基于单片机的数字电子钟设计-毕业设计论文.doc
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基于单片机的数字电子钟设计
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基于单片机的数字电子钟设计
摘要:
本设计以51单片机为核心,附加了必要的外围电路,构成了一个简单的数字电子钟,整体由5V的电源供电。在硬件方面,除了51单片机芯片以外,我们还主要用到了时钟芯片DS1302、温度采集芯片DS18B20、和型号为1602的液晶显示器。在这些硬件的基础上,我们通过编写配套的C语言程序,实现了对年、月、日、时、分、秒、星期以及温度在液晶屏上的显示,此外还实现了整点报时和闹钟的功能。日期、时间和温度的显示都是通过相应的时钟芯片DS1302和温度采集芯片DS18B20与单片机的配合工作将数据传送到液晶显示器上来实现的。整点报时和闹钟的功能主要是通过软件以及单片机的控制来实现的。显然我们还要再加上一些必要的按键,我们的按键电路包含四个按键,分别用于对调整项的选择、上调、下调和闹钟停止。另外的一个复位按键与单片机最小系统是一个整体。
关键词:电子钟,日期,时间,整点报时,闹钟,温度显示
目录
1 数字电子钟的设计要求···············································第3页
1.1 基本要求····························································第3页
1.2 扩展功能····························································第3页
2 硬件简介···························································第3页
2.1 AT89C51单片机简介··················································第3页
2.2 时钟芯片DS1302简介················································第4页
2.3 温度采集芯片 DS18B20简介··········································第4页
3 软件简介····························································第5页
3.1 Protues软件························································第5页
3.2 Keil软件···························································第5页
4 数字电子钟系统说明··················································第6页
4.1 系统说明····························································第6页
4.2 模块说明····························································第6页
4.2.1电源部分···························································第6页
4.2.2时钟电路···························································第7
4.2.3复位电路···························································第7
4.2.4按键电路···························································第7
4.2.5时钟芯片工作电路···················································第8
4.2.6温度采集芯片工作电路···············································第8页
4.2.7发光二极管工作电路·················································第9页
4.2.8液晶显示器工作电路·················································第9页
4.3 基本功能实现原理···················································第10页
4.4 扩展功能实现原理·················
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