Systems Engineer, Integrated Flight and Propulsion Control System (ifpcs)

Joby Aviation Joby Aviation · Robotics · Santa Cruz, CA · Systems Engineering

Systems Engineer for an Integrated Flight and Propulsion Control System (IFPCS) in an urban air mobility aircraft. Responsibilities include requirements management, system integration, verification and validation testing, failure modes analysis, and preparing certification artifacts for regulatory authorities. The role involves collaboration with cross-functional teams and requires a strong understanding of systems engineering processes in an aerospace context.

What you'd actually do

  1. Involvement in writing, conducting validation analyses and reviews, and validating all levels of the system requirements
  2. Supporting design teams in trade studies, subsystem interface definition, requirements flow-down, development analyses, modeling and simulation activities, and assessment of results
  3. Leading and performing system integration activities including: - Verification test plan definition - Test case development and review - Detailed test procedure development and review - Automated and manual Verification test execution - Data reduction and analyses - Problem reporting, resolution, and tracking issue to closure - Writing Test Reports
  4. Creating, analyzing, and managing issues, technical risks, and opportunities for subsystems using enterprise tools
  5. Preparing artifacts and briefing material for internal and external technical meetings design reviews, program reviews, and safety-of-flight reports for the aircraft

Skills

Required

  • Bachelor of Science in Engineering, Physics, or Mathematics
  • Systems engineering processes
  • Requirements management
  • Safety assessment concepts
  • Laboratory environment experience
  • MATLAB/Simulink
  • Microsoft Office
  • Google Docs

Nice to have

  • Aerospace industry experience in primary flight and propulsion control
  • Electric vehicle technology experience
  • Integrating and testing complex, highly integrated systems
  • Failure modes and effects testing (FMET)
  • SAE ARP4754A
  • Safety assessment process, methods, and analyses (FHA, FMEA/FMECA, FTA, CCA) used in safety assessments (PSSA, SSA) per SAE ARP4761
  • DO-160G environmental qualification
  • FAA Part 23, Part 25, Part 27, and/or Part 29 Certification Regulations
  • Siemens Polarion
  • Model-based engineering using MATLAB/Simulink
  • Atlassian tools (Jira, Confluence, Crucible)
  • Dassault Systems Engineering and Management tools (Enovia)

What the JD emphasized

  • primary flight and propulsion control
  • integrating and testing complex, highly integrated systems
  • failure modes and effects testing (FMET)
  • SAE ARP4754A
  • safety assessment process, methods, and analyses (FHA, FMEA/FMECA, FTA, CCA) used in safety assessments (PSSA, SSA) per SAE ARP4761
  • FAA Part 23, Part 25, Part 27, and/or Part 29 Certification Regulations