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Prefabricated Data Center
Created with Pixso. 40ft Cold Plate Container Data Center 720kW In-Row CDU Liquid Cooling 12 Racks ODM

40ft Cold Plate Container Data Center 720kW In-Row CDU Liquid Cooling 12 Racks ODM

Brand Name: Soeteck
Model Number: 40ft Cold Plate In-Row
MOQ: 1 Set
Price: Negotiable
Delivery Time: 30-45 working days
Payment Terms: D/A,L/C,D/P,T/T
Detail Information
Place of Origin:
China
Certification:
CE, ISO, UL
Model:
40ft Cold Plate In-Row
Cooling Architecture:
In-Row CDU (Liquid-to-Liquid / Air Assist)
Rack Count:
12 Racks (Space For CDUs)
Max Power Density:
60 KW Per Rack
Total IT Capacity:
720 KW
Container Type:
40ft High Cube
Container Dimensions (L*W*H):
12192 X 2438 X 2896 Mm
Rack Standard:
42U 19 Inch Cabinet
Rack Dimensions (W*D*H):
600 X 1100 X 2000 Mm
Deployment Time:
5 - 10 Weeks
Monitoring System:
Yes
Door Security System:
Yes
EPO:
Yes
Video Monitoring System:
Yes
Applications:
HPC & AI Training, High-Density Colocation, Edge Computing
Customization:
ODM / OEM
Packaging Details:
Export packing, 1 x 40ft HQ container
Supply Ability:
10 Sets per Month
Highlight:

40ft cold plate container data center

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720kW in-row CDU liquid cooling

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ODM prefabricated data center

Product Description

For AI training clusters, HPC farms and high-density colocation, rack power has outgrown what air can remove. The 40ft Cold Plate Container Data Center answers that inside a standard ISO shipping container: a factory-integrated 40ft High Cube enclosure that houses 12 x 42U racks at up to 60 kW per rack, for 720 kW of total IT capacity. Because the whole facility ships as a single container, it travels by ordinary truck, rail or vessel and is commissioned on a simple concrete foundation — no civil works, no raised floor and no purpose-built hall.

Cooling is where this platform differs from an air-cooled container. Instead of conditioning the whole room, cold plates mounted directly on the CPUs and GPUs carry heat into a closed liquid loop, and an integrated In-Row CDU (liquid-to-liquid, with air assist for the remaining components) rejects it to the facility water circuit. Cooling capacity therefore scales with the racks rather than with the floor area, so a 40ft footprint supports densities that would otherwise require a purpose-built hall — while the contained cold/hot aisle keeps the residual air-side load small, holding PUE low even at a full 720 kW IT load.


Product Family

Model Cooling Architecture Rack / Tank Count Max Power Density Total Capacity Container Type Dimensions (L*W*H)
20ft Immersion Single-Phase Immersion
(Integrated FDU)
4 Tanks 100 kW / Tank 400 kW 20ft High Cube 6058 x 2438 x 2896 mm
40ft Immersion Single-Phase Immersion
(Integrated FDU)
12 Tanks 100 kW / Tank 1.2 MW 40ft High Cube 12192 x 2438 x 2896 mm
40ft Cold Plate (In-Row) In-Row CDU
(Liquid-to-Liquid / Air Assist)
12 Racks
(Space for CDUs)
60 kW / Rack 720 kW 40ft High Cube 12192 x 2438 x 2896 mm
40ft Cold Plate (Rack) Rack-Mounted CDU
(Distributed Manifold)
14 Racks
(Maximized Space)
50 kW / Rack 700 kW 40ft High Cube 12192 x 2438 x 2896 mm
20ft Cold Plate (Rack) Rack-Mounted CDU
(Distributed Manifold)
5 Racks 50 kW / Rack 250 kW 20ft High Cube 6058 x 2438 x 2896 mm

Product Features

40ft Cold Plate Container Data Center 720kW In-Row CDU Liquid Cooling 12 Racks ODM

12-Rack Capacity in a Standard 40ft ISO Container

The 40ft Cold Plate Data Center is built as a 40ft High Cube ISO container that houses 12 x 42U racks at up to 60 kW each, for 720 kW of total IT capacity. Because the whole facility ships as a single container, it travels by ordinary truck, rail or vessel and needs only a simple concrete foundation on site — no civil works, no raised floor and no purpose-built hall.


Direct-to-Chip Cooling with In-Row CDUs

Instead of conditioning the whole room, cold plates mounted on the CPUs and GPUs carry heat into a closed liquid loop, and an integrated In-Row CDU (liquid-to-liquid, with air assist) rejects it to the facility water circuit. Cooling capacity therefore scales with the racks rather than the floor area, and the contained cold/hot aisle keeps the residual air-side load small — so 720 kW of IT load is supported without room-level precision air conditioning.

40ft Cold Plate Container Data Center 720kW In-Row CDU Liquid Cooling 12 Racks ODM

FEATURED PRODUCTS OF PREFABRICATED DATA CENTER


Focus on the core cooling demands of high-density data center deployments, where our full range of premium products leverages advanced technological advantages to reliably safeguard continuous, efficient, and stable operation.

3-15 kW per Cabinet

Micro Data Center

All-in-one integrated cabinet design, plug-and-play deployment (1-3 days), remote intelligent monitoring. Ideal for edge endpoints like retail stores, ATMs and small enterprise IT rooms.

8-30 kW per Cabinet

Row Modular Data Center

Column-level prefabricated design, flexible expansion by rows, fits existing server rooms without major reconstruction. PUE 1.2-1.4, perfect for medium-density enterprise IT deployments.

15-40 kW per Cabinet

Aisle Containment Data Center

Airtight cold/hot aisle enclosure, 90%+ cold air utilization, PUE reduced to 1.2-1.3. Cost-effective upgrade for traditional open data centers to support high-density servers.

10-500 kW (20ft/40ft)

Container Data Center

Prefabricated all-in-one container (20ft/40ft), dustproof/anti-vibration, deployable outdoors. Liquid cooling optional for AI high-density computing (PUE ≤1.1), ideal for edge & temporary computing needs.

APPLICATIONS


Empowering next-generation infrastructure with superior thermal management for high-wattage computing demands.

AI Training and HPC Clusters
AI Training & HPC Clusters
High-Density Data Centers
High-Density Data Centers
Modular & Container Solutions
Modular & Container Solutions
Blockchain & Crypto Mining
Blockchain & Crypto Mining

FAQ


1. What defines a Prefabricated Data Center?
A Prefabricated Data Center is a facility designed and assembled in a factory environment before being shipped to the site. Unlike traditional builds, it uses modular units for power, cooling, and IT space that "click" together, ensuring higher quality control and significantly faster project timelines.
2. How does prefabrication improve scalability?
It enables Modular Scalability. Instead of over-building a large facility from day one, operators can deploy specific "blocks" of capacity (e.g., 500kW increments) as demand grows. This just-in-time deployment optimizes capital expenditure (CAPEX) and reduces initial waste.
3. What is the typical time saving compared to traditional builds?
Prefabricated solutions can reduce deployment time by 30% to 50%. Because site preparation (foundation work) and module manufacturing happen simultaneously in two different locations, the total schedule is compressed compared to the sequential nature of traditional construction.
4. Is factory integration more reliable than on-site assembly?
Yes. Factory-built modules undergo rigorous pre-commissioning and FAT (Factory Acceptance Testing) before shipping. This minimizes human error during on-site installation and ensures that all subsystems (power, HVAC, and management) are fully compatible and optimized for performance.
5. Are prefabricated centers as durable as permanent buildings?
Absolutely. Modern prefabricated modules are designed to meet permanent building codes and can have a lifespan of 20-25 years or more. They are engineered to support high-density AI workloads and can be easily retrofitted with new liquid cooling or power technologies as they emerge.
6. How many racks and how much IT load can this 40ft cold plate data center carry?
The unit is built in a 40ft High Cube container (12192 x 2438 x 2896 mm) and houses 12 x 42U racks, each supporting up to 60 kW, for a total IT capacity of 720 kW. Rack space is reserved for the In-Row CDUs, so the whole liquid loop stays inside the container footprint and no external plant room is required.
7. What cooling architecture does this container data center use?
Heat is captured at the source: cold plates mounted on the CPUs and GPUs transfer it into a closed liquid loop, and an integrated In-Row CDU (liquid-to-liquid, with air assist) rejects that heat to the facility water circuit. Because the high-density racks are cooled directly, no room-level precision air conditioning is needed for them, and the contained cold/hot aisle keeps the remaining air-side load small.

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