Power Electronics Controls Engineer

IntePros

$90K — $120K *
Energy & Utilities
Less than 5 years of experience
Job Overview by Ladders

Qualifications

  • Bachelor's degree in Electrical Engineering or equivalent experience
  • Experience with embedded control systems for power electronics
  • Hands-on expertise writing low-level control loops for microcontrollers or DSPs
  • Proficient in embedded software development for STM32 or similar platforms
  • Experienced in testing and troubleshooting high-power electronic equipment
  • Knowledge of power electronics systems like inverters and energy storage
  • Familiarity with grid-connected control strategies and validation tools

Responsibilities

  • Design and validate control algorithms for high-power electronic systems
  • Develop and modify embedded software for microcontrollers and DSPs
  • Tune low-level control loops for power conversion applications
  • Support design reviews and interdisciplinary collaboration
  • Participate in testing, qualification, and product launch activities
  • Conduct troubleshooting and failure analysis on control hardware
  • Maintain technical documentation including design and test procedures

Benefits

  • Hybrid work schedule (3 days in office; 2 days remote)
  • Opportunity to work on cutting-edge power electronics projects
  • Collaborative team environment with cross-functional interactions
  • Focus on professional development and continuous improvement
  • Involvement in leading-edge technology for grid-connected applications
Full Job Description
Power Electronics Controls Engineer
Location: Burlington VT- Hybrid- 3/2 as needed

A leading power electronics organization is seeking a Power Electronics Controls Engineer to support the design, development, and validation of embedded control systems for high-power electronic converters. This is a hands-on engineering role focused on developing control algorithms, embedded software, and validation processes for commercial power conversion systems used in grid-connected and customer-facing applications.

Key Responsibilities:
  • Design, develop, and validate control algorithms for high-power electronic systems
  • Develop and modify embedded control software for microcontrollers, DSPs, and related embedded platforms
  • Write and tune low-level control loops for power conversion and grid-connected applications
  • Support interdisciplinary design reviews, feasibility studies, system testing, and product development efforts
  • Participate in development testing, qualification testing, and production launch activities
  • Conduct failure analysis, troubleshooting, and engineering evaluations on hardware and control systems
  • Create and maintain technical documentation including design reports, test procedures, and operating manuals
  • Collaborate with senior engineers, product teams, and customer-facing stakeholders to define requirements and support project execution
  • Support embedded systems design, integration, and validation in commercial power electronics environments
  • Contribute to continuous improvement across design, testing, validation, and production readiness processes
Qualifications:
  • Bachelor's degree in Electrical Engineering or equivalent relevant experience
  • Experience designing, developing, or validating embedded control systems for power electronics or hardware-based applications
  • Hands-on experience writing low-level control loops for embedded platforms such as microcontrollers, DSPs, or microprocessors
  • Embedded software development experience with MCU/DSP environments such as STM32, Texas Instruments Code Composer Studio, or similar platforms
  • Experience testing, validating, and troubleshooting hardware, embedded systems, or high-power electronic equipment
  • Knowledge of power electronics systems such as inverters, converters, rectifiers, energy storage systems, industrial power systems, or grid-connected equipment
  • Exposure to grid-connected control strategies such as grid-following controls, grid-forming controls, or droop control algorithms
  • Experience with control validation tools or methods, including Hardware-in-the-Loop testing or similar platforms
  • Familiarity with communication protocols such as Modbus, CANbus, OPC-UA, or Ethernet TCP/IP
  • Exposure to grid interconnection, safety, or control software standards such as UL 1998, IEEE 1547, or UL 1741
  • Strong technical documentation, debugging, and cross-functional engineering collaboration skills
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