Partnership

ARRTSM GmbH and Camozzi Automation Elevate Motion & Fluid Control in Autonomous CNC Cells

7/28/2018

ARRTSM GmbH and Camozzi Automation Elevate Motion & Fluid Control in Autonomous CNC Cells

ARRTSM partners with Camozzi Automation to integrate advanced motion and fluid control technologies into AI-driven autonomous CNC robotic systems.

Dettenhausen, Germany & Italy – July 2018

ARRTSM GmbH proudly announces a strategic collaboration with Camozzi Automation, integrating a broad range of Camozzi’s precision motion and fluid control components into ARRTSM’s AI-enhanced autonomous CNC robotic platforms.

This partnership strengthens the physical execution layer of ARRTSM’s autonomous systems—bringing greater precision, scalability, and intelligence to pneumatic and electromechanical motion control.


Integrated Components

Valve Islands (Multipole / Fieldbus)

Compact, digitally controlled valve clusters enabling centralized pneumatic control while reducing wiring complexity. Supported protocols include Profibus, EtherNet/IP, CANopen, and others—enhancing diagnostics and system transparency.

Solenoid & Logic Valves

High-performance 2/2 and 3/2 solenoid valves and logic valves deliver precise actuation for safety, sequencing, sealing, and venting operations.

Flow Control & Proportional Valves

Advanced series such as SCU, SVU, and proportional syringe-type valves provide accurate, bidirectional control of pressure, flow, and positioning—essential for AI-driven motion regulation.

Pneumatic & Electromechanical Actuators

A wide range of solutions including:

  • ISO-series cylinders
  • Compact guided actuators
  • Rodless cylinders
  • Rotary modules
  • Electric actuators (6E, 5E series)

These systems combine fast motion with high-precision positioning.

Air Treatment & Fittings

Modular FRL units (filters, regulators, lubricators), flow sensors, pressure switches, and quick-connect brass and technopolymer fittings ensure stable, clean, and reliable actuation.

Vacuum & Handling Components

Suction cups, ejectors, filters, and vacuum connectors optimized for repeatable, safe gripping—complementing ARRTSM’s AI-guided material handling architecture.


Why It Matters

Scalable Pneumatic Control

Valve islands simplify multi-step pneumatic workflows—critical for coordinating gripping, tool clamping, and safety interlocks across autonomous cells.

Precision Physical Motion

Proportional valves and electromechanical actuators enable nuanced, sensor-driven motion control for complex manipulation tasks.

Modularity & Intelligence

Smart valve clusters and electric cylinders integrate seamlessly into ARRTSM’s digital twin systems, enabling plug-and-play configuration, diagnostics, and remote updates.


Use Cases Across Robotic Cells

  • Tool Changer Automation:
    Pneumatic locking and ejection systems for seamless end-effector switching.

  • Adaptive Gripping & Vacuum Sealing:
    Real-time flow and vacuum adjustment for gentle handling of diverse materials.

  • Actuated Setup & Fixtures:
    Electromechanical positioning systems achieve micron-level accuracy under AI coordination.


Roadmap

  • Q3 2019:
    Engineering of custom valve islands and integration into demonstration cells.

  • Q4 2019:
    Deployment and testing of complete pneumatic and motion-control workflows on CNC prototypes.

  • 2020:
    Launch of turnkey integrated autonomy kits for sectors including aerospace, composites, electronics, and advanced manufacturing.


About the Partners

ARRTSM GmbH
A pioneer in AI-based autonomous CNC robotics, combining digital twins, intelligent control, and advanced automation to redefine precision manufacturing.

Camozzi Automation
A global leader in motion and fluid control systems, delivering valves, cylinders, sensors, electric actuators, and pneumatic solutions for industrial, transportation, and life-science applications.


Together, ARRTSM and Camozzi Automation are engineering the motion and pneumatic backbone of next-generation autonomous factories—where every valve, actuator, and vacuum pad is intelligently coordinated for precision, speed, and adaptability.