
Exclaim Robotics GmbH
Exclaim Robotics builds autonomous robots that perform physical maintenance—such as optics, cabling, and drive replacement—on live 800V DC racks in AI data centers. The robots enable fully lights-out operations, improving uptime, reducing cooling costs, and minimizing physical access security risks. Their autonomy-first platform is designed to eventually service other hazardous or remote infrastructure.
- Artificial Intelligence
- Hardware
- Industrial Automation
- Robotics
Funding
Founders
Product
Problem
Modern AI data centers are moving to 800V DC in-rack power distribution, creating a genuine safety hazard for human technicians performing physical maintenance mere centimeters from live lines. Routine rack maintenance also requires the white space to be staffed, preventing true lights-out operation and limiting how warm the facility can run or how tightly physical access is controlled.
Solution
Exclaim Robotics provides autonomous robots that can safely perform physical component replacement—including optics, cabling, and drives—on live 800V DC racks, eliminating the need for human presence in the white space. The robots enable fully unattended data center halls, allowing facilities to run at higher temperatures to reduce cooling costs photonics, increase hardware-driven maintenance scheduling, and shrink the physical security surface. The company's autonomy-first platform is designed to eventually extend beyond data centers to service any hazardous, remote, or hard-to-reach infrastructure.
Target Audience
Primary customers are operators of next-generation AI data centers running 800V DC in-rack power distribution, particularly those seeking to reduce staffing, cooling, and physical security costs while increasing uptime.
Features
- Autonomous execution of optics, cabling, and drive replacement tasks on live 800V DC racks
- Designed for proximity to high-voltage lines, removing operator safety risk from routine maintenance workflows
- Lights-out operation that eliminates the need for floor staffing and enables unattended facility running
- Higher operating temperature tolerance, since robots do not require human-comfort cooling
- Upscheduled, condition-driven maintenance instead of human-availability-constrained schedules
- Reduced physical floor access improves security by shrinking the building's physical access attack surface
- Autonomy-first architecture intended for future application in hazardous, remote, or hard-to-reach infrastructure beyond data centers