DS1302电子时钟制作.doc
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摘要
从古代的滴漏更鼓到近代的机械钟,从电子表到目前的数字时钟,为了准确的测量和记录时间,人们一直在努力改进着计时工具。钟表的数字化,大力推动了计时的精确性和可靠性。在单片机构成的装置中,实时时钟是必不可少的部件。目前常用的实时时钟,很多采用单片机的中断服务来实现,这种方式一方面需要采用计数器,占用硬件资源,另一方面需要设置中断、查询等,同样耗费单片机的资源,而且某些测控系统可能不允许;有的则使用并行接口的时钟芯片,如MC146818、DS12887等,它们虽然能满足单片机系统对实时时钟的要求,但是这些芯片与单片机接口复杂,占用地址、数据总线多,芯片体积大,占用空间多,给其它设计带来诸多不便。本设计选取串行接口时钟芯片DS1302与单片机同步通信构成数字时钟电路。其简单的三线接口能为单片机节省大量资源,DS1302的后背电源及对后背电源进行涓细电流充电的能力保证电路断电后仍能保存时间和数据信息等。这些优点解决了目前常用的实时时钟所无法解决的问题。该时钟电路强大的功能和优越的性能,在很多领域的应用中,尤其是某些自动化控制、长时间无人看守的测控系统等对时钟精确性和可靠性有较高要求的场合,具有很高的使用价值。
ABSTRCT
目录
1.摘要···················································I
ABSTRCT···············································II
2.引言···················································1
3.系统概述················································2
2.1、系统框图··········································2
2.2、设计要求·········································2
4.硬件资源介绍············································3
4.1、单片机AT89C52····································3
4.2、DS1302时钟芯片···································8
4.3、八位一体数码管····································4.4、锁存器74HC573····································13
4.5、三端稳压管7805··································14
5.原理图分析·············································16
5.1、单片机块·········································16
5.2、电源模块········································16
5.3、DS1302时钟模块··································18
5.4、数码管显示模块···································19
5.5、按键及蜂鸣器模块·································19
6、用PROTUES软件进行仿真·······························21
6.1、功能特点3.系统概述
本设计是一种基于单片机的电子时钟,它以单片机作为控制核心,通过修改初值或者按键调整,控制并拾取DS1302芯片中的时钟数据,最终通过数码管显示给用户当前的时钟时间。
3.1、系统框图
图3-1
3.2、设计要求
通过单片机控制刷新DS1302时钟芯片内存区域初始状态,然后不断的中芯片中读出时钟时间,最终通过数码管显示出来,并且当系统时钟时间存在记忆性,当掉电之后时钟的内部会自己运行,再次上电之后系统读取的是运行过后的时间。用两个开关键:当系统上电数码管自动显示时间,按下按键一,使小时加一,小时加满二十四自动清零。按下按键二,使分钟加一,分钟加满六十,小时加一,分钟自动清零。
4.硬件资源介绍
4.1、单片机AT89C52
AT89C52为8 位通用微处理器,采用工业标准的C51内核,在内部功能及管脚排布上与通用的8xc52 相同,其主要用于会聚调整时的功能控制。功能包括对会聚主IC 内部寄存器、数据RAM及外部接口等功能部件的初始化,会聚调整控制,会聚测试图控制,红外遥控
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