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Screw Module VC4
  • Screw Module VC4

Screw Module VC4

Maximum stroke ;800mm Maximum load ;30kg Max Payload Body width ;40mm Repeat positioning accuracy ;±0.01mm (C7 grade) or ±0.006mm (C5 grade) Applicable motor power ;200W/400W

Category:

VC Series(Anti Torsion、Heavy Load)


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  • Screw Module VC4

    Compact · Rigid · Precision Motion Platform


    1. Product Overview

    The W-ROBOT VC4 Screw Module is a high-precision linear motion platform driven by a ball screw transmission system, designed for compact automation equipment, precision assembly, and laboratory automation.
    With its compact structure, high rigidity, and excellent positioning accuracy, the VC4 module delivers smooth, reliable linear motion for diverse industrial applications.

    Its fully modular design allows for easy integration into multi-axis systems, enabling precise, repeatable linear positioning and stable operation even under continuous high-load conditions.


    2. Technical Features

    High-precision ball screw drive ensures smooth linear motion and minimal backlash

    Compact and lightweight design, ideal for limited installation space

    High rigidity aluminum body for improved stability

    Low friction, low noise, and long service life

    Customizable stroke and motor interface options

    Supports horizontal, vertical, or inverted mounting

    Compatible with stepper and servo motors

    Optional dust-proof or semi-sealed structure for demanding environments


    3. Application Fields

    The VC4 Screw Module is suitable for a wide range of applications, including:

    Precision assembly and positioning systems

    Pick-and-place and inspection automation

    Electronic component and semiconductor handling

    Medical and laboratory automation

    Optical alignment and inspection equipment

    Compact multi-axis linear stages


    4. Model Selection & Customization

    W-ROBOT offers customization and selection services for the VC Series to meet various application demands:

    Custom stroke lengths, lead pitches, and speed ranges

    Compatible with various motor brands and control systems

    Optional limit sensors, encoders, or coupling accessories

    Support for multi-axis combinations (X/Y/Z)

    Available 2D and 3D CAD drawings and full technical datasheets

    Optional semi-enclosed or fully enclosed dustproof configurations


    5. Product Advantages

    High precision and repeatability

    Compact and modular structure for flexible installation

    Smooth, stable, and quiet operation

    Long service life and minimal maintenance requirements

    Excellent load-bearing capacity and motion stiffness

    Easy integration into automation systems


    6. Installation & Maintenance

    Ensure the mounting base is flat, rigid, and vibration-free

    Avoid overloading or side forces on the screw shaft

    Keep guide rails and ball screw clean and lubricated

    Check fasteners and motor coupling regularly

    Perform preventive maintenance every 6–12 months

    Avoid operation in high humidity or dusty environments without protection


    7. Typical Applications

    Precision linear motion stages

    Laboratory and testing automation systems

    Component insertion and dispensing systems

    Vision positioning and measurement platforms

    Micro-assembly and electronics production lines


    8. Learn More

    Explore more W-ROBOT precision motion solutions:

    VGTH Fully Enclosed Ball Screw Modules

    VGL Linear Motor Modules

    VGTY Electric Cylinder Actuators

    EPG Series Electric Grippers

Factory Workshop

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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