




Thermal conductive silicone pad
Thermal silicone pads are functional thermal conductive materials made from a silicone rubber base compounded with thermally conductive fillers such as alumina, boron nitride, and zinc oxide. They offer excellent thermal conductivity, electrical insulation, and shock absorption. With a soft texture, high compressibility, and superior resilience, these pads can be back-adhesive and easily die-cut. They are widely used in CPU/GPU cooling, LED lighting, power modules, and new energy battery applications.
Material
Silicone rubber + alumina/boron nitride/zinc oxide thermal fillers
Tolerance
Thickness tolerance: ±0.1mm, Thermal conductivity: 1-12W/m·K, Breakdown voltage: ≥8kV/mm
Surface Treatment
Single-sided/double-sided adhesive, slitting and die-cutting, punching
Application Areas
CPU/GPU cooling, LED lighting, power modules, new energy batteries, automotive electronics, communication equipment, medical devices.
Product Features
- Excellent thermal conductivity; thermal conductivity coefficient of 1-12 W/m·K available
- Excellent electrical insulation performance; breakdown voltage ≥ 8kV/mm
- Soft, compressible, and highly resilient.
- Withstands extreme temperatures (50°C to 200°C) with stable performance
- Self-adhesive, die-cut friendly, and easy to install
- Customizable thickness, dimensions, and thermal conductivity
