Browse documented the supplier, the supplier, the supplier, the supplier, the supplier, and the supplier cooling products, including precision air conditioning, in-row cooling, CDUs, manifolds, immersion systems, and data-centre cooling-loop infrastructure.

A room-level precision air-conditioning unit for stable data-centre temperature, humidity, and airflow control.

A close-coupled precision-cooling unit positioned within rack rows for targeted high-density heat removal.

A rack rear-door heat exchanger using heat-pipe transfer to capture server exhaust close to the heat source.

A compact rack-integrated air-cooling unit for localized thermal control in edge and high-density installations.

A modular fan-wall system for high-volume, low-resistance airflow across data-centre white space.

A resilient fan-wall cooling unit with two cooling-source paths and dual coils for flexible plant integration.

A split fan-wall cooling system using refrigerant-pump operation to extend low-energy natural-cooling hours.

An outdoor integrated cooling unit combining refrigeration, heat rejection, pumping, and controls in one package.

An evaporative cooling unit that uses outdoor-air conditions to reduce mechanical-cooling energy.

A phase-change cooling system designed to move data-centre heat efficiently during natural-cooling conditions.

Precision CRAC units for data-centre temperature and humidity control, including inverter DX, chilled-water, iFreecooling, and smaller DX configurations.

Constant-temperature and humidity precision air-conditioning units for data centres, telecom rooms, and outdoor equipment cabinets.

An indoor precision air-conditioning unit for controlled temperature and humidity in data-centre and equipment-room environments.

Row-based precision air-conditioning units for close-coupled cooling in modular and high-density data-centre deployments.

Liquid-cooled energy-efficient precision air-conditioning fan-wall units for data-centre temperature and humidity control.

A high-efficiency data-centre cooling system combining variable-frequency compression, refrigerant-pump free cooling, evaporative or water-cooled heat rejection, and flexible indoor terminal units.

An 8U single-phase immersion unit with documented 3kW heat-removal capacity.

An 8U two-phase immersion unit with documented 5kW maximum heat-removal capacity.

Cold plates and kits for CPUs, GPUs, memory, storage, network switches, and AI accelerator cards.

A decoupled, blind-mate cold-plate liquid-cooling cabinet integrating power, cooling, and monitoring for data-centre and intelligent-computing deployments.

A rack-mounted air-liquid CDU documented for smaller edge and high-density cooling scenarios.

A 6U rack-mounted liquid-liquid CDU with documented 150kW maximum heat-removal capacity.

A full-chain direct-to-chip liquid-cooling CDU family for rack-level and centralized high-density data-centre cooling.

Coolant distribution units for cold-plate liquid cooling, with rack-mounted and cabinet-style options documented in the supplied brochure.

A cabinet-mounted liquid-liquid CDU with documented 500kW maximum heat-removal capacity.

Rack-level, in-row, and facility CDUs for controlled heat exchange between data-centre cooling loops.

A prefabricated manifold, piping, hose, and quick-connection kit for liquid-cooled rack distribution.

A modular outdoor dry cooler for rejecting heat from chilled-water and liquid-cooling loops.

Building-automation and monitoring controls for liquid-cooling infrastructure and its connected facility systems.

Quick-disconnect fluid connectors for liquid-cooling loops, with UQD02/UQD04/UQD06/UQD08 sizes documented in the supplied brochure.

Stainless-steel tubing, prefabricated piping, and manifold assemblies for distributing coolant between CDUs, liquid-cooled cabinets, and cold-plate assemblies.
Product parameters shown here are based on the supplied source materials. Final model, compatibility, configuration, availability, commercial terms, and delivery scope are confirmed during the quotation and technical review process.