About the Role
About the Role
The System Safety Engineer for Humanoid Robotics at Meta will be responsible for ensuring the safety of humanoid robot systems throughout their lifecycle, from concept to deployment. This role involves leading safety analyses, defining safety requirements, and ensuring compliance with industry standards while collaborating with various engineering teams.
What You'll Do
- Lead the safety lifecycle for the humanoid robot platform from concept through production and deployment.
- Perform qualitative and quantitative system analyses, including performance and reliability, HARA, FMEA, FTA at the system, subsystem, and component levels to satisfy the required Safety Integrity Level of the product.
- Define safety concepts and requirements to support risk reduction measures.
- Define, manage and ensure full traceability of system requirements, aligning with product safety and robot safety standards.
- Ensure that systems and subsystems' designs meet robot safety, functional safety, and product safety requirements.
- Manage safety requirements across the entire robot platform using requirement management tools.
- Work closely with product design, mechanical, electrical, and software engineering teams to embed safety into the core design.
- Ensure compliance with relevant industry standards (e.g., IEC 61508, ISO 13485, ISO 10218) and interface with external regulatory and certification bodies.
Who You Are
- Bachelor's degree in Computer Science, Computer Engineering, relevant technical field, or equivalent practical experience.
- A minimum of 7+ years of experience in safety engineering, with experience delivering complex, safety-critical products (e.g., in robotics, autonomous vehicles, aerospace or industrial automation).
- Experience leading and executing HARA, FMEA, FTA, and reliability analysis for complex electro-mechanical, software-driven systems.
- Demonstrated ability to translate safety standards into clear, concise, and testable system requirements.
- Working knowledge of functional safety standards (e.g., IEC 61508, IEC 62061, ISO 13849 or ISO 26262).
- Working knowledge of robotics safety standards (e.g., ISO 13482, ISO 10218, and ISO/TS 15066).
- Demonstrated ability to use requirements management tools (e.g., Polarion, DOORS, Jama).
Bonus Points
- Knowledge of AI and functional safety standards, including ISO/IEC TS 22440 series or PAS 8800.
- Experience adhering to and implementing responsible, ethical AI practices (e.g., risk assessment, bias mitigation, quality and accuracy reviews).
- Demonstrated ability to integrate AI tools to optimize/redesign workflows and drive measurable impact (e.g., efficiency gains, quality improvements).
- Understanding of hardware and software development, including developing safety-critical software in Rust and C++.
- Successfully certified a robotic system to Safety Integrity Level 3 (SIL3) or an autonomous vehicle (AV) to Automotive Safety Integrity Level D (ASIL-D).
- Experience dealing with the safety implications of machine learning, computer vision, and autonomous decision-making systems.
About Meta
Meta builds technologies that help people connect, find communities, and grow businesses. When Facebook launched in 2004, it changed the way people connect. Apps like Messenger, Instagram and WhatsApp further empowered billions around the world. Now, Meta is moving beyond 2D screens toward immersive experiences like augmented and virtual reality to help build the next evolution in social technology.
Requirements
Safety Engineering Experience
A minimum of 7+ years of experience in safety engineering, particularly in safety-critical products.
Safety Standards Knowledge
Working knowledge of functional and robotics safety standards.
System Analysis Skills
Experience leading and executing HARA, FMEA, FTA, and reliability analysis.
Requirements Management
Demonstrated ability to use requirements management tools effectively.
Nice to Have
Knowledge of AI and functional safety standards.
Experience with responsible and ethical AI practices.
Understanding of developing safety-critical software in Rust.
Benefits
Health Insurance
Comprehensive health insurance plans.
Remote Work
Flexible remote work options.
Learning Budget
Budget for professional development and learning.