About this role
Astrolab is The Lunar Operations Company. We design and build the systems and hardware the lunar economy will come to depend on — rovers, power, and data networks for sustained operations on the Moon. We are focused on the problems that must be solved before the next chapter of human exploration can scale. The Moon does not forgive untested assumptions. The people who work here know that, and they wouldn't have it any other way. We are seeking an Electromechanical Engineer with spaceflight hardware delivery experience, specializing in avionics electronics packaging, static and dynamic harness architecture, and passive/active thermal hardware integration. You will bridge the disciplines of electrical, mechanical, and systems engineering and take ownership of the physical, electrical, and thermal interface boundaries that house and interconnect mission-critical spaceflight avionics designed to survive long-duration exposure in cislunar and lunar surface operations . You will solve coupled structural, radiation shielding, and extreme thermal/cryogenic design challenges, taking hardware from initial conceptual trade studies through cleanroom flight builds, environmental qualification, vehicle-level integration, and flight ops. This position will report to the Director of Avionics. Lead the mechanical and structural design of space-qualified electronics enclosures, ensuring survival under launch random vibration, acoustic loads, and shock environments Select flight-proven materials, surface treatments, and staking compounds while balancing structural stiffness, thermal conductivity, electrical bonding, and outgassing limits Produce flight drawing packages with precise GD&T, fastener torque schedules, and electrical grounding and bonding callouts per spaceflight standards Collaborate closely with thermal analysis teams to verify conductive thermal paths from high-power die and board interfaces to chassis conduction decks and radiator interfaces in vacuum Integrate passive and active thermal control hardware, including heat pipes, thermal straps, thermal interface materials, operational and survival heater circuits, RTDs, thermistors, and multi-layer insulation (MLI) blankets Architect static and articulated or dynamic harness installations, including cable wrap mechanisms, service loops, twist capsules, and flex or rigid-flex jumper assemblies Design custom brackets, harness support trays, strain relief features, and breakout bulkheads optimized for mass, mass-elastic constraints, and design for manufacturability (DFM) Present and defend mechanical packaging, harness routing schemes, and thermal hardware implementations at formal milestone reviews, including PDR, CDR, TRR, and MRR