ATS-15F-32-C2-R0 Allicdata Electronics
Allicdata Part #:

ATS-15F-32-C2-R0-ND

Manufacturer Part#:

ATS-15F-32-C2-R0

Price: $ 5.81
Product Category:

Fans, Thermal Management

Manufacturer: Advanced Thermal Solutions Inc.
Short Description: HEATSINK 57.9X36.83X11.43MM T766
More Detail: Heat Sink Assorted (BGA, LGA, CPU, ASIC...) Alumin...
DataSheet: ATS-15F-32-C2-R0 datasheetATS-15F-32-C2-R0 Datasheet/PDF
Quantity: 1000
10 +: $ 5.22837
30 +: $ 4.93773
50 +: $ 4.64726
100 +: $ 4.35683
250 +: $ 4.06637
500 +: $ 3.77592
1000 +: $ 3.70330
Stock 1000Can Ship Immediately
$ 5.81
Specifications
Series: pushPIN™
Part Status: Active
Type: Top Mount
Package Cooled: Assorted (BGA, LGA, CPU, ASIC...)
Attachment Method: Push Pin
Shape: Rectangular, Fins
Length: 2.280" (57.90mm)
Width: 1.450" (36.83mm)
Diameter: --
Height Off Base (Height of Fin): 0.450" (11.43mm)
Power Dissipation @ Temperature Rise: --
Thermal Resistance @ Forced Air Flow: 21.46°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 management solutions are becoming increasingly important as electronics move faster and into more demanding applications. Heat sinks have been used for decades to help manage the thermal interface between an electronic component and its surrounding environment. The ATS-15F-32-C2-R0 is an example of a heat sink designed to provide efficient heat transfer as well as improved durability, reliability, and affordability.

As a thermal management product, the ATS-15F-32-C2-R0 is designed to offer high performance while remaining cost-effective. The heat sink is constructed with an aluminum base plate that is 0.5 mm thick, as well as a long copper fin that is 40 mm high and 32 mm wide. The fin is staggered to increase its heat dissipating capability while the aluminum base plate provides a uniform heat distribution across the fin.

The ATS-15F-32-C2-R0 is designed for use in electronics and industry applications. Its heat dissipating capability makes it well-suited for use in areas where reliable, efficient heat transfer is needed. An example of this could be found in the automotive industry with respect to engine cooling. This heat sink can also be used in the communications and medical devices for improved performance. Ultimately, the ATS-15F-32-C2-R0 is well-suited for any application that requires efficient heat transfer and reliable performance.

The ATS-15F-32-C2-R0 operates on a simple principle of conduction heat transfer. Heat is generated from the components in contact with the base plate and is then conducted to the fins. The rigid aluminum base plate is designed to provide a uniform temperature spread across the entire plate. The heat then spreads along the fins and enters the surrounding environment via convection. The copper material of the fin is designed to absorb the heat and dissipate it more effectively.

The ATS-15F-32-C2-R0 is designed for long-term durability and reliable performance. The aluminum base and copper fin arrangement have been tested and proven effective in numerous extreme scenarios. Tests have found that the heat sink is able to provide highly efficient heat transfer over a long period of time. The ATS-15F-32-C2-R0 is also able to maintain its efficiency at temperatures ranging from -40°C to 125°C. For applications that need to withstand such exacting thermal conditions, the ATS-15F-32-C2-R0 proves to be an ideal solution.

The ATS-15F-32-C2-R0 is an effective solution for improving the efficiency of heat transfer in a wide variety of applications. Reliability, simple operation, efficient heat transfer, and improved durability are some of the advantages that the ATS-15F-32-C2-R0 has to offer. As thermal solutions become increasingly important, this heat sink is proving to be a cost-effective and reliable option for many different applications.

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

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