



Thermal Grizzly - CPU Contact Frame Intel 13th & 14th Generation
Thermal Grizzly - CPU Contact Frame Intel 13th & 14th Generation - for Optimized CPU Contact Pressure to Improve The Cooling Performance - Easy Install
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OPTIMIZED COOLING PERFORMANCE - Designed to improve the contact pressure, enhancing the cooling performance of CPU coolers and resulting in lower CPU temperatures
-
EASY INSTALLATION - Quick and hassle-free installation process, making it simple to upgrade your CPU cooling performance in just a few steps
-
PREMIUM MATERIALS - Made of anodized aluminum, ensuring durability and high product quality
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DESIGNED BY DER8AUER - Developed in collaboration with renowned overclocker Roman "der8auer" Hartung and manufactured in Berlin - 100% Made in Germany
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IMPROVED CONTACT - Special inner contour for optimal pressure distribution, preventing the concave curvature of the Integrated Heatspreader (IHS) and providing a larger contact area for more efficient heat dissipation
$6.01
Original: $20.04
-70%Thermal Grizzly - CPU Contact Frame Intel 13th & 14th Generation—
$20.04
$6.01Product Information
Product Information
Shipping & Returns
Shipping & Returns
Description
Thermal Grizzly - CPU Contact Frame Intel 13th & 14th Generation - for Optimized CPU Contact Pressure to Improve The Cooling Performance - Easy Install
-
OPTIMIZED COOLING PERFORMANCE - Designed to improve the contact pressure, enhancing the cooling performance of CPU coolers and resulting in lower CPU temperatures
-
EASY INSTALLATION - Quick and hassle-free installation process, making it simple to upgrade your CPU cooling performance in just a few steps
-
PREMIUM MATERIALS - Made of anodized aluminum, ensuring durability and high product quality
-
DESIGNED BY DER8AUER - Developed in collaboration with renowned overclocker Roman "der8auer" Hartung and manufactured in Berlin - 100% Made in Germany
-
IMPROVED CONTACT - Special inner contour for optimal pressure distribution, preventing the concave curvature of the Integrated Heatspreader (IHS) and providing a larger contact area for more efficient heat dissipation























