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Ball Screw Module-VKK86
Ball Screw Module-VKK86
Ball Screw Module-VKK86
Ball Screw Module-VKK86
Ball Screw Module-VKK86
Ball Screw Module-VKK86
  • Ball Screw Module-VKK86
  • Ball Screw Module-VKK86
  • Ball Screw Module-VKK86
  • Ball Screw Module-VKK86
  • Ball Screw Module-VKK86
  • Ball Screw Module-VKK86

Ball Screw Module-VKK86

Ball screw lead ;10mm、20mm、32mm Standard track length ;340mm、440mm、540mm、640mm、740mm、940mm Repeat positioning accuracy ;Precision grade: ±0.003mm, General grade: ±0.01mm Positioning accuracy ;Precision grade: 0.025-0.04mm, General grade: - Walking accuracy ;Precision grade: 0.015-0.03mm, General grade: - Maximum starting torque ;Precision grade: 15-25 N-cm, General grade: 10-15 N-cm

Category:

KK Series(Steel Structure)


  • Product Details
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  • Ball Screw Module – VKK86

    High Load · High Precision · Long Stroke Linear Motion System


    Ⅰ. Product Overview

    The W-ROBOT VKK86 Ball Screw Module is a heavy-duty linear motion platform engineered for applications requiring high load capacity, long stroke, and precise positioning.
    Built with a robust ball screw drive mechanism and high-rigidity linear guide support, VKK86 ensures exceptional stability and repeatability, even under demanding industrial conditions.

    This module features a compact and modular design, making it easy to integrate into various automation systems such as CNC machinery, industrial robots, and inspection platforms.
    VKK86 delivers smooth, low-noise, and high-efficiency motion—ideal for continuous production environments that demand long service life and consistent accuracy.


    Ⅱ. Technical Features

    High-strength ball screw drive for superior load handling and precision motion

    Reinforced linear guide rails ensuring rigidity and mechanical stability

    Smooth and quiet operation, suitable for cleanroom or laboratory environments

    Optional servo motor configurations for different speed and torque requirements

    Multiple installation options: horizontal, vertical, or multi-axis arrangements

    Low friction and minimal backlash, improving motion consistency

    High reliability, designed for continuous 24/7 operation

    Customizable stroke length, lead pitch, and mounting interfaces

    Ball Screw Module

    Ⅲ. Application Fields

    The VKK86 Ball Screw Module is widely applied in:

    CNC machining centers and precision metal cutting systems

    Semiconductor manufacturing and automated inspection lines

    Industrial robots, pick-and-place units, and palletizing equipment

    Optical alignment and measurement systems

    Packaging, labeling, and dispensing automation

    Heavy-load transfer and assembly systems

    Its high rigidity and stable drive performance make the VKK86 the preferred solution for large-scale precision motion in high-end manufacturing.

    Ⅳ. Model Selection & Customization

    W-ROBOT provides extensive customization options for the VKK series to match your automation needs:

    Customizable travel length, thrust capacity, and motion speed

    Selectable ball screw accuracy grades and encoder feedback systems

    Compatible with mainstream servo drivers and motion controllers

    Supports multi-axis integration (X/Y/Z combination)

    Optional mounting brackets, end supports, and limit sensors

    Available 2D/3D CAD models, datasheets, and technical drawings

    Ⅴ. Product Advantages

    High load and high rigidity performance

    Excellent repeatability and precision positioning

    Long travel distance with stable mechanical transmission

    Compact modular design, easy to integrate

    Low noise, low maintenance, and long service life

    Adaptable to a wide range of automation systems

    With its precision ball screw structure and robust guide system, VKK86 provides reliable, smooth, and efficient linear motion for demanding industrial automation applications.

    Ⅵ. Installation & Maintenance

    Ensure the base surface is flat, rigid, and free from vibration

    Keep ball screw and linear guides clean and properly lubricated

    Check mechanical fasteners regularly and retighten if necessary

    Avoid dust, humidity, and high-temperature operating environments

    Follow the recommended maintenance intervals for lubrication and inspection

    Use original W-ROBOT components for best performance and lifespan


    Ⅶ. Learn More

    Learn More About W-ROBOT:

    About W-ROBOT

    Service & Support

    Explore Related Products:

    VGL15 Linear Motor Module

    VGTH15 Fully Enclosed Ball Screw Module

    VGTY15 Electric Cylinder Module

    VETB22 Semi-Enclosed Belt Module

    Recommended Articles:

    “Precision Motion Redefined: The Power of Ball Screw Modules in Modern Automation”

    “W-ROBOT: Driving the Future of Smart Manufacturing with Linear Motion Technology”

     

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Listed below are answers to our most commonly asked questions. Don't see your question?Contact our customer service team. We would be glad to assist you.

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FAQ

Listed below are answers to our most commonly asked questions. Don't see your question?Contact our customer service team. We would be glad to assist you.

What are the future development trends of linear modules and linear motors?

In the future, linear modules and linear motors will develop towards higher precision, higher speed, smaller size, intelligence, and integration with other advanced technologies (such as artificial intelligence and the Internet of Things).

What parameters need to be provided for customized linear motors?

It is necessary to provide detailed parameters such as load weight, stroke, speed, acceleration, accuracy requirements, installation method, and operating environment so that the manufacturer can design and manufacture a linear motor that meets the requirements.

How long is the customization cycle of linear modules?

The customization cycle depends on the complexity of the customization and the manufacturer's production capacity, generally about 1-4 weeks. The specific time can be determined by communicating with the manufacturer.

Can linear motors be upgraded?

The performance of linear motors can be improved by upgrading them with high-performance drives, optimizing control system parameters, and improving heat dissipation structures.

Is it easy to upgrade the linear module?

It is relatively easy to upgrade the motor, control system, guide rail and other components of the linear module according to actual needs to improve its performance and accuracy.

What is the after-sales maintenance service of linear motors?

Regular manufacturers usually provide comprehensive after-sales maintenance services, including fault diagnosis, maintenance guidance, parts replacement, etc., but the response speed and quality of after-sales maintenance services may vary from manufacturer to manufacturer.

What is the warranty period for linear modules?

The warranty period of linear modules from different manufacturers varies, generally around 1-2 years. The specific warranty period can be confirmed with the manufacturer at the time of purchase.

What should we pay attention to when integrating linear motors with other equipment?

Attention should be paid to issues such as interface compatibility, signal matching, control logic coordination, and installation space and layout between devices to ensure that the devices can work together.

Can the linear module be integrated with other equipment?

Absolutely. Linear modules can be integrated with other devices such as robots, sensors, and vision systems to build more complex and intelligent automated production lines.

What kind of control system do linear motors require?

Linear motors typically require a high-performance motion control system that can achieve precise position control, speed control, and thrust control, such as a dedicated linear motor drive with a motion control card or a high-end PLC.

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