AER23-23-23CB/A01 Allicdata Electronics
Allicdata Part #:

AER23-23-23CB/A01-ND

Manufacturer Part#:

AER23-23-23CB/A01

Price: $ 3.93
Product Category:

Fans, Thermal Management

Manufacturer: CTS Thermal Management Products
Short Description: HEATSINK FORGED BLK ANO TOP MNT
More Detail: Heat Sink Assorted (BGA, LGA, CPU, ASIC...) Alumin...
DataSheet: AER23-23-23CB/A01 datasheetAER23-23-23CB/A01 Datasheet/PDF
Quantity: 1000
100 +: $ 3.57412
Stock 1000Can Ship Immediately
$ 3.93
Specifications
Series: AER
Part Status: Active
Type: Top Mount
Package Cooled: Assorted (BGA, LGA, CPU, ASIC...)
Attachment Method: Thermal Tape, Adhesive (Included)
Shape: Square, Fins
Length: 0.890" (22.61mm)
Width: 0.890" (22.61mm)
Diameter: --
Height Off Base (Height of Fin): 0.890" (22.61mm)
Power Dissipation @ Temperature Rise: --
Thermal Resistance @ Forced Air Flow: 3.52°C/W @ 200 LFM
Thermal Resistance @ Natural: 12.52°C/W
Material: Aluminum Alloy
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 management is key for the modern electronic industry, while heat sinks that dissipate the heat generated by electrical components are the most basic and essential tool for achieving efficient and reliable management. Alternatively, heat dissipation can be passive or active, where passive dissipation is achieved through heat transfer using physical material, while active dissipation is achieved through the use of fans or other cooling technologies. The AER23-23-23CB/A01 is a heat sink that provides thermal management for a wide variety of applications and a simple, yet effective working principle.

The AER23-23-23CB/A01 is a specialty heat sink that has been developed for the purpose of providing thermal management for high power components. Its design incorporates a large-finned construction with air-flow fins that allow the heat produced by the component to be dissipated more efficiently. In addition, the air-flow fins also permit a greater degree of air circulation, which helps to ensure that the temperature of the device remains within its specified range. This heat sink is designed to operate efficiently even when applied to high power components.

The working principle behind the AER23-23-23CB/A01 is based on the concept of convection. In this process, air is forced through a conductive material (in this case, the air-flow fins) which then helps to distribute the heat produced by the component in a more efficient manner. This ensures that the temperature of the component remains below the critical threshold and is able to prevent potential damage due to overheating. Additionally, the heat sink also helps to ensure that the heat produced by the component is dissipated in a timely manner, allowing the device to remain operational without any risk of damage.

The AER23-23-23CB/A01 heat sink is designed for use in many types of applications, including both consumer hardware and enterprise-level electronics. Its construction allows it to handle extremely high power components, while remaining efficient and reliable. It is also applicable to a wide range of temperature ranges, making it ideal for both cooling and dynamic temperature control applications. Additionally, its use of passive cooling technologies ensures that it is able to provide consistent performance, even when exposed to higher levels of heat.

In conclusion, the AER23-23-23CB/A01 heat sink is a highly versatile and essential tool for achieving high efficiency and reliability when managing heat in a wide variety of applications. Its design incorporates a large-finned construction with air-flow fins, which allows for effective heat dissipation. Furthermore, its working principle relies on convection, to ensure that the temperature of the component remains within its specified range, preventing potential damage due to overheating. Finally, its use of passive cooling technologies makes it highly suitable for applications across different temperature ranges.

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

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