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System Test

Testing conducted on a complete, integrated system to evaluate the system's compliance with its specified requirements .

See Also: Systems, Equipment, Test Systems, System Integrators


Showing results: 3751 - 3765 of 4352 items found.

  • Three Phase Phantom Load Test Bench

    Supreme Instrument Laboratories

    Supreme make Phantom Load Test Set is a portable testing accessory designed for field service. It simulates various load conditions usually prevailing in power supply system. The unit offers a practical solution by providing artificial load unaltered by the variation in the power supply mains and adjustable to the complete meter testing requirements.

  • Powered VXS Crates

    6U VXS 6021 - W-IE-NE-R, Plein & Baus GmbH

    The WIENER VXS 6023 crate series adds high performance Switch Fabrics according to VITA 41 specification to VME based systems. Designed primarily for high speed applications in data acquisition, as well as military / aerospace test and instrumentation it combines superior mechanical quality with lowest noise power supply technology.

  • Vibration Chambers

    ETV-SERIES - Envisys Technologies

    Environmental Chamber with Vibration Shaker Interface provision consists of Environmental Test Chamber, Vibration Shaker Interface Provision, HMI/PC PLC based Control System etc., This chamber is designed with unique features to meet the control parameters like Temperature, Humidity (optional) and 3 Axis Vibration Controls which are specified in the specification.

  • Powered VXS Crates

    6U VXS 6023-JL - W-IE-NE-R, Plein & Baus GmbH

    The WIENER VXS 6023 crate series adds high performance Switch Fabrics according to VITA 41 specification to VME based systems. Designed primarily for high speed applications in data acquisition, as well as military / aerospace test and instrumentation it combines superior mechanical quality with lowest noise power supply technology.

  • Regenerative Power System, 500 V, 40 A, 10 kW, 400/480 VAC

    RP7962A - Keysight Technologies

    The RP7962A regenerative power system is a single output, bi-directional, regenerative DC power supply with highly integrated safety features that protect both your people and your device under test. The regenerative capability enables the energy normally consumed to be returned to the grid cleanly, saving costs associated with energy consumption and cooling.

  • Regenerative Power System, 500 V, 20 A, 5 kW, 200/208 VAC

    RP7951A - Keysight Technologies

    The RP7951A regenerative power system is a single output, bi-directional, regenerative DC power supply with highly integrated safety features that protect both your people and your device under test. The regenerative capability enables the energy normally consumed to be returned to the grid cleanly, saving costs associated with energy consumption and cooling.

  • Regenerative Power System, 950 V, 20 A, 10 kW, 400/480 VAC

    RP7963A - Keysight Technologies

    The RP7963A regenerative power system is a single output, bi-directional, regenerative DC power supply with highly integrated safety features that protect both your people and your device under test. The regenerative capability enables the energy normally consumed to be returned to the grid cleanly, saving costs associated with energy consumption and cooling.

  • Regenerative Power System, 500 V, 40 A, 10 kW, 200/208 VAC

    RP7952A - Keysight Technologies

    The RP7952A regenerative power system is a single output, bi-directional, regenerative DC power supply with highly integrated safety features that protect both your people and your device under test. The regenerative capability enables the energy normally consumed to be returned to the grid cleanly, saving costs associated with energy consumption and cooling.

  • Regenerative Power System, 950 V, 20 A, 10 kW, 200/208 VAC

    RP7953A - Keysight Technologies

    The RP7953A regenerative power system is a single output, bi-directional, regenerative DC power supply with highly integrated safety features that protect both your people and your device under test. The regenerative capability enables the energy normally consumed to be returned to the grid cleanly, saving costs associated with energy consumption and cooling.

  • Noise and Vibration Testing

    Electronic Systems of Wisconsin, Inc.

    ESW's unique Noise & Vibration Test Systems come fully equipped with the latest industry features. The on-screen operator display in our testers make it easy to set-up, read, track and record your noise or vibration information. We work directly with you to determine the best solution that will work for your application. Our data logging make sure that important data is stored and available for download for future reference. ESW's design engineers work to make sure the testing interface is easy for your operators to use. We work closely with our customers to make sure that your unique testing needs are met. Please see the slideshow below to see some of our Noise & Vibration Testers.

  • High Strain Pile Driving Analyzer, Pile Testing Machine

    SG-PDA - Jinge Testing Machine Co.,Ltd

    It is a state-of-the-art testing equipment to perform high strain pile bearing testing on piles.It will provide prediction on the pile bearing capacity, pile integrity, driving stresses and hammer performance for a given pile penetration. It is a relative low cost type of pile testing compared to static load test (MLT or CRP). The testing technique is quick and accurate.It can also be used to perform high strain pile bearing monitoring to evaluate pile driving information for pile bearing capacity, pile integrity, driving stresses and transferred energy against pile penetration. The results are essential for the actual pile driving process and to obtain valuable data on the hammer, pile & soil system for re-design on the piled foundation (if necessary).

  • C Series Strain/Bridge Input Module

    NI

    The C Series Strain/Bridge Input Module works with higher-channel-count, dynamic strain measurement systems. Modules can acquire measurements from up to eight channels, with compatibility options for quarter-, half-, and full-bridge sensors. The C Series Strain/Bridge Input Module is ideal for application channels requiring measurements at particular times, such as impact tests. It includes built-in voltage excitation, as well as transient isolation for high-common-mode noise rejection and improved safety.The C Series Strain/Bridge Input Module 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.

  • Precision Low-Loss Multiplexers

    Maury Microwave Corporation

    Maury’s line of diplexers (DP-series) and triplexers (TP-series) are designed for applications which require combining/ splitting signals at or around harmonic frequencies (nFo) and are connectorized for design-in and test and measurement applications.DP-series diplexers are designed using low-pass and high-pass filters and pass bias between the low-frequency (or Fo) port and the common (or DUT) port.TP-series triplexers are designed using low-pass, bandpass and high-pass filters and pass bias between the low-frequency (or Fo) port and the common (or DUT) port.Power handling is rated at 100W CW (average) and typical insertion loss is better than 0.5dB between the low-pass (Fo) and common ports.DP- and TP-series multiplexers are ideal accessories for passive, active and hybrid-active multi-harmonic load pull systems.

  • Semi-Automatic Tablet Tester

    P-Series - Teledyne LABS

    The versatile P-series laboratory testers offer you the latest technology, a space-saving design, and maximum flexibility. Adapt the basic units (P3-P5) to your requirements at any time.The P5 version tests all five measured variables automatically. The VibrALIGN and Roto system make it easy to position tablets precisely.The intuitive touch display enables quick and easy operation. The measurements results are shown directly on the clearly arranged display, and can be printed out or exported as PDF reports.The LAB.line design also offers many practical advantages: the generous radii, rounded corners and smooth surfaces allow easy and hygienic cleaning. The sturdy hood provides protection against environmental influences during measurements.

  • AWD Dynamometers

    MD-AWD-500-AC/EC-100/250 - Mustang Dynamometer

    The key to designing an AWD dynamometer properly is to understand the methods currently being used by manufacturers in the field of AWD drivetrain technology. A dynamometer that can accommodate various types of AWD vehicle transmissions and wheelbases without excessive complication and, more importantly, without risking damage to a client’s AWD system is paramount. Full time AWD vehicles are designed to provide maximum performance regardless of road conditions. In cases where traction is less than ideal, a vehicle may be designed to improve stability and traction at the expense of power. This means adding torque to a spinning wheel or retarding of timing. In order to properly test an AWD vehicle for peak performance, an AWD chassis dynamometer must be able to simulate ideal road-load conditions to the vehicle. This approach allows the vehicle to be evaluated under “optimum” operational conditions; whereby torque is distributed to the vehicle’s tires in the same manner that would normally occur when a vehicle has equal traction at all four drive wheels, and is therefore operating at peak efficiency. To achieve this, Mustang’s AWD-500 Series incorporates an internal drive system that synchronizes the front and back rollers to simulate a flat, dry road condition. Synchronization, or linkage, insures that the front and rear rollers are always spinning at precisely the same road speed. This process eliminates the possibility of activating a vehicle’s traction control system and also insures that a vehicle’s torque management system is operating under the assumption that the vehicle is not skidding, turning or slipping. Mustang’s AWD-500 can be operated in AWD Mode while testing two-wheel drive vehicles. This process allows the non-driven axle to be spun by the dynamometer rollers at the same speed as the driven axle, eliminating the speed differential that occurs on two-wheel drive dynamometers – problem solved.

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