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High Voltage Schottky and p-n Diodes · LearnSpace
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High Voltage Schottky and p-n Diodes

Курс от University of Colorado Boulder
Средний≈ 19.4 чАнглийский
О курсеНавыкиПрограммаПреподаватели

О курсе

This course can also be taken for academic credit as ECEA 5722, 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 second 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 second course provides a more detailed description of high-voltage Schottky and p-n diodes, starting with the semiconductor physics background needed to analyze both types of diodes. The main properties of crystalline semiconductors are presented that lead to the calculation of carrier densities and carrier currents, resulting in the drift-diffusion model for the semiconductors of interest. Next are a close look at Schottky diodes followed by p-n diodes, with a focus on the key figures of merit including the on-resistance, breakdown voltage and diode capacitance. For each diode, the analysis is then linked to the corresponding SPICE model. Finally, the power diode losses - both on-state losses and switching losses - are examined in a convertor circuit, including a comparison of silicon p-n diodes and 4H-SiC Schottky diodes. Learning objectives: • Provide students with a detailed understanding of High-Voltage Schottky and p-n diodes. • Students will be able to calculate key diode parameters based on their physical structure. • Students will be able to construct SPICE models for Schottky and p-n diodes.

Навыки, которые вы освоите

SemiconductorsHigh VoltagePower ElectronicsSimulation and Simulation SoftwareEngineering CalculationsElectronicsEngineering AnalysisElectrical PowerElectronics EngineeringMaterials scienceElectronic ComponentsElectrical Engineering

Программа курса

4 модулей · 90 учебных материалов

01Semiconductor physics background29 материалов

Introduction

Course Updates and Accessibility SupportЧтениеNon-Credit Students: Welcome and Where to Find HelpЧтениеCourse syllabusЧтение

Semiconductor crystals

1.1 Semiconductor CrystalsЧтение

Учитесь у экспертов

Bart Van Zeghbroeck

Professor

High Voltage Schottky and p-n Diodes
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Обучение на Coursera

≈ 19.4 ч

4 модулей

Язык: Английский

Субтитры: Ория

Часть программы вашего университета
1.1 Lecture slidesЧтение
1.1 Semiconductor crystalsВидео
1.1 Semiconductor crystalsЗадание

Energy bands in semiconductors

1.2 Energy bandsЧтение1.2 Lecture slidesЧтение1.2 Energy bandsВидео1.2 Energy bands in semiconductorsЗадание

Electron and hole densities

1.3 Electron and hole densitiesЧтение1.3 Lecture slidesЧтение1.3 Electron and hole densitiesВидео1.3 ExamplesЧтение1.3 Electron and hole densitiesЗадание

Carrier transport

1.4 Carrier transportЧтение1.4 Lecture slidesЧтение1.4 Carrier transportВидео1.4 ExamplesЧтение1.4 Carrier transportЗадание

Continuity equation

1.5 Carrier recombination and generation/Continuity equationЧтение1.5 Lecture slidesЧтение1.5 Continuity equationВидео1.5 Continuity equationЗадание

Drift-diffusion model

1.6 Continuity equationЧтение1.6 Lecture slidesЧтение1.6 Drift-diffusion modelВидео1.6 Drift-diffusion modelЗадание
02Schottky diodes24 материалов

Metal-semiconductor junctions

2.1 Structure and principle of operationЧтение2.1 Lecture slidesЧтение2.1 Metal-semiconductor junctionsВидео2.1 ExampleЧтение2.1 Metal-semiconductor junctionsЗадание

Electrostatic analysis

2.2 Electrostatic analysisЧтение2.2 Lecture slidesЧтение2.2 Electrostatic analysisВидео2.2 ExampleЧтение2.2 Electrostatic analysisЗадание

Schottky diode current

2.3 Schottky diode currentЧтение2.3 Lecture slidesЧтение2.3 Schottky diode currentВидео2.3 ExamplesЧтение2.3 Schottky diode currentЗадание

Schottky diode breakdown

2.4 Schottky diode breakdownЧтение2.4 Lecture slidesЧтение2.4 Schottky diode breakdownВидео2.4 ExampleЧтение2.4 Schottky diode breakdownЗадание

SPICE model of a Schottky diode

2.5 Lecture slidesЧтение2.5 Spice model of a Schottky diodeВидео2.5 ExampleЧтение2.5 Schottky diode SPICE modelЗадание
03p-n Diodes24 материалов

p-n diode structure

3.1 p-n diode structureЧтение3.1 Lecture slidesЧтение3.1 p-n Diode structureВидео3.1 ExampleЧтение3.1 p-n diode structureЗадание

Electrostatic analysis

3.2 Electrostatic analysisЧтение3.2 Lecture slidesЧтение3.2 Electrostatic analysisВидео3.2 ExamplesЧтение3.2 Electrostatic analysisЗадание

p-n diode current

3.3 p-n Diode currentЧтение3.3 Lecture slidesЧтение3.3 p-n Diode currentВидео3.3 ExampleЧтение3.3 p-n diode currentЗадание

Diffusion capacitance

3.4 Diffusion capacitanceЧтение3.4 Lecture slidesЧтение3.4 Minority carrier storage - diffusion capacitanceВидео3.4 ExampleЧтение3.4 Diffusion capacitanceЗадание

SPICE model of a p-n diode

3.5 Lecture slidesЧтение3.5 SPICE model of a p-n diodeВидео3.5 ExampleЧтение3.5 SPICE modelЗадание
04Power diode losses13 материалов

Diode resistance versus breakdown voltage

4.1 Diode resistance versus breakdown voltageЧтение4.1 Lecture slidesЧтение4.1 Diode resistance versus breakdown voltageВидео4.1 ExampleЧтение4.1 Resistance versus breakdown voltageЗадание

Power diode losses in a boost convertor

Boost convertor tutorialЧтение4.2 Lecture slidesЧтение4.2 Switching lossesВидео4.2 Power diode lossesЗадание

Comparison of Schottky and p-n diodes

4.3 Comparison of Schottky and p-n diodesЧтение4.3 Lecture slidesЧтение4.3 Comparison of Schottky and p-n diodesВидео4.3 4H-SiC Schottky vs silicon p-n diodesЗадание