414/2 Allicdata Electronics
Allicdata Part #:

381-2665-ND

Manufacturer Part#:

414/2

Price: $ 14.95
Product Category:

Fans, Thermal Management

Manufacturer: ebm-papst Inc.
Short Description: FAN 24VDC 40X20MM TACH
More Detail: N/A
DataSheet: 414/2 datasheet414/2 Datasheet/PDF
Quantity: 34
1 +: $ 13.58280
10 +: $ 12.96540
25 +: $ 11.73060
50 +: $ 10.80450
100 +: $ 9.69318
250 +: $ 8.95230
500 +: $ 8.33490
Stock 34Can Ship Immediately
$ 14.95
Specifications
Power (Watts): 1.00W
Lifetime @ Temp.: 50000 Hrs @ 20°C
Material - Blade: Polyamide (PA), Nylon, Fiberglass Reinforced
Material - Frame: Polybutylene Terephthalate (PBT), Fiberglass Reinforced
Voltage Range: 20 ~ 28VDC
Current Rating: --
Weight: 0.06 lb (27.22g)
Approvals: CSA, UL, VDE
Operating Temperature: -4 ~ 158°F (-20 ~ 70°C)
Ingress Protection: --
Termination: 3 Wire Leads
RPM: 6000 RPM
Series: 400
Noise: 18.0 dB(A)
Features: Speed Sensor (Tach)
Fan Type: Tubeaxial
Bearing Type: Sintec
Static Pressure: --
Air Flow: 5.9 CFM (0.165m³/min)
Width: 20.00mm
Size / Dimension: Square - 40mm L x 40mm H
Voltage - Rated: 24VDC
Part Status: Active
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

DC Fans are electric devices used for the rotation of blades to generate air movements that can be used for cooling or ventilation. The use of DC fans for this purpose has become popular due to their small size, relatively low cost, energy efficiency, and wide range of speed options. A DC fan usually consists of two sets of blades, an electric motor, and a driver circuit.

414/2 DC fans are a type of DC fan specifically designed to provide high airflow by using two motors for the same fan. This type of fan operates in a similar way to a single-motor DC fan, but the two motors work together to move more air in a fraction of the time. This allows for a more efficient cooling solution, as well as increased air circulation, which is important for some applications.

The applications for 414/2 DC fans include providing air circulation in air conditioners, cooling stereos and other electronics, and as a ventilation solution in industrial settings. In addition to these applications, the fans can also be used to move hot air away from overheated equipment or spaces, or as a way to move cold air to cool down a room. The fans can also be used in the production of electrical power to move heat away from electrical components. The fans are also commonly used in medical facilities, to bring fresh air into operating rooms, or to keep a room cool.

The working principle of 414/2 DC fans involves the use of two motors connected to a single fan. The motors work in tandem to create a higher air movement than a single motor, resulting in a higher air flow rate. The fans typically use a combination of direct current (DC) and alternating current (AC) to move the air. The AC motor is responsible for providing power to drive the fan, while the DC motor is used to control the speed at which the fan operates. This allows the user to adjust the speed of the fan in order to meet their particular needs and requirements.

In order to achieve optimal performance, the fan must be properly configured to the exact requirements of the application for which it is being used. This means that the speed and air volume must be adjusted to meet the specific needs of the application. Depending on the environment, the fan should also be mounted in the exact position necessary to ensure that all air flows through the fan efficiently.

414/2 DC fans are an excellent solution for cooling applications that require high airflow or ventilation. They are also cost effective and energy efficient, making them an ideal choice for applications that require low operating costs. Furthermore, the fans are easy to install and maintain, making them suitable for use in areas with limited access. Moreover, the fans can be configured to provide the exact speed and airflow necessary to meet the requirements of the application, ensuring that the users receive the most efficient cooling or ventilation possible.

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

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