![]() It is a non-sticky and non-adhesive thermal pad and is reusable. This is a completely dry thermal pad and has an operating temperature range of -200 C to +400C, which is remarkable. However, you can cut it according to your desired size and shape, if the processor is smaller or the die is naked, which is generally found in laptops and game consoles. The thermal pad is available in two sizes, which are 30mmx30mm and 40mm x 40mm. So, you have to be very careful applying it to the processor or CPU because if it comes in contact with an electrical circuit of components then it can short circuit them, and can cause serious damage. The thermal pad is electrically conductive because graphite is a good conductor of both heat and electricity. It is a graphite-based thermal pad having a thermal conductivity of 35 W/m-K which is way more than Arctic MX-4, which is a carbon particle-based thermal paste having a thermal conductivity of 8.5 W/(mK) only. If you are looking for a thermal pad for CPU and GPU then IC Graphite Thermal Pad is currently one of the best in the business. Here are the best thermals pads for CPU, GPU, Memory (RAM / VRAM), M.2 SSD, Gaming Consoles (PS2, PS3, PS4, Xbox, etc.), GPU Waterblock, Motherboard chipset, 3D printers, PCBs, Raspberry Pi 3 and for Heatsinks. Must Read: How to Find VRM Temperature of Motherboard & GPU Best Thermal Pads Pro Tip: If possible, get slightly thicker thermal pads than actually needed for better fitting and eliminating any kind of air gaps. Thermal pads are available in various thicknesses (0.5mm, 1mm, 1.5mm, 2mm, 3mm) and sizes, and here I am going to list down the best thermal pads of different varieties for your cooling needs. They are also great for DIY cooling for routers, repeaters, and other heat-generating components. They are also used in consoles, game stations, and some laptops where the CPU or GPU is relatively less powerful and generates lesser heat compared to faster processors used in computers. ![]() Thermal pads are generally used for components that generate lesser heat compared to a CPU, which include memory chips, VRM, motherboard chipset/northbridge/southbridge or Platform Hub Controller (PCH), or other ICs. Thermal pads are generally non-adhesive but you can find some self-adhesive thermal pads too. The most commonly available thermal pads are silicone-based thermal pads that have some filler material in them for maximizing heat conductivity. However, with the advancement of technology, there are some highly conductive thermal pads available now that are even better or as good as a carbon-based thermal paste and offer high thermal conductivity. They generally have lower heat conductivity and because of their thickness, they do offer less performance compared to the thermal paste. On the other hand, Thermal Pad is a solid material (generally soft and foam-like) of a certain thickness that is used to fill uneven and bigger air gaps between the source and the heatsink. Must Read: Best Thermal Paste for CPU, GPU, and Overclocking You can read more about thermal paste by going to the link given below. Thermal paste is also known as thermal grease, thermal interface material (TIM), thermal compound, heatsink paste, or heatsink compound. Non-metal-based thermal pastes are electrically non-conductive and they are safe to apply without any risk. Liquid metal-based thermal pastes have the highest thermal conductivity but they are electrically conductive too, which is a major downside to them and they have to be applied carefully on the surface. You can find silicon-based thermal paste, silver component-based thermal paste, liquid metal-based thermal paste, carbon-based, and oxides-based thermal paste. Thermal paste generally comes in different varieties with different compositions. ![]() Thermal paste is a semi-solid paste-like substance that is generally used to fill the tiny air gaps that are left behind when the heatsink sits on the processor or any other chip. ![]() Thermal pads and thermal pastes are way different from each other, both in applications and properties, and here is a good comparison between the two. It is generally used in places where there is s significant gap between the heatsink and the chip or there is no other way to establish the contact between the two without having to glue them together. A thermal pad is a heat conductive pad or material of a certain thickness that is used to establish heat contact between the heatsink and the chipset or source.
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