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Showing results: 2026 - 2040 of 9910 items found.

  • UltraZed PCIe Carrier Card for UltraZed-EG System-on-Module

    AES-ZU-PCIECC-G - AVNET

    The UltraZed PCIe Carrier Card supports the UltraZed-EG System-on-Module (SOM), providing easy access to the full 180 user I/O, 26 PS MIO, and 4 PS GTR transceivers available from the UltraZed-EG SOM via three Micro Headers. Two 140-pin Micro Headers on the carrier card mate with the UltraZed-EG SOM, connecting 180 of the UltraZed-EG Programmable Logic (PL) I/O to 2 Digilent Pmod™ compatible interfaces, FMC LPC slot, LVDS Touch Panel interface, push button switches, DIP switches, LEDs, Xilinx SYSMON, and clock oscillator.

  • Text-Based Way to Connect & Disconnect Relays on ABex Modules

    ABex Switching - Konrad Technologies GmbH

    The ABex Switching features a text-based way to connect and disconnect relays on ABex modules. Alias names for channels could be defined in a DUT specific topology file and then be used for text-based switching. These alias names are also shown in the Konrad System Manager allowing easy debugging of test sequences. The ABex Switching functionality could be either used out of NI Teststand with the provided test steps or via API from other programming languages.- Text-based switch routes- XML based topology for Alias mapping- Switch routes with support for Alias names- Seamless integration into Konrad System Manager

  • NI-1483, Full-Configuration Camera Link Adapter Module for FlexRIO

    781341-01 - NI

    The NI‑1483 makes FPGA image processing possible for FlexRIO systems. It supports 80‑bit, 10‑tap base‑, medium‑, and full‑configuration image acquisition from Camera Link 1.2 standard cameras. You can pair the NI‑1483 with a PXI FPGA Module for FlexRIO to perform custom image analysis. FPGA processing is ideally suited for applications that require bit-level processing and very low system latency. Implemented in hardware, FPGA processing does not require CPU intervention. You can process images on the FPGA independently or with a CPU for more advanced preprocessing architectures.

  • LXI Optical Switching - 16x16 Matrix Plugin Module

    65-280-314 - Pickering Interfaces Ltd.

    The 65-280-314 16x16 matrix is part of the 65-280 and 65-281 ranges of optical plug-in modules offering matrix & insert/bypass or multiplexer & SPST topologies respectively with all models based on MEMS fiber optic switches and available in various populations per plugin. In addition, a choice of different connector styles to suit most applications is offered: FC/APC (for optimal performance), FC/PC, SC/PC and ST for general applications and LC for high density applications. They use MEMS (Micro-Electro-Mechanical-Systems) based optical switches to route signals between terminals by redirecting the optical signal. This is achieved using micromechanical mirrors driven by a highly precise mechanism activated via an electrical control signal.

  • LXI Optical Switching - 4x4 Matrix Plugin Module

    65-280-321 - Pickering Interfaces Ltd.

    The 65-280-321 4x4 matrix is part of the 65-280 and 65-281 ranges of optical plug-in modules offering matrix & insert/bypass or multiplexer & SPST topologies respectively with all models based on MEMS fiber optic switches and available in various populations per plugin. In addition, a choice of different connector styles to suit most applications is offered: FC/APC (for optimal performance), FC/PC, SC/PC and ST for general applications and LC for high density applications. They use MEMS (Micro-Electro-Mechanical-Systems) based optical switches to route signals between terminals by redirecting the optical signal. This is achieved using micromechanical mirrors driven by a highly precise mechanism activated via an electrical control signal.

  • LXI Optical Switching - 5x5 Matrix Plugin Module

    65-280-322 - Pickering Interfaces Ltd.

    The 65-280-322 5x5 matrix is part of the 65-280 and 65-281 ranges of optical plug-in modules offering matrix & insert/bypass or multiplexer & SPST topologies respectively with all models based on MEMS fiber optic switches and available in various populations per plugin. In addition, a choice of different connector styles to suit most applications is offered: FC/APC (for optimal performance), FC/PC, SC/PC and ST for general applications and LC for high density applications. They use MEMS (Micro-Electro-Mechanical-Systems) based optical switches to route signals between terminals by redirecting the optical signal. This is achieved using micromechanical mirrors driven by a highly precise mechanism activated via an electrical control signal.

  • LXI Optical Switching - 8x8 Matrix Plugin Module

    65-280-313 - Pickering Interfaces Ltd.

    The 65-280-313 8x8 matrix is part of the 65-280 and 65-281 ranges of optical plug-in modules offering matrix & insert/bypass or multiplexer & SPST topologies respectively with all models based on MEMS fiber optic switches and available in various populations per plugin. In addition, a choice of different connector styles to suit most applications is offered: FC/APC (for optimal performance), FC/PC, SC/PC and ST for general applications and LC for high density applications. They use MEMS (Micro-Electro-Mechanical-Systems) based optical switches to route signals between terminals by redirecting the optical signal. This is achieved using micromechanical mirrors driven by a highly precise mechanism activated via an electrical control signal.

  • PXIe-8510, 6-Port PXI Vehicle Multiprotocol Interface Module

    784122-01 - NI

    2- or 6-Port PXI Vehicle Multiprotocol Interface Module—The PXIe‑8510 is a hardware-selectable controller area network (CAN) and/or local interconnect network (LIN) interface for developing applications with the NI‑XNET driver. The PXIe-8510 excels in applications requiring real-time, high-speed manipulation of hundreds of CAN frames and signals, such as hardware‑in‑the‑loop simulation, rapid control prototyping, bus monitoring, automation control, and more. The NI‑XNET device-driven DMA engine enables the onboard processor to move CAN frames and signals between the interface and the user program without CPU interrupts, minimizing message latency and freeing host processor time for processing complex models and applications.

  • PXIe-8510, 2-Port PXI Vehicle Multiprotocol Interface Module

    784121-01 - NI

    2- or 6-Port PXI Vehicle Multiprotocol Interface Module—The PXIe‑8510 is a hardware-selectable controller area network (CAN) and/or local interconnect network (LIN) interface for developing applications with the NI‑XNET driver. The PXIe-8510 excels in applications requiring real-time, high-speed manipulation of hundreds of CAN frames and signals, such as hardware‑in‑the‑loop simulation, rapid control prototyping, bus monitoring, automation control, and more. The NI‑XNET device-driven DMA engine enables the onboard processor to move CAN frames and signals between the interface and the user program without CPU interrupts, minimizing message latency and freeing host processor time for processing complex models and applications.

  • 4-CH 16-Bit 2MS/s Simultaneous-Sampling USB DAQ Module

    USB-1210 - ADLINK Technology Inc.

    The USB-1210 is a 16-bit high-speed USB 2.0-based DAQ module equipped with 4 analog input channels providing simultaneous sampling at up to 2MS/s per channel. The USB-1210 delivers high accuracy and excellent dynamic performance at maximum sampling rates, and flexible trigger functions. In addition, onboard 64M samples FIFO ensures no data loss during acquisition even when CPU or system loading is heavy.The USB-1210 is USB bus-powered and equipped with removable screw-down terminals for easy device connectivity. The attached multifunctional stand can be used for desktop, rail, or wall mounting. Suitable for high-speed data acquisition, laboratory and medical research, the USB-1210 provides a reliable measurement solution at an affordable price.

  • PXI-7342, 2-Axis, Stepper/Servo PXI Motion Controller Module

    779036-02 - NI

    2-Axis, Stepper/Servo PXI Motion Controller Module—The PXI‑7342 is recommended for both simple and complex motion applications. It includes dual processors, a real-time onboard OS, and multiaxis interpolation. The PXI‑7342 offers blended motion trajectory control and fully coordinated circular, linear, point-to-point, gearing, and vector-space control in either embedded motion operation or host-centric programming environments. NI provides contouring capability for more complex moves. The onboard CPU uses an embedded real-time OS that has event-driven multitasking control. With this approach, several motion control programs and processes can operate simultaneously on the controller independently of the host PC and with no outside program interaction unless the host program or user configuration initiates it.

  • 32-CH Sinking Type Digital Ouput EtherCAT Module

    EPS-2132 - ADLINK Technology Inc.

    ADLINK" s EPS slave system features modular design for flexible high channel density, rugged construction, easy maintenance, and intelligent performance, compatible with 3rd party EtherCAT products. Precise time-deterministic control enables I/O synchronization for critical applications, and FPGA and ARM technology allow users to fully monitor status of EPS modules and systems, including operating temperature and usage cycle of relay switching, as well as motion control status for general purpose motor drive control. In addition, the ADLINK EtherCAT configurator enables auto-scan and configuration across EtherCAT systems. The EPS" unique structural and electronic design supports hot-swappable function, reducing repair time, and the rugged construction and operating temperature range of -20°C to 60°C allow operation in the harshest environments.

  • 32-CH Sourcing Type Digital Input EtherCAT Module

    EPS-1032 - ADLINK Technology Inc.

    ADLINK" s EPS slave system features modular design for flexible high channel density, rugged construction, easy maintenance, and intelligent performance, compatible with 3rd party EtherCAT products. Precise time-deterministic control enables I/O synchronization for critical applications, and FPGA and ARM technology allow users to fully monitor status of EPS modules and systems, including operating temperature and usage cycle of relay switching, as well as motion control status for general purpose motor drive control. In addition, the ADLINK EtherCAT configurator enables auto-scan and configuration across EtherCAT systems. The EPS" unique structural and electronic design supports hot-swappable function, reducing repair time, and the rugged construction and operating temperature range of -20°C to 60°C allow operation in the harshest environments.

  • PXIe-8234, GigE Vision PXI Frame Grabber Module

    780263-01 - NI

    GigE Vision PXI Frame Grabber Module—The PXIe-8234 with Vision Acquisition Software can acquire images from the fastest GigE Vision cameras. It transfers images at full Gigabit Ethernet bandwidth on both ports simultaneously, and it is optimized for extremely low CPU load. The PXIe-8234 with Vision Acquisition Software provides full GigE Vision bandwidth at every port, giving you the bandwidth you need for your most demanding vision applications. It also includes NI Vision Acquisition Software, which is driver software for acquiring, displaying, logging, and monitoring images from a multitude of camera types. With a set of easy-to-use functions and example programs, you can quickly create applications using LabVIEW, C, C++, C#, Visual Basic, and Visual Basic .NET.

  • PXI-8513 , 2-Port, Software-Selectable PXI CAN Interface Module

    780688-02 - NI

    2-Port, Software-Selectable PXI CAN Interface Module—The PXI‑8513 is a software-selectable Controller Area Network (CAN) interface for developing applications with the NI‑XNET driver. NI‑XNET Software‑Selectable CAN Interfaces offer the best flexibility for CAN development with onboard transceivers for High-Speed/Flexible Data‑rate, Low-Speed/Fault Tolerant Single Wire CAN as well as any external transceiver. The PXI‑8513 excels in applications requiring real-time, high-speed manipulation of hundreds of CAN frames and signals, such as hardware‑in‑the‑loop simulation, rapid control prototyping, bus monitoring, automation control, and more. The NI‑XNET device-driven DMA engine enables the onboard processor to move CAN frames and signals between the interface and the user program without CPU interrupts.

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