All courses
EET 201
Term 3
4 credits

Semiconductor Devices

How modern solid-state devices actually work. Diode rectifiers and regulators, BJT and MOSFET biasing, small-signal amplifier models, and the thermal limits that define real designs.

Prerequisites

Course outline

Lectures, virtual labs, and graded assignments — completed in your browser.

01Semiconductor physics, doping, and the PN junctionlecture
02Diode characteristics and modelslab
03Rectifiers, filters, and clipping/clampinglab
04Zener diodes and voltage referenceslab
05Special diodes: LED, Schottky, varactorlecture
06BJT structure, curves, and operating regionslecture
07BJT biasing and stabilitylab
08Midterm examassignment
09Small-signal models and amplifier configurationslecture
10Multistage amplifiers and frequency responselab
11MOSFET operation and biasinglecture
12MOSFET switching and power dissipationlab
13Thermal management, SOA, and device selectionlecture
14Amplifier design project and final examassignment

Syllabus

# Semiconductor Devices (EET 201)

**Credits:** 4  |  **Term:** 3  |  **Contact hours:** 3 lecture / 2 virtual lab hours per week
**Prerequisites:** EET 110 AC Circuit Analysis
**Delivery:** Fully online. Lectures on demand, weekly live office hours, and browser-based virtual labs with simulated instruments.

## Course description
Diodes, BJTs, MOSFETs, biasing, small-signal models, thermal limits. This 14-week course develops practical competence in semiconductor devices through weekly lectures, virtual lab exercises, and graded assignments.

## Learning outcomes
On completion of this course the student will be able to:
1. Explain the core principles and vocabulary of semiconductor devices.
2. Perform the analysis, calculations, and procedures introduced each week.
3. Use virtual instruments and software tools to build, measure, and verify results.
4. Diagnose faults and explain discrepancies between predicted and measured behavior.
5. Document work clearly in lab reports that meet industry documentation standards.

## Weekly schedule
Fourteen weekly modules are listed under Lessons, each pairing a lecture with a virtual lab or assignment and a short knowledge check.

## Grading
- Virtual lab work and reports: 35%
- Weekly assignments and quizzes: 20%
- Midterm exam or practical: 20%
- Final exam or project: 25%

Grade scale: A 90-100, B 80-89, C 70-79, D 60-69, F below 60. A grade of C or higher is required to advance to any course that lists this one as a prerequisite.

## Course policies
- Weekly work is due Sunday at 11:59 PM local time; late work loses 10% per day up to five days.
- All submitted work must be your own; simulation files are individually seeded and checked.
- Students needing accommodations or an extension should contact the instructor through the portal before the due date.
- Instructors reply to portal messages within one business day.