Layer 2 · the hardware

AI-native thermal management.

Multi-mode cooling — air, cold-plate liquid, and immersion — plus factory-integrated cooling-source modules, tuned to drive PUE down and keep dense GPU racks stable.

<1.2
Achievable PUE with liquid cooling
100–1200 kW
Integrated cooling-source capacity range
−60%
Space saving vs traditional cooling plant
−40%
Overall noise rating reduction
Multi-mode cooling

No single method fits every rack.

A multi-cooling solution combines liquid cooling, precision air conditioning, and evaporative cooling. As target PUE falls from around 1.4 toward 1.1, advanced cooling becomes the deciding factor.

Precision air

Precision air conditioning and evaporative cooling for lower-density halls.

Cold-plate liquid

Direct liquid cooling — the highest share of modern AI deployments and the path to a sub-1.2 PUE.

Immersion

Single- and two-phase immersion for the lowest achievable PUE.

Integrated cooling-source module

A factory-modularized cooling plant.

Cooling tower, chilled and condenser water pumps, soft-water system, constant-pressure supply, pipework, and controls — assembled, transported, and connected on site. Water chillers, cold-storage tanks, cooling towers, and AC terminals are deployed and operated as part of the facility.

100–1200 kW capacity

Cooling capacity in 1200 / 1000 / 800 / 600 / 400 / 200 / 100 kW modules.

High-efficiency tower

Closed counter-flow cooling tower, 35/45 °C supply and return, with 10 °C large-temperature-difference operation.

Lean & quiet

Saves around 60% of space and runs about 40% quieter, with intelligent variable-speed regulation to reduce system PUE.

Network & infrastructure

Explore the infrastructure layer.

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Dense racks live or die on cooling.

We design the thermal envelope first — tell us your rack densities and PUE target.