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Emi Design Engineer Jobs in Minnesota (NOW HIRING)

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 ...

AEIS) is a global leader in the design and manufacturing of highly engineered, precision power ... EMI filters, power circuits, etc.) including, schematic capture, board layout, prototype testing ...

Sr Electrical Engineer

Eden Prairie, MN ยท On-site

$95K - $145K/yr

AEIS) is a global leader in the design and manufacturing of highly engineered, precision power ... EMI filters, power circuits, etc.) including, schematic capture, board layout, prototype testing ...

Eng Sr - Elec

Maple Grove, MN ยท On-site

$55 - $58/hr

C, C#, LabWindows/CVI Working knowledge of OrCAD and Visio, circuit board schematic & layout tools Familiarity with design for components in a high EMI environment Systems Engineering and ...

Electrical Engineer I

Eden Prairie, MN ยท On-site

$80K - $110K/yr

Primary Objective Design, develop, and optimize power conversion systems and electronic circuits ... Lead hardware verification and testing, including EMI/EMC compliance, efficiency characterization ...

Collaborate with Product Design Engineers to develop new product lines * Perform technical analysis ... Experience working in EMC/EMI test laboratories, conducting pre-compliance testing, and operating ...

Showing results 21-40

Emi Design Engineer information

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 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 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 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.
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 July 2026, with employment types broken down into 87% Full Time, 10% Part Time, and 3% Contract. Highlights an 83% Physical, 4% Hybrid, and 13% Remote job distribution.

Principal Electrical Engineer

Enterra Medical, Inc.

Minneapolis, MN โ€ข On-site

$160K - $185K/yr

Full-time

Re-posted 5 days ago


Job description

Principal Electrical Engineer
St. Louis Park, MN
Job Summary
We are seeking an experienced Principal Electrical Engineer to lead the electrical design and development of next-generation active implantable medical devices (AIMDs). This role involves architecting complex analog, digital, and mixed-signal circuits while ensuring compliance with stringent medical device regulations. The ideal candidate will provide technical leadership and collaborate cross-functionally to translate clinical needs into manufacturable, high-performance products.
Key Responsibilities
  • Lead the design, development, prototyping, and testing of electrical hardware for implantable devices, including analog/mixed-signal circuits, low-power electronics, power management systems, and wireless communication interfaces (e.g., BLE, RF telemetry).
  • Architect system-level electrical designs, considering implantable constraints such as ultra-low power consumption, biocompatibility, miniaturization, hermetic packaging, and long-term reliability.
  • Perform circuit simulation, schematic capture, PCB layout oversight, and hardware verification/validation, including ISO14708 (e.g. EMC/EMI testing).
  • Conduct risk analyses (e.g., dFMEA), root cause investigations, and failure mode testing to ensure device safety and efficacy.
  • Collaborate with cross-functional teams (firmware, mechanical, systems, clinical, and quality engineering) to integrate electrical subsystems and support closed-loop therapies.
  • Drive compliance with medical device standards and regulations, including ISO 13485, ISO 14971, ISO14708, and IEC 60601 series.
  • Mentor and provide technical guidance to junior electrical engineers; lead design reviews and contribute to strategic technology roadmaps.
  • Support sustaining engineering for existing products, including troubleshooting, design improvements, and regulatory submissions.
  • Stay current with advancements in implantable electronics, such as custom ASIC development, battery technologies, and neuromodulation systems.
Qualifications
Required:
  • Bachelor's degree in Electrical Engineering, Biomedical Engineering, or a related field.
  • 10+ years of experience in electrical hardware design for active implantable medical devices (e.g., neurostimulators, pacemakers, defibrillators, cochlear implants, or similar Class III devices).
  • Expertise in analog and digital circuit design, low-power mixed-signal electronics, power electronics, and control systems.
  • Proven track record in medical device development, including full product lifecycle from concept to commercialization.
  • Strong knowledge of regulatory requirements for implantable devices and experience with design controls, verification/validation, and risk management.
Preferred:
  • Master's or Ph.D. in Electrical Engineering or related field.
  • Experience with neuromodulation, cardiac rhythm management, or closed-loop implantable systems.
  • Familiarity with ultra-low-power custom ASIC fabrication, wireless power transfer, or adaptive algorithms.
  • Experience and or understanding in embedded firmware design preferable
  • Experience leading technical teams, design reviews, FMEA sessions, or regulatory audits.
  • Proficiency in tools such as Altium, SPICE simulation, MATLAB/Simulink, or similar.
Skills and Competencies
  • Excellent problem-solving and analytical skills with a focus on reliability and patient safety.
  • Strong communication skills for cross-functional collaboration and technical documentation.
  • Ability to work in a fast-paced, regulated environment with attention to detail.

Compensation: $160,000-$185,000 DOE