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    Dynamic Inclinometer Sensor, ±90° Pitch, ±180° Roll/ Azimuth

    SKU: SUCH-INS-HDA
    $417.94
    ● Measuring Range: Roll ±180°, Pitch ±90°, Azimuth ±180° ● Measuring Axis: X-axis / Y-axis / Z-axis ● Output Signal: RS485 / RS232 / TTL / CAN2.0A / CAN2.0B ● Protection Rating: IP67
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    🚚 Free shipping
    🕒 Delivery date: 6-12 days
    🔁 30-day Returns
    Overview

    SUCH dynamic inclinometer sensor is designed for measuring roll, pitch, and azimuth in dynamic conditions. It offers a measurement range of ±180° for roll, ±90° for pitch, and ±180° for azimuth, with a static accuracy of ±0.05° and dynamic accuracy of ±0.1°. With built-in gyroscope and accelerometer, it provides stability and reliability in harsh environments, suitable for applications in construction, vehicles, and industrial machinery.

    Feature

    • Multiple Output Signals: Tilt sensor supports various output signal options, including RS485, RS232, TTL, CAN 2.0A, and CAN 2.0B, providing flexibility for integration with different systems and applications.
    • Flexible Installation Options: It offers multiple installation methods, with both horizontal and vertical mounting options, allowing for versatile deployment in different environments and configurations.

    Dimension (Unit:mm)

    Dynamic inclinometer sensor dimension

    Wiring Diagram

    Dynamic inclinometer sensor RS232 TTL wiring diagram

    1 PIN (Brown) 2 PIN (White) 3 PIN (Blue) 4 PIN (Black) 5 PIN (Gray)
    9-36V (power positive) RS232 (RXD) / TTL (RXD) RS232 (TXD) / TTL (TXD) GND (power negative) PE (reserve)

    Dynamic inclinometer sensor RS485 wiring diagram

    1 PIN (Brown) 2 PIN (White) 3 PIN (Blue) 4 PIN (Black) 5 PIN (Gray)
    9-36V (power positive) 485 D+ 485 D- GND (power negative) PE (reserve)

    Installation

    Dynamic inclinometer sensor horizontal installation

    Dynamic inclinometer sensor vertical installation

    Measuring of Axial Direction

    Dynamic inclinometer sensor measuring axial direction

    Specs
    Output Signal RS485 RS232 TTL CAN2.0A CAN2.0B
    Accessory Cable Standard without cable. (5 pin M12 aerial plug 2m cable can be optional)
    Measuring Range Roll ±180°, pitch ±90°, azimuth ±180° (tilt power initial value is 0°)
    Measuring Axis X-axis/Y-axis/Z-axis
    Resolution 0.01°
    Static Accuracy ±0.05°@25℃
    Dynamic Accuracy ±0.1°@25℃
    Gyro Range ±250°/s
    Gyro Zero Bias Stability 8.5°/h (10s average)
    Gyro zero-bias Instability 4.5°/h (allan)
    Angular Random Walk Coefficient 0.25°/sqrt (h) (allan)
    Acceleration Range ±8g
    Acceleration Zero Bias Stability ±0.02mg (10s rms)
    Acceleration Zero Bias Instability ±0.005mg (allan)
    Acceleration Random Walk Coefficient ±0.005m/s/sqrt (h) (allan)
    Zero Temperature Coefficient ±0.01°/°C (-40~85°C)
    Sensitivity Temperature Coefficient ≤100ppm/°C (-40~85°C)
    Power-on Start-up Time 1S
    Response time 0.01S
    Electromagnetic Compatibility In accordance with EN61000 and GBT17626
    Mean Time Between Failure (MTBF) ≥98000 hours/time
    Insulation Resistance ≥100 megohm
    Shock Resistance 100g@11ms, triaxial (half sine wave)
    Vibration 10grms, 10~1000Hz
    Supply Voltage 9-36V
    Working Current No load 40mA (12V)
    Operating Temperature -40°C~+85°C
    Storage Temperature -40℃~+85℃
    Waterproof Grade Standard IP67
    Weight ≤165g (without cable) Single connector ≤165g (without cable)
    Application
    Tilt sensor for oil drilling

    Oil Drilling

    Tilt sensor for construction vehicle

    Construction Vehicle

    Tilt sensor for geological monitoring

    Geological Monitoring

    FAQ

    The dynamic inclinometer sensor supports RS485, RS232, TTL, CAN 2.0A, and CAN 2.0B communication protocols, enabling easy integration with various control systems, data loggers, and monitoring devices.

    Yes, it is ideal for the construction industry to monitor structural tilt and for vehicles to track tilt and prevent rollover, ensuring safety and performance in both applications.

    Periodic calibration and system checks are recommended to maintain accuracy. In harsh conditions, more frequent maintenance may be required to ensure optimal performance.

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