ANTALYA BİLİM UNIVERSITY
Course Information Package

EE 3001 - Analog Electronics

Basic Information

Course Code:
EE 3001
Course Name:
Analog Electronics
Language of Instruction:
English
Course Type:
Class
Course Level:
Bachelor
ECTS:
4.00
Instructor:
Dr. Öğr. Üyesi SERDAR OKUYUCU

Course Objectives

The aim of this course is to equip students with the operating principles of semiconductor devices (diodes, MOSFETs, and BJTs) and the fundamental methods of analog electronic circuit analysis. Students will develop competency in DC and AC circuit analysis, small-signal modeling, and amplifier design, preparing them for real-world engineering applications.

Course Content

The course begins with semiconductor material properties and DC/AC analysis of pn-junction diode circuits, followed by rectifier, Zener, clipper, and clamper circuit applications. It then covers the physical structure of the MOSFET, DC bias analysis, switch and digital logic gate applications, and fundamental amplifier configurations (common-source, common-drain, common-gate). The final part examines the BJT's DC operating point analysis, biasing techniques, and common-emitter, common-collector, and common-base amplifier configurations.

Prerequisites / Corequisites

EE 2001(prerequisite) ve EE 3003(corequisite)

Course Books / Materials / Recommended Resources

Donald E. Neamen, ,Microelectronics, Circuit Analysis and Design, 4th ed., 2010

Learning Outcomes

Code Description
LO1 Explains semiconductor materials, n-type/p-type doping, and the DC/AC behavior of the pn-junction diode; applies diode models (piecewise linear, small-signal) to numerical problems.
LO2 Analyzes rectifier, Zener, clipper, clamper, and multi-diode circuits; calculates output waveforms and circuit parameters.
LO3 Explains the physical structure and operating regions of the MOSFET; determines the Q-point (ID, VDS) through DC bias analysis.
LO4 Draws the small-signal equivalent circuit model of MOSFET amplifiers; calculates gm, voltage gain (Av), and input/output impedance.
LO5 Explains BJT operating principles and performs DC circuit analysis (node voltages, branch currents, β effect); compares biasing techniques.
LO6 Compares BJT and MOSFET amplifier configurations (CE/CS, CC/CD, CB/CG); analyzes multistage circuits and performs basic circuit design.

Weekly Course Content

Week Content
1 Semiconductor material properties; n-type and p-type semiconductors; the pn junction
2 Diode DC analysis and models; Schottky and Zener diode types
3 Diode AC equivalent circuit; small-signal model; diode thermometer application
4 Rectifier circuits: half-wave, full-wave, bridge; filter capacitor; ripple voltage
5 Zener diode circuits; clipper and clamper circuits
6 Multiple-diode circuits; photodiode and LED circuits; DC power supply design
7 MOSFET: physical structure, n-channel/p-channel, operating regions, threshold voltage
8 Midterm Exam
9 MOSFET DC circuit analysis; Q-point determination; constant-current biasing
10 MOSFET switch, digital logic gate, and amplifier applications; multistage MOSFET circuits
11 MOSFET amplifier: small-signal model, gm; common-source amplifier analysis
12 Common-drain (source-follower) and common-gate configurations; multistage amplifiers; JFET amplifiers
13 BJT: basic structure, active/cutoff/saturation regions, I-V characteristics; DC circuit analysis
14 BJT biasing techniques; multistage BJT circuits; introduction to BJT amplifier configurations
15 Common-emitter, common-collector, common-base BJT amplifiers; AC load line; multistage analysis and general review

Workload Calculation

Activity Count Duration (Hours) Total
Attendance 14 4.00 56.00
Pre-Class Individual Study 14 2.00 28.00
Midterm Exam/Preparation 1 10.00 10.00
Final Exam/Preparation 1 15.00 15.00
Quiz Preparation 2 4.00 8.00
Total Workload (Hours) 117
ECTS Credit (Workload / 25) 4

Assessment

# Assessment Type Contribution (%)
1 Quiz %10
2 Midterm Exam %30
3 Quiz %10
4 Final Exam %50
TOTAL %100

PO - LO Matrix

PO \ LO
LO1
LO2
LO3
LO4
LO5
LO6
PO-1
PO-2
PO-3
PO-4
PO-5
PO-6
PO-7
PO-8
PO-9
PO-10
PO-11
1
Low Contribution
2
Medium Contribution
3
High Contribution

Teaching and Learning Methods

# Method Name Description Tools
1 Lecture (expository teaching), interactive discussion Listening and taking notes. Standard classroom technologies, multimedia tools (projector, computer, digital presentations)
2 Controversial Course Listening and comprehension, critical thinking Standard classroom technologies, multimedia tools, projector, computer, overhead projector
3 Problem Solving * Analyzing physical and physiological problems using problem-solving techniques and developing appropriate solutions.
4 Demonstration Listening and comprehension, processing observations/situations Presentation content

Academic Integrity and Artificial Intelligence

Violations of scholastic honesty include, but are not limited to cheating, plagiarizing, fabricating information or citations, facilitating acts of dishonesty by others, having unauthorized possession of examinations, submitting work of another person or work previously used without informing the instructor, or tampering with the academic work of other students. Any for of scholastic dishonesty is a serious academic violation and will result in a disciplinary action.

Sustainable Development Goals

SDG 4
SDG 9