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Liquid Cooling Applications

AI Era: Reducing Energy Consumption Relies on Liquid Cooling Technology

We are in a rapidly developing digital age. Data centers, as the core hubs of information processing, are facing increasingly prominent energy consumption issues.

Green Energy Era: Energy Storage Requires Liquid Cooling Technology

Energy storage technology, a crucial support for the development of renewable energy, also faces dual challenges of energy efficiency and safety.

Liquid Cooling Technology Emerges

Liquid cooling technology brings revolutionary power to data centers and the energy storage sector, holding profound significance for achieving green and low-carbon development.

Liquid cooling technology significantly improves the energy efficiency ratio of data centers through efficient heat dissipation. By utilizing the high thermal conductivity of liquids, it rapidly removes heat generated by servers, thereby reducing the overall energy consumption and carbon emissions of data centers.
In the energy storage sector, liquid cooling technology equally plays a vital role. With the widespread application of electrochemical energy storage technology, battery thermal management has become a key factor affecting the performance and safety of energy storage systems.

Liquid cooling technology enables precise temperature control for energy storage batteries, extends battery life, improves the overall efficiency of energy storage systems, consequently reducing the application cost of renewable energy and promoting the development of green energy .
Data center liquid cooling technology and energy storage liquid cooling technology, with their high efficiency and energy-saving characteristics, become essential driving forces for achieving green and low-carbon development, safeguarding the digital era and the green energy era.

TPI Liquid Cooling Solutions

TPI provides immersion liquid cooling and DLC water-based direct cooling series products, which feature high specific heat capacity, thermal conduction efficiency, low electrical conductivity, being non-toxic, harmless, non-corrosive, and good material compatibility. They are suitable for data centers, supercomputing, industrial and other computing fields, scientific research institutions, as well as distributed computing facilities, energy storage systems, charging piles, electric vehicles, and other application areas.