DHS-B10670-04A Allicdata Electronics
Allicdata Part #:

603-1747-ND

Manufacturer Part#:

DHS-B10670-04A

Price: $ 26.62
Product Category:

Fans, Thermal Management

Manufacturer: Delta Electronics
Short Description: HEATSINK ASSY LGA2011 NARROW
More Detail: Heat Sink LGA Aluminum Board Level
DataSheet: DHS-B10670-04A datasheetDHS-B10670-04A Datasheet/PDF
Quantity: 77
1 +: $ 24.20460
10 +: $ 22.78080
25 +: $ 21.35700
50 +: $ 19.93320
100 +: $ 19.22130
250 +: $ 18.15350
Stock 77Can Ship Immediately
$ 26.62
Specifications
Series: --
Part Status: Active
Type: Board Level
Package Cooled: LGA
Attachment Method: Bolt On
Shape: Rectangular, Fins
Length: 4.173" (106.00mm)
Width: 2.756" (70.00mm)
Diameter: --
Height Off Base (Height of Fin): 1.004" (25.50mm)
Power Dissipation @ Temperature Rise: --
Thermal Resistance @ Forced Air Flow: --
Thermal Resistance @ Natural: 0.26°C/W
Material: Aluminum
Material Finish: --
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 - Heat Sinks is a specialized device designed to dissipate heat from an electronic component into the surrounding environment. The DHS-B10670-04A is a type of heat sink specifically designed to operate in high temperature environments, while providing maximum effectiveness in its dissipation of warm air. This specialized heat sink can operate in temperatures up to 140°F, making it suitable for industrial and commercial applications.

The DHS-B10670-04A heat sink utilizes a variety of materials in its construction, with the majority of the heat sink being constructed from aluminum, which serves to conduct heat away from the source and aloft into the atmosphere. Additionally, the heat sink also contains copper and polyamide thermal insulators, which are in contact with the heat-generating component and act to further dampen and spread the heat out from its source.

In terms of its actual function, the DHS-B10670-04A works by transferring thermal energy from the heat-generating component to the heatsink and away from the source. This transfer occurs through two different mechanisms – conduction and convection. Firstly, conduction is the direct transfer of heat through physical contact. This transfer of thermal energy is accomplished through the contact between the heat source component and the heat sink, in which the heat energy is absorbed by the sink and dissipated over the entire surface area.

The other method of heat transfer that is employed in the DHS-B10670-04A is convection, which is the transfer of thermal energy through the air. This is achieved by the utilization of a fan within the sink, which draws in air from around the sink and forces it through the sink’s finned surface area. Due to the finned surfaces, the airflow is turbulent and greatly increases the surface area for heat dissipation.

Finally, the DHS-B10670-04A heat sink is also designed with various features that make it even more efficient. These features include a wide range of mounting systems, which allow it to be used in a variety of applications. Additionally, the heat sink also features a “clip-and-click” feature for easy installation, as well as a special thermal grease that is used to ensure effective heat transfer between the heat source component and the sink. Moreover, the heat sink also features a built-in cooling fan, which serves to maximize the efficiency of the entire heat transfer process and ensures that the sink remains cool and dissipates heat effectively.

The DHS-B10670-04A heat sink is an excellent choice for any application requiring a heat-dissipating component, especially in high temperature environments. Its construction with both metal and polyamide materials ensures that it is able to transfer heat effectively and robustly, while its various features ensure that it is an easy-to-use and versatile component. In short, the DHS-B10670-04A is an excellent heat-sink choice for any application.

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

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