Avionics Engineer II - Inverter Development
Job in
Seattle, King County, Washington, 98127, USA
Listed on 2026-08-27
Listing for:
Blue Origin LLC
Full Time
position Listed on 2026-08-27
Job specializations:
-
Engineering
Electronics Engineer, Systems Engineer, Electrical Engineering, Test Engineer
Job Description & How to Apply Below
Applications will be accepted on an ongoing basis until the requisition is closed.
At Blue Origin, we envision millions of people living and working in space for the benefit of Earth. We’re working to develop reusable, safe, and low-cost space vehicles and systems within a culture of safety, collaboration, and inclusion. Join our team of problem solvers as we add new chapters to the history of spaceflight!
This role supports the development and operations of New Glenn, a single-configuration, heavy-lift orbital launch vehicle capable of routinely carrying people and payloads to low-Earth orbit, geostationary transfer orbit, cislunar, and beyond. Its first stage is fully reusable, and the vehicle was designed from the beginning to be human-capable.
This role supports the development and operations of New Glenn, a single-configuration, heavy-lift orbital launch vehicle capable of routinely carrying people and payloads to low-Earth orbit, geostationary transfer orbit, cislunar, and beyond. Its first stage is fully reusable, and the vehicle was designed from the beginning to be human-capable.
As part of a small, hardworking, and accomplished team of experts, you will design and qualify three-phase motor drive inverters that power New Glenn's electromechanical systems. You will own inverter development from concept through qualification, working closely with controls, software, mechanical, and actuator teams to deliver drives that meet demanding requirements in a launch vehicle environment.
We are looking for someone to apply their technical expertise and dedication to quality to positively impact safe human spaceflight. Passion for our mission and vision is required!
Responsibilities Include But Are Not Limited To:
Design three-phase motor drive inverters across the product life cycle: concept and requirements definition, design, analysis, prototyping, test and verification up to final release to production.
Support implementation and testing of motor control: field-oriented control, current and velocity loops, and position feedback, in partnership with controls and software engineers.
Contribute to architecture trade studies, analyses, performance characterization, and fault tolerance trades.
Support design risk analyses, worst-case circuit analysis and parts derating, failure modes effects and criticality analyses (FMECA), design for test/manufacture/cost (DFx), and root-cause analysis of test anomalies.
Plan and execute hands-on lab testing, including EMI testing, and environmental qualification (random vibration, shock, thermal cycling, thermal vacuum).Coordinate with systems engineering and electromechanical actuator teams on requirements, integration, and test.
Effectively communicate development status, risks, and challenges to management.
Minimum Qualifications:
Bachelor of Science in Electrical Engineering, or related field.
3+ years of hands-on electrical engineering design experience in power electronics, or a Master of Science plus 1+ year design experience.
Demonstrated experience designing and testing custom power electronics, including specific knowledge in switching device selection, isolated gate drive, dead-time setting, DC link capacitor sizing, phase current sensing, and protection schemes.
Working knowledge of PMSM/BLDC motor control fundamentals: field-oriented control, PWM modulation strategies, and closed current and velocity loops.
Experience with analog, digital, or mixed-signal circuit design, including analysis, simulation, test, troubleshooting, and part selection.
Familiar with many of the following parts and their usage: isolated gate drivers, Si and SiC MOSFETs, IGBTs, current sensors (shunt, hall, fluxgate), ADCs, DACs, op-amps, power supplies (linear, LDO, DC/DC), and processors (MCU, DSP, FPGA).
Experience with schematic capture and PCB layout for custom PCBA designs.
Hands-on proficiency with lab test equipment: oscilloscopes, high-bandwidth current probes, power analyzers, and motor or inertial load test setups.
Desire to work hands-on, both independently and as part of a team, throughout the development and production phases of the electronic assembly…
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