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Electric Fan Motor 220V/50Hz 2345RPM For Ventilating Machine GO-GOLD

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Electric Fan Motor 220V/50Hz 2345RPM For Ventilating Machine GO-GOLD

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Brand Name :GO-GOLD
Model Number :KG-6025-001
Certification :ISO
Place of Origin :China
MOQ :1000PCS
Price :Negotiation
Payment Terms :L/C, T/T, Paypal
Supply Ability :10000pcs-30days
Delivery Time :7days for samples
Packaging Details :Packing in boxes
onload Current :0.25A
onload Power :30W
Direction Of Ratation :CCW
Rated Voltage :220V/50Hz
onload Speed :Ventilating Machine
Application :Ventilating Machine
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Electric Fan Motor 220V/50Hz 2345RPM For Ventilating Machine GO-GOLD​

Essential Details

Model Number: KG-6025-001

Rated Voltage: 220V/50Hz


onload Speed: 2345RPM

onload Power: 30W

onload Current: 0.25A

Place of Origin: Guangdong, China

Type: Shaded Pole Motor


Application: Ventilating Machine


Direction Of Ratation: CCW

Warranty: 3 Years

Product Description

onload Current 0.25A Rated Voltage 220V/50Hz
onload Power 30W onload Speed

2345RPM

Lead Time

Quantity 1-1000 1001-10000 ≥10000
Lead days 15 30 To be negotation

Sample

Electric Fan Motor 220V/50Hz 2345RPM For Ventilating Machine GO-GOLD

Application

Electric Fan Motor 220V/50Hz 2345RPM For Ventilating Machine GO-GOLD

Fan, also known as ventilating machine, is a kind of motor (or rotary machinery) that uses a rotating impeller to convert electrical energy (or mechanical energy) into gas potential energy and kinetic energy, which is used to transport air and its mixture of power machinery and maintain the continuous flow of air or other gases.

Why Magnetic Axis Shift Takes Place For Shaded Pole Motor?

Why the axis shift occurs when current is passed through the winding and how the shading coil aids in producing the shift.The current carried by stator winding produces alternating flux. The distribution of flux through the poles is greatly influenced by the shading coils. When the alternating current through the coil increases, it induces a current in the shading coil. The direction of current in shading coil is such as to oppose the cause producing it (from Lenz law).

The cause is the alternating current. So the flux in the shading coil decreases and it opposes the main flux. Hence the flux mostly crowds or shifts towards the unshaded part of the pole. So the magnetic axis lies along the middle of the unshaded part.

Now consider that the alternating current has reached its peak (or) somewhere near the peak. Here the rate of change of current is low, as it has already reached the peak (or) it is very close to peak value. Since the change is current is so small, the induced current at shading ring is also small and negligible. So the shading ring does not affect the distribution of main flux. The flux is distributed uniformly and the magnetic axis lies at the center of pole face.The magnetic axis is denoted as ND in the picture.

The alternating current, after reaching the peak starts to decrease rapidly and in turn decreases the main flux. The change in current induces a current in shading coil. According to Lenz law the direction of this current is so as to oppose the cause producing it (the decreasing alternating current). So the flux in shading coil opposes the decrease in main flux and strengthens it. This increases the strength of main flux in the shaded part. SO the magnetic axis shifts itself to the middle part of shaded pole.

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