R23
EEE · 4-1
✓ VERIFIED VS. PUBLISHED SYLLABUS 2026-07-12
Switched Mode Power Conversion
JNTUK R23 · EEE · semester 4-1 · syllabus
This JNTUK R23 professional elective is listed for Electrical and Electronics Engineering (EEE). It is listed in semester 4-1. It carries 3 credits. The published coverage runs across 5 units, from Unit I through Unit V.
Verified vs. published syllabus
Checked 12 Jul 2026
SOURCE DOCKET
Published evidence
✓ Verified
Checked 12 Jul 2026
Record 5 published units
Verification scope The course structure, credits, and unit-wise syllabus are sourced directly from JNTUK's official R23 EEE course structure and syllabus.
5 units, from Unit I to Unit V. Tick off units as you cover them — your progress stays on this device.
Unit-wise syllabus
0 / 5 COVERED
UNIT 01 — Unit I
Non-Isolated Switch Mode Converters Control of DC-DC converters: Buck converters - Boost converters - Buck-Boost converter - CUK Converter - continuous and discontinuous operation - Converter realization with non- ideal components.
UNIT 02 — Unit II
Isolated Switched Mode Converters Forwarded converter - flyback converter - push-pull converter - half-bridge converter - full bridge converter.
UNIT 03 — Unit III
Resonant Converters Basic resonant circuit concepts - series resonant circuits - parallel resonant circuits - zero current switching quasi-resonant buck converter - zero current switching quasi-resonant boost converter - zero voltage switching quasi-resonant buck converter - zero voltage switching quasi-resonant boost converter.
UNIT 04 — Unit IV
Control Schemes of Converters and Magnetic Design Voltage mode control - Current mode control - Current control mode instability. Magnetic Design: Transformer design - inductor and capacitor design.
UNIT 05 — Unit V
Modelling of Converters and Controller Design Based on Linearization: Formulation of large signal models for buck and boost converters using state space analysis- derivation of averaged large signal model using circuit averaging method-small signal model derivation- average switch modelling technique to obtain small signal models of buck and boost converters- Transfer function of converters-Controller design based on linearization.