LCC12-10-01LS Allicdata Electronics
Allicdata Part #:

1681-1019-ND

Manufacturer Part#:

LCC12-10-01LS

Price: $ 43.58
Product Category:

Fans, Thermal Management

Manufacturer: Marlow Industries, Inc.
Short Description: TEM THERMOCYCLER 40X40X3.84MM
More Detail: Peltier Module 40.00mm x 40.00mm x 3.84mm 85.0W @ ...
DataSheet: LCC12-10-01LS datasheetLCC12-10-01LS Datasheet/PDF
Quantity: 69
1 +: $ 39.61440
5 +: $ 37.29600
10 +: $ 36.13740
25 +: $ 34.97940
50 +: $ 34.05280
100 +: $ 33.12610
Stock 69Can Ship Immediately
$ 43.58
Specifications
Series: LCC12-10
Part Status: Active
Outline L x W x H: 40.00mm x 40.00mm x 3.84mm
Qmax @ Th: 85.0W @ 27°C
Delta Tmax @ Th: 62°C @ 27°C
Current - Max: 8.9A
Voltage - Max: 14.7V
Resistance: 1.32 Ohms
Operating Temperature: 85°C
Features: Lead Wires, Lapped, Sealed
Description

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Thermoelectric coolers, otherwise known as Peltier coolers, are useful electronic components in the field of thermal engineering. They are commonly used for cooling small areas and are often found in high-power consumer electronics appliances. The LCC12-10-01LS model is a popular commercial application of the type of thermoelectric cooler.

The LCC12-10-01LS is a functional thermoelectric cooler module that is designed to provide efficient cooling solutions. It is comprised of thermoelectric stacks connected in series with a heat-rejection section. It is capable of working as either a cooling unit or a heating unit when fitted to an appropriate system. It’s power supplies are generally from single-phase alternating current (AC) power sources, with operating voltages ranging from 12 to 48 volts.

The thermoelectric effect operates on the principle of heating and cooling a material when an electric current is applied, producing a temperature differential across it. This is the principle on which the working of the LCC12-10-01LS depends. The thermoelectric stacks that the module is composed of consist of two materials; a P-Type and an N-Type. When a voltage is applied across the stack, the N-Type element rapidly cools while the P-Type element heats up, thus creating a temperature differential across the stack.

The working of the module begins when an electric current is passed through the thermoelectric stack. This current passes through the P-Type material, raising its temperature, and flows to the N-Type material, which rapidly cools. This creates a temperature gradient, due to the thermoelectric effect, between the two sides of the stack, with one side cold and the other side warm. Heat is then dissipated from the cold P-Type side to the hotter N-Type side. To maintain the temperature gradient, the heat dissipated from the cold side must be equal to the amount of heat absorbed by the warm side. This process creates a thermoelectric cooler.

To use the LCC12-10-01LS model, an external power supply is required to apply a suitable voltage to both the heat-rejection and cooling sides of the module. When the module is connected to an external power supply, the temperature differential across the stack increases. This temperature gradient is maintained by the thermoelectric effect. An external heat sink or fan can then be used to cool the hotter N-Type side of the stack, in order to complete the cooler’s operation.

The LCC12-10-01LS thermoelectric cooler is a highly efficient and reliable way to cool small areas. It is easy to install and operate, and provides cooling solutions for a range of applications. When using the thermoelectric cooler, it is important to ensure that the external power source is matched correctly and that the heat-sink and cooling fan are of suitable size.

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

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