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Mosfet Power Loss

  • Switch Mode Power Supplies

    For many years prior to the 1970s, engineers designed and built switch mode power supplies (SMPSs) using methods based largely on intuitive and exper- imentally derived techniques. In general, these power supplies were able to achieve their primary goal of high-efficiency power conversion; unfortu- nately, due to the lack of adequate theoretical analysis techniques, many of these power supplies only marginally met their desired performance require- ments. In many cases, they were considered to be unreliable. 

    标签: Supplies Switch Power Mode

    上传时间: 2020-06-07

    上传用户:shancjb

  • Switch-Mode Power Supply Simulation

    Thepredecessorvolumeofthisbookwaspublishedin1996.Intheyears since then, some things have changed and some have not. Two of the things that have not changed are the desire for better models and faster simulations. I performed the original simulations on my “hyperfast” 133-MHz computer! At the time, I thought if I could just getafastercomputer,allofourSPICEproblemswouldbehistory,right? TodayIamsimulatingonacomputerthathasa2.6-GHzprocessorwith 512 MB of RAM, and I would still say that simulations run too slow. The computer technology has evolved, but so have the models. In 1996 wewereperformingsimulationson100-kHzpowerconverters,whereas today I routinely see 1- and 2-MHz power converters.

    标签: Switch-Mode Simulation Supply Power

    上传时间: 2020-06-07

    上传用户:shancjb

  • Switch-Mode Power Supply

    Switch-Mode Power Supply

    标签: Switch-Mode Supply Power

    上传时间: 2020-06-07

    上传用户:shancjb

  • WBG+Materials+for+Power+Electronics

    stract With  global  drivers  such  as  better  energy consumption, energy efficiency and reduction of greenhouse gases, CO 2 emission reduction has become key in every layer of the value chain. Power Electronics has definitely a role to play in these thrilling challenges. From converters down to compound semiconductors, innovation is leading to breakthrough technologies. Wide BandGap, Power Module Packaging, growth of Electric Vehicle market will game change the overall power electronic industry and supply chain. In this presentation we  will  review  power  electronics  trends,  from technologies to markets.

    标签: Electronics Materials Power WBG for

    上传时间: 2020-06-07

    上传用户:shancjb

  • Power Electronics And Motor Drives Advances

    I am presenting this novel book on advances and trends in power electronics and motor drives to the professional community with the expectation that it will be given the same wide and enthusiastic acceptance by practicing engineers, R&D professionals, univer- sity professors, and even graduate students that my other books in this area have. Unlike the traditional books available in the area of power electronics, this book has a unique presentation format that makes it convenient for group presentations that use Microsoft’s PowerPoint software. In fact, a disk is included that has a PowerPoint file on it that is ready for presentation with the core figures. Presentations can also be organized using just selected portions of the book

    标签: Electronics Advances Drives Power Motor And

    上传时间: 2020-06-10

    上传用户:shancjb

  • Artificial+Intelligence+in+Power+System

    n recent years, there have been many books published on power system optimization. Most of these books do not cover applications of artifi cial intelligence based methods. Moreover, with the recent increase of artifi cial intelligence applications in various fi elds, it is becoming a new trend in solving optimization problems in engineering in general due to its advantages of being simple and effi cient in tackling complex problems. For this reason, the application of artifi cial intelligence in power systems has attracted the interest of many researchers around the world during the last two decades. This book is a result of our effort to provide information on the latest applications of artifi cial intelligence to optimization problems in power systems before and after deregulation.

    标签: Intelligence Artificial System Power in

    上传时间: 2020-06-10

    上传用户:shancjb

  • RC吸收电路设计MOSFET吸收电路设计

    RC吸收电路设计MOSFET吸收电路设计

    标签: rc吸收电路 mosfet

    上传时间: 2021-10-16

    上传用户:

  • 基于TMS320F2812 光伏并网发电模拟装置PROTEL设计原理图+PCB+软件源码+WORD论

    基于TMS320F2812 光伏并网发电模拟装置PROTEL设计原理图+PCB+软件源码+WORD论文文档,硬件采用2层板设计,PROTEL99SE 设计的工程文件,包括完整的原理图和PCB文件,可以做为你的学习设计参考。 摘要:本文实现了一个基于TMS320F2812 DSP芯片的光伏并网发电模拟装置,采用直流稳压源和滑动变阻器来模拟光伏电池。通过TMS320F2812 DSP芯片ADC模块实时采样模拟电网电压的正弦参考信号、光伏电池输出电压、负载电压电流反馈信号等。经过数据处理后,用PWM模块产生实时的SPWM 波,控制MOSFET逆变全桥输出正弦波。本文用PI控制算法实现了输出信号对给定模拟电网电压的正弦参考信号的频率和相位跟踪,用恒定电压法实现了光伏电池最大功率点跟踪(MPPT),从而达到模拟并网的效果。另外本装置还实现了光伏电池输出欠压、负载过流保护功能以及光伏电池输出欠压、过流保护自恢复功能、声光报警功能、孤岛效应的检测、保护与自恢复功能。系统测试结果表明本设计完全满定设计要求。关键词:光伏并网,MPPT,DSP  Photovoltaic Grid-connected generation simulator Zhangyuxin,Tantiancheng,Xiewuyang(College of Electrical Engineering, Chongqing University)Abstract: This paper presents a photovoltaic grid-connected generation simulator which is based on TMS320F2812 DSP, with a DC voltage source and a variable resistor to simulate the characteristic of photovoltaic cells. We use the internal AD converter to real-time sampling the referenced grid voltage signal, outputting voltage of photovoltaic, feedback outputting voltage and current signal. The PWM module generates SVPWM according to the calculation of the real-time sampling data, to control the full MOSFET inverter bridge output sine wave. We realized that the output voltage of the simulator can track the frequency and phase of the referenced grid voltage with PI regulation, and the maximum photovoltaic power tracking with constant voltage regulation, thereby achieved the purpose of grid-connected simulation. Additionally, this device has the over-voltage and over-current protection, audible and visual alarm, islanding detecting and protection, and it can recover automatically. The testing shows that our design is feasible.Keywords: Photovoltaic Grid-connected,MPPT,DSP 目录引言 11. 方案论证 11.1. 总体介绍 11.2. 光伏电池模拟装置 11.3. DC-AC逆变桥 11.4. MOSFET驱动电路方案 21.5. 逆变电路的变频控制方案 22. 理论分析与计算 22.1. SPWM产生 22.1.1. 规则采样法 22.1.2. SPWM 脉冲的计算公式 32.1.3. SPWM 脉冲计算公式中的参数计算 32.1.4. TMS320F2812 DSP控制器的事件管理单元 42.1.5. 软件设计方法 62.2. MPPT的控制方法与参数计算 72.3. 同频、同相的控制方法和参数计算 8

    标签: tms320f2812 光伏 并网发电 模拟 protel pcb

    上传时间: 2021-11-02

    上传用户:

  • SC3633

    Wide 2.2V to 6V Input Voltage Range „ 0.20V FB adjustable LED drive current „ Directly drive 9 Series 1W LED at VIN>=6V „ Fixed 800KHz Switching Frequency „ Max. 3A Switching Current Capability „ Up to 92% efficiency „ Excellent line and load regulation „ EN PIN TTL shutdown capability „ Internal Optimize Power MOSFET

    标签: sc3633

    上传时间: 2021-11-05

    上传用户:d1997wayne

  • SiC MOSFET为什么会使用4引脚封装

    ROHM最近推出了SiCMOSFET的新系列产品“SCT3xxxxR系列”。SCT3xxxxR系列采用最新的沟槽栅极结构,进一步降低了导通电阻;同时通过采用单独设置栅极驱动器用源极引脚的4引脚封装,改善了开关特性,使开关损耗可以降低35%左右。此次,针对SiCMOSFET采用4引脚封装的原因及其效果等议题,我们采访了ROHM株式会社的应用工程师。关于SiCMOSFET的SCT3xxxxR系列,除了导通电阻很低,还通过采用4引脚封装使开关损耗降低了35%,对此我们非常感兴趣。此次,想请您以4引脚封装为重点介绍一下该产品。首先,请您大致讲一下4引脚封装具体是怎样的封装,采用这种封装的背景和目的是什么。首先,采用4引脚封装是为了改善SiCMOSFET的开关损耗。包括SiCMOSFET在内的电源开关用MOSFET和IGBT,被作为开关元件广泛应用于各种电源应用和电源线路中。必须尽可能地降低这种开关元件产生的开关损耗和传导损耗,但不同的应用,其降低损耗的方法也不尽相同。作为其中的一种手法,近年来发布了一种4引脚的新型封装,即在MOSFET的源极、漏极、栅极三个引脚之外,另外设置了驱动器源极引脚。此次的SCT3xxxxR系列,旨在通过采用最新的沟槽栅极结构,实现更低的导通电阻和传导损耗;通过采用4引脚封装,进一步发挥出SiC本身具有的高速开关性能,并降低开关损耗。那么,我想详细了解一下刚刚您的概述中出现的几个要点。首先,什么是“驱动器源极引脚”?驱动器源极引脚是应用了开尔文连接原理的源极引脚。开尔文连接是通过电阻测量中的4个引脚或四线检测方式,在电流路径基础上加上两条测量电压的线路,以极力消除微小电阻测量或大电流条件下测量时不可忽略的线缆电阻和接触电阻的影响的方法,是一种广为人知的方法。这种4引脚封装仅限源极,通过使连接栅极驱动电路返回线的源极电压引脚与流过大电流的电源源极引脚独立,来消除ID对栅极驱动电路的影响。

    标签: sic mosfet 封装

    上传时间: 2021-11-07

    上传用户: