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240V AC Vacuum Cleaner Motor 1600W 37Kpa Low Noise Go-Gold
  • 240V AC Vacuum Cleaner Motor 1600W 37Kpa Low Noise Go-Gold
  • 240V AC Vacuum Cleaner Motor 1600W 37Kpa Low Noise Go-Gold
  • 240V AC Vacuum Cleaner Motor 1600W 37Kpa Low Noise Go-Gold

240V AC Vacuum Cleaner Motor 1600W 37Kpa Low Noise Go-Gold

Place of Origin China
Brand Name Go-Gold
Certification ISO
Model Number KG-107106DC240
Product Details
Warranty:
3Years
Max Vacuum Degree:
≥27Kpa
Noise:
≤98dB A
Spark:
≤2
Brand Name:
Go-Gold
Max Airflow:
≥3m³/min
High Light: 

240V AC Vacuum Cleaner Motor

,

AC Vacuum Cleaner Motor 1600W

Payment & Shipping Terms
Minimum Order Quantity
1000pcs
Price
Negotiation
Packaging Details
Paking in boxes
Delivery Time
7days for samples
Payment Terms
L/C, T/T, Paypal
Supply Ability
10000pcs-30days
Product Description

Vacuum Cleaner Motor 240V 1600W 37Kpa AC Motor Low Noise Go-Gold

 

Lead Time

 

Quantity(pcs) 1-1000 1001-10000 >10000
Lead Time(days) 15 30 To be negotiation

 

 

Motor Details

Warranty: 3Years


Place of Origin: Guangdong, China


Brand Name: Go-Gold


Model Number: KG-107106DC240

 

Usage: Vacuum Cleaner


Commutation: AC


Product Name: Vacuum Cleaner Motor AC Motor
 

Certification: ISO

Rated Voltage: 240V/ Customized


Keywords: Vacuum Cleaner Motor


Noise: Low

 

 

Performance Specifications

 

Input Power 1600W Spark ≤2
Max Vacuum Degree ≥27Kpa Noise ≤98dB A

 

 

Motor Pictcure

 

240V AC Vacuum Cleaner Motor 1600W 37Kpa Low Noise Go-Gold 0

 

 

About AC Motor Speed Control

 

Applications of AC Motors are mainly involved in industrial areas where these motors are required to control heavy machines. In power plants, AC Motors must be controlled when timeliness and accuracy are important to the operation. Therefore, a variety of techniques can be used to control the frequency and speed of AC Motors.

 

There are several techniques for controlling the speed of an AC Motor, such as changing the number of poles in very small increments, changing the slip of the motor, and changing the frequency of the AC signal.

 

From the above technology, changing poles is not often used because frequent control is not efficient.


And AC Motors are mainly designed for high slip, and another technique is mainly used, such as changing the rotor slip of the motor. So by using this technology, this motor should act like an electrical load. So when the power changes, the load speed also changes. Furthermore, such loads must include a large inertia component.

 

The most common technique for controlling AC Motor speed is to vary the motor's frequency. By using this technology, the motor speed can be varied using a variable speed AC motor drive, which is known as a VFD (Lift frequency drive), ASD (Adjustable Speed Drive) or AC inverter.

Variable inverter, PWN or vector flux is used to regulate AC frequency, where the variable electric inverter basically changes the power source from AC to DC and then switches to reproduce the sine wave. By using PWM technology, the DC voltage quickly becomes the equivalent "area under the curve".

 

By considering these AC Motor speed control techniques, power plants can be designed that use AC motors to power fans, pumps, etc. But these applications require precision to operate efficiently. The easy way is to install a consistent AC drive, which is primarily designed to precisely control motor speed.

 

These methods can be used in different control settings so that the speed can be easily controlled to meet the requirements of the application. The main benefits of AC Motor speed regulation are that the operation of the machine can be controlled smoothly, the speed can be controlled, the productivity can be adjusted, and energy can be saved.

 

 

Precautions for selection


When selecting an AC motor, the following factors need to be considered:

 

  • Be aware of the power requirements, an AC motor should not be driven through its load as it may get injured.

 

  • We must provide a suitable cooling mechanism because the motor generates a lot of heat.

 

  • To avoid malfunctions, a dry and clean area must be provided for the AC motor.

 

  • The motor part may be outgassed, so it should be replaced by inspecting the parts.

 

  • The insulation should be checked from time to time to avoid damaging the insulation by applying low test voltage. AC motor bearings and rotors need to be verified to lubricate the motor bearings.

 

  • The motor should be selected according to the starting torque.

 

  • Starting torque should be considered.

 

  • Efficiency and pull-out torque are an important factor.

 

  • Power factor must be considered.

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