로봇 소프트웨어의 신뢰성을 제품처럼 관리하며 웹, 클라우드, 모바일, 임베디드 전반의 통합 테스트 패키지를 구축해요. 개발자 테스트부터 실제 로봇의 움직임까지 엔드투엔드 테스트를 설계하고, 장애 발생 시 문제를 분류하여 적절한 팀으로 전달하는 역할을 수행해요. Python과 시스템 언어에 능숙해야 하며, Linux 및 DevOps 환경에서의 인프라 구축 경험이 필수예요. 통계적 사고를 바탕으로 로봇의 상태를 수치화하고, 하드웨어와 소프트웨어 경계의 문제를 파악할 수 있어야 해요.
We're building humanoid robots that work in the 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, and manufacturing at the same time, at scale, in a form factor 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.
If you've spent your career on problems that matter and want to see them reach the world, this is that moment. We're scaling, hiring with intention, and we need people who want to build something that genuinely changes how humans spend their time, safely creating abundance for all.
Our team owns the reliability and testing plan for every software system that runs on the robot or talks to it. That covers the front end, back end, cloud, mobile, on-robot services, and the embedded stack. Our work runs from hardware-in-the-loop testing and e2e regression through incident management, on-call, observability, release gating, and the SLOs that tell us what reliable actually means. From the first test a developer writes to the moment the robot moves in someone's home, we make robot software something the company can trust at fleet scale.
Own software reliability as a product. Start from the whole system and drive reliability practices as far down the stack as they need to go, from web and cloud through mobile, on-robot services, and embedded. You will build and own parts of an integrated testing package that checks the system e2e, starting with a developer test and ending with real robot movement. This is critical path work. As we scale from hundreds to tens of thousands of robots, whether customers can trust their robots, and whether our engineers can move fast, comes down to this layer.
Deliver an integrated testing package that covers every layer of the stack, from web and cloud to mobile, on-robot services, and embedded, and push those reliability standards steadily deeper over time.
Own e2e testing that starts with a developer test and ends with robot movement, and put real numbers on that movement, those actions, and the robot's health.
Triage reliability issues, find where the edges of a problem are, and route them to the right software or hardware team.
Set the pace for software reliability best practices across the org, for internal teams and external customers.
You work across the full stack, from infrastructure and systems out to the embedded edge, and you switch languages and technologies quickly as the work demands. You do not have to be an expert at every layer, but you carry sound reliability thinking into any of them.
You understand how a mechatronics stack comes together, so you can find the edges of a problem and tell whether it sits in software or hardware. You treat sensing, telemetry, and logging as first class parts of reliability.
You treat reliability as a product with real users, and you own your work e2e and ship without waiting to be told.
You communicate clearly with internal and external stakeholders, turn data into findings people can act on, present them to stakeholder groups, and raise the bar for the people around you.
Strong software engineering background with real depth in at least one layer of the stack (cloud and backend, systems, or embedded) and the range to reason across the rest.
Experience building test and reliability infrastructure, or distributed systems at scale, such as APIs, real time data pipelines, monitoring, and incident management.
Strong DevOps and Linux skills, including CI/CD and infrastructure as code, and fluency in Python plus at least one systems language.
Strong statistical and probabilistic skills and an allergy to the sunk cost fallacy.
Experience building from zero to one and then from one to production.
SRE practice such as SLOs and error budgets, plus fleet observability and monitoring.
HIL and on-robot testing, and using simulation as a test target.
Experience putting numbers to how a physical system behaves, such as motion, sensor, and health telemetry.
Range across a few adjacent areas such as IoT, HPC, cloud, or embedded, plus comfort at the boundary between hardware and software and its real time and robotics constraints.
People who do well here are builders. They move fast, own their work, and treat time like the one thing you cannot get back. They say what they mean, finish what they start, and hold themselves to a high standard before anyone asks.
$200,000 to $300,000 plus equity.
Comprehensive medical, dental, and vision coverage
Generous paid time off, company holidays, and parental leave
401(k) plan with company match (100% on the first 3% of contributions, 50% on the next 2%)
Flexible Spending Accounts (FSA) and Health Savings Accounts (HSA) options
Commuter benefits (transit and parking)
Short-term and long-term disability, and life insurance
Employee Assistance Program (EAP) for mental health, financial, and personal support
Onsite snacks and catered lunches
1X is an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, gender, gender identity or expression, sexual orientation, national origin, ancestry, citizenship, age, marital status, medical condition, genetic information, disability, military or veteran status, justice system impact, or any other characteristic protected under applicable federal, state, or local law.