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CAHU-G series dual-cold-source air curtain

The CAHU-G dual-cold-source air wall product uses a front-and-rear dual-coil design, utilizing water coils to achieve pre-cooling and natural cold source utilization. This maximizes the use of natural cold sources, reduces unit energy consumption, and achieves energy-saving goals. In liquid-cooled data centers, the use of dual-cold-source air walls allows for more flexible choices in air-to-liquid ratios, adapting to the growing trend of increasing data center heat density and providing a more energy-efficient, flexible, and reliable thermal management solution. The series unit water system uses a series/parallel design, with a full range of cooling capacities covering 140 kW-200 kW.

Application Scenarios

Financial Data Center: Dual cooling sources ensure zero interruption of trading systems;

Edge Computing Node: Adaptable to harsh outdoor environments;

Liquid-cooled Data Center: Air and liquid cooling integration, flexible and adjustable;

Supercomputing Center: Solves the heat dissipation challenges of high-density cabinets with 30kW+/cabinet;

5G Core Network Data Center: Meets the high reliability and low latency heat dissipation requirements;

Features and Value

Intelligent Energy Efficiency Optimization Control

▪ Flexible Cooling Modes: Natural cooling mode, mechanical cooling mode, and hybrid mode, seamlessly switching according to ambient temperature;

▪ Supports Modbus protocol, linked with the data center's environmental monitoring system for real-time monitoring of temperature, humidity, and energy consumption;

Environmental Reliability Assurance

▪ High system reliability, rapid cooling during sudden high loads or local hotspots in the data center, ensuring timely protection;

▪ Emergency Mode: When the mains power is interrupted, it can switch to UPS power supply, maintaining the minimum air volume to prevent a sudden rise in data center temperature;

Airflow Disturbance Suppression

▪ Optimized coil design, using chilled water coils for pre-cooling, increasing the coil area to reduce air resistance;