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  • Proteus examples FOR fun!

    Proteus examples FOR fun!

    標(biāo)簽: examples Proteus FOR fun

    上傳時(shí)間: 2013-09-25

    上傳用戶(hù):tianyi996

  • Verilog Coding Style FOR Efficient Digital Design

      In this paper, we discuss efficient coding and design styles using verilog. This can beimmensely helpful FOR any digital designer initiating designs. Here, we address different problems rangingfrom RTL-Gate Level simulation mismatch to race conditions in writing behavioral models. All theseproblems are accompanied by an example to have a better idea, and these can be taken care off if thesecoding guidelines are followed. Discussion of all the techniques is beyond the scope of this paper, however,here we try to cover a few of them.

    標(biāo)簽: Efficient Verilog Digital Coding

    上傳時(shí)間: 2013-11-22

    上傳用戶(hù):han_zh

  • State Machine Coding Styles FOR Synthesis

      本文論述了狀態(tài)機(jī)的verilog編碼風(fēng)格,以及不同編碼風(fēng)格的優(yōu)缺點(diǎn),Steve Golson's 1994 paper, "State Machine Design Techniques FOR Verilog and VHDL" [1], is agreat paper on state machine design using Verilog, VHDL and Synopsys tools. Steve's paper alsooffers in-depth background concerning the origin of specific state machine types.This paper, "State Machine Coding Styles FOR Synthesis," details additional insights into statemachine design including coding style approaches and a few additional tricks.

    標(biāo)簽: Synthesis Machine Coding Styles

    上傳時(shí)間: 2013-10-15

    上傳用戶(hù):dancnc

  • LT1017:Circuitry FOR Single Cell Operation

      Portable, battery-powered operation of electronic apparatushas become increasingly desirable. Medical, remotedata acquisition, power monitoring and other applicationsare good candidates FOR battery operation. In some circumstances,due to space, power or reliability considerations,it is preferable to operate the circuitry from a single 1.5Vcell. UnFORtunately, a 1.5V supply eliminates almost alllinear ICs as design candidates. In fact, the LM10 opamp-reference and the LT®1017/LT1018 comparators arethe only IC gain blocks fully specifi ed FOR 1.5V operation.Further complications are presented by the 600mV dropof silicon transistors and diodes. This limitation consumesa substantial portion of available supply range, makingcircuit design diffi cult. Additionally, any circuit designedFOR 1.5V operation must function at end-of-life batteryvoltage, typically 1.3V. (See Box Section, “ComponentsFOR 1.5V Operation.”)

    標(biāo)簽: Circuitry Operation Single 1017

    上傳時(shí)間: 2013-12-20

    上傳用戶(hù):Wwill

  • PCB Design Considerations and Guidelines FOR 0.4mm and 0.5mm WLPs

    Abstract: Using a wafer-level package (WLP) can reduce the overall size and cost of your solution.However when using a WLP IC, the printed circuit board (PCB) layout can become more complex and, ifnot carefully planned, result in an unreliable design. This article presents some PCB designconsiderations and general recommendations FOR choosing a 0.4mm- or 0.5mm-pitch WLP FOR yourapplication.

    標(biāo)簽: Considerations Guidelines and Design

    上傳時(shí)間: 2013-10-14

    上傳用戶(hù):ysystc699

  • Circuitry FOR Single Cell Operation

      Portable, battery-powered operation of electronic apparatushas become increasingly desirable. Medical, remotedata acquisition, power monitoring and other applicationsare good candidates FOR batteryoperation. In some circumstances,due to space, power or reliability considerations,it is preferable to operate the circuitry from a single 1.5Vcell. UnFORtunately, a 1.5V supply eliminates almost alllinear ICs as design candidates. In fact, the LM10 opamp-reference and the LT®1017/LT1018 comparators arethe only IC gain blocks fully specifi ed FOR 1.5V operation.Further complications are presented by the 600mV dropof silicon transistors and diodes. This limitation consumesa substantial portion of available supply range, makingcircuit design diffi cult. Additionally, any circuit designedFOR 1.5V operation mustfunction at end-of-life batteryvoltage, typically 1.3V. (See Box Section, “ComponentsFOR 1.5V Operation.”)

    標(biāo)簽: Circuitry Operation Single Cell

    上傳時(shí)間: 2013-10-30

    上傳用戶(hù):hz07104032

  • IAR+FOR+MSP430+快速入門(mén)

    IAR+FOR+MSP430+快速入門(mén)

    標(biāo)簽: IAR FOR 430 MSP

    上傳時(shí)間: 2013-10-16

    上傳用戶(hù):18752787361

  • 單片機(jī)C語(yǔ)言(FOR)延時(shí)計(jì)算

    單片機(jī)C語(yǔ)言(FOR)延時(shí)計(jì)算

    標(biāo)簽: FOR 單片機(jī) C語(yǔ)言 延時(shí)計(jì)算

    上傳時(shí)間: 2013-10-28

    上傳用戶(hù):maizezhen

  • 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(hù):zhangzhenyu

  • I2C slave routines FOR the 87L

    The 87LPC76X Microcontroller combines in a small package thebenefits of a high-perFORmance microcontroller with on-boardhardware supporting the Inter-Integrated Circuit (I2C) bus interface.The 87LPC76X can be programmed both as an I2C bus master, aslave, or both. An overview of the I2C bus and description of the bussupport hardware in the 87LPC76X microcontrollers appears inapplication note AN464, Using the 87LPC76X Microcontroller as anI2C Bus Master. That application note includes a programmingexample, demonstrating a bus-master code. Here we show anexample of programming the microcontroller as an I2C slave.The code listing demonstrates communications routines FOR the87LPC76X as a slave on the I2C bus. It compliments the program inAN464 which demonstrates the 87LPC76X as an I2C bus master.One may demonstrate two 87LPC76X devices communicating witheach other on the I2C bus, using the AN464 code in one, and theprogram presented here in the other. The examples presented hereand in AN464 allow the 87LPC76X to be either a master or a slave,but not both. Switching between master and slave roles in amultimaster environment is described in application note AN435.The software FOR a slave on the bus is relatively simple, as theprocessor plays a relatively passive role. It does not initiate bustransfers on its own, but responds to a master initiating thecommunications. This is true whether the slave receives or transmitsdata—transmission takes place only as a response to a busmaster’s request. The slave does not have to worry about arbitrationor about devices which do not acknowledge their address. As theslave is not supposed to take control of the bus, we do not demandit to resolve bus exceptions or “hangups”. If the bus becomesinactive the processor simply withdraws, not interfering with themaster (or masters) on the bus which should (hopefully) try toresolve the situation.

    標(biāo)簽: routines slave I2C 87L

    上傳時(shí)間: 2013-11-19

    上傳用戶(hù):shirleyYim

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