About The Position

The Environmental Health and Safety team is seeking highly driven engineers to establish both human and system safety controls throughout the expansion of SpaceX's large-scale AI infrastructure and supercomputing facilities in the Memphis area. This role is critical in ensuring high-density critical infrastructure meets rigorous control reliability requirements enabling the safe rapid scaling of compute capacity to meet aggressive deployment timelines. The ideal candidate will have a comprehensive understanding of electrical system architecture, thermodynamics, heat transfer, and energy storage system architecture.

Requirements

  • Bachelor’s degree in electrical engineering, mechanical engineering, industrial/systems engineering, chemical engineering, fire protection engineering, or related field
  • 5+ years of professional experience in electrical power systems, critical-facility operations, manufacturing, quality and/or design engineering role

Nice To Haves

  • Experience with programming PLCs, IoT device administration, and scripting/coding for automation or data analysis
  • Proficiency with PFMEA, root cause analysis, statistical process control, and structured problem-solving methodologies
  • Experience with CAE / CFD tools (Ansys)
  • CSP (Certified Safety Professional)
  • PE (Professional Engineer) license
  • CEM (Certified Energy Manager) or data-center-specific credentials
  • NFPA-related certifications
  • Hands-on experience in data centers, critical facilities, or mission-critical environments
  • Strong interpersonal and collaborative skills, enthusiasm for the mission of enabling multi-planetary life

Responsibilities

  • Oversee electrical safety programs including arc-flash analysis, lockout/tagout (LOTO), and safe work practices on UPS, PDUs, switchgear, and generators
  • Conduct regular risk assessments of power systems, cooling infrastructure, fire/smoke, energy storage, and human factors
  • Perform Failure Mode and Effects Analysis (FMEA), HAZOP studies, and other structured risk assessments for critical systems
  • Ensure proper grounding, bonding, and power quality monitoring/telemetry to prevent equipment damage and personnel injury
  • Validate automatic transfer switch (ATS) and generator failover procedures from a safety perspective
  • Monitor and mitigate risks related to cooling failures, hot spots, thermal runaway, and extreme temperature/humidity conditions
  • Establish safe operating limits and emergency response procedures for CRAC/CRAH, chillers, energy storage systems, and liquid cooling systems
  • Develop, maintain, and regularly drill emergency response plans for power loss, cooling failure, fire, water events, and other critical incidents
  • Ensure compliance with applicable codes and standards (NFPA, OSHA, IEC, local building/fire codes, Uptime Institute guidelines, ISO 45001, etc.)
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