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Emi Design Engineer Jobs in Detroit, MI (NOW HIRING)

Senior Connector Engineer

Southfield, MI · On-site

$96K - $132K/yr

SENIOR CONNECTOR ENGINEER - CONNECTION SYSTEMS SOUTHFIELD, MICHIGAN Reporting to the Manager of ... design goals. * Able to follow APQP processes for project documentation Bonus: * Familiar with EMI ...

Sr Hardware Engineer

Dearborn, MI · On-site

$102K - $136K/yr

Strong understanding of EMC/EMI principles in automotive applications. * Background in ... Develop design verification test methods and execute tests in accordance with applicable industry ...

Senior Connector Engineer

Southfield, MI · On-site

$96K - $132K/yr

SENIOR CONNECTOR ENGINEER - CONNECTION SYSTEMS SOUTHFIELD, MICHIGAN Reporting to the Manager of ... design goals. * Able to follow APQP processes for project documentation Bonus: * Familiar with EMI ...

Resident Engineer

Warren, MI · On-site

$93K - $118K/yr

... EMI. CAD models, specifications and drawings. Will be the search strings. Job Title: Resident ... Currently seeking a Resident Engineer for GM to support our company's business in the Automotive ...

Senior Vehicle Systems Engineer

Warren, MI · On-site

$98K - $134K/yr

AV Systems Engineers support the definition, design, and development of continuously improving ... waterproofing, EMI shielding, thermal management, vibration isolation, and serviceability.

Senior Vehicle Systems Engineer

Warren, MI · On-site

$98K - $134K/yr

AV Systems Engineers support the definition, design, and development of continuously improving ... waterproofing, EMI shielding, thermal management, vibration isolation, and serviceability.

Senior HIL Core Engineer

Milford, MI · On-site

$184K - $230K/yr

Design, build, and sustainmodular HIL systems for ECU and subsystem validation across multiple ... Experience withthermal and EMI management, system grounding, and rack-level cable routing.

Senior HIL Core Engineer

Milford, MI · On-site

$184K - $230K/yr

Design, build, and sustain modular HIL systems for ECU and subsystem validation across multiple ... Experience with thermal and EMI management, system grounding, and rack-level cable routing.

Showing results 41-60

Emi Design Engineer information

See Detroit, MI salary details

$40.1K

$87.3K

$156.9K

How much do emi design engineer jobs pay per year?

As of Sep 8, 2026, the average yearly pay for emi design engineer in Detroit, MI is $87,265.00, according to ZipRecruiter salary data. Most workers in this role earn between $67,300.00 and $97,500.00 per year, depending on experience, location, and employer.

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 cities near Detroit, MI are hiring for Emi Design Engineer jobs?

Cities near Detroit, MI with the most Emi Design Engineer job openings:

Engineering Manager - Electrification

ND DEFENSE LLC

Madison Heights, MI • On-site

$135K - $150K/yr

Full-time

Re-posted 29 days ago


Job description

The Engineering Manager — Electrification helps to establish and lead ND Defense’s high voltage electrification engineering team, driving the design, development, integration, and validation of electric powertrain systems, battery storage systems, and high voltage architectures for defense ground vehicles and Electric Ground Mobility (EGM) platforms. This role owns the technical direction for electrification programs from concept through production, ensuring designs meet stringent defense performance, safety, environmental, and regulatory requirements.

The ideal candidate combines deep technical expertise in high voltage systems engineering with proven leadership of multidisciplinary engineering teams. This is a hands-on leadership role that requires the ability to lead technical executions, mentor and grow engineers, and a forward-looking propensity to leverage AI and agentic technologies to optimize engineering workflows and program execution.

Essential FunctionsTechnical Leadership
  • Lead the design and development of high voltage electrical systems (400V–800V+ DC) for defense ground vehicle platforms, including battery systems, power distribution, motor drives, inverters, DC-DC converters, exportable power, and charging infrastructure.
  • Define high voltage architecture, system schematics, wire harness routing, and component specifications in compliance with MIL-STD requirements and applicable SAE standards.
  • Own the technical review process for electrification programs, including design reviews (PDR, CDR), DFMEA, and design validation test planning.
  • Establish and enforce high voltage safety protocols aligned with SAE J1766, ISO 6469, MIL-STD-1275, MIL-STD-461 (EMI/EMC), and applicable NAVSEA or Army Ground Vehicle Systems Center (GVSC) requirements.
  • Drive resolution of complex electrical integration challenges across mechanical, thermal, software, and vehicle systems engineering disciplines.
People Leadership
  • Manage, mentor, and develop a team of electrical, systems, and integration engineers focused on electrification programs.
  • Set clear performance expectations, conduct regular performance reviews, and build individual development plans aligned with organizational growth.
  • Lead hiring efforts to build high voltage engineering capability, including identifying talent gaps and developing staffing plans.
  • Foster a collaborative, high-accountability engineering culture grounded in technical rigor and continuous improvement.
Program Execution
  • Partner with program management to define scope, schedule, cost, and technical milestones for electrification programs.
  • Coordinate cross-functional teams (mechanical, thermal, software, manufacturing, quality) to deliver integrated electrification solutions on time and within budget.
  • Serve as the primary technical point of contact for customer engagements on electrification programs, including design presentations, technical interchange meetings, and proposal support.
  • Support business development and capture efforts by contributing to technical proposals, white papers, and technology roadmaps for high voltage electrification capabilities.
Standards, Compliance, and Continuous Improvement
  • Ensure all electrification designs comply with applicable military standards, customer specifications, and ND Defense’s AS9100-based QMS.
  • Stay current on emerging electrification technologies, battery chemistries, power electronics, and defense-sector EGM trends (e.g., Army Modernization Priorities, GVSC electrification roadmap).
  • Drive lessons-learned processes and design standardization across electrification programs to improve reuse, reduce cost, and accelerate delivery.

AI & Process Optimization

  • Identify and implement opportunities to apply AI and agentic technologies to streamline engineering processes, automate routine program management tasks, and improve decision-making efficiency.
  • Stay current on emerging AI tools and methodologies relevant to defense engineering and program execution, and champion their adoption where appropriate.


Required Qualifications
  • Bachelor’s degree in Electrical Engineering, Power Electronics, Systems Engineering, or a related technical discipline.
  • 8+ years of progressive experience in high voltage electrical systems design and development, with at least 3 years in a technical leadership or engineering management role.
  • Direct, hands-on experience with high voltage powertrain architectures (400V–800V+ DC), including battery management systems (BMS), traction inverters, electric motors/generators, DC-DC converters, and high voltage distribution.
  • Working knowledge of relevant standards: MIL-STD-1275 (vehicle power characteristics), MIL-STD-461 (EMI/EMC), MIL-STD-810 (environmental), SAE J1772/J3068 (charging), ISO 6469 (EV safety).
  • Experience managing engineering teams of 5+ through full product development lifecycles (concept through production).
  • Proficiency with electrical design tools such as CATIA Electrical, Capital Harness, Zuken, Altium, or equivalent.
  • Strong understanding of GD&T, DFMEA, DVP&R, and structured problem-solving methodologies (8D, A3, root cause analysis).
  • U.S. Citizenship required. Must be eligible for and able to obtain/maintain a DoD security clearance.
Preferred Qualifications
  • Master’s degree in Electrical Engineering, Power Electronics, or Systems Engineering.
  • Experience in defense ground vehicle programs (e.g., JLTV, AMPV, RCV, OMFV, or similar Army/Marine Corps vehicle platforms).
  • Familiarity with Army GVSC electrification initiatives, Tactical Wheeled Vehicle (TWV) modernization, or TARDEC legacy programs.
  • Experience with Model-Based Systems Engineering (MBSE), SysML, or DOORS for requirements management.
  • Active DoD Secret clearance.
  • Professional Engineer (PE) license or relevant certifications (e.g., Certified Systems Engineering Professional).
  • Experience with ITAR-controlled programs and technical data handling.
Work Environment and Physical Requirements
  • Office and engineering lab environment with occasional time on the manufacturing floor and at customer/test sites.
  • Ability to work near high voltage equipment and in test environments with appropriate PPE and safety protocols.
  • Travel up to 20%, including customer sites, test facilities, supplier locations, and ND Defense’s West Point, MS manufacturing facility.
  • Ability to lift up to 25 lbs occasionally.


ND Defense LLC is an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, disability, veteran status, or any other protected class.

This job description is not intended to be an exhaustive list of all duties, responsibilities, or qualifications associated with the position. ND Defense reserves the right to modify this description at any time. All duties are subject to reasonable accommodation for qualified individuals with disabilities.