Course Information
SemesterCourse Unit CodeCourse Unit TitleT+P+LCreditNumber of ECTS Credits
6EEM 306Power Electronics Laboratory I1+2+023

Course Details
Language of Instruction English
Level of Course Unit Bachelor's Degree
Department / Program Electrical and Electronics Engineering
Mode of Delivery Face to Face
Type of Course Unit Elective
Objectives of the Course Definition of power electronic components and circuits, purpose, design and types of theoretical infrastructure to gain
Course Content Power electronics elements, circuits, design and application areas
Course Methods and Techniques
Prerequisites and co-requisities ( EEM 304 )
Course Coordinator None
Name of Lecturers Associate Prof.Dr. selim börekci
Assistants None
Work Placement(s) No

Recommended or Required Reading
Resources Güç Elektroniği Laboratuvarı Deney Föyü (2 cilt), U.Arifoğlu, 2008
Güç elektroniği devreleri (çeviri) N.Tuncay ve ark.,Literatür yayınları,İst. 2005
Güç elektroniği , Remzi Gülgün,Yıldız Teknik Ünv. Matbaası, 1999
Ing
Intr
3
2

Course Category
Mathematics and Basic Sciences %20
Engineering %30
Engineering Design %30
Social Sciences %1
Education %10
Science %10
Health %0
Field %50

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 % 10
Assignment 3 % 10
Final examination 1 % 50
Total
5
% 70

 
ECTS Allocated Based on Student Workload
Activities Quantity Duration Total Work Load
Course Duration 14 3 42
Hours for off-the-c.r.stud 14 2 28
Mid-terms 1 1 1
Laboratory 4 3 12
Final examination 1 2 2
Total Work Load   Number of ECTS Credits 3 85

Course Learning Outcomes: Upon the successful completion of this course, students will be able to:
NoLearning Outcomes
1 Having sufficient background in mathematics, science and engineering subjects related to their branches ability to use theoretical and practical knowledge in these fields for engineering solutions
2 Ability to identify, formulate, and solve engineering problems ability to select and apply appropriate analytical methods and modeling techniques for this purpose,
3 Ability to analyze a system, system component or process and design under realistic constraints to meet the desired requirements ability to apply modern design methods in this direction,
4 Ability to select and use modern techniques and tools required for engineering applications ability to use information technologies effectively,
5 Ability to design and conduct experiments, collect data, analyze and interpret the results,
6 Ability to access information and to do resource research for this purpose, ability to use databases and other information sources,
7 Ability to work effectively in individual and multi-disciplinary teams, confidence in taking responsibility,
8 Ability to communicate effectively in verbal and written Turkish at least one foreign language,
9 Awareness of the necessity of lifelong learning follow the developments in science and technology
10 Awareness of professional and ethical responsibility,
11 Awareness of project management, workplace practices, employee health, environmental and occupational safety awareness of the legal consequences of engineering practices
12 To be aware of the universal and social effects of engineering solutions and applications to be aware of the issues of entrepreneurship and innovation and to have knowledge about the problems of the era


Weekly Detailed Course Contents
WeekTopicsStudy MaterialsMaterials
1 Power supplies, UJT characteristics
2 UJT oscillator and timer circuits, PUT characteristics
3 PUT oscillator and timer circuits, ramp and ladder wave generators
4 SCR and RC phase control, SCS characteristic, SCS triggering circuits
5 UJT-SCR phase control, PUT-SCR power control, two-way DA motor control with SCR
6 Diak and triac characteristics, Automatic lamp brightness control circuit
7 Motor take-off and speed control, Temperature control, Photocoupler and touch alarm systems
8 Over voltage and undervoltage breakers, AA flasher control circuit, Liquid level control
9 IC timer circuit,
10 Digital Sign Driver
11 Zero voltage switch, SCR inverter
12 SCR rectifier circuits
13 FET / MOSFET characteristics and speed control with MOSFET
14 IGBT characteristics.


Contribution of Learning Outcomes to Programme Outcomes
P1 P2 P3 P4 P5 P6 P7 P8 P9 P10 P11
C1 2
C2 2
C3 2
C4 4
C5 5
C6 5
C7 5
C8 4
C9 5
C10 2
C11 1
C12 1

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https://obs.akdeniz.edu.tr/oibs/bologna/progCourseDetails.aspx?curCourse=2429219&lang=en