ZX1-LD50A86 0.5M Allicdata Electronics
Allicdata Part #:

ZX1-LD50A860.5M-ND

Manufacturer Part#:

ZX1-LD50A86 0.5M

Price: $ 615.64
Product Category:

Sensors, Transducers

Manufacturer: Omron Automation and Safety
Short Description: 50MM PNP 0.5M CONNECTOR
More Detail: N/A
DataSheet: ZX1-LD50A86 0.5M datasheetZX1-LD50A86 0.5M Datasheet/PDF
Quantity: 1000
1 +: $ 559.67300
Stock 1000Can Ship Immediately
$ 615.64
Specifications
Series: --
Part Status: Active
Sensing Method: Reflective
Sensing Distance: 1.969" (50mm)
Voltage - Supply: --
Response Time: 100ms
Output Configuration: PNP - Open Collector
Connection Method: Connector
Ingress Protection: IEC IP67
Cable Length: 19.5" (50cm)
Light Source: --
Adjustment Type: --
Operating Temperature: -10°C ~ 55°C
Description

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Optical sensors, or optical scanners, are a type of device used in industrial control systems to detect and measure the presence of physical objects and environments. They are used in a variety of applications, ranging from machine automation to environmental monitoring. The ZX1-LD50A86-0.5M optical sensor, or opto-coupler, is one of those used in industrial applications. This article provides an overview of the application field and working principle of the ZX1-LD50A86-0.5M.

The ZX1-LD50A86-0.5M optical sensor is used for industrial automation and industrial control applications. It utilizes a semi-conducting LED to provide reset and code level control in a single, low cost, high performance device. The opto-coupler is designed for industrial applications, such as factory automation and control systems. It has an operating temperature range of -20 to +70C, making it suitable for use in harsh industrial environments. It is also easy to install and configure, making it ideal for use in applications with limited space.

The ZX1-LD50A86-0.5M optical sensor uses a semiconducting LED to control the reset and code level control in a single, low cost, and highly reliable device. The opto-coupler uses a photodiode to sense the presence of light and generates an output equivalent to the intensity of the light. This output is then used to switch or control various industrial control systems. The opto-coupler is designed to operate in a wide variety of industrial control systems such as MOSFETs, BJT-based optocouplers, and logic level devices.

The device also features a noise rejection level of up to 29 dB, which ensures accuracy and reliability in applications. The noise rejection feature eliminates unwanted electrical signals that can interfere with the device’s operation. Additionally, the opto-coupler has a high degree of temperature stability and can be used in temperatures ranging from -20 to +70C.

The ZX1-LD50A86-0.5M optical sensor can be used in a variety of applications ranging from laser-based industrial automation systems to machine vision systems. It is ideal for use in applications that require reliable and precise detection and measuring. The device is also suitable for use in applications involving simultaneous production of single- and double-strand optical fibers. Additionally, the device is suitable for applications requiring the use of digital signal signals for communication and control purposes.

The ZX1-LD50A86-0.5M optical sensor’s working principle is based on photon transfer. Photons entering the device’s photodiode generate an electrical current that is proportional to the intensity of the light. This electrical current is then used to control and switch the various industrial control systems. Additionally, the device is designed to reject noise and other external environmental influences.

In conclusion, the ZX1-LD50A86-0.5M optical sensor is an ideal device for industrial automation and control systems. It is designed to be highly reliable and accurate and offers a wide range of operating temperatures. It utilizes photon transfer to generate controllable electrical currents from light and is suitable for applications involving simultaneous production of single and double-strand optical fibers. Additionally, the device is designed to reject noise and other external environmental influences, ensuring accurate and reliable results.

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