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Water cooled cooling module
Technical Features
The water-cooled heat dissipation module relies on closed water circulation for heat conduction, with a heat transfer efficiency far exceeding that of air cooling. It has uniform temperature control, silent operation, fast heat dissipation speed, and extremely low thermal resistance. The closed-loop waterway is sealed without leakage, with constant temperature and precise temperature control for heat dissipation. High power equipment can operate at full load for a long time without high temperature and frequency reduction. Structural modular integrated design, small space occupation, flexible pipeline layout, small heat dissipation temperature difference, continuous and stable heat dissipation, multi-point synchronous heat dissipation, suppression of local hot spot accumulation, fast temperature control response, suitable for high-density heating components.
material properties
The water-cooled pipeline is made of corrosion-resistant and heat-conducting copper pipes and stainless steel materials, with high thermal conductivity; Water cooling liquid insulation is non-conductive, non freezing, and non scaling; Cold head high-precision copper substrate with fast thermal conductivity; The aluminum alloy shell is resistant to compression and corrosion, and the sealant is resistant to high temperatures and does not age; The waterway joint has strong antioxidant sealing performance, stable performance in high and low temperature environments, and is not easily blocked or crystallized.
application field
High temperature and high-power precision heat dissipation scenarios include high-power LED lighting heat dissipation, photovoltaic inverter heat dissipation, server rooms, industrial control equipment, new energy charging piles, energy storage power supplies, laser equipment, medical precision instruments, high-power power supply modules, e-sports heat dissipation, industrial control cabinets, outdoor high-power electrical equipment constant temperature heat dissipation, etc.
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