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POWER ELECTRONICS COURSE IDENTIFICATION AND APPLICATION INFORMATION

Code Name of the Course Unit Semester In-Class Hours (T+P) Credit ECTS Credit
EEE303 POWER ELECTRONICS 5 4 3 5

WEEKLY COURSE CONTENTS AND STUDY MATERIALS FOR PRELIMINARY & FURTHER STUDY

Week Preparatory Topics(Subjects) Method
1 - Introduction: Power electronics systems and applications. The advantages and disadvantages of switching converters to linear converters. -
2 - Topologies of switching power converters. Switch and PWM concepts. Steady-state converter modeling and analysis. -
3 - Regulators, AC-DC / DC-DC linear converters. -
4 - Power electronics components, datasheet and application note study.. -
5 - Power electronics main rules, circuit analysis, continuous conduction mode converter modelling -
6 - DC to DC Converters: Buck Converter design and simulation -
7 - Boost Converter design and simulation -
8 - ARA SINAV -
9 - Buck-Boost Converter design and simulation -
10 - Magnetic componenets: Inductor and Transformer. -
11 - Isolated DC to DC converters. Flyback converter -
12 - Isolated DC to DC converters. Forward converter -
13 - DC to AC converters and output harmonics -
14 - Power Electronics Field Applications: Solar powered battery charge (MPPT) - Charge Redresor -
15 - Power Electronics Field Applications: AC Analyzer - DC Analyzer - Reactive Power Factor Controller -
16 - FİNAL -
17 - FİNAL -