| Sign In | Join Free | My burrillandco.com |
|
...Thermal Silicone Gel Pad High Performance Thermal Pad For AI Processors Cooling Company Profile Ziitek Electronic Material and Technology Ltd. is dedicated to developing composite thermal solution and manufa...
...Thermal Performance Silicone Pads for Routers, 3.2 W/mK The TIF1200-32-05US is a silicone based, thermally conductive gap pad. Its unreinforced construction allows additional compliancy. This product has low...
... allows additional compliancy. This product has low hardness is conformable and is electrically isolating. The low modulus characteristic of the product offers optimal thermal performance with the ease of ha...
8W/m.K Thermal Conductivity Pink Silicone Soft Thermal Pad Material For CPU Attribute Value Test Method Composition Ceramic Filler + Silicone - Color Pink Visual Thickness(mm) 0.5~10 astm d374 Density(g/cc) 3.3...
Ultra Soft 8.0W/m.K Thermal Conductivity Thermal Pad Material With Blue Silicone Attribute Value Test Method Composition Ceramic Filler + Silicone - Color Pink Visual Thickness(mm) 0.5~10 astm d374 Density(g/cc...
8W/m.K Thermal Conductivity Pink Silicone Soft Thermal Pad Material For CPU Attribute Value Test Method Composition Ceramic Filler + Silicone - Color Pink Visual Thickness(mm) 0.5~10 astm d374 Density(g/cc) 3.3...
Ultra Soft 8.0W/m.K Thermal Conductivity Thermal Pad Material With Blue Silicone Attribute Value Test Method Composition Ceramic Filler + Silicone - Color Pink Visual Thickness(mm) 0.5~10 astm d374 Density(g/cc...
TIF100-10-02F Silicone Thermal Pad Product introduction The TIF100-10-02F Series thermally conductive interface materials are applied to fill the air gaps between the heating elements and the heat dissipation...
TIF100-01U Ideal Gap Filler 1.5W Laptop Silicone Thermal Pads Product descriptions TlF100-01U series thermally conductive interface materials are applied to fill the air gaps between the heating elements and ...
TIF100-07U Bridging Gaps 1.5W Laptop Silicone Thermal Pads Product descriptions TlF100-07U series thermally conductive interface materials are applied to fill the air gaps between the heating elements and the...
Thermal Conductive Silicone Pad For Notebook Memory Motherboard Display Insulated CPU Computer Accessories Product descriptions TIF800QE series of thermal interface materials is specifically designed to fill ...
TIFTM100-01S CPU Conductive Silicon Thermal Pad Products Custom Product descriptions TlFTM100-01S Series thermally conductive interface materials are applied to fill the air gaps between the heating elements an...
TIF200-15-01F-A1 Customized Self Adhesive Silicone Thermal Pad Product descriptions TlF200-15-01F-A1 Series thermally conductive interface materials are applied to fill the air gaps between the heating elements...
TIF700PUS Custom 7.5W/Mk 3Mm 2Mm 1.5Mm Silicone Conductive Soft Gpu Cpu Thermal Pad Product descriptions TIF700PUS Series thermally conductive interface materials are applied to fill the air gaps between the h...
TIF500-30-11U Ultra Soft 3.0W/M-K Silicone Thermal Pad for LED and Lithium-Ion Battery Pack Product descriptions TlFTM500-30-11U series thermally conductive interface materials are applied to fill the air gaps ...
TIF700L-HM Low Volatility Flexible Silicone Thermal Pad For Battery And Heat Sink Solutions Product descriptions TIF700L-HM Series thermally conductive interface materials are applied to fill the air gaps betw...
TIF100N-25-16S Premium Soft 2.5W Blue-Violet Silicone Thermal Pad For Electronic Equipment Product descriptions TIF®100N-25-16S series of thermal interface materials is specifically designed to fill air gaps be...
TIF100-30-11S High-Voltage Silicone Thermal Pad Insulation Material Heat Conduction Sheet For Efficient Heat Transfer Product descriptions TlF100-30-11S Series thermally conductive interface materials are appli...
... Thermal Conductive Pad is designed to withstand extreme temperatures, with a temperature range of -40~220℃. This makes it ideal for a variety of applications, especially those that require high-temperature ...