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Mechanical Engineer, Design; Starship Components

Job in Hawthorne, Los Angeles County, California, 90250, USA
Listing for: SPACE EXPLORATION TECHNOLOGIES CORP
Full Time position
Listed on 2025-12-02
Job specializations:
  • Engineering
    Mechanical Engineer, Systems Engineer, Manufacturing Engineer
Job Description & How to Apply Below
Position: Mechanical Engineer, Design (Starship Components)

Mechanical Engineer, Design (Starship Components)

Hawthorne, CA

Space

X was founded under the belief that a future where humanity is out exploring the stars is fundamentally more exciting than one where we are not. Today Space

X is actively developing the technologies to make this possible, with the ultimate goal of enabling human life on Mars.

MECHANICAL ENGINEER, DESIGN (STARSHIP COMPONENTS)

The Starship Components team develops the most advanced spacecraft and launch vehicle components in the world. Our engineers are hardware experts for valves, regulators, electromechanical actuators, pumps, and explosives that drive critical capabilities on the Starship/Super Heavy vehicle - from propellant flow and ullage gas thrusters to flap/fin actuators and flight termination. We design, machine, build, and test components to operate in extreme environments, with temperatures ranging from 80 to 800K, pressures beyond 800 bar, and life capability of >100 flights.

As a Mechanical Engineer, Design (Starship Components), you will have the opportunity to utilize your knowledge, experience, and creativity to develop novel solutions at the cutting edge of space technology. You will own the relationship between our vehicle hardware/systems teams and manufacturing teams while spearheading your own projects, utilizing your skills in analysis, development testing, and mechanical design. You will provide input into vehicle architecture trades and take a lead role in design and flight readiness on Starship, the vehicle that will make humanity multi-planetary.

RESPONSIBILITIES:

  • Develop innovative, manufacturable flow control devices (valves, regulators, pumps, solenoids) and mechanisms (flap/fin actuators, destruct charges) across Starship and Super Heavy stage systems
  • Question requirements, delete parts and processes, simplify/optimize, accelerate, and automate component deliveries
  • Act as the chief engineer, collaborating with stage, avionics, and flight safety teams to arrive at the simplest solution for the vehicle
  • Inform system-level architecture, with component capabilities and vulnerabilities in mind, to minimize cost of payload to orbit
  • Assemble design criteria, select an architecture, size the component for proper force margin, perform structural analysis, generate detailed part drawings, perform qualification testing, present design reviews, and monitor hardware performance in vehicle operations
  • Target zero in-flight anomalies of your hardware and reduce component-caused delays in production and launch. Spearhead component root cause investigations in the factory and on the vehicle, and implement fixes to prevent repeat failures

BASIC QUALIFICATIONS:

  • Bachelor’s degree in physics or an engineering discipline
  • 1+ years of hands‑on manufacturing, testing, or design experience (internships and project teams qualify)

PREFERRED

SKILLS AND EXPERIENCE:

  • Leadership or mentorship experience and the ability to effectively communicate technical concepts across all disciplines and all levels in the organization (technicians, engineers, exec team)
  • 1+ years of professional experience in manufacturing, testing, design, or machining of mechanical systems
  • Hands‑on experience from industry or collegiate vehicle/robotics competitions in fluid systems, high voltage systems, electronics, explosives, or instrumentation (e.g. pressure transducers, thermocouples, solenoid valves, accelerometers, etc.)
  • Strong foundation in solid mechanics, fluid dynamics, electrical circuits, manufacturing processes, dynamics and controls, heat transfer, and thermodynamics
  • Ability to collect, process, and review complex engineering datasets in tabular or graphical forms to extract relevant trends or failure modes
  • Understanding of electro‑mechanical devices, gear trains, actuators, motors, valves, pumps, regulators, filters, and explosives
  • Proficient in drawings (GD&T), CNC operation, programming (lathes and mills), CNC probing, automated part feeding/catching, and inspection methods
  • Experience in ANSYS or impact/explosion analysis (LSDYNA, Blast

    X, CHEETAH, Hydrocode)
  • Willingness to obtain ATF explosives clearance or handle high explosive devices
  • Experience in software…
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