UT4-7-30-F1 Allicdata Electronics
Allicdata Part #:

UT4-7-30-F1-ND

Manufacturer Part#:

UT4-7-30-F1

Price: $ 0.00
Product Category:

Fans, Thermal Management

Manufacturer: Laird Technologies - Engineered Thermal Solutions
Short Description: THERMOELECT
More Detail: Peltier Module 30.00mm x 30.00mm x 4.70mm 18.0W @ ...
DataSheet: UT4-7-30-F1 datasheetUT4-7-30-F1 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: UltraTEC™
Part Status: Obsolete
Outline L x W x H: 30.00mm x 30.00mm x 4.70mm
Qmax @ Th: 18.0W @ 25°C
Delta Tmax @ Th: 70°C @ 25°C
Current - Max: 3.8A
Voltage - Max: 8.1V
Operating Temperature: --
Features: Lead Wires
Description

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Thermal - Thermoelectric, Peltier Modules: UT4-7-30-F1 Application Field and Working Principle

Thermoelectric, Peltier modules are used for cooling or heating applications. Their working principle is based on the phenomenon of the Seebeck effect, which itself is based on the principle of thermoelectricity. Among these thermoelectric, Peltier modules, the UT4-7-30-F1 module is an important type, and it finds application in various industry sectors. The current paper looks into the application field and working principle of the UT4-7-30-F1 module.Essentially, the UT4-7-30-F1 module is a thermoelectric device which consists of two ceramic plates on which conductor layers are placed on both sides of the plates. On each ceramic plate, there are two types of semiconductor layers: the Bi-Te semiconductor, and the N-type, which can be either Nickel, Platinum, or Manganese depending on the application. The plates are then sandwiched together to form a complete module.In terms of application, the UT4-7-30-F1 module has particularly found use in industrial processes which require cooling or heating. In cooling applications, the module works on the principle of the Seebeck effect, which states that when two different types of conductors (one negative and one positive) are connected and heated at one end, a temperature difference is created between the two ends due to the opposite electrons being drawn to the hotter end. This temperature difference results in a current flow which can be used to power a cooling device.Meanwhile, in heating applications, the same principle is used, but in reverse. The hot side of the device is connected to the negative conductor, and the cold side is connected to the positive conductor. This creates a temperature difference in the opposite direction, allowing the device to be used to power a heating device. In addition to the cooling/heating applications mentioned above, the UT4-7-30-F1 module can also be used in other fields such as medical devices, motor controls, and other types of industrial processes. The module is able to provide a very precise temperature control, which makes it suitable for these types of applications. Furthermore, the UT4-7-30-F1 module comes with a number of other features which makes it a preferred choice for many applications. These features include a wide operating temperature range, low thermal resistance, and quick surge protection. These features make it an ideal choice for industrial cooling and heating applications. In conclusion, thermoelectric, Peltier modules such as the UT4-7-30-F1 are very versatile, and they find application in various industrial processes. The UT4-7-30-F1 module, in particular, is ideal for cooling/heating applications due to its ability to provide a very precise temperature control. In addition, this module is also able to offer some other useful features, such as a wide operating temperature range, low thermal resistance, and quick surge protection.

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