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Thermal Management

Soeteck AICoolit™ Room CDU Coolant Distribution Unit

The Soeteck AICoolit™ Room CDU Coolant Distribution Unit is a room-level liquid cooling core device for medium-to-large data centers, HPC and AI centers, supporting over 100 liquid-cooled cabinets and high-computing scenarios with reliable N+1 redundancy and leakage monitoring, 800-2000kW heat exchange capacity, and intelligent O&M via Modbus/BACnet protocols.

Cooling Capacity
800/1000/1350/2000 kW
Inlet Flow Rate
69.04-173.73 m³/h
Outlet Flow Rate
72.84-190.78 m³/h
Rated Power
15.5/18.5/22.5/33.0 kW

Overview

Coolant Distribution Units are core components of liquid cooling solutions for data centers. The Soeteck AICoolit™ Room CDU Coolant Distribution Unit is a room-level liquid cooling core device tailored for medium-to-large liquid-cooled data centers, HPC clusters, and AI intelligent computing centers. It is specifically designed for large-scale deployments with over 100 liquid-cooled cabinets, seamlessly adapting to high-computing-demand scenarios such as HPC scientific computing (including meteorological simulation and gene sequencing) and AI large model training.

Boasting reliable performance, the Coolant Distribution Unit features an N+1 redundancy design, multi-stage filtration, and independent leakage monitoring to ensure uninterrupted cooling even during maintenance or unexpected faults. Its heat exchange capacity ranges from 800kW to 2000kW, covering a wide performance spectrum to meet the cooling needs of liquid cooling systems of different scales.

For operational efficiency, this CDU supports online water quality monitoring and integrates remote communication protocols including Modbus and BACnet, enabling data center operators to achieve flexible, efficient operation and maintenance as well as intelligent centralized management.

Key Features

High Cooling Capacity

  • Offers a robust cooling capacity range of 200kW-2000kW, which is essential for efficiently managing the heat generated by large-scale, high-power computing equipment in data centers, HPC clusters, and intelligent computing centers. This ensures that servers and other hardware can operate within optimal temperature ranges, preventing overheating and potential performance degradation.

Superior System Reliability

  • Employs an N + 1 redundancy design, meaning there is an extra unit available to take over in case of a component failure, ensuring uninterrupted cooling supply.
  • Equipped with multiple filters to maintain the cleanliness of the coolant, preventing debris from causing blockages or damage to the system.
  • Features an independent leak detection system that can promptly identify any coolant leaks, allowing for timely intervention to prevent system failures and minimize potential damage to equipment.

Convenient Online Maintenance

  • Enables real-time online water quality detection, allowing administrators to monitor the condition of the coolant continuously. This helps in maintaining the coolant at an optimal state for heat transfer efficiency.
  • Supports online replacement of coolant, which means the system can be serviced and the coolant refreshed without shutting down the entire unit, reducing downtime and ensuring the system operates at peak performance at all times.

Advanced Remote Management

  • Integrates industry-standard communication protocols such as Modbus and BACnet, enabling seamless integration with existing building management systems.
  • Facilitates remote data monitoring, allowing operators to keep track of critical parameters like temperature, pressure, and flow rate from a centralized location.
  • Provides fault early warning capabilities, sending alerts when potential issues are detected, enabling proactive maintenance and reducing the risk of unexpected system outages.

Applications

  • Medium-to-large-sized liquid-cooled data centers
  • HPC (High-Performance Computing) clusters
  • Intelligent computing centers for AI model training