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Sr. Engineer - Architect Software Functional Safety
Job in
Southfield, Oakland County, Michigan, 48076, USA
Listed on 2026-07-20
Listing for:
Magna-International-6df39721
Full Time
position Listed on 2026-07-20
Job specializations:
-
Manufacturing / Production
Systems Engineer
Job Description & How to Apply Below
What we offer:
At Magna, you can expect an engaging and dynamic environment where you can help to develop industry-leading automotive technologies. We invest in our employees, providing them with the support and resources they need to succeed. As a member of our global team, you can expect exciting, varied responsibilities as well as a wide range of development prospects. Because we believe that your career path should be as unique as you are.
Group
Summary:
Transforming mobility. Making automotive technology that is smarter, cleaner, safer and lighter. That’s what we’re passionate about at Magna Electronics, and we do it by creating world-class Electronic systems. We are a premier supplier for the global automotive industry with full capabilities in design, development, testing and manufacturing of complex Electronic systems. Our name stands for quality, environmental consciousness, and safety.
Innovation is what drives us and we drive innovation. Dream big and create the future of mobility at Magna Electronics.
Job Responsibilities:
This role is not eligible for visa sponsorship. Candidates must have current and ongoing authorization to work in the United States.
About the Role:
As a Lead Software Functional Safety Architect, you will serve as the technical authority ensuring our embedded software platforms meet the highest standards of safety integrity. You aren't just an observer; you are a "shadow architect" who operates independently of the primary software architect to provide critical checks, balances, and safety-first design leadership.
Your primary focus will be on high-performance SoC/MCU systems targeting ASIL D compliance, ensuring that every line of code and architectural decision contributes to a fail-safe environment.
Key Responsibilities
1. Safety Analysis & Architectural Design Safety Manual Interpretation:
Deep-dive into SoC/MCU Safety Manuals to extract hardware-software interface requirements (HSIs).Safety Context Identification:
Identify which hardware modules (e.g., DMA, Memory Protection Units, Watchdogs) are relevant to the safety case.
System Alignment:
Collaborate with the System Engineering team to align on diagnostic coverage and error handling strategies.
Fault Management:
Define the end-to-end fault propagation paths—from hardware fault detection to the transition into a defined Safe State.
Architecture Modeling:
Develop and maintain software architectures that explicitly prove the achievement of functional safety goals.
2. Safety Assessments & Work Products Analytical Ownership:
Lead and "own" the creation of the Software FMEA (Failure Mode and Effects Analysis) and Software FTA (Fault Tree Analysis).Requirements Engineering:
Define and review Software Safety Requirements (SSRs), ensuring they are technically sound and fully traceable to specific architectural elements.
Independent Verification:
Act as the independent technical voice to challenge the main software architecture, ensuring safety is never compromised for performance or features.
3. Technical Leadership Drive the team toward successful Safety Audits and assessments.
Mentor junior engineers on ASIL-compliant coding standards (e.g., MISRA C/C++, CERT).Bridge the gap between hardware-level safety features and high-level software application safety.
Required Experience & Qualifications
Experience:
10+ years in Embedded SoC development with a proven track record in complex silicon environments.
Architecture: 3+ years of experience specifically as a Software Architect.
Safety Expertise:
Hands-on experience developing software components that have successfully achieved ASIL C or D certification.
Regulatory Knowledge:
Expert-level understanding of ISO 26262 (Parts 4, 6, and
9).Evaluations:
Direct experience participating in (and defending architectures during) formal safety evaluations or external audits.
Analytical Tools:
Proficiency with safety analysis tools (e.g., Ansys medini analyze, APIS IQ-FMEA, or similar).Skills & Competencies Critical Thinking:
The ability to "think like a failure"—predicting how a system might break before it does.
I…
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