Filter Results By:

Products

Applications

Manufacturers

Showing results: 2851 - 2865 of 3576 items found.

  • High-Density Precision SMU Mainframe (4 Slots, 1U)

    PZ2100A - Keysight Technologies

    The Keysight PZ2100A is the precision source / measure unit (SMU) mainframe that uncompromisingly and densely integrates 20 SMU channels into valuable 1U height, full width, rack space with flexible module options at their best performance. It supports a variety of resources such as the Keysight PZ2110A Precision SMU, PZ2120/21A High-Speed SMUs, and PZ2130/31A High Channel Density SMUs with multiple functions such as pulser and digitizer, as well as precise voltage / current sourcing and measuring to adapt to a wide range of application requirements. The PZ2100A has 4 slots and allows any mixed module configuration for flexible scalability.

  • 200W Power Supply, 25V, 7A or 50V, 4A

    E3634A - Keysight Technologies

    Keysight basic DC power supplies offer essential features for a tight budget. The single output, 120-200 W, GPIB, E3632A-E3634A provide dual range outputs; small, compact size for bench use; low output ripple and noise; as well as built-in measurements and basic programmable features with GPIB and RS232 interface. The Keysight 200W, GPIB, single output E3634A is a high performance supply optimized for manual and basic automated testing; and, with a combination of benchtop capabilities and system features, it is designed to help improve measurement quality and reduce test time.

  • 120W Power Supply, 15V, 7A or 30V, 4A

    E3632A - Keysight Technologies

    Keysight basic DC power supplies offer essential features for a tight budget. The single output, 120-200 W, GPIB, E3632A-E3634A provide dual range outputs; small, compact size for bench use; low output ripple and noise; as well as built-in measurements and basic programmable features with GPIB and RS232 interface. The Keysight 120W, GPIB, single output E3632A is a high performance supply optimized for manual and basic automated testing; and, with a combination of benchtop capabilities and system features, it is designed to help improve measurement quality and reduce test time.

  • Optical Multiport Power Meter

    N7745C - Keysight Technologies

    Keysight's popular N7745A optical power meters with eight power-sensor channels provide increased throughput and operational efficiency to meet today's challenges in manufacturing. Designed for characterizing optical multiport components, these optical power meters offer industry-leading solutions for device connectivity, high-speed measurement data acquisition and fast data transfer for post-processing. The multiport power meter enables fast measurement solutions for all multiport devices; for example multiplexers, PON splitters, wavelength selective switches (WSS) and ROADMs, as well as compact setups for simultaneous testing of multiple single-port devices.

  • 200W Power Supply, 8V, 20A or 20V, 10A

    E3633A - Keysight Technologies

    Keysight basic DC power supplies offer essential features for a tight budget. The single output, 120-200 W, GPIB, E3632A-E3634A provide dual range outputs; small, compact size for bench use; low output ripple and noise; as well as built-in measurements and basic programmable features with GPIB and RS232 interface. The Keysight 200W, GPIB, single output E3633A is a high performance supply optimized for manual and basic automated testing; and, with a combination of benchtop capabilities and system features, it is designed to help improve measurement quality and reduce test time.

  • PXIe-4080, 6½-Digit, ±300 V, Onboard 1.8 MS/s Isolated Digitizer, PXI Digital Multimeter

    783129-01 - NI

    PXIe, 6½-Digit, ±300 V, Onboard 1.8 MS/s Isolated Digitizer, PXI Digital Multimeter—The PXIe‑4080 is a high-performance 6½‑digit, 300 V DMM that provides the measurement capabilities found in two common test instruments: a high-resolution DMM and a digitizer. As a DMM, the PXIe‑4080 delivers fast, accurate AC/DC voltage, AC/DC current, 2‑ or 4‑wire resistance, and frequency/period measurements, as well as diode tests. In the high-voltage, isolated digitizer mode, the PXIe‑4080 can acquire waveforms at sample rates up to 1.8 MS/s.

  • PXIe-4081, 7½-Digit, ±1,000 V, Onboard 1.8 MS/s Isolated Digitizer, PXI Digital Multimeter

    783130-01 - NI

    PXIe, 7½-Digit, ±1,000 V, Onboard 1.8 MS/s Isolated Digitizer, PXI Digital Multimeter—The PXIe‑4081 is the industry’s most accurate 7½‑digit DMM and provides the measurement capabilities found in two common test instruments: a high-resolution 1,000 V DMM and a digitizer. As a DMM, the PXIe‑4081 delivers fast, accurate AC/DC voltage, AC/DC current, 2‑ or 4‑wire resistance, and frequency/period measurements, as well as diode tests. In the high-voltage, isolated digitizer mode, the PXIe‑4081 can acquire waveforms at sample rates up to 1.8 MS/s.

  • PXIe-8881, 3.9 GHz 8-Core PXI Controller - The PXIe-8881 is an Intel Xeon 8-Core embedded controller for PXI Express systems

    787807-01 - NI

    PXIe, 3.9 GHz 8-Core PXI Controller - The PXIe-8881 is an Intel Xeon 8-Core embedded controller for PXI Express systems. You use the PXIe-8881 for processor-intensive RF, modular instrumentation, and data acquisition applications. The PXIe‑8881 includes two 10/100/1000BASE‑TX (Gigabit) Ethernet ports, two USB 3.0 ports, four USB 2.0 ports, as well as an integrated hard drive and other peripheral I/O, such as two Thunderbolt 3 ports. Thunderbolt is a trademark of Intel Corporation or its subsidiaries in the U.S. and/or other countries.

  • NI-9212, 8-Channel, 95 S/s/ch Simultaneous, ±78 mV C Series Temperature Input Module

    785259-01 - NI

    8-Channel, 95 S/s/ch Simultaneous, ±78 mV C Series Temperature Input Module - The NI‑9212 offers channel‑to‑channel, isolated thermocouple input channels. The NI‑9212 channel‑to‑channel isolation protects channels from continuous voltages up to 250 Vrms and transient (withstand) voltages up to 1500 Vrms. You can use the NI‑9212 in a variety of applications that are not conducive for bank-isolated channels such as white goods testing, in-vehicle data logging, battery stack testing, as well as in various other noisy industrial environments.

  • NI-9225, 300 Vrms, 50 kS/s/ch, 24-Bit, Simultaneous Input, 3-Channel C Series Voltage Input Module

    780159-02 - NI

    300 Vrms, 50 kS/s/ch, 24-Bit, Simultaneous Input, 3-Channel C Series Voltage Input Module - The NI‑9225 performs differential analog input. The wide measurement range is well suited for high-voltage measurement applications such as power metering, power quality monitoring, motor test, battery stack testing, and fuel cell tests. You can perform transient and harmonic analysis with high-speed simultaneous sampling. In addition, you can prevent ground loops and add safety to a system with 600 Vrms channel‑to‑channel isolation between the three NI‑9225 channels.

  • NI-9225, 300 Vrms, 50 kS/s/ch, 24-Bit, Simultaneous Input, 3-Channel C Series Voltage Input Module

    780159-01 - NI

    300 Vrms, 50 kS/s/ch, 24-Bit, Simultaneous Input, 3-Channel C Series Voltage Input Module - The NI‑9225 performs differential analog input. The wide measurement range is well suited for high-voltage measurement applications such as power metering, power quality monitoring, motor test, battery stack testing, and fuel cell tests. You can perform transient and harmonic analysis with high-speed simultaneous sampling. In addition, you can prevent ground loops and add safety to a system with 600 Vrms channel‑to‑channel isolation between the three NI‑9225 channels.

  • NI-6584, 16 Mbit/s, 16-Channel Digital I/O Adapter Module for FlexRIO

    781290-03 - NI

    16 Mbit/s, 16-Channel Digital I/O Adapter Module for FlexRIO—The NI-6584 is a digital I/O adapter module that, when combined with a PXI FPGA Module for FlexRIO or the Controller for FlexRIO, creates a digital instrument for interfacing with 16 RX and TX pairs of RS485 or RS422. This digital I/O adapter module for FlexRIO can be used to do real-time interfacing and analysis of RS485 and RS422 as well as other electrically compatible interfaces. The NI-6584 can sample digital waveforms at up to 100 MHz clock rates, has terminated and unterminated options, and full and half duplex configurations.

  • PXIe-8881, 3.9 GHz 8-Core PXI Controller

    787806-01 - NI

    PXIe, 3.9 GHz 8-Core PXI Controller - The PXIe-8881 is an Intel Xeon 8-Core embedded controller for PXI Express systems. You use the PXIe-8881 for processor-intensive RF, modular instrumentation, and data acquisition applications. The PXIe‑8881 includes two 10/100/1000BASE‑TX (Gigabit) Ethernet ports, two USB 3.0 ports, four USB 2.0 ports, as well as an integrated hard drive and other peripheral I/O, such as two Thunderbolt 3 ports. Thunderbolt is a trademark of Intel Corporation or its subsidiaries in the U.S. and/or other countries.

  • 16 Mbit/s, 16-Channel Digital I/O Adapter Module for FlexRIO

    NI-6584 / 781290-02 - NI

    16 Mbit/s, 16-Channel Digital I/O Adapter Module for FlexRIO—The NI-6584 is a digital I/O adapter module that, when combined with a PXI FPGA Module for FlexRIO or the Controller for FlexRIO, creates a digital instrument for interfacing with 16 RX and TX pairs of RS485 or RS422. This digital I/O adapter module for FlexRIO can be used to do real-time interfacing and analysis of RS485 and RS422 as well as other electrically compatible interfaces. The NI-6584 can sample digital waveforms at up to 100 MHz clock rates, has terminated and unterminated options, and full and half duplex configurations.

  • PXI Digital Waveform Instrument

    NI

    PXI Digital Waveform Instruments feature up to 32 channels, can sample and generate digital waveforms at up to 200 MHz, and interface with various standard TTL and low-voltage differential signals (LVDS), as well as settable voltage levels. These devices offer per clock cycle, per channel bidirectional control, and phase shifting. They include deep onboard memory with triggering and pattern sequencing. Some models also support doubledatarate (DDR) technology and real-time hardware data comparison. You can use Digital Waveform Devices to create device simulation and complex stimulusresponse tests.

Get Help