Senior Opto-Mechanical Engineer, Photonics
Listed on 2026-08-05
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Engineering
Systems Engineer, Mechanical Engineer
Senior Opto-Mechanical Engineer, Photonics
At Observable Space, we're redefining how humanity observes and connects with the universe. We're a vertically integrated, high-growth, space technology company building industry-leading precision optics platforms for Earth and in space. Our systems are trusted by NASA, JPL, SpaceX, Boeing, Raytheon, and the US DoD, among others, and power the work of leading research institutions.
We combine precision opto-mechanical hardware, embedded computing, cloud orchestration, and developer-friendly APIs into world class products. From advanced ground stations, on orbit sensor suites, free space optical lasercom, to distributed compute platforms, we deliver the foundational systems enabling continuous, real-time navigation, observation, and communication in space.
Observable Space is backed by top-tier institutional investors including Lux, Upfront Ventures, RTX Ventures, Detroit Venture Partners and Embedded Ventures.
Key Responsibilities- Architect, design, and document optomechanical systems supporting photonic subsystems for ground and space applications.
- Design precision assemblies for fiber coupling, laser integration, optical benches, detectors, and alignment-sensitive components.
- Lead the opto-mechanical design, analysis, and validation of high-performance Wavefront Sensors.
- Perform STOP analysis (Structural, Thermal, Optical Performance) to ensure system stability and optical alignment under operational conditions.
- Conduct FEA simulations to evaluate structural, thermal, and vibrational performance with emphasis on minimizing optical drift and deformation.
- Collaborate closely with optical engineers to integrate photonic components including lasers, wave guides, fiber optics, and detectors, and implement strategies for Wavelength Division Multiplexing (WDM) systems.
- Collaborate with Electrical Engineering and Software Engineering to test, validate, and iterate on designs, specifically supporting the mechanical integration of modem components and waveform management subsystems.
- Develop and simulate control systems for adaptive optics, integrating mechanical, optical, and software components to correct for system aberrations and atmospheric turbulence.
- Create atmospheric turbulence models and simulate various environmental effects on wavefront error.
- Own mechanical aspects of system integration, including tolerance stack-ups, mounting strategies, and environmental robustness.
- Support prototyping, assembly, integration, and test—including hands-on troubleshooting of optomechanical issues.
- Participate in design reviews (PDR, CDR, etc.) and ensure systems meet manufacturability, reliability, and performance requirements.
- Contribute to product lifecycle development, from concept through production and long-term deployment in remote or space environments.
- 5+ years of experience in optomechanical engineering, preferably in photonics, aerospace, or precision instrumentation.
- Strong proficiency in mechanical design fundamentals, including precision tolerancing and alignment-sensitive assemblies.
- Experience with CAD tools (Solid Works, NX, or similar).
- Experience designing systems involving optical or photonic components (e.g., fiber optics, lasers, detectors).
- Familiarity with FEA tools (ANSYS, Nastran, or similar) for structural and thermal analysis.
- Hands-on experience with fabrication, machining, and assembly of precision systems.
- Ability to read technical drawings and collaborate across disciplines.
- Strong debugging and problem-solving skills, especially in multidisciplinary systems.
- Ability to thrive in fast-paced, iterative development environments.
- Experience with photonics systems, including fiber alignment, laser stabilization, and optical coupling techniques.
- Direct experience designing, integrating, and testing Adaptive Optics (AO) systems and Wavefront Sensors.
- Familiarity with vibration isolation and environmental constraints (thermal cycling, vacuum, launch loads).
- Experience with STOP analysis and system-level performance verification.
- Knowledge of system engineering workflows, including interface control documents (ICDs) and…
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