About The Role:
Responsibilities:
- Support the development of propulsion components (e.g., valves, actuation systems, and fluid control hardware) from concept through flight-ready delivery
- Contribute to designs for extreme environments, including high pressure, temperature, and transient operating conditions
- Support engineering trade studies across performance, manufacturability, reliability, and testability
- Assist with clean-sheet design, analysis, and integration of propulsion components
- Support hardware through rapid build–test–iterate cycles
- Participate in troubleshooting and root cause analysis during development and test
- Work with propulsion and vehicle system owners to define requirements, interfaces, and integration strategies
- Assist with system-level sizing, architecture, and design trades
- Support development testing, qualification, and acceptance of flight hardware
- Contribute to the transition from prototype to repeatable, production-ready designs
- Assist in defining operational limits and evaluating reliability and safety across all phases of use
- Apply engineering judgment and first principles to support risk-informed design decisions
- Prioritize work effectively in a fast-paced, evolving development environmen
Requirements:
- Practical experience designing, building, and testing hardware or vehicles through internships, coursework, research, or hands-on projects
- Must be currently enrolled in a STEM program at an accredited college or university (undergraduate student in your third or fourth year of study, or enrolled in a Master's or Ph.D. program)
- Strong interest in propulsion systems, mechanical systems, and hardware development
- Strong understanding of engineering first principles, including fluids, thermodynamics, mechanics, and materials
- Demonstrated ability to work within cross-functional teams
- Enthusiasm for aviation and Hermeus's mission
- Excellent written and verbal communication skills
- GPA of 3.0 or above
Preferred Skills and Qualifications:
- Experience with propulsion systems, high-pressure fluid systems, or aerospace mechanisms through internships, coursework, research, or projects
- Experience designing or building components such as valves, actuators, or fluid control hardware
- Familiarity with high-temperature materials, sealing strategies, and common mechanical failure modes
- Familiarity with GD&T, tolerance stack-up, and precision assemblies
- Hands-on experience supporting hardware testing, assembly, integration, or troubleshooting
- Experience with CAD tools (NX preferred) and analysis tools (ANSYS or similar)
- Experience participating in rapid hardware development environments, including engineering competition teams, research programs, or internships
- 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
The hourly rate listed for this internship is intended as a general guideline. Final compensation will be determined based on degree level.
Benefits:
- Time Off: Interns are eligible for 5 days of sick leave and unpaid time off.
- Office Perks: Weekly paid office lunches and fully stocked breakrooms.