Senior Systems Engineer

Agility Robotics Agility Robotics · Robotics · Fremont, CA · Hardware

Senior Systems Engineer for Software at Agility Robotics, focusing on system-level architecture, integration, requirements engineering, and compliance for humanoid robot platforms. The role involves driving structured development processes, ensuring systems meet industry standards and regulatory requirements, and improving operational excellence through analysis of field data. Experience in robotics, multidisciplinary systems, and functional safety is required.

What you'd actually do

  1. Define and document system and subsystem architectures spanning mechanical, electrical, firmware, and software domains. Drive trade studies with focus on simplicity, performance, cost, and execution speed.
  2. Own software subsystem-level requirements through their full lifecycle—writing, decomposing, validating, and tracking execution. Maintain rigorous traceability while enabling development velocity.
  3. Ensure system designs meet industry standards and regulatory requirements. Facilitate functional safety analysis including hazard analysis, risk assessment, and safety case development. Drive compliance activities for certification, software development, and software deployment.
  4. Develop and maintain Interface Control Documents (ICDs). Anticipate and resolve integration issues early through proactive systems thinking.
  5. Identify and eliminate operational inefficiencies through systematic analysis of field performance data, customer workflows, and deployment scenarios. Implement design improvements that directly enhance system reliability, maintainability, and performance.

Skills

Required

  • Systems Engineering
  • Robotics
  • Aerospace
  • Automotive
  • Multidisciplinary hardware/software systems
  • System-level integration
  • Architecture
  • Fast-paced environments
  • Self-direction
  • Bias for action
  • Integrating software capabilities into autonomous systems
  • V-model systems engineering
  • Requirements authoring
  • Traceability management
  • Interface definition
  • Decomposing functional requirements for software
  • Industry standards (ISO 13849, IEC 61508, ANSI/RIA R15.06)
  • Regulatory frameworks for robotics systems
  • Functional safety analysis
  • Hazard analysis
  • Risk assessment
  • Safety case development
  • Safety lifecycle processes
  • Safety-critical system design
  • System-level validation strategies
  • Systems engineering tools
  • Operational efficiency analysis
  • Systematic analysis
  • System-level interactions
  • Cross-functional dependencies
  • Downstream impacts
  • Field data analysis
  • Customer deployment scenarios
  • Integration risks
  • Field feedback
  • Customer requirements
  • Operational constraints

Nice to have

  • Agility and execution speed
  • Systems thinking
  • Passion for building real systems fast
  • Pragmatism

What the JD emphasized

  • 5+ years of Systems Engineering experience in robotics, aerospace, automotive, or similar multidisciplinary hardware/software systems
  • Proven track record leading system-level integration and architecture efforts
  • Experience integrating new software capabilities into autonomous systems
  • Strong proficiency with V-model systems engineering approaches, adapted for rapid development
  • Expert-level requirements authoring, traceability management, and interface definition
  • Compliance and standards expertise: Knowledge of relevant industry standards (ISO 13849, IEC 61508, ANSI/RIA R15.06, or similar) and regulatory frameworks for robotics systems in manufacturing/warehousing environments
  • Functional safety experience: Demonstrated ability to conduct hazard analysis, risk assessment, and safety case development. Experience with safety lifecycle processes and safety-critical system design
  • Demonstrated ability to think systematically: Must provide specific examples of how you've identified cross-functional dependencies, anticipated downstream impacts, or solved problems by understanding system-level interactions
  • Proactive problem-solving track record: Evidence of looking ahead to solve problems before they occur—examples might include analyzing field data to prevent failures, designing for customer deployment scenarios, or identifying integration risks early in development
  • Customer-focused systems perspective: Experience translating field feedback, customer requirements, or operational constraints into actionable system design changes