3377 results found
    1. Extension module XF 6929

      Extension module XF 6929

      Flexible extension of safety circuits The extension module XF 6929 from the SAFEMASTER series enables reliable and flexible extension of safety circuits. With front-side contact via cage clamp terminals and a wide voltage range of DC 8 - 36 V, it offers high installation convenience and versatile application options. Safety switching devices with semiconductor outputs, such as BWS, emergency stop or OSSD systems, can be expanded with potential-free relay contacts using the XF 6929. The module has up to two separately controllable, forcibly guided relay circuits in a compact 17.5 mm housing and is ideal for applications in mechanical and plant engineering. - Wide voltage range from DC 8 ... 36 V - Space-saving in the switch cabinet due to a width of only 17.5 mm - Suitable for combustion plants in accordance with EN 50156-1

    2. External Encoder

      External Encoder

      Rotary Encoder – Incremental Feedback Devices for Motion Control Oriental Motor’s Rotary Encoder series includes ultra-compact, high-resolution incremental encoders designed for tight-space installations. Technical Features Housing Types: • Round shaft models in Ø30 mm or Ø40 mm • Hollow shaft models in Ø30 mm or Ø40 mm Resolution Options: 14 options ranging from 100 to 4,000 P/R Output Formats: Line driver, voltage output, or open-collector (5–24 VDC) Physical Specs: Ø30 mm or Ø40 mm, depth 22 mm, weight ~33 g (round-shaft), ~38 g (hollow‑shaft) Signal Outputs: A, B, Z phases for precise position and speed detection IP65 version: round shaft with Ø40 mm, available as Line Driver or Open Collector type Benefits & Applications • Enables detection of rotation differences (belt slippage, pulley deflection) and supports predictive maintenance systems • Very small footprint; ideal for retrofit or space-constrained designs. Mounting adapter (PEF2) simplifies installation on Ø30 mm shafts • Easy mechanical alignment of Z-phase output—Z-signal at 180° from connector orientation

    3. Extreme foot switch RF GFSI Extreme

      Extreme foot switch RF GFSI Extreme

      Able to withstand high-pressure cleaning, mechanically robust and corrosion-resistant/ Foot controls for extreme environments The foot controls in our “GF(S)I Extreme” series are designed to be very robust and can withstand even high levels of mechanical wear and tear. An optional protective guard hinders unintentional actuation. The housing is so effectively sealed that it can even withstand high-pressure cleaning (protection class IP 69K). The special powder-coated and corrosion resistant aluminium housing also passed the salt spray test according to DIN EN ISO 9227 with no difficulty at all. This switchgear series can be used in safety applications (GFSI) and to actuate machine functions during normal operation (GFI). Different switching inserts permit adaptation to individual applications. An Ex variant for Ex zones 1 and 21 is under development. A wireless variant requiring neither power nor signal cables is also planned. This variant will communicate via the sWave SW868 /SW915 wireless technology developed by steute. It facilitates greater flexibility when positioning switchgear and excludes the risk of cables becoming damaged in the rough ambient conditions which extreme foot controls are exposed to every day.

    4. Extremely variable and flexible: VARO-JM adjustment models

      Extremely variable and flexible: VARO-JM adjustment models

      Manufacturing tolerances can always occur in the mechanical design. Our VARO-JM adjustment models are the ideal module extension to compensate for these and keep them as low as possible. The VARO-JM adjustment models are used for exact adjustment of the elements in the xy-range. They can be attached to work surfaces or integrated into assemblies. The column bases from our PEX series can be easily mounted on them. Like all our modules, the VARO-JM series is available in different colors and sizes. The dimensions of the modules depend on the size of the columns to be accommodated. In addition to the standard color black anodized, VARO-JM is available in the special colors red, blue, green and gold anodized as well as with an ESD conductive coating.

    5. EYE+ Smart Control System

      EYE+ Smart Control System

      Composed of a powerful compact controller and a high-resolution camera, the intuitive EYE+ smart control system integrates AI-based algorithms to optimize the performance of your Asycube flexible feeder. EYE+ manages all components of your application including the robot via the EYE+ Studio web-based interface. Thanks to a large number of ready-to-use plugins for robots and feldbuses such as EtherNet/IP, EtherCAT and PROFINET, you can easily integrate EYE+ into any automation machine.

    6. EyeSorter Checkbox

      EyeSorter Checkbox

      An optical sorting unit designed for high-speed part recognition and orientation with no prior image processing knowledge required. It is suitable for use with bowl feeders and automatic assembly machines and offers additional functions for measurement and quality assurance. Key Features: - Detects parts with AI in milliseconds and processes up to 1800 parts per minute. Equipped with an image capture speed of 7000 lines per second. - Identifies part orientation and signals rotation or ejection of misaligned parts. - Optional metrology features allow for customizable measurements. Users can define specific metrics to be measured. - Ensures correct part spacing and ejects parts that are too close to avoid contaminating the good part channel. - Simple setup with one-time calibration and an intuitive touchscreen interface. - New components can be trained with a single button press. - Includes status LED indicators for all signals and all connectors are industry standard M12 for interfacing. Supports standard Ethernet protocols for factory integration into the SCADA but also direct communication to the machine like OPC UA Profinet Modbus IP. Optionally programmable with EyeVision software for advanced optical inspection.

    7. EyeVision -  Machine Vision Software 1D, 2D, 3D, Thermo

      EyeVision - Machine Vision Software 1D, 2D, 3D, Thermo

      EyeVision is image processing software for all areas of industrial image processing. No programming knowledge is required for operation, since parameterization is carried out via drag and drop. The software supports all common cameras and is almost independent of the operating system. It can also be installed on smart cameras and Raspberry systems. More than 350 function tools enable the realization of all image processing tasks and where classic image processing reaches its limits, the identical software can be used to access AI or deep learning.

    8. EZS Series - Linear Slider

      EZS Series - Linear Slider

      EZS Series – Electric Linear Slides with AZ Hybrid Stepper Motor The EZS Series offers compact, high-precision electric linear slides with integrated ball screw and guide rails. With a battery-free absolute encoder from the AZ Series, the unit enables reliable positioning without homing – ideal for clean, efficient automation. Key Specs Sizes: • EZSM3: 54 × 50 mm • EZSM4: 74 × 50 mm • EZSM6: 74 × 66.5 mm • Motor Orientation: Straight or Reversed (Left/Right) • Stroke Lengths: 50 – 850 mm (in 50 mm increments) • Lead Pitch: 6 mm or 12 mm • Repeatability: ±0.02 mm • Max Speed: Up to 800 mm/s (depending on model) • Permissible Moment (EZSM6, static): up to 340 Nm • Load Capacity: Up to 30 kg vertically / 60 kg horizontally (depending on model) Key Features • Built-in Absolute Sensor (AZ Series): No battery, no homing required • Dust-Proof Stainless Steel Design: With smooth-running rollers • Low Particle Generation: Cleanroom compatible for some selected versions (ISO Class 3 achievable) • Space-Saving: Reversed motor up to 136 mm shorter than straight type • Electromagnetic Brake (optional): Holds load in vertical applications • Flexible Communication: Supports EtherCAT, EtherNet/IP, PROFINET, Modbus RTU

    9. F08-M1 - Pressure sensor

      F08-M1 - Pressure sensor

      Precise and Compact Industrial Sensor in a Durable Stainless Steel Housing - Compact and Robust Design: Ideal for demanding industrial environments. - Versatile Programming Options: Easily adaptable to specific needs. - IO-Link Capability: Seamless integration into modern automation systems. - LABS-Free: Certified according to the latest VDMA standards. Perfect for Pneumatic Applications: Engineered for challenging use cases. The F08-M1 is specifically designed for demanding conditions in the pneumatic sector. It excels with vibration and shock resistance and is certified as LABS-free, making it an excellent choice for sensitive applications. Flexible Parameterization In IO-Link mode, the F08-M1 offers extensive parameterization options for maximum adaptability. If not connected to an IO-Link master, the sensor can function as a traditional signal transmitter or switch.

    10. Fabrik der Zukunft: Modulares Software-Ökosystem für smarte Werkzeugmaschinen

      Fabrik der Zukunft: Modulares Software-Ökosystem für smarte Werkzeugmaschinen

      𝗖𝗼𝗻𝘀𝗶𝘀𝘁𝗲𝗻𝗰𝘆 𝗮𝗻𝗱 𝗖𝗼𝗻𝗻𝗲𝗰𝘁𝗶𝘃𝗶𝘁𝘆 𝗶𝗻 𝘁𝗵𝗲 𝗣𝗿𝗼𝗱𝘂𝗰𝘁𝗶𝗼𝗻 𝗣𝗿𝗼𝗰𝗲𝘀𝘀 Together with the EMAG Group and our partner Intuity, we developed a modular HMI software for machine tools. EMAG machines cover all relevant metalworking processes and, at the start of the project, relied on heterogeneous panels and data systems. By standardizing the data format, we created a unified user interface across different machine types—clearly structured, consistent, and interconnected. 𝗖𝗼𝗺𝗽𝗹𝗲𝘅 𝗥𝗲𝗾𝘂𝗶𝗿𝗲𝗺𝗲𝗻𝘁𝘀 𝗮𝗻𝗱 𝗠𝗼𝗱𝘂𝗹𝗮𝗿 𝗦𝘆𝘀𝘁𝗲𝗺𝘀 — 𝗡𝗼 𝗢𝗻𝗲-𝗦𝗶𝘇𝗲-𝗙𝗶𝘁𝘀-𝗔𝗹𝗹 High functional depth, diverse machine types, and variable user journeys made the development highly complex. The software must cover a wide range of operating contexts—from machine operators to process engineers—and respond in real time to machine status, components, automation, and service cases. Added to this are variable screen sizes (stationary/mobile), touch interactions, and strict safety requirements in a production environment. Together, we developed a modular frontend system based on React. The goal was to establish a consistent, abstracted control layer across machine types—forming the basis for consistent user interactions and interoperable data flows in line with Industry 4.0 principles. The widget-based architecture provides both overview and technical depth: from NC code editors and maintenance widgets to automated workpiece configuration.