I'm a Hardware Engineer at NVIDIA with experience spanning the electronics stack, from IC design and digital systems to PCB design, embedded systems, and system-level validation.
I recently completed my Master's Degree in Electrical and Computer Engineering at the University of Illinois at Urbana-Champaign, where I also earned my undergraduate degree in Electrical Engineering. During my graduate studies, I completed a successful tapeout and conducted systems level hardware research in order to write my thesis, ExpertAhead: Latency-Hiding Expert Prediction for SSD-Backed MoE Inference on Unified-Memory Edge Platforms.
At Guardian RF, I designed, tested, and shipped custom hardware for UAV detection and tracking systems, owning hardware subsystems from schematic capture and PCB design through procurement, bring-up, validation, and deployment. My previous internships at NVIDIA, Texas Instruments, and NextFlex have given me additional experience with high-speed interconnects, software development, hardware integration, and electronics R&D.
Designed and taped out an RNG integrated circuit in TSMC 65nm. Responsible for schematic, layout, and simulation of a calibratable StrongARM latch-based entropy source, chip debug architecture,and contributed to final integration and bringup.
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Guided 6 teams of 2–3 senior ECE students from ideation to demonstration. Redesigned the PCB intro lab from ATMega to STM32, adding H-bridge, communication protocols, and expanded GPIO.
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Final project for Analog IC Design. Made topological and device sizing decisions to meet input/output voltage, load/line regulation specs while minimizing quiescent current using Cadence Virtuoso and Spectre.
View on GitHub →Designed the smallest bitsliced RV32I datapath (no shifter) from transistor level — placing top 5 of 100+ students. Deepened understanding of standard cells, routing, and IC abstraction levels.
In Prof. Minh Do's group: Dockerized codebase, migrated ROS to ROS 2, converted Python to C++ for improved performance. Developed real-time visualizations using DSP on TI IWR1443BOOST + DCA1000EVM.
View on GitHub →Designed a cryptographically secure remote access system using Schnorr Identification Protocol to eliminate replay, relay, and rolling jam attacks. Won Instructor's Award among 45 teams.
View Demo → View Report →
Designed and assembled a full FM transceiver system from individual RF building blocks — oscillator, mixer, modulator, demodulator, filter, amplifier, and matching network. Receiver picked up live FM broadcasts.
View on GitHub →Designed and assembled a stepper motor controller for an EV concept car's steering column. Accepts input via CAN bus or USB COM port, converting to PWM for precise angle control.
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PCB-based water sensor with analog ADC circuit on Raspberry Pi Pico W. Sends email alerts on detection and low battery. Sensors wire in parallel for multi-zone deployment.
View on GitHub →Replaced bulky analog controls with a Raspberry Pi Pico W web server managing speed, direction, and track switching. Full PCB and firmware on GitHub.
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DIY stock ticker using Raspberry Pi Pico W + WS2812B LED strip for ~$25 (vs $1000+ commercial options). Displays live price and % change in scrolling fashion from a hosted web UI.
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Implemented UART RX, NMEA parser, data storage, and VGA graphics driver in SystemVerilog on Intel FPGA. Enabled timestamped GPS location logging at 20-yard resolution with monitor display.
View Report →Designed a 4-layer PCB with GPS, LoRa, CAN transceiver, and USB-C around an STM32 MCU for real-time vehicle tracking, health monitoring, and remote control in the Shell Eco-Marathon.
Designed a 2-axis automated motion system for RF signal integrity testing using Marlin firmware, Python/serial control, and 3D-printed custom parts. Used Ansys HFSS for validation.