Estimated based on role seniority, company stage (Series B), and industry benchmarks. Actual compensation may vary.
Based on Web3 & AI industry compensation data. Seniority is inferred from role title keywords. Company stage affects ranges: early-stage (−15%), late-stage/public (+10%).
About 1X
Since its founding in 2015, 1X has been at the forefront of developing advanced humanoid robots designed for household use. Our mission is to create an abundant supply of labor through safe, intelligent humanoids.
Your role is to challenge the current state of the art by building real systems—quickly, rigorously, and in constant contact with reality.
You ideate new mechanisms, architectures, and system concepts; turn them into working hardware; and subject them to relentless scrutiny. Prototypes are not presentations—they exist to answer concrete questions. You build to test ideas, invalidate assumptions, expose hidden constraints, and push performance as far as it will go. You don’t stop when something works—you stop when it approaches human-level behavior, or when you understand precisely why it doesn’t.
You move fluidly between mechanics, electronics, and software. You iterate fast, but with intent: each build is measured, benchmarked, and compared against biological or system-level reference targets. When something holds up, you push it harder. When it breaks, you learn from it and move on.
This role is fundamentally about execution. You will both originate ideas and bring others’ concepts to life—including ideas that are not yours. You don’t get stuck in theoretical debates or optimization-before-evidence; you prefer to build, test, and let the system speak.
Crucially, you don’t stop at clever prototypes. You do what it takes to translate successful concepts into something that can survive integration with real products, real constraints, and real manufacturing processes.
Research and critically evaluate state-of-the-art technologies across hardware, actuation, sensing, and system design, with a focus on what can realistically move humanoid performance forward.
Rapidly prototype promising concepts—your own and others’—using electronics, mechanics, and software to get to first hardware as quickly as possible.
Design experiments and test setups to rigorously evaluate performance, characterize limits, and generate trustworthy data.
Relentlessly benchmark and falsify prototypes against explicit performance targets.
Work closely with engineering, materials, and manufacturing teams to turn successful prototypes into credible paths toward product integration.
Building general-purpose humanoid robots designed to work alongside people in everyday environments.
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