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    Maxtor Thermal CPU Thermal Paste 12W/mk 300g - High-Performance Thermal Compound for PC/GPU/PS4 Cooling Systems, Computer Heatsinks, MCU & 5G Devices (Non-Conductive)

    • 150 g
    • 300 g
    • Thermal Conductivity: 12W/m-k
    • -designed for Overclocking,excellent thermal conductivity
    • -no curing,no electrical conductivity
    • -long-term durability
    • -applicable with aluminum (warning is for Conductonaut only!)
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    Maxtor-logo
    8301c-white
    Maxtor MTP-8301c Thermal Paste
    Thermal conductivity 12W/mk

    Efficient conduction rapid cooling

    MTp-8301C has excellent thermal conductivity,

    the thermal conductivity is as high as 12/m.k,

    which can significantly reduce the temperature of the equipment to

    ensure the stable operation of the equipment and prolong the service life

    product details

    Introducing the high-performance 12W/mk Thermal Paste by Maxtor Thermal, designed to meet the cooling needs of your CPU, GPU, VGA, PS4, and other computing devices. This 150g pack of thermal grease ensures efficient heat dissipation, maintaining optimal temperature levels for your system.<br /><br /> Ideal for computer hardware enthusiasts, this CPU Thermal Paste offers a thermal conductivity of 12W/mk, guaranteeing superior cooling performance. Maximize the lifespan of your components with this reliable thermal paste from Maxtor Thermal.<br /><br /> Whether you're a professional or a DIY enthusiast, this product is a must-have for ensuring your system runs smoothly. Order yours today and experience the difference in cooling efficiency!

    Maxtor MTP-8301C are grease-like silicone materials, heavily filled with heat conductive metal oxides. This combination promotes high thermal conductivity, low bleed and high-temperature stability. These compounds resist changes in consistency at temperatures up to 250°C (482°F), maintaining a positive heat sink seal to improve heat transfer from the electronic device to the heat sink or chassis, thereby, increasing the overall efficiency of the device.

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