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  • multisim10.0仿真软件破解版下载

    multisim10.0仿真软件破解版下载:【软件介绍】 Multisim本是加拿大图像交互技术公司(Interactive Image Technoligics简称IIT公司)推出的以Windows为基础的仿真工具,被美国NI公司收购后,更名为NI Multisim ,而V10.0是其(即NI,National Instruments)最新推出的Multisim最新版本。 目前美国NI公司的EWB的包含有电路仿真设计的模块Multisim、PCB设计软件Ultiboard、布线引擎Ultiroute及通信电路分析与设计模块Commsim 4个部分,能完成从电路的仿真设计到电路版图生成的全过程。Multisim、Ultiboard、Ultiroute及Commsim 4个部分相互独立,可以分别使用。Multisim、Ultiboard、Ultiroute及Commsim 4个部分有增强专业版(Power Professional)、专业版(Professional)、个人版(Personal)、教育版(Education)、学生版(Student)和演示版(Demo)等多个版本,各版本的功能和价格有着明显的差异。 NI Multisim 10用软件的方法虚拟电子与电工元器件,虚拟电子与电工仪器和仪表,实现了“软件即元器件”、“软件即仪器”。NI Multisim 10是一个原理电路设计、电路功能测试的虚拟仿真软件。 NI Multisim 10的元器件库提供数千种电路元器件供实验选用,同时也可以新建或扩充已有的元器件库,而且建库所需的元器件参数可以从生产厂商的产品使用手册中查到,因此也很方便的在工程设计中使用。 NI Multisim 10的虚拟测试仪器仪表种类齐全,有一般实验用的通用仪器,如万用表、函数信号发生器、双踪示波器、直流电源;而且还有一般实验室少有或没有的仪器,如波特图仪、字信号发生器、逻辑分析仪、逻辑转换器、失真仪、频谱分析仪和网络分析仪等。 NI Multisim 10具有较为详细的电路分析功能,可以完成电路的瞬态分析和稳态分析、 时域和频域分析、器件的线性和非线性分析、电路的噪声分析和失真分析、离散傅里叶分析、电路零极点分析、交直流灵敏度分析等电路分析方法,以帮助设计人员分析电路的性能。 NI Multisim 10可以设计、测试和演示各种电子电路,包括电工学、模拟电路、数字电路、射频电路及微控制器和接口电路等。可以对被仿真的电路中的元器件设置各种故障,如开路、短路和不同程度的漏电等,从而观察不同故障情况下的电路工作状况。在进行仿真的同时,软件还可以存储测试点的所有数据,列出被仿真电路的所有元器件清单,以及存储测试仪器的工作状态、显示波形和具体数据等。 NI Multisim 10有丰富的Help功能,其Help系统不仅包括软件本身的操作指南,更要的是包含有元器件的功能解说,Help中这种元器件功能解说有利于使用EWB进行CAI教学。另外,NI Multisim10还提供了与国内外流行的印刷电路板设计自动化软件Protel及电路仿真软件PSpice之间的文件接口,也能通过Windows的剪贴板把电路图送往文字处理系统中进行编辑排版。支持VHDL和Verilog HDL语言的电路仿真与设计。 利用NI Multisim 10可以实现计算机仿真设计与虚拟实验,与传统的电子电路设计与实验方法相比,具有如下特点:设计与实验可以同步进行,可以边设计边实验,修改调试方便;设计和实验用的元器件及测试仪器仪表齐全,可以完成各种类型的电路设计与实验;可方便地对电路参数进行测试和分析;可直接打印输出实验数据、测试参数、曲线和电路原理图;实验中不消耗实际的元器件,实验所需元器件的种类和数量不受限制,实验成本低,实验速度快,效率高;设计和实验成功的电路可以直接在产品中使用。 NI Multisim 10易学易用,便于电子信息、通信工程、自动化、电气控制类专业学生自学、便于开展综合性的设计和实验,有利于培养综合分析能力、开发和创新的能力。 multisim10.0激活码及破解序列号

    标签: multisim 10.0 仿真软件

    上传时间: 2013-10-28

    上传用户:com1com2

  • Power PCB安装破解文件

    很好很管用的破解文件.

    标签: Power PCB 破解文件

    上传时间: 2013-10-21

    上传用户:aeiouetla

  • Xilinx UltraScale:新一代架构满足您的新一代架构需求(EN)

      中文版详情浏览:http://www.elecfans.com/emb/fpga/20130715324029.html   Xilinx UltraScale:The Next-Generation Architecture for Your Next-Generation Architecture    The Xilinx® UltraScale™ architecture delivers unprecedented levels of integration and capability with ASIC-class system- level performance for the most demanding applications.   The UltraScale architecture is the industr y's f irst application of leading-edge ASIC architectural enhancements in an All Programmable architecture that scales from 20 nm planar through 16 nm FinFET technologies and beyond, in addition to scaling from monolithic through 3D ICs. Through analytical co-optimization with the X ilinx V ivado® Design Suite, the UltraScale architecture provides massive routing capacity while intelligently resolving typical bottlenecks in ways never before possible. This design synergy achieves greater than 90% utilization with no performance degradation.   Some of the UltraScale architecture breakthroughs include:   • Strategic placement (virtually anywhere on the die) of ASIC-like system clocks, reducing clock skew by up to 50%    • Latency-producing pipelining is virtually unnecessary in systems with massively parallel bus architecture, increasing system speed and capability   • Potential timing-closure problems and interconnect bottlenecks are eliminated, even in systems requiring 90% or more resource utilization   • 3D IC integration makes it possible to build larger devices one process generation ahead of the current industr y standard    • Greatly increased system performance, including multi-gigabit serial transceivers, I/O, and memor y bandwidth is available within even smaller system power budgets   • Greatly enhanced DSP and packet handling   The Xilinx UltraScale architecture opens up whole new dimensions for designers of ultra-high-capacity solutions.

    标签: UltraScale Xilinx 架构

    上传时间: 2013-11-21

    上传用户:wxqman

  • 使用Artix-7 FPGA 降低您的系统功耗与成本

    As businesses and consumers expect more fromportable electronics, the FPGA industry has beencompelled to re-think how it serves these low-power,cost-sensitive markets. Application classes like

    标签: Artix FPGA 功耗

    上传时间: 2013-11-08

    上传用户:immanuel2006

  • 采用TÜV认证的FPGA开发功能安全系统

    This white paper discusses how market trends, the need for increased productivity, and new legislation have accelerated the use of safety systems in industrial machinery. This TÜV-qualified FPGA design methodology is changing the paradigms of safety designs and will greatly reduce development effort, system complexity, and time to market. This allows FPGA users to design their own customized safety controllers and provides a significant competitive advantage over traditional microcontroller or ASIC-based designs. Introduction The basic motivation of deploying functional safety systems is to ensure safe operation as well as safe behavior in cases of failure. Examples of functional safety systems include train brakes, proximity sensors for hazardous areas around machines such as fast-moving robots, and distributed control systems in process automation equipment such as those used in petrochemical plants. The International Electrotechnical Commission’s standard, IEC 61508: “Functional safety of electrical/electronic/programmable electronic safety-related systems,” is understood as the standard for designing safety systems for electrical, electronic, and programmable electronic (E/E/PE) equipment. This standard was developed in the mid-1980s and has been revised several times to cover the technical advances in various industries. In addition, derivative standards have been developed for specific markets and applications that prescribe the particular requirements on functional safety systems in these industry applications. Example applications include process automation (IEC 61511), machine automation (IEC 62061), transportation (railway EN 50128), medical (IEC 62304), automotive (ISO 26262), power generation, distribution, and transportation. 图Figure 1. Local Safety System

    标签: FPGA 安全系统

    上传时间: 2013-11-14

    上传用户:zoudejile

  • protel 99se 使用技巧以及常见问题解决方法

    protel 99se 使用技巧以及常见问题解决方法:里面有一些protel 99se 特别技巧,还有我们经常遇到的一些问题!如何使一条走线至两个不同位置零件的距离相同? 您可先在Design/Rule/High Speed/Matched Net Lengths的规则中来新增规则设定,最后再用Tools/EqualizeNet Lengths 来等长化即可。 Q02、在SCHLIB中造一零件其PIN的属性,如何决定是Passive, Input, I/O, Hi- Z,Power,…..?在HELP中能找到说明吗?市面有关 SIM?PLD?的书吗?或贵公司有讲义? 你可在零件库自制零件时点选零件Pin脚,并在Electrical Type里,可以自行设定PIN的 属性,您可参考台科大的Protel sch 99se 里面有介绍关于SIM的内容。 Q03、请问各位业界前辈,如何能顺利读取pcad8.6版的线路图,烦请告知 Protel 99SE只能读取P-CAD 2000的ASCII档案格式,所以你必须先将P-CAD8.6版的格式转为P-CAD 2000的档案格式,才能让Protel读取。 Q04、请问我该如何标示线径大小的那个平方呢 你可以将格点大小设小,还有将字形大小缩小,再放置数字的平方位置即可。 Q05、请问我一次如何更改所有组件的字型 您可以点选其中一个组件字型,再用Global的方法就可以达成你的要求。

    标签: protel 99 se 使用技巧

    上传时间: 2015-01-01

    上传用户:yxgi5

  • Xilinx的Zynq可扩展式处理平台(EPP)电子教材

    Abstract: This reference design explains how to power the Xilinx Zynq Extensible Processing Platform (EPP) and peripheral ICs using

    标签: Xilinx Zynq EPP 扩展式

    上传时间: 2013-10-13

    上传用户:peterli123456

  • 常用近500个三极管(MOSFET)中文资料

    各种三级管及其的性能参数

    标签: MOSFET 500 三极管

    上传时间: 2013-11-18

    上传用户:ggwz258

  • XAPP440 - Xilinx CPLD的上电性能

    Applying power to a standard logic chip, SRAM, or EPROM, usually results in output pinstracking the applied voltage as it rises. Programmable logic attempts to emulate that behavior,but physics forbids perfect emulation, due to the device programmability. It requires care tospecify the pin behavior, because programmable parts encounter unknown variables – yourdesign and your power environment.

    标签: Xilinx XAPP CPLD 440

    上传时间: 2013-11-24

    上传用户:253189838

  • XAPP144 -设计CPLD多电压系统

    Today’s digital systems combine a myriad of chips with different voltage configurations.Designers must interface 2.5V processors with 3.3V memories—both RAM and ROM—as wellas 5V buses and multiple peripheral chips. Each chip has specific power supply needs. CPLDsare ideal for handling the multi-voltage interfacing, but do require forethought to ensure correctoperation.

    标签: XAPP CPLD 144 电压

    上传时间: 2013-11-10

    上传用户:yy_cn