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Showing results: 5431 - 5445 of 5681 items found.

  • PXIe-7972, K325T FPGA, 1.7 GB/s, 2 GB DRAM PXI FPGA Module for FlexRIO

    782954-01 - NI

    K325T FPGA, 1.7 GB/s, 2 GB DRAM PXI FPGA Module for FlexRIO—The PXIe‑7972 provides flexible, customizable I/O for LabVIEW FPGA. It includes 132 single-ended I/O lines configurable as 66 differential pairs. You can pair the PXIe‑7972 with FlexRIO adapter modules that offer high-performance analog and digital I/O. Together, the two modules create a reconfigurable instrument that you can program with LabVIEW FPGA software. The PXIe‑7972 supports peer-to-peer streaming, which directly transfers data among multiple FPGA modules or select PXI Express modules without sending data to the host processor. With this feature, you can add FPGA capabilities to high-performance NI digitizers with NIST‑traceable calibration or expand your FPGA algorithms across multiple FPGAs for computationally demanding applications.

  • PXIe-7975, K410T FPGA, 1.7 GB/s, 2 GB DRAM PXI FPGA Module for FlexRIO

    782955-01 - NI

    K410T FPGA, 1.7 GB/s, 2 GB DRAM PXI FPGA Module for FlexRIO—The PXIe‑7975 provides flexible, customizable I/O for LabVIEW FPGA. It includes 132 single-ended I/O lines configurable as 66 differential pairs. You can pair the PXIe‑7975 with FlexRIO adapter modules that offer high-performance analog and digital I/O. Together, the two modules create a reconfigurable instrument that you can program with LabVIEW FPGA software. The PXIe‑7975 supports peer‑to‑peer streaming, which directly transfers data among multiple FPGA modules or select PXI Express modules without sending data to the host processor. With this feature, you can add FPGA capabilities to high-performance NI digitizers with NIST‑traceable calibration or expand your FPGA algorithms across multiple FPGAs for computationally demanding applications.

  • PXIe-7971, K325T FPGA, 1.7 GB/s PXI FPGA Module for FlexRIO

    782953-01 - NI

    K325T FPGA, 1.7 GB/s PXI FPGA Module for FlexRIO—The PXIe‑7971 provides flexible, customizable I/O for LabVIEW FPGA. It includes 132 single-ended I/O lines configurable as 66 differential pairs. You can pair the PXIe‑7971 with FlexRIO adapter modules that offer high-performance analog and digital I/O. Together, the two modules create a reconfigurable instrument that you can program with LabVIEW FPGA software. The PXIe‑7971 supports peer‑to‑peer streaming, which directly transfers data among multiple FPGA modules or select PXI Express modules without sending data to the host processor. With this feature, you can add FPGA capabilities to high-performance NI digitizers with NIST‑traceable calibration or expand your FPGA algorithms across multiple FPGAs for computationally demanding applications.

  • PCIe-6376, 8 AI (16-Bit, 3.5 MS/s/ch), 2 AO, 24 DIO, Multifunction I/O Device

    785809-01 - NI

    8 AI (16-Bit, 3.5 MS/s/ch), 2 AO, 24 DIO, Multifunction I/O Device - The PCIe‑6376 is a simultaneous sampling, multifunction DAQ device. It offers analog I/O, digital I/O, four 32‑bit counters, and analog and digital triggering. Onboard NI‑STC3 timing and synchronization technology delivers advanced timing functionality, including independent analog and digital timing engines and retriggerable measurement tasks. The PCIe‑6376 is ideal for a variety of applications, such as IF digitization; transient recording; ISDN, ADSL, and POTS manufacturing test in the telecom industry; ultrasound and sonar testing; and high-energy physics. The included DAQExpress™ companion software provides basic measurement and analysis, while the NI‑DAQmx driver provides the ability to create customized automated measurement and control applications.

  • PCIe-6346 , 8 AI (16-Bit, 500 kS/s), 2 AO, 24 DIO, Multifunction I/O Device

    785813-01 - NI

    PCIe, 8 AI (16-Bit, 500 kS/s), 2 AO, 24 DIO, Multifunction I/O Device - The PCIe-6346 offers analog I/O, digital I/O, and four 32-bit counters/timers for PWM, encoder, frequency, event counting, and more. The device delivers high-performance functionality, leveraging the high-throughput PCI Express (PCIe) bus and multicore-optimized driver and application software. Because of its multi-ADC architecture, the device offers simultaneous sampling. Onboard NI-STC3 timing and synchronization technology deliver advanced timing functionality, including independent analog and digital timing engines and retriggerable measurement tasks. The PCIe-6346 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.

  • PCIe-6353 , PCI Express, 32 AI, (16-Bit, 1.25 MS/s), 4 AO (2.86 MS/s), 48 DIO Multifunction I/O Device

    81049-01 - NI

    PCI Express, 32 AI, (16-Bit, 1.25 MS/s), 4 AO (2.86 MS/s), 48 DIO Multifunction I/O Device - The PCIe‑6353 offers analog I/O, digital I/O, and four 32‑bit counters/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 PCIe‑6353 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.

  • GPIB-ENET/1000 , Ethernet GPIB Instrument Control Device - Universal Euro 240VAC

    781630-04 - NI

    The GPIB‑ENET/1000 is an IEEE 488 controller device for computers with an Ethernet port. You can use this device to share a single GPIB system among many networked users or to control several test systems from a single networked host. The GPIB‑ENET/1000 features a password-protected web interface for easy configuration. It can also control IEEE 488 devices from anywhere on an Ethernet‑based (LAN) TCP/IP network (Gigabit, 100BASE‑TX, 10BASE‑T). Each device interfaces to and shares up to 14 GPIB devices from several network hosts, and you can control up to 100 GPIB‑ENET/1000 interfaces with a single computer. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB.

  • GPIB-ENET/1000 , Ethernet GPIB Instrument Control Device - United States 120VAC

    781630-01 - NI

    The GPIB‑ENET/1000 is an IEEE 488 controller device for computers with an Ethernet port. You can use this device to share a single GPIB system among many networked users or to control several test systems from a single networked host. The GPIB‑ENET/1000 features a password-protected web interface for easy configuration. It can also control IEEE 488 devices from anywhere on an Ethernet‑based (LAN) TCP/IP network (Gigabit, 100BASE‑TX, 10BASE‑T). Each device interfaces to and shares up to 14 GPIB devices from several network hosts, and you can control up to 100 GPIB‑ENET/1000 interfaces with a single computer. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB.

  • GPIB-ENET/1000, Ethernet GPIB Instrument Control Device - United Kingdom 240VAC

    781630-06 - NI

    The GPIB‑ENET/1000 is an IEEE 488 controller device for computers with an Ethernet port. You can use this device to share a single GPIB system among many networked users or to control several test systems from a single networked host. The GPIB‑ENET/1000 features a password-protected web interface for easy configuration. It can also control IEEE 488 devices from anywhere on an Ethernet‑based (LAN) TCP/IP network (Gigabit, 100BASE‑TX, 10BASE‑T). Each device interfaces to and shares up to 14 GPIB devices from several network hosts, and you can control up to 100 GPIB‑ENET/1000 interfaces with a single computer. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB.

  • GPIB-ENET/1000, Ethernet GPIB Instrument Control Device - Taiwan 110VAC

    781630-11 - NI

    The GPIB‑ENET/1000 is an IEEE 488 controller device for computers with an Ethernet port. You can use this device to share a single GPIB system among many networked users or to control several test systems from a single networked host. The GPIB‑ENET/1000 features a password-protected web interface for easy configuration. It can also control IEEE 488 devices from anywhere on an Ethernet‑based (LAN) TCP/IP network (Gigabit, 100BASE‑TX, 10BASE‑T). Each device interfaces to and shares up to 14 GPIB devices from several network hosts, and you can control up to 100 GPIB‑ENET/1000 interfaces with a single computer. The device includes a license for the NI‑488.2 driver software, providing maximum reliability for connecting to third-party instruments with GPIB.

  • Super Fast Stand-Alone ISP Programmer

    848Pro2 - Dataman, Inc

    The Dataman 848Pro2 is a super fast stand-alone gang programmer with eight independent 48-pin ZIF sockets, ISP capabilities and internal control PC driven by Windows Embedded 8.1 Industry Pro • Stand-alone operation with touch screen control • Internal control PC driven by Windows Embedded 8.1 Industry Pro • Up to 75% faster programming of high-capacity memory devices • Over 105,000 devices supported with new devices added monthly • Independent modules supporting concurrent programming • Intelligent pin drivers operate down to 1.8V so you'll be ready to program the full range of advanced low-voltage devices • Full ISP capabilities including JTAG compatibility • Comprehensive 3 years parts and labor warranty • Free life-time software updates

  • ARINC818 Cards

    AIM GmbH

    > ARINC818 is a specification which has become an Industry standard for the transmission of uncompressed digital video. This commercial standard uses Fibre Channel as a point-to-point communication link for low latency with the ARINC818 defining the packetized protocol for transmission of the digital video information. It is highly flexible and can be used for a variety of onboard display systems in both commercial and military applications. AIM’s ARINC818 cards use our field proven Common Core hardware design giving the best performance, best feature set and highest functional integration on the market. The use of SoC (System on Chip) based core designs with one dual core RISC processor per port, massive DDR3 memory and IRIG-B time encoder/decoder functions are standard. The ARINC818 modules are available in PCIe formats.The new ultra high performance intelligent 4-lane PCIe 2.0 interface modules offer 2 ports with full function test, simulation, monitoring and analyzer functions for ARINC818 interfaces. The dual core processor provides onboard processing and data transfer capabilities for the most demanding applications including ARINC818 support done on board level. Large and high data throughput DDR3 RAM is accessible for the onboard processor as is a high performance FPGA implementing the customized ARINC818 Interfaces enabling the board to analyze incoming data in real time. Each module provides 2 ARINC818 compliant ports. SFP cages make it suitable for different media types as optical or electrical network technologies. Each module is delivered with a Board Support Package (BSP) containing the onboard driver software, a full Application Programming Interface (API) and detailed getting started and programming guides. Powerful PBA.pro databus test and analysis software is optionally available for all our ARINC818 cards.

  • Vibration Diagnostics System

    VDS - Crystal instruments

    The Vibration Diagnostic System (VDS) is a vibration data management system designed specifically for the machinery Predictive Maintenance (PdM) community. It harnesses the graphic display capabilities of Crystal Instruments EDM Software for the work of machinery vibration analysts. It allows the user to quickly get to the data for a machine of interest and displays that data in the familiar Tri-axial or Single Axis view. Users can quickly compare other data from the same machine, quickly navigate back into the historical data of the machine, and quickly compare the data to that of other machines in the database. The software supports the construction of Average (a.k.a. baseline) data for a class of machines and allows easy comparison to that data as well. A full suite of cursors designed specifically for PdM analysis is provided for inuitive user interaction with the data.In addition to great graphics, an extensible machine modeling system was developed specifically for vibration analysis. VDS allows users to model machines based on the elements of the machine that can contribute to the vibration energy of the whole. Model bearings, rotors such as motor bars, couplings such as flexible and fluid couplings, account for slip in fluid couplings, model gears and pulley systems, and model turbines by accounting for each stage. The system is wide open, users can create new elements to use within a system. Users that may not want to do all that are provided with a comprehensive library of machine components such as AC and Induction Motors, Couplings, Gears, Pulleys, Pumps, and other components. Single and double gear shafts allows users to model many kinds of gear boxes with an unlimited number of stages. This ability alone lets users model their machines to view and use to keep track of vibration pickup locations, record the forcing frequencies of each part of the system, and attach attributes such as manufacturer and other part information.

  • 8 Channel A/D & D/A Zynq UltraScale+ RFSoC Processor - SFF

    Model 6350 - Pentek, Inc.

    - Now available in RFSoC Gen 3 with the Model 6353- Small form factor rugged enclosure- Conduction-cooled- Designed to the IP67 specification for dust and water immersion- Sealed military-grade circular connectors- Incorporates Xilinx® Zynq® UltraScale+" RFSoC FPGAs- 16 GB of DDR4 SDRAM- On-board GPS receiver- Optional dual 100 GigE UDP optical interface- Optional fan cooling for benchtop use- Navigator® BSP for software development- Navigator® FDK for custom IP development- Pentek's Quartz Family of Xilinx Zynq UltraScale+ RFSoC FPGA Products Video- Live Signal Acquisition Video: Quartz Model 5950 and Model 6001 RFSoC boards- Pipeline Newsletter: Strategies for Deploying Xilinx's Zync UltraScale+ RFSoC- Please refer to the product datasheet for Installed FPGA IP Module details

  • 1 GHz A/D and D/A with Virtex-7 FPGA - XMC

    Model 71730 - Pentek, Inc.

    - Complete radar and software radio interface solution- Supports Xilinx Virtex-7 VXT FPGAs- GateXpress supports dynamic FPGA reconfiguration across PCIe- One 1 GHz 12-bit A/D- One 1 GHz 16-bit D/A- 4 GB of DDR3 SDRAM- Sample clock synchronization to an external system reference- Dual uSync clock/sync for multimodule synchronization- PCI Express (Gen. 1, 2 & 3) interface up to x8 wide- VITA 42.0 XMC compatible with switched fabric interfaces- Optional user configurable gigabit serial interface- Optional LVDS connections to the Virtex-7 FPGA for custom I/O- Supports GateXpress® FPGA-PCIe Configuration Manager- Synchronize up to four modules with Model 7192 System Synchronization and Distribution Amplifier - PMC/XMC- Synchronize up to twelve modules with Model 9192 System Synchronization and Distribution Amplifier- 1U Rack-mount

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