M+P International

Founded in 1980 as spin-off of the Institute of Technical Mechanics at Leibniz Universität Hannover, Germany, business was first focused on consulting and computational tasks for structural dynamics and applied mechanics. Today M+P International develops and manufactures test and measurement systems for vibration testing, dynamic signal analysis, data acquisition, process monitoring and test stand engineering. Our state-of-the-art products meet the highest demands on quality and reliability and have a significant market share in numerous key industries worldwide – everywhere where maximum efficiency and shortest time to market are crucial.

  • +1 973 239 3005
  • +1 973 239 2858
  • webmpi@mpihome.com
  • sales.na@mpihome.com
  • 271 Grove Avenue
    Building G
    Verona, New Jersey 07044-1705
    United States

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Showing results: 16 - 26 of 26 items found.

  • Random Vibration Control

    M+P International

    Random control is one of the two basic and most common excitation modes for Environmental Shaker testing. Random performs real-time closed-loop control of PSD profiles. The m+p VibControl vibration control system allows the user to designate all input channels as control, watchdog and/or measurement channels.

  • Shock Control

    M+P International

    Shock testing simulates an extreme event that a unit under test is exposed to during handling, shipment, explosive event and/or daily use (e.g. dropping an object). The profile for this type of testing is defined by the shape of the time domain waveform together with its amplitude and duration. The m+p VibControl vibration control system offers full functionality for classical shock and shock response spectrum testing as well as for tests using external pulses or the capture of transient signals.

  • Impact Testing

    M+P International

    The Impact Testing software of the m+p Analyzer real time analyzer includes useful tools like the selection of a roving hammer or transducer, selection of data points/nodes, double impact detection and rejection, definition of force and exponential window and a user-definable display configuration as a visual measurement feedback.

  • Data Acquisition Systems

    M+P International

    m+p Coda is a full-featured turnkey software platform for data acquisition, signal analysis and monitoring. Complete turnkey operation provides quicker time to test by eliminating costly application programming and long learning curves. The extensive built-in features and tools offer a functionality that was previously available only in custom packages. The intuitive graphical user interface facilitates set-up, operation and analysis, thus leading to precise, repeatable results quickly.

  • Reporting Tool for Dynamic Signal Analyzer

    m+p eReporter - M+P International

    m+p eReporter is the powerful reporting tool of the m+p Analyzer dynamic signal analyzer. It provides test engineers with comprehensive capabilities for browsing and viewing data, copying & pasting data to ActiveX applications, importing test data from many third-party noise & vibration systems and automating repetitive tasks. This full functionality is available without any measurement hardware connected.

  • Time History Recording to Throughput Disc

    M+P International

    For the most critical tests time history data can be recorded in parallel with vibration control with no reduction in control performance. The real-time throughput data capture function of the m+p VibControl system allows you to record all selected channels continuously in the time domain on the embedded data server (“throughput to disc”) irrespective of the channel count and the frequency range utilized. This means that you can always access all the original data for analysis purposes.

  • Vibration Monitoring

    M+P International

    Vibration tests must be safe and reliable and this is especially true for high value specimens in critical aerospace testing applications. Here, m+p Coda offers maximum safety: The monitoring system captures and records data such as acceleration, temperature and strain continuously during vibration tests - irrespective of the vibration control system in use. Each channel can be configured separately for total flexibility.

  • Vibration Control

    M+P International

    m+p VibControl vibration controllers for advanced vibration control and shock testing from 4 to hundreds of input channels are used by many of the leading environmental test laboratories throughout the world. The endusers appreciate the intuitive operation, the extensive analysis and reporting functions, the numerous upgrade possibilities and, of course, the excellent stability and high quality level of the m+p vibration control systems. Applications range from normal to very extreme conditions, and also include rough transportation circumstances.

  • Condition Monitoring

    M+P International

    m+p Coda is a versatile monitoring system that captures and records signals coming from sensors such as accelerometers, thermocouples, strain gauges, and pressure transducers. Limit checking and alarm monitoring is provided for every active channel. The active channels are clearly displayed in a separate window, out-of-limit data can be seen at a glance. Alarm events are entered into a log file and can be reviewed at any time. You have the option to change the alarm limits online at any time without stopping the data acquisition.

  • Transducer Calibration

    m+p SensCal - M+P International

    Regular transducer calibration is an essential requirement for maintaining the accuracy, reliability and repeatability of the results obtained from a measurement system. m+p international’s m+p SensCal program provides a quick and simple process for calibrating accelerometers (piezo-electric with charge output or IEPE, piezo-resistive, capacitive) in your laboratory, as well as velocity or displacement transducers.

  • Strain Measurements and Experimental Stress Analysis

    M+P International

    Experimental structural testing using strain gauges is necessary in a wide range of applications from airframes and sub-assemblies down to individual components such as turbine blades, satellites, wind turbines, buildings, bridges and many others. These tests enable the engineers to compare the acquired data with the predicted results from the design calculations.

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