Course keywords:
semiconductor physics, semiconductor Material & Energy States , Diodes , MOS Capacitor, Field Effect Transistors, Bipolar Junction Transistors
採實體授課
Wednesday, 10-12.
Friday 11-12, Quiz 實體考試
Textbook
Fundamentals of Semiconductor Devices
by Betty L. Anderson & Richard L. Anderson (Mc GRAW.HILL)
References
Semiconductor Physics and Devices
by Donald A. Neamen (Mc GRAW.HILL)
Solid State Electronic Devices
by Ben G. Streetman & Sanjay K. Banerjee (Pearson)
Syllabus
Week 1-3 Semiconductor Material & Energy States
Week 4-6 Semiconductor Diodes
Week 7-9 Semiconductor MOS Capacitor
Week 10 Midterm
Week 11-13 Field Effect Transistors
Week 14-15 Bipolar Junction Transistors
Week 16
eeclass link
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課程時間: 16 週
| ■ | 豐富的數學、物理、科學與工程知識,以及實際運用的能力(20%) An ability to learn profound knowledge in mathematics, physics, and science, as well as to apply the knowledge to engineering problems. (20%) |
| □ | 設計實驗、執行實驗、分析數據及歸納結果的能力 An ability to design and conduct experiments, as well as to analyze data and interpret results. |
| ■ | 執行電機工程實務所需理論、方法、技術及使用相關軟硬體工具之能力(20%) An ability to use the theories, methods, techniques, and related necessary software/hardware tools for electrical engineering practice. (20%) |
| ■ | 電機工程系統、模組、元件或製程之設計能力(20%) An ability to design electrical engineering systems, modules, components, or processes. (20%) |
| □ | 團隊合作所需之組織、溝通及協調的能力 An ability to organize, communicate, and coordinate for teamwork. |
| □ | 發掘問題、分析問題及處理問題的能力 An ability to identify, analyze, and solve problems. |
| ■ | 掌握科技趨勢,並了解科技對人類、環境、社會及全球的影響(20%) An awareness of the technology trends and their human/environmental/social/global impacts. (20%) |
| □ | 理解專業倫理及社會責任 An understanding of professional ethics and social responsibilities. |
| ■ | 專業的外語能力及與國際社群互動的能力(20%) An ability to communicate professionally in a foreign language, as well as to interact with international communities. (20%) |
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<span lang="EN-US" style="font-size:large;font-family:'Times New Roman', Times, serif;color:#000099;">In order to understand the properties of these devices, one needs to understand 1. electronic properties of the semiconductor materials 2. affected by impurities (intentional and unintentional) and applied voltages 3. temperature and geometric effects 4. device structures and optical radiation Pseudo-Classical Mechanism Instead of Quantum Mechanism 1. classical formulas such as Newton's laws & Lorentz equation can be used 2. effective mass replacing true electron mass 3. infinite periodic structure instead of finite periodic structure with boundaries 4. 1-D simple structure to fit 3-D complicate structure</span>