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  • ABB IPFAN13 MPSII Fan Module 125VDC
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  • ABB IPFAN13 MPSII Fan Module 125VDC

    110V-380V
    5W-130W
    1A-30A
    1 year
    30
    United States, France, Japan, Viet Nam, Australia, Russia, Germany, Italy, Arabia
    IPFAN13 MPSII Fan Module 125VDC
    • ¥4588.00
      ¥14088.00
      ¥4588.00
      ¥4588.00
    • Satisfaction:

      Sales: 0

      Review: 0

    Weight:2.000KG
    • Quantity:
    • (Inventory: 2)
Description
IPFAN13 MPSII Fan Module 125VDC

ABB IPFAN13 MPSII Fan Module 125VDC

Technical Parameters

Electrical Parameters

Working voltage range: Generally the working voltage range is wide, for example, it can work between 12V - 48V direct current (DC), so that it can adapt to different power supply environment. Different operating voltage may affect the fan speed and airflow, users can choose the appropriate voltage according to the actual needs.

Power Consumption: Power consumption is usually between 10 - 50 watts (W), depending on the fan model, speed and load. Lower power consumption helps to reduce the overall energy consumption of the device and also reduces the pressure on the power supply.

Performance Parameters

Airflow range: As mentioned earlier, the airflow range is generally around 100 - 500m³/h, which is one of the most important indicators of a fan's cooling capacity. The airflow is affected by factors such as fan diameter, speed and blade shape.

Speed range: The speed range may be between 1000 - 3000 revolutions per minute (rpm), which directly determines the airflow and noise level. Users can choose the appropriate speed according to the cooling needs and noise limitations of their equipment.

Noise level: Measured at a distance of 1 meter from the fan, the noise level is usually between 30 - 50dB, which meets the requirements of most industrial environments and indoor equipment.

Mechanical Parameters

Dimensions: The dimensions of the fan vary according to the specific model, and may range from 100 - 200 millimeters (mm) in diameter and 30 - 80 mm in thickness. The dimensions take into account the balance between installation space and cooling efficiency, allowing for easy installation in a wide range of equipment.

Mounting holes and dimensions: Standard mounting holes and dimensions are provided for easy installation with common screws or clips. Mounting hole spacing and diameters are in accordance with industry standards, for example, mounting hole spacing may be 80 - 160mm and diameters 4 - 6mm.

Application Scenarios

Power system equipment cooling

Power module cooling: Used as a heat sink in various ABB power modules such as the IPFLD series power modules. When the power module will generate heat when working, IPFAN14 fan can introduce cold air into the module to take away the heat, ensure that the power module works within the normal temperature range, and improve the reliability and stability of the power module.

Control cabinet heat dissipation: Used for heat dissipation of power control cabinet. The control cabinet is equipped with a variety of electrical components, such as relays, contactors, controllers, etc., which generate heat during the working process. By installing IPFAN14 fans in the control cabinet, a well ventilated environment can be formed to prevent the temperature inside the control cabinet from getting too high, and to avoid component damage and failure caused by high temperature.

Heat dissipation in industrial automation equipment

PLC (Programmable Logic Controller) Cooling: In industrial automation production line, PLC is the core equipment for control, and its work will generate a certain amount of heat, IPFAN14 fan can be installed in the cabinet or shell of PLC, to provide heat dissipation support for PLC, to ensure the normal operation of PLC, so as to ensure the stable operation of the production line.

Servo drive cooling: Servo drives are used to control the movement of motors and will generate heat during the working process. The fan can dissipate heat for the servo drive to prevent its performance from deteriorating or malfunctioning due to overheating, ensuring precise control of the motor and efficient operation of industrial automation equipment.


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