Customization: | Available |
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Application: | Electrical Power System, Electronic Communication, Electronic Device, Industrial Equipment, Laboratory Equipment, Medical Equipment, Transportation, Electric Devices |
Color: | Customized |
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High thermal conductivity: It can quickly conduct heat from the heat source to the heat dissipation component. The higher the thermal conductivity, the better the heat dissipation effect.
Good compressibility and resilience: It can be compressed under certain pressure, closely adhering to uneven surfaces. When the pressure disappears, it can return to its original shape, ensuring long-term stable thermal conductivity.
Electrical insulation: Most thermal conductive gaskets have good insulation performance and can meet the electrical safety requirements of electronic equipment.
High and low temperature resistance: Under different working temperature environments, it can maintain stable physical and chemical properties without hardening, softening, embrittlement and other phenomena, ensuring heat conduction effect and service life.
Chemical stability: It has the ability to resist the erosion of chemical substances such as oils and solvents, and can work stably in various complex chemical environments without affecting the thermal conductivity and service life due to chemical corrosion.
item
|
value
|
Place of Origin
|
China
|
|
Fujian
|
Brand Name
|
APS
|
Model Number
|
APS25231 |
Type
|
Thermal Gap Pad
|
Material
|
Silicone
|
Application
|
Electric devices
|
Rated Voltage
|
5kv/mm
|
Tensile Strength
|
8N
|
Colors
|
Customized
|
Thermal Conductivity
|
7W/m.k
|
Thickness
|
0.5-20.0mm
|
Specific Gravity
|
3.5±0.1g/cc
|
Hardness
|
30~70±5Shore C
|
Volume Resistivity
|
>1.0*10 12Ω.cm
|
Temperature Range
|
′-50~+200
|
Flame Rating
|
V0
|
Consumer electronic products, such as smart phones, tablet computers, laptops, game consoles, etc., are used for heat conduction connections between heat-generating components like Cpus, Gpus, batteries and heat sinks to enhance heat dissipation efficiency and ensure stable device performance.
In communication equipment such as 5G base stations, routers, and switches, a large number of thermal conductive pads are used to solve the heat dissipation problem of high-power chips, modules, etc., ensuring that the equipment maintains a stable working state during long-term operation.
Automotive electronics: Components such as battery management systems, motor controllers, and on-board chargers in electric vehicles, as well as engine control units and audio systems in traditional cars, all require thermal pads for heat dissipation to enhance reliability and safety.
Industrial equipment: Large industrial equipment operating in high-temperature and high-power environments, such as frequency converters, servo drivers, and industrial automation control systems, uses thermal silicone pads to ensure the normal operation of the equipment and extend its service life.
LED lighting: In high-power LED lamps, thermal conductive pads are used to connect the LED chip and the heat dissipation substrate, effectively reducing the temperature of the LED chip, improving the luminous efficiency and the lifespan of the lamp.