Relevant Backgrounds Include
- RF / Antenna Engineering
- Power Electronics Engineering
- Analog / Mixed-Signal Engineering
- Hardware / PCB Design Engineering
- Signal Integrity Engineering
Key Responsibilities
- Apply hands-on electrical and hardware engineering expertise to technically complex engineering tasks.
- Review and evaluate hardware designs, engineering workflows, technical analyses, and troubleshooting approaches.
- Analyse design trade-offs, failure modes, measurements, test results, and system-level engineering decisions.
- Assess the technical correctness and practicality of engineering solutions generated for real-world hardware problems.
- Identify errors, missing assumptions, unrealistic recommendations, and potential design or implementation risks.
- Develop or review technically rigorous engineering problems, reference solutions, evaluation criteria, or supporting documentation.
- Draw on practical experience with hardware development, validation, bring-up, debugging, manufacturing, and testing.
- Provide clear technical feedback grounded in real engineering experience and industry best practices.
- 5+ years of professional industry experience, including at least 3 years of recent, actively hands-on experience in hardware development, testing, bring-up, validation, or troubleshooting.
- Direct experience serving as the responsible engineer for substantial portions of a hardware development or engineering workflow, rather than solely managing engineering teams or projects.
- Deep expertise in at least one of the following areas:
- RF systems, antennas, electromagnetic design, or RF validation
- Power electronics, power conversion, motor drives, or power delivery
- Analog or mixed-signal circuit design
- PCB architecture, schematic design, board bring-up, or hardware debugging
- Signal integrity, power integrity, high-speed interfaces, or system-level electrical validation
- Strong understanding of practical engineering constraints including component selection, tolerances, measurement, manufacturing, reliability, thermal considerations, and system integration.
- Experience debugging real hardware using relevant laboratory equipment, simulation tools, and engineering instrumentation.
- Ability to explain technical decisions, trade-offs, and failure modes clearly and rigorously.
Experience working for a company that designs and manufactures physical hardware products is strongly preferred. Relevant organisations may include, but are not limited to:
- Aerospace & Defence: Lockheed Martin, Northrop Grumman, RTX, Boeing, General Atomics, L3Harris, BAE Systems, General Dynamics, Honeywell Aerospace, Textron
- Space: Blue Origin, Rocket Lab, Relativity Space, Firefly Aerospace, Sierra Space, Astranis, Planet, Maxar, Axiom Space
- Automotive & EV: Tesla, Rivian, General Motors, Ford, Lucid, Waymo, Zoox, Aptiv, Bosch
- Semiconductors: NVIDIA, Qualcomm, Intel, Analogue Devices, Texas Instruments, Broadcom, Marvell, Micron, NXP, Infineon
- Consumer Electronics & Computing: Apple, Google Hardware, Meta Reality Labs, Microsoft Devices, Amazon, Samsung, Garmin, Sonos
- Drones, eVTOL & Robotics: Skydio, Shield AI, Zipline, Joby Aviation, Archer Aviation, Boston Dynamics, Figure, Agility Robotics, Wing
- Industrial, Energy & Medical Devices: Siemens, GE Aerospace, GE Vernova, ABB, Schneider Electric, Rockwell Automation, Enphase, Medtronic, Intuitive Surgical
Why Join
- Apply your engineering expertise to technically challenging problems at the intersection of advanced hardware engineering and AI research.
- Work on projects where practical, real-world engineering experience is highly valued.
- Help improve how advanced AI systems reason about electrical engineering, hardware design, testing, and troubleshooting.
- Contribute remotely with flexible engagement structures alongside experienced engineers and researchers.
- Work on problems that require genuine engineering judgment rather than purely theoretical knowledge.






