Bh, 00h, 00h, 00h, 00h,0C8h, 00h, 99h, 16h,0FAh, 40h, 01h db0A5h,0FFh,0FFh,0FDh, 6Bh, 00h, 00h, 00h, 00h,0C8h, 00h, 99h, 16h,0FAh, 40h, 01h db 82h, 2Fh,0FFh,0FFh,0E8h, 84h, 00h, 00h, 00h, 00h, 08h, 00h,0DFh,0FFh,0ECh, 01h db 24h,0C1h, 7Fh,0FFh,0F4h, 30h, 00h, 00h, 00h, 00h, 00h,0A7h,0FFh,0FFh,0FCh, 01h db 42h, 28h, 05h,0BFh,0FBh, 80h, 00h, 00h, 00h, 00h, 04h, 1Bh,0FFh,0FFh,0FFh, 81h db 98h,0C1h, 4Ah, 53h,0ECh, 48h, 00h, 00h, 00h, 00h, 40h, 7Fh,0FFh,0FFh,0FFh,0E1h db 98h,0C1h, 4Ah, 53h,0ECh, 48h, 00h, 00h, 00h, 00h, 40h, 7Fh,0FFh,0FFh,0FFh,0E1h db 42h, 28h, 00h, 0Ch, 77h, 82h, 00h, 00h, 00h, 00h, 33h,0BFh,0FFh,0FFh,0FFh, 89h db 18h,0C1h, 4Ah, 51h, 9Bh, 74h, 00h, 00h, 00h, 00h, 04h,0FFh, 3Fh,0FFh,0DFh,0F1h db0C2h, 28h, 00h, 0Ch, 04h, 80h, 00h, 00h, 00h, 00h, 40h,0FEh, 1Fh,0F9h,0C3h,0F9h db 1Ah,0D6h,0B5h,0A1h, 6Bh, 75h, 80h, 00h, 00h, 00h, 8Fh,0FCh, 3Fh,0F2h, 0Fh, 1Fh db 1Ah,0D6h,0B5h,0A1h, 6Bh, 75h, 80h, 00h, 00h, 00h, 8Fh,0FCh, 3Fh,0F2h, 0Fh, 1Fh db0C5h, 29h, 79h, 8Ch, 00h, 88h, 00h, 00h, 00h, 00h, 03h,0F8h, 1Fh,0C8h, 52h, 81h db 22h,0FFh,0FFh,0F2h, 6Bh, 35h, 80h, 00h, 00h, 00h, 37h,0C2h, 3Fh,0FBh,0FCh, 09h db 9Ah,0FFh,0FFh,0FFh, 00h, 48h, 00h, 00h, 00h, 00h, 07h,0D8h, 1Fh,0FFh,0E3h, 81h db 9Ah,0FFh,0FFh,0FFh, 00h, 48h, 00h, 00h, 00h, 00h, 07h,0D8h, 1Fh,0FFh,0E3h, 81h db 47h,0FFh,0FFh,0FFh,0F3h, 35h, 80h, 00h, 00h, 00h, 8Fh,0C1h, 0Fh,0FFh,0ACh, 01h db0B9h,0FFh,0FFh,0FFh,0FCh, 4Ah, 20h, 00h, 00h, 00h, 0Fh,0A4h, 07h,0FEh, 40h, 01h db 5Fh,0FFh,0C7h,0FFh,0FCh,0B5h, 80h, 00h, 00h, 00h, 4Fh,0DAh,0FFh,0F8h, 00h, 01h db0A7h,0FFh,0B7h,0FFh,0FFh, 8Ah, 20h, 00h, 00h, 00h, 0Fh,0FFh,0EFh, 40h, 00h, 01h db0A7h,0FFh,0B7h,0FFh,0FFh, 8Ah, 20h, 00h, 00h, 00h, 0Fh,0FFh,0EFh, 40h, 00h, 01h db 7Fh,0FFh, 47h,0FDh, 7Fh,0C5h, 80h, 00h, 00h, 00h, 3Fh,0DAh,0D0h, 00h, 00h, 01h db0A7h,0FEh, 37h,0FFh, 7Ch,0FAh, 50h, 00h, 00h, 00h, 0Ch,0A4h, 08h, 00h, 00h, 01h db0DFh,0FEh, 43h,0FFh,0F8h,0C1h, 80h, 00h, 00h, 00h, 48h, 01h, 00h, 00h, 00h, 01h db 27h,0FFh, 4Bh,0FFh,0FFh,0FAh, 2Ch, 00h, 00h, 00h, 03h, 58h, 20h, 00h, 00h, 01h db 27h,0FFh, 4Bh,0FFh,0FFh,0FAh, 2Ch, 00h, 00h, 00h, 03h, 58h, 20h, 00h, 00h, 01h db 9Bh,0FFh,0C3h,0FFh,0FFh,0F1h,0C0h, 00h, 00h, 00h, 08h, 00h, 00h, 00h, 00h, 01h db 64h, 3Fh,0FDh,0FFh, 6Bh, 7Ch, 10h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 03h,0D7h,0FFh,0FDh, 10h, 01h,0A0h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db0D8h, 29h, 4Fh,0A2h, 80h,0B5h, 90h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db0D8h, 29h, 4Fh,0A2h, 80h,0B5h, 90h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 05h, 10h,0B0h, 4Ch, 0Bh, 08h, 40h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db0A0h,0C9h, 0Ah, 00h, 00h, 42h, 10h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 04h, 10h, 40h, 21h, 64h, 09h,0A0h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db0A2h,0C1h, 35h, 8Ch, 00h, 44h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db0A2h,0C1h, 35h, 8Ch, 00h, 44h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 00h, 16h, 00h, 21h, 14h, 09h,0A0h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db0A5h, 00h,0B5h, 80h, 83h, 44h, 0Ch, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 00h, 26h, 00h, 12h, 08h, 09h,0A0h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db0DAh, 00h,0B4h, 40h, 60h, 44h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db0DAh, 00h,0B4h, 40h, 60h, 44h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h,0C8h, 00h, 00h, 04h, 01h,0A0h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db0A2h, 20h, 89h, 91h, 10h, 8Ah, 10h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 44h, 06h, 00h, 00h, 00h, 30h, 40h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 44h, 06h, 00h, 00h, 00h, 30h, 40h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh ;*-------------------------------------------------------------------- * ;*-------------------------------------------------------------------- * ;* Bitmap点阵数据表 * ;* 图片: E:\图形13.bmp,横向取模左高位,数据排列:从左到右从上到下 * ;* 图片尺寸: 128 * 64 * ;*-------------------------------------------------------------------- * TU_TAB4: ; 漂亮姑娘看过来 db 0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh db 80h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 80h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h db 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h db 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h db 00h, 00h, 00h, 00h, 00h, 00h, 00h, 11h,0FFh, 80h, 40h, 08h, 30h, 10h, 20h, 00h db 00h, 00h, 00h, 00h, 00h, 00h, 00h, 0Ch, 68h, 3Fh,0FFh, 08h, 30h, 11h,0F8h, 00h db 00h, 00h, 00h, 00h, 00h, 00h, 00h, 0Ch, 68h, 3Fh,0FFh, 08h, 30h, 11h,0F8h, 00h db 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h,0FFh, 00h, 00h, 7Fh,0FEh, 7Dh, 08h, 00h db 00h, 00h, 00h, 00h, 00h, 00h, 00h, 11h, 6Bh, 07h,0FCh, 16h, 30h, 2Dh,0F8h, 00h db 00h, 00h, 00h, 00h, 00h, 00h, 00h, 0Dh,0FFh, 04h, 0Ch, 16h, 30h, 2Dh, 08h, 00h db 00h, 00h, 00h, 00h, 00h, 00h, 00h, 0Ch, 00h, 3Fh,0FFh, 16h, 30h, 2Dh,0F8h, 00h db 00h, 00h, 00h, 00h, 00h, 00h, 00h, 0Ch, 00h, 3Fh,0FFh, 16h, 30h, 2Dh,0F8h, 00h db 00h, 00h, 00h, 00h, 00h, 00h, 00h, 0Ch,0FFh, 30h, 01h, 66h,0FEh, 2Dh, 26h, 00h db 00h, 00h, 00h, 00h, 00h, 00h, 00h, 1Ch, 00h, 03h,0F0h, 76h, 82h, 2Dh, 28h, 00h db 00h, 00h, 00h, 00h, 00h, 00h, 00h, 0Dh,0FFh, 82h, 11h, 08h, 82h, 11h, 10h, 00h db 00h, 00h, 00h, 00h, 00h, 00h, 00h, 0Ch, 8Bh, 04h, 11h, 16h, 82h, 2Dh, 28h, 00h db 00h, 00h, 00h, 00h, 00h, 00h, 00h, 0Ch, 8Bh, 04h, 11h, 16h, 82h, 2Dh, 28h, 00h db 00h, 00h, 00h, 00h, 00h, 00h, 00h, 0Dh, 18h,0B8h, 1Fh, 60h,0FEh, 41h,0C6h, 00h db 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h db 00h, 07h, 8Fh,0FFh, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h db 00h, 08h, 70h, 40h,0EFh, 80h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h db 00h, 08h, 70h, 40h,0EFh, 80h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h db 00h, 10h, 00h, 80h, 10h, 60h, 00h, 0Fh,0FFh, 30h, 0Ch, 00h, 80h, 00h, 00h, 00h db 00h, 20h, 18h, 38h, 20h, 60h, 00h, 00h, 60h, 08h, 0Ch, 1Fh,0FCh, 1Ch, 00h, 00h db 00h,0C0h, 64h, 45h, 00h, 60h, 00h, 03h,0FCh, 0Bh,0FFh, 00h, 80h, 3Eh, 00h, 00h db 00h,0C1h, 00h, 01h, 00h, 10h, 00h, 00h, 80h, 00h, 0Ch, 08h, 88h, 3Eh, 00h, 00h db 00h,0C1h, 00h, 01h, 00h, 10h, 00h, 00h, 80h, 00h, 0Ch, 08h, 88h, 3Eh, 00h, 00h db 01h, 01h, 00h, 00h,0C0h, 10h, 00h, 1Fh,0FFh,0BDh, 8Ch, 06h,0B0h, 3Eh, 00h, 00h db 02h, 0Eh, 18h, 1Ch,0C0h, 10h, 00h, 01h, 00h, 04h, 4Ch, 7Fh,0FEh, 1Ch, 00h, 00h db 02h, 16h, 64h, 22h, 20h, 10h, 00h, 03h,0FCh, 04h, 4Ch, 01h,0C0h, 1Ch, 00h, 00h db 02h, 16h, 64h, 22h, 20h, 10h, 00h, 03h,0FCh, 04h, 4Ch, 01h,0C0h, 1Ch, 00h, 00h db 04h,0E8h, 83h, 41h, 1Ch, 08h, 00h, 0Dh, 04h, 04h, 0Ch, 06h,0B0h, 00h, 00h, 00h db 07h, 10h, 8Fh, 47h, 03h, 88h, 00h, 11h,0FCh, 04h, 3Ch, 08h, 88h, 1Ch, 00h, 00h db 00h, 20h, 6Ch, 26h, 01h, 78h, 00h, 01h, 04h, 0Ah, 00h, 70h, 86h, 1Ch, 00h, 00h db 00h,0C0h, 18h, 1Ch, 00h, 80h, 00h, 01h,0FCh, 31h,0FFh, 00h, 80h, 00h, 00h, 00h db 00h,0C0h, 18h, 1Ch, 00h, 80h, 00h, 01h,0FCh, 31h,0FFh, 00h, 80h, 00h, 00h, 00h db 00h,0C1h, 87h, 80h, 00h, 80h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h db 01h, 06h, 78h, 3Ch, 20h, 60h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h db 01h, 08h, 07h,0C2h,0C0h, 60h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h db 01h, 08h, 00h, 01h,0C0h, 60h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h db 01h, 08h, 00h, 01h,0C0h, 60h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h db 01h, 08h, 18h, 01h,0C0h, 60h, 00h, 00h, 00h,0F1h,0F3h, 87h,0C0h, 00h, 00h, 00h db 00h,0C6h, 18h,0C2h, 20h, 80h, 00h, 00h, 03h, 0Eh, 1Ch, 78h, 70h, 00h, 00h, 00h db 00h,0C1h, 00h,0C2h, 00h, 80h, 00h, 00h, 04h, 44h, 11h, 10h, 38h, 00h, 00h, 00h db 00h, 26h,0E0h, 04h, 01h, 00h, 00h, 00h, 04h, 80h, 12h, 00h, 38h, 00h, 00h, 00h db 00h, 26h,0E0h, 04h, 01h, 00h, 00h, 00h, 04h, 80h, 12h, 00h, 38h, 00h, 00h, 00h db 00h, 11h, 18h, 38h, 03h, 00h, 00h, 00h, 04h, 80h, 12h, 00h, 38h, 00h, 00h, 00h db 00h, 0Eh, 87h,0C2h, 1Ch, 00h, 00h, 00h, 04h, 00h, 10h, 00h, 38h, 00h, 00h, 00h db 00h, 01h,0E0h, 04h,0E0h, 00h, 00h, 00h, 03h, 00h, 1Ch, 00h, 70h, 00h, 00h, 00h db 00h, 1Eh, 18h, 3Fh, 1Eh, 00h, 00h, 00h, 00h, 80h, 32h, 00h,0C0h, 00h, 00h, 00h db 00h, 1Eh, 18h, 3Fh, 1Eh, 00h, 00h, 00h, 00h, 80h, 32h, 00h,0C0h, 00h, 00h, 00h db 00h, 38h, 07h,0C0h, 0Fh, 00h, 00h, 00h, 00h, 40h, 61h, 01h, 80h, 00h, 00h, 00h db 00h,0E9h,0FFh,0FFh, 0Dh, 80h, 00h, 00h, 00h, 31h,0C0h, 87h, 00h, 00h, 00h, 00h db 01h,0E9h, 1Bh,0B9h, 0Dh,0E0h, 00h, 00h, 00h, 0Bh, 80h, 6Eh, 00h, 00h, 00h, 00h db 03h,0C9h,0F0h, 1Fh, 0Ch,0F0h, 00h, 00h, 00h, 06h, 00h, 18h, 00h, 00h, 00h, 00h db 03h,0C9h,0F0h, 1Fh, 0Ch,0F0h, 00h, 00h, 00h, 06h, 00h, 18h, 00h, 00h, 00h, 00h db 07h, 06h,0E0h, 06h, 10h, 78h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h db 07h,0C1h, 00h, 00h, 20h,0F8h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h db 07h,0E0h, 80h, 00h,0C1h,0F8h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h db 07h,0E0h, 80h, 00h,0C1h,0F8h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h db 80h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 00h, 01h db0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh,0FFh end
上传时间: 2013-10-13
上传用户:123啊
为解决电致变色器件的颜色变化受外界环境颜色控制的问题,设计了一种基于单片机的便携式颜色自适应识别电路。与传统颜色识别电路相比较,该电路利用数字式的颜色传感器来获取外界环境颜色,产生的数字颜色信号易于单片机进行处理。在电路中,下位机部分主要负责获取电致变色器件变色参数及控制电致变色器件的颜色变化;而上位机部分主要负责把下位机获取的电致变色器件变色参数进行电压到颜色的曲线拟合,并通过蓝牙通信把拟合曲线参数传递给下位机。结果表明,该电路能自动根据环境颜色提供-4~4 V范围步进为0.1 V的电压来驱动电致变色器件的颜色显示,与传统的颜色识别电路设计相比,识别的精度和速度都得到了明显改善。 Abstract: In this paper, a portable adaptive circuit for color identification(PACCI) based on MCU was designed. Compared to the traditional color identification circuit, the PACCI adopts digital sensor to detect the color data from external environment and further generate digital color data, which can be processed easily by MCU. In PACCI, the slave is mainly responsible for detecting the color parameters of the corresponding elcreochromic device and further driving it. For the master, which is mainly responsible for the color curve fitting based on the parameters of the electrochromic device, and transmits the fitting parameters to the slave through the bluetooth device. The results show that the PACCI can provide the basis voltage range from -4V to 4V automatically based on the colors of external environment with step as 0.1V to drive the corresponding electrochromic device. Compared to the traditional color recognition circuit, the recognition accuracy and speed of PACCI have been improved significantly.
上传时间: 2013-11-09
上传用户:franktu
针对目前燃气灶市场的状况,提出一种基于PIC16C711单片机的燃气灶脉冲点火控制器设计,具体包括有系统的组成和功能介绍、硬件电路设计及软件功能实现。 Abstract: Aiming at today’s gas cooker market, a pulse ignition controler design based on PIC16C711 is presented.The specific descriptions of system components and functions,hardware circuit design and software function are given.
上传时间: 2013-10-31
上传用户:zhqzal1014