About The Position

Heron Power is a well-funded startup building next-generation power conversion hardware for the 21st-century grid. Backed by top investors and led by veterans who have shipped gigawatts of power electronics, we are developing advanced converters (inverters & rectifiers) for renewables, energy storage, data centers, and grid applications. We are looking for a Manufacturing Test Engineer who will build from the ground up the automated test infrastructure that allows us to ship high-reliability, high-power systems at scale.

Requirements

  • Bachelor’s degree in Electrical Engineering (or equivalent practical experience)
  • Strong experience designing and delivering automated test systems for high-voltage / high-power electronics (inverters, converters, or similar)
  • Demonstrated end-to-end ownership of test systems — from concept and architecture through deployment and sustainment
  • Hands-on expertise with instrumentation (oscilloscopes, power analyzers, electronic loads, DAQs, DMMs)
  • Strong Python experience for test automation (preferred) or deep experience with LabVIEW/TestStand + willingness to go deep on Python
  • Solid fundamentals in circuits, power electronics, and high-voltage safety

Nice To Haves

  • Experience with bi-directional power testing or regenerative loads
  • PCBA manufacturing functional test and yield improvement
  • HIL systems or embedded firmware validation
  • High-volume production test deployment

Responsibilities

  • Design, architect, and deliver complete automated test systems across the full lifecycle: PCBA functional test (bed-of-nails, pogo, interface fixtures), Subsystem validation, High-power / high-voltage end-of-line (EOL) testing, Bi-directional converter test cells (source + sink capability).
  • Own test architecture and coverage strategy from PCBA through full system.
  • Design and build high-power test cells including bidirectional sources, regenerative loads, HV measurement chains, protection systems, and safety interlocks.
  • Develop automated test sequences (power cycling, efficiency mapping, transient response, fault injection, protection validation).
  • Drive Design-for-Test (DFT) with hardware and firmware teams.
  • Own fixture design, instrumentation integration, automation software (strong Python preferred), deployment, and long-term sustainment.
  • Continuously improve yield, debug speed, and test reliability in a production environment.

Benefits

  • Competitive salary + meaningful equity in a well-funded company
  • Collaborative, first-principles culture with seasoned leaders
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