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HomeCompaniesHermeusPropulsion Component Responsible Engineer

Propulsion Component Responsible Engineer

Hermeus · Los Angeles, CA · On Site · Active · $91,800–$187,450 / year · Lever

Job facts

FieldValue
CompanyHermeus
TitlePropulsion Component Responsible Engineer
Normalized title-
Department / teamEngineering / Mechanisms
LocationLos Angeles, CA, United States
Work modelOn Site
Employment typeFull Time
Salary$91,800–$187,450 / year
Statusactive
ATS providerLever
Posted / first seen2026-03-19 / 2026-05-29
Changed / last seen2026-05-29 / 2026-06-06

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PageWhat it containsOpen
Company jobsActive postings from Hermeus.Open
Company breakdownsRole, location, ATS, and work model facets for this company.Open
ATS provider jobsActive postings observed through Lever.Open
Provider filtered searchThe same provider as a filtered job collection.Open
City jobsActive postings in Los Angeles.Open
Department jobsActive postings in Engineering.Open
Work model jobsActive On Site postings.Open
Lifecycle eventsOpen, update, close, and reopen events for this posting.Open
Original postingCanonical source or apply URL captured from the ATS.Open

Linked records

CompanyHermeus
Source4e13c045-a564-47d7-ad2b-30fc8491c809
ATS providerLever

Description

Hermeus is a venture-backed defense aviation company reclaiming the lost art of rapid iterative prototyping to build the fastest aircraft in the world today. By prioritizing relentless hardware iteration, we deliver high-speed systems at the pace of the modern battlefield. We work with the Department of War to provide the high-speed capabilities our nation and its allies need to maintain a durable, asymmetric advantage. As a Propulsion Component Responsible Engineer you will own the development of flight-critical mechanical and fluid system components, including valves, actuators, and integrated propulsion hardware. You will be responsible for taking hardware from clean-sheet design through build, test, qualification, and production, working in close collaboration with propulsion and vehicle teams. Your work will directly support systems operating in high-pressure, high-temperature, and dynamic flight environments. The salary information provided is a general guideline only. Hermeus takes various factors into account, including, but not limited to, the position's scope and responsibilities, the candidate's professional background, education and training, essential skills, and market and business considerations, when presenting a job offer. Salary is only one part of our total compensation and benefits package. Hermeus offers competitive salary and equity, unlimited PTO policy, paid parental leave, potential for year-end bonuses, and more! 100% employer-paid health care 401k & Retirement Plans Unlimited PTO Weekly Paid Office Lunches End of Year Bonuses Fully stocked breakrooms Stock Options Paid Parental Leave U.S. EXPORT CONTROL COMPLIANCE STATUS The person hired will have access to information and items subject to U.S. export controls, and therefore, must either be a “U.S. person” as defined by 22 C.F.R. § 120.62 or otherwise eligible for deemed export licensing. US persons include U.S. citizens, U.S. nationals, lawful permanent residents (green card holders), and asylees and refugees with such status granted, not pending. EQUAL OPPORTUNITY Hermeus is an Equal Opportunity Employer. Employment decisions at Hermeus are based solely on merit, competence, and qualifications, without regard to 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. Responsibilities: Own propulsion components (e.g., valves, actuation systems, and fluid control hardware) from concept through flight-ready delivery Design for extreme environments, including high pressure, temperature, and transient operating conditions Drive engineering trade studies across performance, manufacturability, reliability, and testability Execute clean-sheet design, analysis, and integration of propulsion components Support hardware through rapid build–test–iterate cycles Lead troubleshooting and root cause analysis during development and test Work with propulsion and vehicle system owners to define requirements, interfaces, and integration strategies Perform system-level sizing, architecture, and design trades Lead development testing, qualification, and acceptance of flight hardware Support transition from prototype to repeatable, production-ready designs Define operational limits and ensure reliability and safety across all phases of use Make risk-informed engineering decisions aligned with program goals and timelines Prioritize work effectively in a fast-paced, evolving development environment Basic Qualifications Bachelor’s degree in Mechanical Engineering, Aerospace Engineering, or related field 5+ years of experience developing mechanical or propulsion-related hardware Experience contributing to hardware through design, build, and test cycles Strong fundamentals in fluids, thermodynamics, mechanics, and materials Hands-on experience with mechanical design, assembly, or integration Preferred Skills and Qualifications Experience with propulsion systems, high-pressure fluid systems, or aerospace mechanisms Experience designing components such as valves, actuators, or fluid control hardware Familiarity with high-temperature materials, sealing strategies, and failure modes Strong knowledge of GD&T, tolerance stack-up, and precision assemblies Experience supporting hardware testing and resolving real-world failures Proficiency with CAD tools (NX preferred) and analysis tools (ANSYS or similar) Experience working in rapid hardware development environments (startup or flight programs) Scripting experience (Python, MATLAB, or similar) for analysis or automation Additional Requirements: Willingness to work hands-on in build, integration, and test environments Ability to support extended hours during critical test campaigns Willingness to travel to support hardware builds and flight tests Must be eligible to access export-controlled information

Full job record

Job ID10aad4526bf437b416ea43b5f3be60e2ffa46996
Org ID4296f830-95f0-4d84-b149-cc7bbd1f305a
Source ID4e13c045-a564-47d7-ad2b-30fc8491c809
Board ID4e13c045-a564-47d7-ad2b-30fc8491c809
Providerlever
Provider Job Key8467f855-898e-44d7-9f86-bbd49854a33b
TitlePropulsion Component Responsible Engineer
Normalized Title
Statusactive
Activeyes
Location TextLos Angeles, CA
DepartmentEngineering
TeamMechanisms
Employment TypeFull-time
Workplace Typeon_site
Remote Policy
CountryUnited States
RegionCA
CityLos Angeles
Salary RawUSD 91800-187450 per-year-salary
Salary Min91,800
Salary Max187,450
Salary CurrencyUSD
Salary Periodyear
Source URLhttps://jobs.lever.co/hermeus/8467f855-898e-44d7-9f86-bbd49854a33b
Apply URLhttps://jobs.lever.co/hermeus/8467f855-898e-44d7-9f86-bbd49854a33b/apply
First Seen At2026-05-29 06:59:21Z
Last Seen At2026-06-06 20:13:15Z
Last Checked At2026-06-06 20:13:15Z
Last Changed At2026-05-29 06:59:21Z
Inactive At
Source Posted At2026-03-19 20:20:11Z
Source Updated At
Raw Payload Uris3://job-postings-prod-raw-590183727216/raw/provider=lever/board=hermeus/date=2026-06-06/2026-06-06T20-13-14-323Z-526ab4758f5a8fff5046fe9bf77b4a6e6d0852443cefd61dded55e3b42e1e7ad.json
Event Fields
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Parsed Structured
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Extensions
{}
Native Structured
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      "text": "Responsibilities: ",
      "content": "\n<li>Own propulsion components (e.g., valves, actuation systems, and fluid control hardware) from concept through flight-ready delivery</li>\n<li>Design for extreme environments, including high pressure, temperature, and transient operating conditions</li>\n<li>Drive engineering trade studies across performance, manufacturability, reliability, and testability</li>\n<li>Execute clean-sheet design, analysis, and integration of propulsion components</li>\n<li>Support hardware through rapid build–test–iterate cycles</li>\n<li>Lead troubleshooting and root cause analysis during development and test</li>\n<li>Work with propulsion and vehicle system owners to define requirements, interfaces, and integration strategies</li>\n<li>Perform system-level sizing, architecture, and design trades</li>\n<li>Lead development testing, qualification, and acceptance of flight hardware</li>\n<li>Support transition from prototype to repeatable, production-ready designs</li>\n<li>Define operational limits and ensure reliability and safety across all phases of use</li>\n<li>Make risk-informed engineering decisions aligned with program goals and timelines</li>\n<li>Prioritize work effectively in a fast-paced, evolving development environment</li>\n"
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      "text": "Basic Qualifications ",
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      "text": "Additional Requirements:",
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