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Showing results: 1186 - 1200 of 1312 items found.

  • PXI Relay Module

    NI

    PXI Relay Modules consist of multiple independent relays, such as single-pole single-throw (SPST), single-pole double-throw (SPDT), and double-pole double-throw (DPDT) relays. PXI Relay Modules use a variety of relay types, including electromechanical armature relays, reed relays,  field-effect transistor (FET) relays, and solid-state relays, each with their own benefits, allowing you to choose a set of relays that fit your requirements. To program the relays, you can use the IVI-compliant NI-SWITCH driver software, complete with help documentation, example programs, and a soft front panel application for interactive control. For intelligent management of complex switch systems, NI Switch Executive provides additional software tools to help you design, build, and deploy your switching system.

  • PCI-8513, 2-Port, Software‑Selectable/FD CAN Interface Device

    780684-02 - NI

    2-Port, Software‑Selectable/FD CAN Interface Device—The PCI‑8513 is a controller area network (CAN) flexible data-rate (FD) 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/FD, low-speed/fault-tolerant, and single-wire CAN as well as any external transceiver. The PCI‑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, 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.

  • PCI-8513, 1‑Port, Software‑Selectable/FD CAN Interface Device

    780684-01 - NI

    1‑Port, Software‑Selectable/FD CAN Interface Device—The PCI‑8513 is a controller area network (CAN) flexible data-rate (FD) 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/FD, low-speed/fault-tolerant, and single-wire CAN as well as any external transceiver. The PCI‑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, 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.

  • *C Series CAN Interface Module

    NI

    C Series CAN Interface Modules communicate using onboard transceivers for High-Speed/Flexible Data‑Rate or Low-Speed/Fault Tolerant CAN. C Series CAN Interface Modules are either compatible with NI-XNET or the NI-985x driver, depending on model.Using NI-XNET, you can create applications that require real-time, high-speed manipulation of hundreds of CAN frames and signals. 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. C Series CAN Interface Modules work well in applications such as hardware-in-the-loop (HIL) simulation, rapid control prototyping, bus monitoring, and automation control.

  • PXIe-8523, 4-Port, 100/1000BASE-T1 PXI Automotive Ethernet Interface Module

    787311-01 - NI

    PXIe, 4-Port, 100/1000BASE-T1 PXI Automotive Ethernet Interface Module - The PXIe-8523 is a 100/1000BASE-T1 unshielded twisted pair (UTP) PXI Automotive Ethernet Interface Module for developing applications with the NI‑XNET driver. With this hardware, you can develop applications … that require Automotive Ethernet to test and validate automotive electronic control units (ECUs). The PXIe-8523 provides up to four independent endpoints or up to two network terminal access points (TAPs). It features onboard hardware timestamping and can act as up to four separate 802.1AS masters or slaves, so it can synchronize with an external network as well as the rest of a PXI system. The PXIe-8523 also provides LEDs on the front panel to help you monitor the network link and activity.

  • PXIe-8623, 4-Port, 100/1000BASE-T PXI Automotive Ethernet Interface Module

    787992-01 - NI

    PXIe, 4-Port, 100/1000BASE-T PXI Automotive Ethernet Interface Module - The PXIe-8623 is a 100/1000BASE-T unshielded twisted pair (UTP) PXI Automotive Ethernet Interface Module that helps you develop applications with the NI‑XNET driver. With the PXIe-8623, you can develop applications that require Ethernet to test and validate automotive electronic control units (ECUs). The PXIe-8623 provides up to four independent endpoints or up to two network terminal access points (TAPs). It features onboard hardware timestamping and can act as up to four separate 802.1AS masters or slaves, making synchronization with an external network as well as the rest of a PXI system possible. Additionally, the PXIe-8623 features LEDs on the front panel to help you monitor the network link and activity.

  • GPIB-RS485, GPIB Instrument Control Device

    779733-04 - NI

    Serial, RS485/RS422 GPIB Instrument Control Device - The GPIB‑RS485 is an IEEE 488 controller device for PCs with RS485 or RS422 ports. You can use this device to integrate an instrument into your system using GPIB. This device transforms a computer with an RS485 or RS422 … serial port into a talker, listener, or controller on the GPIB bus. It can also interface RS485 and RS422 instruments and peripherals to the GPIB bus. It can implement the physical and electrical specifications of the IEEE 488, RS485, and RS422 standards, as well as interpret and execute high-level commands from the serial port, including serial‑to‑GPIB, and GPIB‑to‑serial protocol conversions. This device is IEEE 488.2 compatible. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB.

  • PXIe-5110, 100 MHz, 1 GS/s, 8-Bit PXI Oscilloscope

    785768-01 - NI

    PXIe, 100 MHz, 1 GS/s, 8-Bit PXI Oscilloscope—The PXIe-5110 oscilloscope has two channels that sample up to 1 GS/s with flexible and programmable settings for coupling, input impedance, voltage range, and filtering. PXI Oscilloscopes also feature a number of triggering modes, deep onboard memory, and an instrument driver that facilitates high-speed data throughput and includes analysis functions. This device is ideal for automated and partially automated applications that require flexible measurement configurations and up to 100 MHz of analog bandwidth. The PXIe-5110 also features advanced PXI synchronization and data throughput capabilities. Some options also support CableSense™ technology, which can detect and locate signal path faults, changes, or discontinuities.

  • PXIe-5110, 100 MHz, 1 GS/s, 8-Bit PXI Oscilloscope

    785767-11 - NI

    PXIe, 100 MHz, 1 GS/s, 8-Bit PXI Oscilloscope—The PXIe-5110 oscilloscope has two channels that sample up to 1 GS/s with flexible and programmable settings for coupling, input impedance, voltage range, and filtering. PXI Oscilloscopes also feature a number of triggering modes, deep onboard memory, and an instrument driver that facilitates high-speed data throughput and includes analysis functions. This device is ideal for automated and partially automated applications that require flexible measurement configurations and up to 100 MHz of analog bandwidth. The PXIe-5110 also features advanced PXI synchronization and data throughput capabilities. Some options also support CableSense™ technology, which can detect and locate signal path faults, changes, or discontinuities.

  • PXIe-5110, 100 MHz, 1 GS/s, 8-Bit PXI Oscilloscope

    785767-01 - NI

    PXIe, 100 MHz, 1 GS/s, 8-Bit PXI Oscilloscope—The PXIe-5110 oscilloscope has two channels that sample up to 1 GS/s with flexible and programmable settings for coupling, input impedance, voltage range, and filtering. PXI Oscilloscopes also feature a number of triggering modes, deep onboard memory, and an instrument driver that facilitates high-speed data throughput and includes analysis functions. This device is ideal for automated and partially automated applications that require flexible measurement configurations and up to 100 MHz of analog bandwidth. The PXIe-5110 also features advanced PXI synchronization and data throughput capabilities. Some options also support CableSense™ technology, which can detect and locate signal path faults, changes, or discontinuities.

  • PXIe-5110, 100 MHz, 1 GS/s, 8-Bit PXI Oscilloscope

    785768-11 - NI

    PXIe, 100 MHz, 1 GS/s, 8-Bit PXI Oscilloscope—The PXIe-5110 oscilloscope has two channels that sample up to 1 GS/s with flexible and programmable settings for coupling, input impedance, voltage range, and filtering. PXI Oscilloscopes also feature a number of triggering modes, deep onboard memory, and an instrument driver that facilitates high-speed data throughput and includes analysis functions. This device is ideal for automated and partially automated applications that require flexible measurement configurations and up to 100 MHz of analog bandwidth. The PXIe-5110 also features advanced PXI synchronization and data throughput capabilities. Some options also support CableSense™ technology, which can detect and locate signal path faults, changes, or discontinuities.

  • PXIe-5111, 350 MHz, 3 GS/s, 8-Bit PXI Oscilloscope

    785769-01 - NI

    PXIe, 350 MHz, 3 GS/s, 8-Bit PXI Oscilloscope—The PXIe-5111 oscilloscope has two channels that sample up to 3 GS/s with flexible and programmable settings for coupling, input impedance, voltage range, and filtering. PXI Oscilloscopes also feature a number of triggering modes, deep onboard memory, and an instrument driver that facilitates high-speed data throughput and includes analysis functions. This device is ideal for automated and partially automated applications that require flexible measurement configurations and up to 350 MHz of analog bandwidth. The PXIe-5111 also features advanced PXI synchronization and data throughput capabilities. Some options also support CableSense™ technology, which can detect and locate signal path faults, changes, or discontinuities.

  • ARINC 429 PXI Express Test & Simulation Instrument

    PXIe-C429 - Avionics Interface Technologies

    16, 32, or 64 ARINC 429 Channels (up to 32 Tx & 32 Rx) - Programmable Tx channel output amplitude - Programmable High/Low Speed Operation - Eight (8) Discrete I/O (Four (4) inputs, and four (4) outputs) - Concurrent operation of all Tx/Rx Channels at high data rates - Full error injection and detection • Data capture filtering, 100% bus recording, and physical bus replay - Rate-oriented Label Transmission - Label Selective Trigger for Capture/Filtering - IRIG-B time code encoder/decoder with free-wheeling mode - Application Interface supporting C/C++, C# and VB.NET Development - Device driver support: Windows, Linux, LabVIEW Real-Time (others on request) - Compatible with AIT’s Flight Simulyzer GUI Bus Analyzer Software

  • 12 Channels 1.0 ~ 17.0 Gb/s (200Gbps) Pulse Pattern Generator and Error Detector

    CA9806-12 - UC Instruments, Corp.

    The UC INSTRUEMNTS CA9806-12 is a highp erformance, flexible 12 channels Pulse Pattern Generator and Error Detector that can operate from 1.0 to 17.0 Gb/s (200 G). It is combined with three sets CA9806 4 CH 1.0 to 17.0 Gbps Pulse Pattern Generator and Error Detector that incorporates an external one by 4 rate clock synthesizer. Its small size allows it to be placed close to the device under test, it can also be placed further away using the TX driver pre and post emphasis controls features to compensate for cable and interconnect losses. It also has a non destructive, integrated eye outline capture feature along with a quick eye height and width measurement capability. Build-in 8.5 ~ 15 Gb/s eye diagram testing function.

  • Fiber Optic Sensor Systems

    Fraunhofer Institute for Telecommunications

    Fiber-optic and photonic measuring systems open up innovative measuring and control technology concepts for a wide variety of applications. They play a major role in optimizing energy efficiency and are important technological innovation drivers for new and future-oriented markets.In the Department of Fiber Optic Sensor Systems of the Fraunhofer Heinrich Hertz Institute, the focus of application-oriented research is on the development of a new generation of photonic sensors. These are characterized by extreme miniaturization, high network and communication capability as well as extremely low power consumption or even a self-sufficient power supply.In the Department of Fiber Optic Sensor Systems at the Fraunhofer Heinrich Hertz Institute is focused applied research on the development of a new generation of photonic sensors. These are characterized by extreme miniaturization, high network and communication skills as well as an extremely low power consumption, or even a self-sufficient energy supply.

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