* Cool in seconds * Reliable&Safe * Wide application * Good electrical insulation properties * Can be easily cut into any shape or size
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Products Description
Heat resistant silicone thermal pads are a kind of thermal interface with high performance. are made of silicone rubber and are highly effective in transferring heat between two surfaces. They come in the form of sheets or rolls and are available in a variety of thicknesses, shapes, and sizes. They are a great alternative to thermal paste and other thermal management materials. Silicone thermal pads are widely used in a variety of industries, including electronics, automotive, and aerospace, to name a few.
Feature
- Easy to Install: Heat resistant silicone thermal pads are easy to install and do not require any curing time, unlike thermal paste.
- Versatile: They come in various shapes, sizes, and thicknesses, making them suitable for a wide range of applications.
- Highly Effective: Are highly effective in transferring heat between two surfaces, ensuring efficient heat dissipation.
- Durable: These thermal pads are durable and can withstand extreme temperatures and harsh conditions.
- Cost-Effective: Heat resistant silicone thermal pads are cost-effective and offer a great value for their price.
Products Properties
|
Item |
NKS-###-PAD-TC |
NKS-###-PAD-MTC |
NKS-###-PAD-HTC |
Test Method |
|
Reinforced Carrier |
N/A |
N/A |
N/A |
--- |
|
Pad Type |
Silicone Polymer |
Silicone Polymer |
Silicone Polymer |
--- |
|
Thickness(mm) |
0.30~12.00 |
0.30~5.0 |
0.30~3.0 |
ASTM D 374 |
|
Color |
Grey/Pink/Blue/Black |
Grey/Pink/Blue/Black |
Grey/Pink/Blue/Black |
VISUAL |
|
Density(g/cc) |
1.8~2.8 |
3.0 |
3.2~3.5 |
ASTM D792 |
|
Hardness(Shore C) |
30±5 |
25±5 |
25±5 |
ASTM D2240 |
|
Thermal Conductivity(W/m-k) |
1.0~2.5 |
2.0~3.0 |
3.0~15.0 |
ASTM D2240 |
|
Voltage Resistance(KV/mm) |
>4.0 |
>4.0 |
>4.0 |
ASTM D149 |
|
Temperature Resistance (℃/℉) |
-40~+220(℃) -104~+428(℉) |
-40~+220(℃) -104~+428(℉) |
-40~+220(℃) -104~+428(℉) |
ASTM D5470 |
|
Volume Resistance(Ω NaN) |
1.0*1011 |
3.1*1011 |
3.1*1011 |
ASTM D257 |
|
Flame Rating |
V-0 |
V-0 |
V-0 |
UL-94 |
|
Standard Size(mm) |
200*400/320x320(Customized Available) |
|||
Note: The above data are general values of product testing are for reference only, and do not represent the actual values of this product.
Choosing the right heat resistant silicone thermal pad is crucial for the performance and reliability of your application. Here are some factors to consider when choosing the right thermal pad:
- Thermal Conductivity: The thermal conductivity of the thermal pad determines how efficiently it can transfer heat. Choose a thermal pad that has high thermal conductivity for optimal performance.
- Thickness: Choose a thickness that is suitable for your application. Thicker pads offer better thermal conductivity, but may not be suitable for some applications.
- Dielectric Strength: Dielectric strength is important in applications where electrical insulation is required. Choose a thermal pad that has sufficient dielectric strength if electrical insulation is required.
- Operating Temperature: Choose a thermal pad that can withstand the operating temperature range of your application.
- Compliance: Ensure that the thermal pad meets any relevant regulations and standards that apply to your application.
Application
Heat resistant silicone thermal pads are used in a variety of applications, including:
- Electronics: They are used in electronic devices to dissipate heat from electronic chips and other components. They are also used in LED lights, power supplies, and other electronic equipment.
- Automotive: Thermal silicone pads are used in the automotive industry to transfer heat between the engine and the radiator, as well as in other heat management applications.
- Aerospace: In the aerospace industry, thermal pads are used in various applications, such as heat shields, avionics, and satellite communication systems.

Heat resistant silicone thermal pads are a versatile and effective solution for managing heat in various applications. They offer many benefits, including ease of installation, durability, and cost-effectiveness. Choosing the right thermal pad is crucial for the performance and reliability of your application. Consider factors such as thermal conductivity, thickness, and operating temperature when choosing the right thermal pad for your application.
Packaging & Shipping
We can provide different kinds of packaging according to customer's requests, such as labeling, barcode, individual packing, and mailbox packing, you can give us your instructions, and we will follow up on your requests.
Different shipping ways are available, small quantities of orders will be delivered to you by express, and bulk goods will be delivered to you by sea, we will talk about the delivery method before we dispatch the goods.
Product Properties
|
Item |
NKS-###-PAD-TC |
NKS-###-PAD-MTC |
NKS-###-PAD-HTC |
Test Method |
|
Reinforced Carrier |
N/A |
N/A |
N/A |
--- |
|
Pad Type |
Silicone Polymer |
Silicone Polymer |
Silicone Polymer |
--- |
|
Thickness(mm) |
0.30~12.00 |
0.30~5.0 |
0.30~3.0 |
ASTM D 374 |
|
Color |
Grey/Pink/Blue/Black |
Grey/Pink/Blue/Black |
Grey/Pink/Blue/Black |
VISUAL |
|
Density(g/cc) |
1.8~2.8 |
3.0 |
3.2~3.5 |
ASTM D792 |
|
Hardness(Shore C) |
30±5 |
25±5 |
25±5 |
ASTM D2240 |
|
Thermal Conductivity(W/m-k) |
1.0~2.5 |
2.0~3.0 |
3.0~15.0 |
ASTM D2240 |
|
Voltage Resistance(KV/mm) |
>4.0 |
>4.0 |
>4.0 |
ASTM D149 |
|
Temperature Resistance (℃/℉) |
-40~+220(℃) -104~+428(℉) |
-40~+220(℃) -104~+428(℉) |
-40~+220(℃) -104~+428(℉) |
ASTM D5470 |
|
Volume Resistance(Ω NaN) |
1.0*1011 |
3.1*1011 |
3.1*1011 |
ASTM D257 |
|
Flame Rating |
V-0 |
V-0 |
V-0 |
UL-94 |
|
Standard Size(mm) |
200*400/320x320(Customized Available) |
|||
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