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Electromechanical Test Systems Engineer - Robotics in Wilmington

Job in Wilmington, New Hanover County, North Carolina, 28412, USA
Listing for: Energy Jobline ZR
Full Time position
Listed on 2026-06-28
Job specializations:
  • Engineering
    Test Engineer, Automation & Mechatronics Engineer, Systems Engineer, Electronics Engineer
Salary/Wage Range or Industry Benchmark: 90000 - 130000 USD Yearly USD 90000.00 130000.00 YEAR
Job Description & How to Apply Below

About Symbotic

Symbotic uses an AI-driven robotic platform to transform how consumer products travel through the supply chain. Our intelligent software choreographs fleets of advanced robots in a dense, end-to-end warehouse automation system built for speed, flexibility, and efficiency.

The Role

Picture your day: you kick off with yield dashboards from our Contract Manufacturers, then head to the lab to bring up a new interface board you designed for a production test fixture. An hour later, you’re deep into a board‑level debug session with an oscilloscope and logic analyzer, hunting down a signal integrity issue. By afternoon, you’re refining Python‑based automation for instrument control and data logging, and closing the day by mentoring a junior engineer on best‑practice debugging and DFT principles.

You own the electrical test architecture that keeps our robotic and electromechanical products flowing from concept to production.

What your day may include
  • Designing electrical schematics, PCBAs, and interface boards for scalable manufacturing test fixtures and validation equipment.
  • Driving end‑to‑end hardware bring‑up: component selection, schematic/layout reviews, soldering/rework, and board/system debug.
  • Architecting robust test systems: power distribution, relays, multiplexing, signal conditioning, DAQ, and precision measurement instrumentation.
  • Building automated test software (Python ) for instrument control, execution, data collection, diagnostics, and results traceability.
  • Executing advanced electrical debug with oscilloscopes, DMMs, power and protocol analyzers to isolate PCBA and system failures.
  • Leading deployments and production support across internal sites and CMs: troubleshooting, yield lifts, and failure analysis.
  • Mining production and field data to elevate reliability, expand test coverage, and streamline manufacturing throughput.
  • Defining NPI test strategies, validation plans, and manufacturing test requirements from concept through ramp.
  • Collaborating with Electrical, Firmware, Software, Mechanical, Manufacturing, and Operations to resolve complex issues.
  • Owning project plans, deliverables, and readiness criteria for fixture and system rollouts.
  • Mentoring junior engineers/technicians and establishing rigorous debug and engineering best practices.
  • Driving continuous improvement in test architecture, fixture robustness, automation depth, and operational efficiency.
What equips you for success
  • BS in Electrical Engineering (or equivalent) and 8+ years in hardware design, manufacturing test engineering, or system validation.
  • Hands‑on mastery of schematic capture and PCBA development (Altium or similar).
  • Deep experience in bring‑up, soldering/rework, and component‑level debug.
  • Thorough grasp of analog/digital circuits, power electronics, SI, grounding, EMI/noise, and protection design.
  • Proficient with oscilloscopes, DMMs, programmable supplies, electronic loads, logic analyzers, and DAQ systems.
  • Proven design/build of manufacturing fixtures using relays, multiplexers, interface boards, and automated measurements.
  • Fluent in Python or a comparable scripting for test automation and diagnostics.
  • Track record supporting manufacturing and working directly with CMs.
  • Comfort with CAN, UART, SPI, I2C, Ethernet and related protocol debug tools.
  • Familiarity with data logging, databases, analytics of test results, and failure trend analysis.
  • Experience with embedded systems, sensors, motors, or electromechanical products.
  • Ability to lead technical projects, drive schedules, and mentor teammates; excellent communication and organization.
Extras
  • Background in robotics, industrial automation, or high‑volume manufacturing.
  • SCPI‑based instrument control and automated validation frameworks.
  • Production diagnostics, reliability testing, and thorough root‑cause methodologies.
  • Knowledge of manufacturing processes, fixture ergonomics, and DFT.
Travel and work environment
  • Up to 20% travel may be required. Employees must have a valid driver’s license and the ability to drive and/or fly to client and other customer locations.
Core proficiencies
  • Electrical Schematics
  • PCB Assembly (Printed Circuit Board Assembly)
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