Contain the heat and extract it directly back to the CRAC with our patented Heat Containment System (HCS) and use airflow managers, for switches and network devices, as well as blanking panels to ensure an effective rack hygiene methodology.
Heat Containment System (HCS) The Eaton Heat Containment System® (HCS) is a simple, scalable and low cost solution to more effectively manage the ever-increasing heat loads in today’s data center.
Airflow Solutions for Switches and Network Devices Eaton offers several solutions for devices with (non) front-to-rear airflow architecture.
Blanking Panels Blanking panels provide a quick, easy and cost-effective solution to optimize air circulation within an enclosure while maintaining high aesthetics.
HCS Active Airflow Manager Eaton's HCS Active Airflow Manager measures pressure differentials and temperature to regulate fan operation in active systems.
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Our aisle containment solutions include a variety of Aisle Ceilings and overhead vertical wall systems, Aisle Ducts and End of Row Doors that allow you to alleviate the oversupply of cool air in the data center and increase individual rack capacity as well as CRAC cooling efficiency.
Aisle Containment Ceiling/Walls The Aisle Containment Ceilings and walls, used in conjunction with End of Row Doors, creates an efficient and predictable aisle containment solution.
End of Row Doors End of Row Doors, available in single-swing, café-style and sliding options, create more efficient contained aisles by blocking obvious escape routes for air and eliminating air re-circulation and air mixing.
Independent Containment The culmination of Eaton's containment strategies is its patent-pending Independent Containment System (ICS), a free-standing, scalable, sustainable and vendor-neutral containment solution for high-density computing environments.
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Designed for scalability, reliability, and seamless integration into new or existing data centers; CyberRow rack cooling systems are suitable for use in open and contained aisle configurations. CyberRow is ideal for hot spot cooling in small to enterprise size data centers.
Designed for scalability, reliability, and seamless integration into new or existing data centers; CyberRow rack cooling systems are suitable for use in open and contained aisle configurations. CyberRow is ideal for hot spot cooling in small to enterprise size data centers.
Designed for installation on raised floor or non-raised floor applications Suitable for new and existing data centers Front Discharge for Aisle Capture Side discharge for Open Aisle Configurations Can be installed in the middle or at the end of a row - 12" and 24" cabinet widths Wide range of cooling capacities for small, medium, and large applications Top or bottom pipe and power connections 100% front and rear service access Highest cooling capacities in the industry – up to 73 kW per unit Adapts to all major rack manufacturers racks and data center containment systems Casters included to easily move and relocate when needed Microprocessor control system with a backlit LCD display for visual indication of unit operating conditions Private local area network (pLAN) provides monitoring and control of up to eight precision air conditioners without a Building Management System (BMS) Seamless integration with all BMS platforms Fully adjustable fan speed control for energy savings Built in redundancy Capacity assist functionality saves energy and operating expenses Scalability — add CyberRow cooling units as your data center grows Single and three phase voltage available
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Going beyond the rack and row you can implement room-based airflow management solutions to further enhance the efficiency and predictability of your data center. Our CRAC Collars and raised floor grommets provide an additional measure against bypass airflow.
CRAC Collars The CRAC Collar for downflow systems, used in conjunction with data center containment strategies is integral to Eaton’s total containment solution.
Raised Floor Grommet Eaton's raised floor grommet is comprised of non-permeable material that allows maximum pressure to be maintained in the sub-floor plenum by allowing cables to enter enclosures while minimizing bypass airflow.
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