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    Rail type Magnetostrictive Displacement Measurement Sensor 120mm

    $929.86
    Aluminum alloy rail type magnetostrictive linear displacement sensor for measuring mechanical displacement, external installation, compact structure, easy to use, good security, suitable for CNC machinery worked in large vibration.
    SKU: ATO-MSR-A0120
    30-day Returns
    Free Shipping
    Delivery date: 6-12 days

    Magnetostrictive displacement sensor with measuring range 120mm has a aluminum alloy rail. Its electronic head parts are all built into aluminum alloy shell. Magnetostrictive displacement sensors are widely used in all kinds of CNC machinery that always working in large vibration.

    Specification:

    Basics Model ATO-MSR-A0120
    Measuring range 0~120 mm
    Shipping weight 1.1 kg
    Length 290.8 mm
    Technical parameters Output method Analog output SSI output
    Output signal 0~20mA,4~20mA; 0~10V,-10~+10V 24,25,26 bits binary digital signal / gray code signal
    Resolution ratio 16 bits A/D 2/ 5/ 10/ 20/ 50/100μm
    Linearity <±0.01%F.S. (minimum±50μm) <±0.01%F.S. (minimum±40μm)
    Repeat accuracy <±0.002%F.S. (minimum±2μm) <±0.002%F.S.( minimum±1)
    Response frequency Relate to measuring range
    Operating voltage 24VDC(-15/+20%)
    Vibration coefficient 5g/10-2000Hz/IEC standards IEC standards 68-2-6
    Current drain 5~16mA
    Operating temperature -40℃~+85℃
    Protection Class IP65
    Installation method Fixed clip, with specific screw M5X20
    Magnet type Slider magnet, levitating magnet

    Dimensional drawing (unit: mm):
    magnetostrictive sensor rail type dimensional drawing-a
    Installation diagram:
    magnetostrictive sensor rail type installation drawing

    Tips: Troubleshooting of magnetostrictive sensor
    There are several output methods of magnetostrictive sensor: Current output 4~20mA, voltage output 0~5V (effective range 0.5~4.5V), voltage output 0~10V (effective range 1~9V).

    1. If the output is lower than the minimum value (effective range), the sensor may work in the upper dead zone. However, if the output is larger than the maximum (effective range), the sensor may work in the lower dead zone, and then it is necessary to adjust the installation position.
    2. If the output value is 0, it is necessary to check magnetic ring, power and wiring of the sensor due to falling off of magnetic ring, power failure and loose wiring.
    3. If the output is unstable, it is necessary to check magnetic ring and power of the sensor due to loose installation of magnetic ring and underpower.
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