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MISUMI Photoelectric Sensors, Fiber Sensors(Head Shape:Square)

MISUMI offers products Photoelectric Sensors, Fiber Sensors specified by Head Shape Square from Automation Components product category. There are a total of 2 items. Search and select detailed specifications of parts for your machine with free CAD downloads. MISUMI products are available to order through MISUMI online 24 hours a day. Free shipping, no minimum order.

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    Photoelectric Sensors with Built-in Amplifier - Standard
    Photoelectric Sensors with Built-in Amplifier - Standard
    Photoelectric Sensors with Built-in Amplifier - Standard
    Photoelectric Sensors with Built-in Amplifier - Standard
    Photoelectric Sensors with Built-in Amplifier - Standard
    Photoelectric Sensors with Built-in Amplifier - Standard

    Photoelectric Sensors with Built-in Amplifier - Standard

    MISUMI

    Photoelectric Sensors with Built-in Amplifier - Standard
    Photoelectric Sensors are a type of sensor that uses light to detect the presence or absence of an object. They offer a wide variety of type to choose from.
    [Feature]
    ● Shape : Compact
    ● Detection Distance (mm.) : 30, 2000 and 5000
    ● Sensing modes : Retroreflective and Thru-beam
    ● Detected Objects : Opaque and small area
    ● Output Mode : NPN
    [Application]
    Photoelectric Sensors are commonly used in industrial applications for example conveyor belts, assembly lines and so on

    CAD :
    2D / 3D
    Detection Distance(mm) Type Detection Type Light Axis Arrangement Type Head Shape Detection Light Type Detection Object Amplifier Installation Type Detection Light Color Head Material Detection distance 【classification】(mm) Operating Environment Protection Structure Amplifier Function (Selectable only when Amplifier is installed) Fiber Type (Selectable only when Amplifier is not installed) Fiber clothing material Fiber minimum bend R(mm)
    30 ~ 5000 Photoelectric Sensor Transparent / Reflection Emitting and Receiving Sections Integrated, Single / Emitting and Receiving Sections Integrated, Reflection Plate Used / Emitting and Receiving Sections Separated Square - Colored Surface / Transparent Body / Small Area Built-in Type Infrared Plastic - Standard / Low Hysteresis IP64 - - - -
    Days to Ship: Quote
    day to ship Quote
  • You can add up to 6 items per a category to the compare list.

    Photoelectric Sensors with Built-in Amplifier - Miniature
    Photoelectric Sensors with Built-in Amplifier - Miniature
    Photoelectric Sensors with Built-in Amplifier - Miniature
    Photoelectric Sensors with Built-in Amplifier - Miniature
    Photoelectric Sensors with Built-in Amplifier - Miniature
    Photoelectric Sensors with Built-in Amplifier - Miniature

    Photoelectric Sensors with Built-in Amplifier - Miniature

    MISUMI

    Photoelectric Sensors with Built-in Amplifier - Miniature
    Photoelectric Sensors are a type of sensor that uses light to detect the presence or absence of an object. They offer a wide variety of type to choose from.
    [Feature]
    ● Shape : Miniature
    ● Detection Distance (mm.) : 30, 1000 and 2000
    ● Sensing modes : Through Beam Type
    ● Detected Objects : Opaque
    ● Output Mode : NPN
    [Application]
    Photoelectric Sensors are commonly used in industrial applications for example conveyor belts, assembly lines and so on

    CAD :
    2D / 3D
    Detection Distance(mm) Type Detection Type Light Axis Arrangement Type Head Shape Detection Light Type Detection Object Amplifier Installation Type Detection Light Color Head Material Detection distance 【classification】(mm) Operating Environment Protection Structure Amplifier Function (Selectable only when Amplifier is installed) Fiber Type (Selectable only when Amplifier is not installed) Fiber clothing material Fiber minimum bend R(mm)
    1000 ~ 2000 Photoelectric Sensor Transparent Emitting and Receiving Sections Integrated, Single / Emitting and Receiving Sections Separated Square - Colored Surface Built-in Type Infrared Plastic - Standard IP64 - - - -
    From: ₹ 1.30
    Days to Ship: Quote
    day to ship Quote
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Detection Distance(mm)
Type
Detection Type
Light Axis Arrangement Type
Head Shape
Detection Light Type
Detection Object
Amplifier Installation Type
Detection Light Color
Head Material
Detection distance 【classification】(mm)
Operating Environment
Protection Structure
Amplifier Function (Selectable only when Amplifier is installed)
Fiber Type (Selectable only when Amplifier is not installed)
Fiber clothing material
Fiber minimum bend R(mm)

You can add up to 6 items per a category to the compare list.

Photoelectric Sensors with Built-in Amplifier - Standard
    Photoelectric Sensors with Built-in Amplifier - Standard
    Photoelectric Sensors with Built-in Amplifier - Standard
    Photoelectric Sensors with Built-in Amplifier - Standard
    Photoelectric Sensors with Built-in Amplifier - Standard
    Photoelectric Sensors with Built-in Amplifier - Standard

    You can add up to 6 items per a category to the compare list.

    Photoelectric Sensors with Built-in Amplifier - Miniature
      Photoelectric Sensors with Built-in Amplifier - Miniature
      Photoelectric Sensors with Built-in Amplifier - Miniature
      Photoelectric Sensors with Built-in Amplifier - Miniature
      Photoelectric Sensors with Built-in Amplifier - Miniature
      Photoelectric Sensors with Built-in Amplifier - Miniature
      Brand

      MISUMI

      MISUMI

      Product Series

      Photoelectric Sensors with Built-in Amplifier - Standard

      Photoelectric Sensors with Built-in Amplifier - Miniature

      CAD
      • 2D / 3D
      • 2D / 3D
      From-

      ₹ 1.30-

      Days to Ship Quote Quote
      Detection Distance(mm)30 ~ 50001000 ~ 2000
      TypePhotoelectric SensorPhotoelectric Sensor
      Detection TypeTransparent / ReflectionTransparent
      Light Axis Arrangement TypeEmitting and Receiving Sections Integrated, Single / Emitting and Receiving Sections Integrated, Reflection Plate Used / Emitting and Receiving Sections SeparatedEmitting and Receiving Sections Integrated, Single / Emitting and Receiving Sections Separated
      Head ShapeSquareSquare
      Detection Light Type--
      Detection ObjectColored Surface / Transparent Body / Small AreaColored Surface
      Amplifier Installation TypeBuilt-in TypeBuilt-in Type
      Detection Light ColorInfraredInfrared
      Head MaterialPlasticPlastic
      Detection distance 【classification】(mm)--
      Operating EnvironmentStandard / Low HysteresisStandard
      Protection StructureIP64IP64
      Amplifier Function (Selectable only when Amplifier is installed)--
      Fiber Type (Selectable only when Amplifier is not installed)--
      Fiber clothing material--
      Fiber minimum bend R(mm)--

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      1. 1

      Related Categories to Photoelectric Sensors, Fiber Sensors

      FAQ Photoelectric Sensors, Fiber Sensors

      Question: What is the main advantage of using photoelectric sensors in industrial applications?
      Answer: Photoelectric sensors offer a significant advantage in industrial settings due to their non-contact detection capability. This feature eliminates the need for physical contact with the target object, reducing wear and tear and enabling reliable, long-term operation. Their quick response time is crucial for applications requiring rapid detection, contributing to increased efficiency in various industrial processes.
      Question: How do I choose the right photoelectric sensor?
      Answer: Selecting the appropriate photoelectric sensor involves considering several factors. Evaluate the sensing distance required for your application, environmental conditions, such as ambient light and temperature, and the characteristics of the target objects. Differentiate between through-beam, reflective, and retroreflective sensors based on the specific needs of your application.
      Question: Can these sensors be used in outdoor environments?
      Answer: Some photoelectric sensors are designed for outdoor use. It's essential to choose sensors with suitable Ingress Protection (IP) ratings to ensure they can withstand exposure to weather elements and maintain reliable performance.
      Question: What is the difference between a through-beam sensor and a reflective sensor?
      Answer: Through-beam sensors consist of separate emitter and receiver units, with the light beam traveling from one unit to the other. In contrast, reflective sensors integrate both the emitter and receiver in the same housing, detecting the light reflected off a target object.
      Question: Can photoelectric sensors detect transparent or highly reflective objects?
      Answer: Certain photoelectric sensors are specifically engineered to detect transparent or highly reflective objects. Choosing sensors with the appropriate technology, such as background suppression or polarization filters, ensures accurate detection in challenging conditions.
      Question: What maintenance do photoelectric sensors require?
      Answer: Photoelectric sensors typically demand minimal maintenance. Regularly cleaning the sensor lens to prevent the accumulation of dust or dirt is recommended to ensure consistent and accurate performance over time.
      Question: Are there any safety considerations when using photoelectric sensors?
      Answer: When using photoelectric sensors, it's crucial to ensure compliance with relevant safety standards. Installation should follow the manufacturer's guidelines, and users should be aware of the sensor's limitations. For critical applications, incorporating redundancy or additional safety measures is advisable to mitigate potential risks.
      Question: What are the advantages of fiber optic sensors?
      Answer: Fiber optic sensors offer several advantages over traditional sensors, including:
      Long distance operation: They can transmit signals over long distances without significant signal degradation.
      Compact and lightweight: They are small and lightweight, making them easy to install in tight spaces.
      Low power consumption: They require very little power to operate.
      High immunity to electromagnetic interference (EMI): They are not affected by electrical noise.
      Versatility: They can be used to measure a wide range of parameters.
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