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Emi Design Engineer Jobs in Minnesota (NOW HIRING)

Job Title: Electrical Engineer Job Location: Maple Grove, MN, 55311 Job Duration: 12 Months Job ... Experience utilizing EMI/EMC best practices for board-level circuit design using Altium and/or ...

Electrical Engineer - Electrical Component & Wiring The Electrical Component & Wiring Engineer is ... design. * Understanding of EMC/EMI requirements and electrical safety standards, and experience ...

Electrical Engineer - Electrical Component & Wiring The Electrical Component & Wiring Engineer is ... design. * Understanding of EMC/EMI requirements and electrical safety standards, and experience ...

Our engineers work with industry-leading experts both internally and externally. We encourage and ... Expertise in schematic capture, EMI/EMC and grounding principles, PCB design oversight, low-power ...

Showing results 21-40

Emi Design Engineer information

What is an EMI design engineer?

An EMI Design Engineer is a professional who specializes in managing and mitigating electromagnetic interference (EMI) in electronic systems and devices. Their work involves designing circuits, components, and enclosures to ensure compliance with electromagnetic compatibility (EMC) standards. They use simulation tools, perform tests, and develop shielding or filtering solutions to prevent unwanted electromagnetic disturbances that could affect device performance or safety. EMI Design Engineers often work closely with hardware engineers and compliance teams throughout the product development process.

How does an EMI design engineer typically collaborate with other engineering teams during product development?

As an EMI Design Engineer, you will work closely with hardware, PCB layout, and mechanical engineering teams throughout the product development cycle. Your primary role is to identify potential electromagnetic interference (EMI) issues early on and recommend design modifications to ensure compliance with regulatory standards. Collaboration often involves reviewing schematics, participating in design reviews, and coordinating EMI testing with the broader engineering team to troubleshoot and resolve complex interference problems. This cross-functional teamwork is crucial for integrating EMI solutions without impacting product performance or timelines.

What are the key skills and qualifications needed to thrive as an EMI design engineer, and why are they important?

To excel as an EMI Design Engineer, you need a solid background in electrical engineering, electromagnetic compatibility (EMC) principles, and circuit design, typically supported by a relevant engineering degree. Familiarity with simulation tools like CST Studio Suite or Ansys HFSS, and certifications such as iNARTE EMC Engineer, are commonly required. Strong problem-solving abilities, attention to detail, and effective teamwork and communication skills help engineers address complex interference issues. These skills and qualifications are crucial for ensuring products comply with regulatory standards and function reliably in electromagnetic environments.

What is the difference between Emi Design Engineer vs EMI Engineer?

AspectEmi Design EngineerEMI Engineer
CredentialsBachelor's in Electrical/Electronic Engineering, relevant certificationsBachelor's in Electrical/Electronic Engineering, relevant certifications
Work EnvironmentDesign labs, R&D departments, product development teamsTesting labs, R&D, manufacturing facilities
Industry UsageProduct design, circuit development, system integrationEMC compliance, interference mitigation, testing
Common Search IntentDesigning electronic components, circuit developmentReducing electromagnetic interference, testing EMI

Emi Design Engineers focus on creating electronic systems and components, ensuring they meet design specifications. EMI Engineers specialize in testing and mitigating electromagnetic interference to ensure product compliance. While both roles require electrical engineering knowledge, Emi Design Engineers are more involved in the design process, whereas EMI Engineers focus on testing and compliance.

What job categories do people searching Emi Design Engineer jobs in Minnesota look for?

The top searched job categories for Emi Design Engineer jobs in Minnesota are:

What cities in Minnesota are hiring for Emi Design Engineer jobs?

Cities in Minnesota with the most Emi Design Engineer job openings:

Infographic showing various Emi Design Engineer job openings in Minnesota as of August 2026, with employment types broken down into 85% Full Time, 8% Part Time, and 7% Contract. Highlights an 84% Physical, 5% Hybrid, and 11% Remote job distribution.

Principal Electrical Engineer - Power Electronics

Verterra Energy

New Brighton, MN • On-site

$146K - $179K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 11 days ago


Job description

What We Do at Verterra Energy
At Verterra Energy, we're on a mission to harness the power in the world's rivers, canals and oceans. To accomplish this, we are commercializing our first device called VOLTURNUS, a pioneering water-power technology that deploys in harmony with the current to capture baseline, zero emission electricity.
Backed by top-tier investors and a multi-year government contract, we are growing our founding team to help achieve key milestones. Partners and collaborators include: NIRON, DoD, DoE, University of Minnesota, WEG Group, Beckhoff, Pacific Northwest National Laboratory and the US Army Corp of Engineers.
Recent press releases can be found on our website:
https://www.verterraenergy.com/news
About the Role
Verterra Energy is seeking a Senior to Principal level Electrical Engineer (typically 8-15+ years) with deep, hands-on expertise in power electronics. This role is for a builder - someone who can own real power hardware end-to-end, make practical design decisions, and bring robust power electronics from requirements through manufacturing.
You will work closely with mechanical and controls engineers to develop generator-adjacent power conversion, power management, and internal test platforms. The emphasis is technical leadership, execution, and sound engineering judgment - not over-engineering, and not narrow specialization.
Key Responsibilities
  • Lead power electronics design for low-to-mid power systems in the 0.5 kW to 5.0 kW range
  • Define architecture and requirements for power conversion solutions connected to small generators and internal test platforms
  • Design and develop high-power PCBA solutions (schematics + layout; Altium preferred)
  • Design, integrate, and validate converter topologies (buck/boost, isolated and non-isolated DC-DC, inverter/rectifier stages as applicable)
  • Own magnetics-related design decisions: inductor/transformer selection or design, core and copper loss considerations, thermal tradeoffs
  • Select, characterize, and validate power semiconductor devices (MOSFET, IGBT, SiC, GaN, BJT as applicable), including gate drive considerations and switching loss tradeoffs
  • Develop practical protection and reliability approaches (EMI/EMC basics, inrush, transient protection, fault handling, thermal protection)
  • Integrate power electronics with MCU/DSP controllers: sensing, feedback loops at a system level, interfaces, and bring-up support (firmware collaboration expected; not a pure firmware role)
  • Build, assemble, and bring up prototypes in the lab; debug issues quickly and methodically
  • Plan and execute validation testing using oscilloscopes, power analyzers, supplies, loads, thermal tools, and instrumentation
  • Drive design-for-manufacturing: vendor engagement, fab/assembly coordination, component sourcing risk, test strategy, and production readiness
  • Design for real-world environmental conditions: enclosure integration, thermal management, IP-rated constraints, potting/encapsulation considerations
  • Evaluate third-party or consultant designs for simplicity, robustness, safety margin, and manufacturability
  • Help maintain and improve the electrical lab environment: tooling, organization, safety, and practical process improvements

Required Qualifications
  • Bachelor's degree in Electrical Engineering or closely related field (Master's preferred but not required)
  • 8+ years of hands-on power electronics experience (Principal level typically 12+)
  • Demonstrated experience designing PCB-based power electronics in the 0.5 kW to 5.0 kW power range
  • Strong understanding of magnetics, core and resistive losses, and thermal management in power designs
  • Experience selecting and testing power semiconductor devices (MOSFET, IGBT, SiC, GaN, etc.)
  • Familiarity with multiple power converter architectures and how they integrate with MCU/DSP-based control systems
  • Experience designing for environmental constraints (IP-rated enclosures, sealing, encapsulation/potting, vibration/handling considerations)
  • Proven track record bringing power electronics to market: requirements - design - validation - manufacturing handoff
  • Strong technical judgment, ability to troubleshoot in the lab, and comfort making tradeoffs under real constraints
  • Able to work independently while collaborating tightly with a small engineering team

Nice to Have (Not Required)
  • Experience with generator-adjacent systems (rectification, load management, protection, sensing)
  • Familiarity with EMI/EMC pre-compliance approaches and practical filtering/layout techniques
  • Experience building production test methods/fixtures and defining acceptance tests
  • Hands-on embedded familiarity for collaboration (basic bring-up, test scripting, instrumentation integration)
  • Startup or small-team engineering experience

Additional Contributions & Growth Opportunities
  • Owning and improving internal power and instrumentation platforms (test stands, dynamometer/torque testers, flume instrumentation, custom rigs)
  • Providing technical leadership on adjacent platforms (marine systems, coastal energy harvesting, drones, other generator/power platforms)
  • Helping build practical lab processes that reduce iteration cycles and increase hardware reliability

Benefits
  • Medical, dental, and vision coverage
  • Company-paid life, disability, and basic protection
  • 401(k) with employer match
  • Unlimited paid time off + 2 weeks sick and safe leave
  • 7 company-paid holidays: New Year's Day (January 1), Memorial Day, Fourth of July, Labor Day, Thanksgiving Day, the Friday after Thanksgiving, and Christmas Day
  • Stocked kitchen

Equal opportunity
Verterra Energy does not discriminate on the basis of race, sex, color, religion, age, national origin, marital status, disability, veteran status, genetic information, sexual orientation, gender identity or any other reason prohibited by law in provision of employment opportunities and benefits.