Kaori Heat Treatment Co., Ltd.
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Kaori - Model KP0030 RPU + RDHx -Liquid/Air Cooling System
The KP0030 RPU + RDHx is a sophisticated cooling solution designed for modern data centers, featuring a liquid-to-air configuration. This system boasts an array of functionalities including the ability to operate without the need for facility water, allowing for seamless integration into existing data infrastructures. Core to its design are the rack manifolds, strategically positioned to facilitate efficient cooling liquid distribution to cold plates within servers. These manifolds support up to two cooling loops per 1U server, with customization options available for varying cabinet sizes ranging from 8 to 80 channels. The Reservoir and Pumping Unit (RPU), occupying the space equivalent to four 1U servers, integrates effortlessly with EIA-standard cabinets of 4U and above, offering comprehensive control over flow rate and temperature. The inclusion of finned tube heat exchangers enhances thermal transfer by increasing the heat exchange surface area, optimizing the system's performance while ensuring energy efficiency and cost reductions. The system also supports remote monitoring via SNMP, providing precise control over its operations.Most popular related searches
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- No facility water required, could be easily installed in current data center.
- Remote control through SNMP
Rack Manifolds
- These rack manifolds are suspended in the rear space of the cabinet, primarily providing cooling liquid circulation to each cold plate on the server.
- Allowing a maximum of 2 cooling loops per 1U server.
- 8-80 Channel is used with cabinets and can be customized for production.
- The RPU is installed at the bottom of the cabinet, corresponding to the height of four 1U servers . It can be used in cabinets with EIA specifications of 4U or above.
- A variety of control functions, easy to monitor the rotation speed and adjust the flow rate, temperature.
- Reducing the cooling costs of the computer room, improving competitiveness and sustainable operations.
- Use fin tubes instead of light tubes as the heat transfer surface to expand the heat exchange area and promote heat exchange efficiency.
- Enhance the thermal conductivity by increasing the outer surface or inner surface
