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  • PCA9555 16bit I2C-bus and SMBu

    The PCA9555 is a 24-pin CMOS device that provides 16 bits of General Purpose parallelInput/Output (GPIO) expansion for I2C-bus/SMBus applications and was developed toenhance the NXP Semiconductors family of I2C-bus I/O expanders. The improvementsinclude higher drive capability, 5 V I/O tolerance, lower supply current, individual I/Oconfiguration, and smaller packaging. I/O expanders provide a simple solution whenadditional I/O is needed for ACPI power switches, sensors, push buttons, LEDs, fans, etc.The PCA9555 consists of two 8-bit Configuration (Input or Output selection); Input, Outputand Polarity Inversion (active HIGH or active LOW operation) registers. The systemmaster can enable the I/Os as either inputs or outputs by writing to the I/O configurationbits. The data for each Input or Output is kept in the corresponding Input or Outputregister. The polarity of the read register can be inverted with the Polarity Inversionregister. All registers can be read by the system master. Although pin-to-pin and I2C-busaddress compatible with the PCF8575, software changes are required due to theenhancements, and are discussed in Application Note AN469.

    标签: C-bus 9555 SMBu PCA

    上传时间: 2013-11-13

    上传用户:fredguo

  • 可编程自动控制控制跑马灯

    这一颗,我们学习如何让跑马灯自动按照我们预定的顺序进行。这种控制在工控场合经常用到。这个程序里,我们预先定义了一个变化的顺序speedcode,每跑一圈灯就根据预定设置的表格数据来决定下一圈的跑马速度。这样我们就实现了按照预定的顺序自动变化运行。请看代码:-----------------------------------#define uchar unsigned char //定义一下方便使用#define uint unsigned int#define ulong unsigned long#include <reg52.h> //包括一个52 标准内核的头文件sbit P10 = P1^0; //头文件中没有定义的IO 就要自己来定义了sbit P11 = P1^1;sbit P12 = P1^2;sbit P13 = P1^3;bit ldelay=0; //长定时溢出标记,预置是0uchar speed=10; //设置一个变量保存跑马灯的移动速度uchar code speedcode[10]={3,1,5,12,3,20,2,10,1,4}; //10 个预定义的速度char code dx516[3] _at_ 0x003b;//这是为了仿真设置的//可编程自动控制跑马灯void main(void) // 主程序{uchar code ledp[4]={0xfe,0xfd,0xfb,0xf7};//预定的写入P1 的值uchar ledi; //用来指示显示顺序uchar i;RCAP2H =0x10; //赋T2 的预置值0x1000,溢出30 次就是1 秒钟RCAP2L =0x00;TR2=1; //启动定时器ET2=1; //打开定时器2 中断EA=1; //打开总中断

    标签: 可编程 自动控制 控制 跑马灯

    上传时间: 2013-11-20

    上传用户:ming529

  • 数字钟显示电路

    SHUZIZHONG显示电路 源程序如下: #include <reg51.h>#include <intrins.h> unsigned char data dis_digit; unsigned char code dis_code[]={ 0x3f,0x06,0x5b,0x4f,0x66,0x6d,0x7d,0x07,0x7f,0x6f,0x77,0x7c,0x39,0x5e,0x79,0x71};unsigned char data dis_buf[16];unsigned char data dis_index;char hour,min,sec,wang,year,mouth,day;unsigned char sec100;

    标签: 数字 显示电路

    上传时间: 2013-11-24

    上传用户:fdmpy

  • MPC106 PCI Bridge/Memory Contr

    In this document, the term Ô60xÕ is used to denote a 32-bit microprocessor from the PowerPC architecture family that conforms to the bus interface of the PowerPC 601ª, PowerPC 603ª, or PowerPC 604 microprocessors. Note that this does not include the PowerPC 602ª microprocessor which has a multiplexed address/data bus. 60x processors implement the PowerPC architecture as it is speciÞed for 32-bit addressing, which provides 32-bit effective (logical) addresses, integer data types of 8, 16, and 32 bits,and ßoating-point data types of 32 and 64 bits (single-precision and double-precision).1.1 Overview The MPC106 provides an integrated high-bandwidth, high-performance, TTL-compatible interface between a 60x processor, a secondary (L2) cache or additional (up to four total) 60x processors, the PCI bus,and main memory. This section provides a block diagram showing the major functional units of the 106 and describes brießy how those units interact.Figure 1 shows the major functional units within the 106. Note that this is a conceptual block diagram intended to show the basic features rather than an attempt to show how these features are physically implemented on the device.

    标签: Bridge Memory Contr MPC

    上传时间: 2013-10-08

    上传用户:18711024007

  • DS1302+AT89S52+LED时钟程序(C语言源代码+

    #include<reg51.h>/*************************ds1302与at89s52引脚连接********************/sbit T_RST=P3^5; sbit T_CLK=P3^6;                 sbit T_IO=P3^7;                                sbit ACC0=ACC^0;sbit ACC7=ACC^7;unsigned char seg[]={0x00,0x01,0x02,0x03,0x04,0x05,0x06,0x07,0x08,0x09};         //0~~9段码 /******************DS1302:写入操作(上升沿)*********************/ void write_byte(unsigned char da){   unsigned char i;   ACC=da;   for(i=8;i>0;i--)   {       T_IO=ACC0;   T_CLK=0;           T_CLK=1;      ACC=ACC>>1;   }} /******************DS1302:读取操作(下降沿)*****************/unsigned char read_byte(void){   unsigned char i;   for(i=0;i<8;i++)   {      ACC=ACC>>1;   T_CLK = 1;   T_CLK = 0;      ACC7 = T_IO;   }   return(ACC); } /******************DS1302:写入数据(先送地址,再写数据)***************************/ void write_1302(unsigned char addr,unsigned char da){   T_RST=0;    //停止工作   T_CLK=0;                                    T_RST=1;   //重新工作   write_byte(addr);    //写入地址      write_byte(da);   T_RST=0;   T_CLK=1;}

    标签: 1302 LED DS AT

    上传时间: 2014-01-17

    上传用户:sglccwk

  • 串行编程器源程序(Keil C语言)

    串行编程器源程序(Keil C语言)//FID=01:AT89C2051系列编程器//实现编程的读,写,擦等细节//AT89C2051的特殊处:给XTAL一个脉冲,地址计数加1;P1的引脚排列与AT89C51相反,需要用函数转换#include <e51pro.h> #define C2051_P3_7 P1_0#define C2051_P1 P0//注意引脚排列相反#define C2051_P3_0  P1_1#define C2051_P3_1 P1_2#define C2051_XTAL P1_4#define C2051_P3_2 P1_5#define C2051_P3_3 P1_6#define C2051_P3_4 P1_7#define C2051_P3_5 P3_5 void InitPro01()//编程前的准备工作{ SetVpp0V(); P0=0xff; P1=0xff; C2051_P3_5=1; C2051_XTAL=0; Delay_ms(20); nAddress=0x0000; SetVpp5V();} void ProOver01()//编程结束后的工作,设置合适的引脚电平{ SetVpp5V(); P0=0xff; P1=0xff; C2051_P3_5=1; C2051_XTAL=1;} BYTE GetData()//从P0口获得数据{ B_0=P0_7; B_1=P0_6; B_2=P0_5; B_3=P0_4; B_4=P0_3; B_5=P0_2; B_6=P0_1; B_7=P0_0; return B;} void SetData(BYTE DataByte)//转换并设置P0口的数据{ B=DataByte; P0_0=B_7; P0_1=B_6; P0_2=B_5; P0_3=B_4; P0_4=B_3; P0_5=B_2; P0_6=B_1; P0_7=B_0;} void ReadSign01()//读特征字{ InitPro01(); Delay_ms(1);//----------------------------------------------------------------------------- //根据器件的DataSheet,设置相应的编程控制信号 C2051_P3_3=0; C2051_P3_4=0; C2051_P3_5=0; C2051_P3_7=0; Delay_ms(20); ComBuf[2]=GetData(); C2051_XTAL=1; C2051_XTAL=0; Delay_us(20); ComBuf[3]=GetData(); ComBuf[4]=0xff;//----------------------------------------------------------------------------- ProOver01();} void Erase01()//擦除器件{ InitPro01();//----------------------------------------------------------------------------- //根据器件的DataSheet,设置相应的编程控制信号 C2051_P3_3=1; C2051_P3_4=0; C2051_P3_5=0; C2051_P3_7=0; Delay_ms(1); SetVpp12V(); Delay_ms(1); C2051_P3_2=0; Delay_ms(10); C2051_P3_2=1; Delay_ms(1);//----------------------------------------------------------------------------- ProOver01();} BOOL Write01(BYTE Data)//写器件{//----------------------------------------------------------------------------- //根据器件的DataSheet,设置相应的编程控制信号 //写一个单元 C2051_P3_3=0; C2051_P3_4=1; C2051_P3_5=1; C2051_P3_7=1; SetData(Data); SetVpp12V(); Delay_us(20); C2051_P3_2=0; Delay_us(20); C2051_P3_2=1; Delay_us(20); SetVpp5V(); Delay_us(20); C2051_P3_4=0; Delay_ms(2); nTimeOut=0; P0=0xff; nTimeOut=0; while(!GetData()==Data)//效验:循环读,直到读出与写入的数相同 {  nTimeOut++;  if(nTimeOut>1000)//超时了  {   return 0;  } } C2051_XTAL=1; C2051_XTAL=0;//一个脉冲指向下一个单元//----------------------------------------------------------------------------- return 1;} BYTE Read01()//读器件{ BYTE Data;//----------------------------------------------------------------------------- //根据器件的DataSheet,设置相应的编程控制信号 //读一个单元 C2051_P3_3=0; C2051_P3_4=0; C2051_P3_5=1; C2051_P3_7=1; Data=GetData(); C2051_XTAL=1; C2051_XTAL=0;//一个脉冲指向下一个单元//----------------------------------------------------------------------------- return Data;} void Lock01()//写锁定位{ InitPro01();//先设置成编程状态//----------------------------------------------------------------------------- //根据器件的DataSheet,设置相应的编程控制信号 if(ComBuf[2]>=1)//ComBuf[2]为锁定位 {  C2051_P3_3=1;  C2051_P3_4=1;  C2051_P3_5=1;  C2051_P3_7=1;  Delay_us(20);  SetVpp12V();  Delay_us(20);  C2051_P3_2=0;  Delay_us(20);  C2051_P3_2=1;  Delay_us(20);  SetVpp5V(); } if(ComBuf[2]>=2) {  C2051_P3_3=1;  C2051_P3_4=1;  C2051_P3_5=0;  C2051_P3_7=0;  Delay_us(20);  SetVpp12V();  Delay_us(20);  C2051_P3_2=0;  Delay_us(20);  C2051_P3_2=1;  Delay_us(20);  SetVpp5V(); }//----------------------------------------------------------------------------- ProOver01();} void PreparePro01()//设置pw中的函数指针,让主程序可以调用上面的函数{ pw.fpInitPro=InitPro01; pw.fpReadSign=ReadSign01; pw.fpErase=Erase01; pw.fpWrite=Write01; pw.fpRead=Read01; pw.fpLock=Lock01; pw.fpProOver=ProOver01;}

    标签: Keil 串行 C语言 编程器

    上传时间: 2013-11-12

    上传用户:gut1234567

  • 用C51写的普通拼音输入法源程序代码

    用C51写的普通拼音输入法源程序代码:原作使用了一个二维数组用以查表,我认为这样比较的浪费空间,而且每个字表的索引地址要手工输入,效率不高。所以我用结构体将其改写了一下。就是大家现在看到的这个。  因为代码比较的大,共有6,000多汉字,这样就得要12,000 byte来存放GB内码,所以也是没办法的.编译结果约为3000h,因为大部分是索引表,代码优化几乎无效。    在Keil C里仿真芯片选用的是华邦的W77E58,它有32k ROM, 256B on-chip RAM, 1K on-chip SRAM (用DPTR1指针寻址,相当于有1K的片上xdata)。条件有限,没有上片试验,仿真而已。  打算将其移植到AVR上,但CodeAVRC与IAR EC++在结构体、指针的定义使用上似乎与C51不太一样,现在还未搞定。还希望在这方面有经验的网友能给予指导。 #include<stdio.h> char * py_ime(char *); void main(void){ while(1)    {     char input_string[]="yI";     xdata char chinese_string[255];     sprintf(chinese_string,"%s",py_ime(input_string));    }}

    标签: C51 拼音输入法 代码 源程序

    上传时间: 2013-10-30

    上传用户:cainaifa

  • 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

  • 24c01a的读写程序

    #include <at24c01a.h>/*************************************************向24C01A写入一个字节输入:E2ROM地址,字节数据******************************************************/void write24c01a(uchar uadd_1,uchar udata_1){sendbyte=0xa0;start();send(sendbyte);if (!ack())continue;send(uadd_1);if (!ack())continue;send(udata_1)if (!ack())continue;stop();}/**********************************发送开始*****************************************/void start(void){a_scl=1;a_sda=1;a_sda=0;a_scl=0;a_scl=1;}/********************************************发送停止*******************************************/void stop(void){a_scl=0;a_sda=0;a_scl=1;a_sda=1;} /*********************************************发送反馈************************************************/bit ack(void){int a_acka_scl=0;a_scl=0;a_scl=0;a_scl=1;a_ack=a_sda;a_scl=0;return(a_ack)}/**************************************发送无反馈********************************************/bit noack(void){int a_ack;a_scl=1;a_scl=1;a_scl=0;}/*******************************************发送****************************************************/void send(uchar  undata){uchar i;sendbyte=undatafor(i=8;i>0;i--){a_sda=sendbyte7;a_scl=0;a_scl=1;sendbyte=sendbyte<<1}}/********************************************接受****************************************************/ void   receive(void){int i;uchar data;for(i=8;i>0;i--){ a_scl=1;receivebyte7=a_sda;a_scl=0;receivebyte=receivebyte>>1}receivedata=receivebyte;}/********************************************向 24c01a读一个字节;输入:EEROM地址;输出:EEROM数据;********************************************/void read24c01a(uchar  counter){receivebyte=0xa1;start();send(receivebyte);if (!ack())continue;send(counter);if (!ack())continue;receive()noack();stop();}

    标签: 24c01a 读写程序

    上传时间: 2013-12-23

    上传用户:wxhwjf

  • RD系列微型打印机打印实例

    C51控制并口打印机实例:/* 沈阳新荣达电子 *//* 2004-12-7 */#include <reg52.h>#define uchar unsigned char#define uint unsigned int#define data_8 P0sbit BUSY = P1^2; //打印机 BUSY 接P1.2sbit STB = P1^0; //打印机 STB 接P1.0void print(uchar j) //打印子程序{ uchar i;while(BUSY){}; //BUSY=1,打印机忙,等待BUSY 为0 再发数data_8=j;STB=0;i++;i--;STB=1; //给出数据锁存时钟BUSY=1;}void main(void){BUSY = 1; //忙信号置高STB = 1; //选通信号置高print(0x1b); //打印机初始化命令print(0x38);print(0x04);for(;;){print(0xd0); //发送汉字内码“新荣达”print(0xc2);print(0xc8);print(0xd9);print(0xb4);print(0xef);print(0x0d); //换行}}

    标签: 微型打印机 打印

    上传时间: 2013-11-13

    上传用户:lwq11