808 results found
    1. Integrated Stepper Motors Linear Actuator NEMA17 to NEMA34

      Integrated Stepper Motors Linear Actuator NEMA17 to NEMA34

      The JVL stepper motor linear actuator is available in non-captive, external linear and captive options. Captive and external linear are also available with integrated build in controller or driver.They are available in a wide variety of resolutions from x mm/rev to y mm/rev. In addition to our standard configurations can we custom design this stepper motor linear actuator to meet your specific application requirements. The range come in three sizes from 42mm to 86mm square flange NEMA17,NEMA23 and NEMA34. Key electronics features: Industrial Ethernet. 6 Protocols Very high motor power and torque Closed-loop operation with current control Very high efficiency= low temperature rise Absolute multiturn encoder Safe Torque Off (STO) input TUV approved. High resolution 409600 cnt/rev. Speed 0-3000 in 0.01 RPM steps Wide supply range 7-72 VDC Industrial Ethernet:Profinet, EtherCAT, Powerlink, EtherNet/IP, Modbus TCP or SERCOS III are available and for EtherCAT and SERCOS III synchronization and drive profiles are available. MACtalk can use Ethernet for comissioning the motor so no need for RS232/RS485 converter or additional cables. The motor has the ability to be upgraded with other protocols or newer versions of the same protocol at any time. Because of the upgradeability, the JVL Industrial Ethernet module is also ‘future proof' as newer versions of the protocols will always fit into the design. The motor is equipped with two Ethernet connectors and a built-in switch, enabling line topology without any extra expensive hardware. Several LEDs, enabling technicians and operators to get a quick status overview  Closed-loop provides higher torque, faster acceleration, current control, stall free operation and quieter operation compared to more traditional step motor systems. Motor range: MIL171 and MIL176 MIL231 and MIL232 MIL341

    2. Intelligent edge computing controllers for machines and systems

      Intelligent edge computing controllers for machines and systems

      With its UNO-100 and UNO-300 series edge controllers, AMC offers powerful and flexible solutions for industrial automation and edge computing applications. They are ideal for real-time monitoring, data management, and PC-based measurement and control tasks. The controllers are designed for scalable performance and enable greater efficiency and lower latency through local data processing. They thus support the increasing connectivity in the Industrial IoT and optimize computing power at the edge. Robustness & safety: UNO-100 and UNO-300 are designed for continuous industrial use, comply with IEC61010-1 safety standards, and operate reliably at temperatures ranging from -20 °C to +60 °C. Their design enables seamless system upgrades without downtime, ideal for smart factory environments. Expandability: The systems offer mPCIe and PCI(e) expansion slots (UNO-348) for additional I/O or communication modules. - UNO-137: Supports modular expansions such as fieldbuses, wireless modules, and I/O interfaces with iDoor technology. - UNO-127: compact controller for OT/IT data integration and edge gateway tasks. Remote maintenance: Models such as UNO-148 and UNO-348 feature out-of-band management (OOB) with iBMC remote control, enabling remote recovery after system crashes. All systems can be centrally monitored and managed via the WISE-DeviceOn platform. Real-time communication: The UNO-148 supports Time Sensitive Networking (TSN) for precise real-time communication and virtualization of multiple real-time operating systems on different CPU cores. The AMC UNO-100/300 series offers scalable performance, high robustness, and flexible expandability. It is ideal for edge computing, industrial automation, and intelligent data acquisition in modern IIoT environments.

    3. IO-Link for integrated stepper motors MIS

      IO-Link for integrated stepper motors MIS

      Integrated IO-Link - fast and easy! Optimize factory automation with IO-Link, a cost-effective alternative to traditional Ethernet-based systems. Integration into Siemens and Rockwell PLCs is significantly simplified with IODD, AOI, and function blocks. Thanks to conformance-tested features such as data storage, event handling, diagnostic data, and block parameters, IO-Link offers a reliable and efficient solution for modern automation systems. Furthermore, the direct connection to any IO-Link master enables fast communication with a response time of less than 1 millisecond. Leverage the advantages of IO-Link for efficient and future-proof automation!

    4. IO-Link-Master

      IO-Link-Master

      Key benefits at a glance: - PROFINET IO, Modbus/TCP, and OPC UA support - Web-based configuration of the module and IO-Link devices - Integrated IODD memory for more than 100 IODDs - Downloadable module configuration - M12 L-coded power supply connector Functional scope: The module is a PROFINET IO fieldbus module with 8 Type A IO-Link master ports according to the IO-Link standard V1.1. The fieldbus module serves as an interface between the controller of a PROFINET IO fieldbus system and IO-Link devices at the field level. The integrated web server and IODD interpreter enable complete configuration of the fieldbus module and the connected IO-Link devices without the need for special software tools. Information about the module's status is also displayed, and network parameters such as the IP address and subnet mask can be configured. The module is capable of saving all configurations, enabling standalone use without a higher-level PLC. MultiLink provides simultaneous data access for multiple controllers via various communication protocols such as PROFINET IO, Modbus/TCP, and OPC UA. An L-coded M12 device connector for the power supply enables a current carrying capacity of up to 2 x 16 A. The inputs and outputs are equipped with A-coded M12 device connectors. Connection to the fieldbus is via a D-coded M12 device connector. Status information for each channel is displayed via LEDs as a diagnostic function.

    5. IPC systems with 14th generation Intel Core processors

      IPC systems with 14th generation Intel Core processors

      Thanks to recent BIOS upgrades, numerous industrial PC platforms—including ATX motherboards, PICMG 1.3 SBCs, modular and compact IPCs—now support the latest 14th generation Intel® Core™ i9/i7/i5/i3 processors with up to 24 cores and 32 threads. This increases computing power by up to 23% with a turbo frequency of up to 5.6 GHz. Ideal for intelligent factory automation, machine vision, transportation, and edge AI applications. The hybrid architecture combines up to eight performance cores (P-cores) for high computing power with up to sixteen efficient cores (E-cores) for efficient multitasking. Up to 192 GB DDR5-5600 and DDR4-3200 are supported. With up to 16 PCIe 5.0 and 20 PCIe 4.0 lanes, the processors offer maximum bandwidth and flexibility. Product series: - ATX motherboards (AIMB-788E/788/708): Up to 192 GB DDR5, numerous PCIe slots, M.2 (NVMe), multi-display support. - PICMG 1.3 SBCs (PCE-5133/5033): Up to 64 GB DDR5 with ECC, diverse I/Os, backplane compatible. - Modular IPC MIC-770 V3: Fanless, robust (-20 °C to 60 °C), DDR5, iDoor/Flex IO expansion, ideal for edge computing. - Compact IPCs (IPC-320/220/240): 14th Gen CPUs, DDR5 or DDR4, dual LAN, NVMe M.2, quiet operation (34 dB). Advantages: - Up to 23% more performance thanks to new Intel® architecture. - DDR5 and PCIe 5.0 support for high data rates. - Wide range of platforms for industrial applications. - Reliable, expandable, and available long term. With upgrades to the 14th generation Intel® Core™, AMC offers a powerful, scalable, and future-proof platform base for automation, AI, and industrial edge computing.

    6. iPOS360x SY Multi-Axis Motion System

      iPOS360x SY Multi-Axis Motion System

      The iPOS360x SY multi-axis motion system provides a compact, ready-to-run solution for multi-axis applications. It's a flexible architecture, where any configuration of 2 to 6 axes can be designed by properly selecting drives, communication interfaces and PCB bridges. This motion system includes: a main board for mounting the multi-axis motion system up to six iPOS3602 VX or iPOS3604 VX intelligent drives up to six ECAT-VX plug-in interfaces (EtherCAT version) up to six EtherCAT/CAN bridges, for unused axes (EtherCAT version) or six EtherCAT/CAN bridges for each axis (CAN version)