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660W 48V High Torque Brushless DC Motor Rated Speed 3000RPM 2.1N.M

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660W 48V High Torque Brushless DC Motor Rated Speed 3000RPM 2.1N.M

Country/Region china
City & Province changzhou jiangsu
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Product Details

 

High Torque 660W 48V Brushless Dc Motor Rated Speed 3000RPM 2.1N.m CE and RoHS Approved

 

Why Do BLDC Motors Turn?

As their name implies, brushless DC motors do not use brushes. With brushed motors, the brushes deliver current through the commutator into the coils on the rotor. So how does a brushless motor pass current to the rotor coils? It doesn’t—because the coils are not located on the rotor. Instead, the rotor is a permanent magnet; the coils do not rotate, but are instead fixed in place on the stator. Because the coils do not move, there is no need for brushes and a commutator.

With the brushed motor, rotation is achieved by controlling the magnetic fields generated by the coils on the rotor, while the magnetic field generated by the stationary magnets remains fixed. To change the rotation speed, you change the voltage for the coils. With a BLDC motor, it is the permanent magnet that rotates; rotation is achieved by changing the direction of the magnetic fields generated by the surrounding stationary coils. To control the rotation, you adjust the magnitude and direction of the current into these coils.

 
Product Description:
 

Winding type

Delta

Hall effect angle

120 degree electrical angle

Shaft run out

0.05mm

Radial play

0.02mm@450g

End play

0.08mm@450g

Max. radial force

220N @ 20mm from the flange

Max. axial force

60N

Insulation class

Class B

Dielectric strength

500VDC for one minute

Insulation resistance

100MΩMin., 500VDC

 

 

86mm brushless dc motor:

  Model FL86BLS71-48V-30220B-3
SpecificationUnitJK86BLS58JK86BLS71JK86BLS84JK86BLS98JK86BLS125
Number Of PhasePhase3
Number Of PolesPoles8
Rated VoltageVDC48
Rated SpeedRpm3000
Rated TorqueN.m0.350.71.051.42.1
Rated CurrentAmps36.3911.518
Rated PowerW110220330440660
Peak TorqueN.m1.052.13.154.26.3
Peak CurrentAmps919273554
Back E.M.FV/Krpm13.71313.513.713.5
Torque ConstantN.m/A0.130.120.130.130.13
Rotor Inertiag.c400800120016002400
Body Lengthmm7184.598111.5138.5
WeightKg1.51.92.32.74
SensorHoneywell
Insulation ClassB
Degree of ProtectionIP30
Storage Temperature-25~+70℃
Operating Temperature-15~+50℃
Working Humidity≤85% RH
Working EnvironmentOutdoor (No Direct Sunlight), No Corrosive Gas, No Flammable Gas, No Oil Mist, No Dust
Altitude1000m or less

 


 

Dimensions:

 

Advantages of BLDC Motors

 

A BLDC motor with three coils on the stator will have six electrical wires (two to each coil) extending from these coils. In most implementations three of these wires will be connected internally, with the three remaining wires extending from the motor body (in contrast to the two wires extending from the brushed motor described earlier). Wiring in the BLDC motor case is more complicated than simply connecting the power cell’s positive and negative terminals; we will look more closely at how these motors work in the second session of this series. Below, we conclude by looking at the advantages of by BLDC motors.

One big advantage is efficiency, as these motors can control continuously at maximum rotational force (torque). Brushed motors, in contrast, reach maximum torque at only certain points in the rotation. For a brushed motor to deliver the same torque as a brushless model, it would need to use larger magnets. This is why even small BLDC motors can deliver considerable power.

The second big advantage—related to the first—is controllability. BLDC motors can be controlled, using feedback mechanisms, to delivery precisely the desired torque and rotation speed. Precision control in turn reduces energy consumption and heat generation, and—in cases where motors are battery powered—lengthens the battery life.

BLDC motors also offer high durability and low electric noise generation, thanks to the lack of brushes. With brushed motors, the brushes and commutator wear down as a result of continuous moving contact, and also produce sparks where contact is made. Electrical noise, in particular, is the result of the strong sparks that tend to occur at the areas where the brushes pass over the gaps in the commutator. This is why BLDC motors are often considered preferable in applications where it is important to avoid electrical noise.

 

Widely used in automation equipment such as Copier ,printing machinery,Engraving machine,packing machine,grinting machine,robot,machine tool,Milling machine,Sewing machine,Engraving machine,Medical apparatus,ATM machine ect.

 

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