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Power Electronics Design Jobs (NOW HIRING)

Knowledge of circuit theory in the power electronics industry with an emphasis on design for manufacturability and / or a minimum of three years graduate level course work in power electronics with ...

Knowledge of circuit theory in the power electronics industry with an emphasis on design for manufacturability and / or a minimum of three years graduate level course work in power electronics with ...

Knowledge of circuit theory in the power electronics industry with an emphasis on design for manufacturability and / or a minimum of three years graduate level course work in power electronics with ...

Knowledge of circuit theory in the power electronics industry with an emphasis on design for manufacturability and / or a minimum of three years graduate level course work in power electronics with ...

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Bachelor of Science degree 3 years of power electronics design experience. Familiarity with several power converter circuit topologies and ability to analyze. Experience with control loop theory and ...

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Power Electronics Design information

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$80.5K

$123.5K

$169K

How much do power electronics design jobs pay per year?

As of Jun 6, 2026, the average yearly pay for power electronics design in the United States is $123,502.00, according to ZipRecruiter salary data. Most workers in this role earn between $112,000.00 and $132,500.00 per year, depending on experience, location, and employer.

What are power electronics design engineers?

Power electronics design engineers are professionals who specialize in designing, developing, and testing electronic circuits and systems that control and convert electrical power efficiently. They work on devices such as inverters, converters, power supplies, and motor drives used in industries like renewable energy, automotive, and consumer electronics. Their role involves selecting components, creating schematics, prototyping, and ensuring reliability and safety standards are met. These engineers often collaborate with cross-functional teams to optimize system performance and address technical challenges.

What is the difference between Power Electronics Design vs Power Systems Engineer?

AspectPower Electronics DesignPower Systems Engineer
CredentialsBachelor's or Master's in Electrical Engineering, certifications like IEEEBachelor's or Master's in Electrical Engineering, similar certifications
Work EnvironmentDesign labs, R&D departments, manufacturing facilitiesUtility companies, grid operation centers, consulting firms
Industry UsageConsumer electronics, renewable energy, industrial equipmentPower grid, transmission, distribution systems

Power Electronics Design focuses on creating and optimizing electronic circuits and components for controlling and converting electrical power. In contrast, Power Systems Engineers work on the larger electrical grid, ensuring reliable power distribution and system stability. Both roles require electrical engineering expertise and often overlap in renewable energy projects, but they serve different aspects of electrical power technology.

What are some common challenges faced by Power Electronics Design engineers and how can they be addressed?

Power Electronics Design engineers often encounter challenges such as thermal management, electromagnetic interference, and ensuring reliability in harsh environments. Addressing these issues typically involves careful component selection, robust simulation and testing, and close collaboration with mechanical and PCB layout teams. Staying current with emerging technologies and industry standards also helps engineers design more efficient and reliable systems. Regular communication with cross-functional teams ensures that potential issues are identified early and addressed proactively.

What are the key skills and qualifications needed to thrive as a Power Electronics Design Engineer, and why are they important?

To thrive as a Power Electronics Design Engineer, you need a solid background in electrical engineering, power conversion principles, and circuit design, usually supported by a relevant engineering degree. Familiarity with simulation tools like SPICE, PCB design software, and knowledge of industry standards and certifications such as IPC or IEC are essential. Strong problem-solving skills, attention to detail, and effective teamwork and communication abilities help you excel in this role. These skills ensure reliable, efficient, and safe power electronic systems that meet performance and compliance requirements.
More about Power Electronics Design jobs
What states have the most Power Electronics Design jobs? States with the most job openings for Power Electronics Design jobs include:
Infographic showing various Power Electronics Design job openings in the United States as of May 2026, with employment types broken down into 87% Full Time, 9% Part Time, 1% Temporary, and 3% Contract. Highlights an 91% Physical, 3% Hybrid, and 6% Remote job distribution, with an average salary of $123,502 per year, or $59.4 per hour.

Power Electronics Design Engineer

Hammond Power Solutions

Irwin, PA • On-site

$96K - $113K/yr

Full-time

Medical, Dental, Life, Retirement, PTO

Posted 4 days ago


Job description

Mesta Electronics, Inc. is a leading manufacturer based in the United States, specializing in the design, development, and manufacture of advanced power quality and power conversion equipment. As part of the global Hammond Power Solutions network, Mesta Electronics, Inc. is committed to innovative design, superior efficiency, and exceptional reliability, ranging from highly advanced harmonic filters to extremely precise induction heating power supplies. Our expertise in designing dry-type transformers and related technologies has positioned us as an industry leader for over a century.
Reporting to the Operations Manager, the Power Electronics Design Engineer is responsible for supporting the design, development, validation, and test of power-conversion hardware used in industrial, energy, and power-quality applications. This role focuses on translating system-level requirements into detailed power-electronics designs, including power stages, magnetics, protection circuits, mechanical design, and supporting control interfaces. This role collaborates closely with systems, firmware, mechanical, manufacturing, and quality teams to deliver innovative power conversion products.
Key Responsibilities include:
  • Design & Development
    • Support the design and analysis of 3-phase inverters & other power electronics solutions such as rectifiers, DC-DC converters, active harmonic filters, induction heating supplies, or grid-connected converters.
    • Support component selection for power semiconductors, magnetics, capacitors, resistors, and protection devices.
    • Perform basic electrical calculations (losses, efficiency, thermal margins) and support advanced analysis including thermal modeling, derating, and efficiency optimization.
    • Support the design and analysis of 3-phase inverters & other power electronics solutions such as rectifiers, DC-DC converters, active harmonic filters, induction heating supplies, or grid-connected converters.
    • Support component selection for power semiconductors, magnetics, capacitors, resistors, and protection devices.
  • Prototype Build & Testing
    • Assist with prototype assembly, bring-up, and debugging in the laboratory and coordinate 3rd party testing if/as required
    • Define and execute test procedures for functional, thermal, EMI/EMC, and performance validation.
    • Collect, document, and summarize test data for product development project reporting.
    • Interpret test results, identify root causes, and support implementation of corrective design changes.
    • Assist with regulatory and standards compliance (UL, IEC, IEEE, CE, EMC, safety, seismic where applicable).
  • Manufacturing & Documentation Support
    • Assist with BOM creation, part substitutions, and engineering change documentation.
    • Drive completion and implementation of sustaining engineering initiatives including Engineering Change Orders (ECOs).
    • Maintain engineering documentation including schematics, test reports, and revision histories.
    • Support transition from prototype to production, including BOM optimization and supplier coordination.
    • Provide technical support to manufacturing and quality teams for released products.
    • Support Design for Manufacturability (DFM) and Design for Assembly (DFA) activities.
    • Produce documentation needed by manufacturing to build new or modified products.
  • Cross Functional Collaboration
    • Participate in cross-functional design reviews, project meetings, and formal product development processes.
    • Work closely with firmware, mechanical, manufacturing, and applications engineers.
    • Actively learn company design standards, safety practices, and regulatory requirements.
    • Seek feedback and mentoring to build technical depth and engineering judgment.
    • Other duties as defined by management

Do you qualify? We are seeking:
  • BSEE required, MSEE preferred or equivalent experience in Engineering or a related field
  • 2-5 years of experience in engineering role within a manufacturing environment.
  • Fundamental understanding of power-electronics concepts (rectification, switching, PWM basics).
  • Familiarity with common power components (MOSFETs, IGBTs, diodes, magnetics, passives).
  • Exposure to schematic capture and PCB design tools (training or academic use acceptable).
  • Basic laboratory skills using oscilloscopes, multimeters, power supplies, and electronic loads.
  • Introductory experience with simulation tools (SPICE-based or MATLAB preferred).
  • Experience working with embedded control interfaces and collaborating with firmware teams.
  • Strong analytical, problem-solving, and troubleshooting skills.
  • Ability to work effectively in a team-based, structured engineering environment.
  • Effective written and verbal communication skills in a cross-functional engineering environment.
  • Knowledge of power inverters, variable frequency drives, or other related industrial power conversion equipment
  • Digital and analog circuit design and printed circuit board layout.
  • Knowledge of transformers, inductors, and other electrical magnetic products

NOTE: Hammond Power Solutions encourages applications from all qualified candidates. HPS has a great record of accommodating persons with disabilities. Contact our People & Culture team if you need accommodation at any stage of the application process or want more information on our accommodation policies.
Some of the benefits of working at Hammond:
We are Great Place to Work Certified! Our people work hard for us-so we make sure our benefits work hard for them. Our equitable pay, benefits, and practices prioritize security, health, and well-being while sharing in our business success through variable pay programs and our Employee Stock Ownership Program.
Our core benefits focus on wellness, mental health, and financial security when employees need them the most, early career or getting ready for retirement. We also support work-life balance through flexible work schedules, paid time off, and leaves of absence. Employees and their families also have access to our confidential, best-in-class Employee and Family Assistance Program (EFAP).
Specific Benefits includes:
  • Company 401K
  • Dental care
  • Disability insurance
  • Employee assistance program
  • Employee stock purchase plan
  • Medical Insurance, Health reimbursement, health savings account
  • Life insurance
  • Vacation time
  • Holiday
  • Tuition reimbursement
  • Vision care

We are committed to sustainable business practices and offer opportunities for our employees to support the communities where we live and work through our Hammond Giving Strategy.
#LI-TH1 #HP
Equal Opportunity Employer/Protected Veterans/Individuals with Disabilities
This employer is required to notify all applicants of their rights pursuant to federal employment laws. For further information, please review the Know Your Rights notice from the Department of Labor.