Model Number:42MM Round Brushless Direct Current (BLDC) Motor-XM42BL
Payment & Shipping Terms
Packaging Details:CTN OR CUSTOMIZED
Delivery Time:35days
Payment Terms:L/C,D/P,T/T
Supply Ability:100000PCS/month
Gallery
IP30 Brushless DC Motor 36mm-XM36BL 42mm Round Brushless Direct Current BLDC Motor
Product Description
Brushless DC Motor Brushless DC Motor 36MM-XM36BL 42MM Round Brushless Direct Current (BLDC) Motor-XM42BL
Model: 42MM Round Brushless Direct Current (BLDC) Motor-XM42BL
General Specification
(Item
Specification
Winding type
Star
Hall effect angle
120 degree electrical angle
Shaft run out
0.025mm
Radial play
0.02mm@450g
End play
0.08mm@450g
Max.radial force
15N @10mm form the flange
Max.axial force
10N
Insulation class
Class B
Dielectric strength
500VDC for one minute
Insulation resistance
100MΩ Min.,500VDC
Electrical Specification:
Model
Specification
Unit
JK42BL30
JK42BL60
JK42BL85
JK42BL93
Number Of Phase
Phase
3
Number Of Poles
Poles
8
Rated Voltage
VDC
24
36
24
24
Rated Speed
Rpm
3500
4000
4000
6300
Rated Torque
mN.m
18
80
150
115
Rated Power
W
6.5
32
62
76
Peak Torque
mN.m
60
240
450
500
Peak Current
Amps
1.5
5
7.5
10
Torque Constant
mN.m/A
48.7
38.5
38.6
28.7
Rotor Inertia
g.c㎡
15.6
33
84
94
Body Length
mm
30
60
85
93
Weight
Kg
0.25
0.35
0.7
0.8
Sensor
/Honeywell
Insulation Class
B
Degree of Protection
IP30
Storage Temperature
-25~+70℃
Operating Temperature
-15~+50℃
Working Humidity
85%RH
Working Environment
Outdoors (without direct sunlight), no corrosive gases, no flammable gases, no oil mist, no dust
Altitude
1000 meters or less
Dimensions:
(Unit=mm)
A stepper motor is an electromagnetic mechanical device that converts electrical pulse signals into angular displacement or linear displacement. It has the advantages of high precision, high reliability, and easy control, and is widely used in the following fields:
Industrial automation and CNC machine tools: It is used to control the movement of the machine tool workbench, the feed of the cutting tool, etc., to achieve precise control of machining dimensions and shapes and ensure machining accuracy.
Automated production lines, 3D printing, office equipment.
Medical devices and medical imaging equipment: In devices such as CT and MRI, it is used to control the movement of the scanning bed and the positioning of the detector to ensure the accuracy and stability of imaging, as well as the driving of medical devices.
Aerospace and intelligent robots: As the driving element of the robot joints, it precisely controls the movement of the robot's arms, legs and other joints, enabling precise movement and attitude control of the robot, allowing the robot to complete various complex tasks.
Automobile seat adjustment, automobile window control, and so on.