66101-500 Allicdata Electronics
Allicdata Part #:

926-1292-ND

Manufacturer Part#:

66101-500

Price: $ 20.56
Product Category:

Fans, Thermal Management

Manufacturer: Laird Technologies - Engineered Thermal Solutions
Short Description: PELTIER CP14,127,045,L1,RT,W4.5
More Detail: Peltier Module 39.88mm x 39.88mm x 3.33mm 72.0W @ ...
DataSheet: 66101-500 datasheet66101-500 Datasheet/PDF
Quantity: 401
1 +: $ 18.68580
10 +: $ 17.09130
25 +: $ 16.45410
Stock 401Can Ship Immediately
$ 20.56
Specifications
Series: CP
Part Status: Active
Outline L x W x H: 39.88mm x 39.88mm x 3.33mm
Qmax @ Th: 72.0W @ 25°C
Delta Tmax @ Th: 67°C @ 25°C
Current - Max: 8.5A
Voltage - Max: 14.5V
Resistance: 1.55 Ohms
Operating Temperature: 80°C
Features: Lead Wires, Sealed - Silicone RTV
Description

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Thermal-Thermoelectric, Peltier Modules: 66101-500 Application Field and Working PrincipleThermoelectric, Peltier modules, often known as TE Units, offer efficient, quiet, light-weight, and long-lasting direct cooling and heating solutions for numerous applications in various industries. One such model of thermoelectric modules, the 66101-500, are cost-effective, energy efficient, and highly reliable thermoelectric cooling systems that are capable of temperatures as low as -55°C and as high as +125°C. To better understand the application of this particular thermoelectric peltier module, as well as its working principle, this article will go through some facts about the product, as well as how the peltier effect works to produce the desired lows and highs in temperatures.Facts About the 66101-500 Thermoelectric ModuleThe 66101-500 thermoelectric peltier module is made with a temperature range of -55°C to +125°C and is capable of delivering up to 55 Watts of cooling power. The 66101-500 module is also very efficient and can be adjusted according to the requirements of the application. This makes it suitable for use in various industrial and commercial applications. The 66101-500 peltier module comes with two plates made of thermally conductive material, which are connected to a heat sink. The module also features an adjustable thermistor and a temperature sensor.Application Field for the 66101-500The 66101-500 thermoelectric module can be used for various temperature related applications, such as cooling and heating, and in some cases, can be used to control the temperature of a specific environment efficiently. It is suitable for applications where precise temperature control is required, such as in laboratories, foodservice, and manufacturing facilities. In addition to this, the 66101-500 can be used to regulate temperatures in medical equipment, as well as in various consumer electronics and automotive components.Working Principle of the 66101-500The 66101-500 uses the peltier effect to regulate temperature. The peltier effect is the process where two different metals are connected together, and when there is a current flow between them, heat is transferred. This process can be used to both cool and heat an object. When a direct current is passed through the plates of the 66101-500 module, the heat exchange between the two plates is controlled by the heat sink.The heat sink absorbs the heat generated and dissipates it, cooling the plates and thus the surrounding environment. Conversely, when a current is passed in the opposite direction, the heat sink absorbs the cold temperatures from the plates and thereby heats the surrounding environment. This capability makes the 66101-500 ideal for temperature related applications.ConclusionThe 66101-500 thermoelectric peltier module is a highly efficient, reliable, and cost-effective cooling system that can be used for various temperature related applications. It is capable of regulation temperatures as high as 125°C and as low as -55°C and is suitable for industries such as laboratories, foodservice, and manufacturing. The 66101-500 operates based on the peltier effect, which is the process of two different metals exchanging heat when a current is passed through them. The heat sink of the 66101-500 is used to regulate this heat exchange, thus controlling the temperature of the surrounding environment.

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