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    Infrared Retro Reflective Photoelectric Sensor, 4m

    $52.59
    Infrared retro reflective photoelectric sensor uses invisible infrared light to provide precise and reliable object detection over a distance of up to 4 meters. The detection distance can be easily adjusted to suit various application requirements.With a wide operating voltage range of 10–30V, this mini photo sensor delivers high detection accuracy, strong anti-interference performance, and long service life. Built with high-temperature resistance and premium pure copper wiring, it guarantees durability and consistent performance even in demanding environments.
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    SKU: ATO-PHOS-IRR
    30-day Returns
    Free Shipping
    Delivery date: 6-12 days

    Infrared retro reflective photoelectric sensor for sale, using invisible infrared light for precise detection up to 4 meters, supporting distance adjustment, and operating on 10–30V wide voltage. With high accuracy, strong anti-interference, and durable pure copper wiring, the photo sensor ensures stable performance in demanding environments.

    Specification

    Model ATO-FQL-504MNO ATO-FQL-504MNC ATO-FQL-504MPO ATO-FQL-504MPC
    Output Type NPN NPN PNP PNP
    DC Type NO NC NO NC
    Sensing Distance Normally Open 4 m (Adjustable) Normally Closed 4 m (Adjustable) Normally Open 4 m (Adjustable) Normally Closed 4 m (Adjustable)
    Housing Dimensions 50 × 50 × 18 mm
    Reflector Dimensions 61 × 50 × 7.5 mm
    Sensing Principle Retro-reflective (with reflector)
    Minimum Detectable Object 20 × 20 cm white cardboard
    Supply Voltage 10-30 VDC
    Max. Output Current 200 mA
    No-load Current ≤ 30 mA
    Voltage Drop ≤ 2.5 V
    Response Time < 5 ms
    Light Source Infrared (880 nm)
    Ambient Light Immunity ≤ 10,000 Lux
    Housing Material ABS Plastic
    Ingress Protection (IP) IP55
    Operating Temperature 0~55 °C
    Short-Circuit Protection Yes
    Reverse Polarity Protection Yes
    Switch Hysteresis < 15%
    Ripple ≤ 10%
    Standard Cable Length 2 m
    Weight 93g


    Feature

    • Detection and Adjustment: Uses invisible infrared light with a 4-meter sensing range; the detection distance can be adjusted — clockwise to extend and counterclockwise to shorten, suitable for various applications.
    • Short-Circuit Protection: The photo sensor protects both itself and the load when a short circuit or fault occurs.
    • Overload Protection: Automatically activates when unstable loads cause excessive current, ensuring safe operation.
    • Reverse Polarity Protection: Prevents damage even if the power wires are connected in reverse.
    • Wide Voltage Range: Operates stably within DC10–30V, providing long-term reliability.
    • High-Power Modules: The infrared retro reflective photo sensor features strong transmitting and receiving modules for better resistance to signal attenuation.
    • Voltage Stabilization: The built-in voltage stabilizing module ensures consistent internal voltage and stable performance.
    • Smart Chip: The infrared infrared retro reflective photo electric sensor includes a fast-response chip with high processing speed and precision.
    • High-Temperature Resistance: Works continuously from 0°C to 55°C with excellent accuracy and stability.
    • Durable Wiring: The infrared infrared retro reflective photoeye sensor uses pure copper wire cores with matte, wear-resistant insulation, offering great conductivity, flexibility, and resistance to water, oil, and bending.

    Detail

    Infrared retro reflective photoelectric sensor

    Size (unit: mm)

    Infrared retro reflective photo sensor size

    Application

    Infrared retro reflective photoelectric sensor

    Tips: How to install the infrared retro reflective photoelectric sensor?

    1. Mount the infrared retro reflective photoelectric sensor securely using screws or a mounting bracket, ensuring that the sensing surface faces the reflector directly. Keep the alignment between the emitter, the reflector, and the sensing target precise for stable performance.
    2. Avoid installing the infrared retro reflective photo sensor too close to shiny or highly reflective surfaces that could cause false triggering.
    3. If background reflection cannot be avoided, tilt the sensor slightly (about 5–10°) to minimize unwanted reflection.
    4. Keep the optical lens clean and free from dust or oil buildup. Route the cable properly to prevent damage and interference from high-voltage equipment.

    These steps will ensure your infrared retro reflective photo electric sensor maintains long-term stability and high detection accuracy.

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