Thermal Grizzly KryoSheet The graphene thermal pads of the Thermal Grizzly KryoSheet series can be used as an excellent alternative for thermal compounds from the higher performance segment. Similar to Carbonaut pads, they have a conformable surface with very high thermal conductivity. Compared to Carbonaut pads, KryoSheet as a high-end product offers significantly higher thermal conductivity. This increased thermal conductivity is not only due to the choice of material, but also to the innovative manufacturing process. KryoSheet does not contain any liquid components and is therefore not subject to normal ageing as is the case with traditional thermal paste. Drying out is not possible. The KryoSheet graphene pads have a molecular structure stacked in the Z-direction. This optimised structure enables outstanding and constant thermal conductivity. This is due to a specially developed manufacturing process in which the hexagonal crystal structure of the graphite is broken up along the basal plane in order to exploit the anisotropy of the graphite's thermal conductivity. However, as a side effect of this complex manufacturing process, the electrical conductivity is also increased and the stability of the KryoSheet pads is affected, so that the pads should only be used according to instructions!
Thermal Grizzly KryoSheet The graphene thermal pads of the Thermal Grizzly KryoSheet series can be used as an excellent alternative for thermal compounds from the higher performance segment. Similar to Carbonaut pads, they have a conformable surface with very high thermal conductivity. Compared to Carbonaut pads, KryoSheet as a high-end product offers significantly higher thermal conductivity. This increased thermal conductivity is not only due to the choice of material, but also to the innovative manufacturing process. KryoSheet does not contain any liquid components and is therefore not subject to normal ageing as is the case with traditional thermal paste. Drying out is not possible. The KryoSheet graphene pads have a molecular structure stacked in the Z-direction. This optimised structure enables outstanding and constant thermal conductivity. This is due to a specially developed manufacturing process in which the hexagonal crystal structure of the graphite is broken up along the basal plane in order to exploit the anisotropy of the graphite's thermal conductivity. However, as a side effect of this complex manufacturing process, the electrical conductivity is also increased and the stability of the KryoSheet pads is affected, so that the pads should only be used according to instructions!
in 3 offers
Thermal Grizzly KryoSheet The graphene thermal pads of the Thermal Grizzly KryoSheet series can be used as an excellent alternative for thermal compounds from the higher performance segment. Similar to Carbonaut pads, they have a conformable surface with very high thermal conductivity. Compared to Carbonaut pads, KryoSheet as a high-end product offers significantly higher thermal conductivity. This increased thermal conductivity is not only due to the choice of material, but also to the innovative manufacturing process. KryoSheet does not contain any liquid components and is therefore not subject to normal ageing as is the case with traditional thermal paste. Drying out is not possible. The KryoSheet graphene pads have a molecular structure stacked in the Z-direction. This optimised structure enables outstanding and constant thermal conductivity. This is due to a specially developed manufacturing process in which the hexagonal crystal structure of the graphite is broken up along the basal plane in order to exploit the anisotropy of the graphite's thermal conductivity. However, as a side effect of this complex manufacturing process, the electrical conductivity is also increased and the stability of the KryoSheet pads is affected, so that the pads should only be used according to instructions!
Thermal Grizzly KryoSheet The graphene thermal pads of the Thermal Grizzly KryoSheet series can be used as an excellent alternative for thermal compounds from the higher performance segment. Similar to Carbonaut pads, they have a conformable surface with very high thermal conductivity. Compared to Carbonaut pads, KryoSheet as a high-end product offers significantly higher thermal conductivity. This increased thermal conductivity is not only due to the choice of material, but also to the innovative manufacturing process. KryoSheet does not contain any liquid components and is therefore not subject to normal ageing as is the case with traditional thermal paste. Drying out is not possible. The KryoSheet graphene pads have a molecular structure stacked in the Z-direction. This optimised structure enables outstanding and constant thermal conductivity. This is due to a specially developed manufacturing process in which the hexagonal crystal structure of the graphite is broken up along the basal plane in order to exploit the anisotropy of the graphite's thermal conductivity. However, as a side effect of this complex manufacturing process, the electrical conductivity is also increased and the stability of the KryoSheet pads is affected, so that the pads should only be used according to instructions!
Last updated at 13/11/2024 23:46:59
Go to store
Go to store
Affiliate Disclosure: We may receive a small commission for purchases made through this link at no extra cost to you. This helps support our site. Thank you!
originally posted on inet.se/
originally posted on scan.co.uk
VIC - Rowville | At Supplier |
VIC - Sth Melb | At Supplier |
Updated about 5 hours ago
VIC - Rowville | At Supplier |
VIC - Sth Melb | At Supplier |