Specifications: Thermal Conductivity (W/mk): 8.5Viscosity (poise): 870Density (g/cm3): 2.5Net Weight: 8gThe ARCTIC MX-4 is a premium-grade thermal paste with exceptional performance and ease of application. It is an electrically non-conductive paste that is applied between CPU / GPU and designated coolers to transfer the dissipated heat from the components to the heat sink. Since the ARCTIC MX-4 is a metal-free compound, it eliminates the risks of causing short circuit and in turn adding more protection to your computer.The new formula in the ARCTIC MX-4 features optimal thermal conductivity and low thermal resistance. These characteristics effectively dissipate the emitted heat from the core components.The consistency of the ARCTIC MX-4 is designed for simple application. Its texture is just thin enou...
Features: These thermal pads are perfectly suited to equalize height differences and uneven spots on coolers and cooled elements. The very flexible structure and low hardness allow great adaptivity to the cooling surface even at low contact pressures. The thermal pad equalizes the effect of irregularities from microscopic scale to visible scratches etc.
Features: Alphacool's new thermal pads with 3W / mk The inevitable height differences and uneven spots on coolers and cooled elements, as well as the smallest grooves may be balanced due to the very elastic adaptability and the low hardness of the pads.
Features: These thermal pads are perfectly suited to equalize height differences and uneven spots on coolers and cooled elements. The very flexible structure and low hardness allow great adaptivity to the cooling surface even at low contact pressures. The thermal pad equalizes the effect of irregularities from microscopic scale to visible scratches etc.
Features: All new: Phobya's improved thermal pads with 7W/mK are able to match even high-end thermal compounds! These "XT" thermal pads are perfectly suited to equalize height differences and uneven spots on coolers and cooled elements. The very flexible structure and low hardness allow great adaptivity to the cooling surface even