2 項進行中

115-1 選課時程

進行中

  • 初選第一階段 6/15 – 6/18
  • 初選第二階段 6/22 – 6/25
  • 校際選修 進行中 8/24 – 9/18
  • 初選第三階段 8/31 – 9/3
  • 開學後加退選 進行中 9/7 – 9/21
  • 逾期加退選 9/21 – 9/24
選課資源

加入行事曆

選擇訂閱 Google Calendar,或下載通用的 ICS 檔案。

使用 Google Calendar 時,Google 會收到這份課表的公開連結。

應用電子學

Applied Electrics

學期
115-1
學分
3 學分
當期課號
516106
永久課號
ENME20010
開課單位
機械工程學系
授課教師
陳冠任
校區
光復
類別
選修
上課時間表
週一
週五
3
10:10–11:00
應用電子學
EE206(光復)
2 節連堂
4
11:10–12:00
8
16:30–17:20
應用電子學
EE206(光復)

* 根據陽明交大上課時間表所列

概述

The primary goal of this introductory course is to help students become knowledgeable designer of microelectronics circuits, and get familiar with popular free spice software LTspice.

先修科目

教師未提供此項資料

備註

ADI LTspice circuit simulation software: https://www.analog.com/en/resources/design-tools-and-calculators/ltspice-simulator.html LTspice Tutoring videos by NYCU-EE: https://sites.google.com/nycu.edu.tw/nycueelabs/ltspice * 1 in 1 out, on a 3 terminal component base not suit for output (too thin), collector not suit for input (Nc too low), only 3 config left, CE / CB / CC

教學方式

Students are encouraged to simulate course examples and projects via [FREE] software : ADI LTspice https://www.analog.com/en/resources/design-tools-and-calculators/ltspice-simulator.html LTspice Tutoring videos by NYCU-EE: https://sites.google.com/nycu.edu.tw/nycueelabs/ltspice Additional Reference Texts : 1. Microelectronics: Circuit Analysis and Design 4/e, Neamen 2. Integrated Electronics: Analog and Digital Circuits and Systems, Millman 3. Physics of Semiconductor Devices 4/e, Sze 4. Device Electronics for Integrated Circuits 3/e, Muller 5. Analysis and Design of Analog Integrated Circuits 5/e, Gray 6. Design of Analog CMOS Integrated Circuits, Razavi 7. Microelectronic Circuits, 6/e, Smith

評分方式

Homework : Project #1 25% Midterm (Closed book) 25% Homework : Project #2 25% Final Exam (Closed book) 25% Project #1 - uA741 teardown Project #2 - Design of a 1Mhz 10x wideband amplifier, RL=8ohm, THD<3%

課程大綱
  • * Semiconductor Physics * PN junction / Diode

    * Intrinsic semiconductor, energy band, Boltzmann distribution, doping, conductivity, concentration, thermal consideration, WBG * Diffusion, drift, depletion zone, built-in potential, current density, Shockley equation * Forward/reverse bias, 5.1~5.6V Zener/avalanche, TVS, Schottky barrier * rectifier, envelope detector, volt doubler

    講授:
    6

    備註:ADI LTspice circuit simulation software: https://www.analog.com/en/resources/design-tools-and-calculators/ltspice-simulator.html LTspice Tutoring videos by NYCU-EE: https://sites.google.com/nycu.edu.tw/nycueelabs/ltspice

  • BJT Physics / Operation mode

    * Doping concertation difference, physical dimension of each terminal * Voltage-controlled minor carrier-injection, carrier transportation by reverse bias * Thermal and reverse-blocking consideration, ohmic contact * Effective bias, base minor carrier saturation, voltage controlled current source, early effect

    講授:
    3
  • BJT Amplifier

    * DC bias -> AC linearization -> Small-signal analysis * Av, Ai, Rin, Rout * Vt, gm, Rpi, Ro * Pi-model, T-model, * Emitter-degenerate, NFB, BW, Miller effect

    講授:
    9

    備註:* 1 in 1 out, on a 3 terminal component base not suit for output (too thin), collector not suit for input (Nc too low), only 3 config left, CE / CB / CC

  • BJT Common blocks

    * Cascode, current source, mirror, diff. pair, Vbe multiplier * Impedance matching, power amp (class A, B, AB, D) * Bandgap ref. : PTAT, CTAT, 1.25V

    講授:
    6
  • MOS Physics / Operation mode / Amplifier

    * Electric field, inversion layer, minor-carrier channel, pinch-off, saturation velocity, CLM, thermal consideration * 3 config, comparing w/ BJT, Rin, Ciss, Miller plateau * BJT, MOS, IGBT, SiC, GaN

    講授:
    6
  • OpAmp

    * Datasheet spec <--> Internal stages * Non-idealities: Vio, Iio, Ibias * Aol, GBP, SR, PSRR, CMRR, Noise

    講授:
    3
  • Modern Power Conversion

    * Common actuating / sensing topologies * Magnetic material, VS balancing * DCDC - Volt, Current Regulator : buck, boost * DCAC - Power Amplifier : H-bridge, inverter

    講授:
    6
週次計畫
週次主題
第 1 週

Chap 1 Introduction to Microelectronics + Chap 2 Basic Semiconductor Physics

2026-09-07(一),2026-09-11(五)
第 2 週

Chap 2 Basic Semiconductor Physics + Chap 3 Diode Model and Circuit

2026-09-14(一),2026-09-18(五)
第 3 週

[9/25(五)停課 - 中秋節補假] Chap 3 Diode Model and Circuit

2026-09-21(一),2026-09-25(五)
第 4 週

[9/28(一)停課 - 教師節放假] Chap 3 Diode Model and Circuit Introduction to LTspice

2026-09-28(一),2026-10-02(五)
第 5 週

[10/5(一)老師出國ECCE研討會 - 請同學於此授課時段自習週五指派的LTspice線上資源及題目] https://sites.google.com/nycu.edu.tw/nycueelabs/ltspice [10/10(五)停課 - 國慶日放假] Chap 4 Physics of Bipolar Transistors

2026-10-05(一),2026-10-09(五)
第 6 週

Chap 4 Physics of Bipolar Transistors + Chap 5 Bipolar Amplifiers

2026-10-12(一),2026-10-16(五)
第 7 週

Chap 5 Bipolar Amplifiers + Chap 9 Cascode, Current Source / Mirror === PROJECT #1 ASSIGN

2026-10-19(一),2026-10-23(五)
第 8 週

[10/26(五) - 光復節補假] Midterm (Closed book, 80% from textbook selected examples)

2026-10-26(一),2026-10-30(五)
第 9 週

Chap 9 Cascode, Current Source / Mirror + Chap 10 Differential Amplifiers

2026-11-02(一),2026-11-06(五)
第 10 週

Chap 6 Physics of MOS

2026-11-09(一),2026-11-13(五)
第 11 週

Chap 6 Physics of MOS + Chap 7 MOS Amplifiers === PROJECT #1 HANDOVER === PROJECT #2 ASSIGN

2026-11-16(一),2026-11-20(五)
第 12 週

Chap 7 MOS Amplifiers + Comparative Introduction to Power Semiconductors: BJT, MOS, IGBT, GaN, SiC

2026-11-23(一),2026-11-27(五)
第 13 週

Chap 8 OpAmp

2026-11-30(一),2026-12-04(五)
第 14 週

Introduction to Gate-driving, Shunt-sensing, Hall-sensing + Introduction to Magnetic Materials / VS balancing

2026-12-07(一),2026-12-11(五)
第 15 週

Introduction to Modern Power Conversion : DCDC (Regulator) / DCAC (Inverter) === PROJECT #2 HANDOVER

2026-12-14(一),2026-12-18(五)
第 16 週

Final Exam (Closed book, 80% from textbook selected examples)

2026-12-21(一),2026-12-25(五)
教科書

Fundamentals of Microelectronics : With Robotics And Bioengineering Applications 3/e, Razavi, Wiley, 2021

Office Hours
地點
EE465
時間
Mon 1400~1600, by appointment
聯絡方式
mail