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Space Suit Design Engineer Jobs (NOW HIRING)

$90K - $105K/yr

As an engineer on the space team, you will be expected to support team members, own development tests, and component design. You will be responsible for your product or deliverable, interfaces to and ...

Design Engineer II

Mukilteo, WA · On-site

$100K - $120K/yr

This role is part of our Space and Launch business, which has contributed to the nation's space ... The Design Engineer II supports the conceptualization, design, development, testing, and deployment ...

Machine Design Engineer

El Segundo, CA · On-site

$81K - $109K/yr

Who We Are: Space Kinetic is a dual use space technology startup building a completely new ... The Machine Design Engineer will design, build, and refine prototypes for Space Kinetic's core ...

Machine Design Engineer

El Segundo, CA

$81K - $109K/yr

Who We Are: Space Kinetic is a dual use space technology startup building a completely new ... The Machine Design Engineer will design, build, and refine prototypes for Space Kinetic's core ...

Machine Design Engineer

El Segundo, CA · On-site

$81K - $109K/yr

Who We Are: Space Kinetic is a dual use space technology startup building a completely new ... The Machine Design Engineer will design, build, and refine prototypes for Space Kinetic's core ...

E-Space is bridging Earth and space to enable hyper-scaled deployments of Internet of Things (IoT ... We are seeking a skilled and detail-oriented PV Design Engineer to be responsible for the design ...

E-Space is bridging Earth and space to enable hyper-scaled deployments of Internet of Things (IoT ... We are seeking a skilled and detail-oriented PV Design Engineer to be responsible for the design ...

Physical Design Engineer

San Jose, CA · On-site

$159K - $164K/yr

It operates in the "Compute" & "Connectivity" space. Insilico is founded by industry veterans, who ... Insilico has very flexible business models to suit a plethora of client needs. With a current ...

Physical Design Engineer

San Jose, CA · On-site

$159K - $164K/yr

It operates in the "Compute" & "Connectivity" space. Insilico is founded by industry veterans, who ... Insilico has very flexible business models to suit a plethora of client needs. With a current ...

E-Space is bridging Earth and space to enable hyper-scaled deployments of Internet of Things (IoT ... We are seeking a skilled and detail-oriented PV Design Engineer to be responsible for the design ...

At Engineered Products, our mission is to maximize space efficiency and redefine material handling ... Design Manager AREAS OF RESPONSIBILITIES The Design Engineer is responsible for developing accurate ...

Whether they are used for attitude control, orbittransfer, lunar and exo-moon landing, deep-space ... Design Engineer Come join our growing team where you will make a difference daily by continuing to ...

Showing results 41-60

Space Suit Design Engineer information

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$18

$50

$73

How much do space suit design engineer jobs pay per hour?

As of Sep 10, 2026, the average hourly pay for space suit design engineer in the United States is $50.69, according to ZipRecruiter salary data. Most workers in this role earn between $39.18 and $61.78 per hour, depending on experience, location, and employer.

What does a space suit design engineer do?

A Space Suit Design Engineer is responsible for developing and testing suits that protect astronauts in the harsh environment of space. They focus on creating suits that provide life support, mobility, and safety during extravehicular activities (spacewalks). Their work involves selecting advanced materials, ensuring thermal regulation, and integrating communication and mobility systems. They collaborate with scientists, astronauts, and other engineers to continually improve suit performance for various missions.

What are the key skills and qualifications needed to thrive as a space suit design engineer?

To thrive as a Space Suit Design Engineer, you need a solid background in mechanical or aerospace engineering, materials science, and human factors, typically supported by a relevant engineering degree. Familiarity with CAD software, finite element analysis tools, and knowledge of NASA or ESA standards are commonly required, along with experience in rapid prototyping and testing. Strong problem-solving abilities, creativity, and clear communication are vital soft skills for collaborating with multidisciplinary teams and addressing complex design challenges. These skills ensure the development of safe, functional, and innovative space suits that protect astronauts in extreme environments.

What are some common challenges space suit design engineers face when developing new suit prototypes?

Space Suit Design Engineers often encounter challenges balancing the need for mobility, durability, and life support in extreme environments. Designing suits that are flexible enough for astronaut tasks, yet robust enough to protect against temperature fluctuations and micrometeoroids, requires innovative materials and engineering solutions. Additionally, engineers must work closely with astronauts, materials scientists, and safety experts to test prototypes and incorporate feedback, making the process highly collaborative and iterative.

What is the difference between Space Suit Design Engineer vs Space Systems Engineer?

AspectSpace Suit Design EngineerSpace Systems Engineer
Required CredentialsBachelor's in Mechanical/Electrical Engineering, specialized training in suit designBachelor's in Aerospace/Systems Engineering, broader technical background
Work EnvironmentDesign labs, prototyping facilities, collaboration with suit manufacturersMission planning centers, integration labs, cross-disciplinary teams
Industry UsagePrimarily in space agencies and companies developing space suitsSpace agencies, aerospace firms, satellite and spacecraft companies
Common Search/ComparisonYesNo

The Space Suit Design Engineer focuses specifically on designing and developing space suits, requiring specialized knowledge in materials and ergonomics. In contrast, the Space Systems Engineer works on broader spacecraft systems, including propulsion, communication, and integration. While both roles require engineering credentials and work within the space industry, their focus areas and daily tasks differ significantly.

How much does a space suit design engineer make?

A space suit design engineer typically earns between $70,000 and $130,000 annually, depending on experience, education, and the employer. Senior engineers or those working for government space agencies may earn higher salaries, often supplemented with benefits and opportunities for specialized training.

What are popular job titles related to Space Suit Design Engineer jobs?

For Space Suit Design Engineer jobs, the most frequently searched job titles are:

Infographic showing various Space Suit Design Engineer job openings in the United States as of September 2026, with employment types broken down into 1% Internship, 89% Full Time, 7% Part Time, and 3% Contract. Highlights an 81% Physical, 4% Hybrid, and 15% Remote job distribution, with an average salary of $105,435 per year, or $50.7 per hour.

Mechanical Design Engineer I/II - Space

On-site

$90K - $105K/yr

Other

Posted 18 days ago


Job description

About Us

At Antares, our long-term mission is to make clean energy abundant from Earth to the Asteroid Belt. We’re fueled by the belief that advanced nuclear energy can strengthen our military, solve the climate crisis, elevate global living standards, and expand humanity's presence in outer space. To achieve our mission, we’re building mass-producible, inherently safe, deployable microreactors that can be used terrestrially, underwater, and in space.


The Antares team hails from SpaceX, the White House, the Pentagon, the Department of Energy, MIT, Rigetti Computing, General Atomics, Relativity Space, Ursa Major, and National Laboratories like Idaho, Oak Ridge, Los Alamos, and Savannah River. Antares has raised over $600M in venture capital from top-tier investors and has hundreds of million-dollars on contract with the military services, NASA, and the Department of Energy.


About the Role

As a Level I or Level II Mechanical Design Engineer in the Mission Engineering team, you will support hardware design and development associated with nuclear power systems in space and on the surface of the Moon and Mars. As an engineer on the space team, you will be expected to support team members, own development tests, and component design. You will be responsible for your product or deliverable, interfaces to and from other systems, how your hardware fits into the larger system, sourcing, building, testing, and designing improvements for a first of a kind system. You’ll support trades on system layout, interfaces, packaging, working closely with cross-disciplinary teams to refine configurations and close design loops. Your responsibilities will span CAD design, system analysis, design reviews, precise definition of thermal and mechanical interfaces, requirements ownership and decomposition, and manufacturability / scalability of your design.


Roles and Responsibilities:

  • Own hardware or deliverable related hardware as part of the larger space nuclear system.

  • Drive requirements definition/decomposition, build/test cycles, defend decisions across all phases of design, take concept through CDR and onward.

  • Own CAD models, manage configurations, produce drawings, DFMEA, etc.

  • Support development testing, test setup, test definition, test documentation.

  • Coordinate closely with other teams/people (nuclear, thermal, structures, manufacturing, quality) to ensure a system architecture that satisfies mission/product requirements.

  • Develop a clean sheet design through hardware procurement and dev/qual testing.

  • Support design reviews and integration/test planning for hardware, define manufacturing plan and generate work instructions as needed.

  • Own or support the design of tooling/ ground support equipment and facility upgrades

  • Develop and document emerging processes.


Basic Qualifications:

  • Bachelor’s degree in mechanical or aerospace engineering, or a related physics-based field.

  • 1-3+ years of experience in space system/product mechanical design, system configuration and layout.

  • Expertise with CAD (e.g., NX, CATIA) and past experience with PLM and other manufacturing planning and management systems.


Preferred Skills & Experience:

  • Master’s or PhD in mechanical or aerospace engineering, or a related physics-based field.

  • Experience in the design, analysis, and integration of space hardware.

  • Leadership experience on a project or research team.

  • Strong project management skills, cross discipline communication, and interpersonal and collaborative skills.

  • Exceptional communication skills to work effectively across teams and convey technical information to non-specialists.

  • Understanding of fundamentals in fluid systems, solid mechanics, and heat transfer.

  • Demonstrated track record of initiative and going the extra mile.

  • Knowledge of materials science, material selections, and material compatibility.

  • Ability to conduct system sizing, first-order engineering analyses

  • Mechanical design and GD&T/ drawings experience; take a design into production.


Additional Requirements:

  • Ability to work long hours and weekends as necessary to support critical milestones

  • Ability and willingness to work on-site full time


Salary Range:

Mechanical Design Engineer I - $90,000 - $105,000


Mechanical Design Engineer II - $115,000 - $150,000


Location

  • We are located in Torrance, CA in a 322,000 square foot, brand new facility featuring large open spaces for team collaboration, R&D, and production, as well as easy access to the 405, 105, and 110 freeways. Our facility is in the heart of Los Angeles' vibrant emerging tech ecosystem alongside many other high growth startups and enterprises.


Culture

  • Think in Systems - Energy and Defense are complex ecosystems with numerous stakeholders with competing priorities, conflicting policies, perverse incentives, and emergent and path-dependent properties. First principles thinking alone is insufficient. Think probabilistically and then take action. \"If you want to be certain, then you are apt to be obsolete.\" Over-optimizing the components often degrades the system

  • Obsess over the End User - The customer and end user are often not the same. We will never build globally competitive commercial products if we lose sight of our end users and their entire interaction with the product life cycle

  • Be Unconstrained by Convention - Our only limits are the laws of physics. Many, even experts, will say what we are working on is impossible. They said the same about SpaceX reusing rockets. Generationally impactful companies, by definition, must accomplish the seemingly impossible. If it was easy, it would have already been done. Never shy away from a solution because it has never been tried before, and never choose to do something because that's \"how it's always been done\"

  • Go Where the Work I s - Never miss a chance to meet a customer, user, or stakeholder face to face, even if that means hopping on a plane. If you can’t make it, find a teammate who can channel your intentions and go in your place. Deep work can be done from anywhere, but we believe teams are built in person, and aim to maximize our time together

  • Operate in the Grey - Embrace nuance in pursuit of truth. Question every fundamental assumption


Equal Opportunity

Antares is an Equal Opportunity Employer. Employment decisions 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.


ITAR Requirements

To conform to U.S. Government export regulations, applicant must be a (i) U.S. citizen or national, (ii) U.S. lawful, permanent resident (aka green card holder), (iii) Refugee under 8 U.S.C. § 1157, or (iv) Asylee under 8 U.S.C. § 1158, or be eligible to obtain the required authorizations from the U.S. Department of State. Learn more about the ITAR here.

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