WL4S-3P2130 Allicdata Electronics
Allicdata Part #:

WL4S-3P2130-ND

Manufacturer Part#:

WL4S-3P2130

Price: $ 105.66
Product Category:

Sensors, Transducers

Manufacturer: SICK, Inc.
Short Description: PNP 3P M8 LO
More Detail: N/A
DataSheet: WL4S-3P2130 datasheetWL4S-3P2130 Datasheet/PDF
Quantity: 1000
1 +: $ 96.04980
Stock 1000Can Ship Immediately
$ 105.66
Specifications
Series: W4S-3
Part Status: Active
Sensing Method: Retroreflective
Sensing Distance: 157.480" (4m)
Voltage - Supply: 10 V ~ 30 V
Response Time: 500µs
Output Configuration: PNP
Connection Method: Connector, M8
Ingress Protection: IP67
Cable Length: --
Light Source: Red (650nm)
Adjustment Type: --
Operating Temperature: -40°C ~ 60°C (TA)
Description

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Optical sensors, specifically photoelectric and industrial sensors, are commonly used to detect the properties of light, an essential component of the environment. The WL4S-3P2130 sensor is one of the most versatile devices for this purpose, providing an exceptional level of accuracy and reliability. This article will discuss the applications and working principle of the WL4S-3P2130 optical sensor.

Applications of the WL4S-3P2130 Optical Sensor

The WL4S-3P2130 is designed for multiple applications, including but not limited to:

  • Industrial automation: The sensor\'s ability to accurately detect objects and objects\' movements makes it an ideal choice for automated industrial processes, such as the positioning of materials and parts in production lines.
  • Aircraft components: The sensor\'s ability to detect data quickly and accurately can be used to monitor the movements and position of aircraft components. This can be used, for example, to monitor the position of flaps and rudders during flight, ensuring accurate navigation and maneuvering.
  • Optical mapping: The sensor can be used for mapping applications, such as surveying and mapping the land from aircraft or satellite images. The sensor can detect details in the images, such as shadows and color variations, and if integrated with other sensors, can provide precise and detailed mapping information.
  • Robotics: The sensor\'s ability to detect objects and their movements can be used to guide robots in various applications. For example, the sensor can detect obstacles and other objects in the environment and guide a robot to avoid them while still performing its tasks.

Working Principle of the WL4S-3P2130 Optical Sensor

The WL4S-3P2130 sensor works by detecting light, or more specifically, the amount of light that is reflected off of objects or surfaces that are illuminated by the sensor\'s light source. The sensor is equipped with a photocell that detects the amount of light that is reflected off of the target object or surface, which is then converted into a numerical value. This value is then used to determine the location of the target object or surface, allowing the sensor to accurately detect and monitor its position. In addition, the sensor is also able to detect changes in the amount of light that is reflected off of the object or surface, allowing it to measure the changes in position or other properties of the object.

The sensor is also equipped with a set of microfilters which filter out all light that is not within the desired range to ensure that the data is accurately detected. The filters also ensure that the data is not distorted by ambient light or other sources of interference. Finally, the sensor\'s output is converted into a signal which can be read by a controlling system to provide accurate information about the object or surface.

Conclusion

The WL4S-3P2130 optical sensor is an exceptionally versatile device that can be used in multiple applications to accurately detect the properties of light. The multiple applications of the device, combined with its accurate and reliable detection of light, make it an ideal choice for industrial automation, aircraft components, optical mapping, and robotics. The working principles of the device involve the use of a photocell and microfilters, which help to detect the amount of light reflected off of a target object or surface and filter out any interfering sources. This data is then converted into a signal which can be read by a controlling system to provide accurate information about the object or surface.

The specific data is subject to PDF, and the above content is for reference

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