We build robots to maintain AI data centers.
Replacing failed components is one thing software alone can't do.
Autonomous optics, cabling, and drive replacement on live 800V racks
We focus on tasks that require dexterity and precision: cable bundles nobody arranged with a robot in mind, optics that bend if you force them, drives that have to seat perfectly square.
Lights-out operation
Routine rack maintenance is the main reason the white space needs to be staffed at all. Move it to a robot and the hall runs unattended.
800V DC, centimeters away
The next generation of AI data centers will run at 800V DC in the rack, creating a genuine safety risk for any operator doing physical maintenance mere centimeters away from live lines.
Beyond safety
Runs hotter
Halls are cooled to stay comfortable to work in. A robot doesn't care, so the whole facility can run warmer and spend less on cooling.
Higher uptime
Maintenance happens when the hardware needs it, not when the schedule allows.
Stronger security
Physical access is a security surface. Maintenance that doesn’t require floor access shrinks it.
Where the energy is
Data centers next to solar farms and other energy sources, and even underwater.
Autonomy-first
We train expert skills so the robot can do each task precisely, reliably, and repeatably. Beyond the individual skills, it needs to understand its environment well enough to reason about how to approach a job on its own.
When its confidence in a skill is low, the robot asks for teleoperation rather than attempting the task and risking a critical incident. As the skills mature, it asks less often.
We won't stop at data centers: our vision is robots servicing any hazardous, remote, or hard-to-reach infrastructure.
We're just starting out. Come join a team with deep robotics experience from NVIDIA, Microsoft, Google, and ETH Zürich, who want to build robots that do useful work in the real world!
Join us!