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Product Details:
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| Products Name: | High Thermal Conductivity TIM With 5.0K/mK Thermal Pad For AI Servers, GPUs And Power Electronics | Thickness(inch/mm)): | 0.010~0.200"(0.25~5.00 Mm) |
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| Application: | AI Servers, GPUs And Power Electronics Cooling | Hardness: | 65/45 Shore 00 |
| Fire Rating: | 94-V0 | Keywords: | Thermal Pad |
| Thermal Conductivity: | 5.0W/m.K | Color: | Black |
| Sample: | Free | ||
| Highlight: | High thermal conductivity TIM for AI servers,5.0K/mK thermal pad for GPUs,Thermal conductive pad for power electronics |
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The TIF®100-50-01S Series is a well-balanced, general-purpose thermal pad offering good thermal conductivity and moderate hardness. This balanced design provides both excellent surface conformity and superior ease of use, making it capable of effectively transferring heat and providing basic physical protection for a wide range of electronic components. It is an ideal choice for addressing medium to high power heat dissipation needs, achieving the best balance between cost and performance.
| Property | Value | Test Method |
|---|---|---|
| Color (Silicone Cloth/Silicone) | Black | Visual |
| Construction | Ceramic filled silicone elastomer | ZKTM J024 |
| Density (g/cm³) | 3.2 | ASTM D792 |
| Thickness Range (inch/mm) | 0.010"~0.020 (0.25~0.50mm) / 0.030"~0.200" (0.75~5.00mm) | ASTM D374 |
| Hardness (Shore 00) | 65/45 | ASTM 2240 |
| Recommended Operating Temperature | -40 to 200℃ | ZKTM J025 |
| Breakdown Strength (V/mm) | ≥5500 | ASTM D149 |
| Dielectric Constant @1MHz | 8.1 | ASTM D150 |
| Volume Resistivity (Ohm-meter) | >1.0×10¹² | ASTM D257 |
| Flame rating | V-0 | UL 94 (E331100) |
| Thermal conductivity (W/m-K) | 5.0 | ASTM D5470 / ISO22007 |
Standard Thickness: 0.010" (0.25 mm) ~ 0.200" (5.00 mm), with increments of 0.010" (0.25 mm)
Standard Size: 16"×16" (406 mm×406 mm)
The TIF® series is available in custom shapes and various forms. For other thicknesses or more information, please contact us.
Ziitek, founded in 2006, is a high-tech enterprise specializing in research and development of heat conduction, heating, sealing and EMI products. Its headquarters is in Dongguan, Guangdong Province, with production bases in Kunshan, Taiwan Province and Viet Nam. The company strictly abides by the international quality management system, and has passed the authoritative certifications such as IATF16949:2016, ISO9001:2015, QC080000:2017 and ISO14001:2015. The whole series of products conform to ROHS, REACH and UL specifications. From thermal interface materials to EMI shielding, from heating products to sealing engineering plastics, Zhaoke serves global customers with strict quality standards and is committed to becoming a reliable strategic partner.
A thermal silicone pad is a pre-formed TIM typically made of a silicone-based material and thermally conductive fillers. It is designed to fill gaps between heat sources and heat sinks. Depending on the product formulation, thermal silicone pads can also provide electrical insulation.
Key advantages include easy installation, controlled thickness, good flexibility, and effective gap-filling capability. Depending on the application, thermal silicone pads can also be designed with different levels of thermal conductivity, hardness, flame resistance, and electrical insulation.
Not necessarily. If the pad is too thin to adequately fill the actual gap, proper interface contact may not be achieved. The appropriate thickness should be selected based on the actual structural tolerances and application requirements.
Yes, but the appropriate product must be selected according to its specified operating temperature range. Applications such as automotive electronics, power supplies, and industrial equipment require particular attention to long-term performance after high-temperature aging.
Many silicone-based thermal pads can provide both thermal conductivity and electrical insulation. However, the actual insulation performance should be evaluated based on product-specific test data, such as dielectric strength and volume resistivity.
Yes. Certain thermal silicone pads can be designed to meet specific flame-retardant requirements, such as UL 94 ratings. The actual flame-retardant rating should always be verified against the product's official test report or technical datasheet.
Like all polymer-based materials, thermal silicone pads can be affected by long-term exposure to temperature, humidity, and environmental conditions. High-quality thermal silicone pads are typically evaluated through tests such as high-temperature aging, thermal cycling, and humidity resistance to verify long-term stability.
Contact Person: Dana Dai
Tel: +86 18153789196
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