Power Electronics Laboratory

High-Performance Hardware Design & Precision Modulation

Explore lab-tested inverter prototypes, discrete Proportional-Resonant (PR) control loops, and Space Vector PWM (SVPWM) algorithms built for real-world power conversion efficiency.

Explore Buck Converter
Embedded DSP Firmware

Texas Instruments TMS320F28379D & High-Speed ePWM

Step-by-step register configuration, complementary ePWM deadband insertion, 16-bit ADC calibration, and Code Composer Studio firmware for real-time digital power control.

Renewable Grid & BMS

Grid-Tied Solar Inverters, LCL Filters & Li-ion Battery Storage

Design isolated gate driver circuits with active Miller clamping, calculate LCL resonance damping, and implement battery SOC & SOH estimation algorithms.

Bridging the Gap Between Academic Formulas & Physical Silicon

Most electrical engineering education stops at theoretical differential equations. When building actual hardware, engineers face parasitic inductances, MOSFET switching deadtime, ADC sampling noise, and thermal constraints.

Pulse TechX was created by Antu Roy & Bapi Biswas to provide complete, open-access engineering modules—from circuit simulation and DSP firmware architecture to physical hardware PCB validation.

11+ Disciplines
2+ Modules
100% Open Access
PulseTechX Power Electronics and DSP Hardware Architecture

Explore All 11 Engineering Segments

Comprehensive modules covering basic electrical fundamentals, advanced modulation, DSP firmware, and physical hardware prototypes.

Basic Electrical

Comprehensive engineering modules, circuit simulations, and DSP firmware derivations.

Circuit Theory

Comprehensive engineering modules, circuit simulations, and DSP firmware derivations.

Power Electronics

Comprehensive engineering modules, circuit simulations, and DSP firmware derivations.

Analog & Digital Electronics

Comprehensive engineering modules, circuit simulations, and DSP firmware derivations.

Electrical Machines

Comprehensive engineering modules, circuit simulations, and DSP firmware derivations.

Popular Subjects

Comprehensive engineering modules, circuit simulations, and DSP firmware derivations.

Power Systems

Comprehensive engineering modules, circuit simulations, and DSP firmware derivations.

Control Systems

Comprehensive engineering modules, circuit simulations, and DSP firmware derivations.

TI F2837x & Embedded Systems

Comprehensive engineering modules, circuit simulations, and DSP firmware derivations.

Power Electronics Services

Comprehensive engineering modules, circuit simulations, and DSP firmware derivations.

Power Electronics Calculator

Comprehensive engineering modules, circuit simulations, and DSP firmware derivations.

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Engineering Consultation

Custom power converter design, PCB optimization, and TI DSP firmware consultation.

Featured Hardware Topologies & Papers

Mathematical papers, register-level TI C2000 firmware, and laboratory validated schematics.

Power Electronics Advanced Undergraduate / Industrial R&D

Buck Converter (Step-Down DC-DC Converter)

A Buck Converter (Step-Down Chopper) converts a higher DC input voltage $V_{in}$ into a lower regulated output voltage $V_o = D \cdot V_{in}$. Operating under Continuous Conduction...

DC-DC Converters 12 min study Antu Roy
Explore Paper & Schematics
Power Electronics Intermediate / Advanced

Boost Converter (Step-Up DC-DC Converter)

A Boost Converter steps up an unregulated DC input voltage $V_{in}$ to a higher regulated output voltage $V_o = \frac{V_{in}}{1 - D}$. The transfer function exhibits an RHP zero $\...

DC-DC Converters 10 min study Antu Roy
Explore Paper & Schematics
150+ Projects Completed

Hardware prototypes, inverters & TI DSP firmware builds

📚 11+ Core Disciplines

Comprehensive open-access electrical & embedded tracks

🎓 10+ Mentored Engineers

Guided student capstones & competitive GATE research

50+ Lab Bench Tests

Physical scope captures & thermal stress validations

Engineering Articles & Design Notes

Practical deep dives into power converter topologies, DSP register configurations, and hardware troubleshooting.

Meet the Creators of Pulse TechX

The passionate engineers, researchers, and creators behind PulseTechX open-source initiatives.

Antu Roy — Power Electronics & Embedded Engineer

Antu Roy

Power Electronics Hardware Engineer & Embedded Developer
“Embrace Risks in Your Work. Even If You Don't Achieve the Desired Output, You'll Always Gain Valuable Lessons”

Specializes in real-time embedded control on TI C2000 (TMS320F28379D), Space Vector PWM implementations, hardware-in-the-loop (HIL) testing, isolated gate drivers, and grid-connected inverter development.

⚡ TI C2000 DSP 🎛️ SVPWM & FOC ☀️ PV Inverters 🔌 Gate Drivers 🔋 BMS SOC/SOH
Bapi Biswas — Academician & Engineering Mentor

Bapi Biswas

Academician, Researcher & Engineering Mentor
“Real learning should consist of drawing the goodness and the best out of our own students. What better books can there be than the book of humanity”

Guides system-level modeling, magnetics design, AC circuit theorems, high-power converter testing, and competitive exam architectures (GATE/JEE Electrical).

🌐 Power Systems ⚡ Circuit Theory 🧲 Inductors & Magnetics 🌡️ Thermal Sizing 📖 GATE Mentorship

Frequently Asked Questions

Find clear answers regarding learning materials, hardware simulation files, and engineering collaboration.

Traditional courses focus solely on ideal differential equations. PulseTech covers the full transition into physical silicon—including real gate-drive switching delays, Texas Instruments C2000 DSP register firmware, thermal dissipation limits, and PCB layout parasitic reduction.

All Code Composer Studio (CCS) project code, register initialization routines, and ePWM deadband examples are freely accessible directly from our GitHub repositories and under the TI F2837x Microcontroller course section in the navigation menu.

Yes. Our online LCL Filter, Duty Cycle, and Thermal Heatsink calculators use industry-standard continuous conduction mode (CCM) boundary equations, switching loss estimation formulas, and resonance damping limits validated against physical lab hardware.

Absolutely! We encourage power electronics researchers, embedded engineers, and students to contribute. You can open a Pull Request on GitHub or reach out to Antu Roy & Bapi Biswas directly via our Contact Page.

Yes. We provide dedicated GATE EE question sets, daily electrical problem quizzes, and technical walkthroughs for capstone thesis projects in solar inverters, BMS, and motor drives.