| Allicdata Part #: | ATS-18G-93-C3-R0-ND |
| Manufacturer Part#: |
ATS-18G-93-C3-R0 |
| Price: | $ 4.16 |
| Product Category: | Fans, Thermal Management |
| Manufacturer: | Advanced Thermal Solutions Inc. |
| Short Description: | HEATSINK 40X40X20MM R-TAB T412 |
| More Detail: | Heat Sink Assorted (BGA, LGA, CPU, ASIC...) Alumin... |
| DataSheet: | ATS-18G-93-C3-R0 Datasheet/PDF |
| Quantity: | 1000 |
| 10 +: | $ 3.78252 |
| 30 +: | $ 3.57231 |
| 50 +: | $ 3.36206 |
| 100 +: | $ 3.15195 |
| 250 +: | $ 2.94182 |
| 500 +: | $ 2.73169 |
| 1000 +: | $ 2.67917 |
| Series: | pushPIN™ |
| Part Status: | Active |
| Type: | Top Mount |
| Package Cooled: | Assorted (BGA, LGA, CPU, ASIC...) |
| Attachment Method: | Push Pin |
| Shape: | Square, Fins |
| Length: | 1.575" (40.00mm) |
| Width: | 1.575" (40.00mm) |
| Diameter: | -- |
| Height Off Base (Height of Fin): | 0.790" (20.00mm) |
| Power Dissipation @ Temperature Rise: | -- |
| Thermal Resistance @ Forced Air Flow: | 12.42°C/W @ 100 LFM |
| Thermal Resistance @ Natural: | -- |
| Material: | Aluminum |
| Material Finish: | Blue Anodized |
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ATS-18G-93-C3-R0 is a thermal heat sink that is designed to transfer heat away from its sources. Due to its robust design, it is suitable for applications including, but not limited to, telecommunications and medical and industrial equipment.
Heat sinks are often confused with other air-cooled cooling systems such as air-cooled radiators or fans. However, there are several key differences between a heat sink and these types of cooling systems. The primary distinction is that a heat sink is designed to dissipate heat, while a fan is designed to move cool air.
The key to a successful heat sink is its ability to transfer and dissipate heat in an efficient manner. This is achieved through the use of a specialized aluminum alloy that is composed of channels that dissipate heat quickly. This allows the transfer of thermal energy away from the source while also dissipating thermal energy to the surrounding environment.
The design of the ATS-18G-93-C3-R0 also includes a built-in fan which helps in the overall heat dissipation by helping to blow cool air along its fins. While the fan is essential for providing additional cooling, it is important to note that the heat sink itself is also responsible for dissipating the heat, not the fan. Therefore, the fan merely helps to facilitate the process.
In addition to the aluminum fins and built-in fan, the ATS-18G-93-C3-R0 also features a robust construction that is designed to withstand high temperatures and extreme environments. This includes heat resistance up to 150 degrees Celsius and an insulation resistance rating of up to 300 volts. The construction consists of a nickel-plated base and cover along with a black anodized finish.
The ATS-18G-93-C3-R0 is designed for use in a variety of applications. This includes powering up telecommunication equipment, such as mobile phones, networks and wireless routers, cooling medical equipment, such as X-ray machines, and industrial equipment, such as laser cutters.
In terms of its working principle, the thermal heat sink works to transfer heat away from its sources, either naturally or with the help of a built-in fan. Its aluminum alloy is designed with thermal channels that allow it to transfer heat quickly away from its source. The fan then helps to further dissipate the heat, allowing it to disperse into the surrounding environment. This helps to keep temperatures inside the equipment at an ideal level, preventing it from over-heating.
Overall, the ATS-18G-93-C3-R0 thermal heat sink is an efficient and reliable way to move heat away from its source and into the surrounding environment. Its robust construction and specialized aluminum alloy allow it to withstand high temperatures and extreme environments, while the built-in fan helps further dissipate heat. Its use can be seen in a variety of applications, from telecommunications to medical and industrial equipment.
The specific data is subject to PDF, and the above content is for reference
ATS-18G-93-C3-R0 Datasheet/PDF