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  • 68HC05K0 Infra-red Remote Cont

    The MC68HC05K0 is a low cost, low pin countsingle chip microcomputer with 504 bytes of userROM and 32 bytes of RAM. The MC68HC05K0 isa member of the 68HC05K series of devices whichare available in 16-pin DIL or SOIC packages.It uses the same CPU as the other devices in the68HC05 family and has the same instructions andregisters. Additionally, the device has a 15-stagemulti-function timer and 10 general purposebi-directional I/0 lines. A mask option is availablefor software programmable pull-downs on all ofthe I/O pins and four of the pins are capable ofgenerating interrupts.The device is ideally suited for remote-controlkeyboard applications because the pull-downs andthe interrupt drivers on the port pins allowkeyboards to be built without any externalcomponents except the keys themselves. There isno need for external pull-up or pull-down resistors,or diodes for wired-OR interrupts, as these featuresare already designed into the device.

    标签: Infra-red Remote Cont 05K

    上传时间: 2014-01-24

    上传用户:zl5712176

  • 采用18b20芯片的温度测量C51源程序

    #include <reg51.h>#include<intrins.h> #define   BUSY1    (DQ1==0) sbit      DQ1    =  P0^4; unsigned char idata TMP; unsigned char idata TMP_d; unsigned char f; void wr_ds18_1(char dat);unsigned char rd_ds18_1(); /***************延时程序,单位us,大于10us*************/void time_delay(unsigned char time){   time=time-10;  time=time/6;  while(time!=0)time--;} /*****************************************************//*                reset ds18b20                      *//*****************************************************/void ds_reset_1(void){  unsigned char idata count=0;    DQ1=0;   time_delay(240); time_delay(240);  DQ1=1;  return;}

    标签: 18b20 C51 芯片 温度测量

    上传时间: 2013-10-29

    上传用户:sssnaxie

  • XAPP098 - Spartan FPGA低成本、高效率串行配置

    This application note shows how to achieve low-cost, efficient serial configuration for Spartan FPGA designs. The approachrecommended here takes advantage of unused resources in a design, thereby reducing the cost, part count, memory size,and board space associated with the serial configuration circuitry. As a result, neither processor nor PROM needs to be fullydedicated to performing Spartan configuration.In particular, information is provided on how the idle processing time of an on-board controller can be used to loadconfiguration data from an off-board source. As a result, it is possible to upgrade a Spartan design in the field by sending thebitstream over a network.

    标签: Spartan XAPP FPGA 098

    上传时间: 2014-08-16

    上传用户:adada

  • 多远程二极管温度传感器 (Design Considerat

    多远程二极管温度传感器-Design Considerations for pc thermal management Multiple RDTS (remote diode temperature sensing) provides the most accurate method of sensing an IC’s junction temperature. It overcomes thermal gradient and placement issues encountered when trying to place external sensors. PCB component count decreases when using a device that provides multiple inputs.Better temperature sensing improves product performance and reliability. Disk drive data integrity suffers at elevated temperatures. IBM published an article stating that a 5°C rise in operating temperature causes a 15% increase in the drive’s failure rate. The overall performance of a system can be improved by providing a more accurate temperature measurement of the most critical devices allowing them to run just a few degrees hotter.The LM83 directly senses its own temperature and the temperature of three external PN junctions. One is dedicated to the CPU of choice, the other two go to other parts of your system that need thermal monitoring such as the disk drive or graphics chip. The SMBus-compatible LM83 supports SMBus timeout and logic levels. The LM83 has two interrupt outputs; one for user-programmable limits and WATCHDOG capability (INT), the other is a Critical Temperature Alarm output (T_CRIT_A) for system power supply shutdown.

    标签: Considerat Design 远程 二极管

    上传时间: 2014-12-21

    上传用户:ljd123456

  • 如何优化ISM无线电频率(RF)系统

    Abstract: With industrial/scientific/medical (ISM) band radio frequency (RF) products, often times users are new to the structure of Maxim's low pin-count transmitters andfully integrated superheterodyne receivers. This tutorial provides simple steps that can be taken to get the best performance out of these transmitters and receivers whileproviding techniques to measure the overall capability of the design.

    标签: ISM RF 无线电频率

    上传时间: 2013-11-02

    上传用户:yph853211

  • 温湿度传感器 sht11 仿真程序下载

    温湿度传感器 sht11 仿真程序 sbit out =P3^0; //加热口  //sbit input =P1^1;//检测口  //sbit speek =P2^0;//报警  sbit clo =P3^7;//时钟  sbit ST =P3^5;//开始  sbit EOC =P3^6;//成功信号  sbit gwei =P3^4;//个位  sbit swei =P3^3;//十位 sbit bwei =P3^2;//百位 sbit qwei =P3^1;//千位 sbit speak =P0^0;//报警音 sbit bjled =P0^1;//报警灯 sbit zcled =P0^2;//正常LED  int count;  uchar xianzhi;//取转换结果 uchar seth;//高时间 uchar setl;//低时间 uchar seth_mi;//高时间 uchar setl_mi;//低时间  bit  hlbz;//高低标志  bit  clbz;  bit  spbz;       ///定时中断程序/// void t0 (void) interrupt 1 using 0 {     TH0=(65536-200)/256;//5ms*200=1000ms=1s   TL0=(65536-200)%256;  clo=!clo;//产生时钟      if(count>5000)   {     if(hlbz)            {       if(seth_mi==0){seth_mi=seth;hlbz=0;out=0;}    else seth_mi--;       }     if(!hlbz)            {       if(setl_mi==0){setl_mi=setl;hlbz=1;out=1;}    else setl_mi--;       }   count=0;   }      else count++;         } ///////////// ///////延时/////// delay(int i) {    while(--i);          }     ///////显示处理/////// xianshi() {      int   abcd=0;     int i;     for (i=0;i<5;i++) {   abcd=xianzhi;  gwei=1;  swei=1;  bwei=1;  qwei=1;  P1=dispcode[abcd/1000];   qwei=0;  delay(70);   qwei=1;  abcd=abcd%1000;  P1=dispcode[abcd/100];  bwei=0;  delay(70);  bwei=1;   abcd=abcd%100;  P1=dispcode[abcd/10];  swei=0;  delay(70);  swei=1;  abcd=abcd%10;  P1=dispcode[abcd];  gwei=0;  delay(70);  gwei=1;  } }   doing()   {     if(xianzhi>100)     {bjled=0;speak=1;zcled=1;}  else {bjled=1;speak=0;zcled=0;}   }   void main(void)  {  seth=60;//h60秒  setl=90;//l90秒  seth_mi=60;//h60秒  setl_mi=90;//l90秒  TMOD=0X01;//定时0 16位工作模式   TH0=(65536-200)/256;   TL0=(65536-200)%256;    TR0=1; //开始计时  ET0=1;   //开定时0中断  EA=1;    //开全中断  while(1)  {      ST=0;    _nop_();     ST=1;    _nop_();     ST=0;  //   EOC=0;          xianshi();       while(!EOC)   {         xianshi();    }        xianzhi=P2;             xianshi();     doing();  }  }

    标签: sht 11 温湿度传感器 仿真程序

    上传时间: 2013-11-07

    上传用户:我们的船长

  • XAPP098 - Spartan FPGA低成本、高效率串行配置

    This application note shows how to achieve low-cost, efficient serial configuration for Spartan FPGA designs. The approachrecommended here takes advantage of unused resources in a design, thereby reducing the cost, part count, memory size,and board space associated with the serial configuration circuitry. As a result, neither processor nor PROM needs to be fullydedicated to performing Spartan configuration.In particular, information is provided on how the idle processing time of an on-board controller can be used to loadconfiguration data from an off-board source. As a result, it is possible to upgrade a Spartan design in the field by sending thebitstream over a network.

    标签: Spartan XAPP FPGA 098

    上传时间: 2013-11-01

    上传用户:wojiaohs

  • 温湿度传感器 sht11 仿真程序下载

    温湿度传感器 sht11 仿真程序 sbit out =P3^0; //加热口  //sbit input =P1^1;//检测口  //sbit speek =P2^0;//报警  sbit clo =P3^7;//时钟  sbit ST =P3^5;//开始  sbit EOC =P3^6;//成功信号  sbit gwei =P3^4;//个位  sbit swei =P3^3;//十位 sbit bwei =P3^2;//百位 sbit qwei =P3^1;//千位 sbit speak =P0^0;//报警音 sbit bjled =P0^1;//报警灯 sbit zcled =P0^2;//正常LED  int count;  uchar xianzhi;//取转换结果 uchar seth;//高时间 uchar setl;//低时间 uchar seth_mi;//高时间 uchar setl_mi;//低时间  bit  hlbz;//高低标志  bit  clbz;  bit  spbz;       ///定时中断程序/// void t0 (void) interrupt 1 using 0 {     TH0=(65536-200)/256;//5ms*200=1000ms=1s   TL0=(65536-200)%256;  clo=!clo;//产生时钟      if(count>5000)   {     if(hlbz)            {       if(seth_mi==0){seth_mi=seth;hlbz=0;out=0;}    else seth_mi--;       }     if(!hlbz)            {       if(setl_mi==0){setl_mi=setl;hlbz=1;out=1;}    else setl_mi--;       }   count=0;   }      else count++;         } ///////////// ///////延时/////// delay(int i) {    while(--i);          }     ///////显示处理/////// xianshi() {      int   abcd=0;     int i;     for (i=0;i<5;i++) {   abcd=xianzhi;  gwei=1;  swei=1;  bwei=1;  qwei=1;  P1=dispcode[abcd/1000];   qwei=0;  delay(70);   qwei=1;  abcd=abcd%1000;  P1=dispcode[abcd/100];  bwei=0;  delay(70);  bwei=1;   abcd=abcd%100;  P1=dispcode[abcd/10];  swei=0;  delay(70);  swei=1;  abcd=abcd%10;  P1=dispcode[abcd];  gwei=0;  delay(70);  gwei=1;  } }   doing()   {     if(xianzhi>100)     {bjled=0;speak=1;zcled=1;}  else {bjled=1;speak=0;zcled=0;}   }   void main(void)  {  seth=60;//h60秒  setl=90;//l90秒  seth_mi=60;//h60秒  setl_mi=90;//l90秒  TMOD=0X01;//定时0 16位工作模式   TH0=(65536-200)/256;   TL0=(65536-200)%256;    TR0=1; //开始计时  ET0=1;   //开定时0中断  EA=1;    //开全中断  while(1)  {      ST=0;    _nop_();     ST=1;    _nop_();     ST=0;  //   EOC=0;          xianshi();       while(!EOC)   {         xianshi();    }        xianzhi=P2;             xianshi();     doing();  }  }

    标签: sht 11 温湿度传感器 仿真程序

    上传时间: 2013-10-16

    上传用户:黄蛋的蛋黄

  • 迅捷简易网页计数器 Ver2.0 一.系统要求: ASP+ACCESS 二.程序主要功能: 简单的页面计数功能。 三.使用方法 1. 上传全部文件; 2. 用记事本打开se

    迅捷简易网页计数器 Ver2.0 一.系统要求: ASP+ACCESS 二.程序主要功能: 简单的页面计数功能。 三.使用方法 1. 上传全部文件; 2. 用记事本打开setup.asp更改程序按装路径; 3. 将 下面的代码添加到需要计数的网页, <script language="javascript" src="count.asp"></script> 其中count.asp应改为计数文件的实际路径。 四.文件说明 count.asp 计数器主文件. count.mdb ACCESS数据库. index.asp 计数器测试文件.

    标签: ACCESS Ver 2.0 ASP

    上传时间: 2014-01-09

    上传用户:LIKE

  • 【功能】 1:多用户统计系统

    【功能】 1:多用户统计系统,防止刷新,速度快,适用广泛 2:综合统计,最近访问,地区分析,地址分析,屏幕大小,来访页面,访问次数,操作系统,当前在线,IP地址,浏览器,年报表,月报表,周报表,历史报表,日报表等 3:可以精确的跟踪统计每一位来访者的IP与在线时间-同一IP在线每隔5分钟才能增加一个计数(你也可以修改时间,在stat.jsp页你把ExTime改为你想要的时间,即 int ExTime=5 )。 4:提供详细IP数据包,让你清楚的知道来访者是来是何方。 最好的是它时时性,你可以监控道现在有谁在浏览你的网站,浏览你的那个栏目 【系统配置】 先将此目录下的“feng”目录拷贝到你的虚拟目录下的:\\WEB-INF\classes\下。 本系统这里使用的ACCESS数据数据库。 数据源名称:count,用户名:admin,密码:admin (也可以改变jdbc.java 文件的代码,然后编译)。 数据库为: count.mdb 编写环境: win2000+j2sdk1.4.0_02+tomcat4.0 测试页面: test.jsp(你可以看看统计的效果)

    标签: 多用 统计系统

    上传时间: 2014-01-27

    上传用户:star_in_rain