Filter Results By:

Products

Applications

Manufacturers

RF

3 kHz to 300 GHz. AKA: Radio Frequency

See Also: Radio Frequency, Microwave, VHF, MW


Showing results: 2896 - 2910 of 3175 items found.

  • USRP-2920, 20 MHz Bandwidth, 50 MHz to 2.2 GHz USRP Software Defined Radio Device

    781906-01 - NI

    20 MHz Bandwidth, 50 MHz to 2.2 GHz USRP Software Defined Radio Device - The USRP‑2920 is a tunable RF transceiver with a high-speed analog‑to‑digital converter and digital‑to‑analog converter for streaming baseband I and Q signals to a host PC over 1 Gigabit Ethernet. You can also use the USRP‑2920 for the following applications: white space; broadcast FM; public safety; land-mobile, low-power unlicensed devices on industrial, scientific, and medical (ISM) bands; sensor networks; cell phone; amateur radio; or GPS.

  • PXIe-8881, 3.9 GHz 8-Core PXI Controller - The PXIe-8881 is an Intel Xeon 8-Core embedded controller for PXI Express systems

    787807-01 - NI

    PXIe, 3.9 GHz 8-Core PXI Controller - The PXIe-8881 is an Intel Xeon 8-Core embedded controller for PXI Express systems. You use the PXIe-8881 for processor-intensive RF, modular instrumentation, and data acquisition applications. The PXIe‑8881 includes two 10/100/1000BASE‑TX (Gigabit) Ethernet ports, two USB 3.0 ports, four USB 2.0 ports, as well as an integrated hard drive and other peripheral I/O, such as two Thunderbolt 3 ports. Thunderbolt is a trademark of Intel Corporation or its subsidiaries in the U.S. and/or other countries.

  • PXIe-8881, 3.9 GHz 8-Core PXI Controller

    786636-01 - NI

    PXIe, 3.9 GHz 8-Core PXI Controller - The PXIe-8881 is an Intel Xeon 8-Core embedded controller for PXI Express systems. You use the PXIe-8881 for processor-intensive RF, modular instrumentation, and data acquisition applications. The PXIe‑8881 includes two 10/100/1000BASE‑TX (Gigabit) Ethernet ports, two USB 3.0 ports, four USB 2.0 ports, as well as an integrated hard drive and other peripheral I/O, such as two Thunderbolt 3 ports. Thunderbolt is a trademark of Intel Corporation or its subsidiaries in the U.S. and/or other countries.

  • PXIe-8881, 3.9 GHz 8-Core PXI Controller

    787805-01 - NI

    PXIe, 3.9 GHz 8-Core PXI Controller - The PXIe-8881 is an Intel Xeon 8-Core embedded controller for PXI Express systems. You use the PXIe-8881 for processor-intensive RF, modular instrumentation, and data acquisition applications. The PXIe‑8881 includes two 10/100/1000BASE‑TX (Gigabit) Ethernet ports, two USB 3.0 ports, four USB 2.0 ports, as well as an integrated hard drive and other peripheral I/O, such as two Thunderbolt 3 ports. Thunderbolt is a trademark of Intel Corporation or its subsidiaries in the U.S. and/or other countries.

  • PXIe-8881, 3.9 GHz 8-Core PXI Controller

    787805-33 - NI

    PXIe, 3.9 GHz 8-Core PXI Controller - The PXIe-8881 is an Intel Xeon 8-Core embedded controller for PXI Express systems. You use the PXIe-8881 for processor-intensive RF, modular instrumentation, and data acquisition applications. The PXIe‑8881 includes two 10/100/1000BASE‑TX (Gigabit) Ethernet ports, two USB 3.0 ports, four USB 2.0 ports, as well as an integrated hard drive and other peripheral I/O, such as two Thunderbolt 3 ports. Thunderbolt is a trademark of Intel Corporation or its subsidiaries in the U.S. and/or other countries.

  • PXIe-8881, 3.9 GHz 8-Core PXI Controller

    787806-01 - NI

    PXIe, 3.9 GHz 8-Core PXI Controller - The PXIe-8881 is an Intel Xeon 8-Core embedded controller for PXI Express systems. You use the PXIe-8881 for processor-intensive RF, modular instrumentation, and data acquisition applications. The PXIe‑8881 includes two 10/100/1000BASE‑TX (Gigabit) Ethernet ports, two USB 3.0 ports, four USB 2.0 ports, as well as an integrated hard drive and other peripheral I/O, such as two Thunderbolt 3 ports. Thunderbolt is a trademark of Intel Corporation or its subsidiaries in the U.S. and/or other countries.

  • PXIe-5745, 12-Bit, 6.4 GS/s, 2-Channel PXI FlexRIO Signal Generator

    785597-02 - NI

    The PXIe-5745 enables direct RF generation up to 3 GHz with 12 bits of resolution. You can use it in a dual-channel mode at 3.2 GS/s for generation up to 1.5 GHz or in a single-channel wideband upconversion mode at 6.4 GS/s. The PXIe-5745 is ideal for applications that require high channel density IF signal generation with multichannel synchronization, including radar, electronic warfare, and communications. The FlexRIO driver includes support for generating predefined waveforms, and you can use the LabVIEW-programmable Xilinx Kintex UltraScale FPGA for dynamically creating waveforms, signal modulation/demodulation, and other custom real-time signal processing.

  • PXIe-5745, 12-Bit, 6.4 GS/s, 2-Channel PXI FlexRIO Signal Generator

    785598-01 - NI

    The PXIe-5745 enables direct RF generation up to 3 GHz with 12 bits of resolution. You can use it in a dual-channel mode at 3.2 GS/s for generation up to 1.5 GHz or in a single-channel wideband upconversion mode at 6.4 GS/s. The PXIe-5745 is ideal for applications that require high channel density IF signal generation with multichannel synchronization, including radar, electronic warfare, and communications. The FlexRIO driver includes support for generating predefined waveforms, and you can use the LabVIEW-programmable Xilinx Kintex UltraScale FPGA for dynamically creating waveforms, signal modulation/demodulation, and other custom real-time signal processing.

  • PXIe-5745, 12-Bit, 6.4 GS/s, 2-Channel PXI FlexRIO Signal Generator

    785598-02 - NI

    The PXIe-5745 enables direct RF generation up to 3 GHz with 12 bits of resolution. You can use it in a dual-channel mode at 3.2 GS/s for generation up to 1.5 GHz or in a single-channel wideband upconversion mode at 6.4 GS/s. The PXIe-5745 is ideal for applications that require high channel density IF signal generation with multichannel synchronization, including radar, electronic warfare, and communications. The FlexRIO driver includes support for generating predefined waveforms, and you can use the LabVIEW-programmable Xilinx Kintex UltraScale FPGA for dynamically creating waveforms, signal modulation/demodulation, and other custom real-time signal processing.

  • PXIe-5745, 12-Bit, 6.4 GS/s, 2-Channel PXI FlexRIO Signal Generator

    785596-01 - NI

    The PXIe-5745 enables direct RF generation up to 3 GHz with 12 bits of resolution. You can use it in a dual-channel mode at 3.2 GS/s for generation up to 1.5 GHz or in a single-channel wideband upconversion mode at 6.4 GS/s. The PXIe-5745 is ideal for applications that require high channel density IF signal generation with multichannel synchronization, including radar, electronic warfare, and communications. The FlexRIO driver includes support for generating predefined waveforms, and you can use the LabVIEW-programmable Xilinx Kintex UltraScale FPGA for dynamically creating waveforms, signal modulation/demodulation, and other custom real-time signal processing.

  • PXIe-5745, 12-Bit, 6.4 GS/s, 2-Channel PXI FlexRIO Signal Generator

    785597-01 - NI

    The PXIe-5745 enables direct RF generation up to 3 GHz with 12 bits of resolution. You can use it in a dual-channel mode at 3.2 GS/s for generation up to 1.5 GHz or in a single-channel wideband upconversion mode at 6.4 GS/s. The PXIe-5745 is ideal for applications that require high channel density IF signal generation with multichannel synchronization, including radar, electronic warfare, and communications. The FlexRIO driver includes support for generating predefined waveforms, and you can use the LabVIEW-programmable Xilinx Kintex UltraScale FPGA for dynamically creating waveforms, signal modulation/demodulation, and other custom real-time signal processing.

  • PXIe-5745, 12-Bit, 6.4 GS/s, 2-Channel PXI FlexRIO Signal Generator

    785596-02 - NI

    The PXIe-5745 enables direct RF generation up to 3 GHz with 12 bits of resolution. You can use it in a dual-channel mode at 3.2 GS/s for generation up to 1.5 GHz or in a single-channel wideband upconversion mode at 6.4 GS/s. The PXIe-5745 is ideal for applications that require high channel density IF signal generation with multichannel synchronization, including radar, electronic warfare, and communications. The FlexRIO driver includes support for generating predefined waveforms, and you can use the LabVIEW-programmable Xilinx Kintex UltraScale FPGA for dynamically creating waveforms, signal modulation/demodulation, and other custom real-time signal processing.

  • GoldenGate RFIC Simulation Software

    Keysight Technologies

    GoldenGate RFIC Simulation and Analysis Software is an advanced simulation and analysis solution for integrated mixed signal RFIC designs that is fully integrated into the Cadence Analog Design Environment (ADE). GoldenGate is part of Keysight's RFIC simulation, analysis and verification solution that also includes Momentum for 3-D planar electromagnetic simulation, SystemVue & Ptolemy wireless test benches for system-level verification, and the Advanced Design System (ADS) Data Display for advanced data analysis. This suite links the RF system, subsystem, and component-level design and analysis as part of a unique and comprehensive RFIC design flow.

  • RF/Microwave ATE Systems

    In-Phase Technologies, Inc.

    Over two decades ago, In-Phase Technologies founded our company for the purpose of designing and producing reliable high quality RF and microwave Automated Test Equipment (ATE). We continue that tradition today, providing the best, world-class automated test equipment. Our system designs bring together the right combination of Commercial Off the Shelf (COTS) test equipment, custom designed and built Interface Test Adapters (ITAs), lightning fast and accurate measurement software, and the optimum user interface to make all of this technology easy to use.

  • LXI 24-Channel 1GHz Video Multiplexer

    60-721A-001 - Pickering Interfaces Ltd.

    This High Performance Video MUX is designed for the switching of RF signals in 75Ω systems at frequencies up to 1GHz. It is ideal for 75Ω monitoring applications that require a multiplexer to select one channel to be routed to measuring equipment. The automatic connection of unused channels into 75Ω terminations helps maintain signal integrity and minimizes the possibility of introducing unwanted responses. The common connection is also automatically terminated into 75 Ohm when unused. Front panel LED indicators adjacent to each multiplexer input connector provide an easy visual identification of the active channel.

Get Help