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Showing results: 7801 - 7815 of 8164 items found.

  • 6U VPX PCIe to XMC Expansion Board

    VP69601 - LinkedHope Intelligent Technologies Co.,Ltd.

    VP69601 is a 6U VPX PCIe to XMC expansion board. Onboard there is a x8 PCIe 3.0 interface, and through a PCIe connector the x8 PCIe 3.0 turns into 2 x8 PCIe 3.0 linking to 2 XMC cards. The PCIe Switch IC on VP69601 supports DMA, so direct data transmission between peripheral cards can be realized.VP69601 can be installed in a standard VPX chassis and work as a peripheral board. VP69601 carries two XMC ports, through which users can expand various functional XMC cards needed.Apart from the traditional Air Cooling design, Linkedhope○R provides a Conduction Cooling version to guarantee working stability of VP69601 in extreme and vibration environment and in an extended working temperature from -40℃ to +70℃.

  • Discrete Module for Multi Protocol 4000 Boards

    Excalibur Systems, Inc.

    Discrete Module for Multi Protocol 4000 BoardsThe M4KDiscrete is an interface module for the multimode, multiprotocol Excalibur EXC-4000 family of carrier boards. The M4KDiscrete provides a complete solution for developing and testing discrete voltage-level interfaces.The module contains control I/O registers that may be accessed in real time. The module supports 20 discretes. The user can set each discrete:• Either as input or output.• Either to TTL (0 – 5V) or Avionics (0 – 32V) voltage levels and• Either enable or disable external debounceOutput discretes are open collector, capable of handling up to 32V with a maximum current of 100 mA each. There is a 4092 word FIFO, capable of storing 1023 Discrete entries containing the discrete data and Time tags.

  • IRIG Time Code Receiver & Generator Module

    TCR180 - Meinberg Funkuhren GmbH & Co. KG

    The module TCR180 has been designed to receive and to generate IRIG-A/B/G, IEEE 1344, IEEE C37.118 or AFNOR NF S87-500 time codes. It is used in applications like data acquisition, standalone computer time synchronization (for systems without a network connection or higher accuracy requirements) or as an IRIG converter device. The frequency locking of the master oscillator to the time code system enables this module to generate fixed and programmable standard frequencies with high accuracy and stability. Various oscillator options allow the cost efficient implementation of different requirements concerning the accurracy of the outputs. The generator of the IMS-TCR module generates pulses per second and per minute and per hour. Four programmable outputs are also available. The pulses are synchronized to UTC-second.

  • Complete Network Monitoring

    TiSCADA - Techimp HQ S.r.L

    After years of advanced Research, laboratory and on-field tests, Techimp has developed powerful and effective tools which can help asset managers to take critical decisions and manage power plants in a cost saving ways. Ti-SCADA implements a Real Time condition control of your asset, through a powerful Human Machine Interface (HMI) fully configurable, web based, displaying graphs, charts, trends, KPI, historical data, alarms and customizable reports. Ti-SCADA is a fundamental component of the new generation of Techimp on line condition monitoring systems. Ti-SCADA is designed as a Service Oriented Architecture (SOA) based on interoperability standard for industrial automation - OPC-UA - allowing high performance asset management solutions, tailored on customer needs, to be implemented.

  • Communications & Networking

    Curtiss-Wright Defense Solutions

    Our field-proven communications and networking solutions provide the core capabilities for secure mobile networks onboard land, sea, and airborne platforms. Leveraging advances in enterprise and data center technology, we design and create our rugged solutions to deliver high-performance connectivity on converged, application-aware networks in disconnected, intermittent, and (DIL) environments. For network security and information assurance, our modules and systems support a variety of secure network management protocols and authentication methods. We rigorously test our solutions to ensure they deliver reliable performance in the most demanding environmental conditions and extended temperatures. Our expertise and experience help system integrators to securely and affordably deploy digital network architectures for enhanced situational awareness (SA) and network-centric operations.

  • Vibration Unit Tester

    BK2020B - BaKo Co., Ltd

    We developed the BK2020B as an upgrade to our BK2020 to test the electrical specifications (RPM, current, drop pulse, start up voltage) of your cylindrical or coin type vibration units. You can also test vibration level, noise, isolation resistance, and the DC resistance. The DUT power supply and all measurement components are self contained, so external devices aren't needed and the tester uses DSP, making it capable of fast, highly accurate and reliable measurements. The BK2020B is very versatile. It can be set up as a stand alone machine, or used with a PC and software for access to more information, and to save the data for analysis. Either version is great on the product line but you may also use it for QA, QC and development.

  • PXIe-7866, Kintex-7 325T FPGA, 24-Channel AO, 1 MS/s, PXI Multifunction Reconfigurable I/O Module

    787354-01 - NI

    PXIe, Kintex-7 325T FPGA, 24-Channel AO, 1 MS/s, PXI Multifunction Reconfigurable I/O Module - The PXIe-7866 features flexibility of timing and synchronization with a user-programmable FPGA for onboard processing and direct control over I/O signals. The PXIe-7866 provides 24 analog output, 2 analog input, and 32, 5V input-tolerant digital I/O channels connected to a Kintex-7 325T FPGA to help you design applications for hardware-in-the-loop testing, custom protocol communication, sensor simulation, and high-speed control. You can use the dedicated A/D converter (ADC) for independent timing, individual channel triggering, and multirate sampling. Additionally, the PXIe-7866 includes peer-to-peer streaming for direct data transfer to other PXI Express modules.

  • PXIe-7865, Kintex-7 160T FPGA, 24-Channel AO, 1 MS/s, PXI Multifunction Reconfigurable I/O Module

    787355-01 - NI

    PXIe, Kintex-7 160T FPGA, 24-Channel AO, 1 MS/s, PXI Multifunction Reconfigurable I/O Module - The PXIe-7865 features flexibility of timing and synchronization with a user-programmable FPGA for onboard processing and direct control over I/O signals. The PXIe-7865 provides 24 analog output, 2 analog input, and 32, 5V input-tolerant digital I/O channels connected to a Kintex-7 160T FPGA to help you design applications for hardware-in-the-loop testing, custom protocol communication, sensor simulation, and high-speed control. You can use the dedicated A/D converter (ADC) for independent timing, individual channel triggering, and multirate sampling. Additionally, the PXIe-7865 includes peer-to-peer streaming for direct data transfer to other PXI Express modules.

  • PXIe-6355, 80 AI (16-Bit, 1.25 MS/s), 2 AO, 24 DIO, PXI Multifunction I/O Module

    783632-01 - NI

    PXIe, 80 AI (16-Bit, 1.25 MS/s), 2 AO, 24 DIO, PXI Multifunction I/O Module—The PXIe‑6355 offers analog I/O, digital I/O, and four 32‑bit counter/timers for PWM, encoder, frequency, event counting, and more. The device delivers high-performance functionality leveraging the high-throughput PCI Express bus and multicore-optimized driver and application software. Onboard NI‑STC3 timing and synchronization technology delivers advanced timing functionality, including independent analog and digital timing engines and retriggerable measurement tasks. The PXIe‑6355 is well-suited for a broad range of applications, from basic data logging to control and test automation. The included NI‑DAQmx driver and configuration utility simplify configuration and measurements.

  • PXIe-6345, 80 AI (16-Bit, 500 kS/s), 2 AO, 24 DIO, PXI Multifunction I/O Module

    783631-01 - NI

    PXIe, 80 AI (16-Bit, 500 kS/s), 2 AO, 24 DIO, PXI Multifunction I/O Module—The PXIe‑6345 offers analog I/O, digital I/O, and four 32‑bit counter/timers for PWM, encoder, frequency, event counting, and more. The device delivers high-performance functionality leveraging the high-throughput PCI Express bus and multicore-optimized driver and application software. Onboard NI‑STC3 timing and synchronization technology delivers advanced timing functionality, including independent analog and digital timing engines and retriggerable measurement tasks. The PXIe‑6345 is well-suited for a broad range of applications, from basic data logging to control and test automation. The included NI‑DAQmx driver and configuration utility simplify configuration and measurements.

  • PXIe-6375, 208 AI (16-Bit, 3.8 MS/s), 2 AO, 24 DIO, PXI Multifunction I/O Module

    783634-01 - NI

    PXIe, 208 AI (16-Bit, 3.8 MS/s), 2 AO, 24 DIO, PXI Multifunction I/O Module—The PXIe‑6375 offers analog I/O, digital I/O, and four 32‑bit counter/timers for PWM, encoder, frequency, event counting, and more. The device delivers high-performance functionality leveraging the high-throughput PCI Express bus and multicore-optimized driver and application software. Onboard NI‑STC3 timing and synchronization technology delivers advanced timing functionality, including independent analog and digital timing engines and retriggerable measurement tasks. The PXIe‑6375 is well-suited for a broad range of applications, from basic data logging to control and test automation. The included NI‑DAQmx driver and configuration utility simplify configuration and measurements.

  • USB-8452, 3.3 MHz I2C, 50 MHz SPI I2C/SPI Interface Device

    781964-03 - NI

    The NI USB‑8452 is a master interface for connecting to and communicating with inter-integrated circuit (I2C) and serial peripheral interface (SPI) devices. With plug‑and‑play USB connectivity, the USB‑8452 is a bus-powered, portable solution to communicate with consumer electronics and integrated circuits. It also includes eight general-purpose digital I/O lines for a variety of applications, such as configuring the address of I2C devices, toggling LEDs, or strobing convert and data ready lines common to analog converter chips. You can physically place the USB‑8452 more closely than PCI interfaces to I2C/SPI devices, which reduces I2C bus length and minimizes noise problems. Additionally, the interface provides +5 V and GND to power circuits with no external power supply.

  • USB-8452, 3.3 MHz I2C, 50 MHz SPI I2C/SPI Interface Device

    781964-02 - NI

    The NI USB‑8452 is a master interface for connecting to and communicating with inter-integrated circuit (I2C) and serial peripheral interface (SPI) devices. With plug‑and‑play USB connectivity, the USB‑8452 is a bus-powered, portable solution to communicate with consumer electronics and integrated circuits. It also includes eight general-purpose digital I/O lines for a variety of applications, such as configuring the address of I2C devices, toggling LEDs, or strobing convert and data ready lines common to analog converter chips. You can physically place the USB‑8452 more closely than PCI interfaces to I2C/SPI devices, which reduces I2C bus length and minimizes noise problems. Additionally, the interface provides +5 V and GND to power circuits with no external power supply.

  • PCI Express, IEEE 488 GPIB Instrument Control Device for Windows, Low Profile

    780575-01 - NI

    The PCIe‑GPIB is an IEEE 488 controller device for computers with PCI Express slots. You can use this device to integrate an instrument into your system using GPIB. The PCIe‑GPIB achieves maximum IEEE 488.2 transfer rates. With an onboard bus master DMA controller, there is no microprocessor interruption in data transfers. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB. The PCIe‑GPIB includes a low-profile bracket option as well as a kit that includes the NI‑488.2 driver for Linux®. Regardless of which PCIe‑GPIB you purchase, the device is compatible with Windows, Linux®, and Mac OS X. Linux® is the registered trademark of Linus Torvalds in the U.S. and other countries.

  • PCI Express, IEEE 488 GPIB Instrument Control Device for Windows

    778930-01 - NI

    The PCIe‑GPIB is an IEEE 488 controller device for computers with PCI Express slots. You can use this device to integrate an instrument into your system using GPIB. The PCIe‑GPIB achieves maximum IEEE 488.2 transfer rates. With an onboard bus master DMA controller, there is no microprocessor interruption in data transfers. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB. The PCIe‑GPIB includes a low-profile bracket option as well as a kit that includes the NI‑488.2 driver for Linux®. Regardless of which PCIe‑GPIB you purchase, the device is compatible with Windows, Linux®, and Mac OS X. Linux® is the registered trademark of Linus Torvalds in the U.S. and other countries.

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