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Arbitrary Waveform Generators

produce repeating sine, triangle, square, ramp, pulse, or DC waveforms.

See Also: Waveform Generators, Waveform Signal Generators, ARB, AWG


Showing results: 241 - 255 of 269 items found.

  • PXIe-5673E, 6.6 GHz PXI Vector Signal Generator

    781262-02 - NI

    6.6 GHz PXI Vector Signal Generator - The PXIe‑5673E is a wide-bandwidth module that, when combined with the appropriate software, can generate a variety of signals. With the Modulation Toolkit for LabVIEW, it can generate different waveforms including AM, FM, CPM, ASK, FSK, MSK, PSK, QAM (4‑, 16‑, 64‑, and 256‑QAM), multitone signals, arbitrary waveforms, and many others. In addition, you can combine these vector signal generators with standard-specific software to generate signals for GPS, GSM/ EDGE/WCDMA, WLAN, WiMAX, DVB‑C/H/C, ISDB‑T, ZigBee, and others. With PXIe‑5673E stream‑from‑disk capabilities, you can generate continuous waveforms that are up to several terabytes in length.

  • PXIe-5673E, 6.6 GHz PXI Vector Signal Generator

    781340-04 - NI

    6.6 GHz PXI Vector Signal Generator—The PXIe‑5673E is a wide-bandwidth module that, when combined with the appropriate software, can generate a variety of signals. With the Modulation Toolkit for LabVIEW, it can generate different waveforms including AM, FM, CPM, ASK, FSK, MSK, PSK, QAM (4‑, 16‑, 64‑, and 256‑QAM), multitone signals, arbitrary waveforms, and many others. In addition, you can combine these vector signal generators with standard-specific software to generate signals for GPS, GSM/ EDGE/WCDMA, WLAN, WiMAX, DVB‑C/H/C, ISDB‑T, ZigBee, and others. With PXIe‑5673E stream‑from‑disk capabilities, you can generate continuous waveforms that are up to several terabytes in length.

  • PXIe-5673E, 6.6 GHz PXI Vector Signal Generator

    781340-03 - NI

    6.6 GHz PXI Vector Signal Generator—The PXIe‑5673E is a wide-bandwidth module that, when combined with the appropriate software, can generate a variety of signals. With the Modulation Toolkit for LabVIEW, it can generate different waveforms including AM, FM, CPM, ASK, FSK, MSK, PSK, QAM (4‑, 16‑, 64‑, and 256‑QAM), multitone signals, arbitrary waveforms, and many others. In addition, you can combine these vector signal generators with standard-specific software to generate signals for GPS, GSM/ EDGE/WCDMA, WLAN, WiMAX, DVB‑C/H/C, ISDB‑T, ZigBee, and others. With PXIe‑5673E stream‑from‑disk capabilities, you can generate continuous waveforms that are up to several terabytes in length.

  • Arbitrary Waveform Generator

    SDG7000A - SIGLENT Technologies

    SIGLENT’s SDG7000A is a family of dual-channel Arbitrary Waveform Generators that feature up to 1 GHz bandwidth, a maximum sample rate of 5 GSa/s, and 14-bit vertical resolution. It can generate arbitrary waveforms point by point with a maximum 2.5 GSa/s sample rate and vector signals with a maximum of 500 MSa/s. It also has the ability to generate a variety of signals such as continuous wave, Pulse, Noise, PRBS patterns, and a 16-bit digital bus. It supports the generation of complex signals such as modulation, sweeping, bursting, and dual-channel copying/coupling/tracking and superposition. The outputs are user selectable for differential or single-ended connections and support a maximum output range of ± 24 V. The instrument can ensure a large amplitude under high-frequency which eliminates an external power amplifier in some applications and addresses a wider range of requirements.

  • Signal Generator

    Tektronix, Inc.

    Tektronix signal generators cover a wide range of applications, from replicating sensor signals to creating RF and the fastest high speed serial data signals. Each versatile signal generator can create a virtually unlimited number of signals - analog or digital, ideal or distorted, standard or custom. From the world's only direct synthesis of high-speed serial data waveforms for simplified receiver testing, to the world's most versatile arbitrary function generator for common stimulus signals, Tektronix has a signal generator to meet your debug challenge.

  • Pulse Pattern Generators

    Tabor Electronics Ltd.

    The Pulse Master is a Series of Single and Dual Channel Pulse/Waveform Generators that offers a complete array of pulse, standard, arbitrary, sequenced and modulated waveforms with unmatched performance, even compared to instruments designed to generate fewer types of signals. This signal pulse generator’s smart, compact, 2U 1/2 rack-width footprint allows designers and manufacturers to conserve substantial benchtop or rack space, while benefiting from high-performance, bandwidth, signal integrity, and reliability with the flexibility to adapt to a full spectrum of applications making the Pulse Master an important laboratory tool.

  • Arbitrary Current Generator Family

    PXA(e)73xx - VX Instruments GmbH

    The PXA(e)73xx ArbGen family features up to two simultaneously working channels with 100MS/s, 16Bit resolution and an output current up to 30mA in sink mode (at up to 30V) or ±20mA in combined source/sink mode (at up to ±10V).Every channel is equipped with 2MB memory. The whole amount of 1 million samples can be partitioned into one ore more waveform segments. Depending on the number of channels and the floating option, the Arbitrary Function Generators are built into a compact 3U PXI(e) device for 1 or 2 slots.

  • High Definition Arbitrary Waveform Generator

    T3AWG Series - Teledyne LeCroy

    T3AWG3K Series consists of six high definition high performance Arbitrary Waveform Generators (HD AWG) consisting of 2, 4 and 8 channels, 16 bit vertical resolution, 12 Vpp max output voltage (50Ω into 50Ω), 128 Mpts/ch memory (optional 1 Gpts/ch), a maximum sampling rate of 1.2 GS/s and a max sinewave frequency of 250 MHz and 350 MHz respectively. The baseline HW voltage offset capability provide the unmatched ability to generate ±24 V or 48V output voltage window (50Ω into High Impedance).

  • Analog Output Device

    NI

    The Analog Output Device helps you create applications such as stimulus-response, power supply control, deterministic control, and sensor/signal simulation. The Analog Output Device supports various output resolutions, channel counts, and other onboard features, so you can replace several kinds of instruments in your system, including stand-alone proportional integral derivative (PID) controllers, low-speed arbitrary waveform generators, and function generators.The Analog Output Device includes the NI-DAQmx driver and configuration utility that simplify configuration and measurements. NI-DAQmx supports NI programming environments as well as Python, ANSI C, C#.NET, and MathWorks MATLAB® software.

  • MIPI Receiver Test Solution

    M8085A - Keysight Technologies

    The M8085A is a software plug-in for M8070A Bit Error Ratio Test system software within the M8000 series of BER test solutions. The M8085A software plug-in controls either the M8190A or the M8195A Arbitrary Waveform Generators to create C-PHY or D-PHY standard compliant test signals. In addition it provides routines for calibration of all signal parameters and for all tests specified in the applicable Conformance Test Suite. Together with the additional available DUT control interface it is possible to read the BER of the receiver under test from the M8070A software and display the BER dependency from test parameters within the M8070A user interface.

  • SWB-2811, 8x21, 1 A, Reed Relay Matrix Module for SwitchBlock

    781420-11 - NI

    8x21, 1 A, Reed Matrix Module for SwitchBlock - The SWB‑2811 is a reed relay matrix module for SwitchBlock systems. Designed for high power, it can operate as an individual relay card or expand in a single carrier or single PXI chassis. You can connect any input to any output, individually or in combination. You can use matrix switches to route signals from oscilloscopes, DMMs, arbitrary waveform generators, and power supplies to various test points on a unit under test (UUT). The primary benefit of matrix switches is simplified wiring—the overall test system can easily and dynamically change the internal connection path without any external manual intervention.

  • SWB-2811, 8x21, 1 A, Reed Relay Matrix Module for SwitchBlock

    781421-11 - NI

    8x21, 1 A, Reed Matrix Module for SwitchBlock - The SWB‑2811 is a reed relay matrix module for SwitchBlock systems. Designed for high power, it can operate as an individual relay card or expand in a single carrier or single PXI chassis. You can connect any input to any output, individually or in combination. You can use matrix switches to route signals from oscilloscopes, DMMs, arbitrary waveform generators, and power supplies to various test points on a unit under test (UUT). The primary benefit of matrix switches is simplified wiring—the overall test system can easily and dynamically change the internal connection path without any external manual intervention.

  • SWB-2816, 8x46, 0.3 A, Row Access, Reed Relay Matrix Module for SwitchBlock

    781420-16 - NI

    8x46, 0.3 A, Reed Matrix Module for SwitchBlock - The SWB‑2816 is a reed relay matrix module for SwitchBlock systems. Designed for high power, it can operate as an individual relay card or expand in a single carrier or single PXI chassis. You can connect any input to any output, … individually or in combination. You can use matrix switches to route signals from oscilloscopes, DMMs, arbitrary waveform generators, and power supplies to various test points on a unit under test (UUT). The primary benefit of matrix switches is simplified wiring—the overall test system can easily and dynamically change the internal connection path without any external manual intervention.

  • SWB-2814, 8x9, 1 A, 2-Wire Reed Matrix Module for SwitchBlock

    781420-14 - NI

    8x9, 1 A, 2-Wire Reed Matrix Module for SwitchBlock - The SWB‑2814 is a reed relay matrix module for SwitchBlock systems. Designed for high power, it can operate as an individual relay card or expand in a single carrier or single PXI chassis. You can connect any input to any output, individually or in combination. You can use matrix switches to route signals from oscilloscopes, DMMs, arbitrary waveform generators, and power supplies to various test points on a unit under test (UUT). The primary benefit of matrix switches is simplified wiring—the overall test system can easily and dynamically change the internal connection path without any external manual intervention.

  • SWB-2814, 8x9, 1 A, 2-Wire Reed Matrix Module for SwitchBlock

    781421-14 - NI

    8x9, 1 A, 2-Wire Reed Matrix Module for SwitchBlock - The SWB‑2814 is a reed relay matrix module for SwitchBlock systems. Designed for high power, it can operate as an individual relay card or expand in a single carrier or single PXI chassis. You can connect any input to any output, individually or in combination. You can use matrix switches to route signals from oscilloscopes, DMMs, arbitrary waveform generators, and power supplies to various test points on a unit under test (UUT). The primary benefit of matrix switches is simplified wiring—the overall test system can easily and dynamically change the internal connection path without any external manual intervention.

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