ANTALYA BİLİM UNIVERSITY
Course Information Package

EE 2013 - Digital Systems Laboratory

Basic Information

Course Code:
EE 2013
Course Name:
Digital Systems Laboratory
Language of Instruction:
English
Course Type:
Class
Course Level:
Bachelor
ECTS:
2.00
Instructor:
Dr. Öğr. Üyesi SERDAR OKUYUCU

Course Objectives

The aim of this course is to reinforce students' understanding of the fundamental principles of digital systems through hands-on laboratory experiments. The course targets the practical acquisition of theoretical knowledge on logic gates, Boolean algebra, combinational and sequential circuit design, and the use of integrated circuits, through circuit construction, measurement, and reporting.

Course Content

This laboratory course begins with verification experiments on basic and derived logic gates, and progresses through Boolean algebra simplification, adder/subtractor circuits, and multiplexer/demultiplexer applications. Sequential circuit experiments covering RS, JK, D, and T flip-flop structures are then conducted, and the course concludes with the implementation of shift registers and synchronous/asynchronous counters.

Prerequisites / Corequisites

EE 2011 (Corequisite)

Course Books / Materials / Recommended Resources

Digital Design: With an Introduction to the Verilog HDL 5th Ed. By Morris Mano

Learning Outcomes

Code Description
LO1 Understands the operating principles of AND, OR, NOT, NAND, NOR, EX-OR, and EX-NOR gates and experimentally verifies their truth tables.
LO2 Applies Boolean theorems, including De Morgan's laws, to reduce complex logical expressions to cost-effective equivalent circuits.
LO3 Builds and analyzes Adder, Subtractor, Multiplexer (MUX), and Demounter (DEMUX) circuits.
LO4 Designs circuits using RS, JK, D, and T flip-flops to manage data storage and state transitions.
LO5 Implements synchronous/asynchronous counters and universal shift registers for data transfer and frequency division tasks.

Weekly Course Content

Week Content
1 Experiment 1 - Logic GatesDosya
2 Experiment 2 - Boolean Algebra Theorems
3 Experiment 3 MultiplexersDosya
4 Experiment 4 - Flip-FlopsDosya
5 Experiment 5-RegistersDosya

Workload Calculation

Activity Count Duration (Hours) Total
Laboratory 5 2.00 10.00
Pre-Class Individual Study 5 5.00 25.00
Post-Prectice Individual Study 5 4.00 20.00
Total Workload (Hours) 55
ECTS Credit (Workload / 25) 2

Assessment

# Assessment Type Contribution (%)
1 Final Exam %100

PO - LO Matrix

PO \ LO
LO1
LO2
LO3
LO4
LO5
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 Problem Solving * Analyzing physical and physiological problems using problem-solving techniques and developing appropriate solutions.
3 Brainstorming The purpose of forming pairs is to ensure that they are open to innovation during the idea generation phase Standard classroom technologies, multimedia tools, projector, computer, overhead projector
4 Small Group Discussion Listening and comprehension, processing observations/situations, critical thinking, question development Standard classroom technologies, multimedia tools, projector, computer, overhead projector
5 Simulation Exploring the operation of physical circuit designs through the use of simulation software. Simulation tools
6 Group Work Students determine the slope and cross-sectional geometric characteristics of a parabolic irrigation canal on campus, plot the flow rate curve at different sections of the canal, and submit a report. Land surveying instruments
7 Laboratory Listening, note-taking, conceptual analysis, critical thinking, questioning, and participation in discussions. Special equipment
8 On-site learning, supervised clinical practice (hands-on training) Performing clinical procedures under supervision, patient management, and clinical decision-making Clinical environment, dental units, clinical instruments and materials
9 Oral Research – lifelong learning, processing situations, developing questions, interpreting, presenting

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