ATS-10H-48-C3-R0 Allicdata Electronics
Allicdata Part #:

ATS-10H-48-C3-R0-ND

Manufacturer Part#:

ATS-10H-48-C3-R0

Price: $ 3.82
Product Category:

Fans, Thermal Management

Manufacturer: Advanced Thermal Solutions Inc.
Short Description: HEATSINK 25X25X35MM L-TAB T412
More Detail: Heat Sink Assorted (BGA, LGA, CPU, ASIC...) Alumin...
DataSheet: ATS-10H-48-C3-R0 datasheetATS-10H-48-C3-R0 Datasheet/PDF
Quantity: 1000
10 +: $ 3.47004
30 +: $ 3.27726
50 +: $ 3.08448
100 +: $ 2.89170
250 +: $ 2.69892
500 +: $ 2.50614
1000 +: $ 2.45794
Stock 1000Can Ship Immediately
$ 3.82
Specifications
Series: pushPIN™
Part Status: Active
Type: Top Mount
Package Cooled: Assorted (BGA, LGA, CPU, ASIC...)
Attachment Method: Push Pin
Shape: Square, Fins
Length: 0.984" (25.00mm)
Width: 0.984" (25.00mm)
Diameter: --
Height Off Base (Height of Fin): 1.378" (35.00mm)
Power Dissipation @ Temperature Rise: --
Thermal Resistance @ Forced Air Flow: 7.78°C/W @ 100 LFM
Thermal Resistance @ Natural: --
Material: Aluminum
Material Finish: Blue Anodized
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

Thermal solutions are used in a variety of applications, ranging from electronics to medical equipment. It is essential to have a reliable heat dissipation solution that is able to effectively manage the generated heat while keeping the desired product temperature within a given range. ATS-10H-48-C3-R0 is one such thermal solution that ensures the efficient transfer of heat away from a product with minimal power consumption. This article aims to discuss the application field and working principle of ATS-10H-48-C3-R0.

ATS-10H-48-C3-R0 is a heat sink designed for use in medium to large thermal storage systems, designed for use in outdoor industrial applications. The design features a unique finned copper base that is engineered to provide two-way thermal conductivity, meaning the heat from the product is transferred to the fins, then dissipated away from the product. The finned copper base also acts as a heat store, allowing excess heat to be stored until required. Therefore, the working temperature of the ATS-10H-48-C3-R0 is significantly lower than that of traditional solutions, as the storage of excess heat helps to maintain a steady operating temperature.

The application field of ATS-10H-48-C3-R0 is vast, due to its ability to provide an efficient and effective heat dissipation solution for various applications. Due to its highly efficient finned copper base, ATS-10H-48-C3-R0 is the ideal heat sink for use in outdoor applications where temperature fluctuation occurs regularly, such as construction machines, transportation vehicles, and solar energy systems. Additionally, its small form factor makes it suitable for use in applications with restricted installation space, such as medical equipment and electronics.

The working principle of ATS-10H-48-C3-R0 is relatively simple. The thermal transfer process is governed by a phenomenon called conduction. Heat is generated by the product, and is then conducted from the product to the fins of the heat sink. The finned copper base facilitates the conduction of heat, as it is highly efficient at conducting heat. As the heat is conducted to the fins, it is then dissipated away from the product and into the environment. This ensures that the product remains at a consistent temperature, while also reducing the power requirements of the system.

In summary, ATS-10H-48-C3-R0 is a highly efficient heat sink that is suitable for a wide range of applications. The highly efficient finned copper design allows for heat to be effectively transferred away from the product and into the environment, making it ideal for use in temperature fluctuating outdoor environments. Additionally, it is also suitable for restricted installation spaces, such as medical equipment and electronics. Finally, its working principle is relatively easy to understand, as it utilises the conduction of heat from the product to the fins for effective dissipation.

The specific data is subject to PDF, and the above content is for reference

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