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PANASONIC Fiber Sensors (Amplifiers)(Detection Object:Thin Line Shape)

PANASONIC offers products Fiber Sensors (Amplifiers) specified by Detection Object Thin Line Shape 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. PANASONIC products are available to order through MISUMI online 24 hours a day. Free shipping, no minimum order.
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    Digital Mark Sensor LX-100

    Digital Mark Sensor LX-100

    PANASONIC

    In order to deal with any mark detection, a light projecting element with a 3-color LED is installed.

    [Features]
    · Stable mark detection is possible with a coaxial reflection optical system that enables high-precision sensing and a sharp spot of about 1 mm × 5 mm.
    From: ฿ 14,241.67
    Days to Ship: day to ship 80 Day(s)
    day to ship 80 Day(s)
  • You can add up to 6 items per a category to the compare list.
    Thin Type Automatic Sensitivity Setting Beam Sensor [Detached Amplifier] SU-7/SH Series

    Thin Type Automatic Sensitivity Setting Beam Sensor [Detached Amplifier] SU-7/SH Series

    PANASONIC

    It challenges simplicity and downsizing. [Detection Type]Selectable from transmission/reflection/mark sensors, etc.
    From: ฿ 1,614.00
    Days to Ship: day to ship 20 Day(s)
    day to ship 20 Day(s)
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Product Series
CAD
From
Days to Ship
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
You can add up to 6 items per a category to the compare list.
Digital Mark Sensor LX-100
You can add up to 6 items per a category to the compare list.
Thin Type Automatic Sensitivity Setting Beam Sensor [Detached Amplifier] SU-7/SH Series
Brand

PANASONIC

PANASONIC

Product Series

Digital Mark Sensor LX-100

Thin Type Automatic Sensitivity Setting Beam Sensor [Detached Amplifier] SU-7/SH Series

CAD
  • 2D / 3D
  • 2D / 3D
From

฿ 14,241.67

฿ 1,614.00

Days to Ship 80 Day(s) 20 Day(s)
Detection Distance(mm)--
TypePhotoelectric SensorPhotoelectric Sensor
Detection TypeReflectionReflection
Light Axis Arrangement Type--
Head ShapeSquareSquare
Detection Light TypeMulti-RowStandard
Detection ObjectThin Line ShapeThin Line Shape
Amplifier Installation TypeBuilt-in TypeSeparated Type
Detection Light Color3-ColorInfrared
Head MaterialPlasticPlastic
Detection distance 【classification】(mm)--
Operating Environment--
Protection StructureIP67IP62
Amplifier Function (Selectable only when Amplifier is installed)Automatic Threshold Correction-
Fiber Type (Selectable only when Amplifier is not installed)--
Fiber clothing material--

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  1. 1

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Related Categories to Fiber Sensors (Amplifiers)

FAQ Fiber Sensors (Amplifiers)

Question: What are fiber sensor amplifiers and how do they enhance signal detection?
Answer: Fiber sensor amplifiers are devices that boost the strength of signals in fiber optic sensor systems. They enhance signal detection by increasing the amplitude of weak signals, improving sensitivity and extending the detection range. They are connected to the amplifier and the head by a fiber unit, which allows for various combinations and detection in different environments. Fiber optic sensors are small enough to fit in confined areas and can be positioned precisely where needed with flexible fibers.
Question: In what industries and applications are fiber sensors most effectively used?
Answer: Fiber sensors find effective use across various in Industrial Automation and applications most effectively used for the following purposes:
1. Real-time monitoring and control systems: Fiber sensors provide accurate and precise measurements, enabling detailed inspections of components without causing any damage
2. Machine vision and robotics: Fiber sensors can be integrated into machine vision and robotics systems for enhanced safety and performance
Question: How can I select a fiber sensor amplifier that meets my specific application needs?
Answer: To select a fiber sensor amplifier that meets specific application needs, consider the following factors:
1. Output Type: Determine whether a single output NPN or PNP amplifier is required based on the application's electrical compatibility
2. Light Compensation: Some amplifiers offer light compensation, which can be beneficial in applications where light levels may vary
3. Mounting and Installation: Consider the ease of mounting and installation to ensure seamless integration into the existing setup
4. Detection Tasks: Choose an amplifier that is suitable for the specific detection tasks required for the application
5. Environmental Factors: Assess the environmental conditions, such as temperature, humidity, and potential interference, to select an amplifier that can withstand these factors
Question: How do fiber sensors improve efficiency and accuracy in automated systems
Answer: Fiber sensors improve efficiency and accuracy in automated systems by providing real-time monitoring and reliable data. They can detect objects in narrow locations, enabling detection of small objects. Fiber sensors are not affected by electromagnetic interference, making them suitable for use in harsh environments. They can detect the presence or absence, passage, or moving speed of an object in the detection area
Question: What are fiber sensors, and how do they work?
Answer: Fiber sensors utilize optical fibers to detect physical, chemical, or biological phenomena. They modulate light properties within the fiber to measure changes, providing high sensitivity and immunity to electromagnetic interference.
Question: What types of measurements can fiber sensors perform?
Answer: Fiber sensors can measure various parameters like temperature, pressure, strain, displacement, and even biochemical substances, making them versatile for different applications.
Question: What are the advantages of using fiber sensors?
Answer: Fiber sensors offer advantages such as high sensitivity, immunity to electromagnetic interference, suitability for remote sensing, and compatibility with harsh environments.
Question: How do fiber amplifiers enhance optical signals?
Answer: Fiber amplifiers, like erbium-doped fiber amplifiers (EDFAs), inject energy into the fiber medium, boosting signal strength for long-distance transmission without significant loss. They are crucial for reliable data transmission over vast distances in optical communication networks.
Question: What role do fiber amplifiers play in optical communication networks?
Answer: Fiber amplifiers play a pivotal role in boosting signal strength, especially in long-haul and submarine systems, ensuring reliable data transmission over vast distances.
Question: Are fiber sensors suitable for harsh environments?
Answer: Yes, fiber sensors are suitable for harsh environments due to their immunity to electromagnetic interference and compatibility with remote sensing, making them ideal for applications in industries like aerospace, automotive, and oil and gas.
Question: How can fiber sensors contribute to industrial automation?
Answer: Fiber sensors can monitor various parameters in industrial processes, enabling real-time feedback and control, enhancing efficiency, safety, and reliability in automation systems.
Question: What are some common applications of fiber sensors and amplifiers?
Answer: Common applications include structural health monitoring, environmental monitoring, medical diagnostics, oil and gas exploration, and telecommunications.
Question: Do fiber sensors require regular maintenance?
Answer: Fiber sensors typically require minimal maintenance due to their solid-state construction and remote sensing capabilities. However, periodic calibration and inspection may be necessary for optimal performance.
Question: How can I choose the right fiber sensor or amplifier for my application?
Answer: Consider factors such as the required sensitivity, measurement range, environmental conditions, and compatibility with existing systems when selecting fiber sensors and amplifiers for your specific application needs.