About Our Platform

Who We Are

Pioneering practical power electronics, TI C2000 embedded control, and open-source renewable hardware architectures.

From Theoretical Equations to Physical Silicon

Most academic electrical engineering curricula focus heavily on mathematical derivation without detailing the practical bottlenecks of real hardware—such as MOSFET gate ringing, parasitic inductances, deadband distortion, and ADC sampling jitter.

Pulse TechX was built to solve this exact divide. We create comprehensive resources that guide engineers from state-space modeling in MATLAB/Simulink all the way to flashing firmware on TI TMS320F28379D microcontrollers and testing physical converter prototypes.

Hardware First: Real schematic designs, gate drive isolation, and thermal modeling.
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Embedded Precision: Register-level C2000 ePWM, ADC calibration, and discrete PI/PR loops.
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Renewable Focus: Solar grid-tie inverters, battery management (BMS), and smart grid protection.
PulseTechX Power Electronics and DSP Hardware Architecture

Our Mission & Strategic Vision

Empowering the next generation of power electronics innovators with open access to silicon-level knowledge.

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Core Purpose

Our Mission

To democratize high-power electronics and real-time digital control education by providing free, open-source, and lab-tested hardware schematics, mathematical simulation models, and Texas Instruments C2000 firmware architectures to students, researchers, and practicing engineers worldwide.

  • 100% Free and open-access hardware design calculators
  • Rigorous lab bench testing before code publication
  • Direct bridge between academic theory and physical semiconductors
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Future Horizon

Our Vision

To become the leading open-source knowledge standard in clean-energy power conversion, accelerating the global transition toward renewable solar grid integration, ultra-efficient electric vehicle motor drives, intelligent solid-state battery management, and smart microgrids.

  • Advancing Wide-Bandgap (GaN/SiC) converter adoption
  • Building interactive space vector PWM visualizers for every engineer
  • Nurturing competitive engineering talent (GATE & Industrial R&D)
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Open Transparency

Complete schematics, BOM parts, register maps, and simulation files shared freely.

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Laboratory Rigor

Every control loop and harmonic derivation is validated on physical hardware setups.

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Community Mentorship

Active one-on-one mentorship for student capstone projects and competitive exam prep.

Our Four Core Engineering Pillars

Designed to provide complete end-to-end mastery over modern power electronics.

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Power Converter Design

DC-DC Buck, Boost, and DC-AC Inverter topologies. Detailed design of inductor saturation limits, capacitor ripple ESR, and thermal heatsink estimation.

Explore Topologies →
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Embedded C2000 DSP

Texas Instruments TMS320F28379D LaunchPad and controlCARD. Register configuration for ePWM deadbands, high-speed ADC triggering, and CLA co-processors.

View C2000 Guides →

Space Vector PWM (SVPWM)

Advanced modulation techniques, sector identification algorithms, Clarke-Park transforms, Field Oriented Control (FOC), and harmonic minimization.

Explore SVPWM →
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Renewables & BMS

Grid-tied solar inverters, phase-locked loops (SOGI-PLL), Maximum Power Point Tracking (MPPT Perturb & Observe), and Lithium-ion BMS state-of-charge algorithms.

Study BMS Systems →

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