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eXalt in Paris, France, is seeking a Mechanical Engineer for Space and Defence FSO Systems to design high-precision opto-mechanical hardware for space-qualified communications.
You will own subsystems from concept to manufacturing, integration and environmental testing, ensuring optical alignment, launch survivability and long-term reliability, and collaborate with cross-functional teams across optics, thermal and electronics.
Our client is an innovative and fast-growing technology company developing advanced optical communication and photonics-based systems for highly demanding applications.
As part of the growth of its engineering activities, we are looking for a Mechanical Engineer, Space and Defence FSO Systems.
Reporting to the R&D and Engineering teams, you will contribute to the design and development of high-precision opto-mechanical systems for Free-Space Optical (FSO) communication products operating in space and defence environments.
You will work closely with the Lead Opto-Mechanical Architect and take direct ownership of defined subsystems throughout their full development lifecycle from initial concept and detailed design to manufacturing, integration, environmental qualification and test.
This role covers the interface between precision mechanisms, opto-mechanical structures and thermal control. You will design hardware that must maintain optical alignment, withstand launch and operational environments, and deliver reliable performance over an extended lifetime without in-service adjustment.
Master’s degree or Engineering degree in Mechanical Engineering, Aerospace Engineering or a related discipline. Equivalent practical experience may also be considered.
Demonstrable experience taking mechanical hardware from CAD design through fabrication, assembly, integration and testing in a demanding industrial environment.
Previous experience with space qualified hardware is essential. You understand the constraints associated with vacuum, thermal cycling, launch loads, material selection, contamination control, outgassing and cleanliness requirements.
Strong proficiency in a professional parametric CAD environment, ideally SolidWorks, CATIA, Creo, NX or equivalent. Excellent command of mechanical drawings, fabrication documentation and GD&T. Experience with opto-mechanical design, optical benches, precision housings, kinematic and isostatic mounting strategies. Solid knowledge of precision mechanisms, bearings, preload design, actuation, encoders and cable management. Experience with vacuum-compatible tribology, lubrication selection, materials and process assurance for space applications. Ability to specify, perform, steer or challenge FEA, including structural, modal, vibration and thermo-elastic analyses. Familiarity with SimScale, ANSYS, Nastran or equivalent tools is appreciated. Practical experience in thermal design and thermal modelling, including heater sizing, thermal interfaces, athermalisation and test correlation. Understanding of micro-vibration, line-of-sight stability and their impact on precision optical payloads.
Experience supporting or leading hardware through environmental test campaigns, particularly vibration and thermal-vacuum testing. You are comfortable investigating anomalies and contributing to qualification and justification files.
Experience in space systems, defence, precision instrumentation, optical payloads, laser communication terminals or other high-reliability mechatronic systems would be highly valued.
You combine analytical rigour with a hands-on engineering approach. You are comfortable moving between CAD, analysis reviews, supplier discussions and test facilities, and you enjoy solving complex problems at the interface of mechanics, optics and thermal engineering.
Professional working proficiency in English, with the ability to write technical documentation and communicate effectively with international suppliers, partners and engineering teams.