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Showing results: 61 - 74 of 74 items found.

  • SATA (Serial ATA)

    Teledyne LeCroy

    Serial ATA (SATA) is a data transfer technology designed to move data to and from storage devices such as disk drives, ATAPI drives, host bus adapters (HBA), and port multipliers. SATA is a serialized enhancement and replacement to parallel IDE. Since SATA ratification in 2003 and its move to 6Gbps in 2008, Teledyne LeCroy has continued to support and innovate with its industry leading protocol analysis and traffic generation capabilities.

  • Single Photon Detection & Imaging

    Exosens Group

    To detect single photons or to image low light levels, Photonis proposes different types of image intensifiers and photon multipliers tubes.Image intensifiers tubes are used to count and position photons across a wide range of wavelengths, making them visible for researchers to observe behavior and phenomena. Photonis offers the largest selection of both standard and custom detectors in the market, with unmatched gating and photocathode options, including the highest quantum efficiency available.

  • RF/MicrowavePrototyping Boards and Housings

    MicroAmp2 - Innovative Technical Systems

    MicroAmp2 is a new series of RF/microwave prototyping boards and housings that allow for rapid construction of custom circuits in a fraction of the time and cost of traditional solutions. With the MicroAmp2 series of MB boards, a designer can quickly build amplifiers, filters, passive networks, multipliers, prescalers, log detectors, oscillators, and opamps using many popular components. A growing line of MB circuit boards are available to fit many of the industry-standard components, which can be easily assembled and mounted into shielded RF housings to create fully functional modules. Select parts from popular manufacturers such as Analog Devices, Avago, CEL, M/A-COM, Mini Circuits, RFMD, Triquint, and others.

  • Full Band Down-Converters

    STC-20-10-S1 - ERAVANT

    Full band down-converters are designed to convert high frequency millimeterwave signals down to the baseband at 10 MHz to 1.6 GHz. These down-converters deliver a superior performance since they are assembled with SAGE Millimeter’s instrumentation grade components, such as multipliers, amplifiers, filters, isolators, and more. The below standard offering covers the frequency range of 26.5 to 170 GHz and delivers a typical LO power of 3 dBm and conversion gain of 20 dB. The down-converters provide low harmonic levels and excellent gain flatness, making them ideal for test instrumentation applications. Specifications other than those listed below are available upon request.

  • Phase Locked Oscillators

    ERAVANT

    Phase locked oscillators (PLO) utilize state-of-the-art planar circuits, three-terminal devices and dielectric resonator technology to generate high-quality microwave signals at lower frequencies. Frequency multipliers, amplifiers and filters are used to extend the low frequencies for higher frequency requirements. The standard offering covers the frequency range of 2 to 110 GHz and provides both internal and external reference options. The frequency stability and phase noise are dependent on the oscillator reference type.

  • Low-Power General Purpose FPGA

    Certus-NX - Lattice Semiconductor

    *Up to 39K logic cells, 2.9 Mb embedded memory, 56 18 x 18 multipliers, 192 programmable I/O, one lane of 5 Gbps PCIe, two lanes of 1.25 Gbps SGMII, two ADCs (each 12-bit, 1 MSPS).*Packages as small as 6x6 mm, and in ball-pitch options of 0.5 and 0.8 mm.*Power modes – User selectable Low Power vs. High Performance modes, enabled by FD-SOI programmable back-bias.*Design security – ECDSA bitstream authentication, coupled with robust AES-256 encryption.*Instant-on configuration – I/O configures in 3 ms, and full-device as fast as 8 ms.*Available in Commercial, Industrial and Automotive (AEC-Q100 qualified) temperature grades.

  • Quad 12 Gsps 16-bit DAC& Dual 6 Gsps 12-bit ADC

    ADF-QMx42 - Delphi Engineering Group, Inc

    The DEG ADF-QMx42 FMC leverages the Analog Devices AD9082 MxFE (Mixed Signal Front End) transceiver technology. This highly integrated device includes a quad 16-bit, 12 Gsps sample rate radio frequency (RF) digital-to-analog converter (DAC) and a dual 12-bit, 6 Gsps rate RF analog-to-digital converter (ADC). The ADF-QMx42 features an 8-lane, 24.75 Gbps JESD204C transceiver port, an on-chip clock multiplier, digital signal processing capability and supports four transmitter channels and two receiver channels.

  • Quad 12 Gsps 16-bit DAC& Quad 4 Gsps 12-bit ADC

    ADF-QMx44 - Delphi Engineering Group, Inc

    The DEG ADF-QMx44 FMC leverages the Analog Devices AD9081 MxFE (Mixed Signal Front End) transceiver technology. This highly integrated device includes a quad 16-bit, 12 Gsps sample rate radio frequency (RF) digital-to-analog converter (DAC) and a quad 12-bit, 4 Gsps rate RF analog-to-digital converter (ADC). The ADF-QMx44 features an 8-lane, 24.75 Gbps JESD204C transceiver port, an on-chip clock multiplier, digital signal processing capability and supports four transmitter channels and four receiver channels.

  • Full Band Noise Figure and Gain Test Extenders

    STG-06-S1 - ERAVANT

    Full band noise figure and gain test extenders are offered to extend noise and gain measuring capabilities up to higher millimeterwave frequency ranges. These extenders are designed to interface with noise and gain test systems that have an input IF of 10 MHz to 1.6 GHz, such as the industry standard Keysight 8970A/B, N8975A and Maury MT 2075B. The noise figure and gain test extenders include a high-performance, solid-state noise source (STZ series) and a full waveguide down converter (STC series), which consists of a Faraday isolator (STF series), full band mixer (SFB series), frequency multiplier, and IF amplifier. A frequency source with an output signal in the frequency range of 10 to 20 GHz is required as a local oscillator for the down converter. The noise source is automatically powered on and off by the noise figure meter.

  • Two Channel Phase and Amplitude Noise Analyzer

    DCNTS -190 - Eastern-Optx

    The DCNTS is a two channel Phase and Amplitude noise analyzer. Its dual demodulator architecture allows the system to use cross-correlation to cancel its internal noise and limitation; it is like comparing the outputs of 2 systems and only display the similarities while rejecting differences. Its main extension is the Residual Noise measurement front-end which includes all necessary hardware to automatically measure residual noise on 2-ports devices either in RF frequencies or microwave. It could be a frequency multiplier or divider, an amplifier or any other phase coherent input to output device.

  • 3U VPX FPGA Cards

    Curtiss-Wright Defense Solutions

    FPGAs have revolutionized the way digital signal processing (DSP) subsystems are configured. With a large number of gates, hardware multipliers, and high-speed serial interfaces, FPGAs enable sophisticated applications, including radar, signal intelligence, and image processing, which rely on repetitive processing that can be expressed in highly parallel form. FPGAs perform exceptionally well in FFTs, pulse compression, filters, and digital up/down converters. In deployed systems, an FPGA's technical advantage translates to smaller, lower power, and lower cost systems. Our commercial off-the-shelf (COTS) 3U VPX FPGA cards include a wide complement of I/O functionality and are engineered to succeed in the most demanding rugged applications.

  • Advanced General Purpose FPGA

    CertusPro-NX - Lattice Semiconductor

    *Up to 100K logic cells, 7.3 Mb of embedded memory blocks (EBR, LRAM), 156 18 x 18 multipliers, 299 programmable I/O, 8 SERDES supporting up to 10.3 Gbps per lane and supporting popular protocols (10 Gig Ethernet, PCIe Gen 3, DisplayPort, SLVS-EC and CoaXPress).*Packages as small as 9x9 mm, and in ball-pitch options of 0.5, 0.8 and 1.0 mm.*Power modes – User selectable Low Power vs. High Performance modes, enabled by FD-SOI programmable back-bias.*Design security – ECDSA bitstream authentication, coupled with robust AES-256 encryption.*Fast configuration – I/O configures in 4 ms, and full-device in under 30 ms in 100K LC device.

  • Universal Amplifier Heatsinks

    ERAVANT

    A universal heatsink, which is designed and fabricated for Eravant's active device applications with up to 15-watt power dissipation. The heatsink consists of the main heatsink body, a DC fan and a heat spreader. The heat spreader is also known as adapter, which is used to bridge the mounting gap between the heat sink main body and the to-be-heat-sunk devices, such as power amplifier, frequency active multiplier, oscillator, transmitter and transceiver due to various mounting hole locations. The heat spreader offers various mounting patterns to accommodate more than 15 product models. This heatsink is not only designed for Eravant's standard products and Uni-Guide™ featured products, but also for many industrial standard microwave and millimeter wave products offered by other manufacturers. Other heatsinks with different power dissipation capacities are offered under different model numbers.

  • 6U VPX FPGA Cards

    Curtiss-Wright Defense Solutions

    FPGAs have revolutionized the way digital signal processing (DSP) subsystems are configured. With a large number of gates, hardware multipliers, and high-speed serial interfaces, FPGAs enable sophisticated applications, including radar, signal intelligence, and image processing, which rely on repetitive processing that can be expressed in highly parallel form. FPGAs perform exceptionally well in FFTs, pulse compression, filters, and digital up/down converters. In deployed systems, an FPGA's technical advantage translates to smaller, lower power, and lower-cost systems. Our COTS 6U VPX FPGA cards include multiple FPGAs, a wide complement of I/O functionality and are engineered to succeed in the most demanding applications. When supercomputing processing performance is required, HPEC systems meet the most demanding rugged deployed application needs by combining the highest performance FPGAs, GPGPUs, processors, and networking modules available.

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