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Homologation Engineer Jobs in Michigan (NOW HIRING)

Preparation and documentation for third-party functional safety assessments and homologation ... Engineering degree with strong automotive systems background - 8+ years experience in functional ...

... engineering teams, suppliers, OEM customers, and certification bodies. Key Responsibilities (ISO ... Preparation and documentation for third-party functional safety assessments and homologation ...

... cases for final vehicle homologation. * Collaborate with stakeholders through system "V ... Preferred Masters in Electrical Engineering with a focus on Systems Engineering * Extensive ...

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Homologation Engineer information

See Michigan salary details

$34K

$88.7K

$119.8K

How much do homologation engineer jobs pay per year?

As of Aug 10, 2026, the average yearly pay for homologation engineer in Michigan is $88,687.00, according to ZipRecruiter salary data. Most workers in this role earn between $73,200.00 and $101,500.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive in the homologation engineer position, and why are they important?

A successful Homologation Engineer typically holds an engineering degree—often in automotive, mechanical, or electrical engineering—and possesses strong knowledge of regulations and compliance standards for vehicles or products. Familiarity with certification tools, regulatory databases, technical documentation systems, and sometimes specific homologation or compliance software is required. Effective communication, detail orientation, and project management skills help individuals coordinate with regulatory agencies and cross-functional teams. Mastery of these skills ensures that products meet all legal and safety requirements, enabling market entry and ongoing compliance.

What is a homologation engineer?

A Homologation Engineer ensures that vehicles, components, or systems comply with regulatory and safety standards required for market approval. They work closely with regulatory bodies, testing agencies, and internal teams to obtain certifications and homologation documents. Their role involves interpreting regulations, coordinating testing processes, and maintaining compliance throughout a product’s lifecycle. This position is critical in industries such as automotive, aerospace, and telecommunications.

What are the typical daily responsibilities of a homologation engineer?

Homologation Engineers are responsible for ensuring that vehicles or products comply with regional and international regulatory standards. On a daily basis, they collect and review technical documentation, coordinate testing activities, and liaise with certification bodies or regulatory agencies. They also monitor changes in regulations, collaborate closely with design, engineering, and production teams, and manage timelines for certification projects. This multifaceted role requires attention to detail and effective communication to ensure that all compliance milestones are met smoothly and efficiently.

What are popular job titles related to Homologation Engineer jobs in Michigan? For Homologation Engineer jobs in Michigan, the most frequently searched job titles are:
What cities in Michigan are hiring for Homologation Engineer jobs? Cities in Michigan with the most Homologation Engineer job openings:
Infographic showing various Homologation Engineer job openings in Michigan as of August 2026, with employment types broken down into 89% Full Time, 7% Part Time, and 4% Contract. Highlights an 86% Physical, 4% Hybrid, and 10% Remote job distribution, with an average salary of $88,687 per year, or $42.6 per hour.

Safety Technical SME

S3 Staffing USA

Auburn Hills, MI • On-site

Other

Re-posted 9 days ago


Job description

Job title: Safety Technical SME

Location: Auburn Hills, MI

Duration: Full time

We are seeking Safety Technical SME with strong expertise in ISO 26262 and SOTIF (ISO 21448). The role expects technical hands-on experience, activities and ownership of functional and intended safety activities for chassis systems, including ADAS chassis interactions, acting as the key safety authority interface between engineering teams, suppliers, OEM customers, and certification bodies.

Key Responsibilities (ISO 26262 V-Cycle & SOTIF):

  • Own and drive functional safety lifecycle for chassis systems from concept through production and operation
  • Develop and Lead Item Definition, HARA, Safety Goals, and ASIL classification
  • Develop and review Functional and Technical Safety Concepts (FSC/TSC)
  • Define, allocate, and manage FSRs, TSRs, HW and SW safety requirements
  • Lead and review safety analyses: System FMEA, FTA, FMEDA, and interface-related risks
  • Define safe states, fault reactions, and degradation strategies for chassis and ADAS handover scenarios
  • Apply SOTIF (ISO 21448) to address unknown or insufficiently understood risks and performance limitations
  • Support safety verification and validation (MIL/SIL/HIL, fault injection)
  • Own and contribute to Safety Case and SOTIF Case development
  • Perform safety impact analysis for design changes, calibration updates, and field issues

Homologation & Certification Support:

  • Preparation and documentation for third-party functional safety assessments and homologation processes
  • Coordinate with assessment bodies for ISO 26262 safety case reviews and formal approvals
  • Provide guidance and support to ensure compliance with regulatory and customer-specific safety requirements

Cross-Functional Coordination & PLM Integration:

  • Act as the primary safety interface for system, hardware, software, ADAS, validation, and vehicle integration teams
  • Coordinate chassis and ADAS safety activities with global teams across regions
  • Ensure end-to-end traceability of safety and SOTIF work products using ALM tools (Polarion, DOORS, Codebeamer)
  • Integrate functional safety and SOTIF processes within the PLM environment for full lifecycle management
  • Track, escalate, and resolve safety and SOTIF-related risks

Tools & Standards:

- ISO 26262, ISO 21448 (SOTIF), ASPICE

- Medini Analyze or equivalent safety analysis tools

- IBM DOORS / Polarion / Codebeamer

- MATLAB/Simulink, dSPACE, CANoe

Required Profile:

- Engineering degree with strong automotive systems background

- 8+ years experience in functional safety and chassis systems

- Experience with ADAS chassis integration and safety interfaces

- Experience working with OEMs, suppliers, and assessment