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  • Course Information
  • Course Title Code Semester Laboratory+Practice (Hour) Pool Type ECTS
    Power Electronics EEM254 SPRING 3+0 C 4
    Learning Outcomes
    1-Defines the power electronics and explains the functions of power electronic converters
    2-Determines where and how Ac-dc converters are used
    3-Interprets of structures, characteristics and working principles of basic semiconductors
    4-Analyzes the behavior of thyristor and transistor type semiconductor power switches in and out of conduction
    Prerequisites -
    Language of Instruction Turkish
    Responsible Asst. Prof. Dr. Göksu GÖREL
    Instructors -
    Assistants -
    Resources R1-Bodur, H. (2019). Güç Elektroniği Temel Analiz ve Sayısal uygulamalar (4. Basım), Birsen Yayınevi, İstanbul. R2-Sen, P.C. (1989). Principles of Electric Machines and Power Electronics (3 rd Edition), John-Wiley & Sons, United States.
    Supplementary Book -
    Goals To inform the students about the basic structure of semiconductor power switches used in power electronic circuits, to understand their characteristics, to design the sliding and protection circuits and to select the most suitable elements, to make the analysis and design of power and control circuits of AC / AC and AC / DC converters for practical applications
    Content Introduction to Power Electronics. (BJT), Power MOSFETs and IGBTs, Characteristics and Trigger Commutation Techniques, Thyristor Type Semi-Conductor Power Switches, Structure of GTO, MCT and Other Semiconducting Power Switches, Characteristics, Triggering (Thyristor Type Semiconductor Power Switches) Sliding) Circuits, Comparison and Selection of Semiconductor Power Switches, Protection of Semiconductor Power Switches, Snubber Circuits and Signal Isolation Elements, Power Losses in Semiconductor Switches, Heating and Cooling, Power Electronic Converters,Operation Principles of AC Voltage Regulators, Control Circuits and Applications Operation Principles, Control Circuits and Some Applications of Three Phase AC Switches and Adjusters Working Principles of Three Phase AC Switches and Regulators, AC / AC Converter Inputs, Single Phase AC Circuits and Zero Voltage Circuits, Operation Principles of AC Voltage Regulators, Control Circuits and Some Applications Working Principles, Control Circuits and Application Examples of Direct Frequency Modifiers and DC Interleaved Converters AC / DC Converter Rectifier Input, Performance Parameters, Single Phase and Three Phase Uncontrolled Rectifiers, Operation Principles and Applications Single Phase Controlled and Half Working Principles of Controlled Rectifiers, Control Circuits and Some Applications, Control Circuits of Some Phase Controlled and Semi-Controlled Rectifiers and Some Applications
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