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Showing results: 2476 - 2490 of 2618 items found.

  • VB-8034, 4-Channel, 350 MHz Bandwidth VirtualBench All-in-One Instrument

    784343-12 - NI

    4-Channel, 350 MHz Bandwidth VirtualBench All-in-One Instrument—The VB‑8034 combines a four‑channel, 350 MHz mixed-signal oscilloscope with protocol analysis, an arbitrary waveform generator, a digital multimeter, a programmable DC power supply, and digital I/O into a single device that integrates with your PC or iPad. The VirtualBench all‑in‑one instrument is simple and convenient and results in more efficient circuit design, debugging, and validation. The included software provides an interactive way to view all your measurements on a single screen and can be updated for free with software releases over time to continually add functionality and value to your VirtualBench. VirtualBench also tightly integrates with LabVIEW software to enable programmatic control and automated test sequences.

  • VB-8012, 2-Channel, 100 MHz Bandwidth VirtualBench All-in-One Instrument

    783555-11 - NI

    2-Channel, 100 MHz Bandwidth VirtualBench All-in-One Instrument—The VB‑8012 combines a two‑channel, 100 MHz mixed-signal oscilloscope with protocol analysis, an arbitrary waveform generator, a digital multimeter, a programmable DC power supply, and digital I/O into a single device that integrates with your PC or iPad. The VirtualBench all‑in‑one instrument is simple and convenient and results in more efficient circuit design, debugging, and validation. The included software provides an interactive way to view all your measurements on a single screen and can be updated for free with software releases over time to continually add functionality and value to your VirtualBench. VirtualBench also tightly integrates with LabVIEW software to enable programmatic control and automated test sequences.

  • VB-8012, 2-Channel, 100 MHz Bandwidth VirtualBench All-in-One Instrument

    783555-05 - NI

    2-Channel, 100 MHz Bandwidth VirtualBench All-in-One Instrument—The VB‑8012 combines a two‑channel, 100 MHz mixed-signal oscilloscope with protocol analysis, an arbitrary waveform generator, a digital multimeter, a programmable DC power supply, and digital I/O into a single device that integrates with your PC or iPad. The VirtualBench all‑in‑one instrument is simple and convenient and results in more efficient circuit design, debugging, and validation. The included software provides an interactive way to view all your measurements on a single screen and can be updated for free with software releases over time to continually add functionality and value to your VirtualBench. VirtualBench also tightly integrates with LabVIEW software to enable programmatic control and automated test sequences.

  • VB-8012 / , 2-Channel, 100 MHz Bandwidth VirtualBench All-in-One Instrument

    783555-02 - NI

    2-Channel, 100 MHz Bandwidth VirtualBench All-in-One Instrument - The VB‑8012 combines a two‑channel, 100 MHz mixed-signal oscilloscope with protocol analysis, an arbitrary waveform generator, a digital multimeter, a programmable DC power supply, and digital I/O into a single device that integrates with your PC or iPad. The VirtualBench all‑in‑one instrument is simple and convenient and results in more efficient circuit design, debugging, and validation. The included software provides an interactive way to view all your measurements on a single screen and can be updated for free with software releases over time to continually add functionality and value to your VirtualBench. VirtualBench also tightly integrates with LabVIEW software to enable programmatic control and automated test sequences.

  • VB-8012, 2-Channel, 100 MHz Bandwidth VirtualBench All-in-One Instrument

    783555-04 - NI

    2-Channel, 100 MHz Bandwidth VirtualBench All-in-One Instrument—The VB‑8012 combines a two‑channel, 100 MHz mixed-signal oscilloscope with protocol analysis, an arbitrary waveform generator, a digital multimeter, a programmable DC power supply, and digital I/O into a single device that integrates with your PC or iPad. The VirtualBench all‑in‑one instrument is simple and convenient and results in more efficient circuit design, debugging, and validation. The included software provides an interactive way to view all your measurements on a single screen and can be updated for free with software releases over time to continually add functionality and value to your VirtualBench. VirtualBench also tightly integrates with LabVIEW software to enable programmatic control and automated test sequences.

  • VB-8012, 2-Channel, 100 MHz Bandwidth VirtualBench All-in-One Instrument

    783555-01 - NI

    2-Channel, 100 MHz Bandwidth VirtualBench All-in-One Instrument—The VB‑8012 combines a two‑channel, 100 MHz mixed-signal oscilloscope with protocol analysis, an arbitrary waveform generator, a digital multimeter, a programmable DC power supply, and digital I/O into a single device that integrates with your PC or iPad. The VirtualBench all‑in‑one instrument is simple and convenient and results in more efficient circuit design, debugging, and validation. The included software provides an interactive way to view all your measurements on a single screen and can be updated for free with software releases over time to continually add functionality and value to your VirtualBench. VirtualBench also tightly integrates with LabVIEW software to enable programmatic control and automated test sequences.

  • VB-8012, 2-Channel, 100 MHz Bandwidth VirtualBench All-in-One Instrument

    783555-12 - NI

    2-Channel, 100 MHz Bandwidth VirtualBench All-in-One Instrument—The VB‑8012 combines a two‑channel, 100 MHz mixed-signal oscilloscope with protocol analysis, an arbitrary waveform generator, a digital multimeter, a programmable DC power supply, and digital I/O into a single device that integrates with your PC or iPad. The VirtualBench all‑in‑one instrument is simple and convenient and results in more efficient circuit design, debugging, and validation. The included software provides an interactive way to view all your measurements on a single screen and can be updated for free with software releases over time to continually add functionality and value to your VirtualBench. VirtualBench also tightly integrates with LabVIEW software to enable programmatic control and automated test sequences.

  • Three-Phase Transformer Demagnetizer

    DEM60C - IBEKO Power AB

    After a DC current test, such as winding resistance measurement, the magnetic core of a power or instrument transformer may be magnetized (remnant magnetism). It can cause various problems such as wrong diagnostics, inaccurate measurements on a transformer, inrush current at the start-up of a power transformer, or incorrect operation of protective relays due to magnetized CT cores. The best way to eliminate this source of potential problems is to use demagnetizer on the power or instrument transformer.The DEM60C is a fully automatic test instrument which performs three-phase transformer demagnetization. Transformer magnetic core demagnetization requires the application of AC current with magnitude decreasing to zero. DEM60C provides this AC current by internally changing the polarity of a controlled DC current. During the demagnetization process, the instrument supplies the current at decreasing magnitude for each step, following a proprietary algorithm. It can demagnetize single-phase and three-phase power transformers.The instrument can be connected to all three phases of a power transformer to be demagnetized, on either the primary or the secondary side. If a user selects specific vector diagrams for different types of transformers, DEM60C will run a specific demagnetization procedure for each transformer type (i.e., single phase, delta, wye/star, zig-zag.) without switching the test leads.DEM60C enables safe and efficient power transformer demagnetization. The instrument automatically regulates the injection of current and discharging energy from the inductance. During and after the operation, an intrinsically safe discharge circuit with an indicator rapidly dissipates the stored magnetic energy. The discharging circuit is independent of the power supply, which improves its reliability in case of loss of power.Test currents of up to 60 A DC enable efficient demagnetization of even the largest power transformers. Using a DV Win software, it is possible to control DEM60C externally.

  • PXI Single 24x8 Matrix, 2 Pole Switching

    40-521-022 - Pickering Interfaces Ltd.

    Typical applications for this high density matrix include signal routing in Functional ATE and data acquisitionsystems. These PXI matrix cards are constructed using high reliability rutheniumelectro-plated reed relays, offering >10e8 operations to give maximum switchingconfidence with long life and stable contact resistance. Larger matrices may be constructed by Daisy Chaining the common signals from multiple PXI modules. For example, 7 PXI modules will form a 168x8 Matrix, a total of 1344 crosspoints in a 7-slot PXI Chassis. All 40-521 series modules are fitted with reed relays (ruthenium sputtered type), these offer very long life with good low level switching performance and excellent contact resistance stability.Spare Reed Relays are built onto the circuit board to facilitate easy maintenance with minimum downtime.

  • Active Loop Antenna

    AL-130R - Com-Power Corporation

    Also known as Magnetic Loop Antenna, the AL-130R is compliant with CISPR 16-1-4. It is ideal for emissions measurements as required by various EMC standards such as FCC 18, CISPR 11, CISPR 13, CISPR 14, CISPR 32 and many more. The built-in, low-noise preamplifier, increases overall measurement sensitivity as well as the overall signal to noise ratio. As per ANSI C63.4-2014, the use of active loop antenna for compliance testing is permitted in a non-sheilded environment ONLY if the saturation indicator is continuously monitored during the course of testing. Com-Power’s Remote Antenna Interface (RAI-100) comes in very handy for this application. It is a compact controller which can be used to enable/ disable RF measurement circuit and monitor saturation and battery low conditions remotely via a fiber optic cable up to 30 mtrs in length.

  • Ethernet/AFDX/BroadR-Reach PXI Fault Insertion Switch - 4 Channel

    40-201-004 - Pickering Interfaces Ltd.

    This high bandwidth differential fault insertion module is designed to simulate common faults on high speed two wire communication interfaces such as Ethernet. This module supports 4 or 8-channels of two wire serial connections and can be used for simulating faults on Ethernet, AFDX, BroadR-Reach, 100BaseT and 1000BaseT interfaces. Any wire can be set to an open circuit, shorts can be applied across the wire pair, or to the adjacent pair. Fault connections can be made to one of four external signals via two fault buses, typically simulating connections to a supply voltage or ground. Each fault bus is capable of carrying 2A allowing multiple channels to be connected to the same fault condition. Additionally, each fault bus features a changeover relay to allow the user to connect alternative fault conditions to the fault buses.

  • Ethernet/AFDX/BroadR-Reach PXI Fault Insertion Switch - 8 Channel

    40-201-008 - Pickering Interfaces Ltd.

    This high bandwidth differential PXI fault insertion module is designed to simulate common faults on high speed two wire communication interfaces such as Ethernet. This module supports 4 or 8-channels of two wire serial connections and can be used for simulating faults on Ethernet, AFDX, BroadR-Reach, 100BaseT and 1000BaseT interfaces. Any wire can be set to an open circuit, shorts can be applied across the wire pair, or to the adjacent pair. Fault connections can be made to one of four external signals via two fault buses, typically simulating connections to a supply voltage or ground. Each fault bus is capable of carrying 2A allowing multiple channels to be connected to the same fault condition. Additionally, each fault bus features a changeover relay to allow the user to connect alternative fault conditions to the fault buses.

  • Component Test and Analysis Laboratories

    Raytheon Company

    The Component Test and Analysis team specializes in electronic and mechanical components such as hybrids, connectors, cables, harnesses, passive or discrete components, and digital or linear devices. The test lab has extensive experience in developing test software to electrically and environmentally characterize virtually any integrated circuit, including analog, digital, mixed signal, converters, FPGA and ASICs, as well as experience in developing actual radiation environments for parts testing. The component analysis team offers the analytical expertise and advanced instrumentation to identify root cause explanation for a wide range of component-level failures, as well as the resources to evaluate for possible quality and reliability issues through non-destructive and destructive techniques. With access to a detailed database, the Component Test and Analysis team offers a 25-year history of test and analysis data — a valuable resource for addressing new customer requirements.

  • Microwave Wideband Synthesizer w/ Integrated VCO

    ADF5356 - Analog Devices Inc.

    The ADF5356 allows implementation of fractional-N or integer-N phase-locked loop (PLL) frequency synthesizers when used with an external loop filter and an external reference frequency. The wideband microwave VCO design permits frequency operation from 6.8 GHz to 13.6 GHz at one radio frequency (RF) output. A series of frequency dividers at another frequency output permits operation from 53.125 MHz to 6800 MHz. The ADF5356 has an integrated VCO with a fundamental output frequency ranging from 3400 MHz to 6800 MHz. In addition, the VCO frequency is connected to divide by 1, 2, 4, 8, 16, 32, or 64 circuits that allow the user to generate RF output frequencies as low as 53.125 MHz. For applications that require isolation, the RF output stage can be muted. The mute function is both pin- and software-controllable.

  • PCBA & Bare Board Cleanliness Tester

    Zero-Ion G3 - Manncorp

    For two decades, thousands of electronics assemblers have relied on the Zero-Ion cleanliness testing to verify the cleanliness of post-reflow printed circuit assemblies and bare boards. Over time, as PCB assemblies have become more complex and more densely populated with surface mount components, and as vigorous quality standards such as ISO, TQM and Six Sigma have become commonplace, the ability to meet—and confirm—cleanliness levels has grown in importance. The Zero-Ion ROSE tester has kept pace with customer requirements, and the Zero-Ion G3 is the most advanced Zero-Ion ever designed, capable of testing assemblies reflowed with any solder paste, including no clean—yet its also one of the most affordable cleanliness testers on the market as well, with performance and ease of use second to none.

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