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    Accelerometer Vibration Sensor, 0-20mm/s, 0-50mm/s, 10g

    SUCH-AS-50R
    ● Measuring range: 0-20mm/s, 0-50mm/s, 10g ● Signal output: 4-20mA, RS485 ● Installation: Thread (default) ● Ambient temperature: -40°C~85°C
    $258.77

    Explosion Proof Magnetostrictive Displacement Sensor, 100~1500mm

    SUCH-DPLS-CHMFB
    ● Measurement range 100~1500mm ● Output: 0-5V/0-10V/4-20mA/Star-stop ● Resolution: 16-bit DA, maximum 0.5µm ● Operating temperature -40~85℃
    $806.73

    Hot Water Flow Switch, 1-45 L/min, 1-60 L/min

    SUCH-FLS-ST01
    ● 1-45 L/min, 1-60 L/min ● G3/4", G1" water inlet ● Optional copper interface ● 2.3-3 L/min, 3-4 L/min start flow
    $58.82

    Teardrop Cable Float Switch, 220V/380V

    SUCH-FLS-ENM10
    ● Operating voltage 220V/380V ● Water temperature range 0~80℃ ● Power consumption 500W ● Lifespan: >1000 Cycles
    $67.87

    Ball Cable Float Level Switch, 4A/220V

    SUCH-FLS-FYK
    ● Rated voltage AC220V ● Rated current 4A 220V (resistive load) ● Heating current 10A 250V ● Power range <750W
    $65.77

    Dynamic Signal Analyzer for IEPE/PE Accelerometer Sensor, 1 Channel

    SUCH-AS-SA1801B
    ● Number of channels: 1 channel ● Input type: Voltage/IEPE/PE ● Max sampling rate: 128kHz ● A/D resolution: 24-bit
    $2,342.89

    Magnetostrictive Linear Displacement Transducer, Flange Mounted

    SUCH-DPLS-GBFF
    ● Measurement range 100~1500mm ● Output: 0-5V/0-10/4-20mA/Star-stop ● Resolution 16-bit DA, maximum 1µm ● Input voltage 24VDC (-15~+20%)
    $704.83

    Mechanical Water Flow Switch, G1/2'', 2-25 L/min

    SUCH-FLS-2104
    ● 2-25 L/min ● G1/2'' inner diameter ● 0.2s response time ● Start flow ≥2 to 2.5 L/min
    $58.62

    Horizontal Float Switch, Flange Mounted, 220~380VAC

    SUCH-FLS-UQK01
    ● Operating pressure <1.6MPa ● Contact capacity 220~380VAC/1A ● Control range 0-10mm ● Operating temperature <150℃
    $115.37

    IC Piezoelectric Accelerometer Sensor, 24V DC, 10g

    SUCH-AS-D0001
    ● Measuring range: 10g ● Sensitivity: 500mV/g ● Constant current supply: 2–20mA, typical 4mA ● Power supply voltage: 18–30V, typical 24V
    $492.63

    Non Contact Magnetostrictive Displacement Sensor, 0~1000mm

    SUCH-DPLS-RS
    ● Measurement range 0~1000mm ● Output signal 4-20mA/0-5V/0-10V/RS485 ● Power supply voltage 24VDC (-15%~+20%) ● Resolution 16-bit D/A (minimum 0.5um)
    $818.62

    Flange Mounted Stainless Steel Float Switch, 8-1000mm

    SUCH-FLS-UQK03
    ● Operating pressure <1.6MPa ● Contact capacity 220~380VAC/1A ● Control range 8~1000mm ● Operating temperature <150℃
    $312.36

    Magnetostrictive Displacement Transducer, Analog/RS485

    SUCH-DPLS-MH
    ● Measurement range: 0~1000 mm ● Output signal: 4–20mA/0–5V/0–10V/RS485 ● Power supply voltage 24VDC (-15%~+20%) ● Resolution: 16-bit D/A (minimum 0.5 um)
    $683.59

    Triaxial Axis Accelerometer and Vibration Sensor, ±16g, 0–50 mm/s

    SUCH-AS-3016ZW
    ● Acceleration range: ±16g ● Velocity range: 0–50 mm/s ● Temperature range: -40°C to 150°C ● Vibration axis: X, Y, Z axis
    $597.32

    Automatic Dual Float Level Switch, 5A/220V

    SUCH-FLS-70AB
    ● Rated current: AC 5A ● Operating voltage: 380V or less ● Maximum power: 700W ● Lifespan: >8000 cycles
    $64.56

    Miniature Float Level Switch for Water Tank, PP Plastic

    SUCH-FLS-P45
    ● Voltage range: 0-100V DC/AC ● Switching current: 0.5A ● Power: 10W ● Float material: PP
    $53.28

    In modern industrial automation, automotive electronics, consumer electronics, and smart home applications, sensors have become indispensable components. Among these, motion and position sensors play a crucial role by detecting an object's movement, rotation, acceleration, or spatial position, providing essential dynamic data. Whether it's position detection in navigation systems or angle change recognition in robotic arm control, motion and position sensors act as “electronic senses,” driving the development of smart devices. With technological advancements, these sensors are increasingly becoming smaller, more precise, and multifunctional, significantly expanding their application scenarios and industrial boundaries.

    Classification of Motion and Position Sensors (Examples)

    • Accelerometers: Used to detect changes in an object's acceleration, they are widely applied in scenarios such as automatic screen rotation on smartphones, collision detection in vehicles, and motion tracking. Common forms include MEMS accelerometers, which offer advantages such as compact size, low power consumption, and cost-effectiveness.
    • Gyroscope Sensors: Detect angular velocity or rotational changes, often used in conjunction with accelerometers for navigation, attitude control, and robot direction recognition. For example, the flight stabilization system in drones heavily relies on gyroscopes for attitude adjustment.
    • Tilt Sensors: Primarily used to measure the tilt angle of an object relative to the horizontal plane, suitable for applications such as construction machinery, cranes, and solar power plants where precise angle control is required.
    • Encoder: Detects the rotational angle, direction, and speed of an axis, serving as a core component for precise position feedback in motor control and industrial automation. It is divided into incremental and absolute types.

    Motion position sensor types


    Applications of Motion and Position Sensors

    1. Automotive and Transportation: In modern vehicles, motion and position sensors are widely used in critical systems such as ABS systems, Electronic Stability Programs (ESP), Tire Pressure Monitoring Systems (TPMS), and autonomous driving positioning and navigation. Accelerometers and gyroscopes enable precise control of vehicle dynamics, while rotary encoders and position sensors are used to control steering motors and seat adjustments.
    2. Industrial Automation: In mechanical manufacturing and industrial control, rotary encoders and position sensors are used to achieve high-precision motion control and feedback, such as in CNC machining, robotic arm path planning, and conveyor line speed monitoring, forming the foundation of closed-loop control systems.
    3. Consumer Electronics: Smartphones, tablets, and game controllers are commonly equipped with accelerometers and gyroscopes to enable features such as interface rotation, motion tracking, and virtual reality; Wearable devices utilize motion sensors to monitor users' daily activities and health data.
    4. Aerospace and Unmanned Systems: Drones, satellites, and spacecraft have extremely high requirements for attitude, direction, and speed, relying on multi-axis gyroscopes, GPS modules, and IMU (inertial measurement unit) systems to achieve high-precision control and navigation.
    5. Medical and Rehabilitation Devices: Accelerometers and angle sensors are commonly used in rehabilitation assistive devices to record patients' movement trajectories or monitor body posture. Smart prosthetics also rely on these sensors to achieve natural movement.
    6. Agricultural and Construction Machinery: Tilt sensors and position sensors can be used in agricultural autonomous driving systems, construction equipment tilt angle control, and positioning operations to ensure safe operation and improve automation levels.
    Motion position sensor of industrial automation

    Industrial Automation

    Motion position sensor of aerospace

    Aerospace

    Motion position sensor of medical equipment

    Medical Equipment

    Motion position sensor of automotive and transportation

    Automotive and Transportation

    With the development of the Internet of things and artificial intelligence, motion and position sensors are showing the following trends:

    • Miniaturization and low power consumption designs to accommodate more portable devices and wearable devices.
    • Multiple sensors are fused to form an IMU, providing more comprehensive motion information.
    • Support for communication protocols such as Bluetooth, WiFi, and LoRa enables remote monitoring and control.
    • Enhanced data stability and accuracy through intelligent algorithms such as filtering, correction, and predictive models.

    When selecting sensors, factors such as measurement accuracy, response speed, environmental adaptability (e.g., temperature, humidity, shock resistance), and output signal format should be considered based on actual application requirements.

    If you are seeking reliable, cost-effective, and widely compatible motion and position sensors, consider SUCH's professional solutions. As an industrial-grade sensor provider, we offer a variety of models, including accelerometers, gyroscopes, encoders, and inclinometers, to meet diverse application needs from research experiments, industrial control, to smart terminal devices.