Hardware Engineer: Electrical Engineering

Generalist
$200,000 - $350,000

About The Position

Robots that learn from the world need hardware that can see, sense, and act within it. As a Hardware Engineer at Generalist, you will own electrical systems from end-to-end: from napkin sketch of concepts to schematic, layout, bring-up, and production. You’ll be responsible for custom hardware behind the cameras, sensors, and motor control that power our robots and the foundation models behind them. This is a full stack EE role. In a typical week, you may be prototyping new sensor modules and motor controls, debugging MIPI signal integrity on the bench, writing firmware for a microcontroller, working with a contract manufacturer to push a design through DFM and certification, and managing rollout of new hardware designs to the robot fleet. You will collaborate daily with mechanical engineers on packaging, thermals, and integration; and with software engineers on drivers, interfaces, and system performance.

Requirements

  • 5+ years shipping complex electronics products
  • Demonstrated full stack EE ownership: taking ideas from concept to production
  • Experience with highly integrated SoC based designs (e.g. Qualcomm, NXP i.MX, Ambarella, etc) including high speed interfaces (e.g. MIPI CSI/DSI, USB 3.x, PCIe)
  • High dynamic range in your work: from thinking deeply about high level system architecture choices and discussing their impact on model performance with our ML engineers, to getting your hands dirty with bench level soldering and rework, measuring timing delays on the oscilloscope, and swapping in new hardware for a live system test

Nice To Haves

  • Deep experience in one or more of the following: imaging systems (image sensor selection, ISP tuning, frame synchronization), motor control (BLDC drivers, current sensing, encoders)
  • Experience managing external suppliers, design partners, CM / JDMs, including schedule planning, materials sourcing, and production ramp

Responsibilities

  • Owning electrical designs through the full lifecycle: concept, architecture, schematic capture, PCB layout, fabrication, bring-up, validation, and scaled production
  • Designing sensing and motor control electronics for robot systems that are low latency, high fidelity, and robust in challenging environments with industrial interfaces (e.g. RS-485, CAN)
  • Designing multi-sensor architectures interfacing with highly integrated latest generation SoCs
  • Architecting power delivery systems with complex power trees and different sources (802.3bt, USB-C PD, LiPo)
  • Battery charging and power path management within tight power and thermal budgets in compact enclosures
  • Writing and debugging embedded firmware (C, C++, Rust) on microcontrollers or low level Linux device drivers for bring up, test, and production
  • Partnering closely with mechanical engineers on enclosure integration, thermal design, connector selection and placement, cabling
  • Driving designs to production: DFM and DFT, EMC and regulatory certification (FCC, CE), test fixture development, and manufacturing ramp with in-house resources, external design partners, or contract manufacturers
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