Our client’s mission is to expand humanity’s frontier into the solar system and beyond. The next step on this journey is to enable manufacturing and habitation in Low Earth Orbit (LEO). Our client’s plan to make this a reality is to build artificial gravity space stations.
The Job
Our client is looking for a Principal Design Reliability Engineer, reporting to the Senior Manager, Design Reliability, to support the development of the systems that will be required for the design and build of artificial-gravity human-rated space stations.
Functions
Technical Leadership:
Lead the technical reviews that shape the future of artificial-gravity space habitats—providing clear, decisive guidance during milestone design reviews and major risk gates.
Oversee qualification and test completeness for flight systems, ensuring test campaigns are robust, disciplined, and aligned with human-rated reliability.
Bring deep engineering intuition to test campaigns, identifying risks early and helping teams converge on safe, resilient solutions.
Evaluate complex design and operational changes, safeguarding technical integrity as the system evolves.
Design Excellence:
Serve as the architect and guardian of our client’s engineering standards, design guides, and review frameworks—tools that enable fast, confident decision-making across the company.
Make engineering best practices accessible and actionable, especially for engineers moving rapidly under ambitious program timelines.
Support and elevate engineering teams across the organization by bringing broad experience in design, build cycles, integration, and test.
Turn organizational knowledge into lasting guidance by capturing lessons learned and strengthening future standards.
Process Ownership:
Build and steward the processes that ensure engineering rigor at scale—ensuring designs meet standards, reviews are comprehensive, and changes are consistently implemented.
Own and continuously refine design review templates, reliability checklists, and internal design guides.
Track design maturity and compliance across the station and vehicle architecture, ensuring nothing slips through the cracks.
Build tools, frameworks, and automation that empower engineers to explore design trade-offs and risks with clarity and speed.
Cross-Functional Influence:
Work across all facets of the engineering organization to improve reliability.
Partner with configuration and change management so that every update to flight hardware is intentional, reviewed, and fully understood.
Partner with the internal software team to ensure system data, configuration details, and design decisions are well organized and accessible.
Qualifications
Bachelor’s degree in Mechanical Engineering, Aerospace Engineering, Systems Engineering, or related field.
10+ years of experience in responsible engineering, design ownership, systems integration, test engineering, or reliability-focused development.
Demonstrated experience conducting design reviews, qualification reviews, or major change assessments.
Strong communicator and collaborative leader with high emotional intelligence, diplomacy, and the ability to influence at all levels.
Resilient, curious, and committed to continuous learning in fast-paced or high-pressure environments.
Preferred Skills
Experience in Responsible Engineering, Systems Engineering, Office of the Chief Engineer, or Reliability Engineering roles on complex aerospace systems.
Hands-on experience designing, assembling, integrating, or testing hardware.
Background with spacecraft, aircraft, launch vehicles, or other mission- or safety-critical systems.
Familiarity with fracture control, reliability methodologies, or human-rated hardware standards.
Experience creating engineering standards, review templates, or technical guidance frameworks.
Strong scripting and data analysis skills (Python, MATLAB, Excel) and familiarity with visualization tools (e.g., Tableau).
Knowledge of manufacturing processes, materials selection, and hardware qualification pathways.
Strong systems-level intuition and the ability to anticipate and articulate risks early.
Numbers & Facts
Location
Torrance, CA
Skills
Aerospace Engineeringunmatched
Aerospace and Defenseunmatched
Analysis Skillsunmatched
Automationunmatched
Best Practicesunmatched
Campaignsunmatched
Change Managementunmatched
Communication Skillsunmatched
Configuration Managementunmatched
Cross-Functionalunmatched
Data Analysisunmatched
Design Evaluationunmatched
Hardware Quality Assuranceunmatched
Hardware Standardsunmatched
Integration Testingunmatched
MATLABunmatched
Manufacturingunmatched
Manufacturing/Industrial Processesunmatched
Mechanical Engineeringunmatched
Organizational Skillsunmatched
Python Programming/Scripting Languageunmatched
Reliability Engineeringunmatched
Riskunmatched
Risk Analysisunmatched
Safety Systemsunmatched
Scripting (Scripting Languages)unmatched
Standards Developmentunmatched
System Integration (SI)unmatched
System Testunmatched
Systems Administration/Managementunmatched
Systems Engineeringunmatched
Tableauunmatched
Team Playerunmatched
Technical Leadershipunmatched
Technical/Engineering Designunmatched
Testingunmatched
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