Integrated liquid cooling CPU heatsink
In order to meet the upper working requirements of the operating system, CPU have further introduced functions such as parallelization, multi-core, virtualization and remote management system, constantly promoting the development of the upper information system. As we all know, the workload of CPU is very large, which is easy to heat up and lead to high temperature, and the work efficiency will certainly be reduced. Therefore, when assembling a computer, the radiator is a very important accessory to help the CPU dissipate heat.

CPU is equivalent to the heart of a complete computer, which plays a critical role in the performance of the system. However, CPU is also a hot part of computer hardware. If the thermal cooling is poor, it is easy to cause problems such as computer crash or uninterrupted restart. So how to choose CPU heat sink is very important. Only when the CPU heat is in a reasonable and stable range, can we better perform PUA operation on it. How to choose and match it with CPU?

Integrated liquid cooling heatsink:
The integrated liquid cooling heatsink is not only easy to install and has good thermal cooling performance, but more importantly, it is very safe. You don't have to worry about complex installation procedures or liquid leakage. The liquid of the integrated liquid cooling heatsink has been filled when it leaves the factory. Just screw down the screws, which greatly reduces the threshold of CPU liquid cooling .

Ideal thermal solution:
Liquid cooling is an ideal cooling solution for overclocking players for high-power chips. When used in non player CPUs, liquid cooling will not significantly improve the performance of high-end air cooling, but it can produce much less noise than any air cooling solution while obtaining low temperature. As for the cooling effect, in fact, some air-cooled radiators can have better cooling effect than those at the same price. Therefore, it is necessary to choose air cooling or liquid cooling heatsink according to the performance requirements of the actual system, which is the most suitable and ideal thermal solution.







