Optomechanical Engineer
Listed on 2026-09-22
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Engineering
Mechanical Engineer
About EON
EON is building the highest-throughput point‑to‑point data transport network ever deployed in space. Using free‑space laser links in Medium Earth Orbit (MEO), we move petabytes of data between any two points on Earth as an alternative to subsea or terrestrial fiber. EON recently closed a $10.75M seed financing round led by Andreessen Horowitz and General Catalyst in their first‑ever co‑led space deal.
EON is building out of its R&D center in Culver City.
EON is building the highest-throughput point‑to‑point data transport network ever deployed in space. Using free‑space laser links in Medium Earth Orbit (MEO), we move petabytes of data between any two points on Earth as an alternative to subsea or terrestrial fiber. EON recently closed a $10.75M seed financing round led by Andreessen Horowitz and General Catalyst in their first‑ever co‑led space deal.
EON is building out of its R&D center in Culver City. Today, approximately 95% of the global internet travels through a few hundred subsea fiber‑optic cables, infrastructure designed in the early 2000s that has gone largely unchanged. Demand for new fiber has never been higher, but laying it is extraordinarily difficult: permits, ocean geology, and geopolitical boundaries make every new cable a years‑long, billion‑dollar undertaking.
That bottleneck is a liability with cables at constant risk of being cut, whether by accident or adversarial action, and no amount of ground‑based investment can fully solve it.
Our optics have to be mounted to sub‑micron precision and stay aligned under thermal swings, vibration, and handling. We are seeking optomechanical engineers to design the assemblies the beam path rides on and the alignment schemes that keep them true from bench to field. Your work may look like partnering with Optical Design on tolerancing and alignment budgets and with Thermal on the structural‑thermal‑optical behavior that drives alignment stability.
Responsibilities- Design optomechanical assemblies for EON's laser communications terminals, and carry them from concept through first light
- Design mounts, flexures, and kinematic schemes that hold sub‑micron alignment under real loads
- Contribute to the line‑of‑sight error budget: structural dynamics, tolerance stack‑up, jitter analysis, and pointing calibration
- Analyze mechanical and thermal stability of the optical train, supporting structural‑thermal‑optical (STOP) analysis in partnership with Thermal
- Drive tolerance and alignment‑budget trades with Optical Design, where optical and mechanical performance are tightly coupled
- Execute alignment verification and metrology, confirming assemblies meet their budgets on the bench and after environmental exposure
- Support environmental test and qualification (vibration, shock, thermal‑vac) that proves assemblies hold alignment through launch and field conditions
- A degree in mechanical engineering, optical engineering, physics, or a related discipline
- Optomechanical design experience, including mounts, flexures, or kinematic design
- Hands‑on alignment and integration of precision optical assemblies
- Proficiency in 3D CAD (NX, Solid Works, Creo, or equivalent)
- Comfort moving fast and making sound calls without complete data
- Space or airborne optomechanical hardware, including launch‑load and on‑orbit stability design
- Lasercom or optical communications terminal experience
- Structural FEA (ANSYS Mechanical or equivalent) and structural‑thermal‑optical reasoning
- Athermalization and materials selection for stability: CTE matching, low‑expansion materials (Invar, Zerodur, silicon carbide), and bonded versus mechanical mounting trades
- Fiber‑coupling optomechanics: fiber‑to‑collimator alignment, fiber…
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