NI

NI is a technology pioneer and leader in virtual instrumentation - a revolutionary concept that has changed the way engineers and scientists in industry, government, and academia approach measurement and automation.

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    Austin, TX 78759-3504
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Showing results: 1831 - 1845 of 1987 items found.

  • cDAQ-9134, 1.33 GHz Dual-Core Atom, 4-Slot, Extended Temperature CompactDAQ Controller

    783340-01 - NI

    1.33 GHz Dual-Core Atom, 4-Slot, Extended Temperature CompactDAQ Controller - The cDAQ‑9134 controls the timing, synchronization, and data transfer between C Series I/O modules and an integrated computer. It includes Intel Atom dual-core processing and 32 GB nonvolatile storage for data-logging and embedded monitoring in extreme environments. You can choose between running Windows or NI Linux® Real‑Time. The cDAQ‑9134 offers a wide array of standard connectivity and expansion options, including SD storage, USB, Ethernet, RS232 serial, and trigger input, and an integrated NI‑XNET port. You can combine the cDAQ‑9134 with up to four C Series I/O modules for a custom analog I/O, digital I/O, counter/timer, and controller area network (CAN) measurement and logging system. The registered trademark Linux® is used pursuant to a sublicense from LMI, the exclusive licensee of Linus Torvalds, owner of the mark on a worldwide basis.

  • cRIO-9031, 1.33 GHz Dual-Core CPU, 1 GB DRAM, 4 GB Storage, Kintex-7 70T FPGA, Extended Temperature, 4-Slot CompactRIO Controller

    783451-01 - NI

    1.33 GHz Dual-Core CPU, 1 GB DRAM, 4 GB Storage, Kintex-7 70T FPGA, Extended Temperature, 4-Slot CompactRIO Controller - The cRIO-9031 is a rugged, fanless, embedded controller that you can use for advanced control and monitoring applications. This software-designed controller features an FPGA, a real-time processor running the NI Linux Real-Time OS, and embedded user interface capability. You also can use the Mini DisplayPort to add a local human machine interface (HMI) for application development. The cRIO-9031 features an SDHC slot and a variety of connectivity ports, including two tri-speed RJ-45 Gigabit Ethernet, two USB host, one USB device, and two RS-232 serial. Additionally, the cRIO-9031 supports an extended temperate range. The registered trademark Linux® is used pursuant to a sublicense from LMI, the exclusive licensee of Linus Torvalds, owner of the mark on a worldwide basis.

  • cRIO-9036, 1.33 GHz Dual-Core CPU, 1 GB DRAM, 4 GB Storage, Kintex-7 70T FPGA, Extended Temperature, 8-Slot CompactRIO Controller

    783849-01 - NI

    1.33 GHz Dual-Core CPU, 1 GB DRAM, 4 GB Storage, Kintex-7 70T FPGA, Extended Temperature, 8-Slot CompactRIO Controller - The cRIO-9036 is a rugged, fanless, embedded controller that you can use for advanced control and monitoring applications. This software-designed controller features an FPGA, a real-time processor running the NI Linux Real-Time OS, and embedded user interface capability. You also can use the Mini DisplayPort to add a local human machine interface (HMI) for application development. The cRIO-9036 features an SDHC slot and a variety of connectivity ports, including two tri-speed RJ-45 Gigabit Ethernet, two USB host, one USB device, and two RS-232 serial. Additionally, the cRIO-9036 supports an extended temperate range. The registered trademark Linux® is used pursuant to a sublicense from LMI, the exclusive licensee of Linus Torvalds, owner of the mark on a worldwide basis.

  • cDAQ-9135, 1.33 GHz Dual-Core Atom, 8-Slot, Extended Temperature CompactDAQ Controller

    783688-01 - NI

    The cDAQ‑9135 controls the timing, synchronization, and data transfer between C Series I/O modules and an integrated computer. It includes Intel Atom dual-core processing and 32 GB nonvolatile storage for data-logging and embedded monitoring in extreme environments. You can choose between running Windows or NI Linux® Real‑Time. The cDAQ‑9135 offers a wide array of standard connectivity and expansion options, including SD storage, USB, Ethernet, RS232 serial, and trigger input, and an integrated NI‑XNET port. You can combine the cDAQ‑9135 with up to eight C Series I/O modules for a custom analog I/O, digital I/O, counter/timer, and controller area network (CAN) measurement and logging system. The registered trademark Linux® is used pursuant to a sublicense from LMI, the exclusive licensee of Linus Torvalds, owner of the mark on a worldwide basis.

  • cDAQ-9133, 1.33 GHz Dual-Core Atom, 8-Slot, CompactDAQ Controller

    783687-01 - NI

    1.33 GHz Dual-Core Atom, 8-Slot, CompactDAQ Controller - The cDAQ‑9133 controls the timing, synchronization, and data transfer between C Series I/O modules and an integrated computer. It includes Intel Atom dual-core processing and 16 GB nonvolatile storage for data-logging and embedded monitoring. You can choose between running Windows or NI Linux® Real‑Time. The cDAQ‑9133 offers a wide array of standard connectivity and expansion options, including SD storage, USB, Ethernet, RS232 serial, and trigger input. You can combine the cDAQ‑9133 with up to eight C Series I/O modules for a custom analog I/O, digital I/O, counter/timer, and controller area network (CAN) measurement and logging system. The registered trademark Linux® is used pursuant to a sublicense from LMI, the exclusive licensee of Linus Torvalds, owner of the mark on a worldwide basis.

  • cDAQ-9133, 1.33 GHz Dual-Core Atom, 8-Slot, CompactDAQ Controller

    783686-01 - NI

    1.33 GHz Dual-Core Atom, 8-Slot, CompactDAQ Controller - The cDAQ‑9133 controls the timing, synchronization, and data transfer between C Series I/O modules and an integrated computer. It includes Intel Atom dual-core processing and 16 GB nonvolatile storage for data-logging and embedded monitoring. You can choose between running Windows or NI Linux® Real‑Time. The cDAQ‑9133 offers a wide array of standard connectivity and expansion options, including SD storage, USB, Ethernet, RS232 serial, and trigger input. You can combine the cDAQ‑9133 with up to eight C Series I/O modules for a custom analog I/O, digital I/O, counter/timer, and controller area network (CAN) measurement and logging system. The registered trademark Linux® is used pursuant to a sublicense from LMI, the exclusive licensee of Linus Torvalds, owner of the mark on a worldwide basis.

  • cRIO-9030, 1.33 GHz Dual-Core CPU, 1 GB DRAM, 4 GB Storage, Kintex-7 70T FPGA, 4-Slot CompactRIO Controller

    783450-01 - NI

    The cRIO-9030 is a rugged, fanless, embedded controller that you can use for advanced control and monitoring applications. This software-designed controller features an FPGA, a real-time processor running the NI Linux Real-Time OS, and embedded user interface capability. You also can use the Mini DisplayPort to add a local human machine interface (HMI) for application development. Additionally, the cRIO-9030 features an SDHC slot and a variety of connectivity ports, including two tri-speed RJ-45 Gigabit Ethernet, two USB host, one USB device, and two RS-232 serial. The registered trademark Linux® is used pursuant to a sublicense from LMI, the exclusive licensee of Linus Torvalds, owner of the mark on a worldwide basis.

  • cDAQ-9132, 1.33 GHz Dual-Core Atom, 4-Slot, CompactDAQ Controller

    783339-01 - NI

    1.33 GHz Dual-Core Atom, 4-Slot, CompactDAQ Controller - The cDAQ‑9132 controls the timing, synchronization, and data transfer between C Series I/O modules and an integrated computer. It includes Intel Atom dual-core processing and 16 GB nonvolatile storage for data-logging and embedded monitoring. You can choose between running Windows or NI Linux® Real‑Time. The cDAQ‑9132 offers an array of standard connectivity and expansion options, including SD storage, USB, Ethernet, RS232 serial, and trigger input. You can combine the cDAQ‑9132 with up to four C Series I/O modules for a custom analog I/O, digital I/O, counter/timer, and controller area network (CAN) measurement and logging system.

  • PCI-5154, 1 GHz Bandwidth, 2 GS/s, 8-Bit PCI Oscilloscope Device

    780320-02 - NI

    1 GHz Bandwidth, 2 GS/s, 8-Bit PCI Oscilloscope Device - The PCI‑5154 high-speed oscilloscope device has two channels that sample up to 2 GS/s with flexible settings for coupling, voltage range, and filtering. Oscilloscope devices also feature a number of triggering modes, deep onboard memory, and an instrument driver that includes data streaming and analysis functions. This device is ideal for applications with fast signals that require up to 1 GHz of analog bandwidth and flexible measurement configurations.

  • PCI-5154, 1 GHz Bandwidth, 2 GS/s, 8-Bit PCI Oscilloscope Device

    780320-01 - NI

    1 GHz Bandwidth, 2 GS/s, 8-Bit PCI Oscilloscope Device - The PCI‑5154 high-speed oscilloscope device has two channels that sample up to 2 GS/s with flexible settings for coupling, voltage range, and filtering. Oscilloscope devices also feature a number of triggering modes, deep onboard memory, and an instrument driver that includes data streaming and analysis functions. This device is ideal for applications with fast signals that require up to 1 GHz of analog bandwidth and flexible measurement configurations.

  • PCI-5154, 1 GHz Bandwidth, 2 GS/s, 8-Bit PCI Oscilloscope Device

    780320-03 - NI

    1 GHz Bandwidth, 2 GS/s, 8-Bit PCI Oscilloscope Device - The PCI‑5154 high-speed oscilloscope device has two channels that sample up to 2 GS/s with flexible settings for coupling, voltage range, and filtering. Oscilloscope devices also feature a number of triggering modes, deep onboard memory, and an instrument driver that includes data streaming and analysis functions. This device is ideal for applications with fast signals that require up to 1 GHz of analog bandwidth and flexible measurement configurations.

  • Controls Systems for Engine Control and Combustion Analysis

    NI Powertrain - NI

    NI Powertrain Controls systems incorporate the LabVIEW reconfigurable I/O (RIO) architecture to create some of the world’s most flexible and capable combustion analysis and engine control systems. The engine control systems can drive both solenoid and piezoelectric direct injectors, control timing events with 25 ns of precision, and implement novel engine control strategies such as next- and same-cycle control. The combustion analysis systems are available in both portable and higher performance stationary form factors.

  • PXI-2546, 2.7 GHz, 50 Ω, Dual 4x1 PXI RF Multiplexer Switch Module

    778572-46 - NI

    2.7 GHz, 50 Ω, Dual 4x1 PXI RF Multiplexer Switch Module—The PXI‑2546 is an RF signal multiplexer switch module. The multibank architecture of the PXI‑2546 makes it ideal for test systems that require parallel operations such as RF stimulus-response testing. The module also provides excellent insertion loss, voltage standing wave ratio (VSWR), and isolation parameters to minimize signal degradation. You can use the onboard relay count tracking feature to predict relay lifetime and reduce unexpected system downtime.

  • PXI-2547, 2.7 GHz, 50 Ω, 8x1 PXI RF Multiplexer Switch Module

    778572-47 - NI

    2.7 GHz, 50 Ω, 8x1 PXI RF Multiplexer Switch Module—The PXI‑2547 is an RF signal multiplexer switch module. The higher channel count of the PXI‑2547 makes it ideal for test systems that require the switching of a large number of RF signals, such as switching several devices under test to a single channel on the RF analyzer. The module also features excellent insertion loss, voltage standing wave ratio (VSWR), and isolation parameters to minimize signal degradation. You can use the onboard relay count tracking feature to predict relay lifetime and reduce unexpected system downtime.

  • PXI-2548, 2.7 GHz, 50 Ω, Quad SPDT PXI RF Relay Module

    778572-48 - NI

    2.7 GHz, 50 Ω, Quad SPDT PXI RF Relay Module - The PXI‑2548 is a general-purpose single‑pole double‑throw (SPDT) switch module. You can use it to add flexibility to your switch network or to maintain uniform signal paths across multiple channels when building high-channel-count multiplexers. The module also features excellent insertion loss, voltage standing wave ratio (VSWR), and isolation parameters to minimize signal degradation. You can use its onboard relay count tracking feature to predict relay lifetime and reduce unexpected system downtime.

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