CP2-17-06L Allicdata Electronics
Allicdata Part #:

CP2-17-06L-ND

Manufacturer Part#:

CP2-17-06L

Price: $ 0.00
Product Category:

Fans, Thermal Management

Manufacturer: Laird Technologies - Engineered Thermal Solutions
Short Description: THERMOELECT
More Detail: Peltier Module 22.00mm L x 22.00mm W x 4.60mm H 16...
DataSheet: CP2-17-06L datasheetCP2-17-06L Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: CP
Part Status: Obsolete
Outline L x W x H: 22.00mm L x 22.00mm W x 4.60mm H
Qmax @ Th: 16.0W @ 25°C
Delta Tmax @ Th: 67°C @ 25°C
Current - Max: 14.0A
Voltage - Max: 2.1V
Operating Temperature: --
Features: Lead Wires
Description

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Thermoelectric technologies have seen great strides in development and application in recent years due to their ability to convert thermal energy into electrical energy and vice versa. Peltier modules are a type of thermoelectric module that consists of two sides, each side consisting of a p-type semiconductor and an n-type semiconductor, sandwiched between two opposing sets of electrodes. These modules are often used for heating and cooling applications, as well as in pulse-width modulation (PWM) for enhanced thermal control.

The CP2-17-06L thermoelectric module is a good example of this type of technology. It is a Peltier module that is designed to deliver consistent and efficient thermal transfer between two surfaces. It is a high-efficiency device that is capable of operating in temperatures as low as -55°C and as high as 85°C, while using only a 110V AC power supply and a current of 0.7A.

The working principle of the CP2-17-06L thermoelectric module is based on the thermoelectric effect. It utilizes the Seebeck effect, which is a thermoelectric phenomenon that is caused by the movement of free electrons between two different materials when a thermal gradient is applied. As the temperature of one side of the module rises, the Seebeck effect causes electrons to move in the opposite direction. This creates a voltage potential, which can then be utilized in applications where a temperature differential is necessary.

The CP2-17-06L thermoelectric module is capable of efficient thermal transfer between two surfaces over a wide temperature range. It can be used in a variety of different applications, including cooling and heating, and is particularly useful for applications that require precise temperature control and a quick response from the heating and cooling elements. It is also well suited to applications that require long-term operation.

The CP2-17-06L thermoelectric module is typically used for cooling and heating applications, such as small electronic components and consumer appliances. It is often used in thermal management and is suitable for thermally regulating the operating temperature of systems, such as CPU chips, graphics cards, modems, and other sensitive components. It is also specifically designed for laser diode cooling, where it can provide consistent and efficient cooling for lasers that are operated at temperature levels below room temperature.

The CP2-17-06L thermoelectric module is also used in scientific applications, such as medical and laboratory equipment. It is particularly useful for applications where precise control over temperature is required, such as experiments that involve precision heat transfer or cooling. In addition, it can be used for precision testing and calibration on a wide range of instruments. For example, the module is commonly used in laboratory spectrometers and analytical instruments for accurate temperature control.

In conclusion, the CP2-17-06L thermoelectric module is a highly efficient device that is capable of converting thermal energy into electrical energy and vice versa. It is designed for a wide variety of heating and cooling applications, and is capable of providing precise thermal control and quick response times. This makes it ideal for applications where precision temperature control is essential. As such, the CP2-17-06L thermoelectric module has a wide range of applications in both commercial and industrial settings.

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

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