[Analog Electronic Technology] 1.Analog Electronic Technology
#ICT# #IOT#

Lesson Code: TCEN2025H023

Clicks:
Academic Hours
6.70hours
Publish Date
Nov 2025

Lecturer

1. Lecturer LI ShijunWuzhou University

2. Lecturer ZHENG YaoWuzhou University

3. Lecturer MA WenjingWuzhou University

4. Lecturer WEI XuejiaoWuzhou University

5. Lecturer XUE YuyangWuzhou University

6. Lecturer ZHOU XinjianWuzhou University

General Introduction
This course is a foundational subject for majors such as Electronic Information Engineering and related fields, focusing on the basic principles, analysis methods, and engineering design concepts of analog electronic systems. Grounded in semiconductor devices, the course covers fundamental amplifier circuits, integrated operational amplifiers,
feedback amplifier circuits, and typical analog functional circuits. It aims to develop students' abilities to analyze, design, and debug analog electronic systems while laying a solid theoretical and practical foundation for further studies in related professional courses and future careers in electronic technology.

This Course is for
1. Helping trainees master the characteristics and models of core semiconductor devices, such as diodes, BJTs, and FETs.
2. Enabling trainees to understand the composition, working principles, performance indicators, and analysis methods of amplifier circuits, and grasp the concept of feedback and its impact on circuit performance.
3. Helping trainees gain proficiency in the basic operational circuits, filter circuits, and power amplifier circuits formed by integrated operational amplifiers, while understanding the circuit design of DC voltage regulators.
4. Enabling trainees to develop basic circuit design skills, engineering calculation abilities, circuit simulation and debugging skills, while establishing rigorous engineering thinking.

Learning Materials

1. Corresponding PPT
2. Online Course Video
3. Simulation Question Banks

Recognized By

Benefits of Learning

1. Ability to integrate knowledge: Being able to integrate basic circuit laws with new knowledge from this course and systematically analyze and calculate circuit parameters.
2. Circuit design and simulation ability: Possessing the ability to design basic circuits and use tools such as Multisim and PSpice for circuit simulation and verification.
3. Engineering analysis and problem-solving ability: Being able to apply engineering approximation methods to analyze complex circuits, and possessing logical thinking and hands-on debugging skills to diagnose and resolve simple circuit faults.
4. Technical documentation writing and communication ability: Being able to write standardized experiment reports, clearly presenting test data, waveform analysis, conclusions, and problem discussions, and explaining technical issues using professional language.
5. Rigorous scientific attitude: Understanding the differences and causes of theoretical calculations, circuit simulations, and actual experimental results, and establishing a practical, rigorous, and realistic engineering mindset.

Courses Videos
Introduction.mp4playCourse Overview.mp4play1.1 Basic Knowledge of Semiconductors.mp4play1.2 Formation and Characteristics of a PN Junction.mp4play1.3 Semiconductor Diode.mp4play1.4 Basic Circuits of Diodes and Their Analysis Methods.mp4play1.5 Special Diodes.mp4play1.6 Bipolar Junction Transistor (BJT).mp4play2.1 Common-emitter Amplifier Circuit (1).mp4play2.2 Common-emitter Amplifier Circuit (2).mp4play2.3 Common-base Amplifier Circuit.mp4play2.4 Circuit for Stabilizing the Quiescent Operating Point (Q-point).mp4play3.1Metal–Oxide–Semiconductor Field-Effect Transistor (part 1).mp4play3.2Metal–Oxide–Semiconductor Field-Effect Transistor (part 2).mp4play3.3Common-Source Amplifier Circuit.mp4play3.4The Small-Signal Model Analysis Method .mp4play3.5Common-Drain and Common-Gate Amplifier Circuits.mp4play3.6Comparison of Performance between Field-Effect Transistor Amplifier Circuits and Bipolar Junction Transistor Amplifier Circuits.mp4play4.1Integrated circuit overview.mp4play4.2Current Source Circuits in Integrated Operational Amplifiers.mp4play4.3Differential Amplifier Circuits.mp4play4.4Voltage Transfer Characteristics.mp4play5.1Fundamentals and Types of Feedback (Part 1).mp4play5.2Fundamentals and Types of Feedback (Part 2).mp4play5.3Fundamentals and Types of Feedback (Part 3).mp4play5.4Four AC Negative Feedback Configurations.mp4play5.5Effects of Negative Feedback on Amplifier Performance.mp4play6.1Proportional Operation Circuits (Part 1).mp4play6.2Proportional Operation Circuits (Part 2).mp4play6.3Summing and Differencing Amplifier (Part 1).mp4play6.4Summing and Differencing Amplifier (Part 2).mp4play6.5Integrator and Differentiator Circuits.mp4play7.1RC Sinusoidal Oscillator.mp4play7.2Voltage Comparator.mp4play8.1Overview of Power Amplifiers.mp4play8.2Class B Complementary Symmetry Power Amplifier.mp4play8.3Class AB Complementary Symmetry Power Amplifier.mp4play9.1Regulated Voltage Regulator.mp4play

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