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
United States of America
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product
NI-5782, 100 MHz Bandwidth Transceiver Adapter Module for FlexRIO
782705-02
The NI‑5782 is ideal for applications that require the acquisition and generation of IF or baseband signals with in-line, real-time processing. You can analyze acquired signals in the PXI FPGA Module for FlexRIO to perform measurements and generate response signals. Application areas include RF modulation and demodulation, channel emulation, bit error rate testing (BERT), signal intelligence, radio frequency identification (RFID) and near-field communication (NFC) test, real-time spectrum analysis, and software defined radio (SDR).
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PXI-6229, 32 AI (16-Bit, 250 kS/s), 4 AO, 48 DIO, PXI Hybrid, Multifunction I/O Module
779630-01
32 AI (16-Bit, 250 kS/s), 4 AO, 48 DIO, PXI Multifunction I/O Module—The PXI‑6229 offers analog I/O, correlated digital I/O, two 32‑bit counter/timers, and digital triggering. The device delivers low-cost, reliable DAQ capabilities in a wide range of applications from simple applications in laboratory automation, research, design verification/test, and manufacturing test. You can add sensor and high-voltage measurement capability to your device with SCC or SCXI signal conditioning modules. The included NI‑DAQmx driver and configuration utility simplify configuration and measurements.
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PXIe-5763, 16-Bit, 500 MS/s, 4-Channel PXI FlexRIO Digitizer
785163-01
The PXIe-5763 is a PXI FlexRIO Digitizer that simultaneously samples four channels at 500 MS/s with 16 bits of resolution and features 225 MHz of analog input bandwidth. With over 73 dB of SNR, the PXIe-5763 is ideal for applications that require a wide dynamic range with a wideband digitizer. The FlexRIO driver includes support for finite and continuous streaming modes, and you can implement custom algorithms and real-time signal processing on the LabVIEW-programmable Xilinx Kintex UltraScale FPGA. Available in AC and DC coupled variants, the PXIe-5763 is ideal for both time and frequency domain applications, including radar prototyping, LIDAR, communications, microscopy, OCT, event detection, and particle physics.
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SWB-2810, 4x43, 1 A, Row Access, Reed Relay Matrix Module for SwitchBlock
781420-10
4x43, 1 A, Row Access, Reed Matrix Module for SwitchBlock - The SWB‑2810 is a reed relay matrix module for SwitchBlock systems. Designed for high power, it can operate as an individual relay card or expand in a single carrier or single PXI chassis. You can connect any input to any output, individually or in combination. You can use matrix switches to route signals from oscilloscopes, DMMs, arbitrary waveform generators, and power supplies to various test points on a unit under test (UUT). The primary benefit of matrix switches is simplified wiring—the overall test system can easily and dynamically change the internal connection path without any external manual intervention.
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NI-9251, 3 Vrms, 102.4 kS/s/ch Simultaneous, 2-Channel C Series Voltage Input Module
783814-01
3 Vrms, 102.4 kS/s/ch Simultaneous, 2-Channel C Series Voltage Input Module - The NI‑9251 with mini XLR is a low-distortion input channel that allows for the high dynamic range measurements necessary to fully test and evaluate modern audio outputs used in most consumer electronic devices. Unlike sound card-based solutions, you can quickly deploy the NI‑9251 to guarantee long-term measurement repeatability and increased test system uptime. To maximize low-noise benefits, the NI‑9251 differential input is provided through a mini‑XLR connector, which delivers a truly balanced input.
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PXIe-5160, 500 MHz, 2.5 GS/s, 10-Bit PXI Oscilloscope
782621-11
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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Astronics PXIe-2461, 235 MHz FrequencyTime Interval Counter
784197-01
PXIe, 42 V, 2-Channel PXI Counter/Timer Module—The Astronics PXIe‑2461 is a high-performance counter/timer module that provides easy-to-use automatic measurement functions, including phase, pulse, peak, rise/fall time, time interval and ratio measurement, all with high resolution. It features nine digits per second resolution, programmable measurement timeout, and nine different arming modes. You can set the Astronics PXIe-2461 to measure timing and amplitude characteristics in one of two voltage ranges: ±5.1 V or ±42 V.
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PCI-GPIB+, Analyzer Software Included, IEEE 488 GPIB Instrument Control Device for Windows, Onboard GPIB Analyzer
778033-01
The PCI‑GPIB+ combines an IEEE 488 controller and an analyzer on one device for computers with PCI slots. You can use this device to integrate an instrument into your system using GPIB as well as to troubleshoot and solve GPIB hardware and software problems. The PCI‑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.
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PXIe-5185, 3 GHz, 12.5 GS/s, 8-Bit PXI Oscilloscope
782057-02
PXIe, 3 GHz, 12.5 GS/s, 8-Bit PXI Oscilloscope—The PXIe‑5185 high-speed PXI oscilloscope has two channels 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 3 GHz of analog bandwidth and flexible measurement configurations. The PXIe‑5185 also features PXI synchronization and data streaming capabilities.
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PCI-5114, 125 MHz Bandwidth, 2-Channel, 8-Bit PCI Oscilloscope Device, 64 MB
779745-02
125 MHz Bandwidth, 2-Channel, 8-Bit PCI Oscilloscope Device—The PCI‑5114 low-cost oscilloscope device has two channels that sample up to 250 MS/s with flexible settings for coupling, impedance, 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 flexible measurement configurations and up to 125 MHz of analog bandwidth.
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Astronics PXIe-6943, 1-Slot, 50 MHz, 32-Channel PXI Digital Pattern Instrument
785855-01
1-Slot, 50 MHz, 32-Channel PXI Digital Pattern Instrument - The Astronics PXIe-6943 works as a core component of digital test systems that may include switching, analog instrumentation, and an RF subsystem. This instrument features an advanced thermal design, temperate monitoring, … and a high-speed data sequencer for control of stimulus and response patterns. Additionally, the Astronics PXIe-6943 operates at data rates up to 50 MHz with 1 ns edge placement, variable slew rates, and a <3 ns channel-to-channel skew. It also supports synchronized digital test systems from 32 to 224 channels.
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PXIe-5673E, 6.6 GHz PXI Vector Signal Generator
781340-03
6.6 GHz PXI Vector Signal Generator—The PXIe‑5673E is a wide-bandwidth module that, when combined with the appropriate software, can generate a variety of signals. With the Modulation Toolkit for LabVIEW, it can generate different waveforms including AM, FM, CPM, ASK, FSK, MSK, PSK, QAM (4‑, 16‑, 64‑, and 256‑QAM), multitone signals, arbitrary waveforms, and many others. In addition, you can combine these vector signal generators with standard-specific software to generate signals for GPS, GSM/ EDGE/WCDMA, WLAN, WiMAX, DVB‑C/H/C, ISDB‑T, ZigBee, and others. With PXIe‑5673E stream‑from‑disk capabilities, you can generate continuous waveforms that are up to several terabytes in length.
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PXIe-5650, 1.3 GHz RF Signal Generator
781215-01
The PXIe‑5650 features continuous-wave generation capabilities with FM, 2‑FSK, or OOK modulation. It uses direct digital synthesis (DDS) for high-resolution frequency hopping or phase-continuous sweeping for fixture and device characterization applications. The PXIe‑5650 is ideal for clocking nonstandard sample rates, such as WCDMA signals at baseband or intermediate frequency (IF). With these versatile signal generators, you can perform analog and digital modulation through the onboard DDS circuit, which gives you frequency modulation and frequency-shift keying for applications such as bit error rate test, antenna testing, or even keyless entry. You can also perform amplitude modulation using on-off keying.
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sbRIO-9264, Non-Enclosed, 25 kS/s/ch Simultaneous, ±10 V, 16-Channel C Series Voltage Output Module
781119-01
Non-Enclosed, 25 kS/s/ch Simultaneous, ±10 V, 16-Channel C Series Voltage Output Module - The sbRIO‑9264 is a simultaneously updating analog output module that accommodates higher‑channel‑count systems. Higher density modules conserve chassis space, which leaves room for other measurement types. Each channel has its own digital‑to‑analog converter. The spring-terminal version of the sbRIO‑9264 uses a 36‑position connector for the output channels, and each channel has a ground connection. Non-enclosed modules are designed for OEM applications.
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PXI-2556, 2.5 GHz, 75 Ω, Dual 4x1 PXI RF Multiplexer Switch Module
778572-56
2.5 GHz, 75 Ω, Dual 4x1 PXI RF Multiplexer Switch Module—The PXI‑2556 is an RF signal multiplexer switch module. The multi-bank architecture of the NI PXI‑2556 makes it ideal for test systems that require parallel operations such as the stimulus/response testing of video RF devices such as tuners. 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.





























