Mechanical Engineer
1x
| Company | 1x |
| Category | Engineering |
| Location | San Carlos |
| Remote | On-site (inferred) |
| Employment | Not stated |
| Level | Not stated |
| Salary | USD 150k–176k |
| Posted | 26 Jun 2026 |
| Last verified | 30 Jul 2026 |
| Source | Employer career page (ashby) |
Description
ABOUT 1X
We’re building humanoid robots that work in home - doing the chores, handling the tasks, and giving people their time back. Simple, but it’s not.
To do this right, we have to solve robotics, AI, manufacturing - at the same time, at scale, in a form factor that has to be safe enough to live with your family. If you’re inspired by this, you’ll thrive here. We’ve been at this since 2014 and we’re at the point where the hard problems are behind us and the hard work is in front of us.
NEO is our flagship - a home robot designed to move, learn, and operate in the real world alongside real people. We’re not demoing it - we’re shipping it. We’re excited to meet you, if this excites you.
If you’ve spent your career working on problems that matter and want to see them actually reach the world - this is that moment. We’re scaling, we’re hiring with intention, and we need people who want to build something that will genuinely change how humans spend their time - safely creating abundance for all.
ABOUT THE TEAM
The Hardware Engineering team designs and develops the mechanical systems that enable NEO to move, manipulate, and operate safely in the real world. From precision mechanisms and structural components to integrated electromechanical assemblies, we transform ambitious concepts into reliable, manufacturable products.
Our engineers work closely with robotics, electrical, controls, software, manufacturing, and operations teams to rapidly prototype, validate, and scale hardware that performs under demanding real-world conditions.
YOUR CHARTER
Design and deliver the mechanical systems that bring humanoid robots from concept to production.
You will own mechanical components and assemblies throughout the product lifecycle—from early design and prototyping through testing, validation, and manufacturing. Working across disciplines, you'll develop robust, manufacturable hardware that balances performance, durability, cost, and scalability while supporting rapid product iteration.
Your work will directly shape the reliability, functionality, and manufacturability of the next generation of 1X robots.
KEY OUTCOMES
- Design and release mechanical components and electromechanical assemblies that meet performance, reliability, and manufacturability requirements
- Deliver prototype and production-ready hardware through rapid design, testing, and iterative development cycles
- Improve product performance by applying engineering analysis, validation testing, and data-driven design decisions
- Drive Design for Manufacturability (DFM), Design for Assembly (DFA), and cost optimization throughout product development
- Collaborate with cross-functional engineering and manufacturing teams to resolve technical challenges and support production readiness
KEY COMPETENCIES
- Strong mechanical engineering fundamentals with the ability to design practical, high-performance hardware
- Hands-on engineering mindset with experience building, testing, and refining physical prototypes
- Strong analytical and problem-solving skills with the ability to make sound engineering trade-offs
- Excellent collaboration skills across multidisciplinary engineering teams
- High attention to detail with a commitment to delivering reliable, production-ready designs
MINIMUM REQUIREMENTS
- Bachelor's degree in Mechanical Engineering, Mechatronics, Robotics, or a related engineering discipline
- 1-2+ Experience designing mechanical systems, mechanisms, or electromechanical assemblies in a product development environment
- Proficiency with 3D CAD software such as SolidWorks, Creo, NX, CATIA, or similar
- Strong understanding of mechanical design principles, materials, manufacturing processes, GD&T, and tolerance analysis
- Hands-on experience prototyping, assembling, testing, troubleshooting, and improving mechanical hardware
- Experience applying engineering analysis methods including FEA, fi
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