Support the development of advanced space systems, with a strong focus on avionics, payloads, communications, embedded systems, and end-to-end requirements decomposition. Define and manage system, subsystem, unit, and interface requirements across the
The successful candidate will leverage the mechanical design and development of propulsion components from concept through to detailed documentation and production handover. Design and optimize propulsion system components with a focus on performance,
Lead the GNC/AOCS development of a space mission through complete life-cycle; Lead a team of GNC/AOCS experts in the different domain; Requirements capture and flow-down (component level specification preparation); AOCS System definition and development,
Assist the Team Leader and Deputy Team Leader to plan and oversee imagery analysis projects. Conduct in-depth imagery analysis, processing and interpreting satellite, aerial and geospatial data. Deliver high-quality IMINT/GEOINT products and actionable
The successful candidate will be responsible for the specification, architecture, implementation and verification of digital hardware for embedded systems in space and defense applications, ensuring performance, reliability and compliance with applicable
Lead, develop and implement the SST activities, in the scope of domains such as the Space Surveillance and Tracking Support Framework and other related space and defence EU initiatives; Be responsible for defining, negotiating
Responsible for the selection and integration of payloads/sensors onboard the Skydweller Unmanned Air System (UAS). Define all system-level and subsystem-level requirements for payloads and sensors (e.g. EOIR, Radar, SIGINT, comms-relay, etc.)
You will lead communication system performance from early design to in-orbit operations. Your work will influence how satellites communicate and deliver data from orbit. You will operate close to real systems in both cleanroom and operational