Telescopic Electric Actuator

Telescopic Electric Actuator

Details
Telescopic Electric Actuator is a telescopic linear motion device based on electric transmission technology. By combining servo motors with precision transmission mechanisms, it achieves linear extension and retraction of multi-stage arm rods, with high positioning accuracy, low energy consumption, and intelligent control characteristics.
Category
Single Axis Linear Modules
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Description
Technical Parameters

Telescopic Electric Actuator is a telescopic linear motion device based on electric transmission technology. By combining servo motors with precision transmission mechanisms, it achieves linear extension and retraction of multi-stage arm rods, with high positioning accuracy, low energy consumption, and intelligent control characteristics. It has become a core component in the fields of industrial automation, precision manufacturing, and high-end equipment.

 

Telescopic Electric Actuator is a multi-stage telescopic linear motion device driven by an electric motor, which converts the rotational motion of the motor into precise linear telescopic motion through a precise mechanical structure and intelligent control system. This advanced actuator that integrates mechatronics technology perfectly combines the precise control advantages of electric drive and the space saving characteristics of telescopic structure, becoming the core component for achieving long stroke and high-precision linear motion in modern automation systems.

 

Here we introduce Telescopic Electric Actuator to you as follows:

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Model

No

Motor

Power(W)

Body

Width

(mm)

Repeatability

(mm)

Timing Belt Specs

Max Load (kgs)

Max Stroke (mm) at

max speed (mm/s)

Rated Thrust

Linear guide rail

Width (mm)

Deceleration ration

Lead (mm)

Horizontal

Vertical

 

10:1

15

65

65

5500mm at 750mm/S

1000

TMEB85-CR

200W

80

±0.1

45

3:1

66.66

2

1

5500mm at 3333mm/S

44

20×15.5-1

5:1

40

7

3

5500mm at 2000mm/S

74

7:1

28.5

14

6

5500mm at 1425mm/S

104

10:1

20

28

9

5500mm at 1000mm/S

149

400W

3:1

66.66

7

4

5500mm at 3333mm/S

120

5:1

40

19

10

5500mm at 2000mm/S

199

7:1

28.5

38

16

5500mm at 1425mm/S

279

10:1

20

76

26

5500mm at 1000mm/S

398

 

750W

3:1

66.66

13

8

5500mm at 3333mm/S

225

5:1

40

36

18

5500mm at 2000mm/S

375

7:1

28.5

71

30

5500mm at 1425mm/S

525

10:1

20

80

50

5500mm at 1000mm/S

750

 

product-3308-2245

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Typical application scenarios of Telescopic Electric Actuator

Semiconductor and Electronic Manufacturing

In wafer handling robots, electric telescopic arms complete chip picking and alignment with a precision of ± 0.02mm, meeting the ultra precision requirements of lithography and packaging machines. ​

Medical and laboratory automation

The telescopic electric arm of the surgical robot achieves 0.1N level contact force control through force control algorithms, which is used for precise operation of minimally invasive surgical instruments; In automated chemical analyzers, the actuator drives the sampling arm to complete micro upgrading liquid transfer. ​

Intelligent logistics equipment

The high-speed picking robot in the e-commerce sorting center is equipped with an electric telescopic arm driven by a synchronous belt, which can dynamically grab packages at a speed of 1.5m/s. A single device can process over 2000 orders per hour. ​

Aerospace testing

In the fatigue testing of aircraft components, electric actuators are programmed to simulate the expansion and contraction loads under different operating conditions (load accuracy ± 1%), providing reliable data for material performance analysis.

 

As an outstanding representative of mechatronics technology, Telescopic Electric Actuator has successfully solved the contradiction between limited space and long stroke requirements through innovative multi-stage telescopic structures and advanced electric drive technology. Its precise control performance, compact structural design, and reliable motion characteristics make it an important force in promoting the development of industrial automation towards higher efficiency, precision, and flexibility. It continues to play a key role in improving equipment performance, optimizing system structure, and reducing operating costs.

 

 

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