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本科生毕业论文
IV
3.4 驱动电路设计 ················································································ 17 3.4.1 行驱动电路设计 ······································································· 17 3.4.2 列驱动电路设计 ······································································· 18 3.5 通信系统硬件设计 ·········································································· 18 3.6 电源设计 ······················································································ 19 3.7 级连大屏幕LED显示屏··································································· 20 第4章 系统软件设计 ············································································· 22 4.1 程序设计 ······················································································ 22 4.2 显示程序的设计 ············································································· 23 4.2.1 LED显示屏的显示方式 ······························································ 23 4.2.2 点阵数据表达方式 ···································································· 24 4.2.3 显示程序的设计 ······································································· 25 4.3 通信程序的设计 ············································································· 26 第5章 系统调试 ··················································································· 29 5.1 系统硬件部分调试方法 ···································································· 29 5.1.1 短路与虚焊检测 ······································································· 30 5.1.2 上电测试················································································· 30 5.1.3 串口调试················································································· 30 5.2 系统软件调试方法 ·········································································· 31 5.3 系统联合调试及结果 ······································································· 32 5.4 调试结果分析 ················································································ 32 结论 ····································································································· 34 致谢 ····································································································· 35 参考文献 ······························································································· 36 附录1 系统硬件原理图 ·········································································· 37 附录2 设计程序 ···················································································· 38 附录3 系统PCB图 ··············································································· 46
本科生毕业论文
第1章 绪 论
1.1 课题背景
1.1.1 选题背景
LED显示屏是八十年代后期在全球迅速发展起来的新型信息显示媒体,显示屏由几万……几十万个半导体发光二极管像素点均匀排列组成。利用不同的材料可以制造不同色彩的LED像素点。目前应用最广的是红色、绿色、黄色。而蓝色和纯绿色LED的开发已经达到了实用阶段。LED显示屏可以显示变化的数字、文字、图形图像;不仅可以用于室内环境还可以用于室外环境,具有投影仪、电视墙、液晶显示屏无法比拟的优点[1]。
在短短的十来年中,LED点阵显示屏就以亮度高、工作电压低、功耗小、小型化、寿命长、耐冲击和性能稳定的优点迅速成长为平板显示的主流产品,在信息显示领域得到了广泛的应用。LED的发展前景极为广阔,目前正朝着更高亮度、更高耐气候性、更高的发光密度、更高的发光均匀性、可靠性、全色化方向发展。LED显示屏的应用涉及社会经济的许多领域,主要包括:(1)证券交易、金融信息显示。(2)机场航班动态信息显示。(3)港口、车站旅客引导信息显示。(4)体育场馆信息显示。(5)道路交通信息显示。(6)调度指挥中心信息显示。(7)邮政、电信、商场购物中心等服务领域的业务宣传及信息显示。(8)广告媒体新产品等。 1.1.2 研究现状及发展趋势
(1)我国LED产业发展现状
我国的LED显示屏产业经过几年的发展,基本形成了一批具有一定规模的骨干企业。据不完全统计,至1998年底,年度销售总额在1000万元以上的企业有20多家,其销售总额达6亿元左右,占行业市场总额的85%以上。全国从事LED显示屏的各类企业有100余家,从业人员近6000人,行业年度销售总额近8亿元人民币,1996年、1997年的增长速度均保持40%左右,1998年略有回落。在国内市场上,国产LED显示屏的市场占有率近100%,国外同类产品基本没有市场,四十三届世乒赛主会场天津体育中心、京九铁路、北京西客站、首都机场、浦东机场等,均由国内代表企业中标。技术水平相对领先,我国LED显示屏产业在规模发展的同时,产品技术推陈出新,一直保持比较先进的水平。90年代初即具备了成熟的16
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本科生毕业论文
级灰度256色视频控制技术及无线遥控等国际先进水平技术,近年在全彩色LED显示屏、256级灰度视频控制技术、集群无经线控制、多级群控技术等方面均有国内先进、达到国际水平的技术和产品出现;LED显示屏控制专用大规模集成电路也已由国内企业开发生产并得到应用。LED显示屏产业培养形成了一批LED显示屏科技队伍,在全国LED显示屏行业的从业人数6000人中,科技人员有2800多人,将近50%。LED显示屏产业正成为我国电子信息产业的重要组成部分,也是平板显示领域唯一立足国内形成的民族高科技产业。
(2)LED显示屏的发展趋势
现代信息社会中,作为人一机信息视觉传播媒体的显示产品和技术得到迅速发展,进入二十一世纪的显示技术将是平板显示的时代,LED显示屏作为平板显示的主导产品之一无疑会有更大的发展,并有可能成为二十一世纪平板显示的代表性主流产品。高亮度、全彩化蓝色及纯绿色LED产品自出现以来,成本逐年快速降低,已具备成熟的商业化条件。基础材料的产业化。使LED全彩色显示产品成本下降,应用加快。LED产品性能的提高,使全彩色显示屏的亮度、色彩、白平衡均达到比较理想的效果,完全可以满足户外全天候的环境条件要求,同时,由于全彩色显示屏价格性能比的优势,预计在未来几年的发展中,全彩色LED显示屏在户外广告媒体中会越来越多地代替传统的灯箱、霓红灯、磁翻板等产品,体育场馆的显示方面全彩色LED屏更会成为主流产品。全彩色LED显示屏的广泛应用会是LED显示屏产业发展的一个新的增长点。
未来LED显示屏会向着标准化、规范化,产品结构多样化的方向发展[2]。 (3)选题意义
该设计课题使我们能够掌握LED显示屏的基本显示原理和设计方法,对LED
显示屏这个行业有了较为深刻的了解和认识。并且对大学期间所学习的一些理论进行了实践,使我们对所学过的理论知识有了新的认识。并且通过该设计课题掌握了51单片机的的软硬件开发工具的使用方法,为以后从事相关行业的工作积累了实际工作经验。目前我国的信息行业发展迅速,作为主要平面显示媒介的LED显示屏的作用也越练越广泛,相关的从业人员也会越来越紧缺。但同时应该清楚的认识到我国的LED技术虽然发展迅速但和世界先进水平还有一定的差距。因此此课题不论是对自己的就业还是对我国LED显示技术的发展都有非常现实与积极的意义。
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本科生毕业论文
1.2 论文主要内容
针对设计题目的特点,作者对论文的内容和结构将做如下安排:
(1)初步方案的论证和选择
搜集题目的有关资料,并参照目前通用的设计思想和设计方法拟定几套设计方案进行分析比较。最终选定了以PC机为上位机,单片机为核心控制器件,外加译码电路和驱动电路的设计方案。
(2)方案实现
以设计方案为指导思想选择合适的器件来实现这一思想,选择器件时要从功能和电气特性两方面来选择和论证。经过对比选择选定AT89S51单片机为核心控制器件,由串并转换器74LS164和锁存器74LS373为译码电路器件,三极管8550和ULN2803为驱动电路器件。论文列出了详细的器件参数和在系统中的连接使用方法。
(3)软件编写
根据硬件特点和设计要求,软件选用C语言编写。程序按功能分为静态显示、动态显示、通信等几个功能上相对独立的模块。然后按照所划分的模块逐个编写和调试,最后将独立的模块整合起来。
(4)验证与测试
调试分为硬件调试、软件调试和系统联合调试几步来进行。在硬件调试中发现有单片机端口驱动能力不足、驱动电路工作不稳定等问题。在软件调试中出现程序整合工作不协调等问题。通过分析,查找找出了问题原因并设法将其解决。
(5)结论
设计完成后对设计中所遇到的问题、经验教训、以及自己的想法进行总结。
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