Electrical Engineer, Embedded Hardware

Galactic Resource Advancement Mechanism Technologies CorporationEl Segundo, CA
$160,000 - $230,000Onsite

About The Position

GRAM is a self-replication company creating machine labor for the physical economy. Our first research frontier is self-preservation: the base case of physical self-replication. We are building a new class of machines that can survive, coordinate, and recover without humans. We believe scalable machine labor requires more than single-agent task generality or machines shaped in our image. Our work spans hardware, controls, reinforcement learning, multi-agent coordination, materials science, evaluation, and world models. Join us to solve closure and multi-agent environment generality in industrial domains where demand for labor is effectively unbounded. It is our mission to make humanity galactic. You will own the low-voltage electrical architecture and embedded hardware connecting sensing, computation, communications, and control. The work spans sensor and compute selection, mixed-signal interfaces, network physical layers, custom interface and controller boards, connectors, harness drawings, grounding, shielding, electromagnetic compatibility, and board bring-up under real switching, vibration, and configuration changes. Power Electronics owns high-current conversion, motor drives, pulsed EPM stages, protection, and energy interfaces. Embedded Software owns firmware, drivers, diagnostics, and update behavior. Robotics Systems owns subsystem selection and integration; State Estimation and Perception own the algorithms consuming sensor data; Mechanical owns physical packaging. You own the released electrical design and measured signal integrity connecting them.

Requirements

  • Bachelor’s degree in electrical engineering, computer engineering, or a related field, or equivalent practical experience.
  • Released and brought up embedded electronics for a robot, vehicle, instrument, industrial machine, or comparable electromechanical product using controlled schematics, PCB layouts, bills of material, and revisions.
  • Designed mixed-signal or digital interfaces involving sensors, embedded compute, clocks, converters, communication physical layers, protection, filtering, and power sequencing.
  • Produced connector pinouts and cable or harness documentation, then verified continuity, grounding, shielding, signal integrity, communication margin, or electromagnetic performance on assembled hardware.
  • Closed an electrical integration failure by reproducing it with bench instrumentation, identifying the physical or circuit-level root cause, releasing a correction, and demonstrating the fix through repeated test.

Nice To Haves

  • Robotics sensors, embedded compute, CAN, EtherCAT, Ethernet, MIPI, USB, LVDS, precision analog acquisition, or distributed time synchronization.
  • High-reliability harnessing, grounding and shielding, EMI or EMC testing, environmental qualification, or electrically noisy motion systems.
  • Hardware-in-the-loop systems, production programming and calibration, automated board test, supplier technical review, or low-volume complex electromechanical builds.

Responsibilities

  • Translate sensing, compute, communications, calibration, diagnostic, environmental, and fault requirements into electrical architectures, interface specifications, signal budgets, and verification plans.
  • Select and integrate cameras, inertial sensors, encoders, force or torque sensors, ranging sensors, embedded compute, timing devices, and communication components against measured system requirements.
  • Design and release mixed-signal, digital, sensor-interface, communication, power-sequencing, and controller-support circuitry with controlled schematics, PCB layouts, bills of material, and revision history.
  • Own connector selection, pinouts, cable and harness drawings, shielding, grounding, separation, derating, strain relief, service loops, continuity requirements, and electrical acceptance criteria.
  • Bring up boards, sensors, compute, and networks using oscilloscopes, logic and bus analyzers, spectrum or network instrumentation, programmable supplies, thermal measurements, and automated acquisition.
  • Characterize signal integrity, noise, clock and time-distribution behavior, communication margin, startup and brownout behavior, grounding, emissions susceptibility, and injected faults on representative assemblies.
  • Carry embedded hardware through design review, supplier fabrication, inspection, assembly, programming support, calibration, machine integration, manufacturing test, nonconformance closure, and verified release.

Benefits

  • Meaningful early-stage equity
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