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Low temperature Brushless Motor

Low temperature Brushless Motor

Low temperature Brushless Motor is a brushless DC motor with compact, high power and high efficiency. It combines an easy to use, easy to set speed controller. The entire motor structure uses our latest brushless DC motor technology and is innovative in the pursuit of optimal performance. It's easy to route, easy to set up and easy to use controls. It has parallel shafts, right angle hollow shaft gears or round shafts (without gears). It is available in inch or metric shafts.

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Product features:

1. Low temperature Brushless Motor is a brushless DC motor with compact, high power and high efficiency. It combines an easy to use, easy to set speed controller. The entire motor structure uses our latest brushless DC motor technology and is innovative in the pursuit of optimal performance. It's easy to route, easy to set up and easy to use controls. It has parallel shafts, right angle hollow shaft gears or round shafts (without gears). It is available in inch or metric shafts.

2. Low temperature Brushless Motor's winding is on the stator and the magnet is on the rotor. Since the windings are fixed, electrical connections can be made directly and easily. Therefore it does not require mechanical commutators and brushes. It can be classified by the back electromotive force (BEMF) waveform. BEMF is the voltage induced in the winding when the rotor rotates, and the winding is unpowered (open loop). The BEMF response is determined by the design of the windings and permanent magnets. The two most common BEMF waveforms are trapezoidal and sinusoidal.

3. Once this Low temperature Brushless Motor is selected, the feedback method must be selected to determine the rotor position, and then the drive will use this method to generate a commutation signal that keeps the motor rotating. Feedback techniques include BEMF sensing, Hall effect sensors, sensorless vector control, and closed loop feedback using encoders or resolvers. The commutation type includes six steps and sine. In theory, all of these techniques can be combined with trapezoidal and sinusoidal motors.

4. Its magnetic sensor indicates the position of the rotor magnet, thus indicating the position of the rotor. The magnetic field of the motor is basically orthogonal. The most important thing is that the motor runs according to the command and has good starting torque and low speed running characteristics. It is more efficient than a brushed design. Moving the windings to the stator creates a shorter, lower resistance thermal path for heat dissipation to ambient air. For high-intensity rare earth magnet designs, the rotor inertia drops significantly, resulting in a better dynamic response.

Product specifications:

Motor No.(mm)

42

57

60

80

86

90

    

Rated Power(W)

110

150

250

550

750

1000

    

Rated Voltage(VDC)

 12

 12

 24

 36

 48

 48

    

Rated Speed(rpm)

1000rpm~20000rpm for option

Insulation level

F

Compressive strength

600VAC/1min

Insulation resistance

500VDC /100MΩ

Motor length(mm)

41-100

45-114

45-100

95-140

81-160

145-180

    

Motor weight(kg)

0.3-0.8

0.3-1.2

0.3-1.0

2.5-4.0

1.9-5.5

3.0-7.0

    

Hall sensor

With hall sensor

Encoder

Optional absolute or incremental optical encoder500-5000 wire

Brake

Brake of power off for option 

Protection degree IP

65/68

Working temperature℃

-40/-60~+70

Storage temperature℃

-55~+80

Working humidity

95%RH,50℃

Brush life span(h)

10000

 

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