All Categories
    Menu Close
    Find a Sensor A - Z

    Miniature Capacitive Accelerometer Sensor, Single Axis

    SKU: SUCH-AS-R01
    $454.61
    ● Range: ±1g/±5g/±10g/±50g (single axis) ● Axial sensitivity: 1000 mV/g~200 mV/g ● Maximum lateral sensitivity: ≤5% ● Vibration nonlinearity: ≤0.5%
    *
    🚚 Free shipping
    🕒 Delivery date: 6-12 days
    🔁 30-day Returns
    Overview

    High-precision single-axis miniature capacitive accelerometer sensor with a stainless steel housing, with a measurement range of ±1g/±5g/±10g/±50g (single axis), featuring ≤0.5% nonlinearity and <100 Ω output impedance, The sensor's frequency response reaches up to 800 Hz, with an impact limit of up to 5000 g, and operates stably under a wide temperature range from -40°C to +120°C. It comes with a three-core shielded cable and mounting screws, making it suitable for installation on industrial equipment, vehicle structures, or experimental platforms, ensuring long-term reliable signal output.

    Feature

    Single axis accelerometer sensor feature

    • The capacitive accelerometer sensor has weak signal recognition capability with nonlinearity less than 0.5%, making it suitable for harsh monitoring environments.
    • The accelerometer sensor features fast response performance with a frequency response of 800 Hz, enabling detection of subtle changes.
    • Constructed from stainless steel, it has a robust structure and can withstand impacts up to 5000g, making it suitable for harsh industrial environments.
    • It is equipped with four φ2.8 mounting holes and a standard three-core shielded cable, ensuring easy installation and clear wiring.

    Dimension (unit: mm)

    Single axis accelerometer sensor 1g 5g dimension

    Single axis accelerometer sensor 10g 50g dimension

    Wiring Diagram

    Single axis accelerometer sensor wiring diagram
    Output Method Unidirectional three-core shielded cable
    Output Definition Red wire: Positive power supply
    White wire: Ground
    Green wire: Output

    Capacitive Accelerometer Sensor Curve

    Capacitive accelerometer sensors typical temp curve
    Capacitive accelerometer sensors typical frequency response curve
    Specs
    Model Rang & Axial Sensitivity
    SUCH-SADR01 ±1g, 1000 mV/g  (single axis)
    SUCH-SADR05 ±5g, 200 mV/g  (single axis)
    SUCH-SADR10 ±10g, 100 mV/g  (single axis)
    SUCH-SADR50 ±50g, 38 mV/g  (single axis)
    Check out the SUCH-SADR01 specs. For other models, click here.
    Model SUCH-SADR01
    Axial Sensitivity 1000 mV/g (single axis)
    Range ±1g/±5g/±10g/±50g
    Frequency Response 0 to 800 Hz (-3 dB)
    Sensitivity Temperature Coefficient 0.03V/°C
    Noise <45 μg/√Hz
    Polarity Positive
    Maximum Lateral Sensitivity ≤5%
    Vibration Nonlinearity ≤0.5%
    Supply Voltage 6 to 16 V (DC)
    Zero Bias Voltage 2.5 ± 0.1V
    Output Impedance <100Ω
    Accessories Certificate of conformity, screws*4
    Mounting Method Bolt fastening or adhesive bonding
    Operating Temperature Range -40 to 85°C
    Shock Limit (No Damage) 500 g
    Operating Current ≤5 mA
    Housing Material Stainless steel
    Mounting 4 φ2.8 holes
    Weight 20g
    Application
    Industrial heavy-duty electric drill

    Heavy Duty Electric Drill

    Industrial heavy-duty electric saw

    Heavy Duty Electric Saw

    Lathe cutting metal

    Lathe Cutting Metal

    FAQ

    These accelerometer sensors are specifically designed for high-precision single-axis acceleration measurements in compact or space-constrained environments. They are commonly used in structural health monitoring, vibration testing, MEMS-based devices, and aerospace components.

    The single-axis accelerometer sensor operates based on the principle that the capacitance value between a movable electrode and a fixed electrode changes with single-axis acceleration. When acceleration causes displacement, the capacitance value changes, and this change is converted into a voltage signal. This enables precise measurement of acceleration in a single direction, making it suitable for applications requiring accurate directional feedback.

    Its compact size makes it easy to integrate into confined spaces, such as micro drones, micro robots, or wearable devices. Despite its small size, it maintains high sensitivity and stability. Its lightweight structure reduces mechanical load, which is particularly beneficial in dynamic environments or precision assemblies, as even minor weight differences can have an impact.

    0.0 0
    Write your own review Close
    *
    *