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Pulse

a rhythm of discontinuous waves.

See Also: Pulse Width, Pulse Generators


Showing results: 1111 - 1125 of 1196 items found.

  • VFTLP+ Test System

    4012 - Barth Electronics, Inc

    The Model 4012 VFTLP+™ test system was developed in early 2000 to add high speed measurements to the usual I-V plot, to measure and record the real TDDB waveform which causes oxide failure.*Accurate measurements of this waveform have finally been identified by Barth Electronics Inc. and CDM protection can now be based on known dimensional design parameters. We identify the response of your CDM protection circuits with 100ps risetime pulses which simulate the real CDM test. This is the only way with which to provide the total gate oxide threat voltage data.*Convenient, precise, repeatable operation*Computer controlled for automated testing

  • NI-9361, 32-Bit, 8-Channel C Series Counter Input Module

    783407-02 - NI

    32-Bit, 8-Channel C Series Counter Input Module - The NI‑9361 is a differential or single-ended input module. With this module, you can expand beyond the four counters in CompactDAQ to reach up to 64 counters per 8‑slot chassis. You can configure each channel to read a single pulse train or combine them to read up to four incremental encoders. You can also directly connect sensors with open-collector or push-pull outputs by using an internal switchable 1 kΩ pull‑up resistor. The NI‑9361 counters can perform encoder position and velocity measurements. You can synchronize the counters with other analog, digital, and counter measurements in your chassis.

  • NI-9361, 32-Bit, 8-Channel C Series Counter Input Module

    783407-01 - NI

    32-Bit, 8-Channel C Series Counter Input Module - The NI‑9361 is a differential or single-ended input module. With this module, you can expand beyond the four counters in CompactDAQ to reach up to 64 counters per 8‑slot chassis. You can configure each channel to read a single pulse train or combine them to read up to four incremental encoders. You can also directly connect sensors with open-collector or push-pull outputs by using an internal switchable 1 kΩ pull‑up resistor. The NI‑9361 counters can perform encoder position and velocity measurements. You can synchronize the counters with other analog, digital, and counter measurements in your chassis.

  • cDAQ-9188 , 8‑Slot, Ethernet CompactDAQ Chassis

    782824-01 - NI

    8‑Slot, Ethernet CompactDAQ Chassis - The cDAQ‑9188 is a CompactDAQ Ethernet chassis designed for small, distributed sensor measurement systems. The chassis controls the timing, synchronization, and data transfer between C Series I/O modules and an external host. You can use this … chassis with a combination of C Series I/O modules to create a mix of analog I/O, digital I/O, and counter/timer measurements. The chassis also has four 32‑bit general‑purpose counters/timers. You can access these counters through an installed, hardware‑timed digital C Series module for applications that involve quadrature encoders, PWM, event counting, pulse train generation, and period or frequency measurement.

  • cDAQ-9188, 8‑Slot, Ethernet CompactDAQ Chassis

    781424-01 - NI

    8‑Slot, Ethernet CompactDAQ Chassis - The cDAQ‑9188 is a CompactDAQ Ethernet chassis designed for small, distributed sensor measurement systems. The chassis controls the timing, synchronization, and data transfer between C Series I/O modules and an external host. You can use this … chassis with a combination of C Series I/O modules to create a mix of analog I/O, digital I/O, and counter/timer measurements. The chassis also has four 32‑bit general‑purpose counters/timers. You can access these counters through an installed, hardware‑timed digital C Series module for applications that involve quadrature encoders, PWM, event counting, pulse train generation, and period or frequency measurement.

  • cDAQ-9181, 1‑Slot, Ethernet CompactDAQ Chassis

    782052-01 - NI

    1‑Slot, Ethernet CompactDAQ Chassis - The cDAQ‑9181 is a CompactDAQ Ethernet chassis designed for small, distributed sensor measurement systems. The chassis controls the timing, synchronization, and data transfer between C Series I/O modules and an external host. You can use this chassis with a combination of C Series I/O modules to create a mix of analog I/O, digital I/O, and counter/timer measurements. The chassis also has four 32‑bit general‑purpose counters/timers. You can access these counters through an installed, hardware‑timed digital C Series module for applications that involve quadrature encoders, PWM, event counting, pulse train generation, and period or frequency measurement.

  • cDAQ-9181, 1‑Slot, Ethernet CompactDAQ Chassis

    781496-01 - NI

    1‑Slot, Ethernet CompactDAQ Chassis - The cDAQ‑9181 is a CompactDAQ Ethernet chassis designed for small, distributed sensor measurement systems. The chassis controls the timing, synchronization, and data transfer between C Series I/O modules and an external host. You can use this chassis with a combination of C Series I/O modules to create a mix of analog I/O, digital I/O, and counter/timer measurements. The chassis also has four 32‑bit general‑purpose counters/timers. You can access these counters through an installed, hardware‑timed digital C Series module for applications that involve quadrature encoders, PWM, event counting, pulse train generation, and period or frequency measurement.

  • PXIe-5451, 145 MHz, 16-Bit, 512 MB, PXI Waveform Generator

    781204-02 - NI

    PXIe, 145 MHz, 16-Bit, 512 MB, PXI Waveform Generator—The PXIe‑5451 is a 145 MHz, dual‐channel arbitrary waveform generator capable of generating user-definied waveforms, standard functions, and I/Q communications signals. It is an ideal instrument for including in systems for testing devices with I/Q inputs, or as the baseband component of an RF vector signal generator as wells as time-domain signals like envelope tracking. The PXIe‑5451 also features onboard signal processing (OSP) functions that include pulse shaping and interpolation filters, gain and offset control, and a numerically controlled oscillator (NCO) for frequency shifting. The PXIe‑5451 also features advanced synchronization and data streaming capabilities.

  • PXIe-5451, 145 MHz, 16-Bit, 128 MB, PXI Waveform Generator

    781204-01 - NI

    PXIe, 145 MHz, 16-Bit, 128 MB, PXI Waveform Generator—The PXIe‑5451 is a 145 MHz, dual‐channel arbitrary waveform generator capable of generating user-definied waveforms, standard functions, and I/Q communications signals. It is an ideal instrument for including in systems for testing devices with I/Q inputs, or as the baseband component of an RF vector signal generator as wells as time-domain signals like envelope tracking. The PXIe‑5451 also features onboard signal processing (OSP) functions that include pulse shaping and interpolation filters, gain and offset control, and a numerically controlled oscillator (NCO) for frequency shifting. The PXIe‑5451 also features advanced synchronization and data streaming capabilities.

  • PXIe-5451, 145 MHz, 16-Bit, 2 GB PXI Waveform Generator

    781204-03 - NI

    PXIe, 145 MHz, 16-Bit, 2 GB PXI Waveform Generator—The PXIe‑5451 is a 145 MHz, dual‐channel arbitrary waveform generator capable of generating user-definied waveforms, standard functions, and I/Q communications signals. It is an ideal instrument for including in systems for testing devices with I/Q inputs, or as the baseband component of an RF vector signal generator as wells as time-domain signals like envelope tracking. The PXIe‑5451 also features onboard signal processing (OSP) functions that include pulse shaping and interpolation filters, gain and offset control, and a numerically controlled oscillator (NCO) for frequency shifting. The PXIe‑5451 also features advanced synchronization and data streaming capabilities.

  • sbRIO-9401, Non-Enclosed, 5 V/TTL, 8 Bidirectional Channels, 100 ns C Series Digital Module

    782400-01 - NI

    Non-Enclosed, 5 V/TTL, 8 Bidirectional Channels, 100 ns C Series Digital Module - The sbRIO‑9401 is a configurable digital I/O interface for input or output in 4-bit increments. Therefore, the sbRIO‑9401 can create three configurations: 8 digital inputs, 8 digital outputs, or four digital inputs and four digital outputs. With reconfigurable I/O (RIO) technology (CompactRIO only), you can use the LabVIEW FPGA Module to program the sbRIO‑9401 for implementing custom, high-speed counter/timers; digital communication protocols; pulse generation; or other applications. Each channel features transient isolation between the I/O channels and the backplane. Non-enclosed modules are designed for OEM applications.

  • Traffic Rank, Link Popularity tracking software

    SEO Altimeter - CleverStat

    Search engines have become one of the most important sources of a targeted, easily convertible traffic. More and more Internet users seeking for a product or service simply type the query in search engine's box and open the website shown in results. Thus, it is important to feel the pulse of your website, to see how well it is ranked and therefore how much profit it can make for you. However, the task is not as easy as it may seem. You need to constantly monitor dozens of different parameters: website ranking, link popularity, traffic rank and so on and so further. Moreover, it is not enough to control your own website trends only — you should also monitor your competitors in order to be able to response on their marketing efforts and stay ahead of them.Fortunately, you have the tool to do this tremendous work for you. SEO Altimeter is specially designed software tool to control all crucial internet marketing parameters including Alexa traffic rank, Google PageRank, overall link popularity in many search engines all over the world and many other vital info.SEO Altimeter performs all the work for you in an easy, user-friendly way. It automatically checks all the vital parameters (the process is customizable), saves the trends and the history and provides a way to export all the data into CSV for further analysis.

  • Central Office Line Simulator

    AI-7280 - Advent Instruments Inc.

    The AI-7280 is a highly flexible central office line simulator. It is designed primarily for the testing and verification of common terminal equipment, including standard telephones, Caller ID devices, SMS (Short Message Service) capable equipment, and any device using an analog Tip/Ring interface circuit. Supplied with the TRsSim software for Windows, it can analyze a telephone''s DTMF characteristics, pulse dialing and flash timing, generate various network tones and ringing patterns. Both Type I (on-hook) and Type II (off-hook) Caller ID is supported using either FSK or DTMF data transmission. As an optional component, the TRsSim software can perform SMS testing to either the ETSI protocol 1 or protocol 2 standards.

  • Digitizer

    751Family - CAEN S.p.A.

    The 751 is a family of CAEN Waveform Digitizer able to perform basic waveform recording and run online advanced algorithms (DPP) of charge integration and pulse shape discrimination with constant fraction timing and zero-length encoding. Data is read by a Flash ADC, 10-bit resolution and 1GS/s sampling rate (2GS/s using half of the channels in DES mode), which is well suited for fast signals as the ones coming from fast organic, inorganic and liquid scintillators coupled to PMTs or Silicon Photomultipliers, Diamond detectors and others. The acquisitioncan be channel independent and it is possible to make coincidence/ anti-coincidence logic among diferent channels and external veto/ gating. Multiple boards can be synchronized to build up complex systems.

  • Magnetizer

    412B - Oersted Technology

    The Model 412B magnetizer provides many of the features of the Oersted Technology 300-series magnetizers in a small benchtop cabinet. This unit is designed for magnetizing parts which require lower energy levels due to their size or the magnetic material used. Like the 300-series magnetizers, the 412B is an ECS magnetizer, which allows the user to electronically vary the capacitance of the unit. The capacitor banks are internally discharged through a safety circuit in case of power failure or accidental power-down. When the 412B is connected to a properly equipped fixture, the front-panels can be inhibited through an overtemperature interlock circuit, preventing the magnetizer from being operated once the fixture begins to overheat. An external output is also provided for monitoring the magnetizing current pulse with an oscilliscope.

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