M.Tech in EEE – Power Electronics

Master solid-state conversion paradigms, switched-mode topologies, electric drivetrain controllers, and multi-megawatt smart grid interfaces.

Core Specialization Matrix

Advanced Power Converters
Electric Vehicle (EV) Drivetrains
Resilient Inverter Control Logic
Renewable Conditioning Grids
Microgrid Telemetry Nodes
Industrial Drives & Automation

Academic Regulations

Active PG Framework

R25 Regulations

Comprehensive layout structural matrix for postgraduate studies, credit metrics alignment, core dissertation thesis guidelines, and advanced computing assessment frameworks required for compliance.

Download R25 Regulation

🔍 Core Learning Tracks

  • Converter Synthesis & Modeling

    • DC-DC topologies and resonant tanks
    • Pulse-width modulation logic parameters
    • Thermal boundary analysis methods
  • EV Charging & Battery Control

    • BMS health tracking algorithms
    • Fast-charging systemic converter configurations
    • Regenerative braking optimization loops
  • Smart Grids & FACT Devices

    • Active harmonic filtration networks
    • High-voltage DC telemetry systems
    • Distributed energy load configurations

Course Logistics

Duration & Framework

2 Years (4 Semesters) structured research degree aligned with formal AICTE standards.

Eligibility Criteria

B.Tech/B.E in EEE, ECE, or equivalent verified credentials.

Applied Dissertations

Compulsory final-semester industrial live projects inside core partner infrastructure nodes.

ABOUT THE POWER ELECTRONICS CORE