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Showing results: 4546 - 4560 of 5310 items found.

  • RF Electronic Calibration Module (ECal), DC/300 KHz To 9 GHz, 3.5 Mm, 2 Port

    85093D - Keysight Technologies

    The Keysight 85093D RF electronic calibration (ECal) module makes the calibration of vector network analyzers fast, easy, and accurate. ECal is a precision, single-connection calibration technique for your vector network analyzer. Performing a full two-port calibration takes less than half the time and a number of connections using ECal versus mechanical calibration kits. Furthermore, the accuracy of the calibration is comparable between electronic and mechanical methods. Traditional mechanical calibrations require intensive operator interaction, which is prone to errors. With ECal, the operator simply connects the ECal module to the network analyzer and the software controls the rest.

  • RF Electronic Calibration Module (ECal), DC/300 KHz To 9 GHz, 7mm, 2 Port

    85091D - Keysight Technologies

    The Keysight 85091D RF electronic calibration (ECal) module makes the calibration of vector network analyzers fast, easy, and accurate. ECal is a precision, single-connection calibration technique for your vector network analyzer. Performing a full two-port calibration takes less than half the time and a number of connections using ECal versus mechanical calibration kits. Furthermore, the accuracy of the calibration is comparable between electronic and mechanical methods. Traditional mechanical calibrations require intensive operator interaction, which is prone to errors. With ECal, the operator simply connects the ECal module to the network analyzer and the software controls the rest.

  • RF Electronic Calibration Module (ECal), DC/300 KHz To 9 GHz, Type-N, 2 Port

    85092D - Keysight Technologies

    The Keysight 85092D RF electronic calibration (ECal) module makes calibration of vector network analyzers fast, easy, and accurate. ECal is a precision, single-connection calibration technique for your vector network analyzer. Performing a full two-port calibration takes less than half the time and number of connections using ECal versus mechanical calibration kits. Furthermore, the accuracy of the calibration is comparable between electronic and mechanical methods. Traditional mechanical calibrations require intensive operator interaction, which is prone to errors. With ECal, the operator simply connects the ECal module to the network analyzer and the software controls the rest.

  • RF Electronic Calibration Module (ECal), DC/300 KHz To 9 GHz, 4.3-10, 2 Port

    85094D - Keysight Technologies

    The Keysight 85094D RF electronic calibration (ECal) module makes the calibration of vector network analyzers fast, easy, and accurate. ECal is a precision, single-connection calibration technique for your vector network analyzer. Performing a full two-port calibration takes less than half the time and a number of connections using ECal versus mechanical calibration kits. Furthermore, the accuracy of the calibration is comparable between electronic and mechanical methods. Traditional mechanical calibrations require intensive operator interaction, which is prone to errors. With ECal, the operator simply connects the ECal module to the network analyzer and the software controls the rest.

  • 50 MHz to 2.2 GHz, Reconfigurable USRP Software Defined Radio Device

    783923-01 - NI

    50 MHz to 2.2 GHz, Reconfigurable USRP Software Defined Radio Device - The USRP-2940 provides an integrated hardware and software solution for rapidly prototyping high-performance wireless communication systems. Built on the LabVIEW reconfigurable I/O (RIO) architecture, USRP RIO delivers an integrated hardware and software solution, so researchers can prototype faster and significantly shorten time to results. You can prototype a wide range of advanced research applications that include multiple input, multiple output (MIMO); synchronization of heterogeneous networks; LTE relaying; RF compressive sampling; spectrum sensing; cognitive radio; beamforming; and direction finding.

  • 400 MHz to 4.4 GHz, Reconfigurable USRP Software Defined Radio Device

    783147-01 - NI

    400 MHz to 4.4 GHz, Reconfigurable USRP Software Defined Radio Device - The USRP-2942 provides an integrated hardware and software solution for rapidly prototyping high-performance wireless communication systems. Built on the LabVIEW reconfigurable I/O (RIO) architecture, USRP RIO delivers an integrated hardware and software solution, so researchers can prototype faster and significantly shorten time to results. You can prototype a wide range of advanced research applications that include multiple input, multiple output (MIMO); synchronization of heterogeneous networks; LTE relaying; RF compressive sampling; spectrum sensing; cognitive radio; beamforming; and direction finding.

  • 400 MHz to 4.4 GHz, Reconfigurable USRP Software Defined Radio Device

    783924-01 - NI

    400 MHz to 4.4 GHz, Reconfigurable USRP Software Defined Radio Device - The USRP-2942 provides an integrated hardware and software solution for rapidly prototyping high-performance wireless communication systems. Built on the LabVIEW reconfigurable I/O (RIO) architecture, USRP RIO delivers an integrated hardware and software solution, so researchers can prototype faster and significantly shorten time to results. You can prototype a wide range of advanced research applications that include multiple input, multiple output (MIMO); synchronization of heterogeneous networks; LTE relaying; RF compressive sampling; spectrum sensing; cognitive radio; beamforming; and direction finding.

  • PCI-8516, 2-Port, PCI, LIN Interface Device

    781365-01 - NI

    2-Port, PCI, LIN Interface Device—The PXI‑8516 is a Local Interconnect Network (LIN) interface for developing applications with the NI‑XNET driver. The PXI‑8516 excels in applications requiring real-time, high-speed manipulation of hundreds of LIN 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 LIN frames and signals between the interface and the user program without CPU interrupts, minimize message latency, and free host processor time for processing complex models and applications.

  • PXI-8516, 2-Port PXI LIN Interface Module

    781366-01 - NI

    2-Port PXI LIN Interface Module—The PXI‑8516 is a Local Interconnect Network (LIN) interface for developing applications with the NI‑XNET driver.The PXI‑8516 excels in applications requiring real-time, high-speed manipulation of hundreds of LIN 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 LIN frames and signals between the interface and the user program without CPU interrupts, minimize message latency, and free host processor time for processing complex models and applications.

  • 16/8 Channel 14-bit 250 MS/s Digitizer

    VX1725 / VX1725S - CAEN S.p.A.

    The VX1725S family comes in a VME64X form factor, with 16/8 input channels. The communication to and from the board is provided through the VMEBus and Optical Link interfaces. The VX1725S is a digitizer capable of recording waveforms along with performing advanced algorithms for online digital pulse processing (DPP). Utilizing DPP Firmware, users can acquire quantitative physical parameters (Integrated Charge, Pulse Shape Discrimination with very fine time resolution, Pulse Height Analysis) as well as read out waveforms with automatic pulse identification and baseline suppression on channel basis (Zero-Length Encoding and Dynamic Acquisition Window).

  • Modular Functional Test Platform

    LX-OTP2 - LXinstruments GmbH

    The OTP² system platform has recently been available in both the PXI and LXI versions. The OTP2 system platform enables the cost-effective and fast implementation of function test systems based on defined modules and function blocks. Thanks to the open system interfaces, customer-specific adjustments can be made at any time without any problems. When considering options for your next generation functional test system, it is important to assess the entire life cycle of the system and the associated costs and efforts. Use OTP² to accelerate development cycles and reduce the development effort for new functional test systems.

  • USRP-2940, 50 MHz to 2.2 GHz, Reconfigurable USRP Software Defined Radio Device

    783146-01 - NI

    50 MHz to 2.2 GHz, Reconfigurable USRP Software Defined Radio Device - The USRP-2940 provides an integrated hardware and software solution for rapidly prototyping high-performance wireless communication systems. Built on the LabVIEW reconfigurable I/O (RIO) architecture, USRP RIO delivers an integrated hardware and software solution, so researchers can prototype faster and significantly shorten time to results. You can prototype a wide range of advanced research applications that include multiple input, multiple output (MIMO); synchronization of heterogeneous networks; LTE relaying; RF compressive sampling; spectrum sensing; cognitive radio; beamforming; and direction finding.

  • 40Gb/s DPSK Receivers

    Optoplex Corporation

    Targeting for the next-generation 40Gb/s system based on advanced optical differential phase shift keying (DPSK) demodulation, Optoplex’s 40Gb/s Integrated DPSK Receiver (DPSK Rx) demodulates an incoming DPSK optical signal into a pair of differentially (amplitude) modulated RF outputs at data rate up to 43Gb/s in a compact package. Phase modulated optical signals offer much better dispersion performance compared with traditional amplitude modulated counterparts because the carrier light stays on all the time so that the intensity-dependent nonlinear effects in the transmission link are avoided, resulting in longer transmission distances.

  • HBM Verification Tester

    HBM-VT - High Power Pulse Instruments GmbH

    - HBM pulse generator verification tester according ANSI/ESDA/JEDEC JS-001 up to ±10kV- To be used in HBM test and qualification labs for regular pulse generator specification compliance test in order to fulfill lab audit and certification requirements- Fully automatic compliance test and verification of HBM pulse generators regarding ANSI/ESDA/JEDEC JS-001 normative standard at 3 different load conditions: Short Circuit, 500 Ω, and a reference diode at VBR=15 V reverse breakdown voltage, including DC test- Parameter evaluation and verification of the transient HBM current waveforms: Peak Current, Rise Time, Decay Time, Maximum Ringing Current- Optionally available upgrade for all HPPI TLP-3010C, 4010C, 8010A, 8010C, HBM-TS10-A hardware systems in combination with HBM-S1-B (6kV) pulse generators (upgrade on request)- Fully automatic test report generation (PDF)- Electrically floating (no fixed system ground): The HBM loads, current sensor output, USB control interface and the enclosure are electrically floating. There is no limiting system ground which may introduce common-mode interference induced HBM current measurement errors.- Isolated industrial full-speed USB control interface- Isolated power supply derived from USB port- Compact size 126mm x 82.5mm x 44.5mm

  • Automotive Sensors

    TE Connectivity Ltd.

    Vehicle electrification (e-mobility), sustainability (zero emissions), increased safety & productivity are trends significantly impacting the role of sensors in passenger and commercial vehicles. This includes the requirement to enable greater e-motor performance and efficiency, reduced charging time, increased battery life, cleaner and more efficient internal combustion engines, reduced maintenance / vehicle down-time as well as highly robust ADAS and autonomous driving safety systems. TE offers a diverse sensor technology portfolio, combined with deep application expertise gained from extensive experience of delivering quantifiable value across a wide range of demanding passenger & commercial vehicle applications.

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