CM23-1.9-05AC Allicdata Electronics
Allicdata Part #:

1681-1001-ND

Manufacturer Part#:

CM23-1.9-05AC

Price: $ 7.68
Product Category:

Fans, Thermal Management

Manufacturer: Marlow Industries, Inc.
Short Description: TEM 8.18X6.02X1.65MM
More Detail: Peltier Module 8.18mm x 6.02mm x 1.65mm 3.4W @ 27°...
DataSheet: CM23-1.9-05AC datasheetCM23-1.9-05AC Datasheet/PDF
Quantity: 448
1 +: $ 6.98040
5 +: $ 6.55452
10 +: $ 6.40017
25 +: $ 6.16896
50 +: $ 6.01474
100 +: $ 5.86051
Stock 448Can Ship Immediately
$ 7.68
Specifications
Series: CM23-1.9
Part Status: Active
Outline L x W x H: 8.18mm x 6.02mm x 1.65mm
Qmax @ Th: 3.4W @ 27°C
Delta Tmax @ Th: 71°C @ 27°C
Current - Max: 1.9A
Voltage - Max: 2.8V
Resistance: 1.23 Ohms
Operating Temperature: 85°C
Features: Exterior Metallization (Both Sides Pre-Tinned), Lead Wires
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

Thermoelectric cooling technology, also known as Peltier cooling technology, is a system consisting of semiconductor-based components such as CM23-1.9-05AC, which use electrical current to transfer thermal energy from one side of the component to the other side.

The thermoelectric effect is based on the phenomenon that separates a temperature gradient from an electrical source. An electrical current which passes through a junction between two dissimilar electrical conductors generates an output of heat from one side and cold on the other side. When the device is flipped over, the temperature gradient is reversed, and cold is taken from one side and heat is dissipated to the other side. The efficiency of the cooling device depends essentially on the type of electrical capacitor used.

The CM23-1.9-05AC thermoelectric cooling module is a compact, easy-to-install cooling device which can be used in a variety of applications. It is a two-stage module which features 24 boro-telluride thermocouples connected to aluminum plates which sandwich the ceramic insulation layer. This mechanism creates the temperature differential needed to dissipate heat from one side and produce a cold environment on the other side. The module is highly reliable, and has a long life expectancy.

CM23-1.9-05AC modules can be used to cool various components, including sensors, processors, and medical equipment. They can also be used to cool food and beverages, as well as to regulate temperatures in greenhouses and other agricultural settings. The modules are designed to operate in a variety of climates, including extremely hot or cold temperatures.

Thermoelectric cooling modules such as the CM23-1.9-05AC can be used both as a primary cooling system, or as a supplemental cooling device. When used as a primary cooling system, thermoelectric modules can be quickly and easily installed and require minimal maintenance. When used as a supplement, thermoelectric modules can provide added cooling power when needed, eliminating the need for a large or complex cooling system.

In addition to functioning as a cooling device, CM23-1.9-05AC modules can also be used as a heating device. This is accomplished by reversing the temperature differential across the module, allowing it to absorb heat from one side and emit heat from the other. This can be used to heat rooms or other enclosed spaces in which the use of traditional heating systems such as furnaces is impractical or impossible. It can also be used to heat objects directly, such as medical devices.

In addition to their cooling and heating functions, CM23-1.9-05AC modules can be used for temperature-sensitive experiments and research. By controlling the temperature at one side of the module, scientists and researchers can observe how various objects or materials respond to different temperatures. This can be a valuable tool for studying the effects of temperature on a wide variety of materials and objects.

Thermoelectric cooling technology and the CM23-1.9-05AC module in particular, provide an efficient and reliable way to regulate temperatures in a variety of settings. From cooling food and medical equipment, to heating closed spaces and conducting research experiments, this versatile cooling device can be an invaluable tool for numerous applications.

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

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