位移测量系统的毕业设计-论文.doc
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位移测量系统的毕业设计-论文,目录第一章绪论················································· 1.1位移测量及其传感器简介·································· 1.2国内外位移测量技术简介··································第二...
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目 录
第一章 绪论·················································
1.1位移测量及其传感器简介··································
1.2国内外位移测量技术简介··································
第二章 原理说明及方案选择···································
2.1 位移测量理论的简要介绍··································
2.2 方案选择及原理··········································
2.2.1鉴相原理·············································
2.2.2用软件实现脉冲的鉴相和计数···························
2.2.3用硬件实现脉冲的鉴相和计数···························
2.2.4用单片机内部计数器实现可逆计数·······················
2.3 位移测量参数及电路参数分析······························
2.3.1MCS-51的定时器/计数器简介····························
2.3.2定时器模式选择位·····································
第三章 系统电路的设计 ········································
3.1 硬件电路的设计···········································
3.1.1 单片机的选择 ·········································
3.1.2 AT89C51的介绍········································
3.1.3 光电编码器的选择 ·····································
3.1.4 1XP8001-1简介········································
3.2 软件的设计···············································
第四章 显示部分···············································
4.1 LED显示器 ················································
4.2 LCD显示器 ················································
4.2.1 LCD的分类及特点 ······································
4.2.1笔段式LCD液晶显示器的驱动·····························
4.2.2 LCD显示模块LCDM(Liquid Crystal Display Module)······
4.3 LCD显示器的驱动接口 ······································
第五章 仿真实现················································
5.1 PROTEUS仿真软件简介·······································
5.2 KEIL与PROYEUS的联合使用··································
结论······························································
谢辞······························································
参考文献··························································
附录一 系统电路原理图············································
附录二 程序清单··················································
附录三 仿真电路图················································
第一章 绪论·················································
1.1位移测量及其传感器简介··································
1.2国内外位移测量技术简介··································
第二章 原理说明及方案选择···································
2.1 位移测量理论的简要介绍··································
2.2 方案选择及原理··········································
2.2.1鉴相原理·············································
2.2.2用软件实现脉冲的鉴相和计数···························
2.2.3用硬件实现脉冲的鉴相和计数···························
2.2.4用单片机内部计数器实现可逆计数·······················
2.3 位移测量参数及电路参数分析······························
2.3.1MCS-51的定时器/计数器简介····························
2.3.2定时器模式选择位·····································
第三章 系统电路的设计 ········································
3.1 硬件电路的设计···········································
3.1.1 单片机的选择 ·········································
3.1.2 AT89C51的介绍········································
3.1.3 光电编码器的选择 ·····································
3.1.4 1XP8001-1简介········································
3.2 软件的设计···············································
第四章 显示部分···············································
4.1 LED显示器 ················································
4.2 LCD显示器 ················································
4.2.1 LCD的分类及特点 ······································
4.2.1笔段式LCD液晶显示器的驱动·····························
4.2.2 LCD显示模块LCDM(Liquid Crystal Display Module)······
4.3 LCD显示器的驱动接口 ······································
第五章 仿真实现················································
5.1 PROTEUS仿真软件简介·······································
5.2 KEIL与PROYEUS的联合使用··································
结论······························································
谢辞······························································
参考文献··························································
附录一 系统电路原理图············································
附录二 程序清单··················································
附录三 仿真电路图················································