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enable

  • To enable or Disable Task Manager

    To enable or Disable Task Manager

    標簽: Disable Manager enable Task

    上傳時間: 2013-11-29

    上傳用戶:cuiyashuo

  • 凌力爾特電池管理解決方案

    Linear Technology’s high performance battery management ICsenable long battery life and run time, while providing precision charging control, constantstatus monitoring and stringent battery protection. Our proprietary design techniques seamlesslymanage multiple input sources while providing small solution footprints, faster charging and100% standalone operation. Battery and circuit protection features enable improved thermalperformance and high reliability operation.

    標簽: 凌力爾特 電池管理 方案

    上傳時間: 2013-10-13

    上傳用戶:yyq123456789

  • GPS-2303C型直流穩壓電源使用說明

    GPS-3303C直流穩壓電源具有3組獨立直流電源輸出,3位數字顯示器,可同時顯示兩組電壓及電流,具有過載及反向極性保護,可選擇連續/動態負載,輸出 具有enable/Disable 控制,具有自動串聯及自動并聯同步操作,定電壓及定電流操作,并具有低漣波及雜訊的特點。

    標簽: 2303 GPS 直流穩壓電源 使用說明

    上傳時間: 2014-12-24

    上傳用戶:lijinchuan

  • VISHAY元器件應用

    Each year Vishay releases thousands of new components that enable our customers to create new and superior end products. We recognize that offering unique component solutions helps improve the performance of next-generation devices, overcome technical barriers, and create new markets.

    標簽: VISHAY 元器件

    上傳時間: 2013-12-14

    上傳用戶:ming529

  • NCV8503 集成復位輸出的LDO穩壓器產品簡介手冊及封裝

    NCV8503是一款高精度微功耗電源穩壓器。輸出電流可達400mA。該器件提供多個級別的輸出電壓供客戶選擇:2.5V、3.3V、5.0V,及可調輸出版本。在負載為400mA時,最大壓降僅為0.6V,電壓輸出精度在±2.0%以內。當enable=0V時,靜態電流低于1uA;如果enable=5V,負載為100uA靜態電流僅為200uA。非常適合電池供電設備。支持RESET輸出(帶DELAY功能),可用于微處理器邏輯控制。當輸出電壓達到1.0V時,RESET電路即可正常工作。當電源上電及電壓跌落于門檻電壓時,RESET電路輸出復位信號。

    標簽: 8503 NCV LDO 集成復位

    上傳時間: 2013-11-22

    上傳用戶:xieguodong1234

  • AT89C2051驅動步進電機的電路和源碼

    AT89C2051驅動步進電機的電路和源碼:AT89C2051驅動步進電機的電路和源碼 程序:stepper.c stepper.hex/* * STEPPER.C * sweeping stepper's rotor cw and cww 400 steps * Copyright (c) 1999 by W.Sirichote */#i nclude c:\mc5151io.h /* include i/o header file */ #i nclude c:\mc5151reg.hregister unsigned char j,flag1,temp; register unsigned int cw_n,ccw_n;unsigned char step[8]={0x80,0xc0,0x40,0x60,0x20,0x30,0x10,0x90} #define n 400/* flag1 mask byte 0x01 run cw() 0x02 run ccw() */main(){ flag1=0; serinit(9600); disable(); /* no need timer interrupt */ cw_n = n; /* initial step number for cw */ flag1 |=0x01; /* initial enable cw() */while(1){ { tick_wait(); /* wait for 10ms elapsed */energize(); /* round-robin execution the following tasks every 10ms */ cw(); ccw(); } }}cw(){ if((flag1&0x01)!=0) { cw_n--; /* decrement cw step number */ if (cw_n !=0) j++; /* if not zero increment index j */ else {flag1&=~0x01; /* disable cw() execution */ ccw_n = n; /* reload step number to ccw counter */ flag1 |=0x02; /* enable cww() execution */ } }

    標簽: C2051 2051 89C AT

    上傳時間: 2013-11-21

    上傳用戶:boyaboy

  • 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.

    標簽: C-bus 9555 SMBu PCA

    上傳時間: 2013-11-13

    上傳用戶:fredguo

  • 8-bit I2C-bus and SMBus IO port with reset

    The PCA9557 is a silicon CMOS circuit which provides parallel input/output expansion for SMBus and I2C-bus applications. The PCA9557 consists of an 8-bit input port register, 8-bit output port register, and an I2C-bus/SMBus interface. It has low current consumption and a high-impedance open-drain output pin, IO0. The system master can enable the PCA9557’s I/O as either input or output by writing to the configuration register. The system master can also invert the PCA9557 inputs by writing to the active HIGH polarity inversion register. Finally, the system master can reset the PCA9557 in the event of a time-out by asserting a LOW in the reset input. The power-on reset puts the registers in their default state and initializes the I2C-bus/SMBus state machine. The RESET pin causes the same reset/initialization to occur without de-powering the part.

    標簽: C-bus SMBus reset port

    上傳時間: 2014-01-18

    上傳用戶:bs2005

  • PC機之間串口通信的實現

    PC機之間串口通信的實現一、實驗目的 1.熟悉微機接口實驗裝置的結構和使用方法。 2.掌握通信接口芯片8251和8250的功能和使用方法。 3.學會串行通信程序的編制方法。 二、實驗內容與要求 1.基本要求主機接收開關量輸入的數據(二進制或十六進制),從鍵盤上按“傳輸”鍵(可自行定義),就將該數據通過8251A傳輸出去。終端接收后在顯示器上顯示數據。具體操作說明如下:(1)出現提示信息“start with R in the board!”,通過調整乒乓開關的狀態,設置8位數據;(2)在小鍵盤上按“R”鍵,系統將此時乒乓開關的狀態讀入計算機I中,并顯示出來,同時顯示經串行通訊后,計算機II接收到的數據;(3)完成后,系統提示“do you want to send another data? Y/N”,根據用戶需要,在鍵盤按下“Y”鍵,則重復步驟(1),進行另一數據的通訊;在鍵盤按除“Y”鍵外的任意鍵,將退出本程序。2.提高要求 能夠進行出錯處理,例如采用奇偶校驗,出錯重傳或者采用接收方回傳和發送方確認來保證發送和接收正確。 三、設計報告要求 1.設計目的和內容 2.總體設計 3.硬件設計:原理圖(接線圖)及簡要說明 4.軟件設計框圖及程序清單5.設計結果和體會(包括遇到的問題及解決的方法) 四、8251A通用串行輸入/輸出接口芯片由于CPU與接口之間按并行方式傳輸,接口與外設之間按串行方式傳輸,因此,在串行接口中,必須要有“接收移位寄存器”(串→并)和“發送移位寄存器”(并→串)。能夠完成上述“串←→并”轉換功能的電路,通常稱為“通用異步收發器”(UART:Universal Asynchronous Receiver and Transmitter),典型的芯片有:Intel 8250/8251。8251A異步工作方式:如果8251A編程為異步方式,在需要發送字符時,必須首先設置TXEN和CTS#為有效狀態,TXEN(Transmitter enable)是允許發送信號,是命令寄存器中的一位;CTS#(Clear To Send)是由外設發來的對CPU請求發送信號的響應信號。然后就開始發送過程。在發送時,每當CPU送往發送緩沖器一個字符,發送器自動為這個字符加上1個起始位,并且按照編程要求加上奇/偶校驗位以及1個、1.5個或者2個停止位。串行數據以起始位開始,接著是最低有效數據位,最高有效位的后面是奇/偶校驗位,然后是停止位。按位發送的數據是以發送時鐘TXC的下降沿同步的,也就是說這些數據總是在發送時鐘TXC的下降沿從8251A發出。數據傳輸的波特率取決于編程時指定的波特率因子,為發送器時鐘頻率的1、1/16或1/64。當波特率指定為16時,數據傳輸的波特率就是發送器時鐘頻率的1/16。CPU通過數據總線將數據送到8251A的數據輸出緩沖寄存器以后,再傳輸到發送緩沖器,經移位寄存器移位,將并行數據變為串行數據,從TxD端送往外部設備。在8251A接收字符時,命令寄存器的接收允許位RxE(Receiver enable)必須為1。8251A通過檢測RxD引腳上的低電平來準備接收字符,在沒有字符傳送時RxD端為高電平。8251A不斷地檢測RxD引腳,從RxD端上檢測到低電平以后,便認為是串行數據的起始位,并且啟動接收控制電路中的一個計數器來進行計數,計數器的頻率等于接收器時鐘頻率。計數器是作為接收器采樣定時,當計數到相當于半個數位的傳輸時間時再次對RxD端進行采樣,如果仍為低電平,則確認該數位是一個有效的起始位。若傳輸一個字符需要16個時鐘,那么就是要在計數8個時鐘后采樣到低電平。之后,8251A每隔一個數位的傳輸時間對RxD端采樣一次,依次確定串行數據位的值。串行數據位順序進入接收移位寄存器,通過校驗并除去停止位,變成并行數據以后通過內部數據總線送入接收緩沖器,此時發出有效狀態的RxRDY信號通知CPU,通知CPU8251A已經收到一個有效的數據。一個字符對應的數據可以是5~8位。如果一個字符對應的數據不到8位,8251A會在移位轉換成并行數據的時候,自動把他們的高位補成0。 五、系統總體設計方案根據系統設計的要求,對系統設計的總體方案進行論證分析如下:1.獲取8位開關量可使用實驗臺上的8255A可編程并行接口芯片,因為只要獲取8位數據量,只需使用基本輸入和8位數據線,所以將8255A工作在方式0,PA0-PA7接實驗臺上的8位開關量。2.當使用串口進行數據傳送時,雖然同步通信速度遠遠高于異步通信,可達500kbit/s,但由于其需要有一個時鐘來實現發送端和接收端之間的同步,硬件電路復雜,通常計算機之間的通信只采用異步通信。3.由于8251A本身沒有時鐘,需要外部提供,所以本設計中使用實驗臺上的8253芯片的計數器2來實現。4:顯示和鍵盤輸入均使用DOS功能調用來實現。設計思路框圖,如下圖所示: 六、硬件設計硬件電路主要分為8位開關量數據獲取電路,串行通信數據發送電路,串行通信數據接收電路三個部分。1.8位開關量數據獲取電路該電路主要是利用8255并行接口讀取8位乒乓開關的數據。此次設計在獲取8位開關數據量時采用8255令其工作在方式0,A口輸入8位數據,CS#接實驗臺上CS1口,對應端口為280H-283H,PA0-PA7接8個開關。2.串行通信電路串行通信電路本設計中8253主要為8251充當頻率發生器,接線如下圖所示。

    標簽: PC機 串口通信

    上傳時間: 2013-12-19

    上傳用戶:小火車啦啦啦

  • An easy way to work with Exter

    Internal Interrupts are used to respond to asynchronous requests from a certain part of themicrocontroller that needs to be serviced. Each peripheral in the TriCore as well as theBus Control Unit, the Debug Unit, the Peripheral Control Processor (PCP) and the CPUitself can generate an Interrupt Request.So what is an external Interrupt?An external Interrupt is something alike as the internal Interrupt. The difference is that anexternal Interrupt request is caused by an external event. Normally this would be a pulseon Port0 or Port1, but it can be even a signal from the input buffer of the SSC, indicatingthat a service is requested.The User’s Manual does not explain this aspect in detail so this ApNote will explain themost common form of an external Interrupt request. This ApNote will show that there is aneasy way to react on a pulse on Port0 or Port1 and to create with this impulse an InterruptService Request. Later in the second part of the document, you can find hints on how todebounce impulses to enable the use of a simple switch as the input device.Note: You will find additional information on how to setup the Interrupt System in theApNote “First steps through the TriCore Interrupt System” (AP3222xx)1. It would gobeyond the scope of this document to explain this here, but you will find selfexplanatoryexamples later on.

    標簽: Exter easy work with

    上傳時間: 2013-10-27

    上傳用戶:zhangyigenius

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