
A fiberglass-reinforced, thermally conductive, cold applied, soft gel pad. These flame-retardant and electrically insulating pads provide shock absorption and are easy handling with moderate tackiness. Their high compressibility accommodates tolerance stack up, ideal for filling gaps between low- power, heat-generating components and related heat sinks, boards or chassis that require complex, die-cut shapes. These materials do not flow away from the interface with thermal cycling. The thermally conductive silicones function as heat transfer media, barriers against environmental contaminants and as stress relieving shock and vibration absorbers over a wide temperature and humidity range.
Overview
A fiberglass-reinforced, thermally conductive, cold applied, soft gel pad. These flame-retardant and electrically insulating pads provide shock absorption and are easy handling with moderate tackiness. Their high compressibility accommodates tolerance stack up, ideal for filling gaps between low- power, heat-generating components and related heat sinks, boards or chassis that require complex, die-cut shapes. These materials do not flow away from the interface with thermal cycling. The thermally conductive silicones function as heat transfer media, barriers against environmental contaminants and as stress relieving shock and vibration absorbers over a wide temperature and humidity range.
A fiberglass-reinforced, thermally conductive, cold applied, soft gel pad. These flame-retardant and electrically insulating pads provide shock absorption and are easy handling with moderate tackiness. Their high compressibility accommodates tolerance stack up, ideal for filling gaps between low- power, heat-generating components and related heat sinks, boards or chassis that require complex, die-cut shapes. These materials do not flow away from the interface with thermal cycling. The thermally conductive silicones function as heat transfer media, barriers against environmental contaminants and as stress relieving shock and vibration absorbers over a wide temperature and humidity range.
Overview
A fiberglass-reinforced, thermally conductive, cold applied, soft gel pad. These flame-retardant and electrically insulating pads provide shock absorption and are easy handling with moderate tackiness. Their high compressibility accommodates tolerance stack up, ideal for filling gaps between low- power, heat-generating components and related heat sinks, boards or chassis that require complex, die-cut shapes. These materials do not flow away from the interface with thermal cycling. The thermally conductive silicones function as heat transfer media, barriers against environmental contaminants and as stress relieving shock and vibration absorbers over a wide temperature and humidity range.
Specifications
Specific Gravity | 2.5 |
---|
Related products

This fiberglass-reinforced soft gel pad provides thermal conductivity and electrical insulation. With low tack on both sides, it fills gaps between heat-generating components and heat sinks, boards, or chassis requiring complex die-cut shapes.

This fiberglass-reinforced soft gel pad offers thermal conductivity, electrical insulation, and flame resistance. With low tack on both sides, it fills gaps between heat-generating components and complex chassis, boards, or heat sinks.

This fiberglass-reinforced soft gel pad offers thermal conductivity, electrical insulation, and flame resistance. With low tack on one side, it fills gaps between heat-generating components and heat sinks, boards, or chassis requiring complex shapes.

This fiberglass-reinforced thermal pad offers 3.5W/mK conductivity with low surface tack on both sides, enabling efficient heat transfer in switching devices, robotic automation power boards, and high-kilowatt solar microinverters.

This fiberglass-reinforced soft gel pad offers thermal conductivity, electrical insulation, and flame resistance. With low tack on one side, it fills gaps between heat-generating components and heat sinks, boards, or chassis requiring complex shapes.