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220V 0.75A AC Vacuum Cleaner Motor 1600W Motor For Cleaning Machine

Shenzhen Go-Gold Motor Co., Ltd.

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Address: No. 2 Funing, Zhengcheng 1st Road, Xintian community, Fuhai street, Baoan District, Shenzhen City, China

Contact name:JOHN CAO

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220V 0.75A AC Vacuum Cleaner Motor 1600W Motor For Cleaning Machine

Country/Region china
City & Province shenzhen
Categories Chains
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Product Details

Vacuum Cleaner Motor 220V 0.75A 1600W AC Motor For Cleaning Machine

Packaging & delivery

 

Port: SHENZHEN

Lead time:

Quantity(pieces)1 - 10001001 - 10000>10000
Lead time (days)1530To be negotiated

 

 

Drawings

 

 

Performance Specifications

 

Warranty: 3 Years

Place of Origin: Guangdong, China

Brand Name: GO-GOLD

Model Number: KG-PH25-1600

Usage: Vacuum Cleaner

Type: AC Motor

 

Torque: 10kg.f

Commutation: AC

Protect Feature: Totally Enclosed

Speed: 33000RPM

Efficiency: 36%-6%

Product Name: AC Cleaner Machine Motor

 

 

Motor Picture

 

The Advantages of AC motors


1. High efficiency: AC motors have high efficiency and can convert electrical energy into mechanical energy with high efficiency.


2. Wide frequency range: The operating speed of AC motors can be adjusted within a certain range to meet different working requirements.


3. High starting torque: AC motors have a large starting torque and are suitable for applications that require a high starting torque.


3. Low maintenance cost: AC motors are usually structurally simple, easy to maintain, and have lower maintenance costs.

 

 

The working principle of AC motors involves the phenomenon of electromagnetic induction and the effect of Lorentz force. It is a device that converts electrical energy into mechanical energy and is widely used in various electric equipment and industrial machinery. An AC motor consists of two parts: a stator and a rotor. The stator is a fixed part, while the rotor can rotate. The stator is composed o.f a set of coils wound around the iron core, and the wires in the coils are usually referred to as windings. The wires in the winding form one or more coils, which are called stage coils, and the number of wires in each stage coil is equal. The rotor is connected to an iron core by one or more windings. During operation, an external power source is applied to the stator winding to generate a changing magnetic field. This alternating magnetic field changes with the change of current.

 

 

Operational Principle


The working principle of AC motors is based on Faraday's law of electromagnetic induction and Lorentz's law of force. When direct current passes through a pair of coils, they generate a constant magnetic field, and according to Faraday's law of electromagnetic induction, when a conductor moves in a magnetic field, an electromotive force is generated inside the conductor. Using this principle, an AC motor places a coil inside the stator of the motor, known as the "stator winding", while winding a coil around the rotor of the motor, known as the "rotor winding".


1. Starting stage: When the current passes through the stator winding, the winding generates a rotating magnetic field, causing the current in the rotor winding. Due to the interaction between the magnetic field of the coil on the rotor and the stator winding, an electromagnetic force is formed on the rotor, causing it to start rotating.


2. Operation phase: Once the rotor begins to rotate, the motor will enter the operation phase. At this stage, the magnetic field of the stator winding will continue to rotate, while the current of the rotor winding will continue to rotate with the action of the rotating magnetic field. Due to the continuous changes in AC current, the motor will maintain continuous rotational motion. 3. Stop stage: When the power is turned off, the current in the stator winding will stop and the magnetic field of the stator will gradually disappear. Due to a lack of power, the rotor will stop rotating.

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