WTB4S-3N1134 Allicdata Electronics
Allicdata Part #:

WTB4S-3N1134-ND

Manufacturer Part#:

WTB4S-3N1134

Price: $ 141.26
Product Category:

Sensors, Transducers

Manufacturer: SICK, Inc.
Short Description: NPN CBL LO FOCUS ET
More Detail: N/A
DataSheet: WTB4S-3N1134 datasheetWTB4S-3N1134 Datasheet/PDF
Quantity: 1000
1 +: $ 128.41900
Stock 1000Can Ship Immediately
$ 141.26
Specifications
Series: W4S-3
Part Status: Active
Sensing Method: Proximity
Sensing Distance: 0.157" ~ 4.724" (4mm ~ 120mm)
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
Operating Temperature: -40°C ~ 60°C (TA)
Description

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Optical sensors are essential components in a range of applications in the industrial, automotive and aerospace fields, and have been steadily increasing in complexity and sophistication over the course of the 21st century. The WTB4S-3N1134 is one of the most advanced models of optical sensor in use today, employing both photoelectric and industrial mechanisms in order to detect and monitor a range of conditions quickly and accurately, in a variety of industries.

The WTB4S-3N1134 employs a photoelectric sensor, which has a distinct advantage over other sensing systems in that it accurately measures the amount of light being contacted directly, rather than relying on the strength of reflecting objects or images. It uses a light-dependent resistor (LDR) which is composed of a semiconductor material such as lead sulphide, which allows more or less current to pass through the material depending on the amount of light present.

This allows for two modes of operation for the WTB4S-3N1134; an active mode, where the LDR is exposed to the incoming light, or a passive mode, in which the amount of current passing through the material is used as an indicator of the light’s intensity. The photoelectric mode of operation of the WTB4S-3N1134 is particularly advantageous in applications pertaining to safety, such as detecting the presence or absence of subjects near hazardous machinery, or being used to monitor stop lights at intersections.

The industrial mode of operation of the sensor is used to detect a range of conditions, from pressure and temperature changes, to linear and rotational speed. The basis of its operation lies in the variation in the index of refraction of light when it passes through a given substance. The WTB4S-3N1134 utilizes a light-emitting diode (LED) which is positioned directly on the sensing element, with a reflector shield positioned at the opposite end of the sensor to allow for reflections of the light source to be detected.

When the substance that the WTB4S-3N1134 is being used to sense alters in its composition or structure, the index of refraction of the light passing through the sensing element changes accordingly. This results in a corresponding variation in the amount of light detected by the reflector shield, allowing the change in the condition of the substance to be measured. This mode of operation is commonly used for industrial applications, such as in the production of chemicals, where the presence of solids or liquids, or changes in the general characteristics of the substance, can be measured and monitored with ease.

An important feature of the WTP4S-3N1134 is its ability to detect changes in the conditions being monitored extremely quickly due to the use of a dedicated microprocessor, which can respond virtually instantaneously to any changes detected by the sensing element. This enables extremely rapid response times, and reduces the possibility of errors caused by slow reaction speeds. The system is also designed to be extremely durable, and is capable of withstanding a range of environmental conditions, making it highly reliable in industrial applications.

The WTB4S-3N1134 is a powerful and highly versatile optical sensor, capable of performing a range of functions in both photoelectric and industrial settings. Its unique combination of fast response times, durability, and precise control over the range of conditions being monitored, make it an ideal choice for a variety of applications across a wide range of industries.

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

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