
Allicdata Part #: | ATS18964-ND |
Manufacturer Part#: |
ATS-11C-170-C2-R0 |
Price: | $ 3.84 |
Product Category: | Fans, Thermal Management |
Manufacturer: | Advanced Thermal Solutions Inc. |
Short Description: | HEATSINK 30X30X15MM R-TAB T766 |
More Detail: | Heat Sink Assorted (BGA, LGA, CPU, ASIC...) Alumin... |
DataSheet: | ![]() |
Quantity: | 1000 |
1 +: | $ 3.49020 |
10 +: | $ 3.40011 |
25 +: | $ 3.30800 |
50 +: | $ 3.12430 |
100 +: | $ 2.94052 |
250 +: | $ 2.75675 |
500 +: | $ 2.66487 |
1000 +: | $ 2.38918 |
Series: | pushPIN™ |
Part Status: | Active |
Type: | Top Mount |
Package Cooled: | Assorted (BGA, LGA, CPU, ASIC...) |
Attachment Method: | Push Pin |
Shape: | Square, Fins |
Length: | 1.181" (30.00mm) |
Width: | 1.181" (30.00mm) |
Diameter: | -- |
Height Off Base (Height of Fin): | 0.590" (15.00mm) |
Power Dissipation @ Temperature Rise: | -- |
Thermal Resistance @ Forced Air Flow: | 10.07°C/W @ 100 LFM |
Thermal Resistance @ Natural: | -- |
Material: | Aluminum |
Material Finish: | Blue Anodized |
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The ATS-11C-170-C2-R0 is a device used for the transfer of heat from a solid object to a fluid medium, most commonly air. It allows for the efficient redistribution of heat from a site that cannot be cooled by the physical exchange of air (such as an engine or a high-power electronics box). This is achieved by using a thermally conductive material between the solid object and the fluid. This material, usually a finlike structure, absorbs the heat from the object and transfers it to the fluid, which is responsible for dissipating it to the environment.
The ATS-11C-170-C2-R0 is a specially-designed finned-heat sink capable of operating in a range of temperatures. This model features multiple horizontally arranged flat strip fins, as well as a large vertical fin, which has two sets of rows running in opposite directions to ensure efficient air movement across its surface. This model also includes two rib-design fins running vertically, which act as turbulence dampeners to minimize oscillations created by the air turbulence.
The fins, made from a highly efficient thermally-conductive material, are designed to transfer heat away from the object and dissipate it to the environment. The fins absorb the heat from the object, which is conducted through the material and then transferred to the air passing over the fins. This flow of air can be either natural or forced, depending on the application. In either case, the air temperature rises as it passes over the fins, thus allowing the thermal energy to escape into the atmosphere. The fins are designed to ensure optimal heat transfer, maximizing the efficiency of the system.
The ATS-11C-170-C2-R0 is an efficient and reliable thermal-management heat sink, designed to meet the performance requirements of a variety of applications. It has a low system profile, which minimizes the impact on the object or device it is connected to. The fins are constructed from a highly efficient thermally-conductive material which ensures maximum heat transfer and low thermal resistance. This heat sink is also designed to be corrosion and oxidation resistant for a long lasting reliable performance.
The ATS-11C-170-C2-R0 heat sink is designed for an extremely wide range of applications, such as for use in computer systems, telecommunication, automotive, medical, and industrial applications. This model is especially suited for measuring, monitoring, controlling, and maintaining regulated temperatures in a variety of industrial and commercial environments. It can also be used in applications where high performance heat transfer and low thermal resistance are required.
The ATS-11C-170-C2-R0 is a versatile and reliable thermal management device, designed to deliver maximum efficiency in a wide range of conditions. With its robust construction and highly thermally-conductive material, it is an excellent choice for applications that require reliable and efficient thermal management. This model is an ideal choice for industrial, commercial and residential applications, where high performance and cost-effectiveness are required.
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