DV5212/2N-184 Allicdata Electronics
Allicdata Part #:

DV5212/2N-184-ND

Manufacturer Part#:

DV5212/2N-184

Price: $ 68.03
Product Category:

Fans, Thermal Management

Manufacturer: ebm-papst Inc.
Short Description: FAN 12V 127X127X38MM OC TACH
More Detail: N/A
DataSheet: DV5212/2N-184 datasheetDV5212/2N-184 Datasheet/PDF
Quantity: 1000
25 +: $ 61.84080
Stock 1000Can Ship Immediately
$ 68.03
Specifications
Power (Watts): 9.00W
Lifetime @ Temp.: --
Material - Blade: Polyamide (PA), Nylon, Fiberglass Reinforced
Material - Frame: Polybutylene Terephthalate (PBT), Fiberglass Reinforced
Voltage Range: --
Current Rating: 2.1A
Weight: --
Approvals: CE, CSA, UL, VDE
Operating Temperature: --
Ingress Protection: --
Termination: 3 Wire Leads
RPM: --
Series: DV5200
Noise: --
Features: Speed Sensor (Tach)
Fan Type: Tubeaxial
Bearing Type: Ball
Static Pressure: --
Air Flow: 158.9 CFM (4.45m³/min)
Width: 38.00mm
Size / Dimension: Square - 127mm L x 127mm H
Voltage - Rated: 12VDC
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

Introduction to DC Fans

DC Fans are the basic type of cooling solutions, typically used in most electronics applications and feature a wide range of designs. They are made up of a few components, including a DC motor, an impeller, and a wind tunnel blower. DC Fans are widely used and can be used for a variety of applications such as residential cooling, commercial cooling, automotive cooling, and industrial cooling.

DV5212/2N-184 Application Field and Working Principle

The DV5212/2N-184 is a type of DCFan, used for industrial cooling. It is specifically designed for use in high-demanding applications such as HVAC systems, mining, and maritime cooling.This fan features an aluminum impeller and has a maximum air flow of 48 m3/h and a maximum static pressure of 7.8mm H2O. It operates at a voltage of 24V to 48V DC and is designed to be used in temperatures ranging from -30°C to +100°C.The DV5212/2N-184 is the result of years of research and development to provide a superior cooling solution for high-demand applications. It has an optimal Design and high efficiency, allowing it to work in the most demanding environments.The working principle of the DV5212/2N-184 is based on the Bernoulli Principle, also known as the Venturi effect. This effect occurs when a fluid, such as air, is forced to move through an opening of decrease cross-sectional area. This decrease in cross-sectional area creates a vacuum effect, which causes an increase in the speed of the air flowing through the opening. In the case of the DV5212/2N-184, the decrease in cross-sectional area is caused by the angular shape of the blades. As the blades rotate, they create this vacuum effect, which forces more air through the impeller, thereby increasing air flow.At the same time, the increased air flow creates static pressure, allowing the fan to push against any resistance that the air meets while moving through the impeller. This increase in static pressure allows the fan to be used in applications where additional cooling power is required.

Conclusion

The DV5212/2N-184 is a type of DC Fan, designed for industrial cooling. It operates on a voltage of 24V to 48V DC and is designed for temperatures ranging from -30°C to +100°C. The fan features an aluminum impeller and a maximum air flow of 48 m3/h and a maximum static pressure of 7.8mm H2O. The working principle of the DV5212/2N-184 is based on the Bernoulli Principle, also known as the Venturi effect. This effect occurs when the blades of the fan rotate, creating a vacuum effect, which increases the speed of the air flowing through the impeller. This increase in speed of the air creates static pressure, allowing the fan to be used in applications where additional cooling power is required. The DV5212/2N-184 is an ideal cooling solution for commercial, residential, automotive, and industrial applications due to its superior design and high efficiency.

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

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