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Power Electronics Engineer Jobs in Detroit, MI (NOW HIRING)

Summary Electronic Engineer develops electronics to support Flex-N-Gate products Job Duties Design ... Switching power supplies (Buck/Boost), linear power regulation and LED design development and ...

Summary Electronic Engineer develops electronics to support Flex-N-Gate products Job Duties Design ... Switching power supplies (Buck/Boost), linear power regulation and LED design development and ...

Summary Electronic Engineer develops electronics to support Flex-N-Gate products Job Duties Design ... Switching power supplies (Buck/Boost), linear power regulation and LED design development and ...

Summary Electronic Engineer develops electronics to support Flex-N-Gate products Job Duties Design ... Switching power supplies (Buck/Boost), linear power regulation and LED design development and ...

Showing results 21-40

Power Electronics Engineer information

See Detroit, MI salary details

$79.7K

$122.3K

$167.3K

How much do power electronics engineer jobs pay per year?

As of Sep 8, 2026, the average yearly pay for power electronics engineer in Detroit, MI is $122,262.00, according to ZipRecruiter salary data. Most workers in this role earn between $110,900.00 and $131,200.00 per year, depending on experience, location, and employer.

What does a power electronics engineer do?

As a power electronics engineer, you design and test circuits to use in power electronics systems. In this role, you may develop prototypes, find solutions for known flaws in mechanical designs, and collaborate with other engineers to perform cross-functional tasks when testing designs. You often analyze analog circuitry, work with high-frequency magnetics, and help estimate power losses and overall efficiency as electricity works its way through circuits. Your responsibilities also include maintaining accurate documentation of all circuit designs. Some details of this job depend on the company you work for and the type of electronics they need.

What are the key skills and qualifications needed to thrive as a power electronics engineer, and why are they important?

To thrive as a Power Electronics Engineer, you need a solid background in electrical engineering principles, circuit design, and power conversion, usually supported by a relevant engineering degree. Familiarity with simulation software like MATLAB/Simulink, PCB design tools, and knowledge of industry standards such as IEC or IEEE are highly valuable. Problem-solving abilities, attention to detail, and effective teamwork are crucial soft skills for excelling in this field. These competencies ensure the development of efficient, reliable power systems and successful collaboration within multidisciplinary teams.

What are some common challenges faced by power electronics engineers in project development?

Power Electronics Engineers often encounter challenges such as managing thermal constraints, ensuring electromagnetic compatibility, and meeting stringent efficiency targets. Projects may require balancing innovative design solutions with cost and reliability considerations, especially when working on high-power or compact systems. Collaboration with cross-functional teams, including mechanical, firmware, and PCB designers, is essential to integrate components seamlessly and troubleshoot issues during prototyping and testing phases.

Are power electronics engineers in demand?

Power electronics engineers are in high demand due to the growth of renewable energy, electric vehicles, and energy-efficient systems. They are needed to design, develop, and optimize power conversion and control systems, often requiring knowledge of semiconductor devices and circuit design. Job prospects are strong in industries focused on sustainable technology and advanced electronics.

What are the most commonly searched types of Power Electronics Engineer jobs in Detroit, MI?

The most popular types of Power Electronics Engineer jobs in Detroit, MI are:

What are popular job titles related to Power Electronics Engineer jobs in Detroit, MI?

For Power Electronics Engineer jobs in Detroit, MI, the most frequently searched job titles are:

What job categories do people searching Power Electronics Engineer jobs in Detroit, MI look for?

The top searched job categories for Power Electronics Engineer jobs in Detroit, MI are:

What cities near Detroit, MI are hiring for Power Electronics Engineer jobs?

Cities near Detroit, MI with the most Power Electronics Engineer job openings:

Infographic showing various Power Electronics Engineer job openings in Detroit, MI as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $122,262 per year, or $58.8 per hour.

Product Development Engineer - Power Electronics Control

Ford Motor Company

Dearborn, MI • Hybrid

$96K - $162K/yr

Full-time

Medical, Dental, Vision, Life, PTO

Re-posted 5 days ago


Ford Motor Company rating

7.6

Company rating: 7.6 out of 10

Based on 527 frontline employees who took The Breakroom Quiz

11th of 45 rated automakers


Job description

In this position...

The Electrified Propulsion Engineering Power Electronics Controls Engineer will be responsible for the design, implementation, and validation of control strategies used in non-motive power conversion modules (AC onboard chargers, DC/DC converters, DC/AC inverters). 

This position entails working collaboratively with Ford internal and external teams including Hardware, Software, D&R, Validation, and power electronics suppliers to design / develop components that meets corporate requirements, specifications, and customer needs. The selected candidate will be part of a team that will drive future product development and deliver industry-first features in the growing field of vehicle electrification.

You'll have...

  • Master or PhD degree in Electrical Engineering; or a combination of equivalent experience and education.

  • 3+ years of working experience in power converter control design and development.

  • Deep understanding of various high-power conversion topologies (PFC, CLLC and DAB DC/DC etc.), including their operation principles and switching/commutation details.

  • Solid circuit and system-level modeling and simulation skills using common tools, such as PLECS and Simulink.

  • Experience in simulation, design, and testing with real-time HIL.

  • Hands-on experience implementing modulation and close-loop control of soft-switching OBC and high-power DC/DC products
  • Strong communicator, able to effectively present to technical audiences.
  • Team player working in a diverse group in a dynamic and fast-paced environment.
  • Self-starting with solid follow-through and multitasking abilities; able to work with limited supervision.

You may not check every box, or your experience may look a little different from what we've outlined, but if you think you can bring value to Ford Motor Company, we encourage you to apply!

As an established global company, we offer the benefit of choice. You can choose what your Ford future will look like: will your story span the globe, or keep you close to home? Will your career be a deep dive into what you love, or a series of new teams and new skills? Will you be a leader, a changemaker, a technical expert, a culture builder...or all of the above? No matter what you choose, we offer a work life that works for you, including:
Immediate medical, dental, vision and prescription drug coverage
Flexible family care days, paid parental leave, new parent ramp-up programs, subsidized back-up child care and more
Family building benefits including adoption and surrogacy expense reimbursement, fertility treatments, and more
Vehicle discount program for employees and family members and management leases
Tuition assistance
Established and active employee resource groups
Paid time off for individual and team community service 
A generous schedule of paid holidays, including the week between Christmas and New Year's Day 
Paid time off and the option to purchase additional vacation time. 


This position is a salary grade 7-8.  This position is a salary grade 7 and ranges from $84,480-141,360., This position is a salary grade 8 and ranges from $96,720-162,120.
*Final determination of salary grade will be based on candidate's skills and experience, and base salary will be set within the applicable range according to job scope, responsibility and competitive market value.

For more information on salary and benefits, click here:

 https://fordcareers.co/GSR


Visa sponsorship is not available for this position.
Candidates for positions with Ford Motor Company must be legally authorized to work in the United States. Verification of employment eligibility will be required at the time of hire.


We are an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to race, religion, color, age, sex, national origin, sexual orientation, gender identity, disability status or protected veteran status. In the United States, if you need a reasonable accommodation for the online application process due to a disability, please call 1-888-336-0660.


This position is hybrid. Candidates who are in commuting distance to a Ford hub location may be required to be onsite four or more days per week. 

#LI-Hybrid
#LI-DE2


 

What you'll do...

  • Responsible for the design and optimization of the modulation and control algorithms for various power conversion modules, including bi-directional onboard chargers and DC/DC converters for all operating modes and conditions. 

  • Develop novel control strategies to improve system performance, robustness, and costs through extensive modeling and HIL simulation.

  • Work closely with systems, hardware, software, and test engineers on the team to plan, implement and validate the control strategies.
  • Work with power conversion module suppliers to ensure and help improve the stability and performance of their control strategies.
  • Provide support to resolve customer concerns, investigate and troubleshoot system faults and errors.

  • Connect with focus groups and forums to stay at the forefront of technological advancements to keep the team abreast of the latest power conversion topologies and control techniques.


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