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MY Aluminum Housing Capacitor Run Single Phase Motor

Model
Nature of the Manufacturer
Other
Product Category
Asynchronous Motor
Place of Origin
City, Province
Overview
MY aluminum housing capacitor run single phase motor is made of selected quality materials and conform to the IEC standard.
Product Details

Product Introduction

MY aluminum housing capacitor run single phase motor is made of selected quality materials and conform to the IEC standard. MY motors have features of good performance, low noise, little vibration and safety and reliable operation. The multiple of starting torque is 0.3-0.7 (MY), 0.45-0.75 (MYT). MY motors are suitable for the occasion where there requirements of starting torque is low and long-term continuous working, such as home electric appliances, pumps, fans, and recording meters, etc.


Product Detail



Motor Type: MY aluminum housing capacitor run single phase motor

Output Power: 0.06 kW - 3 kW

Frame Size: IEC 56 - 100

Number of Poles: 2 and 4

Voltage: 220V / 230V / 240V (can design based on customers` requirements)

Frequency: 50 or 60 Hz

Protection Level: IP54 or IP55

Insulation Class: B / F

Cooling Method: ICO141

Working Duty: Continuous (S1)


Product Parameter (Specification)



MY aluminum housing capacitor run single phase motor

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Production Features


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Know More Us


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Why Us


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Service and Packing


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FAQ



Why do single-phase motors use capacitors to start?

Why do single-phase motors use capacitors to start? In this article, the editor of LIYUAN Motor will give you an analysis.


A three-phase motor consists of a stator and a rotor. When the stator winding is energized, a rotating magnetic field is generated. Because the phase difference between any two phases of the three-phase power supply is 120, when the stator core is connected to the three-phase power supply, three phases are generated in the winding Electric current, which generates a rotating magnetic field.


Then the rotating magnetic field cuts the rotor copper bar again, which generates an induced electromotive force and therefore an induced current. At this time, the induced current interacts with the magnetic field to generate electromagnetic force, and then electromagnetic torque is generated. Therefore, when the electromagnetic torque is greater than the load carried by the motor, it will rotate.