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Power Electronics Jobs in Minnesota (NOW HIRING)

System Engineer Sr

Burnsville, MN · On-site

$90K - $120K/yr

You will serve as an expert in your field of focus (such as software, mobile fluid power, industrial fluid power, electronics, etc.) and work with customers and various other groups within Nott ...

Power Plant Operator

Shakopee, MN · On-site

$38 - $42/hr

Maintains neat and accurate records, both written and electronic. * Reviews logs/records of on ... power, using a suspension fired biomass boiler design and steam turbine generator. Koda Energy ...

Electronics Tutor

Saint Paul, MN · Remote

$18 - $40/hr

... Electronics tutors nationally. As a tutor on the Varsity Tutors Platform, you'll have the ... Our AI-powered Tutor Copilot enhances your sessions with real-time instructional support, lesson ...

Electronics Tutor

Minneapolis, MN · Remote

$18 - $40/hr

... Electronics tutors nationally. As a tutor on the Varsity Tutors Platform, you'll have the ... Our AI-powered Tutor Copilot enhances your sessions with real-time instructional support, lesson ...

Sr. Embedded Engineer

Eden Prairie, MN · On-site

$126K - $165K/yr

Participate in designing motor control electronics ranging from low voltage DC products to 120/240Vac line powered products and including 480Vac industrial products. Typical design tasks include ...

Electronics Tutor

Edina, MN · Remote

$18 - $40/hr

... Electronics tutors nationally. As a tutor on the Varsity Tutors Platform, you'll have the ... Our AI-powered Tutor Copilot enhances your sessions with real-time instructional support, lesson ...

We are seeking a motivated and collaborative Electronic Engineer to support the PCB design and design, development, testing, and production of power supplies and related subsystems. This role ...

Showing results 41-60

Power Electronics information

See Minnesota salary details

$78.8K

$121K

$165.5K

How much do power electronics jobs pay per year?

As of Aug 7, 2026, the average yearly pay for power electronics in Minnesota is $120,959.00, according to ZipRecruiter salary data. Most workers in this role earn between $109,700.00 and $129,800.00 per year, depending on experience, location, and employer.

How do you become a power electronics engineer?

To become a power electronics engineer, you typically need a bachelor's degree in electrical engineering or a related field, with coursework in power systems, circuit design, and control systems. Gaining experience through internships, developing skills in simulation tools like SPICE or MATLAB, and obtaining professional certifications can enhance job prospects.

What is the difference between Power Electronics vs Electrical Engineer?

AspectPower ElectronicsElectrical Engineer
CredentialsTypically requires a degree in electrical engineering or related field; certifications like IEEE are commonRequires a degree in electrical engineering; professional licensure may be preferred
Work EnvironmentDesigning and testing electronic circuits, working in labs or manufacturing settingsDesigning electrical systems, working in offices, labs, or construction sites
Industry UsageFocused on power conversion, control systems, renewable energy, and electronicsBroader role covering power, control, communication, and instrumentation systems

Power Electronics specialists focus on designing and developing electronic devices that control and convert electrical power, often working with circuits and systems specific to power management. Electrical Engineers have a broader scope, working on various electrical systems and infrastructure. While both roles require similar educational backgrounds, Power Electronics professionals typically specialize further in electronic power conversion technologies.

Is power electronics a good career?

Power electronics is a specialized field involving the design and application of electronic devices that control and convert electrical power. It offers opportunities in industries such as renewable energy, electric vehicles, and industrial automation, often requiring knowledge of circuit design, control systems, and certifications like IEEE standards. The field is expected to grow with technological advancements and increasing demand for energy-efficient solutions.

What is power electronics?

Power electronics is a branch of electrical engineering that deals with the conversion, control, and management of electrical power using electronic devices. It involves the use of components such as diodes, transistors, and thyristors to efficiently convert and control electric power in applications like motor drives, renewable energy systems, electric vehicles, and power supplies. Professionals in this field design circuits and systems that enable the efficient transfer and transformation of electrical energy for various industrial and consumer applications.

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

Power electronics engineers often encounter challenges such as managing thermal issues, ensuring electromagnetic compatibility, and optimizing circuit efficiency while meeting strict size and weight requirements. Collaborating with cross-functional teams like mechanical design, firmware, and quality assurance is essential to address these challenges. Staying updated with the latest semiconductor technologies and safety standards also plays a critical role in successful project delivery.

What skills and qualifications are needed to thrive as a power electronics engineer?

To thrive as a Power Electronics Engineer, you need a solid background in electrical engineering, circuit design, and power conversion principles, generally supported by a relevant degree. Familiarity with simulation tools like MATLAB/Simulink, PCB design software, and relevant industry certifications (such as PE or IEEE membership) is often required. Strong problem-solving skills, attention to detail, and effective teamwork make candidates stand out in this role. These competencies are crucial for developing safe, efficient, and reliable power systems in various high-impact industries.
What are the most commonly searched types of Power Electronics jobs in Minnesota? The most popular types of Power Electronics jobs in Minnesota are:
What are popular job titles related to Power Electronics jobs in Minnesota? For Power Electronics jobs in Minnesota, the most frequently searched job titles are:
What cities in Minnesota are hiring for Power Electronics jobs? Cities in Minnesota with the most Power Electronics job openings:
Infographic showing various Power Electronics job openings in Minnesota as of August 2026, with employment types broken down into 87% Full Time, 9% Part Time, 3% Contract, and 1% Nights. Highlights an 92% Physical, 2% Hybrid, and 6% Remote job distribution, with an average salary of $120,959 per year, or $58.2 per hour.

$108K - $134K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 2 days ago


Job description

**This salary information serves as a general guideline. Final offers are based on various factors, including qualifications, skills, experience, and other job-related criteria.

Benefits:

Paid Time Off, Health Insurance, Health Savings Account (HSA), Dental Insurance, Vision Insurance, 401(K) with Roth option, Life & Disability Insurance, TuitionReimbursement & Discretionary Profit-Sharing Bonus.

Job Summary:

This position will report to our Electronics Engineering Manager in the System Design Department and is responsible for leading the design and development of complex electronic systems. They are responsible for translating high-level architectural requirements into execution across the full hardware lifecycle-from schematic design and analog simulation to high-density PCB layout. The individua will serve as a Subject Matter Expert in hardware implementation, ensuring all designs meet rigorous standards for signal integrity and manufacturability.

Key Responsibilities:

  • Detailed Design & Layout: Execute complex, multi-layer PCB designs using Cadence Allegro, focusing on high-speed digital routing, impedance matching, and power distribution.
  • Simulation & Verification:Perform analog and power integrity simulations in Spice to validate design margins and component selections.
  • Technical Standards:Maintain departmental design rules, footprint libraries, and BOM standards to ensure consistent quality and ease of fabrication.
  • Peer Leadership: Review the drawings, calculations, and layouts of junior engineers to ensure accuracy and adherence to best practices.
  • Lifecycle Support: Identify and resolve component obsolescence (EOL) issues and interface with PCB fabrication partners to resolve DFM/DFA conflicts.
  • Onsite Lab Testing:Lead the bring-up and verification of new hardware using high-speed oscilloscopes, spectrum analyzers, and logic analyzers.

Required Qualifications:

  • Bachelor's degree in Electrical Engineering, Computer Engineering or related field, and/or equivalent experience.
  • 4 years relevant engineering experience.
  • Proficient in Cadence Allegro, LTSpice, Python, and Git.
  • Exceptional verbal and written communication skills.
  • Excellent prioritization and project development skills with ability to manage multiple tasks and projects.
  • Ability to travel up to 5% domestically and internationally.

Preferred Qualifications:

  • Master's degree
  • Experiencedesigning and working with high-speed interfaces, including Ethernet, PCIe, and USB-C layout.
  • Familiarity withVerilog/HDL and FPGA hardware requirements including bank voltages, clocking, and transceivers.
  • Proficient in embedded systems development with strong literacy inLinux, understanding of RTOS timing and driver-level hardware interactions.

Physical Demands:

The physical demands described here are representative of those that must be met by an individual to successfully perform the essential functions of this position. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions.

  • Must be able to perform sedentary work, including sitting for extended periods of time.
  • Ability to periodically stand, walk, crouch, stoop, bend, and reach across all planes.
  • Ability to operate a computer and other office productivity equipment.
  • Specific vision abilities required include close vision, distance, vision, and ability to adjust focus.
  • May be required tolift and/or move objects up to 50 pounds, 0 - 10% of time.

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