Key Responsibilities: Lead the design and development of electrical hardware for spaceflight systems, prototypes, and ground support equipment Own electrical hardware from concept through flight, including requirements, schematics, PCB layout oversight, bring‑up, and verification Design and review mixed‑signal circuits incorporating digital logic, analog interfaces, sensing, control, and on‑board power conversion Design board‑level power architectures, including DC/DC converters, point‑of‑load regulation, power distribution, sequencing, and protection Develop and support high‑speed electrical designs (e.g., LVDS, Ethernet, SpaceWire, PCIe, or equivalent interfaces) with attention to signal integrity Collaborate closely with mechanical, thermal, software, harnessing, and systems engineering to ensure robust hardware integration Support component selection (processors, FPGAs, memories, connectors, converters) with consideration for spaceflight environments Guide hardware trade studies and architecture decisions based on performance, reliability, risk, cost, and schedule Participate in prototype builds, board bring‑up, debugging, and root‑cause analysis using lab equipment (oscilloscopes, logic analyzers, spectrum analyzers, etc.) Plan and support verification and test campaigns including functional, environmental, EMI/EMC, and system‑level testing Prepare and review technical documentation supporting design reviews (SRR, PDR, CDR), qualification, and flight readiness Serve as a technical mentor to junior engineers, establishing best practices for electrical design and documentation Interface with NASA customers, partners, and vendors as a technical authority for electrical hardware. Preferred Qualifications: Master of Science (MS) in Electrical Engineering Experience supporting NASA programs such as Artemis, ISS, Commercial Crew, or comparable missions Experience designing to SpaceVPX or related modular space avionics architectures Experience with designing high voltage, high power electronics up to 120V Familiarity with high‑reliability PCB design practices for harsh environments (thermal cycling, vibration, vacuum) Experience with FPGA‑ or processor‑based systems and embedded interfaces Experience with EMI/EMC design and mitigation for spaceflight hardware Prior experience in an aerospace startup or agile commercial space organization.