The compression deformation of a thermally conductive silicone sheet has a dual effect on its thermal conductivity.
The compression deformation of a thermally conductive silicone sheet has a dual effect on its thermal conductivity.
Regular maintenance and cleaning are necessary measures to ensure the performance of thermal conductive silicone cloth.
With the increasing miniaturization and high power of electronic devices, heat has become a hidden killer that affects performance and lifespan.
In GPU cooling systems, while thermally conductive silicone sheet doesn't directly contribute to heat dissipation, it serves as a crucial bridge between the heat source and the heat sink.
The chemical corrosion resistance of thermal conductive silicone cloth is one of its core properties, and its performance is derived from the chemical structure and process design of the material itself.
For different extreme temperature environments, thermally conductive silicone sheet achieves performance optimization through formula adjustment.