Allicdata Part #: | 3106KL-04W-B30-B00-ND |
Manufacturer Part#: |
3106KL-04W-B30-B00 |
Price: | $ 5.59 |
Product Category: | Fans, Thermal Management |
Manufacturer: | NMB Technologies Corporation |
Short Description: | FAN AXIAL 80X15MM 12VDC WIRE |
More Detail: | N/A |
DataSheet: | 3106KL-04W-B30-B00 Datasheet/PDF |
Quantity: | 1000 |
120 +: | $ 5.08614 |
Series: | 3106KL |
Part Status: | Active |
Voltage - Rated: | 12VDC |
Size / Dimension: | Square - 80mm L x 80mm H |
Width: | 15.00mm |
Air Flow: | 23.3 CFM (0.652m³/min) |
Static Pressure: | 0.064 in H2O (16.0 Pa) |
Bearing Type: | Ball |
Fan Type: | Tubeaxial |
Features: | -- |
Noise: | 26.0 dB |
Power (Watts): | 1.32W |
RPM: | 2200 RPM |
Termination: | 2 Wire Leads |
Ingress Protection: | -- |
Operating Temperature: | 14 ~ 140°F (-10 ~ 60°C) |
Approvals: | -- |
Weight: | 0.111 lb (50.35g) |
Current Rating: | 0.110A |
Voltage Range: | 6 ~ 13.8VDC |
Material - Frame: | Plastic |
Material - Blade: | Plastic |
Lifetime @ Temp.: | 70000 Hrs @ 25°C |
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 commonly used in applications ranging from aeronautics and aerodynamic transport technologies to consumer and industrial cooling solutions. The 3106KL-04W-B30-B00 model is a versatile and dependable DC fan that is ideal for applications that require a fan for cooling or ventilation. It features a high-speed cooling motor and durable construction. The 3106KL-04W-B30-B00 model has different features depending on the purpose of its use. Let us take a closer look at the application field and working principle of the 3106KL-04W-B30-B00 DC fan.
Application Field
The 3106KL-04W-B30-B00 model can be used in a variety of settings ranging from industrial to residential environments. It is commonly used in the fields of electric power plants, control systems, and battery cooling. It is an efficient cooling and ventilation system as it can circulate air to cool components of a system or to create a comfortable environment for people.
This model of DC fan can be used for both exhaust and intake applications. By using intake fans, warm air is removed from an area or object, such as a laptop, TV, and other appliances. On the other hand, exhaust fans serve to create a vacuum within the target system or area, ensuring that no air build up is experienced and providing greater cooling efficiency. Furthermore, the fan can be fitted to an air purification system to improve overall air quality within the target area.
Working Principle
The 3106KL-04W-B30-B00 is a high-speed DC fan that uses an electric motor as the primary power source to rotate its blades and create airflow. This model of fan utilizes a unique blade system which increases the efficiency of airflow. This allows the fan to move a greater amount of air while consuming less power than a regular fan.
The motor of the fan is powered by a direct current (DC) voltage source. The operation of the fan is based on the principles of electromagnetism. When the electric motor is powered, magnetism is created around the armature. This magnetism causes the blades of the fan to rotate and produces a forced airflow. The faster the electric motor is powered, the faster the fan blades will rotate and the greater the amount of airflow that will be produced.
The 3106KL-04W-B30-B00 model is equipped with a differential pressure switch that enables it to attain greater airflow accuracy. This switch continually monitors the air pressure and automatically adjusts the rotation speed of the fan to maintain a specified pressure and airflow. This improved accuracy helps in preventing electrical and mechanical overloads as well as ensuring the optimal operation of the fan.
Overall, the 3106KL-04W-B30-B00 DC fan is a highly efficient cooling and ventilation system. It is suitable for a range of applications and offers improved accuracy and reliability. This fan is an effective cooling solution for industrial and residential settings as it can accurately deliver a specified amount of airflow while consuming less energy.
The specific data is subject to PDF, and the above content is for reference
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