Methods of using thermal conductive materials


Release time:

2021-05-28

Thermal Conductive MaterialThis is a new type of industrial material. These thermal conductive materials are designed to meet the thermal requirements of recent equipment, featuring excellent performance and reliability. They are suitable for various environments and requirements, offering appropriate solutions to potential heat transfer problems and providing strong support for equipment and ultra-small, ultra-thin, high-integration devices. Thermal conductive products are increasingly used in many products, enhancing product reliability.

Thermal Conductive MaterialProduct Features

High thermal conductivity, excellent insulation performance, very flexible, small shrinkage during curing, easy to use. If use on a non-silicon surface is required, it is best to use with 1086 primer.

Thermal Conductive MaterialApplication Method

Step 1: Clean the heatsink surface with a cotton ball (cloth) dipped in alcohol/isopropyl alcohol solvent.

Step 2: Peel off the transparent protective film on the phase change liner and attach it to the heatsink.

Step 3: Gently press the super phase change resistor sheet with your fingers.

Step 4: Tear off the blue protective film on the phase change pad by hand and press the device on top.

Thermal Conductive MaterialConductive and Heat-Conductive Pad

Thermal Conductive Material- The G800 thermal liner has both thermal and electrical conductivity. Its unique particle directional arrangement creates a metal-like structure, ensuring conductivity while adhering to the heat exchange surface for effective heat conduction. G800 boasts excellent flexibility and mechanical properties, functioning normally in environments ranging from 50℃ to 200℃. It has good recoverability with minimal deformation under pressure. The G800 thermal pad has very low thermal resistance, perfectly replacing high-performance thermal grease while avoiding the drawbacks of poor processability and messy thermal grease.

Thermal Conductive Material- G800 thermal conduction is three-dimensional, meaning that heat is conducted effectively not only in the vertical direction between the heat source and heatsink but also longitudinally. This ensures that when local thermal energy becomes excessive, the heat can be quickly conducted away via longitudinal heat conduction. Therefore, the G800 thermal liner is highly suitable for efficient heat transfer from the heat source in confined spaces.