introduction
The LIND LOE100 Medium-Duty Direct-Drive Electric Cylinder is designed for applications requiring a balance of load capacity, precision, and compact design. With a direct-drive motor-to-screw structure, the LOE100 minimizes transmission components, delivering higher rigidity, faster response, and stable motion performance.
Powered by a high-efficiency servo motor and a precision ball screw, the LOE100 provides smooth and accurate linear motion with reliable medium-duty thrust. Its compact mechanical design allows easy integration into space-limited equipment while maintaining excellent positioning repeatability and operational stability.
Compared to pneumatic cylinders, the LOE100 offers fully controllable position, speed, and force, enabling flexible motion profiles and multi-position control without compressed air systems. This makes it an ideal electric alternative for cleaner operation, reduced maintenance, and improved process consistency.
The LOE100 is well suited for automated assembly, pick-and-place systems, packaging machinery, light press-fit operations, and general industrial automation, helping manufacturers upgrade from pneumatic solutions to efficient electric motion control.
Key Advantages
Direct-drive structure for compact design and high rigidity
Stable medium-duty thrust with precise motion control
Smooth operation and high repeatability
Easy integration into automated equipment
Ideal replacement for pneumatic cylinders
|
Motor Power (W) |
1000W (3000rpm) |
1000W (2000rpm) |
1500W (3000rpm) |
1500W (2000rpm) |
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|
Rated torque N. m |
3.18 |
4.77 |
4.77 |
7.16 |
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|
Driving mode |
Ball screw C7 conversion/ball screw C5 grinding (default C7) |
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|
Repeat positioning accuracy (mm) |
±0.02/±0.01 |
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|
Screw Lead (mm) |
5 |
10 |
5 |
10 |
5 |
10 |
5 |
10 |
|
Max speed (mm/sec) |
250 (1: 1) 83 (3: 1) 63 (4: 1) 50 (5: 1) |
500 (1: 1) 167 (3: 1) 125 (4: 1) 100 (5: 1) 83 (6: 1) 71 (7: 1) 63 (8: 1) 56 (9: 1) |
167 (1: 1) 56 (3: 1) |
333 (1: 1) 83 (4: 1) 67 (5: 1) 56 (6: 1) |
250 (1: 1) 83 (3: 1) |
500 (1: 1) 167 (3: 1) 125 (4: 1) 100 (5: 1) 83 (6: 1) |
167 (1: 1) |
333 (1: 1) 111 (3: 1) 83 (4: 1) |
|
Rated thrust (N) |
3395 (1: 1) 10185 (3: 1) 13580 (4: 1) 16975 (5: 1) |
1697 (1: 1) 5091 (3: 1) 6788 (4: 1) 8485 (5: 1) 10182 (6: 1) 11879 (7: 1) 13576 (8: 1) 15273 (9: 1) |
5092 (1: 1) 15276 (3: 1) |
2546 (1: 1) 7638 (3: 1) 10184 (4: 1) 12730 (5: 1) 15276 (6: 1) |
5092 (1: 1) 15276 (6: 1) |
2546 (1: 1) 7638 (3: 1) 10184 (4: 1) 12730 (5: 1) 15276 (6: 1) |
7644 (1: 1) |
3822 (1: 1) 11466 (3: 1) 15288 (4: 1) |
|
Effective stroke (mm) |
10-1600 |
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|
Sensor |
Electronic magnetic switch*3 |
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|
Motor Power (W) |
2000W (3000rpm) |
2000W (2000rpm) |
3000W (3000rpm) |
3000W (2000rpm) |
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|
Rated torque N. m |
6.37 |
9.55 |
9.55 |
14.32 |
||||
|
Driving mode |
Ball screw C7 conversion/ball screw C5 grinding (default C7) |
|||||||
|
Repeat positioning accuracy (mm) |
±0.02/±0.01 |
|||||||
|
Screw Lead (mm) |
5 |
10 |
5 |
10 |
5 |
10 |
5 |
10 |
|
Max speed (mm/sec) |
250 (1: 1) |
500 (1: 1) 167 (3: 1) 125 (4: 1) |
167 (1: 1) |
333 (1: 1) |
250 (1: 1) |
500 (1: 1) |
250 (1: 1) |
500 (1: 1) |
|
Rated thrust (N) |
6800 (1: 1) |
3400 (1: 1) 10200 (3: 1) 13600 (4: 1) |
10196 (1: 1) |
5098 (1: 1) |
10196 (1: 1) |
5098 (1: 1) |
15288 (1: 1) |
7644 (1: 1) |
|
Effective stroke (mm) |
10-1600 |
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|
Sensor |
Electronic magnetic switch*3 |
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Why Ball Screw Instead of Lead Screw?
The transmission system directly influences the accuracy, efficiency, and service life of an electric cylinder.
The LOE100 uses a precision ball screw because it provides better performance for applications requiring accurate and repeatable linear motion.
• Higher Motion Accuracy
Compared with traditional lead screws, ball screws reduce friction through rolling contact between the screw and nut.
This helps improve positioning accuracy and maintain consistent movement performance during repeated operations.
• Improved Transmission Efficiency
The lower friction characteristics of ball screws reduce energy loss and heat generation.
This allows the actuator to operate more efficiently, especially in applications requiring frequent motion cycles.
•Better Durability for Industrial Applications
Reduced friction also helps decrease mechanical wear, improving long-term reliability and service life.
The LOE100 is suitable for continuous operation in industrial automation environments.
Why Direct Drive?
The LOE100 adopts a direct-drive design to improve motion efficiency and simplify the mechanical structure.
• Reduced Mechanical Loss
Traditional actuator systems may require additional transmission components such as belts, gears, or couplings.
The direct-drive structure minimizes intermediate components, reducing transmission loss and improving power transfer efficiency.
• Faster Dynamic Response
The integrated drive structure enables quicker response during acceleration and positioning.
This makes the LOE100 suitable for automation applications requiring fast and accurate movement.
• Lower Maintenance Requirements
With fewer mechanical transmission parts, the direct-drive design reduces potential wear points and improves system reliability.
Why Fold-back Design?
The fold-back design provides a compact installation solution for automation equipment with limited space.
• Space-Saving Structure
The optimized motor arrangement reduces the overall installation footprint compared with traditional electric cylinder designs.
This allows easier integration into compact machinery.
• Flexible Machine Layout
The fold-back structure provides more flexibility for equipment designers when arranging internal components.
It is suitable for applications where installation space is limited.
• Maintain Stable Performance
Although the structure is optimized for compactness, the LOE100 maintains high rigidity and reliable positioning performance.
features
Optimized Architecture
Integrated direct-drive structure with a precision coupling minimizes backlash, compensates for slight misalignment, and ensures stable power transmission.
Strong Thrust Output
Delivers consistent thrust up to 2T, providing reliable performance for medium-load applications.
Efficient Transmission
Reduced transmission loss enables improved positioning accuracy (up to ±0.01 mm) and faster dynamic response compared to conventional rotary-driven solutions.



LIND Standard installation method and size diagram
CB: Rear double pin ears
CA: Rear single sales ear
FB: Rear bottom plater
TC: Rear ear axle seat
LA: Horizontal bearing seat
FG: Front flange with guide postt
FA: Front flange
FTC: Front ear axle seat
J: Frontjoint bearing
Y: Y-shaped hinge
SP: pressure sensor
about Us
Wuxi LIND Automation Technology Co., Ltd. is a high-tech manufacturer integrating R&D, production, and sales. The company operates thirteen subsidiaries across China, with a nationwide presence covering over 80% of regions and annual sales approaching RMB 100 million.
We are committed to delivering high-quality, cost-effective industrial automation solutions to global customers, helping businesses improve efficiency while reducing procurement costs.



FAQ
Q1: What are the key advantages of the direct-connect structure?
A: The direct-drive design reduces transmission loss and mechanical backlash, improving positioning accuracy, response speed, and overall system efficiency while minimizing maintenance requirements.
Q2: What level of precision can this electric cylinder achieve?
A: The repeat positioning accuracy reaches up to ±0.01 mm, making it suitable for precision assembly, testing, and automated production processes requiring consistent repeatability.
Q3: What load and speed capabilities does the LOE100 support?
A: It supports medium-load applications with thrust up to approximately 2 tons and offers high-speed performance up to 500 mm/s depending on configuration, balancing force and speed.
Q4: Can the product be customized for specific applications?
A: Yes. Stroke, thrust, mounting options, and protection levels can be customized to match different industrial scenarios.
Q5: How does it compare to traditional pneumatic or hydraulic cylinders?
A: It offers higher precision, faster response, cleaner operation, and lower maintenance, making it a more energy-efficient and intelligent alternative for modern automation systems.

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