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Signal

detectable impulse of electromagnetic radiation or quantum state superposed.

See Also: Signal Sources, Signal Processing, Signal Integrity, Signal Proccessing, Signal Analyzers, Signaling, Signal Conditioning, Signal Generators, Signal Meters, Signal Conditioners, Fidelity, Hunting


Showing results: 8041 - 8055 of 8184 items found.

  • TMD37003 cRGB Color and Proximity Sensor

    SEN-36004 - Playing With Fusion Inc

    Fully integrated carrier board designed to get the most out of the TMD37003 cRGB (color with IR compensation) and Proximity Sensor from AMS. This means that the board includes a 1.8V-5V input range LDO and high-speed signal voltage translation on all IO pins. In addition, we've added a high output white LED that is tuned to the light temperature range of the TMD37003 IC. This makes sensing color of close-proximity objects possible, such as in robotic color sorting operations. As on many of our boards, we've included 4-40 sized mounting holes to make installation easy. The IC functions are interfaced via a 0.1" header, which includes power (Vdd and GND), I2C interface (again, fully translated) and a 3.3V input to power the proximity (IR) LED. The on-board LED is turned on with a logic 'HIGH' applied to the LED pin and is powered with Vdd.

  • VXI Register Interface Board

    VXI-5524A - ICS Electronics

    *VXI Register Interface mates with user's PCB to form a B or C-size module.* 48 Digital IO Lines - Three 16-bit registers set as latched outputs or gated inputs.* 16 line bi-directional expansion bus for driving external logic.* Digital IO and VXIbus lines are 3.3V logic levels and are 5 V tolerant for compatibility with 3.3V logic and 5V VXIbus signals.* User selectable 3.3 and 5 Vdc puliup voltage on the digital IO lines for sensing switches etc.* The VXI-5524A board is a complete VXI-1 Rev 1.4 and VXI-2 compliant register-based interface.* User configurable model number, manufacturer ID, version and serial numbers.* Two companion component boards available for prototyping IC or RF assemblies.* Companion hardware kits available for building 1, 2 or 3-slot wide modules.

  • AMIDA 5000 Tester

    Amida Technology, Inc.

    AMIDA 5000 is a high-end performance test system, combining analog, mixed-signal and logic with the latest test solutions. High pin count - as many as 512 smart multi-function pinframes and 128 sites. Ability to provide cost-optimized test solutions for a variety of consumer components in power management and mobile device components. This system has a higher number of parallel tests and a higher level of capability. This series of test systems provides a powerful test combination with high-speed hardware and software integration. The 5000 series test system is the best analog, mixed signal, digital IC, PA test system for engineering verification and mass production. It can be easily connected to all well-known wafer probing machines and sorters, and also supports parallel test functions. The 5000 series meets customers' needs for high-precision, high-resolution, high-reliability, user-friendly, and low-cost testing and measurement of test systems.

  • RF Front-End ICs

    Analog Devices Inc.

    Analog Devices offers RF Front-End ICs for phased array antenna solutions. These RF Front-End ICsare placed right at the antenna element and can quickly switch between transmit and receive functions in radar applications. The power amplifier on the transmit side is highly efficient operating in short pulse durations. The low noise amplifier on the receive side has a low noise figure with high linearity so that it won’t distort the incoming return signal. The RF Front-End IC also incorporates a high performance switch to toggle between the transmit and receive paths. Highly integrated planar phased array antennae need small form factor solutions, and Analog Devices has integrated the switch, low noise amplifier, and power amplifier into a small surface mount package as well as the decoupling capacitors, providing an optimal solution.

  • Reflection Meter

    RC-088 - Rinch Industrial Co.,Limited

    This instrument is a special equipment for measuring the reflectivity of rearview mirror (or similar product) of motor vehicle. The product composes intelligent measuring instruments, optical integrating sphere, parallel lamp, standard light source, constant current source etc. It is easy to operate,it can measure the reflectivity quickly and accurately. On instrument structure, it adopts standardized modulation design. It takes latest single chip as its digital central processing element. After the measuring signal is converted by modulus, CPU will do some computation and compensation. The instrument can display the reflectivity of device which is measured in rear time. It operates simply and quickly, the indication is direct and accurate. It’s good for quality examination &control in the production scene as well as laboratories. This product has the convenience &quick demarcation way, can meet requirement of different occasion. It is applicable for measuring light reflection on mirror and not mirror parts.

  • Debug Fixture

    IST Engineering, INC.

    With at-speed test, debug can easily become a problem: If test points are on the bottom, as is often the case for test processing, then this requires the board to be flip over for the debug. However, during at-speed testing, key devices and signal paths are often on the topside. IST Engineering has in-house expertise with debug fixtures, which allow the test technician to flip over a test board, or even hold it vertically for dual-sided access, while still running the Device-Under-Test at full-speed through card-edge connectors - whether these are standard DIN type or F or N type co-ax connectors. The debug stations are constructed robustly, with metal frames and high-grade flexible cabling and can also be used as backup test stations in a manufacturing flow. They can be built with custom machined waveguide connections for RF/Microwave applications, or with standard, off the shelf connectors, as defined by the application. A number of these debug fixtures are in production use with a range of customers.

  • 1x4 Switch

    S-104 - Notice

    1 X 4 Switch slot module of FOTS system carries out the switching function that enables a single channel input to go to any of 4 outputs or a selected particular channel of 4 inputs to go to a single channel output. And its MEMS type switch module is bidirectional and transparent to signal format. It is remarkable that high speed switching and various driving program such as timed, manual or sequential switching mode are available through the combination of high speed response time switch and high speed FPGA processor. On the basis of less than 1ms switching time and 10ms minimum switching, high speed sequential switching can be installed easily by defining switching order, interval time and duration. Current switching channel status can be checked through LED fronted with slot, and present driving condition of optical switch can also be monitored through GOI or LCD monitor.

  • Transmission Line Probes

    Teledyne LeCroy

    Transmission line probes are a special type of passive probe designed for use at very high frequencies. They replace the high impedance probe cable found in a traditional passive probe with a precision transmission line, with a characteristic impedance that matches the oscilloscope input (50 Ohm). This greatly reduces the input capacitance to a fraction of a picofarad, minimizing the loading of high frequency signals. A matching network at the tip increases the DC input resistance. While they have lower DC input resistance than a traditional passive probe (usually 500 Ohm) to 1kOhm), the input impedance of these probes remains nearly constant over their entire frequency range. A traditional /10 passive probe will have a 10 MOhm) input impedance at DC, however this impedance drops rapidly with frequency, passing below the input impedance of a transmission line probe at less than 100 MHz.

  • Chamber/Pyroelectric Task

    Radiant Technologies, Inc.

    Radiant's Chamber/Pyroelectric Task sets the sample to a series of temperatures by performingGPIB control of an external thermal device. At each temperature it captures the sample’s polarization response and/or small-signalcapacitance. These are combined to calculate the pyroelectric coef­ficient.  The Pyroelectric Task is to be used with a Radiant Test System and a Linkam Stage (-196C to 600C), Thermal Chambers, Hot Chucks, or a Furnace to automatically measure the Pulse Polarization response and Small Signal Capacitance of a Pyroelectric material that is being heated and/or cooled.  Radiant's Pyroelectric measurement Task can be added to Vision at additional cost.  This measurement suite fully characterizes the pyroelectric charge (polarization) response of the sample under test.  The Pyroelectric Task suite controls various thermal controllers such as Quantum Design, Lake Shore, Delta Design, and many others. Detailed Listing of Thermal Controllers Registered in Vision.   The Chamber/Pyroelectric Task is quoted upon request.

  • Reconfigurable Filter Bank

    BSC Filters

    BSC have independently developed a fully reconfigurable adaptive filter solution, designed for fast & seamless switching into any of 256 filter states across the 2-18 GHz range.  Ideally suited to EW front-end preselection or protection, any combination of bandpass and bandstop states can be selected INTRODUCTION.  Each 2 GHz channel can be switched in (bandpass) and out (bandstop) of the signal path with a switching time of less than 100 ns. DC power and 8-bit TTL control is supplied through a standard 15-pin MDM connector. In the crowded spectrum of the future, front-end flexibility is of increasing importance. Not limited to 2-18 GHz or equal channel widths, the same core architecture may be used in more specific bands, for example at VHF/UHF frequencies. This makes the system equally as suited to EW as it is to Mil Comms applications, where sampling sensitivity or frequency-agile protocols respectively are key to system function.

  • Modbus Register Converter

    Model 2390 - ICS Electronics

    * Converts Modbus Registers and variables for replacement Modbus devices.* Maintain existing software when upgrading Modbus systems.* Provides serial control of Modbus RTU devices from any ASCII source.* User defined Register Conversion Table supports all Modbus RTU devices.* Internal Register Conversion Tables for Watlow F4-to-EZ-ZONE and F4-to-F4T conversion.* Serial ports support RS-232 and 2-wire/4-wire RS-485 signals.* Includes baud rate conversion capability.* Uses SCPI commands to load the Conversion Table and set serial settings.* Small metal case mounts on a DIN rail or on any flat panel.* 239x Table Loader Program uploads the 2390 Register Conversion Table from an Excel csv file.* 239x Serial Keyboard Program provides instant control of the 2390 and Modbus Slave Devices without writing a program.

  • Solution for High Density I/O Applications

    BitBox - BitFlow, Inc.

    The BitBox is BitFlow''s new solution for high density I/O applications. Many machine makers require a large number of computer managed I/O signals for continuous control of the system state. This means controlling devices such strobes, solenoids, actuators, indicators etc. as well as gathering inputs from photo-detectors, switches, encoders and triggers. In general, BitFlow frame grabbers come with a fairly large number of inputs and outputs, but for some system this is simply not enough. Most customers end up purchasing another device to manage the I/O, which adds expense, requires another slot, another driver and SDK, another manual, etc. The BitBox has been designed for just this situation. It is controlled completely from the frame grabber, uses the same API, driver and manuals as the frame grabber. This saves time, money, space, and learning curve.

  • SparkFun GPS Breakout

    ZOE-M8Q (Qwiic) - SparkFun Electronics

    The SparkFun ZOE-M8Q GPS Breakout is a high accuracy, miniaturized, GPS board that is perfect for applications that don't possess a lot of space. The on-board ZOE-M8Q is a 72-channel GNSS receiver, meaning it can receive signals from the GPS, GLONASS, BeiDou, and Galileo constellations. This increases precision and decreases lock time and thanks to the onboard rechargable battery you'll have backup power enabling the GPS to get a hot lock within seconds! Additionally, this u-blox receiver supports I2C (u-blox calls this Display Data Channel) which made it perfect for the Qwiic compatibility so we don't have to use up our precious UART ports. Utilizing our handy Qwiic system, no soldering is required to connect it to the rest of your system. However, we still have broken out 0.1"-spaced pins in case you prefer to use a breadboard.

  • Precision I/V Source

    Model 155 - Lake Shore Cryotronics, Inc.

    To reliably characterize developing semiconductor materials and devices, you need high quality current or voltage sources to excite samples. A cleaner (i.e., lower noise) excitation signal enables better measurement of the sample’s response. The MeasureReady™ Model 155 precision I/V sources are ideal for electronic material characterization and other demanding scientific applications requiring a precise, low-noise supply of current or voltage. Supplying 1 W maximum from DC to 100 kHz over a broad output range, these sources provide a solid foundation for I/V curve, Hall effect, and other fundamental measurements. With online software updates, your instrument will always have the most current capabilities. As Lake Shore introduces new options in the future, you can purchase and download them to your instrument. This allows the Model 155 to grow as your measurement needs evolve.

  • Digital Acquisition Card

    PI-41000 - Pulse Instruments

    The PI-41000-4G is a CompactPCI® bus based instrument card that allows the user to capture up to 32-bits of digital data into an on-board memory at clock rates up to 120 MHz. The inputs are software configurable to provide one 32-bit wide channel, one 16-bit wide channel with double depth or two 16-bit channels. When configured with a single 16-bit input, the card will capture at up to 120 MHz. When configured with two 16-bit inputs or as a single 32-bit input, the card will capture at up to 80 MHz. Each digital data channel requires three timing signals, frame, line and pixel to accommodate the data capture. When operating in a two channel mode, clocks from channel A can be used to provide timing to channel B. For wider words or multiple channels, more boards can be used in parallel.

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