I'm an engineer who understands the world through signals and systems. Music is where I first felt the intuition underpinning everything—feedback, resonance, time-frequency duality. The same mathematics keeps showing up in everything I've worked on: information security, trading systems, mobile platforms, audio synthesis hardware, encrypted computation.

0xPARC

Exploring applications of fully homomorphic encryption

FHE enables computation on encrypted data. An academic thread for many years, it's becoming increasingly practical for production environments. Building internal tooling and demonstrations across genomics and other domains.

The encrypted game of life

Conway's Game of Life running entirely within CKKS FHE. The server computes on encrypted state and inputs, fully blind to both.

0xparc.org/cgol →

Demo may be offline—reach out if you'd like to see it running.

On the 0xPARC mission—

Beyond Primitive Computing →


Humble Audio

Quad Operator

Founded Humble Audio and shipped the Quad Operator — a new take on Frequency Modulation synthesis for eurorack modular. Its one-control-per-function interface gives a deeper intuition for how FM parameters interact. Hardware, firmware, DSP, and product design, start to finish.

On building for musicians

When I started making music with Ableton Live in my 20s, it was clear I was more interested in how the audio processing worked than in the actual music making. Screen fatigue was extreme—I had zero desire to sit in front of a computer after work, and lots of creative folks I talked to felt the same way. My Dropbox years gave me an immense appreciation for the challenge of making tools for users, not just doing slick engineering. I wanted to put those skills toward something I loved dearly—music. It was my opportunity to have an influence on the music I couldn't make myself. Tool-making with DSP & hardware became the way.

Perfect Circuit interview → Quad Operator content →

Deeper down the hardware rabbit hole

Building on the Quad Operator, I started on a full-featured tabletop instrument—the most ambitious engineering project I've taken on solo. The hardware: Raspberry Pi Compute Module 4 with five MCUs, an audio CODEC, capacitive touch sensing, and LED driving across the chip network. The software: Linux kernel tuning, device drivers, real-time audio DSP. This work was not released. The FM synth at the bottom of this page adapts some of it.

Taking Back the Groove

Co-executive produced this documentary telling the story of Bronx-born disco legend Richie Weeks' journey to reclaim control of his copyrights.

Stream Taking Back the Groove (2023) →


Dropbox

Mobile Engineering Lead

Led mobile engineering from 0 to 100+ million active users. First author of the iOS client; grew into mobile team lead, managing 10 engineers across iOS and Android. Built Dropbox's first developer APIs. Led product and engineering for Samsung and HTC partnerships.


Bridgewater Associates

Technology Associate

Rewrote the algorithms within Bridgewater's portfolio construction and transaction-cost optimization process, in the Account Management department — the group responsible for translating market views into trades for execution. This engine sat at the center of Bridgewater's trading pipeline, generating billions of dollars of orders daily. Also built an equity-option hedging engine.

Investment Associate

Shifted from building the systems to understanding what they were optimizing for. Portfolio analytics, monitoring and analyzing client strategic beta portfolios.


MIT

S.B. & M.Eng., Electrical Engineering & Computer Science

Distributed Systems with Robert Morris, Computer & Network Security with Ron Rivest, Operating Systems, Microcontroller Lab, and on and on.

Outside the classroom, I pursued interests in information security: I worked with the MIT IS&T security team (incident response and systems evaluation), interned at Mazu Networks (engineering on traffic analysis and TCP stream reconstruction), researched SSH attack propagation & proposed mitigations at MIT CSAIL, and did a master's thesis in delegation-based authorization at MIT Lincoln Laboratory.

On the research

Co-authored "Inoculating SSH Against Address Harvesting" with Schechter, Jung, and McLain at MIT Lincoln Laboratory — countermeasures adopted by OpenSSH and a major commercial SSH vendor.

M.Eng thesis: Towards a Deployable Framework for Delegation of Authority in Network Applications — fine-grained delegation of authority, dynamic library interposition, security protocol design. Advised by Stuart Schechter & Hari Balakrishnan.

Contact

You made it all the way here. Something must have caught your attention. Feel free to reach out!

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