WL27-3P2451 Allicdata Electronics
Allicdata Part #:

1882-1440-ND

Manufacturer Part#:

WL27-3P2451

Price: $ 168.43
Product Category:

Sensors, Transducers

Manufacturer: SICK, Inc.
Short Description: SEN PHT PNP COMP LO/DO M12
More Detail: N/A
DataSheet: WL27-3P2451 datasheetWL27-3P2451 Datasheet/PDF
Quantity: 10
1 +: $ 153.11500
5 +: $ 143.54600
10 +: $ 138.76100
25 +: $ 133.97600
Stock 10Can Ship Immediately
$ 168.43
Specifications
Series: --
Part Status: Active
Sensing Method: Retroreflective
Sensing Distance: 3.937" ~ 433.071" (100mm ~ 11m)
Voltage - Supply: 10 V ~ 30 V
Response Time: 500µs
Output Configuration: PNP - Dark-ON/Light-ON - Selectable
Connection Method: Connector, M12, 4POS
Ingress Protection: IP69K
Cable Length: --
Light Source: Red LED
Adjustment Type: Adjustable, Potentiometer
Operating Temperature: -40°C ~ 60°C
Description

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Optical sensors are one of the most widely used sensors in industrial applications. They are used for measuring the intensity of ambient light, or for detecting and monitoring the presence or absence of a target. Among them, photoelectric sensors and industrial optical sensors are widely used. This article analyses the application field and working principle of one type of optical sensor, WL27-3P2451.

Firstly, the application field of optical sensor WL27-3P2451 is mainly related to the products of the modern industry automation equipment. It is suitable for non-contact detection, positioning and counting, which can be used in automated assembly lines and production processes, packaging machines, packaging equipment, printing machines, automated picking equipment, and automatic label machine, etc. Photoelectric sensors and industrial optical sensors are widely used in many electronics products.

Secondly, the working principle of the Optical Sensor WL27-3P2451 is based on the dependency of the sensor\'s output on the light intensity reflected from a target when illuminated. It uses a light source (such as an LED) to emit a beam of light, which passes through a lens to focus the light onto a target. Some of the light is reflected back to the photodetector, which detects it. The amount of light that is detected by the photodetector is proportional to the intensity of the reflected light from the target, and this determines the output signal of the sensor.

Generally, the physical structure of a photoelectric sensor consists of three main components: a light source, such as an LED, a detector such as a photodetector, and an optical element such as a lens. LED sends out light that is reflected by the target, and its intensity is dependent on the distance and angle between the sensor and the target. Then the reflected light is detected by the photodetector and converted into electrical signal which results in an output of the sensor.

Lastly, the advantages of using the Photoelectric Sensor WL27-3P2451 are that it has a high sensitivity and can work in a wide range of sensing distances. It has a small size and low power consumption and can operate even in harsh environmental conditions. It also comes with a wide variety of optical output models to meet the different application requirements. These advantages make the sensor suitable for a variety of industrial applications.

In conclusion, the Photoelectric Sensor WL27-3P2451 is a common type of industrial optical sensor used for non-contact detection, positioning and counting, and it is widely used in automated assemblies and production processes. It has a high sensitivity and can work in a wide range of sensing distances and harsh environmental conditions, making it suitable for a variety of applications. Its working principle is that light from an LED is reflected from the target and the intensity of the reflected light is detected by the photodetector, which produces the output of the sensor. The advantages of this sensor make it very suitable for use in industrial settings.

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

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