
Thrust Vector Control System
An STM32 microcontroller, 6-axis gyroscope and two servos that stabilize a model rocket's trajectory from gyro readings and report flight statistics.

Working on the Sanctum project and an M.S. in Space Systems Engineering at Johns Hopkins. B.S. ECE from Rowan University.

An STM32 microcontroller, 6-axis gyroscope and two servos that stabilize a model rocket's trajectory from gyro readings and report flight statistics.
Tracked local flights with an RTL-SDR and Dump1090, then decoded ADS-B signals by hand.

Verilog processor with ALU, control unit, PC, RAM and ROM, built in Intel Quartus Prime.

Master–slave DFF with preset and clear, laid out and simulated in Cadence Virtuoso.
I'm a Systems Engineer at Lockheed Martin on the Sanctum project, and I'm working on my Master's in Space Systems Engineering at Johns Hopkins University. I earned my B.S. in Electrical & Computer Engineering from Rowan University in 2023.
I started on FIRST Robotics Team 3637 at Hunterdon Central, where I also worked for the school's IT department. At Rowan, I worked in the ECE Resource, Fabrication and Assembly Centers, helped develop a composite DLP printer for the Advanced Materials & Manufacturing Institute (AMMI), and served as Vice President of the AIAA student branch.
I also hold an FAA Part 107 certificate for commercial drone operations.