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: CORSAIR TM30 thermal paste helps you push your PC to its limit, with a low-viscosity premium zinc oxide thermal material that’s easy to apply. TM30’s ultra-low thermal impedance ensures high-efficiency heat transfer between your hardware and cooler, lowering temperatures and allowing for higher clock speeds.
Net Weight: 3g
Thermal Conductivity: 3.8 W/mK
Thermal Impedance: 0.01°C -in2/W
Viscosity: 2300K cPs
Specific Gravity: 2.5g/cm3
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,
Long Term Operating Temperature: -150 °C / +200 °C
Specifications: Even though the amount of metallic elements in Aeronauts formula is lower in comparison to our other products, it still provides reliable and perfomant thermal conductivity.
In our lab tests, Aeronaut showed a high amount of wear resistance under high temperatures, and acts also surface-protecting. The removal of Aeronaut thermal grease causes far less micro scratches on the components surface compared to other products.
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.