Products Description
5G infrastructure installations are challenged by space constraints and increased power density. All components must be optimized for efficiency and performance in a compact configuration that is rugged enough to withstand extreme temperatures and harsh environmental conditions.
Some components, such as converters, operate in fully encapsulated environments where forced convection is not possible and operating temperatures can reach extremely high levels.
Aluminium Vapor Chamber Heat Sinks utilize encapsulated graphite heat spreaders, heat diffusion vapor chambers and heat pipe heat exchangers to passively transfer and dissipate heat from the enclosure to the ambient environment.
Products Application


Application areas: new energy, 5G communications, rail transit, ultra-high-definition display terminals, high-power power electronics, green lighting, etc.
Quick details
| Product name | Aluminium Vapor Chamber Heat sink |
| Model NO. | KX-22028 |
| Product material | Aluminum AA6063/AA6060/6001 etc. |
| Feature | Durable |
| Surface treatment | Mill finish, anodizing, powder coated, sandblasting, electrophoresis etc |
| Color | Silvery white, black, dark bronze or according to your requirement |
| Packaging | Strong carton box or according to requirement |
| OEM&ODM | Support |
| Origin | Foshan, China |
How Aluminium Vapor Chamber Heat sink works
A Vapor Chamber (VC) is an advanced, two-phase passive heat transfer device that enhances cooling efficiency. It features aluminum enclosure with a vacuum-sealed cavity.
The heat transfer process leverages water's high heat of vaporization. As the working fluid near the heat source heats up, it transforms into vapor. This vapor rapidly spreads to cooler regions of the chamber, away from the heat source, where it releases its heat and condenses back into liquid. This continuous cycle efficiently manages heat distribution, making Vapor Chamber technology ideal for high-performance cooling applications.

|
ITEM
|
Description
|
| Cavity Material | Aluminum |
| Structure | Grooves |
| Working fluid | Acetone, etc. |
| Thermal resistance |
< 0.4℃/W
|
| inclination angle (θ) |
0 ~ 90°
|
| Leakage temperature |
~190℃(Normal Thickness)
|


Vapor Chamber - The Top Solution for 5G Infrastructure Thermal Management
Vapor temperature data reflects the temperature at which the working fluid inside the vapor chamber transitions from liquid to vapor. This phase change is critical because it significantly enhances thermal conductivity. As temperature increases, the vaporization process occurs more readily, allowing heat to be absorbed efficiently from hot surfaces and rapidly transported throughout the chamber.
In the context of 5G applications, where components generate substantial heat due to high data processing and transmission demands, effective management of vapor temperature is vital. Maintaining optimal vapor temperatures ensures that the thermal resistance is minimized, leading to better heat distribution and preventing hotspots. This ultimately enhances the reliability and performance of 5G devices and infrastructure, ensuring they operate efficiently even under heavy loads.

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Aluminum heatsink parts for 5G signal Tower
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Since 2018, we have been involved in this amazing 5G communication industry, and keep supplying over 10 different types of aluminum products to the customer.
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