Hardware Functional Safety Lead

Stellantis

Auburn Hills (MI)

On-site

USD 120,000 - 180,000

Full time

10 days ago

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Job summary

Stellantis is seeking an experienced Functional Safety Hardware Lead Engineer to drive safe ECU hardware architectures across vehicle platforms and domains as part of the SDV strategy. You will lead safety activities from concept to production, ensuring compliance with ISO 26262 and Stellantis engineering processes.

The role requires deep expertise in automotive hardware design, safety analysis, semiconductor technologies, reliability engineering, and safety case development, mentoring safety

Qualifications

  • Bachelor's degree in Electrical/Electronics Engineering or equivalent required.
  • Minimum 8 years of experience in ECU hardware design, electronic architectures, or semiconductor-based system development.
  • Strong understanding of ISO 26262 (Parts 4,5,6,8).
  • Experience with automotive MCUs, SoCs, PMICs, memories and verif.Safety-critical ECUs.
  • Strong analytical and problem-solving skills; fluent in English.

Responsibilities

  • Lead hardware functional safety activities per ISO 26262 Part 5 across the product lifecycle.
  • Define and review Hardware Safety Concepts and derive hardware safety requirements.
  • Develop safety-compliant ECU hardware architectures for ASIL A–D.
  • Support Hazard Analysis and Risk Assessment and allocate safety goals to hardware elements.
  • Lead and review FMEDA, DFA, FTA and safety architecture evaluations.

Skills

Analytical skills
Problem-solving
English fluency

Education

Bachelor's Degree in Electrical/Electronics Engineering
Master's Degree in Electrical/Electronics Engineering or related

Job description

Functional Safety Hardware Lead Engineer (#EHE)

Build your brand. Tell your story.

Take advantage of a rare opportunity to lead the development of next-generation automotive electronic hardware platforms supporting Stellantis' Software Defined Vehicle (SDV) strategy. We are seeking an experienced Hardware Functional Safety Lead Engineer to drive the development of safety-compliant ECU hardware architectures across vehicle platforms and domains.

As a Functional Safety Hardware Lead at PDT/EHE, you will lead hardware functional safety activities from concept through production, ensuring compliance with ISO 26262 and Stellantis engineering processes. You will work closely with system architects, hardware designers, semiconductor suppliers, software teams, cybersecurity engineers, validation teams, and safety managers to develop robust, safety-compliant electronic control units (ECUs) and compute platforms.

The role requires deep expertise in automotive hardware design, safety analysis, semiconductor technologies, hardware architecture, reliability engineering, and safety case development. The successful candidate will be a recognized technical leader capable of influencing global vehicle programs and mentoring safety engineers across regions.

Responsibilities:
  • Lead Hardware Functional Safety activities in accordance with ISO 26262 Part 5 throughout the product lifecycle.
  • Define and review Hardware Safety Concepts (HSC) and derive hardware technical safety requirements.
  • Drive development of safety-compliant ECU hardware architectures for ASIL A, B, C, and D systems.
  • Support Hazard Analysis and Risk Assessment (HARA) and allocation of safety goals to hardware elements.
  • Lead and Review FMEDA , DFA, FTA, Hardware architectural evaluations safety analysis
  • Ensure traceability from safety goals through hardware requirements and verification activities.
  • Lead hardware safety architecture development for ECUs, domain controllers, zonal controllers, gateways, body controllers, and high-performance compute platforms.
  • Review schematic designs, power architectures, clock architectures, reset strategies, watchdog implementations, and safety monitoring mechanisms.
  • Evaluate fault-tolerant hardware architectures
  • Support semiconductor selection and safety evaluation of MCUs, SoCs, PMICs, memories, and communication devices.
  • Ensure timely closure of safety issues, risks, assumptions, and deviations.
  • Review hardware verification reports, test coverage, and safety evidence.
  • Mentor and coach Hardware Functional Safety Engineers.
  • Establish best practices, methods, templates, and lessons learned.
  • Drive continuous improvement in hardware safety processes and engineering capability development.
Basic Qualifications:
  • Bachelor's Degree in Electrical Engineering, Electronics Engineering, or equivalent.
  • A minimum 8 years of experience in ECU hardware design, electronic architectures, or semiconductor-based system development.
  • Strong understanding of ISO 26262, especially: Part 4, 5,6, 8
  • Good knowledge of hardware reliability and safety engineering principles.
  • Experience working with automotive microcontrollers, SoCs, PMICs, memories, and communication interfaces, developing safety-compliant automotive ECUs.
  • Strong analytical and problem-solving skills.
  • Fluent in English.
Preferred Qualifications
  • Master's Degree in Electrical Engineering, Electronics Engineering, Functional Safety, or related field.
  • Experience with Zonal, HPC and Centralized EE Architectures
  • Good Understanding of semiconductor functional safety standards: ISO 26262 Semiconductor Guidelines, IEC 61508
  • Familiarity with ASPICE processes.

Functional Safety Hardware Lead Engineer (#EHE)

Build your brand. Tell your story.

Take advantage of a rare opportunity to lead the development of next-generation automotive electronic hardware platforms supporting Stellantis' Software Defined Vehicle (SDV) strategy. We are seeking an experienced Hardware Functional Safety Lead Engineer to drive the development of safety-compliant ECU hardware architectures across vehicle platforms and domains.

As a Functional Safety Hardware Lead at PDT/EHE, you will lead hardware functional safety activities from concept through production, ensuring compliance with ISO 26262 and Stellantis engineering processes. You will work closely with system architects, hardware designers, semiconductor suppliers, software teams, cybersecurity engineers, validation teams, and safety managers to develop robust, safety-compliant electronic control units (ECUs) and compute platforms.

The role requires deep expertise in automotive hardware design, safety analysis, semiconductor technologies, hardware architecture, reliability engineering, and safety case development. The successful candidate will be a recognized technical leader capable of influencing global vehicle programs and mentoring safety engineers across regions.

Responsibilities:
  • Lead Hardware Functional Safety activities in accordance with ISO 26262 Part 5 throughout the product lifecycle.
  • Define and review Hardware Safety Concepts (HSC) and derive hardware technical safety requirements.
  • Drive development of safety-compliant ECU hardware architectures for ASIL A, B, C, and D systems.
  • Support Hazard Analysis and Risk Assessment (HARA) and allocation of safety goals to hardware elements.
  • Lead and Review FMEDA , DFA, FTA, Hardware architectural evaluations safety analysis
  • Ensure traceability from safety goals through hardware requirements and verification activities.
  • Lead hardware safety architecture development for ECUs, domain controllers, zonal controllers, gateways, body controllers, and high-performance compute platforms.
  • Review schematic designs, power architectures, clock architectures, reset strategies, watchdog implementations, and safety monitoring mechanisms.
  • Evaluate fault-tolerant hardware architectures
  • Support semiconductor selection and safety evaluation of MCUs, SoCs, PMICs, memories, and communication devices.
  • Ensure timely closure of safety issues, risks, assumptions, and deviations.
  • Review hardware verification reports, test coverage, and safety evidence.
  • Mentor and coach Hardware Functional Safety Engineers.
  • Establish best practices, methods, templates, and lessons learned.
  • Drive continuous improvement in hardware safety processes and engineering capability development.
Basic Qualifications:
  • Bachelor's Degree in Electrical Engineering, Electronics Engineering, or equivalent.
  • A minimum 8 years of experience in ECU hardware design, electronic architectures, or semiconductor-based system development.
  • Strong understanding of ISO 26262, especially: Part 4, 5,6, 8
  • Good knowledge of hardware reliability and safety engineering principles.
  • Experience working with automotive microcontrollers, SoCs, PMICs, memories, and communication interfaces, developing safety-compliant automotive ECUs.
  • Strong analytical and problem-solving skills.
  • Fluent in English.
Preferred Qualifications
  • Master's Degree in Electrical Engineering, Electronics Engineering, Functional Safety, or related field.
  • Experience with Zonal, HPC and Centralized EE Architectures
  • Good Understanding of semiconductor functional safety standards: ISO 26262 Semiconductor Guidelines, IEC 61508
  • Familiarity with ASPICE processes.

At Stellantis, we assess candidates based on qualifications, merit, and business needs. We welcome applications from all people without regard to sex, age, ethnicity, nationality, religion, sexual orientation, disability, or any characteristic protected by law. We believe that diverse teams reflect our identity as a global company, enabling us to better address the evolving needs of our customers and care for our future.

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