124672 Allicdata Electronics
Allicdata Part #:

345-1682-ND

Manufacturer Part#:

124672

Price: $ 5.41
Product Category:

Fans, Thermal Management

Manufacturer: Wakefield-Vette
Short Description: ROUND HEATPIPE 12X150MM 150W
More Detail: Heat Sink Copper Heat Pipe
DataSheet: 124672 datasheet124672 Datasheet/PDF
Quantity: 1000
1 +: $ 4.92030
10 +: $ 4.78737
25 +: $ 4.52164
50 +: $ 4.25552
100 +: $ 3.98960
250 +: $ 3.72363
500 +: $ 3.45766
1000 +: $ 3.39116
Stock 1000Can Ship Immediately
$ 5.41
Specifications
Series: --
Part Status: Active
Type: Heat Pipe
Package Cooled: --
Attachment Method: --
Shape: Round
Length: 5.906" (150.00mm)
Width: --
Diameter: 0.472" (12.00mm) 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, usually referencing a term called 124672, are used to effectively cool components or materials in an established system. This is primarily achieved by increasing the enviromental surface area, allowing for a larger exchange surface between the object and its environment, thereby increasing the rate of heat transfer. Critical processes in industrial applications, such as steel rolling mills and nuclear reactors, may require such cooling solutions for efficient heat dissipation. In these situations, the 124672 application field relies on the use of a energy-efficient heat sink that would be compatible with a variety of cooling solutions.

The 124672 working principle relies on the basics of physics and thermodynamics. The underlying principle is heat transfer; as a substance captures heat energy, the object\'s temperature rises. To be effective, the energy must be able to be quickly and efficiently dissipated into the surrounding environment. The dissipated energy is known as heat flows from a material to its cooler surroundings. By increasing the exposed surface area between the object and its environment, more heat energy can more rapidly be absorbed or dissipated. In doing so, the temperature of the object will remain more stable.

A heat sink works by providing an increased contact surface between the material and the ambient environment, allowing energy to dissipate or absorb faster and more efficiently. Heat sinks are usually made from materials that have high thermal conductivity, such as copper, aluminum, or plastic. As the heat is transmitted from the object to the heat sink, the thermal conductive material can spread the energy outward in all directions, allowing it to be dispersed quicker. In addition, many heat sinks are designed such that they take advantage of natural convection currents, allowing for heat to be dissipated or absorbed more efficiently.

In many practical applications, a 124672 application field would rely on several cooling solutions to better fulfill the requirements of the surrounding environment. Many times, the heat sink is being used with some form of a cooling fan, which takes advantage of the convection principles described previously. Fans have the additional benefit that they can target the heat dissipated from the object directly, creating efficient cooling without the need for a large overall increase in the size of the heat sink.

In addition, water or other liquids can be used in the 124672 application field. In some industries, liquids are both more efficient at absorbing and dissipating heat and also significantly different in application. This type of cooling is often too complex for a lot of everyday, non-specialty applications. While this is the case, there are many industries that use liquid cooling solutions, many times with multiple heat sinks being connected together for increased cooling performance.

The 124672 application field also benefits from modern advances in materials technology. For example, newer plastics such as polyphenylene sulfide (PPS) and polyphenylsulfone (PPSU) are thermally conductive, allowing for increased cooling performance without sacrificing the practicality and affordability of their plastic or aluminum counterparts. Likewise, newer metals, such as copper, graphite, and carbon fiber, are gaining ground in the world of computer hardware cooler. These materials have significantly higher thermal conductivity in comparison to traditional metals, requiring fewer fans and allowing for increased surface area per volume.

In conclusion, the 124672 application field and working principle are important aspects to consider for any system requiring maximum thermal performance. By utilizing a combination of cooling solutions and materials, these systems can be efficiently cooled, allowing for an increased rate of both thermal dissipation and absorption. In many industries, heat sinks are the optimal solution when managing the large and potentially dangerous amounts of heat generated by many processes. The 124672 application field is sure to benefit greatly from advances in materials and technology, allowing for higher efficiency cooling at a smaller cost.

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

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