|Item model number||TG-K-001-RS|
|Item Weight||0.035 ounces|
|Product Dimensions||9.84 x 7.87 x 5.91 inches|
|Item Dimensions LxWxH||9.84 x 7.87 x 5.91 inches|
|Is Discontinued By Manufacturer||No|
|Date First Available||September 14, 2015|
Thermal Grizzly Kryonaut Thermal Paste, 1g
|Price:||+ $0.99 shipping|
|You Save:||$1.94 (22%)|
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- Thermal paste ideal for optimizing thermal conductivity
- Thermal conductivity: 12.5 W / mk
- Thermal resistance: 0.0032 K / W
- Electrical conductivity: * 0 pS / m
- Content: 1g
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|Sold By||WEIXIE||Nkomax Co., Ltd||*Happy Shopping*||Onyx PC||Onyx PC||BUGDAN|
|Item Dimensions||9.84 x 7.87 x 5.91 inches||1.20 x 2.80 x 5.90 inches||0.59 x 3.11 x 7.36 inches||4.72 x 0.79 x 0.04 inches||0.47 x 3.94 x 7.09 inches||8.50 x 2.50 x 6.00 inches|
The Kryonaut thermal paste was specially developed for the extremely demanding applications and the highest demands of the overlocking community. Kryonaut is also recommended as a top product for critical cooling systems in the industrial sector.
Especially for overclocking
Excellent thermal conductivity
High long-term stability
Not electrically conductive
"Kryo" - the Greek word for "cold", which is also used in cryogenics - indicates that the Kryonaut thermal paste is especially suitable for use in the low temperature range - it was developed for the true "Kryonauts" among the "Extreme Overclockers"."Kryo" - the Greek word for "cold", which is also used in cryogenics - indicates that the Kryonaut thermal paste is especially suitable for use in the low temperature range - it was developed for the true "Kryonauts" among the "Extreme Overclockers".
Kryonaut uses a special carrier structure, which does not begin any drying processes even at 80 ° C. This carrier structure ensures that the nano-aluminum and zinc oxide components contained in the paste combine optimally, thus optimally compensating for unevenness in the heat transfer medium (e.g. the CPU) and a heat sink (e.g. heat sink) with excellent thermal conductivity.
Thermal conductivity 12.5 W / mk
Thermal resistance 0.0032 K / W
Electrical conductivity * 0 pS / m
Viscosity 120-170 Pasdensity 3.7g / cm3
Temperature -250 ° C / +350 ° C