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Double Shaft Nema11 Captive 2 Phase Hybrid Stepper Motor 140N Force Linear Acuators

Shenzhen Zion Kaifull Automation Technology Co., Ltd.

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Double Shaft Nema11 Captive 2 Phase Hybrid Stepper Motor 140N Force Linear Acuators

Country/Region china
City & Province guangdong
Categories Soundproofing Materials
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Product Details

28LHS Double Shaft 140N Force Series 2 Phase Nema11 Captive Hybrid Linear Stepper Motors Linear Acuators

 

1. Hybrid Linear Stepper Motors Overview

Hybrid linear stepper motor is a new linear movement executive motion control product, converting the round rotation movement into linear movement.

The product structure is simple and compact, and it can provide a variety of solutions according to customer needs. We provide customized services such as adding brakes, encoders, and hollow shafts according to customer needs, and can provide systemic products for it.

 

Kaifull Hybrid linear stepper motors feature and advantages,

1. High efficiency: Due to the special structure of the hybrid linear stepper motor, the motor has high transmission efficiency, which can effectively convey electrical energy as mechanical energy.

2. Precision control: Through the speed and direction of the motor, the motor can achieve precise linear motion control and can be used for various precision positioning and adjustment applications.

3. High load capacity: The motor can provide high load capacity, suitable for the occasion that needs to be afforded and heavy loads.

4. Silent operation: Due to the use of dedicated driver for hybrid linear stepper motors, the screw motor has less frictional noise, and the noise generated during running is low. It is suitable for occasions with higher noise requirements.

5. Easy maintenance: Simple maintenance of the motor is easily achieved, the screw and nut have higher wear resistance, and the long -term screw motor is widely used in machinery equipment, automated production lines, medical equipment, aerospace and other fields.

 

Application:

Hybrid linear stepper motor is suitable for a wide range of industrial automation fields, such as robots, robotics, medical equipment and smart homes. In the field of robotics, the screw step motor can achieve accurate joint rotation and linear movement; in the field of robotic arm, the screw step motor can achieve high -precision workpiece processing; driving precision measurement elements; in the field of smart home, screw -step motor can achieve various automated actions and improve the convenience of home life.

 

2. Hybrid Stepper Motor Naming Rules and General Technical Specifications
Linear stepper motor naming rules,
 

General Specifications,

Step Angle1.8° (2 Phase)
Step Angle Accuracy±0.09°
SizeNema 11, 28mm
Insulation Grade500VDC, 20 MΩ Min. ,Class B
Dielectric Strengt500 VAC for 1 Minute
Temperature RiseLess than 80℃ (Rated Current)
Suface TemperatureMax.Allowed 100℃
Humidity Range20% to 90% RH
IP GradeIP40
CertificatesRohs, CE, CCC

 
3. 20LHS0494/0244/0164 Captive Type Hybrid Linear Stepper Motor Performance Datasheet

Model NameWiring

Rated Voltage

Rated

Current

Resistance /phase

Inductance

/phase

Power ConsumptionTemp. RiseWeight

Insulation

Resistance

28LHS1904

 

28LHS0754

 

28LHS0354

Bipolar

2.1V1.9A1.1Ω1.1mH7.5W75℃180g20MΩ

5V

0.75A

6.7Ω5.8mH

12V

0.35A

34.8Ω35.6mH

 
Note: Customization of motor specifications available.
Available leadscrew specifications,
 

CodeLeadscrew Thread Dimensions in mm
diametersteplead
7φ4.760.0031750.635
9φ4.760.006351.27
3φ4.760.01272.54
Jφ4.760.02545.08

 

4. Mechanical Dimensions (in mm)

 

Captive Type Mechanical Drawings as bellow,

 

 

5. Force and Pulse Rate Curves

 
6. Wirings

7. Faults Checking

During use, there may be some faults in the hybrid linear motors. Common faults include strolls, excessive noise, and overheating. The loss may be caused by insufficient motor resolution and mechanical transmission error. It can be solved by adjusting the subdivision of the motor -driven signal. Excessive noise is likely to be caused by high motor speed and mechanical resonance. It can be eliminated by reducing the speed of the motor and adjusting the mechanical structure. Excessive heat may be caused by the long -term work and poor heat dissipation, which can be improved by strengthening heat dissipation and reasonable arrangements.

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