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AIM

Electrical Engineer

Seattle$120k–$160kfulltimemidAdded 1 month ago

About this role

AIM is seeking an Electrical Engineer to design, validate, and integrate electrical systems for autonomous earthmoving robots operating in harsh field environments. You'll work across hardware, software, and mechanical teams to develop reliable power systems, sensor interfaces, and embedded electronics that perform in real-world conditions.

What you'll do

  • Design and implement electrical subsystems including sensors, compute platforms, power distribution, and communication interfaces
  • Perform hardware bring-up, testing, and validation using lab equipment like oscilloscopes and logic analyzers
  • Debug electrical and system-level issues in laboratory and field environments
  • Collaborate with software and autonomy teams to integrate hardware and communication protocols (CAN, UART, Ethernet, SPI, I²C)
  • Participate in design reviews to identify failure modes and improve product reliability
  • Support sensor integration, root-cause investigations, and field troubleshooting efforts

What they're looking for

  • Schematic capture and PCB design/layout
  • Analog and digital circuit fundamentals
  • Oscilloscope, multimeter, and logic analyzer operation
  • Communication protocols (CAN, UART, SPI, I²C, Ethernet)
  • Hardware bring-up and embedded systems integration
  • Power systems and electrical testing
  • System integration and troubleshooting
  • Technical documentation and design reviews
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AIM

AIM builds autonomy systems for heavy equipment and autonomous earthmoving robots, integrating hardware, sensors, and software to enable autonomous operation in mining and construction environments. The company is hiring for field engineers, configuration engineers, electrical engineers, and IT support roles to deploy, install, configure, and maintain these systems in real-world conditions worldwide.

View all jobs at AIM

Likely interview questions

  • Walk us through a PCB design project you've worked on—what was the schematic-to-layout process, and how did you handle signal integrity or power distribution challenges?
  • Describe a time you debugged a hardware issue in the field or lab using test equipment. What tools did you use, and how did you isolate the root cause?