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Manipulates and analyzes a signal.


Showing results: 1306 - 1320 of 1688 items found.

  • PXIe-5774, 12-Bit, 6.4 GS/s, DC-Coupled, 2-Channel PXI FlexRIO Digitizer

    785647-01 - NI

    The PXIe-5774 provides up to 3 GHz of DC-coupled analog bandwidth and 12 bits of resolution. You can operate the PXIe-5774 in a dual-channel mode at 3.2 GS/s or in a single-channel interleaved mode at 6.4 GS/s. The voltage ranges are software-selectable and include 200 mV peak-to-peak and 1 V peak-to-peak, with a selectable DC offset. The PXIe-5774 is ideal for time-domain measurements in areas such as scientific instrumentation, medical imaging, and particle physics. The FlexRIO driver includes support for finite acquisition, and you can implement custom algorithms and real-time signal processing on the LabVIEW-programmable Xilinx Kintex UltraScale FPGA.

  • PCI-8511, 2-Port, Low‑Speed/Fault-Tolerant CAN Interface Device

    780682-02 - NI

    The PCI‑8511 is a fault-tolerant controller area network (CAN) interface for developing applications with the NI‑XNET driver. The PCI‑8511 excels in applications requiring real-time, high-speed manipulation of hundreds of CAN frames and signals such as hardware‑in‑the‑loop simulation, rapid control prototyping, bus monitoring, automation control, and more. The NI‑XNET device‑driven DMA engine enables the onboard processor to move CAN frames and signals between the interface and the user program without CPU interrupts, minimizing message latency and freeing host processor time for processing complex models and applications.

  • PXIe-5774, 12-Bit, 6.4 GS/s, DC-Coupled, 2-Channel PXI FlexRIO Digitizer

    785646-01 - NI

    The PXIe-5774 provides up to 3 GHz of DC-coupled analog bandwidth and 12 bits of resolution. You can operate the PXIe-5774 in a dual-channel mode at 3.2 GS/s or in a single-channel interleaved mode at 6.4 GS/s. The voltage ranges are software-selectable and include 200 mV peak-to-peak and 1 V peak-to-peak, with a selectable DC offset. The PXIe-5774 is ideal for time-domain measurements in areas such as scientific instrumentation, medical imaging, and particle physics. The FlexRIO driver includes support for finite acquisition, and you can implement custom algorithms and real-time signal processing on the LabVIEW-programmable Xilinx Kintex UltraScale FPGA.

  • PXI FlexRIO IF Transceiver

    NI

    The PXI FlexRIO IF Transceiver combines analog I/O and a user-programmable FPGA into a single, customizable instrument. The instrument enables direct RF acquisition up to 6 GHz. You can use the instrument in a dual-channel mode at 3.2 GS/s or in a single-channel interleaved mode at 6.4 GS/s. The PXI FlexRIO IF Transceiver uses FPGAs from Xilinx alongside LabVIEW and Vivado programming options for custom algorithm implementation and real-time signal processing. Using this instrument with NI-TClk, you can synchronize modules in one or more PXI chassis at up to picosecond‐level accuracy for high‐channel‐count applications.

  • PXIe-5774 , 12-Bit, 6.4 GS/s, DC-Coupled, 2-Channel PXI FlexRIO Digitizer

    785646-02 - NI

    The PXIe-5774 provides up to 3 GHz of DC-coupled analog bandwidth and 12 bits of resolution. You can operate the PXIe-5774 in a dual-channel mode at 3.2 GS/s or in a single-channel interleaved mode at 6.4 GS/s. The voltage ranges are software-selectable and include 200 mV peak-to-peak and 1 V peak-to-peak, with a selectable DC offset. The PXIe-5774 is ideal for time-domain measurements in areas such as scientific instrumentation, medical imaging, and particle physics. The FlexRIO driver includes support for finite acquisition, and you can implement custom algorithms and real-time signal processing on the LabVIEW-programmable Xilinx Kintex UltraScale FPGA.

  • PXIe-5170, 100 MHz, 4- or 8-Channel, 14-Bit, Kintex-7 325T FPGA Reconfigurable PXI Oscilloscope

    783690-01 - NI

    The PXIe‑5170 high-density PXI oscilloscope has eight simultaneously-sampled channels with flexible settings for coupling and voltage range. 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 many channels that require up to 250 MS/s or 100 MHz of analog bandwidth and advanced PXI synchronization. The PXIe‑5170 also features a programmable Kintex‑7 325T FPGA that can be used for custom acquisition, triggering, signal processing, and data streaming.

  • PXIe-5774, 12-Bit, 6.4 GS/s, DC-Coupled, 2-Channel PXI FlexRIO Digitizer

    785647-02 - NI

    The PXIe-5774 provides up to 3 GHz of DC-coupled analog bandwidth and 12 bits of resolution. You can operate the PXIe-5774 in a dual-channel mode at 3.2 GS/s or in a single-channel interleaved mode at 6.4 GS/s. The voltage ranges are software-selectable and include 200 mV peak-to-peak and 1 V peak-to-peak, with a selectable DC offset. The PXIe-5774 is ideal for time-domain measurements in areas such as scientific instrumentation, medical imaging, and particle physics. The FlexRIO driver includes support for finite acquisition, and you can implement custom algorithms and real-time signal processing on the LabVIEW-programmable Xilinx Kintex UltraScale FPGA.

  • USB3 Vision Cameras

    xiQ - XIMEA GmbH

    *Ultra compact mini camera- Only 26.4 x 26.4 x 21.2 mm and mere 27grams (1)*Cool - Low power consumption with 1.0 to 1.8 W and minimal heat dissipation*Fastest - High speed, high frame rate: 500fps at VGA and 90fps at 4Mpix resolutions*AIA standard - USB3 Vision standard compliant*Supported - USB3 under Windows 7 and 10, macOS, Linux, ARM and various Machine Vision Libraries*Industry standard interface - Compatible with USB 3.1 Gen1 SuperSpeed specification*Powerful potential - 5 Gbit/s interface 400 MB/s data throughput*Connectivity and Synchronization - Programmable opto-isolated input and output, 3 status LEDs*Cost efficient - Excellent value for the price, low TCO and fast ROI*Software interfaces - GenICam / GenTL and highly optimized API / SDK for Image Processing*Easy deployment - Range of accessories and widest hardware and software interoperability*Time proven - In production since the end of 2011*User friendly - Intuitive and simple to use API, easy switch from C to CS mount and more*Highly Customizable - Available in Board level (single PCB) and with different connector types

  • ATX Motherboard With LGA1151 Socket 9th/8th Gen Intel® Core™

    IMB521R - Axiomtek Co., Ltd.

    The IMB521R is powered by the LGA1151 socket 9th and 8th generation Intel® Core™ i7/i5/i3 (code name: Coffee Lake Refresh), Intel® Pentium® or Intel® Celeron® processor with the Intel® C246 chipset. The industrial motherboard is designed with rich functionality and offer high processing powers, multiple expansion interfaces, security feature, and stunning graphical performance to deliver true customer value and quick deployment in a broad range of high-performance applications such as industrial automation, gaming, AI-related server, self-service kiosks, medical, and digital signage. It features one PCIe x16 slot, four PCIe x4 slots, one PCIe x1 slot and one PCI slot for future expansions such as motion control cards, frame grabber cards or data acquisition cards. It also has two USB 3.1 Gen2 and four USB 3.1 Gen1 ports for faster data transfer. In addition, the industrial-grade ATX motherboard is integrated with the Intel® HD Graphics to deliver stunning 4K resolution, as well as fast 3D and video playback for graphics-intensive applications. It support three independent displays with DisplayPort++, DVI-D, HDMI, and VGA.

  • ATX Motherboard With LGA1151 Socket 9th/8th Gen Intel® Core™ Processor, Intel® Q370, USB 3.1 Gen2, SATA 3.0, Dual LAN, VGA, DisplayPort++, DVI-D, And HDMI

    IMB520R - Axiomtek Co., Ltd.

    The IMB520R is powered by the LGA1151 socket 9th and 8th generation Intel® Core™ i7/i5/i3 (code name: Coffee Lake Refresh), Intel® Pentium® or Intel® Celeron® processor with the Intel® Q370 chipset. The industrial motherboard is designed with rich functionality and offer high processing powers, multiple expansion interfaces, security feature, and stunning graphical performance to deliver true customer value and quick deployment in a broad range of high-performance applications such as industrial automation, gaming, AI-related server, self-service kiosks, medical, and digital signage. It features one PCIe x16 slot, four PCIe x4 slots, one PCIe x1 slot and one PCI slot for future expansions such as motion control cards, frame grabber cards or data acquisition cards. It also has two USB 3.1 Gen2 and four USB 3.1 Gen1 ports for faster data transfer. In addition, the industrial-grade ATX motherboard is integrated with the Intel® HD Graphics to deliver stunning 4K resolution, as well as fast 3D and video playback for graphics-intensive applications. It supports three independent displays with DisplayPort++, DVI-D, HDMI, and VGA.

  • Saluki SE2031 DSP Lock-In Amplifier

    Saluki Technology Inc.

    SE2031 Digital Lock-in Amplifier provides an excellent performance within its bandwidth from 1 mHz to 10 MHz. With the advantage of the latest digital signal processing technology and high-speed 16-bit ADC, SE2031 can easily detect the phase and the magnitude of weak signals overwhelmed by various large noise. The performance of SE2031 is as good as other lock-in amplifier brands, even better in some certain parameters, such as measurement accuracy, SNR, dynamic reserve. Otherwise, SE2031 integrates some special functions like multiple harmonic measurement, which meets the needs of scientific research and industrial application well.

  • Automated System for Identification and Control of Pharmaceutical Codes

    ViTec Co. Ltd

    The automated system for identifying pharmaceutical codes includes two scanners of the pharmaceutical code, two sensors for the presence of an object and a data processing unit (BOD). When the box or instructions are passed under the object presence sensors, the farm code is read by the corresponding scanner and the results are transmitted to the computer via the Ethernet interface. The BOD verifies the correctness of the read out farm code by comparing this code with the reference farm code set at the beginning of the system operation. If the farm code has not been read or does not match the standard, the packaging machine stops and the type of error is displayed on the indicators.

  • Mini OTDR

    FiberPal OT-8700 - Radiantech, Inc.

    FiberPal OT-8700 series instruments, with power meter built-in, are new miniature, high performance optical time domain reflectometer which is designed as fiber troubleshooter for locating fiber connector, break and imperfections for access networks. It detects event locations along the optical fiber and displays the results on a 7” color LCD display. FiberPal OT-8700 series are light, reliable and easy to use, hence it is ideal for FTTX testing. The Application Software equipped is used for data analysis, processing and storage. With the USB Interface port, enabling FiberPal OT-8700 series to transfer test data to computer easily.

  • 2000-6000W AC power source

    CX-P2KW - Shenzhen Chuangxin Instruments Co., Ltd.

    The AC power source is made by adopting microcomputer processing chip and high power device. It provides a stable pure sine wave and has voltage, over current, over temperature, overload protection. It can output 0-300V adjustable voltage, and 45-70Hz adjustable frequency as well as fixed frequency as 50 Hz or 60 Hz, 100 Hz and 200 Hz and 400 Hz. This AC power source can simulate power grid of different countries, provide a stable voltage, frequency, waveform which can be used to test and age the exprot products and provide kinds of precision tests for laboratory, measuring room, etc.

  • Imaging Modules

    Teledyne e2v

    Teledyne e2v has developed compact MIPI modules which feature our own high performance CMOS image sensors inside a pre-focused, industrial-grade scanning optic. As a turnkey sensor/optics for imaging systems, these modules offers customers significant reduction in development time and cost savings. Only a few screws are needed to mount the module, with simple connection to the image processing system through an FPC cable connector. Software development efforts can also be reduced by using some limited API-layer Linux software drivers. This enables the module to be seamlessly interfaced to popular ISP platforms.

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