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Senior System Safety Engineer (ISO 26262)

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StageDirectory listedStandardsISO 26262 · IEC 61508 · ISO 21448 · ARP4754 · ARP4761 · MIL-STD-882IndustryAerospace & defenseSenioritySeniorRegionGermanyWork modeRemoteSource year2026Role familySystems safetySegmentDefense spaceEmploymentContractEmployerEmployer profileToolsIBM DOORS · Jama ConnectLanguagesEnglish · German
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Responsibilities

As a (Senior) System Safety Engineer at the organization, you will be responsible for defining, implementing, and executing a comprehensive System Safety and program for our advanced AI-driven defense software and hardware platforms. In this role, you will apply rigorous safety methodologies to identify hazards, mitigate risks, and ensure that our cutting-edge technologies are safe for deployment. You will collaborate closely with systems, software, hardware, and delivery teams to embed safety into the architecture from day one, while helping to mature and standardize the organization's internal safety processes across all product lines.

  • Safety Program Execution: Establish, implement, and maintain the System Safety Program Plan (SSPP) in strict accordance with MIL-STD-882E tasks and methodologies.
  • Functional Hazard & : Lead and execute comprehensive system-level hazard analyses, including Preliminary (PHA), System Hazard Analysis (SHA), Subsystem Hazard Analysis (SSHA), and Operating and Support Hazard Analysis (O&SHA) per MIL-STD-882E.
  • Engineering: Define Functional Safety Concepts (FSC) and Technical Safety Concepts (TSC). Identify safety-critical functions (SCF) and map software/hardware safety integrity levels to ensure robust fail-safe and fault-tolerant architectures
  • Safety Requirements Management: Derive, flow down, and manage software and hardware functional safety requirements. Ensure end-to-end traceability from hazard mitigation down to verification and validation () test cases using engineering tools.
  • Deliverables: Author and compile comprehensive Safety Assessment Reports (SAR), Hazard Logs, and Cases to demonstrate that risks have been mitigated
  • Cross-Functional Collaboration: Act as the primary safety point of contact for engineering teams. Guide developers, system architects, and test engineers on how to design-in safety, ensuring compliant software development lifecycles.
  • Stakeholder & Audit Management: Present safety cases, hazard analyses, and risk-acceptance arguments to internal stakeholders, customers, and regulatory authorities. Support safety reviews, audits, and certification processes.
  • Expertise in Military standard: Deep, hands-on experience applying MIL-STD-882E processes, tasks, and risk assessment matrices in a defense or aerospace environment.
  • Expertise in Aviation standard: Deep, hands-on experience applying ARP4761A and ARP4754B (for programs requiring mixed military and civil-derived certifications)
  • Principles: Strong understanding of functional safety standards and concepts (e.g., , ) particularly regarding software-intensive systems, software safety critical indices, and hazard mitigation techniques.
  • Systems Engineering & Requirements Traceability: Strong background in systems engineering, including experience capturing, decomposing, tracing, and verifying safety requirements using tools such as Jama Software, IBM DOORS, or similar.
  • Analytical Tools & Methodologies: Proficiency in classical safety analysis techniques, including (FTA), Failure Mode and Effects Analysis (/FMECA), and Functional Hazard Assessment (FHA).
  • Communication & Influence: Excellent written and verbal communication skills, with a proven ability to translate complex safety concepts into clear, actionable design requirements for multidisciplinary engineering teams.
  • Language Skills: Fluency in English is required; German is a strong asset.

Nice to have

  • Experience in Model-Based Systems Engineering (MBSE) or Model-Based Safety Analysis (MBSA)
  • Experience in innovative safety methodologies or safety analysis disciplines (e.g., STPA, )
  • The organization's work is important. You’ll be directly contributing to the protection of democratic countries while balancing both ethical and geopolitical concerns
  • The work is unique. We operate in a domain that has highly unusual technical requirements and constraints, and where robustness, safety, and ethical considerations are vital. You will face unique Engineering and AI challenges that make a meaningful impact in the world
  • Our work frequently takes us right up to the state of the art in technical innovation, be it reinforcement learning, distributed systems, generative AI, or deployment infrastructure. The defence industry is entering the most exciting phase of the technological development curve. Advances in our field of world are not incremental: The organization is part of, and often leading, historic leaps forward
  • In our domain, success is a matter of order-of-magnitude improvements and novel capabilities. This means we take bets, aim high, and focus on big opportunities. Despite being a relatively young company, the organization has already been selected for multiple significant government contracts
  • We actively encourage healthy, proactive, and diverse debate internally about what we do and how we choose to do it. Teams and individual engineers are trusted (and encouraged) to practise responsible autonomy and critical thinking, and to focus on outcomes, not conformity. At the organization you will have a say in how we (and you!) work, the opportunity to engage on what does and doesn’t work, and to take ownership of aspects of our culture that you care deeply about

Standards

  • ISO 26262 Road Vehicles - Functional Safety
  • IEC 61508 Functional Safety of E/E/PE Safety-Related Systems
  • ISO 21448 SOTIF - Safety of the Intended Functionality
  • ARP4754 Functional Safety of E/E/PE Safety-Related Systems
  • ARP4761 Functional Safety of E/E/PE Safety-Related Systems
  • MIL-STD-882 Functional Safety of E/E/PE Safety-Related Systems

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