Coolant Distribution Unit

for AI Data Centers & ASIC Mining

ACTBOXES designs configurable 200–800kW coolant distribution units for AI data centers, HPC clusters and liquid-cooled ASIC mining. Each CDU is engineered around the project heat load, flow rate, pressure drop, site climate and uptime requirements.

N+1 Pump Redundancy
PLC + VFD Control
Modbus / DCIM Ready
View Technical Specifications
200-800 KW

Configurable cooling capacity

N +1

Dual-pump redundancy

±1 °C

Outlet control target

14-22 weeks

Typical cycle after technical confirmation

How the ACTBOXES

Coolant Distribution Unit Works

The CDU transfers heat between the facility loop and equipment

loop while keeping both fluids physically isolated.

Heat Rejection

The dry cooler or cooling tower rejects heat outdoors

for optimal system performance.

Primary Loop

Facility-side water or glycol moves heat to and from

the CDU.

Secondary Loop

Controlled coolant serves cold plates, manifolds

and hydro ASICs.

1、Heat Rejection

Dry cooler or cooling tower sized against site conditions.

2、Primary Loop

Water or glycol circuit carries heat to and from the CDU.

3、CDU

Plate heat exchanger, redundant pumping and precision control.

4、Secondary Loop

Stable supply temperature and demand-based coolant flow.

5、AI / ASIC

Cold plates, rack manifolds, hydro miners and modular compute.

CDU Engineering for Continuous Operation

Redundant circulation, corrosion-resistant heat transfer, intelligent control and factory validation protect high-density computing loads.

01 - REDUNDANCY

N+1 Dual-Pump Architecture 
Automatic switchover supports coolant circulation

during scheduled maintenance or a pump fault.

02 - HEAT TRANSFER

SS304 Plate Heat Exchanger 
Compact, efficient heat transfer separates the

facility loop from the protected equipment loop.

03-CONTROL

PLC + VFD Regulation 
Flow follows equipment demand with live

temperature, pressure, pump and alarm monitoring.

04 - INTEGRATION

Modbus & DCIM Ready 
Standard communication options support remote

supervision, BMS and facility integration.

05 - PROTECTION

Multi-Layer Leak Defense 
Leak detection, isolation valves and emergency

drainage reduce system-level exposure.

06 - VALIDATION

Factory Acceptance Test 
Pressure, flow and control logic can be

verified before shipment and site connection.
01 - REDUNDANCY 02 - HEAT TRANSFER 03-CONTROL 04 - INTEGRATION 05 - PROTECTION 06 - VALIDATION

200–800kW CDU Models and Cooling Capacity

Row-type units serve distributed rack and container zones. Large CDU configurations support centralized

AI/HPC and data center cooling systems.

MODEL 01

200 KW

Entry configuration for rack rows, container zones and distributed liquid cooling.

Dual-pump architecture

PLC + VFD control

DCIM-ready communication

MODEL 02

250 KW

Balanced capacity for medium-density data halls and modular mining deployments.

Plate heat exchanger

Variable-flow operation

Project-configurable connections

MODEL 03

300 KW

Distributed cooling for growing AI, HPC and hydro ASIC infrastructure.

Live pressure monitoring

Leak detection integration

Remote alarm supervision

MODEL 04

400 KW

High-capacity row cooling for modular data halls and mining container clusters.

N+1 pump redundancy

Modbus communication

Factory acceptance testing

MODEL 05

500 KW

Large-flow centralized CDU for high-density data halls, AI clusters and liquid-cooled mining farms.

Project-engineered pump package

Centralized control architecture

Primary and secondary loop isolation

MODEL 06

800 KW

Maximum current platform capacity for centralized data center and campus cooling projects.

Large-flow hydraulic circuit

Heat rejection system coordination

Complete project documentation

Factory Advantages

From concept to commissioning, we deliver fully integrated, compliant, and future-proof mining

container solutions that maximize your ROI while minimizing risk.

Strong Mobility

The overall structure is easy to expand and transport.

Energy Efficiency

Advanced cooling technologies that significantly reduce PUE.

Rainproof Facility

Louver is provided outside the container to resistrain and snow weathers.

Long Lifespan

It is made of high strength metal and can offer along lifespan.

Plug-and-Play Deployment

The overall structure is easy to expand and transport.

Good Compatibility

Double-layer Water Curtains; Cold-Hot Isolated Air Duct Design.

good filtration system

Louver is provided outside the container to resistrain and snow weathers.

Rapid Deployment

10-14 days from order to on-site delivery.

Built for demanding 

computing
environments
A flexible liquid cooling platform for mining, enterprise data centers,

colocation facilities and high-density AI/HPC infrastructure.

Bitcoin Mining Farms

Stable coolant delivery for hydro ASICs, high-density mining containers and modular farm expansion.

Data Centers

Distributed or centralized CDU systems for data halls, rack rows and facility cooling loops.

HPC & AI Infrastructure

Precision flow and temperature control for high-power GPU, cold-plate and rack manifold systems.

Enterprise Colocation

Facility-loop integration with Modbus, DCIM and building-management communication.

Renewable Energy Sites

Modular cooling infrastructure for remote, energy-variable and phased compute projects.

Industrial Facilities

Serviceable industrial construction for warehouses, factories and modular compute rooms.

Coolant Distribution Unit 

Technical Specifications

 

Each CDU is configured around actual heat load, flow rate, pressure drop, coolant, climate and site integration requirements.

ParameterCurrent PlatformProject Confirmation
Nominal Capacity200 / 250 / 300 / 400 / 500 / 800 kWPeak heat load, design margin and operating temperatures
Hydraulic ArchitectureIsolated primary and secondary liquid loopsFlow rate, pump head, pipe length, manifold and pressure drop
Pump RedundancyN+1 dual-pump configurationRequired uptime level, single-pump capacity and switchover logic
Heat ExchangerSS304 plate heat exchangerMaterial compatibility, design pressure, approach temperature and pressure loss
ControlsPLC + VFD regulationPLC brand, I/O list, alarms, control sequence and remote access
CommunicationModbus / DCIM readyModbus TCP or RTU, BMS/DCIM platform and data points
CoolantWater or water/ethylene-glycol mixturesClimate, freeze protection, viscosity, water quality and compatibility
Outlet Control Target Operating range, sensor locations, load stability and control boundary
Target System PUE1.12-1.16 reference range by climateSystem boundary, ambient climate, heat rejection equipment and load factor
Container IntegrationFactory-installed, pre-piped and pre-wired optionsContainer layout, electrical system, manifolds, transport and site work

Coolant Distribution Unit Components

1. Pump Chambers

The pump chambers regulate fluid flow through the CDU. Its proprietary three-chamber design pulls fluid through the loop while keeping the flow steady.

2. Heat Exchangers

The CDU’s two series-connected heat exchangers transfer up to 300 kW of heat from the technology cooling system to the facility water system, even in hot, humid conditions.

3. Liquid Ring Pump

Liquid ring pumps use water as a seal that never needs to be replaced. The CDU’s liquid ring pump provides the vacuum used to pull the coolant through the load.

4. Microprocessor Control

The CDU’s intelligent, network-connected core automatically manages coolant temperature, flow, water quality, and more. Cool-Flo Software integrates easily with popular DCIM and BMS systems.

5. Water Quality Control

The CDU automatically monitors and maintains water quality in the technology cooling system, dispensing coolant additives as needed to prevent corrosion and biological growth.

6. Coolant Handling Manifolds

The CDU supports up to four cooling loops with flexible top or bottom connections, compatible with both raised-floor and overhead piping for easy installation in different data centers.

CDU Components

FAQ

Clear answers shorten technical review and help us configure the correct CDU before quotation.

What CDU cooling capacities are available?

ACTBOXES CDU platforms cover configurable nominal capacities from 200kW to 800kW, including ACT-200R, ACT-250R, ACT-300R, ACT-400R, ACT-500L and ACT-800L.

Can the CDU be customized for my project?

Yes. Flow rate, pump head, connection size, voltage, coolant ratio, communication and control logic can be engineered around site conditions and equipment requirements.

Can the CDU be integrated into a 40FT container?

Yes. Factory-installed, pre-piped and pre-wired options can include manifolds, leak detection and container-level controls. Final integration depends on the container layout and transport requirements.

Which coolants can the system use?

Water and water/ethylene-glycol mixtures are common project options. The final fluid and concentration depend on climate, freeze protection, material compatibility and equipment requirements.

Can pump maintenance be performed without a full shutdown?

N+1 dual-pump configurations support automatic switchover and can maintain circulation during some scheduled pump-service tasks. The exact maintenance boundary depends on isolation valves and the final system design.

Does the CDU support remote monitoring?

Yes. PLC controls, alarm monitoring and Modbus communication can connect the CDU to DCIM, BMS or project-specific remote supervision platforms.

What is the typical delivery time?

A complete project typically requires 14-22 weeks after technical confirmation. The schedule depends on capacity, customization, FAT scope, documentation, shipping and site-service requirements.

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Multiple Global

Multiple Global Deployments

Over 500MW of mining containers successfully delivered across three continents.

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