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Director Engines Engineering Propulsion Jobs (NOW HIRING)

$125 - $150/hr

With hundreds of engines, hundreds of simulations, and hundreds of hot fire operations, the work we ... Bachelor's degree in computer science, engineering, or a STEM discipline * 1+ year experience with ...

$125 - $150/hr

With hundreds of engines, hundreds of simulations, and hundreds of hot fire operations, the work we ... Bachelor's degree in computer science, engineering, or a STEM discipline * 1+ year experience with ...

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Director Engines Engineering Propulsion information

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$73K

$194.7K

$254K

How much do director engines engineering propulsion jobs pay per year?

As of Sep 8, 2026, the average yearly pay for director engines engineering propulsion in the United States is $194,709.00, according to ZipRecruiter salary data. Most workers in this role earn between $141,500.00 and $253,000.00 per year, depending on experience, location, and employer.

What does a director engines engineering propulsion do?

A Director of Engines Engineering Propulsion leads teams responsible for the design, development, testing, and improvement of propulsion systems, such as jet or rocket engines, for aerospace applications. They oversee engineering projects, ensure compliance with safety and regulatory standards, and collaborate with other departments to meet technical and business goals. This role involves strategic planning, budget management, mentoring engineers, and driving innovation to enhance engine performance and efficiency. Directors in this position play a critical part in shaping the direction of propulsion technology within their organization.

What are the key skills and qualifications needed to thrive as a director engines engineering propulsion?

To thrive as a Director of Engines Engineering Propulsion, you need a deep expertise in propulsion systems, advanced engineering principles, and significant experience in project and team management, usually supported by an engineering degree and often a master's or PhD. Familiarity with CAD/CAE tools, engine simulation software, and regulatory compliance systems, as well as certifications like Professional Engineer (PE), are typically required. Strong leadership, strategic thinking, and effective communication are vital soft skills to drive innovation and manage cross-functional teams. These skills ensure technical excellence, regulatory compliance, and the successful delivery of complex propulsion projects within the aerospace industry.

What are some common challenges faced by a director engines engineering propulsion in managing cross-functional teams?

A Director of Engines Engineering Propulsion often coordinates multidisciplinary teams including design, manufacturing, testing, and quality assurance. One common challenge is aligning technical priorities and timelines across these functions while ensuring regulatory compliance and safety standards. Effective communication and strategic planning are essential to address potential bottlenecks and resource constraints. Balancing innovation with risk management, especially in a fast-paced aerospace environment, is also a frequent consideration.

What is the difference between Director Engines Engineering Propulsion vs Mechanical Engineer?

AspectDirector Engines Engineering PropulsionMechanical Engineer
CredentialsBachelor's/Master's in Mechanical/Aerospace Engineering, extensive experienceBachelor's or higher in Mechanical Engineering
Work EnvironmentLeadership role overseeing teams, strategic planningDesign, analysis, testing in labs or on-site
Industry UsageCommon in aerospace, defense, automotive sectorsWidespread across manufacturing, automotive, aerospace
Search/Comparison IntentUnderstanding leadership vs technical roles in propulsionTechnical design and development tasks

The main difference is that the Director Engines Engineering Propulsion holds a leadership position overseeing engineering teams and strategic projects, while a Mechanical Engineer focuses on technical design, analysis, and testing. The director role involves higher-level management, project oversight, and industry experience, whereas the mechanical engineer is more involved in hands-on technical work.

What are popular job titles related to Director Engines Engineering Propulsion jobs?

For Director Engines Engineering Propulsion jobs, the most frequently searched job titles are:

Infographic showing various Director Engines Engineering Propulsion job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 91% Full Time, 4% Part Time, 3% Contract, and 1% Nights. Highlights an 83% Physical, 4% Hybrid, and 13% Remote job distribution, with an average salary of $194,709 per year, or $93.6 per hour.

Director, Propulsion Engineering

Briggs, TX

Full-time

Medical, Dental, Vision, PTO

Re-posted 17 days ago


Firefly Aerospace rating

6.9

Company rating: 6.9 out of 10

Based on 11 frontline employees who took The Breakroom Quiz

64th of 72 rated aerospace companies


Job description

About Firefly Aerospace

Firefly Aerospace is a space and defense technology company on a mission to reliably and repeatedly launch, land, and operate space systems from Earth to the Moon and beyond. As the partner of choice for critical space missions, Firefly is the first commercial company to launch a satellite to orbit with 24-hour notice and the first company to achieve a successful Moon landing. Headquartered in north Austin, Texas, Firefly is looking for passionate, hardworking innovators to join our team and help fuel our successful trajectory into space.

About the Role

The Propulsion Director provides technical and organizational leadership for the design, development, test, qualification, and operation of propulsion systems across Fireflys launch vehicles and spacecraft. This role is accountable for multiple engine and fluid system programs spanning early architecture trades through flight operations.

As a vertically integrated company with co-located design, fabrication, and test facilities, Firefly expects the Propulsion Director to be deeply engaged in hardware development while setting a clear technical vision and execution strategy. The successful candidate balances hands-on technical depth with people leadership, thrives in a fast-paced development environment, and drives a culture of rigorous testing, ownership, and continuous improvement.

The scope of the propulsion engineering department spans launch vehicle engines, spacecraft propulsion, vehicle fluid systems, valve design, and propulsion analysis teams.

Responsibilities

  • Set and own the technical vision, strategy, and execution of all propulsion and fluid systems programs across launch vehicles and spacecraft
  • Lead, develop, and grow a multidisciplinary propulsion organization of ~100 engineers, fostering technical excellence, accountability, and professional growth
  • Maintain ownership of propulsion hardware and systems across the full lifecycle, from requirements definition and architecture trades through qualification, flight, and operations
  • Serve as a senior technical authority for propulsion and fluid systems, supporting major design reviews, test readiness reviews, anomaly resolution, and flight readiness activities
  • Collaborate closely with discipline chief engineers, vehicle chief engineers, and cross-functional teams including structures, avionics, software, manufacturing, integration, quality, and test
  • Drive propulsion system performance, reliability, cost, and manufacturability through disciplined design practices and data-driven decision making
  • Ensure robust risk identification, mitigation, and closure through analysis, testing, and operational feedback
  • Oversee development, qualification, and acceptance testing of propulsion components, subsystems, and engines, with an emphasis on learning-oriented testing
  • Contribute directly to new engine and propulsion technology development, providing technical insight and guidance where needed
  • Establish and uphold engineering standards, best practices, and compliance with applicable industry and government requirements

Qualifications

Required

  • B.S. in Mechanical Engineering, Aerospace Engineering, or a related technical field
  • 8+ years of experience in the design, development, and test of aerospace propulsion and/or fluid systems
  • 5+ years of experience leading engineering teams, with demonstrated success delivering complex hardware programs
  • Strong technical foundation in propulsion system design, fluid dynamics, combustion, turbomachinery, thermodynamics, and thermal systems as well as a demonstrated ability to apply these first principles to arrive at simple, robust solutions
  • Demonstrated experience owning hardware from early concept through testing, qualification, and operation
  • Hands-on experience driving performance, reliability, or design-for-manufacturability initiatives
  • Deep understanding of cryogenic and storable propellant systems
  • Working knowledge of relevant aerospace standards and requirements (e.g., SMC-S-016, SMC-S-025)
  • Working knowledge of manufacturing, fabrication, integration, and quality control relevant to fluid components (such as machining, inspection, assembly, testing, etc.)
  • Knowledge of fluid components such as valves, regulators, pressure transducers, tubing, pressurized hardware, seals, and instrumentation and experience performing fluid systems sizing analysis with such components
  • Proven ability to rapidly develop solutions with partially defined or evolving requirements
  • Excellent written and verbal communication skills, with the ability to represent propulsion programs to internal and external stakeholders

Desired Qualifications

  • Advanced degree in Mechanical Engineering, Aerospace Engineering, or equivalent field
  • Extensive experience developing and operating liquid rocket engines, launch vehicles, or spacecraft
  • In-depth knowledge of cryogenic, high-pressure, or high-temperature system operations
  • Experience with fluid system subcomponent or pressurized component development, design, or testing (such as valves, regulators, piping systems, pumps, etc.)
  • Familiarity with multiple engine cycle architectures (e.g., gas generator, staged combustion, full-flow staged combustion)
  • Proven ability to build and sustain a high-performing engineering culture centered on ownership, learning, and execution
  • Demonstrated experience with full hardware lifecycle ownership, from blank-sheet design through full operation
  • Demonstrated passion for advancing propulsion technology and integrating emerging capabilities into an executable roadmap

Disclaimer


Firefly offers outstanding benefits for our employees, including generous health, dental and
vision plans with low plan deductibles, parental leave, educational reimbursement, short term
disability, and flexible PTO options.
To conform to U.S. Government space technology export regulations, including the International Traffic in
Arms Regulations (ITAR) you must be a U.S. citizen, lawful permanent resident of the U.S., protected
individual as defined by 8 U.S.C. 1324b(a)(3), or eligible to obtain the required authorizations from the
U.S. Department of State.
Firefly Aerospace, Inc. is an Equal Opportunity Employer; employment with Firefly is governed based on
merit, competence and qualifications and will not be influenced in any manner by race, color, religion,
gender, national origin/ethnicity, veteran status, disability status, age, sexual orientation, gender identity,
marital status, mental or physical disability or any other legally protected status.


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