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Engineering
Electrical Engineering
Power Electronics
1. Introduction to Power Electronics
2. Power Semiconductor Devices
3. DC-DC Converters
4. AC-DC Converters
5. DC-AC Converters
6. AC-AC Converters
7. Control of Power Electronic Systems
8. Magnetic Components Design
9. Capacitors in Power Electronics
10. Thermal Management
11. Power Quality and EMI
12. Applications and Systems
Magnetic Components Design
Inductor Design
Core Materials
Ferrite Cores
Powdered Iron Cores
Amorphous Cores
Nanocrystalline Cores
Core Geometries
Toroidal Cores
E-Cores
Pot Cores
Rod Cores
Winding Design
Wire Selection
Skin Effect Considerations
Proximity Effect
Litz Wire Applications
Inductance Calculation
Permeability and Reluctance
Air Gap Effects
Fringing Field Corrections
Core Loss Analysis
Hysteresis Losses
Eddy Current Losses
Steinmetz Equation
Saturation Effects
B-H Characteristics
Saturation Prevention
Swinging Chokes
Transformer Design
High-Frequency Transformers
Core Selection Criteria
Winding Arrangements
Insulation Requirements
Equivalent Circuit Models
Magnetizing Inductance
Leakage Inductance
Winding Resistance
Core Loss Representation
Parasitic Elements
Interwinding Capacitance
Leakage Inductance Effects
Common Mode Noise
Thermal Considerations
Hot Spot Temperature
Thermal Resistance
Cooling Methods
Coupled Inductors
Magnetic Coupling
Coupling Coefficient
Applications in Converters
Design Considerations
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7. Control of Power Electronic Systems
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9. Capacitors in Power Electronics