Electronics Technology

Course Content
Course Name   Programmable Controllers
Semester Course Code Theory Practice Hours ECTS
6 5007413 3 / 1 4
Course Level Associate's Degree
Course Delivery Format Face to face
Coordinator Lec. Ersin Selçuk
Coordinator E-mail eselcuk ktun.edu.tr
Instructor Lec. Ersin Selçuk
Course Assistant
Course Objective It is aimed to inform students about industrial control and automation systems that are widely used in the industrial electronics industry and to gain PLC programming competencies.
Eng Temel Meslek Dersi Eng Uzmanlaşma Dersi
30 70
Instructional Methods
Lecture, Demonstration, Question and Answer, Design, Practicing
Week Course Content Resource
1 Basic Features and Control Circuit Elements of Industrial Control and Automation Systems Internet and Lecture Notes
Programlanabilir Lojik Kontrol (PLC) ve Uygulamaları, C. Sungur, H. Terzioğlu, 2013
Elektromekanik Kumanda Sistemleri, N. AT, H. A. ÖZKAN, 2013
2 Control Elements in Industrial Automation Systems Internet and Lecture Notes
Programlanabilir Lojik Kontrol (PLC) ve Uygulamaları, C. Sungur, H. Terzioğlu, 2013
Elektromekanik Kumanda Sistemleri, N. AT, H. A. ÖZKAN, 2013
3 Motion Systems in Industrial Automation Systems Internet and Lecture Notes
Programlanabilir Lojik Kontrol (PLC) ve Uygulamaları, C. Sungur, H. Terzioğlu, 2013
Elektromekanik Kumanda Sistemleri, N. AT, H. A. ÖZKAN, 2013
4 Changing the Rotation Direction of Motors in Industrial Automation Systems Internet and Lecture Notes
Programlanabilir Lojik Kontrol (PLC) ve Uygulamaları, C. Sungur, H. Terzioğlu, 2013
Elektromekanik Kumanda Sistemleri, N. AT, H. A. ÖZKAN, 2013
5 Methods of Starting Motors in Industrial Automation Systems Internet and Lecture Notes
Programlanabilir Lojik Kontrol (PLC) ve Uygulamaları, C. Sungur, H. Terzioğlu, 2013
Elektromekanik Kumanda Sistemleri, N. AT, H. A. ÖZKAN, 2013
6 Braking Techniques in Industrial Automation Systems Internet and Lecture Notes
Programlanabilir Lojik Kontrol (PLC) ve Uygulamaları, C. Sungur, H. Terzioğlu, 2013
Elektromekanik Kumanda Sistemleri, N. AT, H. A. ÖZKAN, 2013
7 Basic Structures of PLCs, PLC Operating Systems, PLC Programming Methods and Programming Languages Internet and Lecture Notes
Programlanabilir Lojik Kontrol (PLC) ve Uygulamaları, C. Sungur, H. Terzioğlu, 2013
Elektromekanik Kumanda Sistemleri, N. AT, H. A. ÖZKAN, 2013
8 Control Commands and Usage in PLCs Internet and Lecture Notes
Programlanabilir Lojik Kontrol (PLC) ve Uygulamaları, C. Sungur, H. Terzioğlu, 2013
Elektromekanik Kumanda Sistemleri, N. AT, H. A. ÖZKAN, 2013
9 Midterm Examination
10 Counters and Timers in PLCs, Industrial Application Examples Internet and Lecture Notes
Programlanabilir Lojik Kontrol (PLC) ve Uygulamaları, C. Sungur, H. Terzioğlu, 2013
Elektromekanik Kumanda Sistemleri, N. AT, H. A. ÖZKAN, 2013
11 PLC Circuit Connections, Industrial Application Examples Internet and Lecture Notes
Programlanabilir Lojik Kontrol (PLC) ve Uygulamaları, C. Sungur, H. Terzioğlu, 2013
Elektromekanik Kumanda Sistemleri, N. AT, H. A. ÖZKAN, 2013
12 Industrial Application Examples, Laboratory Application Internet and Lecture Notes
Programlanabilir Lojik Kontrol (PLC) ve Uygulamaları, C. Sungur, H. Terzioğlu, 2013
Elektromekanik Kumanda Sistemleri, N. AT, H. A. ÖZKAN, 2013
13 Industrial Application Examples, Laboratory Application Internet and Lecture Notes
Programlanabilir Lojik Kontrol (PLC) ve Uygulamaları, C. Sungur, H. Terzioğlu, 2013
Elektromekanik Kumanda Sistemleri, N. AT, H. A. ÖZKAN, 2013
14 Industrial Application Examples, Laboratory Application Internet and Lecture Notes
Programlanabilir Lojik Kontrol (PLC) ve Uygulamaları, C. Sungur, H. Terzioğlu, 2013
Elektromekanik Kumanda Sistemleri, N. AT, H. A. ÖZKAN, 2013
15 Touch Panels and Panel Programming Internet and Lecture Notes
Programlanabilir Lojik Kontrol (PLC) ve Uygulamaları, C. Sungur, H. Terzioğlu, 2013
Elektromekanik Kumanda Sistemleri, N. AT, H. A. ÖZKAN, 2013
16 Final Examination
No Course Outcomes (CO) Percent
1 Being able to learn classical and modern control giants and apply them in industrial solutions. 20
2 Ability to create automation workflows and write appropriate automation programs 20
3 Ability to understand the basic PLC technology 20
4 Ability to use PLC Interface Program 20
5 Ability to write a program with Ladder (LADDER) diagram, upload the written program to PLC, simulate and perform 20
CO 1CO 2CO 3CO 4CO 5
PO 111111
PO 233333
PO 300000
PO 400000
PO 500000
PO 600023
PO 700555
PO 811111
PO 900000
PO 1000000
PO 1100000
PO 1211111
PO 1300000
ECTS Workload Number Duration,Min Total Workload
Weekly Lecture Hour (Theoretical)141201680
Weekly Practice/Lab Hour1440560
Homework26001200
Quiz000
Material Design, Preparation000
Field Studies000
Report Preparation000
Presentation000
Project Making000
Other Studies14801120
Mid-Term exam and pre-study1420420
Final Exam and pre-study1600600

ECTS Workload % of Mid-term Grading % of Final Grading
Weekly Lecture Hour (Theoretical)00
Weekly Practice/Lab Hour00
Homework00
Quiz00
Material Design, Preparation00
Field Studies00
Report Preparation00
Presentation00
Project Making00
Other Studies00
Mid-Term exam and pre-study1000
Final Exam and pre-study0100