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AI Ready Data Center
Created with Pixso. 40ft Single Phase Immersion Cooling Container Data Center 1.2MW 12 Tanks ODM

40ft Single Phase Immersion Cooling Container Data Center 1.2MW 12 Tanks ODM

Brand Name: Soeteck
Model Number: 40ft Immersion
MOQ: 1 Set
Price: Negotiable
Delivery Time: 30-45 working days
Payment Terms: D/A
Detail Information
Place of Origin:
China
Certification:
CE, ISO, UL
Cooling Architecture:
Single-Phase Immersion (Integrated FDU)
Rack / Tank Count:
12 Tanks
Max Power Density:
100 KW / Tank
Total Capacity:
1.2 MW
Container Type:
40ft High Cube
Dimensions (L*W*H):
12192 X 2438 X 2896 Mm
Cooling Type:
Single-Phase Immersion Cooling (Integrated FDU)
Deployment Time:
5-10 Weeks
Applications:
AI Training, Edge Computing, Remote Sites, Disaster Recovery
Monitoring System:
Yes
Door Security System:
Yes
EPO:
Yes
Video Monitoring System:
Yes
Packaging Details:
Export packing
Supply Ability:
10 Sets per Month
Highlight:

40ft immersion cooling data center

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single phase data center 1.2MW

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ODM immersion cooling container

Product Description

AI training clusters have outgrown the rack. A single container is now expected to carry megawatt-class load, and air cooling cannot move that much heat out of a sealed steel shell without fans, a raised floor and a plant room — three things a mining site, a desert pad or a remote industrial yard rarely has room to build.

The 1.2 MW Single-Phase Immersion Container Data Center answers that with a 40ft High Cube shell built around 12 immersion tanks. Each tank is rated for up to 100 kW, so one container delivers 1.2 MW of total capacity inside a single 12192 x 2438 x 2896 mm unit that leaves the factory fully integrated.

Inside, servers and GPU nodes are completely submerged in a non-conductive dielectric fluid. The fluid lifts heat directly off the components, and the integrated fluid distribution unit rejects it outside the shell. With no server fans, no raised floor and no airflow path to balance, the container stays silent, dust-proof and sealed against humidity — which is exactly what makes single-phase immersion cooling deployable at remote edges and harsh industrial sites where a conventional computer room cannot be built at all.


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 Single Phase Immersion Cooling Container Data Center 1.2MW 12 Tanks ODM

Single-Phase Immersion Replaces Compressor Cooling

Instead of pushing air across a cold plate, this 40ft container submerges the IT hardware in a non-conductive dielectric fluid, so heat leaves the components directly into the liquid and is rejected through the integrated fluid distribution unit. No server fans, no in-row air handlers and no compressor-driven cooling remain in the loop — the overhead a conventional air-cooled container spends on moving heat is simply removed from the design.


12 Tanks, 100 kW Each, 1.2 MW Total

Each of the 12 immersion tanks is rated for up to 100 kW, which brings a single 40ft High Cube shell to 1.2 MW of total capacity. The sealed dielectric bath also removes fan-induced vibration and keeps junction temperatures steady for high-TDP AI processors, so GPU hardware runs at sustained boost clocks and stays clear of the dust and humidity that shorten its service life in rugged containerized environments.

40ft Single Phase Immersion Cooling Container Data Center 1.2MW 12 Tanks ODM

Full Series OF AI Ready Data Center SOLUTIONS


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.

5-30 kW per Cabinet

Cold Aisle Data Center

Airtight cold aisle enclosure, 90%+ cold air utilization rate, PUE ≤ 1.2, fast deployment and flexible expansion for medium-density IT loads.

10-80 kW Total Power

20ft Container DC

Prefabricated all-in-one design, anti-vibration & dust-proof, plug-and-play, ideal for edge computing and temporary computing demand scenarios.

30-100 kW per Cabinet

40ft Cold Plate Container DC

Hybrid air-liquid cooling, direct heat dissipation from GPU/CPU, AI-ready design, high power density with low energy consumption.

50-200 kW per Cabinet

40ft Immersion Container DC

Immersion cooling with dielectric fluid, 100x higher heat dissipation efficiency than air cooling, PUE ≤ 1.1, perfect for ultra-high density AI clusters.

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 data center as "AI-Ready"?
An AI-Ready data center is engineered for extreme power density and thermal management. It features reinforced floor loading for heavy GPU clusters, high-voltage power distribution (such as 415V or 480V) to the rack, and a flexible cooling architecture capable of supporting 40kW to 100kW+ per cabinet.
2. How does the infrastructure support high-performance networking (RDMA)?
Our AI-Ready modules are designed with specialized overhead cable management systems to handle the high-density fiber counts required for InfiniBand and RoCE networks. We ensure optimized cable path lengths to minimize latency and maintain the strict bend radii necessary for 400G and 800G optical interconnects.
3. Can your AI-Ready racks support liquid cooling for NVIDIA Blackwell or H100 systems?
Yes. Our racks are pre-configured for liquid-to-chip cooling. They feature integrated manifolds and space for Coolant Distribution Units (CDUs), making them fully compatible with the high thermal design power (TDP) requirements of the latest NVIDIA Blackwell and Hopper architectures.
4. How do you handle the massive power surges associated with AI training loads?
AI workloads create highly variable power demands. Our solutions utilize intelligent PDUs and UPS systems with high-discharge batteries or flywheels that can handle rapid "step-loads," ensuring electrical stability even when thousands of GPUs ramp up to full power simultaneously.
5. Are these modules scalable for rapid "Day 2" expansions?
Absolutely. We use a modular "building block" design. You can start with a few high-density AI pods and add more as your compute needs grow. The cooling and power hookups are standardized for rapid deployment, reducing the "Ready-for-Service" time by up to 30% compared to traditional builds.
6. What is the maximum rack weight capacity for fully loaded AI servers?
Our AI-specific cabinets are built with heavy-gauge reinforced steel, supporting a static load rating of up to 2,200kg (approx. 4,850 lbs). This safely accommodates full-stack AI configurations, including internal bus bars, liquid manifolds, and multi-node GPU systems.
7. How does AI-readiness impact the sustainability (PUE) of the facility?
AI-Ready centers actually improve efficiency by moving cooling closer to the heat source. By utilizing Rear Door Heat Exchangers (RDHx) or Direct Liquid Cooling (DLC), we can remove heat more efficiently than traditional air-only methods, targeting a PUE of 1.12 or lower even at 100kW per rack densities.
8. How much IT load can one 40ft immersion container carry?
The container holds 12 immersion tanks, and every tank is rated for up to 100 kW, which gives a total capacity of 1.2 MW inside one 40ft High Cube shell. Because the tanks are independent, you can populate them in stages — fill the tanks you need for today's cluster and bring the rest online later without changing the container or its cooling loop.
9. Does immersion cooling still need a chiller, a raised floor or a cold aisle?
No raised floor and no cold aisle to contain. Heat leaves the IT hardware straight into the dielectric fluid and is rejected through the integrated fluid distribution unit, so there is no airflow to balance and no compressor-driven cooling overhead to carry. That keeps the interior sealed against dust and humidity, which matters far more than a raised floor does when the container is parked at a remote site.

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