Specifications: Applications: CPU / GPU Thermal Thermal Conductivity: 73 Wm / K Specific gravity: 6.24g/cm³ Viscosity: 00021 pas Operating temperature: 10 °C /140°C Content: 5g
Part Number: Canned thermal paste has a unit price about 50% lower than syringe packaging, and is more recommended for large consumer groups such as physical stores, server fields, power battery fields, aerospace fields, etc.
Specifications: TG-30 adopts an improved nanocarbon tube composite formula with a thermal conductivity of 17.5W/mK (measured value), which can quickly reduce the temperature difference between CPU/GPU cores and meet the cooling needs of mainstream gaming consoles, high-performance graphics cards, and workstations. Its non-conductive properties completely avoid the risk of short circuit,
Specifications: TG-50 adopts a composite formula of nano carbon tubes and liquid metal, with a thermal conductivity exceeding 18.2W/mK (measured value), which can quickly reduce the temperature difference between CPU/GPU cores by more than 25 ℃,. Its non-conductive properties eliminate the risk of short circuits, with good viscosity optimization. Single point/nine
Specifications: GEL canned thermal paste can be purchased at an extremely low price with a net content of 50g and a thermal conductivity coefficient of 10.5W/mK, which can quickly reduce the temperature difference between CPU/GPU cores and meet the cooling needs of mainstream gaming laptops, desktop computers, and mid-range graphics cards.
Specifications: TG-30 adopts an improved nanocarbon tube composite formula with a thermal conductivity of 17.5W/mK (measured value), which can quickly reduce the temperature difference between CPU/GPU cores and meet the cooling needs of mainstream gaming consoles, high-performance graphics cards, and workstations. Its non-conductive properties completely avoid the risk of short circuit,
Specifications: Kryonaut uses a special structure, which halts the drying out process at temperatures of up to 80° Celsius. This structure is also responsible for the nano-aluminum- and zinc-oxide-parts included in the grease to compound optimally, to compensate for unevenness of the component (i.e. the CPU) or the heat sink, thus guaranteeing remarkable heat transfer.