Electrical engineer specializing in power electronics and power-conversion systems — designing and simulating EV charging, inverter, and DC-DC converter circuits — backed by a software-engineering foundation building distributed backend systems at Accenture.
Work
A selection of my most recent builds — from SPICE circuit simulation to cloud-ready APIs.
A full SPICE model of a bidirectional EV power system — AC grid charging via a diode-bridge rectifier and DC-to-AC inversion through an H-bridge PWM inverter. Outputs grid-quality 230 V / 50 Hz or 120 V / 60 Hz, verified with a Python post-processing pipeline and rendered waveform plots.
LTspice reference library of ten DC-DC converter designs — Buck, Boost, Buck-Boost, and Ćuk/SEPIC in both diode and synchronous-MOSFET variants, plus cascode GaN buck/boost using Nexperia 650 V devices. Ships reusable 100 kHz PWM, gate-driver, and dead-time control blocks, with conduction, switching, gate-drive, and reverse-recovery losses all modelled.
Full-stack email analytics product. The Electron desktop app provides a Chart.js dashboard with Google OAuth2, local SQLite storage, and on-device AI inbox analysis. The Fastify / TypeScript backend handles Gmail sync, Calendar API integration, and REST endpoints for sender trends, daily volume, and hourly usage patterns — deployed via Docker with GitHub Actions CI.
Career
Where I've worked and what I've built.
Academic
About
I'm a Software Engineer currently at Accenture as a Business Architecture Analyst, helping clients in financial services build robust backend systems.
Outside of work I'm drawn to power electronics — designing and simulating switching converters and inverter systems in LTspice, then verifying results with Python.
UC Berkeley EECS grad. I enjoy working across the full stack, from hardware simulation all the way up to containerised cloud services.
Open Source
My contribution history over the past year.