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Electrical module with M12 power connection technology

DuraDock Servo Transfer modules servo-electric applications

The DuraDock Servo electric module from Stäubli FCS with M12 power connection technology is the ideal solution for servo-electric applications. It serves as an interface for transferring electrical power and signals between the robot controller and the tool. This makes the module ideal for servo-electric (electric motor) drives such as automatic screwdrivers, grinding machines, spindle drives, feed pumps, heaters or servo gripper systems (electric motor grippers), etc. 

The DuraDock Servo series can be attached directly to the robot's tool changing system or via an adapter plate. The module meets the requirements for all servo applications:

  • Power Supply: The DuraDock Servo provides a stable power supply for continuous, uninterrupted operation.
  • Ruggedness and reliability: Vibrations, temperature fluctuations and other forms of mechanical stress can occur in a manufacturing environment. The DuraDock Servo is ruggedly built and highly reliable.
  • Flexibility and adaptability: The rotatable cable outlet of the DuraDock Servo module allows the tool (e.g., power screwdriver) to be flexibly adapted to different situations without putting too much strain on the cable harness.
  • Compactness: Tool change systems often have limited space. The DuraDock Servo has a space-saving design.

Notes: Ultra Video Version - Servo Video is coming

Duradock Servo for servo-electric robotic applications

Compact & space-saving design

Minimizes space requirements, allowing better adaptation to complex configurations.

Maximum flexibility

The 180° rotatable cable outlet allows the connector to be seamlessly adjusted in variable directions, simplifying installation.

Vibration-resistant transmission

Reliable signal and power transmission is achieved by connecting through a printed circuit board (PCB) that remains stable under vibration.

Latest connection technology

The use of M12 POWER connectors represents modern and powerful connection technology for the highest demands.

IP65 protection in mated condition

The connector is protected against dust and water jets when mated thanks to its IP65 certification.

Stäubli's Duradock Servo electric module serves a wide range of industries at the forefront of automation and robotics that require consistent and precise servo-electric drives. The module is particularly suitable for integrating automated screwdrivers and other tools into robotic tool change systems, improving efficiency and reliability across a range of operations.

Key industries benefiting from the Duradock Servo module include

Automotive: Streamlining assembly and production lines with reliable tool change systems to meet quality standards and rapid throughput requirements.

Electrical/Electronics Manufacturing: Ensuring accurate assembly processes with precise, automated tool change, critical for miniature and delicate components.

Mechanical and plant engineering: Offer robust, adaptable modules that can support the wide range of tools required for complex engineering tasks.

Aerospace: Providing the precision and reliability required for the assembly and maintenance of critical aerospace components and systems.

Medical: Facilitating rigorous assembly and manufacturing processes with the highest levels of accuracy and hygiene.

Packaging Industry: Enhancing packaging lines with versatile tool change capabilities that keep pace with the dynamic nature of packaging requirements.

Assembly technology: Enabling high-precision automated tool change to support different assembly techniques and improve line flexibility.

The Duradock Servo module serves these industries and all others where high precision and reliable tool change functionality is key. By choosing Stäubli's Duradock Servo, companies are investing in an advanced solution that promises to optimize their automated systems and increase productivity.

Contact us for more information.

Stäubli is a leading technological pioneer in the construction and development of robotic tool changing systems

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