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  • 基于單DSP的VoIP模擬電話適配器研究與實(shí)現(xiàn)

    基于單DSP的VoIP模擬電話適配器研究與實(shí)現(xiàn):提出和實(shí)現(xiàn)了一種新穎的基于單個(gè)通用數(shù)字信號處理器(DSP)的VoIP模擬電話適配器方案。DSP的I/O和存儲資源非常有限,通常適于運(yùn)算密集型應(yīng)用,不適宜控制密集型應(yīng)用[5]。該系統(tǒng)高效利用單DSP的I/O和片內(nèi)外存儲器資源,采用μC/OS-II嵌入式實(shí)時(shí)操作系統(tǒng),支持SIP和TCP-UDP/IP協(xié)議,通過LAN或者寬帶接入,使普通電話機(jī)成為Internet終端,實(shí)現(xiàn)IP電話。該系統(tǒng)軟硬件結(jié)構(gòu)緊湊高效,運(yùn)行穩(wěn)定,成本低,具有廣闊的應(yīng)用前景。關(guān)鍵詞:模擬電話適配器;IP電話;數(shù)字信號處理器;μC/OS-II 【Abstract】This paper presents a VoIP ATA solution based on a single digital signal processor (DSP). DSPs are suitable for arithmetic-intensiveapplication and unsuitable for control-intensive application because of the limitation of I/O and memory resources. This solution is based on a 16-bitfixed-point DSP and μC/OS-II embedded real-time operating system. It makes good use of the limited resources, supports SIP and TCP-UDP/IPprotocol. It can connect the analog telephone to Internet and realize the VoIP application. This system has a great future for its high efficiency andlow cost.【Key words】Analog telephone adapter (ATA); Voice over Internet protocol (VoIP); Digital signal processor (DSP); μC/OS-II Research and Implementation of VoIPATA Based on Single DSP

    標(biāo)簽: VoIP DSP 模擬電話 適配器

    上傳時(shí)間: 2013-11-20

    上傳用戶:Wwill

  • USB Demonstration for DK3200 w

    The μPSD32xx family, from ST, consists of Flash programmable system devices with a 8032 MicrocontrollerCore. Of these, the μPSD3234A and μPSD3254A are notable for having a complete implementationof the USB hardware directly on the chip, complying with the Universal Serial Bus Specification, Revision1.1.This application note describes a demonstration program that has been written for the DK3200 hardwaredemonstration kit (incorporating a μPSD3234A device). It gives the user an idea of how simple it is to workwith the device, using the HID class as a ready-made device driver for the USB connection.IN-APPLICATION-PROGRAMMING (IAP) AND IN-SYSTEM-PROGRAMMING (ISP)Since the μPSD contains two independent Flash memory arrays, the Micro Controller Unit (MCU) can executecode from one memory while erasing and programming the other. Product firmware updates in thefield can be reliably performed over any communication channel (such as CAN, Ethernet, UART, J1850)using this unique architecture. For In-Application-Programming (IAP), all code is updated through theMCU. The main advantage for the user is that the firmware can be updated remotely. The target applicationruns and takes care on its own program code and data memory.IAP is not the only method to program the firmware in μPSD devices. They can also be programmed usingIn-System-Programming (ISP). A IEEE1149.1-compliant JTAG interface is included on the μPSD. Withthis, the entire device can be rapidly programmed while soldered to the circuit board (Main Flash memory,Secondary Boot Flash memory, the PLD, and all configuration areas). This requires no MCU participation.The MCU is completely bypassed. So, the μPSD can be programmed or reprogrammed any time, anywhere, even when completely uncommitted.Both methods take place with the device in its normal hardware environment, soldered to a printed circuitboard. The IAP method cannot be used without previous use of ISP, because IAP utilizes a small amountof resident code to receive the service commands, and to perform the desired operations.

    標(biāo)簽: Demonstration 3200 USB for

    上傳時(shí)間: 2014-02-27

    上傳用戶:zhangzhenyu

  • P90CL301 I2C driver routines

    This application note shows how to write an Inter Integrated Circuit bus driver (I²C) for the Philips P90CL301micro-controller.It is not only an example of writing a driver, but it also includes a set of application interface software routines toquickly implement a complete I²C multi-master system application.For specific applications the user will have to make minimal changes in the driver program. Using the drivermeans linking modules to your application software and including a header-file into the application sourceprograms. A small example program of how to use the driver is listed.The driver supports i.a. polled or interrupt driven message handling, slave message transfers and multi-mastersystem applications. Furthermore, it is made suitable for use in conjunction with real time operating systems, likepSOS+.

    標(biāo)簽: routines driver P90 301

    上傳時(shí)間: 2013-11-23

    上傳用戶:weixiao99

  • XA-S3 I2C driver software

    This application note demonstrates how to write an Inter Integrated Circuit bus driver (I2C) for the XA-S3 16-bitMicrocontroller from Philips Semiconductors.Not only the driver software is given. This note also contains a set of (example) interface routines and a smalldemo application program. All together it offers the user a quick start in writing a complete I2C system applicationwith the PXAS3x.The driver routines support interrupt driven single master transfers. Furthermore, the routines are suitable foruse in conjunction with real time operating systems.

    標(biāo)簽: software driver XA-S I2C

    上傳時(shí)間: 2013-11-02

    上傳用戶:zw380105939

  • Using the 87LPC76X microcontro

    I2C interface, is a very powerful tool for system designers. Theintegrated protocols allow systems to be completely software defined.Software development time of different products can be reduced byassembling a library of reusable software modules. In addition, themultimaster capability allows rapid testing and alignment ofend-products via external connections to an assembly-line computer.The mask programmable 87LPC76X and its EPROM version, the87LPC76X, can operate as a master or a slave device on the I2Csmall area network. In addition to the efficient interface to thededicated function ICs in the I2C family, the on-board interfacefacilities I/O and RAM expansion, access to EEPROM andprocessor-to-processor communications.

    標(biāo)簽: microcontro Using 76X LPC

    上傳時(shí)間: 2013-12-30

    上傳用戶:Artemis

  • DS1820 C51 子程序 (一線數(shù)據(jù)傳輸)

    //芯片資料請到www.elecfans.com查找 //DS1820 C51 子程序//這里以11.0592M晶體為例,不同的晶體速度可能需要調(diào)整延時(shí)的時(shí)間//sbit DQ =P2^1;//根據(jù)實(shí)際情況定義端口 typedef unsigned char byte;typedef unsigned int  word; //延時(shí)void delay(word useconds){  for(;useconds>0;useconds--);} //復(fù)位byte ow_reset(void){  byte presence;  DQ = 0; //pull DQ line low  delay(29); // leave it low for 480us  DQ = 1; // allow line to return high  delay(3); // wait for presence  presence = DQ; // get presence signal  delay(25); // wait for end of timeslot  return(presence); // presence signal returned}     // 0=presence, 1 = no part //從 1-wire 總線上讀取一個(gè)字節(jié)byte read_byte(void){  byte i;  byte value = 0;  for (i=8;i>0;i--)  {    value>>=1;    DQ = 0; // pull DQ low to start timeslot    DQ = 1; // then return high    delay(1);  //for (i=0; i<3; i++);     if(DQ)value|=0x80;    delay(6); // wait for rest of timeslot  }  return(value);} //向 1-WIRE 總線上寫一個(gè)字節(jié)void write_byte(char val){  byte i;  for (i=8; i>0; i--) // writes byte, one bit at a time  {    DQ = 0; // pull DQ low to start timeslot    DQ = val&0x01;    delay(5); // hold value for remainder of timeslot    DQ = 1;    val=val/2;  }  delay(5);} //讀取溫度char Read_Temperature(void){  union{    byte c[2];    int x;  }temp;   ow_reset();  write_byte(0xCC); // Skip ROM  write_byte(0xBE); // Read Scratch Pad  temp.c[1]=read_byte();  temp.c[0]=read_byte();  ow_reset();  write_byte(0xCC); //Skip ROM  write_byte(0x44); // Start Conversion  return temp.x/2;}

    標(biāo)簽: 1820 C51 DS 程序

    上傳時(shí)間: 2013-11-03

    上傳用戶:hongmo

  • 采用18b20芯片的溫度測量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(); /***************延時(shí)程序,單位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;}

    標(biāo)簽: 18b20 C51 芯片 溫度測量

    上傳時(shí)間: 2013-10-29

    上傳用戶:sssnaxie

  • PLC TM卡開發(fā)系統(tǒng)匯編程序(ATM8051)

    PLC TM卡開發(fā)系統(tǒng)匯編程序(ATM8051) ;***************** 定義管腳*************************SCL BIT P1.0SDA BIT P1.1GC BIT P1.2BZ BIT P3.6LEDI BIT P1.4LEDII BIT P1.5OK BIT 20H.1OUT1 BIT P1.3OUT2 BIT P1.0OUT3 BIT P1.1RXD BIT P3.0TXD BIT P3.1PCV BIT P3.2WPC BIT P3.3RPC BIT P3.5LEDR BIT P3.4LEDL BIT P3.6TM BIT P3.7;********************定義寄存器***********************ROMDTA EQU 30H;NUMBY EQU 61H;SLA EQU 60H;MTD EQU 2FH;MRD EQU 40H;TEMP EQU 50H;;ORG 00H;;INDEX:MOV P1, #00H;MOV P2, #0FFHMOV MTD ,#00HCALL REEMOV R0,40HCJNE R0,#01,NO;MOV P2,#1CHLJMP VIMEN MOV P2,#79HACALL TOUCHRESET ;JNC NO ;CALL READTM ;CJNE A,#01H,NO;NOPMOV MTD, #00HCALL WEENOPMOV P2,#4AHSETB BZCALL TIMECLR BZMOV PCON, #0FFHVIME:CALL TIME1CALL TOUCHRESETJNC VIMECALL READTMCJNE A, #01H,VIME;NOPNOPNOPIII: MOV MTD,#00HCALL REECALL BBJNB OK,NO1LJMP ZHUNO1:MOV MTD,#10H

    標(biāo)簽: 8051 PLC ATM TM卡

    上傳時(shí)間: 2014-03-24

    上傳用戶:448949

  • 用單片機(jī)配置FPGA—PLD設(shè)計(jì)技巧

    用單片機(jī)配置FPGA—PLD設(shè)計(jì)技巧 Configuration/Program Method for Altera Device Configure the FLEX Device You can use any Micro-Controller to configure the FLEX device–the main idea is clocking in ONE BITof configuration data per CLOCK–start from the BIT 0􀂄The total Configuration time–e.g. 10K10 need 15K byte configuration file•calculation equation–10K10* 1.5= 15Kbyte–configuration time for the file itself•15*1024*8*clock = 122,880Clock•assume the CLOCK is 4MHz•122,880*1/4Mhz=30.72msec

    標(biāo)簽: FPGA PLD 用單片機(jī) 設(shè)計(jì)技巧

    上傳時(shí)間: 2013-10-09

    上傳用戶:a67818601

  • 自動(dòng)檢測單片機(jī)80C51串行通訊時(shí)的波特率

    自動(dòng)檢測80C51 串行通訊中的波特率本文介紹一種在80C51 串行通訊應(yīng)用中自動(dòng)檢測波特率的方法。按照經(jīng)驗(yàn),程序起動(dòng)后所接收到的第1 個(gè)字符用于測量波特率。這種方法可以不用設(shè)定難于記憶的開關(guān),還可以免去在有關(guān)應(yīng)用中使用多種不同波特率的煩惱。人們可以設(shè)想:一種可靠地實(shí)現(xiàn)自動(dòng)波特檢測的方法是可能的,它無須嚴(yán)格限制可被確認(rèn)的字符。問題是:在各種的條件下,如何可以在大量允許出現(xiàn)的字符中找出波特率的定時(shí)間隔。顯然,最快捷的方法是檢測一個(gè)單獨(dú)位時(shí)間(single bit time),以確定接收波特率應(yīng)該是多少。可是,在RS-232 模式下,許多ASCII 字符并不能測量出一個(gè)單獨(dú)位時(shí)間。對于大多數(shù)字符來說,只要波特率存在合理波動(dòng)(這里的波特率是指標(biāo)準(zhǔn)波特率),從起始位到最后一位“可見”位的數(shù)據(jù)傳輸周期就會在一定范圍內(nèi)發(fā)生變化。此外,許多系統(tǒng)采用8 位數(shù)據(jù)、無奇偶校驗(yàn)的格式傳輸ASCII 字符。在這種格式里,普通ASCII 字節(jié)不會有MSB 設(shè)定

    標(biāo)簽: 80C51 自動(dòng)檢測 單片機(jī) 串行通訊

    上傳時(shí)間: 2013-10-15

    上傳用戶:shirleyYim

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