WW Series, Liquid to Liquid

WW5001

The WW5001 uses facility water as a hot side heat dissipation mechanism, which increases the cooling capacity while maintaining form factor. The WW Series system is designed to operate using water as coolant.


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OL4503

Oil cooled systems OL4503 is designed to circulate transformer oil and are used in applications where the temperature at the heat source exceeds the operational temperature limit of water-based coolants, or when special insulating properties are required within the coolant loop. The OL Series is a recirculating liquid to air heat exchanger that offers dependable, compact performance by removing large amounts of heat from a liquid circuit. The coolant pump to assure maximum flow rate. The coolant is recirculated using a high-pressure pump to assure maximum flow rate.


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OW4002

The OW4002 uses facility water as a hot side heat dissipation mechanism, which increases the cooling capacity while maintaining form factor. The OW Series system is designed to operate using oil as coolant.


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WW3001

The WW3001 uses facility water as a hot side heat dissipation mechanism, which increases the cooling capacity while maintaining form factor. The WW Series system is designed to operate using water as coolant.


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WW3001 User Manual

The WW3001 liquid cooling system uses facility water as a hot side heat dissipation mechanism, which increases the cooling capacity while maintaining a compact form factor. 

This user manual provides necessary information for proper installation, operation, communication and maintenance of the unit.




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OW4002 User Manual

The OW4002 uses facility water as a hot side heat dissipation mechanism, which increases the cooling capacity while maintaining form factor. The OW Series system is designed to operate using oil as coolant. This user manual provides necessary information about installation, operation and maintenance of the OW4002.




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Liquid Cooling Systems Catalog

In today’s complex operating environment, liquid cooling systems are required to dissipate a large amount of heat in a densely packed electronic environment. Maximum operational life is required to keep system maintenance and repair down time to a minimum. Temperature stabilization has especially become critical, as next generation systems require more precise temperature control. Laird Thermal Systems provides advanced liquid cooling solutions for many of the high-performance applications found in the medical, industrial and semiconductor markets.




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