Senior Electrical Engineer, Power Electronics

GRAM

Palo Alto (CA)

On-site

USD 155,000 - 195,000

Full time

3 days ago
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Benefits offered by this job

Health coverage
Equity
Relocation bonus

Job summary

GRAM is seeking a Senior Electrical Engineer focusing on power electronics to own the complete power path from architecture through released hardware in our Palo Alto facility. You will design switching converters, motor-drive stages, and protection networks, while validating performance across duty cycles, transients, and fault cases.

The role requires deep experience with MOSFET/GaN switching, sensing, thermal design, EMI/EMC, and multilayer PCBs.

Qualifications

  • Bachelor’s degree in electrical engineering or related field.
  • Experience in power-electronics hardware design and testing.

Responsibilities

  • Own power conversion, distribution, switching, protection, and measurement from architecture through released hardware.
  • Design and release switching power converters, motor-drive or pulsed-load stages, gate drives, sensing circuits, protection networks, and power distribution.
  • Model switching behavior, losses, magnetics, and control-loop stability using first-principles calculations and circuit simulations.
  • Bring up hardware with test equipment and automated acquisition under normal and fault conditions.
  • Diagnose failures and implement design changes with traceable revision history.

Education

Bachelor’s degree in electrical engineering or related field

Job description

Senior Electrical Engineer, Power Electronics
The Mission

GRAM is a self replication company creating populations of insectoids for the physical economy.

Our first research frontier is self-preservation: the base case of physical self-replication. Our machines will survive, coordinate, and recover without humans. We believe scalable machine labor requires more than single-agent task generality or machines shaped in our image.

About the role

You will own power conversion, distribution, switching, protection, and measurement from architecture through released hardware. The scope includes motor-drive electronics, electro-permanent-magnet pulse drivers, point-of-load conversion, current and voltage sensing, energy-storage interfaces, grounding, electromagnetic compatibility, and thermal design.

You will design from measured machine duty cycles, transients, and fault cases rather than nominal component ratings. The system must drive compact actuators and pulsed magnetic loads without compromising sensing, computation, or communications. Success means every power path has a quantified operating envelope, known fault behavior, traceable margin, and measured performance on the integrated machine.

What you will do
  • Convert actuator, magnetic, compute, sensing, and mission duty cycles into power budgets, transient requirements, efficiency targets, thermal limits, protection thresholds, and validation plans.
  • Design and release switching power converters, motor-drive or pulsed-load stages, gate drives, sensing circuits, protection networks, power distribution, and supporting multilayer printed circuit boards.
  • Model switching behavior, conduction loss, magnetics, parasitics, control-loop stability, fault energy, and junction temperatures using first-principles calculations and circuit simulation.
  • Bring up hardware with oscilloscopes, differential and current probes, electronic loads, power analyzers, thermal instrumentation, and automated acquisition under normal and injected-fault conditions.
  • Diagnose failures involving overcurrent, shoot‑through, saturation, ringing, grounding, electromagnetic interference, thermal runaway, brownout, or interactions among loads and controls.
  • Define drive and power interfaces across actuators, electro‑permanent magnets, embedded control, energy sources, mechanical packaging, and machine‑level safety systems.
  • Carry designs through layout review, supplier fabrication, assembly, environmental test, manufacturing test, nonconformance closure, and verified revision release.
  • Bachelor’s degree in electrical engineering or a related field, or equivalent practical experience developing power‑electronic hardware.
  • Released and brought up a switching converter, inverter, motor drive, pulsed‑power circuit, battery‑power stage, or comparable product using controlled schematics, layout, bill of materials, and revision history.
  • Demonstrated command of MOSFET or GaN switching, gate‑drive design, current sensing, protection, feedback stability, magnetics, loss calculation, thermal design, and power-PCB layout.
  • Built an instrumented validation setup and measured efficiency, switching waveforms, transient response, electromagnetic behavior, protection timing, and thermal margin across a defined operating envelope.
  • Closed a hardware failure that prevented operation or violated a defined limit by reproducing it, identifying the physical or electrical root cause, implementing a design change, and demonstrating the correction through repeated test.
Preferred experience
  • Compact motor drives, high‑current robotics, electro‑permanent‑magnet drivers, pulsed inductive loads, or other mass‑constrained power systems.
  • Battery management, isolated conversion, regenerative loads, functional safety circuits, or redundant power architectures.
  • EMI and EMC qualification, high‑reliability electronics, automated end‑of‑line test, or transition from prototype boards to repeat production.

The annual base salary range for this Palo Alto position is $155,000–$195,000. Health coverage, benefits, and generous equity come with the role. This role is on‑site in Palo Alto. A relocation bonus is available. We hire to start as soon as possible. We review what you’ve shipped; if it’s the caliber we seek, interviews take about a week, start to finish. We treat your work and conversations with discretion.

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