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Propulsion Performance Engineer Jobs (NOW HIRING)

You'll work closely with EH&S, Performance Engineering, Software, and external partners to ... As our propulsion programs evolve, you'll continuously improve and automate test operations ...

You'll work closely with EH&S, Performance Engineering, Software, and external partners to ... As our propulsion programs evolve, you'll continuously improve and automate test operations ...

You'll work closely with EH&S, Performance Engineering, Software, and external partners to ... As our propulsion programs evolve, you'll continuously improve and automate test operations ...

This role supports propulsion system performance analysis and validation by collecting, formatting, analyzing, and reporting test performance data across development, acceptance, and qualification ...

This role supports propulsion system performance analysis and validation by collecting, formatting, analyzing, and reporting test performance data across development, acceptance, and qualification ...

Founding Propulsion Engineer

San Francisco, CA ยท On-site

$120K - $160K/yr

Engineering * Reports To: Space Systems Engineer * Annual Base Salary: USD $120,000 - $160,000 per ... Establish propulsion performance requirements including thrust, specific impulse, total impulse ...

$120K - $160K/yr

Engineering * Reports To: Space Systems Engineer * Annual Base Salary: USD $120,000 - $160,000 per ... Establish propulsion performance requirements including thrust, specific impulse, total impulse ...

Electric Propulsion Engineer

Irvine, CA ยท On-site

$112K - $153K/yr

Electric Propulsion Engineer Location: Irvine, CA Work Arrangement: O n-site Position Summary We ... Conduct tuning, calibration, and performance optimization of motors and motor controllers across ...

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Propulsion Performance Engineer information

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How much do propulsion performance engineer jobs pay per hour?

As of Sep 11, 2026, the average hourly pay for propulsion performance engineer in the United States is $60.11, according to ZipRecruiter salary data. Most workers in this role earn between $49.28 and $68.03 per hour, depending on experience, location, and employer.

What does a propulsion performance engineer do?

A Propulsion Performance Engineer is responsible for analyzing, modeling, and optimizing the performance of propulsion systems such as jet engines, rocket engines, or other powerplants used in aerospace vehicles. They use simulation tools and test data to evaluate engine efficiency, thrust, fuel consumption, and emissions, ensuring that propulsion systems meet design requirements and safety standards. Their work often involves collaborating with design, testing, and manufacturing teams to improve system performance and troubleshoot issues throughout the development lifecycle.

What are the key skills and qualifications needed to thrive as a propulsion performance engineer, and why are they important?

To thrive as a Propulsion Performance Engineer, you need a solid background in aerospace or mechanical engineering, strong analytical skills, and experience with propulsion systems, often supported by a relevant engineering degree. Proficiency with simulation tools such as MATLAB, CFD software, and engine performance modeling platforms is typically required. Strong problem-solving skills, attention to detail, and effective communication abilities set candidates apart in this role. These skills are crucial for accurately predicting and optimizing propulsion system performance, ensuring safety, efficiency, and innovation in aerospace projects.

How do propulsion performance engineers typically collaborate with other engineering teams during a project?

Propulsion Performance Engineers work closely with multidisciplinary teams, including aerodynamics, systems, and integration engineers. They often participate in design reviews, share performance data, and help troubleshoot issues that arise during testing or simulations. Effective communication and collaboration are vital, as propulsion performance must align with overall vehicle requirements and constraints. This cross-functional teamwork is key to ensuring the propulsion system meets safety, efficiency, and mission objectives.

What is the difference between Propulsion Performance Engineer vs Propulsion Systems Engineer?

AspectPropulsion Performance EngineerPropulsion Systems Engineer
Required CredentialsBachelor's or Master's in Aerospace, Mechanical, or Propulsion Engineering; certifications in propulsion systems are commonBachelor's or Master's in Aerospace or Mechanical Engineering; similar certifications often applicable
Work EnvironmentDesign labs, testing facilities, and simulation environments focused on engine performanceDesign, development, and integration of propulsion systems across projects
Employer & Industry UsagePrimarily in aerospace, defense, and space industriesUsed in aerospace, defense, and commercial aircraft industries

The Propulsion Performance Engineer focuses on analyzing and optimizing engine performance, while the Propulsion Systems Engineer handles the overall design and integration of propulsion systems. Both roles require similar credentials and often work in overlapping environments, but their core responsibilities differ in scope and focus.

What are popular job titles related to Propulsion Performance Engineer jobs?

For Propulsion Performance Engineer jobs, the most frequently searched job titles are:

Infographic showing various Propulsion Performance Engineer job openings in the United States as of August 2026, with employment types broken down into 1% As Needed, 88% Full Time, 9% Part Time, and 2% Contract. Highlights an 85% Physical, 2% Hybrid, and 13% Remote job distribution, with an average salary of $125,019 per year, or $60.1 per hour.

Staff Propulsion Test Engineer

Torrance, CA โ€ข On-site

Divergent
Internet and ITย โ€ขย 51 - 200 employees

Full-time

Re-posted 13 days ago


Job description

Purpose

We'reย seeking aStaff Propulsion Test Engineerto architect, build, andย operateย world-class propulsion test infrastructure that accelerates the development of next-generation turbo machinery and jet engines. From an empty test bay toย first-fire,ย you'llย own the end-to-end development of propulsion test capability-designing mechanical structures, integrating high-pressure fluid systems, implementing instrumentation and controls, commissioning the facility, andย ultimately leadingย propulsion test campaigns.ย 

This is a highly hands-on role for an engineer who is equally comfortable designing structural hardware, specifying instrumentation, commissioning fluid systems, and troubleshooting on the test floor.ย You'llย work closely withย EH&S,ย Performance Engineering, Software, and external partners to transform ambitious testingย objectivesย into safe, repeatable, and data-rich test campaigns that generate flight-critical insight.ย 

As our propulsion programs evolve,ย you'llย continuously improve and automate test operations, increasing throughput, data quality, and operational efficiency while fostering a culture of ownership, safety, and technical excellence.ย 

This is an onsite position supporting propulsion development and recurring engine testing.ย 

The Role
  • Deliver fully operational propulsion test standsfrom concept through commissioning, owning the mechanical, fluid, controls, and instrumentation systemsย requiredย for safe, repeatable engine testing.ย 
  • Build robust, flight-ready test infrastructureby designing structural hardware, high-pressure fluid systems, and facility equipment that meets demanding propulsion testing requirements.ย 
  • Coordinateย test readiness reviews, including, safety, instrumentation, and limits review in preparation for test eventsย 
  • Deliver high-fidelity test databy architecting and integrating instrumentation, DAQ, and control systems that provide reliable, flight-critical measurements for propulsion performance evaluation.ย 
  • Commission andย operateย propulsion test systemsby leading assembly, first-flow activation, shakedown testing, operating procedure development, and safe execution of engine test campaigns.ย 
  • Drive propulsion test execution and technical insightby partnering with Performance Engineering to analyze results, benchmark engine performance, and resolve technical issues through root-cause investigation.ย 
  • Continuously improve test capabilityby automating test operations, increasing reliability and throughput, and evolving infrastructure to accelerate propulsion development in alignment with the DAPS philosophy.ย 
Basic Qualifications
  • Bachelor's degree in Mechanical, Aerospace, Electrical Engineering, or a related engineering discipline.ย 
  • Demonstrated experience designing, building, commissioning, and operating complex propulsion or mechanical test systems, including hands-on integration, troubleshooting, and test execution.ย 
  • Excellent ability to collaborate with technical and functional teams in prior toย and during test events.ย 
  • Strong technical foundation in high-pressure fluid systems, instrumentation, and high-speed data acquisition, including pressure system design, sensor integration, signal conditioning, and development of reliable, high-fidelity test data systemsย in accordance withย ASME B31.3 or equivalent engineering standards.ย 
  • Ability to lawfully access information and technology subject to U.S. export controls.ย 
Preferred Qualifications
  • Direct experience testing turbo machinery, gas turbines, or jet engines.ย 
  • Strong understanding of propulsion test planning, test execution, data acquisition, and performance analysis.ย 
  • Experience with advanced sensing technologies, including fiber optic instrumentation.ย 
  • Experience with PLCs, industrial controls, automation, or integrated test control systems.ย 
  • Familiarity with vibration, NVH, and propulsion performance characterization.ย 
  • Experience working in fast-paced R&D or first-of-a-kind hardware development environments.ย 
  • A builder's mindset-you naturally envision how to transform an empty space into a safe, efficient, and highly capable propulsion test facility.ย 
  • Collaborative leadership style withย a track recordย of enabling multidisciplinary teams to deliver complex technical systems.ย 
Work Environment
  • This is a hands-on, onsite role supporting propulsion test stand construction, commissioning, and recurring engine testing.ย 
  • Regular exposure to high-pressure fluid systems, aviationย fuelsย and active propulsion testing.ย 
  • Close collaboration with Performance Engineering, Software Engineering, manufacturing teams, and external engineering partners to rapidly develop and improve propulsion test capability.ย