WTB4-3E1371 Allicdata Electronics
Allicdata Part #:

WTB4-3E1371-ND

Manufacturer Part#:

WTB4-3E1371

Price: $ 146.70
Product Category:

Sensors, Transducers

Manufacturer: SICK, Inc.
Short Description: NPN DO 3-WIRE 2M CBL
More Detail: N/A
DataSheet: WTB4-3E1371 datasheetWTB4-3E1371 Datasheet/PDF
Quantity: 1000
1 +: $ 133.35800
Stock 1000Can Ship Immediately
$ 146.7
Specifications
Series: W4-3
Part Status: Active
Sensing Method: Proximity
Sensing Distance: 0.157" ~ 5.906" (4mm ~ 150mm)
Voltage - Supply: 10 V ~ 30 V
Response Time: 500µs
Output Configuration: NPN
Connection Method: Cable
Ingress Protection: IP67
Cable Length: 78.740" (2000.00mm)
Light Source: Red (650nm)
Adjustment Type: Adjustable, 5-Turn Potentiometer
Operating Temperature: -40°C ~ 60°C (TA)
Description

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Optical Sensors are a type of electronic device capable of detecting, receiving, and transmitting visible or nonvisible light in order to measure its intensity or presence, and consequently calculate a differentiating result. Optical Sensors can comprise of Photoelectric and Industrial types. This article will examine in greater detail the WTB4-3E1371, an Optical Sensor of the Photoelectric type and its application field and working principle.

The WTB4-3E1371 is one of many types of Photoelectric Optical Sensors. These types of sensor are advantageous as they use the properties of light itself to detect objects, and detect changes in the measurements of light intensity and frequency. The type of sensor is particularly useful for industrial applications where it will detect the presence of objects over long distances. In addition to this, the device is suitable for contact and non-contact sensing, as well as for detecting a range of surfaces.

The WTB4-3E1371 is employed in factory automation and robotics mainly due to its ability to detect objects with a large degree of accuracy and with high resolution. As mentioned previously, the device works using light and its properties, where a light source is used to send out a light beam, and the receiver module located on the other end will detect any changes in the light beam. This detection is made when the object encounters the light beam and the photo sensor module on the receiver end registers a difference in the light intensity from the original light beam.

In operation, the photoelectric optical senor typically has a light source (e.g. an LED) and a receiver module. The light source transmits a light beam from one point and the receiver module receives the light beam at the other end, in the opposite direction. When an object interrupts the light beam, the receiver then detects a change in light intensity and signals this change back to a controller in order to initiate the desired actions in the industrial automation and robotics system.

The proximity of the WTB4-3E1371 sensors is amongst one of its advantages, as the device can detect objects at close proximity accurately and quickly. The device is also highly resistant to interference compared to other types of Optical Sensors, which further increases its accuracy. The WTB4-3E1371 is also capable of operating in a wide range of temperatures and in a wider range of visible and non-visible colors.

The device is used in a variety of industrial applications, such as automatic production lines, automated and robotic assembly lines and infrastructure maintenance. The optical sensor is employed in these types of applications due to its precision and accuracy as it can detect objects with minimal contact and no contact, both with metal and non-metal surfaces. The wide range of temperatures in which the device can still operate and its intrusion resistant qualities are also further advantages of the WTB4-3E1371 when it comes to industrial applications.

In conclusion, the WTB4-3E1371 Optical Sensor is a Photoelectric type device suitable for a vast number of industrial applications, such as factory automation and robotics, due to its accuracy and precision, wide temperature range and anti-interference protection. The device works using light and its properties, where the light source transmits a light beam and the receiver module detects any changes in the light beam. When an object interrupts the light beam, the receiver then detects a change in light intensity and signals this change back to a controller in order to initiate the desired action in the system.

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

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