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    Mild Steel Tubular Impact Testers, Driven Type : Pneumatic

    ₹ 22,750 / piece
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    • Frequency50Hz / 60Hz
    • MaterialMild Steel
    • Driven TypePneumatic
    • Voltage220V – 240V
    • Supply TypeManufacturer, Exporter, Supplier
    • Preferred Buyer Location All over the world
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    Company Information

    • calendar Member Since 8 Years
    • building Nature of Business Manufacturer
    • gst icon GST No. 33AAIPN8819N1Z3

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    • Frequency50Hz / 60Hz
    • Voltage220V – 240V
    • MaterialMild Steel
    • Driven TypePneumatic
    • Power3-5kw
    • UsageIndustrial
    • Frame ConstructionSturdy M.S. Channel (100 mm x 50 mm)
    • DimensionsApprox. 2000 x 1500 x 1000 mm

    The V-Tech Vibration Study Apparatus (Model VT-501) is an advanced educational system developed for analyzing vibration characteristics and verifying theoretical principles. The unit is built on a robust mild steel frame and is equipped with a precise exciter unit driven by an FHP DC motor with speed control. The setup allows users to study free and forced vibrations under controlled conditions, providing real-time readings via a digital RPM indicator with a proximity sensor.

    The table-top design, compact length, and adjustable height scale make it ideal for laboratory or classroom use, ensuring ease of operation and accurate experimental results.

    Key Features
    • Constructed with a durable mild steel frame for stability.

    • FHP DC motor with smooth speed control.

    • Digital RPM indicator with proximity sensor for precision measurement.

    • Operates on 220–240V, 50/60Hz single-phase supply.

    • Table-top mounting design with adjustable height scale up to 1524 mm.

    • Compact length (230 mm) for convenient setup and handling.

    • Suitable for both free and forced vibration studies.

    • Ready-to-use unit – available in stock.

    Applications

     

    • Engineering Colleges and Technical Institutions

    • Research and Development Laboratories

    • Mechanical and Structural Dynamics Studies

    • Experimental Verification of Vibration Principles


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