課程信息
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專項課程
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高級

高級

完成時間(小時)

完成時間大約為13 小時

建議:4 weeks of study, 2-5 hours of work per week....
可選語言

英語(English)

字幕:英語(English)
專項課程
100% 在線

100% 在線

立即開始,按照自己的計劃學習。
可靈活調整截止日期

可靈活調整截止日期

根據您的日程表重置截止日期。
高級

高級

完成時間(小時)

完成時間大約為13 小時

建議:4 weeks of study, 2-5 hours of work per week....
可選語言

英語(English)

字幕:英語(English)

教學大綱 - 您將從這門課程中學到什麼

1
完成時間(小時)
完成時間為 5 小時

PN Junction at Equilibrium

In this module, we look at pn junction in equilibrium. Topics include: Device structure for pn junction, Energy band diagram at equilibrium for pn junction, Depletion approximation for step junction, Poisson's equation for step junction, Energy band diagram of pn step junction, Beyond depletion approximation, Poisson's equation, Energy band diagram for linearly graded junction, Energy band diagram for heterojunction, and Effect of band alignment for heterojunction. ...
Reading
5 個視頻 (總計 50 分鐘), 2 個閱讀材料, 2 個測驗
Video5 個視頻
PN Junction at Equilibrium12分鐘
Step Junction14分鐘
Linearly Graded Junction7分鐘
Heterojunction11分鐘
Reading2 個閱讀材料
Module Topics2分鐘
Materials and Constants10分鐘
Quiz1 個練習
Homework #1分鐘
2
完成時間(小時)
完成時間為 4 小時

PN Junction Under Bias

In this module on pn junction under bias, we will cover the following topics: Energy band diagram of pn junction under bias, Capacitance-voltage characteristics, Impact ionization, Avalanche breakdown, Avalanche breakdown voltages, Tunneling current, Zener breakdown, Energy band diagram of pn junction under forward bias, Continuity equation, Boundary conditions, Ideal diode equation, Long- and short-base diodes, Recombination and generation in depletion region, Non-ideal current, Effect of band alignment, and Diffusion and thermionic emission currents....
Reading
7 個視頻 (總計 79 分鐘), 2 個閱讀材料, 1 個測驗
Video7 個視頻
Avalanche Breakdown16分鐘
Avalanche and Zener Breakdown13分鐘
PN Junction Under Forward Bias10分鐘
Ideal Diode Equation14分鐘
Non-Ideal Behavior6分鐘
Current in Heterojunction7分鐘
Reading2 個閱讀材料
Module Topics2分鐘
Materials and Constants10分鐘
Quiz1 個練習
Homework #2分鐘
3
完成時間(小時)
完成時間為 4 小時

Metal-Semiconductor Contact

In this module on metal semiconductor contacts, we will cover the following topics: Device structure, Equilibrium energy band diagram, Electrostatic analysis, Energy band diagram under bias, Capacitance-voltage characteristics, Image charge, Dependence of barrier height on electric field, Energy band diagram of Schottky contact under bias, Thermionic emission current, Ohmic contact by heavy doping in semiconductor, Ohmic contact by low metal work function, Surface states, Fermi level pinning....
Reading
6 個視頻 (總計 58 分鐘), 2 個閱讀材料, 2 個測驗
Video6 個視頻
Schottky Contact Under Bias8分鐘
Schottky Barrier Lowering7分鐘
Current in Schottky Contact13分鐘
Ohmic Contact9分鐘
Surface States and Fermi Level Pinning8分鐘
Reading2 個閱讀材料
Module Topics2分鐘
Materials and Constants10分鐘
Quiz1 個練習
Homework #3分鐘
4
完成時間(小時)
完成時間為 3 小時

Optoelectronic Devices

In this module on LEDs, we will cover the follow topics: Basic operating principles of LEDs, Survey of LEDs, Blue LED and solid state lighting, Basic principle of semiconductor laser, Condition for net stimulated emission, Types of semiconductor laser, Photodiode, Avalanche photodiode, Solar cell operating principle, and I-V characteristics and power output....
Reading
4 個視頻 (總計 46 分鐘), 2 個閱讀材料, 1 個測驗
Video4 個視頻
Laser Diode13分鐘
Photodetector14分鐘
Solar Cell8分鐘
Reading2 個閱讀材料
Module Topics2分鐘
Materials and Constants10分鐘
Quiz1 個練習
Homework #4分鐘

講師

Avatar

Wounjhang Park

Professor
Electrical, Computer, and Energy Engineering

關於 University of Colorado Boulder

CU-Boulder is a dynamic community of scholars and learners on one of the most spectacular college campuses in the country. As one of 34 U.S. public institutions in the prestigious Association of American Universities (AAU), we have a proud tradition of academic excellence, with five Nobel laureates and more than 50 members of prestigious academic academies....

關於 Semiconductor Devices 專項課程

This Semiconductor Devices specialization is designed to be a deep dive into the fundamentals of the electronic devices that form the backbone of our current integrated circuits technology. You will gain valuable experience in semiconductor physics, pn junctions, metal-semiconductor contacts, bipolar junction transistors, metal-oxide-semiconductor (MOS) devices, and MOS field effect transistors. Specialization Learning Outcomes: *Learn fundamental mechanisms of electrical conduction in semiconductors *Understand operating principles of basic electronic devices including pn junction, metal-semiconductor contact, bipolar junction transistors and field effect transistors *Analyze and evaluate the performance of basic electronic devices *Prepare for further analysis of electronic and photonic devices based on semiconductors...
Semiconductor Devices

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