121691_REV1 Allicdata Electronics
Allicdata Part #:

345-1440-ND

Manufacturer Part#:

121691_REV1

Price: $ 10.80
Product Category:

Fans, Thermal Management

Manufacturer: Wakefield-Vette
Short Description: HEATPIPE SINTERED 10MMX250MM
More Detail: Heat Sink Copper Heat Pipe
DataSheet: 121691_REV1 datasheet121691_REV1 Datasheet/PDF
Quantity: 89
1 +: $ 9.81540
10 +: $ 9.26919
25 +: $ 8.72396
50 +: $ 8.17866
100 +: $ 7.63343
250 +: $ 7.08820
500 +: $ 6.95186
Stock 89Can Ship Immediately
$ 10.8
Specifications
Series: --
Part Status: Active
Type: Heat Pipe
Package Cooled: --
Attachment Method: --
Shape: Round
Length: 9.843" (250.00mm)
Width: --
Diameter: 0.394" (10.00mm) OD
Height Off Base (Height of Fin): --
Power Dissipation @ Temperature Rise: --
Thermal Resistance @ Forced Air Flow: --
Thermal Resistance @ Natural: --
Material: Copper
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: 121691_REV1 Application Field and Working Principle

The thermal heat sink is a device which is used to transfer the heat generated by a device to a cooler external environment. It is used to cool down electrical components, as heat is one of the most notorious enemies of electronics. The 121691_REV1 thermal-heat sink is a high performance device with an efficient design which has helped it become an industrial standard for many applications. This article will explore the fields in which the 121691_REV1 thermal-heat sink is used, and the principles behind its functioning.

Applications of the 121691_REV1 Thermal-Heat Sink

The 121691_REV1 thermal-heat sink has become an industry standard for many high-powered applications due to its efficient design and superior performance characteristics. It is frequently used in applications such as LED lighting, power supplies, semiconductor modules, and servers. It is also ideal for use in high-reliability projects, as it boasts exceptional durability and reliability, with a long-term service life and a high-precision fit.

Design Characteristics of the 121691_REV1 Thermal-Heat Sink

The 121691_REV1 thermal-heat sink uses a patented design which has the ability to increase its overall cooling performance. It contains two parallel fin extrusion grooves on each side of the sink, which make it possible to evenly distribute the generated heat to the respective sides of the extrusion grooves. It also uses a unique thermal gap filler, which is responsible for further increasing the sum total of the heat dissipation.The 121691_REV1 thermal-heat sink is made of aluminum, which is known to be an excellent heat conductor. It features a low thermal resistance of 0.11℃/W, meaning it can effectively dissipate heat over a wide range of temperatures. This can be especially beneficial for applications that require the sink to operate in extreme conditions. In addition, the 121691_REV1 thermal-heat sink is RoHS compliant, and it can be installed vertically or horizontally.

Working Principle of the 121691_REV1 Thermal-Heat Sink

The 121691_REV1 thermal-heat sink works on a simple principle known as thermal conduction. Heat energy is transferred from the source to the heat sink via an intermediary material, such as aluminum. This energy is then spread across the fins of the heat sink, allowing it to dissipate the heat. The larger the surface area of the fins, the more efficient the heat sink is. The 121691_REV1 thermal-heat sink utilizes this principle to dissipate heat from high-powered electrical components.In addition, the 121691_REV1 thermal-heat sink also benefits from the addition of a fan. The fan helps to draw cold air into the heat sink, and is also responsible for pulling hot air away from the heat sink. This helps to cool the components faster, as there is less time for the heat to accumulate.

Conclusion

The 121691_REV1 thermal-heat sink is a high-performance device which is used in a variety of applications. It is well suited for high-powered applications due to its efficient design, and it is also ideal for projects that require high reliability and excellent heat dissipation. It works on the principle of thermal conduction, which helps it to effectively transfer and dissipate heat from electrical components. In addition, the addition of a fan helps to further reduce the temperature of the components by drawing cold air into the heat sink.

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

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