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Introduction to Power Semiconductor Switches · LearnSpace
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Introduction to Power Semiconductor Switches

Курс от University of Colorado Boulder
Средний≈ 10 чАнглийский
О курсеНавыкиПрограммаПреподаватели

О курсе

This course can also be taken for academic credit as ECEA 5721, part of CU Boulder’s Master of Science in Electrical Engineering. This course is primarily aimed at first year graduate students interested in engineering or science, along with professionals with an interest in power electronics and semiconductor devices . It is the first course in the "Semiconductor Power Device" specialization that focusses on diodes, MOSFETs, IGBT but also covers legacy devices (BJTs, Thyristors and TRIACS) as well as state-of-the-art devices such as silicon carbide (SiC) Schottky diodes and MOSFETs as well as Gallium Nitride (GaN) HEMTs. The specialization provides an overview of devices, the physics background needed to understand the device operation, the construction of a device circuit model from a physical device model and a description of the device fabrication technology including packaging. This first course provides an introduction to semiconductor power switches, including a classification based on power switch properties, a description of key power switches, an overview of device data sheets, and the identification of on-state and power losses of diodes and MOSFET individually and in a power convertor circuit. It provides the link between power converter applications and individual devices, through analysis and simulation and prepares learners for the in-depth device analysis of the other courses in the specialization.

Навыки, которые вы освоите

SemiconductorsPower ElectronicsSimulation and Simulation SoftwareThermal ManagementElectrical EngineeringElectric Power SystemsElectronic SystemsElectronics EngineeringElectronic ComponentsElectrical PowerElectronics

Программа курса

4 модулей · 50 учебных материалов

01Power Semiconductor Device Basics14 материалов

Introduction

Course Updates and Accessibility SupportЧтениеNon-Credit Students: Welcome and Where to Find HelpЧтениеCourse SyllabusЧтениеWelcome to "Introduction to power switches"Видео

Need for power conversion

Учитесь у экспертов

Bart Van Zeghbroeck

Professor

Introduction to Power Semiconductor Switches
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Обучение на Coursera

≈ 10 ч

4 модулей

Язык: Английский

Субтитры: Ория

Часть программы вашего университета
M1.1 Electric power conversionЧтение
M1.1 Lecture slidesЧтение
M1.1 Need for power conversionВидео
M1.1 Need for power conversionЗадание

Power conversion circuits

M1.2 Lecture slidesЧтениеM1.2 Power conversion circuitsВидеоM1.2 Power conversion basicsЗадание

Power device characteristics and classification

M1.3 lecture slidesЧтениеM1.3 Power device characteristics and classificationВидеоM1.3 Power device classificationЗадание
02Key Power Semiconductor Devices18 материалов

Diodes

M2.1 DiodesЧтениеM2.1 Lecture slidesЧтениеM2.1 DiodesВидеоM2.1 Simulation of a diode using LTSPICEЗадание

MOSFETs

M2.2 Power MOSFET descriptionЧтениеM2.2 Lecture slidesЧтениеM2.2 MOSFETsВидеоM2.2 MOSFET simulation (part 1)ЗаданиеM2.2 MOSFET simulation (part 2)Задание

IGBTs

M2.3 IGBT descriptionЧтениеM2.3 Lecture slidesЧтениеM2.3 IGBTsВидеоM2.3 IGBTsЗадание

Other power semiconductor devices

M2.4 Bipolar transistorsЧтениеM2.4 High Electron Mobility Transistor (HEMT)ЧтениеM2.4 Lecture slidesЧтениеM2.4 Other devicesВидеоM2.4 Other devicesЗадание
03Power Device Data Sheets11 материалов

M3.1 DC data sheet characteristics

M3.1 Discrete semiconductor distributor websitesЧтениеM3.1 Device data sheet examplesЧтениеM3.1 Lecture slidesЧтениеM3.1 DC data sheet parametersВидеоM3.1 DC data sheet characteristicsЗадание

Switching parameters

M3.2 Lecture slidesЧтениеM3.2 Switching parametersВидеоM3.2 Switching parametersЗадание

Temperature dependence

M3.3 Lecture slidesЧтениеM3.3 Temperature dependenceВидеоM3.3 Thermal resistance and junction temperatureЗадание
04Power Device Losses in Switching Circuits7 материалов

Device power dissipation simulation

M4.1 Lecture slidesЧтениеM4.1 Power dissipation simulationВидеоM4.1 Device power dissipationЗадание

Boost convertor simulation

M4.2 Boost converter tutorialЧтениеM4.2 Lecture slidesЧтениеM4.2 Boost convertor simulationВидеоM4.2 Boost convertor simulationЗадание