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Electric Gripper-EPGS-12P-15
Electric Gripper-EPGS-12P-15
Electric Gripper-EPGS-12P-15
Electric Gripper-EPGS-12P-15
Electric Gripper-EPGS-12P-15
Electric Gripper-EPGS-12P-15
Electric Gripper-EPGS-12P-15
Electric Gripper-EPGS-12P-15
Electric Gripper-EPGS-12P-15
  • Electric Gripper-EPGS-12P-15
  • Electric Gripper-EPGS-12P-15
  • Electric Gripper-EPGS-12P-15
  • Electric Gripper-EPGS-12P-15
  • Electric Gripper-EPGS-12P-15
  • Electric Gripper-EPGS-12P-15
  • Electric Gripper-EPGS-12P-15
  • Electric Gripper-EPGS-12P-15
  • Electric Gripper-EPGS-12P-15

Electric Gripper-EPGS-12P-15

total trip ;12mm clamping force ;15N Maximum clamping load ;0.26kg opening and closing time ;0.15S Overall machine weight ;180g

Category:

EPGS Series (Simple Type Electric Gripper)


  • Product Details
  • Application Cases
  • Related downloads
  • EPGS-12P-15 (Economic Type Electric Gripper)

    Cost-Effective · Precise Control · Compact Intelligent Gripping Solution


    1. Product Overview

    The EPGS-12P-15 Electric Gripper from w-robot is a cost-effective intelligent gripping module designed for lightweight automation, assembly, and testing applications.
    Engineered with an integrated servo motor and precision screw drive, the EPGS-12P-15 delivers stable, repeatable, and adjustable gripping control while maintaining an affordable price.

    This economic electric gripper provides an ideal balance between performance, reliability, and cost, making it a perfect choice for educational robots, electronics assembly, and small-part handling.
    Its compact size, low noise, and easy integration allow smooth deployment in a variety of automated systems and collaborative robots.


    2. Technical Features

    Economic design with high performance-to-cost ratio

    Servo-controlled drive for accurate position and force control

    Repeatability accuracy up to ±0.02 mm

    Lightweight structure for small and medium-sized automation systems

    No pneumatic supply required, reducing maintenance costs

    Plug-and-play integration with standard robot interfaces

    Supports I/O and Modbus communication for simple programming

    Low energy consumption and long operating life


    3. Application Fields

    The EPGS-12P-15 is widely used in light-duty industrial and educational automation, including:

    Electronics and PCB Assembly

    Small Component Pick-and-Place Systems

    Laboratory and Medical Equipment Automation

    Teaching Robots and Research Platforms

    Automated Testing and Quality Inspection Systems

    Consumer Product Packaging and Handling Lines

    Thanks to its affordable design and precise control, the EPGS-12P-15 is a reliable choice for startups, OEM integrators, and educational institutions looking to implement intelligent automation.


    4. Model Selection & Customization

    w-robot offers flexible customization options for the EPGS series to meet specific automation needs:

    Adjustable gripping stroke, force range, and speed

    Customized fingers or soft pads for various part shapes

    Optional signal feedback (position or torque)

    Mounting compatibility with multiple robot brands

    Various communication protocols available (I/O, Modbus, RS485)

    Complete 2D/3D drawings and parameter sheets provided


    5. More Information

    For detailed specifications, control interface documents, and 3D model data of the EPGS-12P-15 Electric Gripper,
    please contact the w-robot technical support team.
    We provide gripper selection guidance, motion system integration support, and customized end-effector solutions for your automation projects.

    Electric Gripper

    6. Product Advantages

    Affordable yet precise servo-electric gripping solution

    Compact and lightweight for flexible integration

    Low-noise, low-maintenance operation

    Programmable force and position control

    Energy-efficient alternative to pneumatic grippers

    Easy installation with plug-and-play design

    Reliable performance for 24/7 operation

    The EPGS-12P-15 brings the power of electric gripping technology to cost-sensitive applications — enabling smarter, quieter, and more efficient automated handling.

    7. Installation & Maintenance

    Ensure the mounting base is flat and rigid before installation

    Keep gripper jaws clean to maintain stable gripping accuracy

    Avoid excessive loads or misalignment during operation

    Perform periodic inspection of screw transmission and lubrication

    Avoid operation in high-temperature or high-humidity environments

    Always use original cables and controllers to ensure system stability

    8. Learn More

    Recommended Articles:

    w-robot: Smart Electric Grippers for the Next Generation of Automation

    Cost-Effective Robotic End-Effectors — Choosing the Right Electric Gripper

    Learn About the Company:

    About w-robot

    Service & Support

    Explore Related Products:

    EPGS-6-10 (SMC-16D) Electric Gripper

    VGTY15 Electric Cylinder Module

    VGTH15 Fully-Sealed Ball Screw Module

    VGL15 Linear Motor Module

     

     

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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