NL3021T-01AC Allicdata Electronics
Allicdata Part #:

1681-1043-ND

Manufacturer Part#:

NL3021T-01AC

Price: $ 28.44
Product Category:

Fans, Thermal Management

Manufacturer: Marlow Industries, Inc.
Short Description: MULTISTAGE TEM 6.6X6.6X5.38MM
More Detail: Peltier Module 6.60mm x 6.60mm x 5.38mm 0.3W @ 27°...
DataSheet: NL3021T-01AC datasheetNL3021T-01AC Datasheet/PDF
Quantity: 1
1 +: $ 25.59690
5 +: $ 23.97780
10 +: $ 23.39000
25 +: $ 22.65430
50 +: $ 22.06580
100 +: $ 21.47730
Stock 1Can Ship Immediately
$ 28.44
Specifications
Series: NL3021T
Part Status: Active
Outline L x W x H: 6.60mm x 6.60mm x 5.38mm
Qmax @ Th: 0.3W @ 27°C
Delta Tmax @ Th: 96°C @ 27°C
Current - Max: 1.3A
Voltage - Max: 1.9V
Resistance: 1.42 Ohms
Operating Temperature: 85°C
Features: Exterior Metallization (Both Sides), Lead Wires
Description

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Thermal - Thermoelectric, Peltier Modules
NL3021T-01AC
The NL3021T-01AC is a Peltier module which has applications within the field of thermoelectric cooling and heating. The NL3021T-01AC is able to generate a temperature difference of up to 70K(227 degree Fahrenheit) between its sides when powered. It has a voltage of 12V, a current of 4A, and a power consumption of 48W. This Peltier module is able to produce cold temperatures ranging from -50 Fahrenheit up to approximately 140 Fahrenheit when powered with the appropriate power supply. Additionally, it is capable of producing thermal insulation rates of up to 80 percent.
Working Principle
The NL3021T-01AC operates using thermoelectric cooling principles. The device consists of a thermoelectric module made up of two ceramic plates with a metal layer between them. Heat is absorbed from the bottom side and then flows to the top side of the module. As electrons flow through the metal layers, an electrical current is created. This electrical current creates a thermal gradient which then produces a voltage potential between the plates of the module. This voltage can then be used to power a fan or other cooling device. When the NL3021T-01AC is placed between two heated surfaces, it will create a thermal gradient between the two surfaces. This thermal gradient then causes electrons to flow through the metal layer, thereby creating an electrical current. The electrical current then creates a voltage potential between the two ceramic plates as well as a temperature difference between the two surfaces. A number of factors affect the rate of heat transfer provided by the NL3021T-01AC. These include the thermal conductivity of the module, the surface area of each plate in the module, the voltage applied across the module, and the temperature difference between the two surfaces. Heat absorption and transfer rate can also be affected by the physical arrangement of the module, such as whether the module is placed flat or if it is mounted vertically.
Application Field
The NL3021T-01AC is suitable for use in a variety of applications. It can be used to cool electronics, provide thermal insulation, heat a small area quickly, or maintain consistent temperatures in certain environments. Its compact size makes it ideal for applications where spatial constraints are a key factor, such as in medical, automotive, or industrial applications. It is also highly efficient and reliable, making it suitable for long-term use. The NL3021T-01AC can also be used in combination with other system components to create a complete thermoelectric cooling solution. For example, the module can be combined with a fan, a heat sink, and a power supply in order to create a complete thermoelectric cooling system. The heat sink is necessary in order to dissipate any heat that is not absorbed by the module, while the fan is necessary in order to provide air circulation to ensure maximum cooling performance. The NL3021T-01AC is an ideal thermoelectric module for a variety of applications. Its small size and efficient operation make it well-suited for a wide variety of applications from industrial and medical applications to consumer electronics. Its ability to produce cold temperatures, generate electrical currents, and provide thermal insulation make it an invaluable tool in the field of thermoelectric cooling.

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

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