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Start to finish ownership of traction inverter hardware (PCBA and/or power stage) from specification to design, simulation, prototype, validation, and support high-volume manufacturing and field studies.
Characterize and model power semiconductors (static, dynamic, thermal) and traction inverters (peak power, efficiency, faults) performance.
Develop and test (integrated) analog/digital circuit/power converter technologies to improve traction inverter (peak power, efficiency, reliability, manufacturability, cost) performance.
Collaborate with modeling, mechanical, manufacturing, test, and control/firmware engineering teams to successfully design, validate, and manufacture traction inverters.
B.Sc./M.Sc./Ph.D. (w/ relevant internship/working experience) in Electrical/Electronic Engineering and evidence of exceptional ability.
Relevant hands-on experience with analyzing and testing high voltage power semiconductors (switching waveforms and loss mechanisms).
Relevant hands-on experience with design and testing of PCBA (integrated circuits, gate drivers, sensors/signal conditioning, power supplies) and with embedded programming.
Proficiency with laboratory equipment (oscilloscopes, power supplies, analyzers) and circuit simulation tools, as well as good understanding of schematics, datasheets, and application notes.
Good fundamentals (design trade-offs) of passive electronic components (capacitor, inductors, and transformers).
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