109BC12FC7-1 Allicdata Electronics
Allicdata Part #:

109BC12FC7-1-ND

Manufacturer Part#:

109BC12FC7-1

Price: $ 0.00
Product Category:

Fans, Thermal Management

Manufacturer: Sanyo Denki America Inc.
Short Description: DC BLOWER 52X15MM TACH
More Detail: N/A
DataSheet: 109BC12FC7-1 datasheet109BC12FC7-1 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Power (Watts): 960mW
Lifetime @ Temp.: Varies Based on Temperature
Material - Blade: Plastic
Material - Frame: Plastic
Voltage Range: 6 ~ 13.8VDC
Current Rating: 0.080A
Weight: 0.073 lb (33.11g)
Approvals: CSA, TUV, UL
Operating Temperature: -4 ~ 158°F (-20 ~ 70°C)
Ingress Protection: --
Termination: 3 Wire Leads
RPM: 5100 RPM
Series: San Ace B52
Noise: 38.0 dB(A)
Features: Locked Rotor Protection, Speed Sensor (Tach)
Fan Type: Blower
Bearing Type: Ball
Static Pressure: 0.520 in H2O (129.5 Pa)
Air Flow: 3.6 CFM (0.101m³/min)
Width: 15.00mm
Size / Dimension: Square/Rounded - 51mm L x 52.6mm H
Voltage - Rated: 12VDC
Part Status: Active
Description

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DC Fans

DC Fans are the most common type of electric motor used in machines. They can provide power, speed, and directional control all in one unit. DC fans are used in a wide array of applications, ranging from industrial and medical technology, consumer electronics, and aerospace applications. This article will discuss the application field and working principle of the 109BC12FC7-1 DC Fan.

One application field of the 109BC12FC7-1 is electric vehicles. This fan offers reliability and opportunity to increase efficiency during driving. It is through its improved aerodynamics that the fan can reduce air drag and improve the overall aerodynamics of the vehicle and its aerodynamic performance. The fan has a large fan blade diameter of 12 inches (305 mm) and a low power consumption of less than 400 watts, making it an ideal choice for electric vehicles.

The 109BC12FC7-1 can also be used in robotics and automation systems. This fan is an important component of robotic arms and automation systems, allowing them to operate with power and speed. It has a wide range of speeds and can provide a reliable and efficient source of electric power. The fan also features an energy-saving operation, making it ideal for robotics and automation systems.

The 109BC12FC7-1 applies to industrial, medical, and aerospace applications. This fan can handle high temperatures, and has a high resistance to vibration and shock, making it ideal for such applications. The fan also offers high power performance with its low power consumption, allowing for efficient operation and energy saving.

The working principle of the 109BC12FC7-1 is simple. It uses an electromechanical principle to generate a steady flow of air. This is achieved through the transfer of electric energy to a rotating fan blade. The fan blade works to generate a pressure differential, which is further amplified by a variety of physical factors. This differential pressure is then used to create airflow across a given area.

The fan blade spins when electrical energy is applied to the motor. As the fan blade spins, it generates a flow of air that enters the working space through the inlet and exits through the outlet. In order to maintain a pressure differential, the fan is often attached to a heat exchanger or any other cooling device. This cooling device dissipates the dissipating heat and prevents overheating of the fan.

In conclusion, the 109BC12FC7-1 is a powerful and efficient fan that can be used in a variety of applications. Its low power consumption and wide range of speeds makes it an ideal choice for electric vehicles, robotics and automation systems, as well as industrial, medical, and aerospace applications. The working principle of the fan is also quite simple, allowing it to generate a steady flow of air and maintain a pressure differential for efficient operation.

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

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