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Oscillators

Produce oscillating signals repeating at a constant rate controlled by a resonator.


Showing results: 106 - 120 of 125 items found.

  • Analysis via Fourier Transform Infrared Spectroscopy (FTIR)

    National Technical Systems

    Fourier Transform Infrared Spectroscopy (FTIR) is a standard technique used in the identification of contaminating materials on the surface of printed circuit boards (PCBs) and around the leads of electronic components (BGA, capacitors, resistors, inductors, connectors, diodes, oscillators, transformers, IC, etc.) on printed circuit assemblies (PCAs). Additionally, FTIR can be used for “simpler” identifications, such as determining a specific type of plastic or rubber compound.

  • Analysis via Scanning Electron Microscopy / Energy Dispersive X-Ray Spectroscopy (SEM/EDS)

    National Technical Systems

    The use of Scanning Electron Microscopy / Energy Dispersive X-Ray Spectroscopy (SEM/EDS) in the analysis of failure related issues of printed circuit boards (PCBs), assemblies (PCAs), and electronic components (BGA, capacitors, resistors, inductors, connectors, diodes, oscillators, transformers, IC, etc.) is a well-established and accepted protocol. As opposed to or simply in addition to normal optical microscopy, SEM/EDS allows for the “inspection” of areas of interest in a much more informative way.

  • MMW Downconverters

    Innovative Technical Systems

    Innovative Technical Systems has designed numerous microwave and millimeter-wave downconverters for a variety of applications. Typical downconverters include balanced mixers, phase-locked local oscillators, LO multipliers, and output IF amplifiers. RF LNAs are also provided for many downconverters up to 100 GHz.These downconverters can be designed for numerous communications, radar, and instrumentation applications. We will customize these converters for frequency coverage ,noise figure, gain, and mechanical form-factor.

  • Distribution Amplifiers

    Quartzlock (UK) Ltd.

    The Quartzlock range of distribution amplifiers are intended for use when multiple outputs from a single frequency standard/generator are required. This may be encountered in engineering labs, national standards labs, research and development, calibration labs and production. This is vital for the distribution of signals from other precision frequency standards like Hydrogen Masers, Cesium oscillators. For a technical discussion about distribution amplifiers go here or select a product range below.

  • Frequency Synthesizers 50 MHz to 21 GHz

    Luxyn Model MLVS-0520 - Micro Lambda Wireless, Inc.

    Lyxyn synthesizers are ideal main local oscillators in Receiving Systems, Frequency Converters and Test & Measurement Equipment. MLVS-0520 is VCO-based and provides 0.001 Hz frequency resolution over the 50 MHz to 21 GHz frequency range. Output power level of +15 dBm is provided throughout the full frequency range. Full band switching speed is 50 μsec maximum. The MLVS-0520 is 4” x 3.6” x 0.94” high.

  • 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.

  • Clock And Timing

    Microchip Technology Inc.

    Achieving highly accurate precision timing is no easy feat from a technology perspective, so it’s important to find a resource you can trust to reduce design risk and speed your time to market. Our end-to-end timing solutions generate, distribute and apply precise time for multiple industries, including communications, aerospace and defense, IT infrastructure, financial services, power utilities and more. We provide a broad range of clock and timing solutions ranging from MEMS oscillators to active hydrogen masers. Explore our portfolio of clock and timing components and systems to find the right solution for your project.

  • Generic RF ATE Test

    Data Patterns Pvt. Ltd.

    The Generic RF ATE is developed to test the Radar and Radar Subsystems. The ATE is primarily built using an instrumentation control, precision RF routing systems and rack mounted test instruments. Generic RF ATE system enables measurement of parameters of Radar equipment such as Local Oscillators, Waveform Generators, Up and Down Converters, Analog Receivers, Array Group Receiver Units, TR Modules. The ATE is configured to test the Radars upto 18GHz frequency range.

  • Frequency Counter (225MHz - 18GHz)

    S43180 - Saluki Technology Inc.

    S43180 series high-precision frequency counter is a high-precision frequency measurement instrument. It has a frequency measurement resolution of 10 bits per second. The whole machine scheme adopts countdown technology and digital interpolation technology to realize the high-precision measurement of the instrument. It has measurement functions such as frequency, period, frequency ratio and powerful mathematical statistics operations (maximum value, minimum value, average value, PPM, standard deviation, Allan variance).S43180 series has reliable performance, complete functions, high measurement accuracy, wide frequency measurement range, high sensitivity, large dynamic range, high cost performance and easy to use. It is especially suitable for frequency measurement in scientific research and measurement fields such as aerospace, crystal oscillators, and components.

  • 1000W Ferroresonant Power Supply

    Series PRR - Kepco, Inc.

    Kepco's PRR are 1000 Watt rack mounted laboratory systems power supplies that offer the low cost and very high dependability of ferroresonant voltage stabilization.The ferroresonant stabilizing technique provides extraordinary isolation from a wide variety of source noise. It is inherently short-circuit proof and cannot expose delicate loads to overvoltage hazards. Hence no crowbar, fuses, or bounding circuits are needed. Ferroresonant power supplies use no noise-producing switches or oscillators. Voltage setting is independent of delicate control settings or diode references and requires no comparators, references, or limiters. Efficiency is 70-80%.

  • Rubidium Frequency Standard

    RFS VXI - Holding Informtest

    *RFS VXI is designed to work as part of information measuring systems based on the VXI bus as a rubidium frequency standard.*RFS VXI is intended for use as a highly stable laboratory signal source for checking generator devices, time-frequency measuring equipment and other equipment, synchronizing navigation systems.*The RFS VXI contains two independent rubidium reference oscillators: main and standby.*RFS VXI is a VXI standard, register based device and measures C-1.*RFS VXI implements the "Self-control" mode, which checks the output frequencies of the rubidium standard.

  • Low Phase Noise Amplifiers

    Analog Devices Inc.

    Low Phase Noise amplifiers are critical for many applications requiring high signal integrity. This is especially relevant in instrumentation, defense, and telecommunication applications where low phase noise amplifiers are becoming increasingly important as the oscillators improve. Phase noise is described as the close-in noise to the carrier that can often appear as jitter on a clock signal. Analog Devices offers a large portfolio of low phase noise amplifiers to meet a variety of requirements in the LO network, receiver, as well as in the transmitter. Our portfolio supports a wide range of power levels and frequencies to provide the right solution for the given application.

  • Ultra Low Noise, Rubidium Frequency Standard.

    A10-M - Quartzlock (UK) Ltd.

    Frequency Referencing, Calibration, Standards Lab, Production Test for Oscillator Manufacturers. A very high stability LOW NOISE 10MHz Rubidium Reference, primarily for production test of quartz oscillators and RF instrumentation frequency referencing. This industry standard 2U rack-mount instrument has a long heritage and ongoing production life for this latest 2009 version that features RS232 monitoring and control of the DPLL, locking the Ultra Low Noise OCXO to the Rubidium. Damping and Bandwidth is controlled by integrator digital gain, proportional digital gain, pre-filter order and subsample rate. Eight values of user selected bandwidth are available.

  • voltage controlled crystal oscillator

    VCXO - Epson Toyocom

    A VCXO (Voltage Controlled Crystal Oscillator) is a crystal oscillator the output frequency of which is controlled by adding an external control voltage via a frequency control input on a variable capacitance component such as a varactor diode connected in parallel to a load capacitance (CL). Epson VCXOs are divided into two types according to Voltage-Frequency (V-F) characteristic slopes depending on the AFC (Automatic Frequency Control) input configuration of the VCXO. One is a VCXO with a positive V-F slope and the other is a VCXO with a negative V-F slope. Please note that the input voltage of a control circuit will vary according to the individual type, as shown in Figs. 3 and 4. Epson's VCXOs are capable of either, depending on the customer's preference. Epson's VCXOs have been increasingly used for broader applications such as slave oscillators in phased-lock loops, or frequency modulators. Among the above types, a VCXO combined with a TCXO is called a VC-TCXO , respectively. These components have the merit of delicately controlling their output frequency electrically.

  • USRP-2955, 10 MHz to 6 GHz, 80 MHz Bandwidth, GPS-Disciplined OCXO, Reconfigurable USRP Software Defined Radio Device

    785264-01 - NI

    The USRP-2955 provides an integrated hardware and software solution for rapidly prototyping high-performance wireless receiver systems. It is designed for over-the-air signal acquisition and analysis. It features a two-stage superheterodyne architecture with four independent receiver channels and shares local oscillators for phase-coherent operation. It also offers a Kintex-7 FPGA programmable with the LabVIEW FPGA Module. With these features, the USRP-2955 has the RF and processing performance for applications such as spectrum monitoring, direction finding, signals intelligence, wideband recording, and radar prototyping. The USRP-2955 is equipped with a GPS-disciplined 10 MHz oven-controlled crystal oscillator (OCXO) Reference Clock, which improves frequency accuracy and synchronization.

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