文件名称:LYJ_IR_M
- 所属分类:
- 单片机(51,AVR,MSP430等)
- 资源属性:
- [C/C++] [源码]
- 上传时间:
- 2012-11-26
- 文件大小:
- 676kb
- 下载次数:
- 0次
- 提 供 者:
- 王*
- 相关连接:
- 无
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/*红外解码的方法 NEC格式 upd6121
1、9Ms的高电平启动头,然后是4.5Ms的低电平,如果2.25Ms时就有高电平,是持续信号,不处理
2、然后以一个高电平和一个低电平为1Bit,高电平时间是0.5625Ms=562us,
高低电平时间比为1:1时是Bit1,比为1:3时是Bit0
3、Timer1中断执行100us采样周期,9Ms=90,4.5Ms=45,高电平=5,低电平最多15
4、共读入4Byte共24bit,第1、2Byte是CustomCode码和其反码,第3、4Byte是DataCode和其反码
5、CustomCode正确和DataCode效验正确的话,执行
6、红外接收器输出是反相的-/* IR decoding methods NEC format upd61211, 9Ms start of the high head, and then the low 4.5ms, if 2.25Ms when there is high, is a continuous signal, does not handle 2, and then to a high- level and a low level for 1Bit, high time is 0.5625Ms = 562us, high-low ratio of 1:1 when the time is Bit1, ratio of 1:3 is Bit03, Timer1 interrupt the implementation of 100us sampling period, 9Ms = 90,4.5 Ms = 45, high = 5, low-level maximum of 154, were read into 4Byte were 24bit, No. 1,2 Byte is CustomCode code and its anti-code, the first 3,4 Byte is DataCode and its anti-code 5, CustomCode correct and well-tested DataCode correct, the implementation of 6, infrared receiver output is RP s
1、9Ms的高电平启动头,然后是4.5Ms的低电平,如果2.25Ms时就有高电平,是持续信号,不处理
2、然后以一个高电平和一个低电平为1Bit,高电平时间是0.5625Ms=562us,
高低电平时间比为1:1时是Bit1,比为1:3时是Bit0
3、Timer1中断执行100us采样周期,9Ms=90,4.5Ms=45,高电平=5,低电平最多15
4、共读入4Byte共24bit,第1、2Byte是CustomCode码和其反码,第3、4Byte是DataCode和其反码
5、CustomCode正确和DataCode效验正确的话,执行
6、红外接收器输出是反相的-/* IR decoding methods NEC format upd61211, 9Ms start of the high head, and then the low 4.5ms, if 2.25Ms when there is high, is a continuous signal, does not handle 2, and then to a high- level and a low level for 1Bit, high time is 0.5625Ms = 562us, high-low ratio of 1:1 when the time is Bit1, ratio of 1:3 is Bit03, Timer1 interrupt the implementation of 100us sampling period, 9Ms = 90,4.5 Ms = 45, high = 5, low-level maximum of 154, were read into 4Byte were 24bit, No. 1,2 Byte is CustomCode code and its anti-code, the first 3,4 Byte is DataCode and its anti-code 5, CustomCode correct and well-tested DataCode correct, the implementation of 6, infrared receiver output is RP s
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LYJ
...\config.h
...\config._h
...\LYJ-v1.0.c
...\lyj.bcf
...\LYJ.c
...\LYJ.cof
...\LYJ.dbg
...\LYJ.dp2
...\LYJ.hex
...\LYJ.lis
...\LYJ.lk
...\LYJ.lst
...\LYJ.mak
...\LYJ.mp
...\LYJ.o
...\LYJ.prj
...\LYJ.s
...\LYJ.SRC
...\LYJ._c
...\LYJ_cof.aps
...\LYJ_ddb
...\.......\LYJ.Bkp
...\.......\LYJ.ddb
...\S0101
...\.....\S0101.doc
...\upd6121.pdf
...\config.h
...\config._h
...\LYJ-v1.0.c
...\lyj.bcf
...\LYJ.c
...\LYJ.cof
...\LYJ.dbg
...\LYJ.dp2
...\LYJ.hex
...\LYJ.lis
...\LYJ.lk
...\LYJ.lst
...\LYJ.mak
...\LYJ.mp
...\LYJ.o
...\LYJ.prj
...\LYJ.s
...\LYJ.SRC
...\LYJ._c
...\LYJ_cof.aps
...\LYJ_ddb
...\.......\LYJ.Bkp
...\.......\LYJ.ddb
...\S0101
...\.....\S0101.doc
...\upd6121.pdf