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  •  » Dual Axis Inclinometer Digital Tilt Sensor
    Dual Axis Inclinometer Digital Tilt Sensor
    Product Model : ​ZCT230M-LBS-BUS-3105
    Measuring Range : ±30 °
    Output : RS232
    Power: Voltage(8~30V)
    Repeatability: ±0.002°
    Accuracy : 0.005°-0.01°
    Resolution : 0.001°
    Application : Machinery
    IP Degree : IP66
    Shell Size : Φ 84 * 35 mm
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    Description:

    I. General Description 

    Dual axis up to ±30°, with resolution of 0.001° and accuracy of 0.1°. Incorporating built-in linearity and temperature compensation; both for offset and sensitivity, RS485 output for ease of integration into existing bus systems and easy-to-mount; sealed up to IP66.

    II. Features

    Entirely industrial device is adopted, with stable performance

    Shockproof and anti-vibration

    High cost performance

    Standard M12 male connector

    Technical Parameters:

    Technical Specifications ( in room environment @25℃)

    3.1 Operation parameter

    Parameter

    Test condition

    Min value

    Typical value

    Max value

    Unit

    Supply voltage(1

    8

    24

    30

    V

    Quiescent current

    Supply is 24V

    15

    20

    mA

    Operating temp

    -40

    85

    Storage tem

    -40

    125

    3.2 Performance parameter

    Measuring range(2

    2-axis

    -30~30

    °

    Resolution (3

    Output frequency 3Hz

    0.001

    0.003

    °

    Repeatability

    Output frequency 3Hz

    ±0.03

    °

    Accuracy (4

    Output frequency 3Hz

    ±0.05

    °

    Zero temp drift

    -40~+85℃

    ±0.5

    ±0.86

    °

    Sensitivity temp drift

    -40~+85℃

    ±0.014

    %/℃

    Cross axis sensitivity

    4

    %

    3.3 Other parameter

    Dimension

    Φ84*35

    mm

    IP

    IP66

    Remark 1: when the sensor work normally, make sure it is in the allowable range, 24V is introduced.

    Remark 2: the sensor should be installed horizontally.

    Remark 3: the smallest angular increment at which a detectable change in output can be measured.

    Remark 4: The maximum deviation of the output from the absolute input angle.

    Application:
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