Director of Laser System Development
Neurophos
| Company | Neurophos |
| Category | Engineering |
| Location | Austin |
| Remote | On-site (inferred) |
| Employment | Not stated |
| Level | Director |
| Salary | USD 275k–350k |
| Posted | 5 May 2026 |
| Last verified | 11 Aug 2026 |
| Source | Employer ATS (ashby) |
Description
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 https://www.neurophos.com/110m-raise 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!
POSITION OVERVIEW
This role will lead Neurophos’ C-band high-power laser development programs. This is a senior position requiring deep technical expertise in laser physics and the ability to drive complex photonic device development from architecture through productization. The Director will own end-to-end development of high-power laser systems designed to meet output power, coherence, and spectral purity requirements for our next-generation optical AI compute platform.
The candidate must have hands-on experience driving laser hardware development programs spanning multiple interdependent subsystems. They must be skilled at planning around long foundry lead times, structuring work to minimize re-spins, and managing vendor relationships at the epi and process-spec levels. This role requires the technical depth to own critical path decisions and manage cascade impacts across subsystems.
LOCATION
Austin, TX or San Jose, CA. Full-time onsite position.
KEY RESPONSIBILITIES
Laser System Architecture & Development
- Lead the design, development, and optimization of high-power laser systems operating in the C-band (1550 nm).
- Experience developing erbium-doped fiber amplifier or waveguide amplifier laser systems.
- Define and drive laser system configurations to achieve high output power targets with high coherence, narrow linewidth, and low noise.
- For injection-locked systems, own the locking-range analysis, injected-power-ratio optimization, and stability-margin assessment across temperature and aging conditions; define feedback and control requirements for maintaining lock, and validate that the electronics solutions meet system-level specs.
- Own system-level trade studies covering optical output power, coherence length, linewidth, RIN, SMSR, locking bandwidth, and wavelength stability across operating conditions.
- Develop and validate device and system models to predict performance and guide design decisions through simulation platforms such as Lumerical, VPIphotonics, PICS3D, or equivalent.
Program & Team Leadership
- Build, lead, and mentor a multidisciplinary laser engineering team spanning laser physics, photonic integration, packaging, and test.
- Define technical roadmaps and milestone-driven development plans aligned with product schedules and business objectives.
- Drive program execution across in-house engineering teams and external foundry and packaging partners; work closely with TPMs on schedule management, vendor coordination, and milestone tracking.
- Lead design reviews, root-cause failure analyses, and risk mitigation planning for laser subsystems.
- Communicate program status, critical path, techn