Course Information
SemesterCourse Unit CodeCourse Unit TitleT+P+LCreditNumber of ECTS CreditsLast Updated Date
4IHA 226Sayısal Elektronik3+0+03329.07.2026

 
Course Details
Language of Instruction Turkish
Level of Course Unit Associate Degree
Department / Program Drone Technology and Operations
Type of Program Formal Education
Type of Course Unit Elective
Course Delivery Method Face To Face
Objectives of the Course The aim is to enable students to acquire fundamental knowledge and skills in digital electronics and logic circuits, and to use this knowledge to solve technical problems.
Course Content fundamental principles of digital electronic systems and logic circuits
Course Methods and Techniques Lecture, discussion, presentation, and assignment.
Prerequisites and co-requisities None
Course Coordinator None
Name of Lecturers Instructor Mehmet Bilgin mehmet.bilgin@ankarabilim.edu.tr
Assistants None
Work Placement(s) No

Recommended or Required Reading
Resources Fundamentals of Digital Electronics, MEGEP
Digital Systems Design - Ramaswamy Palaniappan
Course Notes Sayısal Elektronik Temelleri, MEGEP

Temel Mantık Devreleri, MEGEP

Mantık Devreleri: Sayısal Elektronik, Doğan AY

Digital Systems Design - Ramaswamy Palaniappan

Course Category
Mathematics and Basic Sciences %25
Engineering %50
Engineering Design %15
Science %10

Planned Learning Activities and Teaching Methods
Activities are given in detail in the section of "Assessment Methods and Criteria" and "Workload Calculation"

Assessment Methods and Criteria
In-Term Studies Quantity Percentage
Mid-terms 1 % 40
Final examination 1 % 60
Total
2
% 100

 
ECTS Allocated Based on Student Workload
Activities Quantity Duration Total Work Load
Course Duration 14 3 42
Hours for off-the-c.r.stud 11 2 22
Mid-terms 1 8 8
Final examination 1 14 14
Total Work Load   Number of ECTS Credits 3,37254901960784 86

 
Course Learning Outcomes: Upon the successful completion of this course, students will be able to:
NoLearning Outcomes
1 Students will be able to identify the basic components of digital electronic circuits and explain their functions.
2 They will be able to design simple digital systems using logic gates and circuits.
3 They will gain the ability to analyze the working principles of digital circuits.
4 They will learn data storage methods in digital systems by using components such as flip-flops and registers in a practical way.
5 By performing logical analysis of digital circuits, they will improve their debugging and correction skills.
6 They will gain the ability to understand digital electronic systems used in the real world and to solve problems encountered in these systems.

 
Weekly Detailed Course Contents
WeekTopicsStudy MaterialsMaterials
1 Digital and Analog Multiples Researching fundamental concepts regarding binary, octal, decimal, and hexadecimal number systems and digital logic levels prior to the lecture. Sayısal Elektronik Temelleri, MEGEP Temel Mantık Devreleri, MEGEP Mantık Devreleri: Sayısal Elektronik, Doğan AY Digital Systems Design - Ramaswamy Palaniappan
2 Digital and Analog Multiples Reviewing mathematical conversion methods between different number systems (binary, octal, decimal, hexadecimal). Sayısal Elektronik Temelleri, MEGEP Temel Mantık Devreleri, MEGEP Mantık Devreleri: Sayısal Elektronik, Doğan AY Digital Systems Design - Ramaswamy Palaniappan
3 Digital and Analog Multiples Investigating the structure of Gray code and the operating principles of incremental encoders in digital systems. Sayısal Elektronik Temelleri, MEGEP Temel Mantık Devreleri, MEGEP Mantık Devreleri: Sayısal Elektronik, Doğan AY Digital Systems Design - Ramaswamy Palaniappan
4 Basic Logic Operations Reviewing the truth tables of basic logic operations and gates (AND, OR, NOT, NAND, NOR) prior to the lecture. Sayısal Elektronik Temelleri, MEGEP Temel Mantık Devreleri, MEGEP Mantık Devreleri: Sayısal Elektronik, Doğan AY Digital Systems Design - Ramaswamy Palaniappan
5 Basic Logic Operations Examining special logic gates (XOR, XNOR) and basic logic circuit simplification methods using Karnaugh maps. Sayısal Elektronik Temelleri, MEGEP Temel Mantık Devreleri, MEGEP Mantık Devreleri: Sayısal Elektronik, Doğan AY Digital Systems Design - Ramaswamy Palaniappan
6 Boolean Laws and De Morgan's Theorem Researching addition and multiplication operations in Boolean algebra and logic function simplification applications using Karnaugh maps. Sayısal Elektronik Temelleri, MEGEP Temel Mantık Devreleri, MEGEP Mantık Devreleri: Sayısal Elektronik, Doğan AY Digital Systems Design - Ramaswamy Palaniappan
7 Boolean Laws and De Morgan's Theorem Reviewing De Morgan's theorems and the sum of products (SOP) form in digital logic design before the lecture. Sayısal Elektronik Temelleri, MEGEP Temel Mantık Devreleri, MEGEP Mantık Devreleri: Sayısal Elektronik, Doğan AY Digital Systems Design - Ramaswamy Palaniappan
8 Midterm exam Conducting a comprehensive review of the number systems, logic gates, and Boolean algebra topics covered in the first seven weeks in preparation for the midterm exam. Sayısal Elektronik Temelleri, MEGEP Temel Mantık Devreleri, MEGEP Mantık Devreleri: Sayısal Elektronik, Doğan AY Digital Systems Design - Ramaswamy Palaniappan
9 Adders and Subtractors Researching the theoretical operating principles of adder and subtractor logic circuits, which form the basis of arithmetic operations in digital systems, prior to the lecture. Sayısal Elektronik Temelleri, MEGEP Temel Mantık Devreleri, MEGEP Mantık Devreleri: Sayısal Elektronik, Doğan AY Digital Systems Design - Ramaswamy Palaniappan
10 Adders and Subtractors Examining sample problems related to the hardware design applications of adder and subtractor circuits, particularly parallel adders, and preparing for practical problem-solving sessions. Sayısal Elektronik Temelleri, MEGEP Temel Mantık Devreleri, MEGEP Mantık Devreleri: Sayısal Elektronik, Doğan AY Digital Systems Design - Ramaswamy Palaniappan
11 Decoders and Encoders Researching the fundamental operating principles of encoder and decoder logic circuits used for data routing and conversion in digital systems. Sayısal Elektronik Temelleri, MEGEP Temel Mantık Devreleri, MEGEP Mantık Devreleri: Sayısal Elektronik, Doğan AY Digital Systems Design - Ramaswamy Palaniappan
12 Decoders and Encoders Examining sample problems in reference books regarding binary, quaternary, and decimal decoder circuit designs, and preparing for practical problem-solving sessions. Sayısal Elektronik Temelleri, MEGEP Temel Mantık Devreleri, MEGEP Mantık Devreleri: Sayısal Elektronik, Doğan AY Digital Systems Design - Ramaswamy Palaniappan
13 Multiplexers, Demultiplexers Conducting conceptual readings prior to the lecture on multiplexers, which function as data selectors, and demultiplexers, which act as data distributors in logic circuits. Sayısal Elektronik Temelleri, MEGEP Temel Mantık Devreleri, MEGEP Mantık Devreleri: Sayısal Elektronik, Doğan AY Digital Systems Design - Ramaswamy Palaniappan
14 Multiplexers, Demultiplexers Reviewing hardware design applications of multiplexer and demultiplexer logic circuits, and examining related design problems before the lecture. Sayısal Elektronik Temelleri, MEGEP Temel Mantık Devreleri, MEGEP Mantık Devreleri: Sayısal Elektronik, Doğan AY Digital Systems Design - Ramaswamy Palaniappan
15 Final Exam Study to digital electronics subjects of the previous 14 weeks Sayısal Elektronik Temelleri, MEGEP Temel Mantık Devreleri, MEGEP Mantık Devreleri: Sayısal Elektronik, Doğan AY Digital Systems Design - Ramaswamy Palaniappan

 
Contribution of Learning Outcomes to Programme Outcomes
P1 P2 P3 P4 P5 P6 P7 P8 P9 P10 P11 P12 P13 P14 P15 P16
All 5 5 5
C1
C2
C3
C4
C5
C6

  Contribution: 1: Very Slight 2:Slight 3:Moderate 4:Significant 5:Very Significant