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Microwave

Electomagnetic waves with wavelengths longer than those of infrared light. Frequencies range from 1 GHz to 300 GHz.

See Also: Wave, Frequency, Radio Frequency, Long-Wave IR, Lightwave, Shear Wave, Sub-mm Wave, Wavelet, Continuous Wave, Submillimeter Wave, Sine Wave, Millimeter Wave, Shock wave, MW


Showing results: 1696 - 1710 of 2016 items found.

  • PIN Solid State Switch, 100 MHz to 18 GHz, SPDT

    P9402C - Keysight Technologies

    The Keysight P9402C PIN solid state switch maximizes your operating frequency range from 100 MHz to 18 GHz. Providing superior performance in terms of isolation, insertion loss and return loss, the P9402C is particularly suitable for high-speed RF and microwave switching applications such as switch matrixes in instrumentation, communications and radar. These switches provide ultra-fast switching speed to increase throughput in manufacturing.

  • PIN Solid State Switch, 100 MHz to 18 GHz, SP4T

    P9404C - Keysight Technologies

    The Keysight P9404C PIN solid state switch maximizes your operating frequency range from 100 MHz to 18 GHz. Providing superior performance in terms of isolation, insertion loss and return loss, the P9404C is particularly suitable for high-speed RF and microwave switching applications such as switch matrixes in instrumentation, communications and radar. These switches provide ultra-fast switching speed to increase throughput in manufacturing.

  • PIN Solid State Switch, 100 MHz to 8 GHz, SPDT

    P9402A - Keysight Technologies

    The Keysight P9402A PIN solid state switch maximizes your operating frequency range from 100 MHz to 8 GHz. Providing superior performance in terms of isolation, insertion loss and return loss, the P9402A is particularly suitable for high-speed RF and microwave switching applications such as switch matrixes in instrumentation, communications and radar. These switches provide ultra-fast switching speed to increase throughput in manufacturing.

  • Digital Digitizer

    MOS2 - Holding Informtest

    Mezzanine module (mezzanine) MOS2 is designed to convert instantaneous voltage values ​​of an electrical signal into a digital code, measure instantaneous voltage values. The mezzanine is intended for use in HF and microwave systems as a terminal device for digitizing intermediate frequency signals up to 200 MHz. Together with the frequency converter DOWNCONVERTER 10 GHz LXI manufactured by the holding "Informtest" MOS2 under the control of the common software shell ACM2 makes up a synthetic instrument - spectrum analyzer, a ready-made solution for testing microwave devices and radio reception channels.

  • Optical Modulator

    Optilab, LLC.

    Is an Intensity Modulator that is manufactured with Annealed Proton Exchange(APE) process, it features a zero-chirp design and Polarization Maintaining(PM) fiber output. Features 20 GHz E/O bandwidth, a highly linear transfer function and excellent extinction ratio. Applications include digital transmission up to 20 Gb/s, analog RFoF transmission to 20 GHz, optical pulse generation, mode-locked fiber laser and microwave optical link.

  • Up/Down Converters

    In-Phase Technologies, Inc.

    Over the years, In-Phase Technologies has received many requests for frequency conversion units. Our standard product line of frequency converters includes models that operate from RF though 60 GHz. Many options are available to complement our standard offerings. We also have a series of RF-to-optical converters that allows customers to send RF and microwave signals over fiber optic cables.

  • Super-Notch YIG Band-Reject Filters

    Teledyne RF & Microwave

    YIG Tuned BRF patented technology gets closer to the ‘perfect notch'. Leveraging a long heritage of engineering innovation in YIG technologies, Teledyne RF & Microwave has developed a line of YIG Tuned Band-Reject Filters powered by patented new technology that overcomes many long-time design limitations inherent to YIG Band-Reject or “notch” filters. Our new line delivers major advancements and unequalled performance.

  • Pre-Bonded Metalbacked PCB

    Teledyne Labtech

    Teledyne Labtech's significant in-house resources have the capability to satisfy the most exacting demands of complex pre-bonded PTFE Microwave PCB. Our extensive machine shop facilities allows Teledyne Labtech to offer a complete sourcing solution from low volume prototypes to high volume production requirements. Teledyne Labtech can also offer pre-bonded metalbacked PCB with integrated wave-guide transitions and co-planar wave-guides.

  • Metal Cored PCB

    Teledyne Labtech

    Teledyne Labtech is at the forefront of complex metal-cored PCB design and manufacture. The PCB use a thin metal core <2 mm, which acts as isolation between the RF/Microwave circuit and the Analogue/Digital circuitry and creates an excellent thermal path.The major advantages are reduced size and no need for complex microwave feed-thru's. The ability to laser cut pockets allows the designer engineer to mount the high power MMIC directly on to the metal core.

  • Next Generation Radio Platform

    INTEGRA - SAF Tehnika, As

    Integra is an unbelievably light, energy efficient carrier-grade system that exemplifies an outstanding return on smart engineering - the synergy of high competence in radio electronics and materials science. Integration of next generation microwave radio with high and super high performance antennas into a single unit translates into a lower total cost of ownership, as well as less time spent on the installation site, and better reliability of the link even in densely served areas.

  • PSG Signal Generators

    Keysight Technologies

    Generate trusted microwave signals: get metrology-grade frequency & level accuracy with excellent distortion & spurious characteristicsRely on the highest quality signals from pure CW tones with 1 W of power to complex, vector-modulated signals with 4 GHz bandwidthReduce the time you spend on signal creation with Signal Studio softwareTake advantage of increased performance, flexibility & speed when you replace a legacy source with the code-compatible PSG

  • 1.0 mm Female to Circuit Card Launch, DC to 110 GHz

    11923A - Keysight Technologies

    The Keysight 11923A 1.0 mm female connector launch is designed to thread into a package or fixture housing to transition a microwave circuit from microstrip to coaxial connector. The Keysight 11923A connector launch is intended for use with 110 GHz test systems such as the Keysight 8510XF. The Keysight 11923A comes pre-assembled, but the user is responsible for machining the package and installing the connector. The procedure describing the necessary geometry for the package and installation will be provided.

  • Switch Drivers

    Macom Technology Solutions Holdings Inc.

    MACOM’s switch drivers bridge the gap between digital control signals and the analog voltages and currents required to drive our extensive family of RF, microwave and millimeter wave PIN diode and FET switches.

  • 3D Electromagnetic Simulation Software

    XFdtd® - Remcom Inc,

    A full-featured simulation solver, XFdtd outpaces other methods in efficiency as the number of unknowns increases. XF includes full-wave, static, bio-thermal, optimization, and circuit solvers to tackle a wide variety of applications, including antenna design and placement, biomedical and SAR, EMI/EMC, microwave devices, radar and scattering, automotive radar, and more. It also works with Remcom's ray-tracing products to provide thorough simulation capability at the low-, middle-, and high-end of the electromagnetic spectrum.

  • Antenna, Omni Directional Wideband

    EM-6851 | 2 GHz – 18 GHz - Electro-Metrics Corp.

    The EM-6851 Omni-Directional Wideband Antenna is capable of operating as either a transmitting or receiving antenna over the 2 to 18 GHz frequency range. This antenna provides a 45% size reduction when compared to similarly performing models. The antenna is enclosed in a weather resistant radome. The length of the support rod allows a microwave amplifier to be connected directly to the output connector, reducing the potential signal loss compared to an amplifier connected at a more distant point.

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