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Instrument that provides a stimulus signal (waveform). (www.tek.com)

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


Showing results: 646 - 649 of 649 items found.

  • Function Generators

    Shanghai MCP Corp

    Respective dual channels function/arbitrary waveform generator. Sine wave output up to 160MHz, full-band resolution of 1μHz. Pulse waveform up to 50MHz (or 40MHz), adjustable time of rising, falling and duty ratio. Sampling rate of 500MSa/s and vertical resolution of 16bit. 6-bit high-precision frequency meter compatible with TTL level signal. Arbitrary wave storage of 8~32M points, 7GB non-volatile waveform storage. Multi modulation function::AM,FM,PM, ASK,FSK,PSK, BPSK, QPSK,OSK,PWM, QAM, SUM . 16bit digital arbitrary wave (TTL level) DARB. 16th Harmonic Generation Function. Protocol output: I2C, SPI, UART (TTL level). 8 Inch high-resolution TFT color LCD,WVGA(800×480). Standard interface: USB Host, USB Device, LAN, 10MHz clock source input/output. Frequency sweep and burst output. Easy-to-use multi-functional knob and numeric keypad

  • ARINC825 Cards

    AIM GmbH

    AIM’s ARINC825 cards can work either with full functionality as an active CAN node for testing and simulating or in listening only mode for monitoring and recording purposes of Avionic CAN bus (ARINC825) applications on up to 4 electrically isolated CAN bus nodes concurrently. All nodes are in conformance with the ISO11898-1/-2 standard. They are accessible by software separately and can be used as 4 independent CAN bus nodes. An onboard IRIG-B time decoder allows users to accurately synchronize single or multiple modules to a common time source. All supported signals are available through front I/O and rear I/O interface. ARINC825 cards consist of FPGA based CAN interface controllers as well as a FPGA based 32-bit microcontroller core and a separate processor for IRIG-B synchronization with high resolution time stamping. All nodes are operating concurrently at CAN bus high speed bit rate of up to 1Mbit/s with the intelligence to process scheduling of CAN frames in real time onboard to significantly off-load the host processor.For embedded applications the AMC825-4 PMC module is available in a conduction cooled version. Using AIM’s family of PCI, CPCI (3U and 6U) and VMEbus carrier cards for PMC our clients have off the shelf solutions in a broad range of card formats. ARINC825 (CAN bus) modules are delivered with an Application Programming Interface (API) and Driver Software compatible with Windows, Linux and VxWorks.An ARINC825 Resource Component is available for AIM’s PBA.pro™ databus test and analysis tool including Tx and Rx simulation capabilities, a Chronological Bus Monitor and support for decoding of payload data within CAN messages. This allows to implement a powerful ARINC825 (CAN bus) analyzer or a complete test system in conjunction with other AIM avionics databus interfaces and PBA.pro™ supported 3rd party hardware.

  • Fiber Optic Test System

    OPTOWERE-S100 (Fiber Optic Test System) - Notice

    The frame of FOTS system consists of the Main control part and the Slot mounting part. The Main control part is in charge of control and interface of the system and the Slot mounting part can hold up to maximum 8 slots, which are modularized according to each function and come out in five kinds. This integrated test system is designed to help manage the test and measurement related to optical communication and component. And the modular architecture of FOTS allows for customized configuration so that the slot of LD Driver, 2 channel VOA, 1 X 4 switch, WDM EDFA and C + L – Band ASE Source can be chosen according to user’s necessities. Main control part and each function module are run by effective and multi-functioned system control program in the base of high speed remote interface, GUI display and the discriminative high speed driving of module and system. This system can provide variety manufacturing and laboratory applications such as general quality test and reliability test of optical component and optical signal transmission test through efficient linkage with other system.

  • Solenoid-Saver

    B-1022-B - ROSS ENGINEERING CORPORATION

    *Solenoid-Saver® eliminates AC hum and reduces heat generation for many types of solenoids.*Controlled application of current prevents coil burnout if high pull-in/low holding current AC or DC solenoids fail to pull-in completely.*Can adapt high pull-in low holding current solenoids to special voltages & frequencies 12V to 250V DC or 12V to 240V AC wideband 25-800Hz.*Optional optical isolated control input 4 to 10V, 5MA, 20 usec or more (or other control voltages) to actuate any high current solenoid directly by computer or other low power signal source.*For coils of 1 ohm to 3,500 ohms DC resistance requiring up to 70 amps during pull-in up to 120 milliseconds. Basic solenoid coil voltage and resistance must be specified.*Eliminates heat producing dropping resistors, bypass switch, dual coils, laminations, & shading coils.*Can increase pull-in and holding force of many types of solenoids.*Optional stored energy to delay solenoid release on loss of power.*Can be used as an added accessory to existing solenoid installation to eliminate AC hum, lower coil temperature and prevent coil burnout.*Optional high speed, 1 microsecond sensing, 1-10 millisecond actuation with stored energy Solenoid-Saver®

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