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1. Hybrid Linear Stepper Motor Overview
The driving principle of the Hybrid Linear Stepper Motor is based on step technology. The motor controllers output precisely controlled current to drive the motor. The screw mechanism transforms the rotation movement into a linear movement to achieve high -precision position control. In the actual application process, the motor controller will operate in accordance with different control modes, such as the full step mode, the half -step mode, etc. The choice of these modes will affect the rotation speed and position control accuracy of the motor. Also there are various types of screw leads and stroke to meet the requirements of different applications.
Generally, the standard stroke of the electric screw is 100,150, 200, 250, 300, 350, 400mm, while special stroke requirements can be supported by flexible customization. The hybrid linear stepper motors can be designed with different thrust screw leads according to different application loads. The maximum thrust of the hybrid linear stepper motors can reach up to 20kN, the without load speed normally is 4 ~ 45mm/special linear speed can also be customized.
Hybrid linear stepper motor main features,
Hybrid linear stepper motors are widely used in high -precision requirements automation applications, such as factory automation, precision calibration, precision fluid measurement, and accurate position movement, electronic production, semiconductor production, medical equipment’s, testing platforms, factory automation, etc.
2. Hybrid Stepper Motor Naming Rules and General Technical Specifications
Linear stepper motor naming rules,
General Specifications,
Step Angle | 1.8° (2 Phase) |
Step Angle Accuracy | ±0.09° |
Size | Nema 14, 35mm |
Insulation Grade | 500VDC, 20 MΩ Min. ,Class B |
Dielectric Strengt | 500 VAC for 1 Minute |
Temperature Rise | Less than 80℃ (Rated Current) |
Suface Temperature | Max.Allowed 100℃ |
Humidity Range | 20% to 90% RH |
IP Grade | IP40 |
Certificates | Rohs, CE, CCC |
3. 20LHS0494/0244/0164 Captive Type Hybrid Linear Stepper Motor Performance Datasheet
Model Name | Wiring | Rated Voltage | Rated Current | Resistance /phase | Inductance /phase | Power Consumption | Temp. Rise | Weight | Insulation Resistance |
35LHS1254 | Bipolar | 2.33V | 1.25A | 1.86Ω | 2.8mH | 5.7W | 75℃ | 162g | 20MΩ |
35LHS0574 | 5V | 0.57A | 8.8Ω | 13mH | |||||
35LHS0244 | 12V | 0.24A | 50.5Ω | 60mH | |||||
35LHS0576 | Unipolar | 5V | 0.57A | 8.8Ω | 6.5mH | ||||
35LHS0246 | 12V | 0.24A | 50.5Ω | 30mH |
Note: Customization of motor specifications available.
Available leadscrew specifications,
Code | Leadscrew Thread Dimensions in mm | ||
diameter | step | lead | |
N | φ5.54 | 0.003048 | 0.6096 |
J | φ5.54 | 0.012192 | 2.4384 |
Q | φ5.54 | 0.024384 | 4.8768 |
R | φ5.54 | 0.048768 | 9.7536 |
P | φ6.35 | 0.0039688 | 0.79375 |
A | φ6.35 | 0.0079375 | 1.58750 |
B | φ6.35 | 0.0158750 | 3.17500 |
C | φ6.35 | 0.0317500 | 6.35 |
4. Mechanical Dimensions (in mm)
Captive Type Mechanical Drawings as bellow,
Note: Above A,B available customization information as bellow,
Distance Code | Distance (mm) | A (mm) | B (mm) |
302 | 12.7 | 20.8 | 1.0 |
303 | 19.1 | 27.2 | 7.4 |
304 | 25.4 | 33.5 | 13.7 |
305 | 31.8 | 39.9 | 20.1 |
306 | 38.1 | 46.2 | 26.4 |
307 | 50.8 | 58.9 | 39.1 |
5. Force and Pulse Rate Curves
6. Wirings