校際選修

115-1 選課時程

進行中

  • 初選第一階段 6/15/2026
  • 初選第二階段 6/22/2026
  • 校際選修 8/24/2026
  • 初選第三階段 8/31/2026
  • 開學後加退選 9/7/2026
  • 逾期加退選 9/21/2026
選課資源

電子學(二)

Electronics (II)

學期
113-2
學分
3 學分
當期課號
515019
永久課號
EEEC10028
開課單位
電機系共同課程
授課教師
洪浩喬
校區
光復
類別
必修
上課時間表
週一
週四
3
10:10–11:00
電子學(二)
EE207
2 節連堂
4
11:10–12:00
7
15:30–16:20
電子學(二)
EE207
2 節連堂
8
16:30–17:20

* 根據陽明交大上課時間表所列

概述

This course introduces the basic design concepts of analog integrated circuits. After taking this course, students should be familiar with the general circuit specification, able to identify the basic topologies from a complex schematic, and able to analyze integrated circuits.

先修科目

電子學(一)

教學方式

All relative course information will be announced at e3.

評分方式

作業部份: will assign to you for your practices but you don't have to present your answers to T.A.. 考試部份: 1 mid-term exams +1 final exam +several in-class exams. 評量部份: In-class exams and performance 30% mid-term exam 35% final exam 35%

課程大綱
  • Chapter 7 Single-Stage Integrated-Circuit Amplifiers
  • Chapter 8 Differential and Multistage Amplifiers
  • Chapter 9 Frequency Response
  • Chapter 10 Feedback
週次計畫
週次主題
第 1 週Chapter 7 Single-Stage Integrated-Circuit Amplifiers: 1. IC Design Philosophy 2. Current sources, mirrors, and current-steering circuits 3. Current mirrors 4. CS/CE amplifiers with active loads
第 1 週Chapter 7 Single-Stage Integrated-Circuit Amplifiers: 1. IC Design Philosophy 2. Current sources, mirrors, and current-steering circuits 3. Current mirrors 4. CS/CE amplifiers with active loads
第 2 週Chapter 7 Single-Stage Integrated-Circuit Amplifiers: 4. CS/CE amplifiers with active loads 5. CG/CB amplifiers with active loads 6. CD/CC amplifiers
第 2 週Chapter 7 Single-Stage Integrated-Circuit Amplifiers: 4. CS/CE amplifiers with active loads 5. CG/CB amplifiers with active loads 6. CD/CC amplifiers
第 3 週Chapter 7 Single-Stage Integrated-Circuit Amplifiers: 6. CD/CC amplifiers 7. Improved current mirrors 8. Short-circuit current gain 9. Cascode amplifier
第 3 週Chapter 7 Single-Stage Integrated-Circuit Amplifiers: 6. CD/CC amplifiers 7. Improved current mirrors 8. Short-circuit current gain 9. Cascode amplifier
第 4 週Chapter 8 Differential and Multistage Amplifiers: 1. The MOSFET differential pair 2. Small-signal operation of the MOSFET differential pair 3. The BJT differential pair 4. CMRR 5. Nonideal characteristics of the differential pairs
第 4 週Chapter 8 Differential and Multistage Amplifiers: 1. The MOSFET differential pair 2. Small-signal operation of the MOSFET differential pair 3. The BJT differential pair 4. CMRR 5. Nonideal characteristics of the differential pairs
第 5 週Chapter 8 Differential and Multistage Amplifiers: 6. ICMR 7. Offset 8. The differential amplifier with active loads 9. Differential to single-ended converter 10. Multi-stage amplifier
第 5 週Chapter 8 Differential and Multistage Amplifiers: 6. ICMR 7. Offset 8. The differential amplifier with active loads 9. Differential to single-ended converter 10. Multi-stage amplifier
第 6 週Chapter 9 Frequency Response: 1. Basis of frequency responses 2. Poles and Zeros 3. Fourier & Laplace transform, Impedance 4. s-domain analysis 5. Bode plots 6. Magnitude & Phase response
第 6 週Chapter 9 Frequency Response: 1. Basis of frequency responses 2. Poles and Zeros 3. Fourier & Laplace transform, Impedance 4. s-domain analysis 5. Bode plots 6. Magnitude & Phase response
第 7 週Chapter 9 Frequency Response: 6. Magnitude & Phase response 7. Transfer function 8. Bandwidth & Gain-bandwidth product 9. The high-frequency MOSFET & BJT model 10. Unity-gain frequency 11. High-frequency response of basic amplifiers 12. Miller's Theorem
第 8 週Chapter 9 Frequency Response: 13. The method of open-circuit time constant 14. High-frequency response of cascode amplifiers 15. Frequency response of multistage and differential amplifiers 16. Low-frequency responses of amplifiers 17. The method of short-circuit time constant 18. Design of coupling and bypass capacitors
第 8 週Chapter 9 Frequency Response: 13. The method of open-circuit time constant 14. High-frequency response of cascode amplifiers 15. Frequency response of multistage and differential amplifiers 16. Low-frequency responses of amplifiers 17. The method of short-circuit time constant 18. Design of coupling and bypass capacitors
第 9 週Chapter 9 Frequency Response: 19. Integrators and Differentiators using OP
第 9 週Chapter 9 Frequency Response: 19. Integrators and Differentiators using OP
第 10 週Chapter 9 Frequency Response: 20. Effect of finite open-loop gain and bandwidth on circuit performance
第 10 週Chapter 9 Frequency Response: 20. Effect of finite open-loop gain and bandwidth on circuit performance
第 11 週Chapter 10 Feedback: 1. Introduction 2. Terminology of the feedback 3. Properties of negative feedback
第 11 週Chapter 10 Feedback: 1. Introduction 2. Terminology of the feedback 3. Properties of negative feedback
第 12 週Chapter 10 Feedback: 4. Four basic feedback topologies 5. Series-shunt feedback amplifier
第 12 週Chapter 10 Feedback: 4. Four basic feedback topologies 5. Series-shunt feedback amplifier
第 13 週Chapter 10 Feedback: 5. Series-shunt feedback amplifier 6. Series-series feedback amplifier
第 13 週Chapter 10 Feedback: 5. Series-shunt feedback amplifier 6. Series-series feedback amplifier
第 14 週Chapter 10 Feedback: 6. Series-series feedback amplifier 7. Shunt-shunt and shunt-series feedback amplifiers
第 14 週Chapter 10 Feedback: 6. Series-series feedback amplifier 7. Shunt-shunt and shunt-series feedback amplifiers
第 15 週Chapter 10 Feedback: 8. Determining the loop gain 9. Stability analysis 10. Effect of feedback on the amplifier poles 11. Stability study using Bode plots 12. Nyquist plot 13. Quality factor
第 15 週Chapter 10 Feedback: 8. Determining the loop gain 9. Stability analysis 10. Effect of feedback on the amplifier poles 11. Stability study using Bode plots 12. Nyquist plot 13. Quality factor
第 16 週Chapter 10 Feedback: 14. Frequency compensation 15. Gain and phase margins 16. Miller compensation and pole splitting
第 16 週Chapter 10 Feedback: 14. Frequency compensation 15. Gain and phase margins 16. Miller compensation and pole splitting
教科書

Sedra and Smith, “Microelectronic Circuits”, International 8th edition, Oxford, NY

Office Hours
地點
工五館705
時間
Every Thursday 9:00 to 10:00
聯絡方式
Ext. 54375