








Thermal Grizzly Intel High Performance Heatspreader V1 - High Performance Heatspreader for Intel CPUs - Diamond-Milled & Nickel-Plated Precision Surface - Made in Germany
- 207% LARGER SURFACE AREA - The INTEL High Performance Heatspreader V1 features a diamond-milled precision surface made of nickel-plated copper, providing a significantly larger area for optimal heat dissipation
- ENHANCED COOLING EFFICIENCY - Designed for Intel processors, this upgrade heatspreader enables maximum heat transfer with both air and liquid coolers, ensuring efficient cooling performance
- IMPROVED TEMPERATURES - Experience temperature reductions of up to 10 degrees Celsius compared to the standard heatspreader, allowing for cooler and more stable operation of your CPU
- BROAD COMPATIBILITY - Compatible with Intel processors of the 12th, 13th and 14th generation.
- PREMIUM QUALITY MATERIALS - Crafted with precision and attention to detail, the High Performance Heatspreader is made from high-quality nickel-plated copper, providing excellent durability and thermal conductivity
Product Information
Product Information
Shipping & Returns
Shipping & Returns
Description
- 207% LARGER SURFACE AREA - The INTEL High Performance Heatspreader V1 features a diamond-milled precision surface made of nickel-plated copper, providing a significantly larger area for optimal heat dissipation
- ENHANCED COOLING EFFICIENCY - Designed for Intel processors, this upgrade heatspreader enables maximum heat transfer with both air and liquid coolers, ensuring efficient cooling performance
- IMPROVED TEMPERATURES - Experience temperature reductions of up to 10 degrees Celsius compared to the standard heatspreader, allowing for cooler and more stable operation of your CPU
- BROAD COMPATIBILITY - Compatible with Intel processors of the 12th, 13th and 14th generation.
- PREMIUM QUALITY MATERIALS - Crafted with precision and attention to detail, the High Performance Heatspreader is made from high-quality nickel-plated copper, providing excellent durability and thermal conductivity























