Functional Safety Architect - SoC/ASIC
Listed on 2026-09-13
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Engineering
Systems Engineer
Teradar is developing the world’s first automotive-grade terahertz vision sensor, delivering high-resolution imaging in any weather condition. Founded in Boston, Teradar’s solid-state, chip-scale technology is designed to unlock safer, smarter vehicles and open new possibilities in mobility, defense, and industrial sensing. For more information, visit
We are seeking a senior-level Functional Safety Architect to lead the architectural definition and safety execution of our hardware and software systems. This is an engineering-heavy systems and silicon role, rather than a compliance-checking position. You will ensure our sensing platform meets applicable safety requirements throughout its lifecycle - bridging the gap between macro-level System Architecture and custom ASIC/Silicon design in alignment with ISO 26262 Parts 4, 5, and 11.
This role is ideal for a technical expert who thrives in a startup environment, takes end-to-end design ownership, and can collaborate closely with systems, IC design, software, and V&V teams to establish novel safety concepts for a new perception modality.
Key Responsibilities- Architectural Safety Leadership:
Own and define the end-to-end Functional Safety architecture, bridging complex system-level goals with custom ASIC/silicon-level safety mechanisms. - Safety Concept Derivation:
Lead the development and maintenance of Functional Safety Concepts (FSC) and Technical Safety Concepts (TSC), focusing on Safety Element out of Context (SEooC) strategies for automotive Tier-1s and OEMs. - Core Safety Analysis:
Conduct and review safety analyses at both the system and silicon levels, including HARA, DFMEA, FMEDA, Fault Tree Analysis (FTA), and Dependent Failure Analysis (DFA). - Cross-Functional Design Partnership:
Serve as the primary safety architecture expert to support development teams with hardware/software interface (HSI) definitions and design recommendations. - Traceability & V-Model Alignment:
Define safety requirements and collaborate with the V&V team to ensure rigorous traceability across system, ASIC, and software levels (ISO 26262 Parts 4 &
5). - Ecosystem & Audit Management:
Act as the technical lead interfacing with external assessors, certification bodies, and global OEM customers to support safety audits, assessments, and the final Safety Case. - Culture & Mentorship:
Establish modern engineering workflows for safety and mentor engineering teams on advanced functional safety practices.
- Education:
Master’s, or Ph.D. in Electrical Engineering, Computer Engineering, Systems Engineering, or a related technical field. - Experience:
7+ years (10+ preferred) of experience in automotive functional safety architecture or systems engineering for safety-critical embedded platforms. - System + Silicon Bridge:
Proven track record working on both system-level safety concepts and ASIC/chip-level safety features (understanding of ISO 26262 Part 11 guidelines for semiconductors is essential, whether SoC or standalone ASIC). - Standards Expertise:
Comprehensive, hands‑on mastery of ISO 26262 processes, work products, and safety case development. - Advanced Safety Analysis:
Expert-level proficiency with quantitative and qualitative safety analyses (DFMEA, FMEDA, FTA, DFA). - Communication:
Exceptional ability to distill complex architectural safety concepts and trade-offs clearly to both technical and non-technical stakeholders, including IC designers, software leads, executive leadership, and OEM partners.
- Leadership:
Experience managing safety teams or acting as the designated Safety Manager for major production programs. - Sensor Expertise:
Familiarity with safety considerations for advanced perception systems (Radar, LiDAR, Camera, SoC, or Multi-Chip Modules). - SOTIF:
Knowledge or certification in ISO 21448 (SOTIF), particularly surrounding performance limitations and functional insufficiencies in perception systems. - Tools:
Experience with specialized safety analysis tools (e.g., Ansys Medini Analyze or equivalent).
- High Impact & Ownership:
Serve as the safety architectural anchor for a novel, category-defining hardware technology. - Collaborative Environment:
Work daily alongside founders, engineering directors, and cross-functional design leads. - Industry Influence:
Help define how the automotive ecosystem handles functional safety for the untapped terahertz spectrum.
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