Hardware Power Electronics Engineer - Motor Drives
Job in
St. Louis, Saint Louis, St. Louis city, Missouri, 63105, USA
Listed on 2026-07-18
Listing for:
Nidec
Full Time
position Listed on 2026-07-18
Job specializations:
-
Engineering
Electronics Engineer, Electrical Engineering, Hardware Engineer, Systems Engineer
Job Description & How to Apply Below
Job Summary
Serve as the technical authority for power electronics hardware within C&I motor control and drive products. Lead the architecture, detailed design, simulation, validation, and industrialization of power electronics hardware—from concept through product launch—ensuring performance, EMC, reliability, manufacturability, safety, and regulatory compliance. Operate with a high degree of autonomy, providing technical leadership, design direction, and mentoring other engineers while partnering closely with firmware, mechanical, manufacturing, quality, and supplier teams.
Job Description- Act as technical lead and design authority for power electronics hardware across multiple products and platforms
- Design switching power converters with a strong focus on efficiency, thermal management, EMI, reliability, and safety
- Develop schematics and guide PCB layout for high-frequency and high-power circuits, ensuring optimal current loops, grounding, isolation, and thermal paths.
- Drive adoption of EMC-compliant hardware and layout practices from concept phase onward. Specify and validate current, voltage, and advanced sensors (including MEMS-based solutions) for control, protection, and diagnostics.
- Perform detailed electrical simulations, including circuit-level simulations (functional, signal transient, power losses).
- Collaborate with firmware and controls engineers to ensure optimal hardware–software interaction and system-level performance.
- Support the definition and implementation of hardware safety functions aligned with applicable standards.
- Design electronics with a strong focus on long‑term reliability under electrical, thermal, mechanical, and environmental stresses
- Lead DFMEA and contribute to system‑level risk assessments
- Analyze test and field failure data, contributing to root‑cause analysis and corrective design actions
- Ensure robustness against electrical overstress, thermal stress, EMC disturbances, and misuse scenarios
- Apply Design for Manufacturing (DFM) and Design for Test (DFT) principles throughout the development process.
- Support PCBA fabrication, assembly, and end‑of‑line testing strategy definition
- Work closely with Manufacturing Engineering and Quality to resolve electronics assembly, yield, and test issues. Support ramp‑up and production readiness activities
- Provide technical support during pilot builds, validation builds, and mass production launches
- Support preparation of technical documentation and test evidence required for certification and compliance activities
- Participate in pre‑compliance testing and troubleshooting to ensure successful formal certification
- Lead or support technical engagement with key suppliers for Power semiconductors
- Guide procurement on component selection, balancing performance, reliability & cost
- Support value engineering and cost optimization initiatives without compromising robustness or compliance.
- 10+ years of experience in electronics engineering.
- 10+ years of experience in electric motors, industrial equipment, and drives design.
- Proven hands‑on experience with power inverter topologies from 1 kW through 10 kW.
- Practical design ownership of active PFC hardware, implementing and supporting more than one topology across production programs.
- Repeated success in designing hardware that meets EMC emission and immunity requirements, including layout execution and pre‑compliance validation.
- Extensive experience designing high‑frequency power electronics, including switching devices, magnetics, and gate drive circuits.
- Experience implementing and validating hardware safety functions for motor control applications.
- Hands‑on involvement in PCB layout collaboration and design reviews for high‑power and high‑speed boards released to manufacturing.
- Applied experience using circuit analysis and simulation tools to predict losses, transient behavior, and design margins.
- 5+ years of experience applying current and voltage sensing technologies in power electronics and control systems.
- Practical exposure to deploying advanced MEMS‑based sensors in industrial or embedded electronics products.
- Direct involvement with PCBA manufacturing, including PCB fabrication, SMT/THT…
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