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18v Brushless DC Motor 0.35A Dc Brushless Fan Motor 24v 18000RPM
  • 18v Brushless DC Motor 0.35A Dc Brushless Fan Motor 24v 18000RPM
  • 18v Brushless DC Motor 0.35A Dc Brushless Fan Motor 24v 18000RPM

18v Brushless DC Motor 0.35A Dc Brushless Fan Motor 24v 18000RPM

Place of Origin China
Brand Name Go-Gold
Certification ISO
Model Number KG-3160
Product Details
Commutation:
Brushless
Speed(RPM):
18000+10%RPM
Direction Of Rotation:
CCW
Torque:
Customized
Rated Voltage:
24V
Load Current:
0.35A
High Light: 

18v Brushless DC Motor

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Brushless DC Motor 0.35A

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0.35A Dc Brushless Fan Motor 24v

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

Brushless DC Motor General Fan 18V Load Speed 18000RPM Go-Gold

Outer dimensions

18v Brushless DC Motor 0.35A Dc Brushless Fan Motor 24v 18000RPM 0
 
 

Packaging & delivery

 

Port:SHENZHEN

Lead time:

Quantity(pieces) 1 - 1000 1001 - 10000 >10000
Lead time (days) 15 30 To be negotiated

 

 

Essential details

Warranty:3years
Place of Origin:Guangdong, China
Brand Name:Go-Gold
Model Number:KG-3160
Usage:Boat, car, electric bicycle, fan, home appliance, cosmetic instrument, smart home, electric fan
Type:Brushless Motor
Torque:Customised
Construction:Permanent Magnet
Commutation:Brushless
Protect Feature:Totally Enclosed
Speed(RPM):18000RPM
Continuous Current(A):Customised
Efficiency:Other
Product Name:Brushless Dc Electric Motor
Motor type:BLDC Brushless Motor
Certification:CCC Ce RoHS
Rated Voltage:24V/custom Made
Keywords:Brushless Electric Motor
Noise:Low
Material:Cooper Wire
Weight:0.5kg
 
Rated Speed:Load Speed 18000rpm
 

Picture

 

18v Brushless DC Motor 0.35A Dc Brushless Fan Motor 24v 18000RPM 118v Brushless DC Motor 0.35A Dc Brushless Fan Motor 24v 18000RPM 2

 

 

A BLDC motor uses a simplified structure with trapezoidal stator windings.

 

Rotor A rotor consists of a shaft and a hub with permanent magnets arranged to form between two to eight pole pairs that alternate between north and south poles. Figure 6 shows cross sections of three kinds of magnets arrangements in a rotor. There are multiple magnet materials, such as ferrous mixtures and rare-earth alloys. Ferrite magnets are traditional and relatively inexpensive, though rare-earth alloy magnets are becoming increasingly popular because of their high magnetic density.

 

There are three classifications of the BLDC motor: single-phase, two-phase and three-phase.

 

This discussion assumes that the stator for each type has the same number of windings. The single-phase and three-phase motors are the most widely used. Figure 5 shows the simplified cross section of a single-phase and a three-phase BLDC motor. The rotor has permanent magnets to form 2 magnetic pole pairs, and surrounds the stator, which has the windings. N N S S A B Stator Rotor Permanent magnets Air gap N N S A B S C Rotor Stator Permane nt magnet Air gap (a) Single-phase (b) Three-phase—Simplified BLDC Motor Diagrams A single-phase motor has one stator winding—wound either clockwise or counter-clockwise along each arm of the stator—to produce four magnetic poles. By comparison, a threephase motor has three windings. Each phase turns on sequentially to make the rotor revolve. There are two types of stator windings: trapezoidal and sinusoidal, which refers to the shape of the back electromotive force (BEMF) signal. The shape of the BEMF is determined by different coil interconnections and the distance of the air gap. In addition to the BEMF, the phase current also follows a trapezoidal and sinusoidal shape. A sinusoidal motor produces smoother electromagnetic torque than a trapezoidal motor, though at a higher cost due to their use of extra copper windings.

 

Brushless motors use semiconductor switching devices to achieve electronic commutation, which replaces traditional contact commutators and brushes with electronic switching devices. A brushless motor consists of a permanent magnet rotor, a multi pole winding stator, a position sensor, etc. The position sensor exchanges the stator winding current in a certain order based on the changes in rotor position (i.e., detects the position of the rotor magnetic poles relative to the stator winding, generates a position detection signal, and the signal conversion circuit controls the power switch circuit. The winding current switches according to a certain logical relationship). The electronic switch circuit controlled by the position sensor output provides the working voltage of the stator winding.


Brushless motors have high reliability, no commutation sparks, low mechanical noise, and are widely used in high-end video recorders, video recorders, electronic instruments, and automated office equipment. It should be noted that many people believe that a brushless motor is a DC motor, which is why it is called a "brushless DC motor". In fact, a brushless motor is an AC motor, which is a three-phase AC permanent magnet motor.

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