射頻超大型積體電路設計
Radio-Frequency VLSI Design
| 節 | 週二 |
|---|---|
7 15:30–16:20 | 射頻超大型積體電路設計 ED525 3 節連堂 |
8 16:30–17:20 | |
9 17:30–18:20 |
* 根據陽明交大上課時間表所列
The scaling of semiconductor technology enables very-large-scale-integration at very high operating frequencies. To fully utilize the potentials of latest technologies, RF designers require an integrated design methodology that verifies large design in limited design-cycle, as well as the deep understanding of devices, circuits, and systems theory at microwave regime. This course focuses on the following selected topics for implementing a first-pass successful RF VLSI: 1. Radio Frequency Design Intuition 2. Integrated Methodology for RF VLSI 3. Advanced Analysis Theory 4. Advanced Techniques 電子研究所希望培育學生具備十項核心能力及三項基本素養(請參官網http://www.ee.nctu.edu.tw首頁之【學術研究】→【IEET】內容。 ※本課程將培育學生具備下述幾項核心能力: 1.1 固態電子或電路系統相關專業知識之能力 1.2 固態電子或電路系統之設計、實驗及分析數據之能力,並具有發掘、分析、獨立解決問題及創新思考的能力 1.3 使用電腦輔助軟體、儀器等工具的能力 2.2 具規劃、領導與實行團隊合作之能力 2.3 終身自我學習成長之能力 3.1 瞭解國內外電子資訊產業脈動 3.2 中英文科技論文之閱讀寫作與簡報能力 3.3 瞭解多元文化、時事議題與工程技術對環境、社會及全球之影響 ※本課程將培育學生具備下述幾項基本素養: 1 養成學生具備電子工程基礎與專業知識,並配合實作,達到理論與實務相結合之目的。使學生具備推論、分析、創新及整合能力。 2 教育學生具備寬廣之知識、溝通技巧與團隊精神,以迎接不同生涯發展之挑戰。教育學生瞭解專業倫理及社會責任。 3 建立國際化學習環境,使學生洞察國內外社會與產業之脈動,以培養學生成為立足於全球之電子菁英與領袖人才。
Prerequisite: RFIC design, solid backgrounds on engineering mathematics (linear algebra, complex variables, probability, differential equations) and electromagnetics. This course is very analytical, and implementation-intensive.
(To be determined)
(Tentative) 1. Howework-based Projects (Cooperative/Non-cooperative): 100% 2. No midterm/finals.
| 週次 | 主題 |
|---|---|
| 第 1 週 | RF design intuitions: Circuit Considerations |
| 第 2 週 | RF design intuitions: System Considerations |
| 第 3 週 | Integrated RF VLSI Design Flow: EM simualations |
| 第 4 週 | Integrated RF VLSI Design Flow: Custom Device Generation/Extractions |
| 第 5 週 | Integrated RF VLSI Design Flow: Intrinsic Devices |
| 第 6 週 | Integrated RF VLSI Design Flow: Intrinsic Devices and RF System Simulations |
| 第 7 週 | Advanced Linear Circuit Theory and Techniques: Linear Amplifier |
| 第 8 週 | Advanced Linear Circuit Theory and Techniques: Linear Amplifier |
| 第 9 週 | Advanced Linear Circuit Theory and Techniques: Low Noise Circuits |
| 第 10 週 | Advanced Linear Circuit Theory and Techniques: Low Noise Circuits |
| 第 11 週 | Advanced Linear Circuit Theory and Techniques: Two-state Linear Circuit: Microwave Switch/Phase Rotator |
| 第 12 週 | Advanced Nonlinear Circuit Theory and Techniques: Time-domain Analysis |
| 第 13 週 | Advanced Nonlinear Circuit Theory and Techniques: Frequency-domain Analysis |
| 第 14 週 | Advanced Nonlinear Circuit Theory and Techniques: Mixers |
| 第 15 週 | Advanced Nonlinear Circuit Theory and Techniques: Power Amplifiers |
| 第 16 週 | Advanced Nonlinear Circuit Theory and Techniques: Power Amplifiers |
| 第 17 週 | System Design Considerations for Measurement, Packaging, and Testing |
| 第 18 週 | System Design Considerations for Measurement, Packaging, and Testing |
1. Thomas Lee, "The Design of CMOS Radio Frequency Integrated Circuits", 2nd edition 2. David Pozar , "Microwave Engineering ", 3rd edition 3. Course Handouts. 4. IEEE papers. 5. Industrial Application Notes.