AER31-31-28CB/A01 Allicdata Electronics
Allicdata Part #:

AER31-31-28CB/A01-ND

Manufacturer Part#:

AER31-31-28CB/A01

Price: $ 4.68
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: AER31-31-28CB/A01 datasheetAER31-31-28CB/A01 Datasheet/PDF
Quantity: 1000
100 +: $ 4.20796
Stock 1000Can Ship Immediately
$ 4.68
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: 1.205" (30.61mm)
Width: 1.205" (30.61mm)
Diameter: --
Height Off Base (Height of Fin): 1.087" (27.60mm)
Power Dissipation @ Temperature Rise: --
Thermal Resistance @ Forced Air Flow: 2.12°C/W @ 200 LFM
Thermal Resistance @ Natural: 9.71°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

AER31-31-28CB/A01 Application Field and Working Principle

The Thermal – Heat Sinks AER31-31-28CB/A01 is applied in the system of heat dissipation and optimization. Its main application fields include power electronic components in industries such as information technology, automotive, communication, and consumer electronics. It also can be used to optimize systems with medium power level or lower power level.

The thermal – heat sinks AER31-31-28CB/A01 uses a passive, low-cost solution to dissipate and optimize system heat. It uses phase-change materials that maintain thermal stability in a wide range of temperatures. The phase-change materials in the AER31-31-28CB/A01 have a melting point and boiling point that range from -30°C to +80°C, providing maximum efficiency in optimizing the thermal behavior of various electrical components.

The thermal – heat sinks AER31-31-28CB/A01 use a combination of natural and forced convection. Air exchange is enhanced through the fins, allowing for a greater thermal exchange. By using the fins, it transfers more heat from the heat source to the surrounding environment. This increases the efficiency of the thermal-heat sinks and reduces the overall temperature of the electrical components.

The Thermal – Heat Sinks AER31-31-28CB/A01 also has a unique Thermalis cooling system, which reduces the amount of energy required to cool a system. AER31-31-28CB/A01 uses a combination of high thermal denatures and high-density thermal fluids to provide the highest level of thermal management. The Thermalis cooling system increases the efficiency of the thermal-heat sinks by 20%. This helps optimize the system’s operational stability, reduce energy costs, and increase the performance of the system.

The thermal – heat sinks AER31-31-28CB/A01 also utilizes a unique thermal joint design. The thermal joint design helps to reduce the thermal resistance between the base and the surface of the thermal-heat sinks, thus improving thermal efficiency while reducing thermal leakage. This helps optimize the response time and the heat transfer rate of the heat sink. This also helps to improve system efficiency and conserve energy when the application requires a higher thermal performance.

The thermal – heat sinks AER31-31-28CB/A01 also utilizes a heat pipe that helps to maintain a constant temperature in the thermal-heat sinks, allowing for a uniform heat distribution. The heat pipe enables the thermal-heat sinks to maintain their temperature and thermal capacity even when the system temperature is fluctuating.

In summary, the thermal – heat sinks AER31-31-28CB/A01 is an effective solution for dissipating and optimizing thermal energy. It uses a combination of natural and forced convection, phase-change materials, a Thermalis cooling system, and a unique thermal joint design to maximize the efficiency of the thermal management system. This helps to reduce energy costs, improve system performance, and conserve energy when needed.

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

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