![51单片机红外遥控程序是什么?,第1张 51单片机红外遥控程序是什么?,第1张](/aiimages/51%E5%8D%95%E7%89%87%E6%9C%BA%E7%BA%A2%E5%A4%96%E9%81%A5%E6%8E%A7%E7%A8%8B%E5%BA%8F%E6%98%AF%E4%BB%80%E4%B9%88%EF%BC%9F.png)
#include\x0d\x0a#include\x0d\x0a#define uchar unsigned char\x0d\x0a#define uint unsigned int\x0d\x0asbit lcden = P2^7\x0d\x0asbit lcdrs = P2^6\x0d\x0asbit lcdwr = P2^5\x0d\x0asbit IR = P3^2\x0d\x0auchar IRCOM[6]//数组,用于存储
红外编码\x0d\x0auchar code table1[] = "remote control"\x0d\x0auchar code table2[] = "CODE:"\x0d\x0avoid delayms(uchar x)// 延时x*0.14ms\x0d\x0a{\x0d\x0auchar i\x0d\x0awhile(x--)\x0d\x0afor(i=0i//延时xms\x0d\x0a{\x0d\x0auchar i,j\x0d\x0afor(i=xi>0i--)\x0d\x0afor(j=110j>0j--)\x0d\x0a}\x0d\x0a/****************************LCD部分***********************************************/\x0d\x0avoid write_com(uchar com)\x0d\x0a{\x0d\x0alcden = 0\x0d\x0alcdrs = 0\x0d\x0alcdwr = 0\x0d\x0aP0 = com\x0d\x0adelay(5)\x0d\x0alcden = 1\x0d\x0adelay(5)\x0d\x0alcden = 0//别忘了lcden拉低\x0d\x0a}\x0d\x0avoid write_date(uchar date)\x0d\x0a{\x0d\x0alcden = 0\x0d\x0alcdrs = 1\x0d\x0alcdwr = 0\x0d\x0aP0 = date\x0d\x0adelay(5)\x0d\x0alcden = 1\x0d\x0adelay(5)\x0d\x0alcden = 0\x0d\x0a}\x0d\x0avoid lcd_init(void)\x0d\x0a{\x0d\x0alcden = 0\x0d\x0alcdrs = 0\x0d\x0alcdwr = 0\x0d\x0adelay(5)\x0d\x0awrite_com(0x38)\x0d\x0awrite_com(0x0c)\x0d\x0awrite_com(0x06)\x0d\x0awrite_com(0x01)\x0d\x0a}\x0d\x0a/*****************main()************************/\x0d\x0avoid main(void)\x0d\x0a{\x0d\x0auchar count=0\x0d\x0aIR = 1\x0d\x0alcd_init()\x0d\x0awrite_com(0x80)\x0d\x0awhile(table1[count]!='\0')\x0d\x0a{\x0d\x0awrite_date(table1[count])\x0d\x0acount++\x0d\x0adelay(5)\x0d\x0a}\x0d\x0acount = 0\x0d\x0awrite_com(0x80+0x40)\x0d\x0awhile(table2[count]!='\0')\x0d\x0a{\x0d\x0awrite_date(table2[count])\x0d\x0acount++\x0d\x0adelay(5)\x0d\x0a}\x0d\x0a\x0d\x0aIE = 0x81//开中断\x0d\x0aTCON = 0x01//脉冲负边沿触发\x0d\x0awhile(1)\x0d\x0a\x0d\x0a}\x0d\x0a/*********************红外中断**************************/\x0d\x0avoid IR_time() interrupt 0 \x0d\x0a{\x0d\x0auchar i,j,TimeNum=0//TimeNum用来计IR高电平次数 从而判断是0还是1\x0d\x0aEX0 = 0//关闭中断\x0d\x0adelayms(5)\x0d\x0aif(1 == IR)\x0d\x0a{\x0d\x0aEX0 = 1\x0d\x0areturn\x0d\x0a}\x0d\x0awhile(!IR) //
跳过9ms前导低电平\x0d\x0adelayms(1)\x0d\x0afor(i=0i{\x0d\x0afor(j=0j{\x0d\x0awhile(IR) //跳过4.5ms的前导高电平\x0d\x0adelayms(1)\x0d\x0awhile(!IR) //跳过0.56ms的低电平\x0d\x0adelayms(1)\x0d\x0a\x0d\x0awhile(IR) \x0d\x0a{\x0d\x0aTimeNum++//计时高电平时间从而判断读取的是0还是1\x0d\x0adelayms(1)\x0d\x0a}\x0d\x0aif(TimeNum>=30)//按键按下时间过长 跳过\x0d\x0a{\x0d\x0aEX0 = 1\x0d\x0areturn\x0d\x0a}\x0d\x0aIRCOM[i] = IRCOM[i]>>1\x0d\x0aif(TimeNum >= 8) //8*0.14ms 这时读取的是1;\x0d\x0a{\x0d\x0aIRCOM[i] = IRCOM[i]|0x80\x0d\x0a}\x0d\x0aTimeNum = 0\x0d\x0a}\x0d\x0a}\x0d\x0aif(IRCOM[2]!=~IRCOM[3])//判断八位数据和八位数据反码是否相等\x0d\x0a{\x0d\x0aEX0 = 1\x0d\x0areturn\x0d\x0a}\x0d\x0aIRCOM[4] = IRCOM[2]&0x0f//取低四位\x0d\x0aIRCOM[5] = IRCOM[2]>>4//IRCOM[5]取IRCOM[2]高四位\x0d\x0aif(IRCOM[4] >9) //转换成字符\x0d\x0a{\x0d\x0aIRCOM[4] = IRCOM[4] + 0x37\x0d\x0a}\x0d\x0aelse\x0d\x0aIRCOM[4] = IRCOM[4] + 0x30\x0d\x0aif(IRCOM[5] >9)\x0d\x0a{\x0d\x0aIRCOM[5] = IRCOM[5] + 0x37\x0d\x0a}\x0d\x0aelse\x0d\x0aIRCOM[5] = IRCOM[5] + 0x30\x0d\x0adelay(5)\x0d\x0awrite_com(0x80 + 0x40 + 5)\x0d\x0awrite_date(IRCOM[5])\x0d\x0awrite_date(IRCOM[4])\x0d\x0aEX0 = 1//重新开启外部中断\x0d\x0a}sbit IR_OUT = P3^2
unsigned char SigInfo[4]//存储红外按键编码,SigInfo[2]为按键值
void Cmd_Require(void)
void INT_Ext0() interrupt 1 //外部中断0
{
u8 i, j
u16 time = 8000
EA = 0
for (i=0 i<10 i++) {
delay0_7ms ()
if (IR_OUT) {
EA = 1
return
}
}
while (!IR_OUT)
delay2_5ms ()
if (!IR_OUT) {
EA = 1
return
}
while (IR_OUT&&time) {
time--
}
time = 8000
for (i=0 i<4 i++) {
for (j=0 j<8 j++) {
SigInfo[i] >>= 1
while (!IR_OUT)
delay0_7ms ()
if (IR_OUT) {
SigInfo[i] |= 0x80
while (IR_OUT&&time) {
time--
}
time = 8000
}
}
}
Cmd_Require()
EA = 1
}
void Cmd_Require(void)
{
switch(SigInfo[2]) {
case 0x0c:
//此处代码随意
break
case 0x18:
//...
break
//...
default:
break
}
}
延时没写,因单片机而异的,要精确点才能解码。
红外发射模块用51单片机编程使用:用定时器中断来做,红外发送引脚连接到P1.0口, 计数一下定时初值(让P1.0的翻转频率为38KHZ),进定时器中断就对P1.0取反,这样红外就发送出去了。
红外线发射管(IR LED)也称红外线发射二极管,属于二极管类。它是可以将电能直接转换成近红外光(不可见光)并能辐射出去的发光器件。
红外线发射管(IR LED)也称红外线发射二极管,属于二极管类。它是可以将电能直接转换成近红外光(不可见光)并能辐射出去的发光器件,主要应用于各种光电开关、触摸屏及遥控发射电路中。红外线发射管的结构、原理与普通发光二极管相近,只是使用的半导体材料不同。红外发光二极管通常使用砷化镓(GaAs)、砷铝化镓(GaAlAs)等材料,采用全透明或浅蓝色、黑色的树脂封装。
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