Thermal Paste

$16.00 Before VAT

  • Super carbon nano-grade super thermal conductive silicone grease, thermal conductivity 6.5 W/m-k; Strong insulation performance, withstand voltage above 10,000 volts;
  • Low thermal resistance, keep the paste state for a long time; Wide operating temperature range, stable performance under -30℃-280℃ environment; High heat dissipation performance, cost-effective
  • HY883 super carbon nano-grade super thermal conductive silicone grease, which uses super carbon nanotube technology and high-quality thermal conductive paste combined with organic silicon, its strength is 16 times that of stainless steel, and its thermal conductivity is 5 times that of copper.
  • The products have passed SGS environmental protection certification and comply with EU RoHS testing standards

Out of stock

SKU: 40712010 Category:

Description

Specially designed for overclocking

Specially developed to meet the demanding needs of the overclocking community. It exhibits excellent heat transfer performance and can fully exploit the capabilities of a high-performance cooling system. In the nano-particulate structure, micronized aluminum and zinc oxide contained in the paste interpolate slight unevenness of the heat medium such as CPU and the heat sink, and realize excellent thermal conductivity. The special compound that drying does not proceed even at high temperature of 80 ° C is performed, and it does not cure for a long time and maintains stable characteristics. Also, there is no concern about shorts due to non-conductivity.

  • Application spatula included
  • Easy to use for applying grease

Nano particle structure

Fine-grained aluminum and zinc oxide contained in the paste interpolate the slight unevenness of the heat medium such as CPU and the heat sink, achieving excellent thermal conductivity.

Stability

A special compound that does not dry at a high temperature of 80 ° C is used to maintain stable properties without curing for a long time.

Non-conductive

There is no concern about shorts due to non-conductivity.

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