>
Course Unit Title Course Unit Code Type of Course Unit Level of Course Unit Year of Study Semester ECTS Credits
Power Electronics MEP235 Elective Associate degree 2 Fall 3

Name of Lecturer(s)

Associate Prof. Dr. Adnan SONDAŞ
Lecturer Şakir KUZEY
Lecturer Remzi SÜERKAN
Lecturer Gülten YILMAZ
Lecturer Uğur YÜCEL

Learning Outcomes of the Course Unit

1) Used in power electronics, electronic components with high current and voltage values recognize.
2) Power diodes, transistors, IGBT power electronic components such characteristics, control methods and learn to use their place.
3) Emerging application areas of power electronics technology and learn together.
4) Mechatronic systems, power electronics, where the application will understand.
5) High-frequency welding machines and other industrial products knows.

Program Competencies-Learning Outcomes Relation

  Program Competencies
1 2 3 4 5 6 7 8 9 10 11 12 13 14
Learning Outcomes
1 No relation No relation No relation No relation Middle No relation No relation No relation Middle High No relation No relation No relation No relation
2 No relation No relation No relation No relation Middle No relation No relation No relation Middle High No relation No relation No relation No relation
3 No relation No relation No relation No relation Middle No relation No relation No relation Middle High No relation No relation Middle No relation
4 No relation No relation No relation No relation Low No relation No relation Low Middle High No relation Low Middle Middle
5 No relation No relation No relation No relation Low No relation No relation No relation Middle High No relation No relation Low No relation

Mode of Delivery

Face to Face

Prerequisites and Co-Requisites

None

Recommended Optional Programme Components

Not Required

Course Contents

P-N-jointed power elements Thyristor'ların electrical characteristics Triggering components Thyristor applications P-N-jointed forces to protect components. Power Semiconductors Power Converters Phase-Controlled Rectifiers Chopper circuits Inverters Frequency Converters Design and Conservation

Weekly Schedule

1) PN-jointed structure of power diyodes
2) Straightening of alternating current. Rectifier types. Straightening process occurring as a result of the active and the average voltage value.
3) Triac, power transistor, MOSFET, IGBT, GTO, MCT, SIT, IGCT, MOS turn-off thyristor.
4) Power losses in semiconductors, cooling requirements, cooling types
5) Driving circuit and isolation, alternating current power switches, thyristor switching system
6) Rectifiers, single phase uncontrolled full-wave rectifiers, smoothing methods, rectifiers, power factor, single-phase controlled rectifiers
7) Uncontrolled and controlled three-phase half-wave rectifier circuit analysis
8) Midterm examination/Assessment
9) DC-DC choppers, two thyristor choppers, resonant commutated DC choppers
10) Inverter frequency and voltage control methods, the analysis of single-phase inverter
11) Single-phase square wave and PWM inverter operation analysis, voltage and frequency control, the inverter harmonics.
12) The uses of PWM drives in the industry, metal source and a high frequency induction furnace applications
13) The newly developed power control equipment, assessment of Mosfet, MCT, GTO elements.
14) Power electronics circuits in lighting applications, electronic ballast and igniters.
15) Power electronics applications in Ohmic inductive load control
16) Final examination

Recommended or Required Reading

1- Ders notları

Planned Learning Activities and Teaching Methods

1) Question-Answer
2) Discussion
3) Drill and Practice
4) Lab / Workshop
5) Problem Solving


Assessment Methods and Criteria

Contribution of Midterm Examination to Course Grade

40%

Contribution of Final Examination to Course Grade

60%

Total

100%

Language of Instruction

Turkish

Work Placement(s)

Not Required