Skip to jobs
Unlisted
All jobs

Neurophos · Engineering

Chief Engineer, Prototype System Integration and Experimentation

Where
Austin, Texas
Experience
10+ yrsguessed from the title
Pay
$265K–$310Kbase, as stated on the posting
Posted
Already listed when Unlisted started watching this board (6 Oct 2026)
Apply on AshbyOpens the employer's own posting

Checking Ashby for this posting…

About Neurophos

The demand for new data centers and AI compute is rapidly outpacing the planet's energy capacity. Digital solutions are hitting a power wall as we approach the physical limits of traditional silicon. Conquering this bottleneck means rethinking the fundamental architecture of inference compute. The industry's current path can't meet the need, so we're taking a different approach.

Instead of traditional electronic circuits, we use silicon photonics and an active, programmable metasurface to perform matrix multiplications at the speed of light. Our optical cells are 10,000x smaller than traditional photonic components, enabling unprecedented density. By using photonics instead of electricity, our chips become more efficient as they scale. This architecture will deliver up to 100 times the energy efficiency of existing solutions while significantly improving performance for large-scale AI inference.

We’ve assembled a world-class team of industry veterans and recently raised a $110M Series A led by Gates Frontier. Participants include M12 (Microsoft’s Venture Fund), Carbon Direct Capital, Aramco Ventures, Bosch Ventures, Tectonic Ventures, Space Capital, and others.

Join us and shape the future of computing!

Location: Austin, TX

Reports To: Chief Technology Officer

FLSA Status: Exempt

Position Overview

We are seeking an exceptional Chief Engineer to own the technical execution of our first fully integrated prototype system. This system spans optical sources, electro-optic modulation, high-speed mixed-signal electronics, free-space optics, a programmable photonic compute element, and the firmware and host software that drive them. A mix of internal teams and external design partners develops each subsystem, and the prototype works only if all of them agree—numerically, electrically, optically, and mechanically—at every interface.

You will be the single technical authority who holds that agreement together. You will own the end-to-end system performance budget, maintain the architecture and interface definitions that all subsystems are built against, scrutinize the designs delivered by internal teams and vendors alike, and drive integration and bring-up in the laboratory. This is a hands-on engineering leadership role, not a program-management role: you will be expected to read a schematic and question a component choice, recompute a budget line and challenge a vendor's assumption, and trace a bring-up anomaly from a measured waveform back to the architectural decision that caused it.

Critically, the first successful demonstration marks the beginning of this role, not its end. The prototype is intended to live on as the company's permanent experimental platform for optical computing—the instrument on which we quantify how individual optical and electrical impairments propagate into end-to-end computational accuracy, and on which we prototype and evaluate alternative mathematical encodings of the core compute operation before committing them to silicon. You will own that platform for its full life: keeping it instrumented, reconfigurable, and trustworthy as a measurement reference, designing and running the experimental campaigns that answer the architecture questions for the next product generation, and ensuring that what we learn on the bench feeds directly into system models and design decisions.

If you have deep multi-disciplinary hardware intuition, the systems-engineering discipline to keep a complex program coherent, the technical credibility to hold both internal teams and external suppliers to a specification, and the experimental rigor to turn a laboratory system into a source of durable physical insight, this role will let you define whether a first-of-its-kind computing platform works—and what comes after it.

Primary Responsibilities

Secondary Responsibilities

Qualifications

Preferred Skills

What We Offer

This is an opportunity to play a pivotal role in an innovative startup redefining the future of AI hardware. Work on game-changing technology at the intersection of photonics and AI as part of a collaborative, brilliant team. You’ll contribute to a platform that redefines computational performance and accelerates the future of artificial intelligence. Come help us bring this transformative technology to the world.

 

Benefits

Join a team that invests in your future and your well-being. At Neurophos, we offer: