392-180AB Allicdata Electronics
Allicdata Part #:

345-1046-ND

Manufacturer Part#:

392-180AB

Price: $ 92.32
Product Category:

Fans, Thermal Management

Manufacturer: Wakefield-Vette
Short Description: HEATSINK EXTRUSION IGBT/SSR BLK
More Detail: Heat Sink Power Modules Aluminum Top Mount, Extru...
DataSheet: 392-180AB datasheet392-180AB Datasheet/PDF
Quantity: 193
1 +: $ 83.92860
10 +: $ 78.68490
25 +: $ 73.43910
50 +: $ 70.81620
Stock 193Can Ship Immediately
$ 92.32
Specifications
Series: 392
Part Status: Active
Type: Top Mount, Extrusion
Package Cooled: Power Modules
Attachment Method: Press Fit
Shape: Rectangular, Fins
Length: 7.087" (180.01mm)
Width: 4.921" (124.99mm)
Diameter: --
Height Off Base (Height of Fin): 5.346" (135.79mm)
Power Dissipation @ Temperature Rise: --
Thermal Resistance @ Forced Air Flow: 0.10°C/W @ 100 LFM
Thermal Resistance @ Natural: 0.43°C/W
Material: Aluminum
Material Finish: Black 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 - Heat Sinks are a very important element in the management and regulation of heat-dissipation in a wide range of applications. The 392-180AB thermal heat sink is designed to be a highly efficient and reliable solution for the management of thermal energy generated in a range of applications, as it makes use of an advanced design to provide maximum heat dissipation. This article looks at the principle of operation of the 392-180AB in more detail, and how it is used in a range of applications.

The 392-180AB thermal heat sink works by transferring heat from a source, usually an electronic component, to the air circulating in the surrounding environment. This is done through the efficient use of high-grade material that is designed to offer low thermal resistance and efficient transfer of heat from the component surface to the air. It makes use of a highly conductive and durable aluminium or copper base, and features a robust design which ensures superior durability.

The design of the 392-180AB also allows for the optimal degree of heat dissipation, as the metal surface area of the component provides both a direct contact with the surrounding air as well as a passage for air to quickly dissipate heat. The use of efficient heat dissipation techniques allows it to dissipate up to three times as much heat as other conventional solutions. As such, it is ideally suited for applications which require a higher degree of cooling.

The 392-180AB is found in a range of applications, and its versatility and reliability make it a popular choice for the management of thermal energy. It is particularly useful for applications such as monitoring and regulating of heatsinks in high-power and data processing systems, as well as in applications requiring rapid cooling of computer chips and other components. The combination of reliable performance, efficiency and overall low-cost makes it a popular solution for the cooling of electronic components in a range of applications.

In addition, the 392-180AB is a perfect choice for use in the medical industry. Its highly efficient transfer of heat from sensitive components allows for high cooling performance, whilst its robust design ensures that the component is safe and efficient when used in a medical environment. It is also highly useful for the management of high temperature process systems in the automotive industry, and its ability to provide superior performance with respect to heat dissipation makes it an ideal solution for such applications.

Overall, the 392-180AB thermal heat sink is an invaluable asset in the management and regulation of thermal energy in a range of applications. Its efficient design and high-grade material make it an ideal choice for efficient management of temperature-sensitive components, its robust construction ensures reliable performance, and its cost-effectiveness and versatility make it a popular choice in a wide range of different applications. As such, it is an important and indispensable addition to any thermal management system.

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

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