
ONE FACILITY. ONE INTELLIGENCE.
Everything.
In concert.
A.I.M.I.™ coordinates network, cooling, and power across the infrastructure you already operate.
Explore your facility’s opportunityYour infrastructure. Working together.

AUTONOMOUS INTELLIGENCE. PHYSICAL IMPACT.
Autonomous AI orchestration across
power, cooling, and network.
THE FACILITY IS THE SYSTEM
A.I.M.I.© is the autonomous control layer for mission-critical data centers. It connects fragmented infrastructure and coordinates the decisions that translate facility signals into coordinated action.One AI control layer. Power, cooling, and network working together.

ONE FACILITY. ONE INTELLIGENCE.
A.I.M.I.™ coordinates network, cooling, and power across the infrastructure you already operate.
Explore your facility’s opportunityYour infrastructure. Working together.
THE OPERATOR WORKSPACE
See energy performance, available headroom, and every autonomous action in A.I.M.I.
60% → 80% · A.I.M.I.™ reduces compressor reliance.
40% → 15% usage · control outcome logged.
Every action stays within the defined control envelope.
Illustrative interface with example data. Not live facility telemetry or a projection of customer results.
DEPLOYED IN THE REAL WORLD
The most deployed autonomous AI for data centers.* From colocation and neoclouds to powered shells, across the United States and Latin America.Autonomous control across the U.S. and Latin America.*
FLUIX controls power + cooling without server ownership. Compute orchestration requires control of the servers.
*FLUIX AI is the most deployed autonomous AI control layer in live facilities—executing real control of physical infrastructure, beyond insights and simulation. Markers show approximate city locations.
EVIDENCE FROM THE FIELD
TENHATS / AUTONOMOUS COOLING
On production equipment, with zero new sensors. A documented deployment of autonomous cooling at TenHats.Live at TenHats. Zero new sensors.
Read the deployment reportPUE improvement
0.4 MWh/day modeled HVAC savings
Up to ~130 kW projected full-site headroom at 2 MW
Site-specific results. Modeled and projected values are not measured savings or guarantees.
FLUIX / TECHNICAL WHITEPAPER
BUILT BY THE PEOPLE BEHIND IT
A team bringing autonomous intelligence into the places where performance, uptime, and engineering discipline matter.Built by engineers for mission-critical infrastructure.
Meet your next missionA.I.M.I.© 2.0 / INTELLIGENCE WITH CONTEXT
A richer view of workloads, GPU telemetry, and network signals connects workload demand to the physics of cooling and power.
01 / OBSERVE
Workload schedulesGPU telemetryNetwork signalsThermal & power dataPhysics-based real-time autonomous control
02 / COORDINATE
Cooling setpointsPower flexibilityNetwork coordinationA.I.M.I.© 2.0 model direction, based on FLUIX’s published research. Deployment scope and supported integrations are confirmed with each operator.
On-premises execution supports air-gapped operation without a cloud-dependent control loop.On-premises control. No cloud-dependent loop.
Hard guardrails, rate limits, and clean fallback to native controls preserve operator-defined boundaries.Operator limits. Validated actions. Native-control fallback.
Designed for cybersecurity-conscious operations. Request platform security documentation and deployment controls.Built for security-conscious operations. Review our deployment controls.
WHY FLUIX
Closed-loop action across physical systems, beyond dashboards and recommendations.
Connect existing infrastructure. The TenHats deployment required zero new sensors.
Unlike approaches limited to workload control, facility orchestration can support operators who don’t own their tenants’ servers.
BACKED BY
BRING YOUR INFRASTRUCTURE INTO CONCERT
Explore what A.I.M.I.© can unlock in your facility.