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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Automotive Ethernet Interface Device
The Automotive Ethernet Interface Device converts unshielded twisted pair (UTP) Automotive Ethernet to standard Ethernet. This device is ideal for developing applications that require Automotive Ethernet to test and validate automotive electronic control units (ECUs). It includes ports for Automotive Ethernet connections and ports for 100BASE-TX Ethernet connections. You can use switches on the front panel to configure each 100BASE-T1 port as master or slave. The device also provides LED on the front panel so that you can monitor the linkage and activity on the various ports.
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PXI Vector Network Analyzer
PXI Vector Network Analyzers feature two ports, so you can choose between T/R test sets or full S-parameter capabilities. The PXI Vector Network Analyzer supports automatic precision calibration, full vector analysis, and reference plane extensions, so it is an ideal vector network analysis solution for your validation and production operations without the high cost and large footprint associated with a traditional benchtop VNA. These models seamlessly integrate into test systems for highly accurate, fast RF measurements.
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PXIe-5160, 500 MHz, 2.5 GS/s, 10-Bit, w/CableSense, 2 GB, Oscilloscope
782621-13
PXIe, 500 MHz, 2.5 GS/s, 10-Bit PXI Oscilloscope—The PXIe-5160 high-speed oscilloscope device has two or four channels that sample at up to 2.5 GS/s with flexible settings for coupling, voltage range, and filtering. PXI oscilloscopes 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 500 MHz of analog bandwidth and flexible measurement configurations.
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NI-9852, 2-Port, Low-Speed/Fault Tolerant C Series CAN Interface Module
779707-01
2-Port, Low-Speed/Fault Tolerant C Series CAN Interface Module—The NI-9852 is a fault‑tolerant Controller Area Network (CAN) interface for developing FPGA-based applications with the NI‑RIO driver on CompactRIO. The NI‑9852 is ideal for low-level FPGA‑based control and triggering applications that are programmed using the LabVIEW FPGA Module. The NI‑9852 is ideal for byte-level manipulation of CAN frames using the LabVIEW FPGA Module. The NI‑9852 is only compatible with CompactRIO systems.
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NI-9326, 6-Channel, 150 V, 128 kHz C Series Frequency Input Module
786999-01
6-Channel, 150 V, 128 kHz C Series Frequency Input Module - The NI-9326 is a channel-to-channel isolated frequency input module for CompactDAQ and CompactRIO systems. This module includes six differential input channels with a 0 Vrms to 150 Vrms input range. The NI-9326 also features configurable thresholds for connection to a variety of variable reluctance sensors, single channel encoders, and hall-effect sensors. You can use the included embedded counters to perform frequency measurements or edge-counting for tracking total counts on a periodic signal. Additionally, the NI-9326 supports configurable Butterworth filters to help you perform low-noise frequency measurements.
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cRIO-9041, 1.30 GHz Dual-Core CPU, 2 GB DRAM, 4 GB Storage, -40 °C to 70 °C, Kintex-7 70T FPGA, 4-Slot CompactRIO Controller
786369-01
1.30 GHz Dual-Core CPU, 2 GB DRAM, 4 GB Storage, -40 °C to 70 °C, Kintex-7 70T FPGA, 4-Slot CompactRIO Controller - The cRIO-9041 is a rugged, high-performance, customizable embedded controller that offers Intel Atom dual-core processing, NI-DAQmx support, and an SD card slot for data-logging, embedded monitoring, and control. It includes a Kintex-7 70T FPGA with LabVIEW FPGA Module support for advanced control and coprocessing. The controller provides precise, synchronized timing and deterministic communications using Time Sensitive Networking (TSN), which is ideal for highly distributed measurements. This controller offers several connectivity ports, including Gigabit Ethernet, USB 3.1, USB 2.0, RS232, and RS485 ports. You can use the USB 3.1 ports to add a local human machine interface and program, deploy, and debug software, which simplifies application development.
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USRP Software Defined Radio Reconfigurable Device
The USRP Software Defined Radio Reconfigurable Device is built on the LabVIEW reconfigurable I/O (RIO) and universal software radio peripheral (USRP) architectures. It includes a powerful FPGA for advanced DSP that you can program with the LabVIEW FPGA Module. The device includes 2x2 MIMO transceivers or four-channel superheterodyne receivers, supporting center frequencies from 10 MHz to 6 GHz, with up to 160 MHz of instantaneous bandwidth. The USRP Software Defined Radio Reconfigurable Device also optionally includes a GPS‐disciplined oven-controlled crystal oscillator (GPSDO), which provides greater frequency accuracy than temperature- compensated crystal oscillators. Prototyping applications include LTE and 802.11 prototyping, spectrum monitoring, signals intelligence, military communications, radar, direction finding, and wireless research.
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PXI CANopen Interface Module
The PXI CANopen Interface Module is a high-speed CANopen interface for developing applications with the NI-Industrial Communications for CANopen driver. CANopen is the application layer that sits on top of the CAN physical layer often used for industrial automation applications. The PXI CANopen Interface Module can transmit/receive PDOs and SDOs according to CiA DS301. It also features a batch SDO editor with electronic data sheet (EDS) file integration and layer setting services (LSS) support for slave node configuration.
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PXIe-6547 , 100 MHz, 32-Channel PXI Express PXI Digital Waveform Instrument
81011-03
PXIe, 100 MHz, 32-Channel PXI Express PXI Digital Waveform Instrument—The PXIe‑6547 is a digital waveform generator and analyzer for interfacing and basic characterization test with 32 single-ended digital pins. The device is capable of sampling digital waveforms at up to 100 MHz and interfacing with user-programmable voltage levels that have a 100 mV resolution. The PXI‑6547 also features advanced synchronization capabilities for building integrated mixed-signal test systems, hardware comparison for bit-error test, and per-bank digital timing features.
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PXIe-5413, 20 MHz Bandwidth, 2-Channel, 16-Bit PXI Waveform Generator
785114-01
PXIe, 20 MHz Bandwidth, 2-Channel, 16-Bit PXI Waveform Generator - The PXIe-5413 is a 20 MHz arbitrary waveform generator capable of generating user-defined, arbitrary waveforms and standard functions including sine, square, triangle, and ramp. This arbitrary waveform generator can generate signals from -12 V to +12 V and uses a fractional resampling method to precisely generate waveforms. The PXIe-5413 also features advanced synchronization.
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PXIe-5413, 20 MHz Bandwidth, 1-Channel, 16-Bit PXI Waveform Generator
784181-01
PXIe, 20 MHz Bandwidth, 1-Channel, 16-Bit PXI Waveform Generator - The PXIe-5413 is a 20 MHz arbitrary waveform generator capable of generating user-defined, arbitrary waveforms and standard functions including sine, square, triangle, and ramp. This arbitrary waveform generator can generate signals from -12 V to +12 V and uses a fractional resampling method to precisely generate waveforms. The PXIe-5413 also features advanced synchronization.
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PXIe-5423, 40 MHz Bandwidth, 2-Channel, 16-Bit PXI Waveform Generator
785116-01
PXIe, 40 MHz Bandwidth, 16-Bit PXI Waveform Generator—The PXIe-5423 is a 40 MHz arbitrary waveform generator capable of generating user-defined, arbitrary waveforms and standard functions including sine, square, triangle, and ramp. This arbitrary waveform generator can generate signals from -12 V to +12 V and uses a fractional resampling method to precisely generate waveforms. The PXIe-5423 also features advanced synchronization and generation features like waveform scripting and streaming.
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PXIe-5433, 80 MHz Bandwidth, 2-Channel, 16-Bit PXI Waveform Generator
785118-01
PXIe, 80 MHz Bandwidth, 16-Bit PXI Waveform Generator—The PXIe-5433 is an 80 MHz arbitrary waveform generator capable of generating user-defined, arbitrary waveforms and standard functions including sine, square, triangle, and ramp. This arbitrary waveform generator can generate signals from -12 V to +12 V and uses a fractional resampling method to precisely generate waveforms. The PXIe-5433 also features advanced synchronization and generation features like waveform scripting and streaming.
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PXIe-5433, 80 MHz Bandwidth, 1-Channel, 16-Bit PXI Waveform Generator
785117-01
PXIe, 80 MHz Bandwidth, 16-Bit PXI Waveform Generator—The PXIe-5433 is an 80 MHz arbitrary waveform generator capable of generating user-defined, arbitrary waveforms and standard functions including sine, square, triangle, and ramp. This arbitrary waveform generator can generate signals from -12 V to +12 V and uses a fractional resampling method to precisely generate waveforms. The PXIe-5433 also features advanced synchronization and generation features like waveform scripting and streaming.
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PXIe-5423, 40 MHz Bandwidth, 1-Channel, 16-Bit PXI Waveform Generator
785115-01
PXIe, 40 MHz Bandwidth, 16-Bit PXI Waveform Generator—The PXIe-5423 is a 40 MHz arbitrary waveform generator capable of generating user-defined, arbitrary waveforms and standard functions including sine, square, triangle, and ramp. This arbitrary waveform generator can generate signals from -12 V to +12 V and uses a fractional resampling method to precisely generate waveforms. The PXIe-5423 also features advanced synchronization and generation features like waveform scripting and streaming.