Allicdata Part #: | 1681-1068-ND |
Manufacturer Part#: |
SP2402-01AB |
Price: | $ 167.05 |
Product Category: | Fans, Thermal Management |
Manufacturer: | Marlow Industries, Inc. |
Short Description: | MULTISTAGE TEM21.72X28.27X6.73MM |
More Detail: | Peltier Module 28.27mm x 21.72mm x 6.73mm 8.7W @ 2... |
DataSheet: | SP2402-01AB Datasheet/PDF |
Quantity: | 46 |
1 +: | $ 151.86200 |
5 +: | $ 142.76700 |
10 +: | $ 139.12900 |
25 +: | $ 134.58300 |
Series: | SP2402 |
Part Status: | Active |
Outline L x W x H: | 28.27mm x 21.72mm x 6.73mm |
Qmax @ Th: | 8.7W @ 27°C |
Delta Tmax @ Th: | 109°C @ 27°C |
Current - Max: | 5.3A |
Voltage - Max: | 8.9V |
Resistance: | 1.54 Ohms |
Operating Temperature: | 85°C |
Features: | Exterior Metallization (Both Sides Pre-Tinned), Lead Wires |
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Thermoelectric devices, also known as Peltier Modules, are utilized in many applications requiring efficient heat transfer. The SP2402-01AB thermoelectric module is an advanced technology thermoelectric solution that provides an effective thermal management and regulation solution. The SP2402-01AB thermoelectric module is employed to transfer heat between two sides of the device in order to control the temperature of one side. It is designed for applications where cooling and heating is needed in a wide range of temperatures.
The SP2402-01AB module is a thermoelectric device that works by utilizing the Peltier effect. The Peltier effect refers to the transfer of heat that takes place whenever electrical current flows between two different materials. This transfer is based on the ability of the current to exchange heat by moving electrons within the materials. As electrons move in one direction, heat is transferred from one side of the device to the other. The amount of heat exchange depends on the current flowing through the device.
The SP2402-01AB thermoelectric module utilizes a “cold-side” and a “hot-side”. The cold side is made up of a p-type and an n-type thermoelectric material, connected in a closed loop. As an electrical current flows through this loop, heat is transferred from the cold side to the hot side. This causes the cold-side temperature to drop, and the hot-side temperature to rise. Depending on the level of current, the cold-side temperature can be cooled below that of the environment, or the hot-side temperature can be heated above that of the environment.
The SP2402-01AB thermoelectric module is suitable for a variety of applications. It can be used as an electronic cooling solution in devices such as servers, computers, and other electronic equipment. Its ability to cool and heat different objects and materials is also perfect for cryogenic processes, such as freezing foods and refrigeration. In addition, the device can be used for medical purposes such as cryotherapy, where low temperatures are used to inject drugs into human tissue. The device is also suitable for products like portable heating and cooling devices.
The SP2402-01AB thermoelectric module is designed to operate at an efficiency of up to 81%, making it one of the most efficient thermoelectric cooling solutions on the market. The module has a number of features that make it suitable for a range of applications. It has a low power consumption, making it ideal for applications where the space and weight of equipment is a concern. The device also features a high temperature range, allowing it to handle temperatures as low as -50°C and as high as +150°C. The module also has excellent static cooling capacity, with a static coefficient of performance (SCOP) as high as 140.
The SP2402-01AB thermoelectric module is a powerful and efficient device for transferring heat from one side to the other. It is suitable for a range of applications, from cooling electronics to cryogenic processes. The module’s low power consumption, high temperature range, and excellent static cooling capacity make it an ideal choice for those looking for an efficient thermal management and regulation solution. For those looking to maximize their cooling performance, the SP2402-01AB thermoelectric module is an excellent choice.
The specific data is subject to PDF, and the above content is for reference
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