EX-M2E Allicdata Electronics
Allicdata Part #:

1110-1885-ND

Manufacturer Part#:

EX-M2E

Price: $ 0.00
Product Category:

Sensors, Transducers

Manufacturer: Panasonic Industrial Automation Sales
Short Description: SENSOR 2M INFRARED 12-24V NPN
More Detail: N/A
DataSheet: EX-M2E datasheetEX-M2E Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: EX
Part Status: Obsolete
Sensing Method: Through-Beam
Sensing Distance: 78.7" (2m) 6.6'
Voltage - Supply: 12 V ~ 24 V
Response Time: 1ms
Output Configuration: NPN - Open Collector
Connection Method: Cable
Ingress Protection: IP65
Cable Length: 118.0" (300cm)
Light Source: Infrared
Adjustment Type: --
Operating Temperature: -10°C ~ 60°C
Description

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EX-M2E Application Field and Working Principle

The EX-M2E, or Extended Maximum Minimum Emission Sensor is a type of photoelectric, industrial optical sensor. This type of sensor is used in many applications including automotive, industrial and medical applications, and it is designed for fast-moving applications such as closed-loop control. It is an optical sensor with a light source and photoelectric elements integrated into a single, compact form factor.The EX-M2E is a two-element photoelectric sensor that can work in both dark or light environments. It can detect changes in light intensity on the surface of a target with a resolution of 10 microamps. It also has a wide range of applications due to its high sensitivity. It is capable of measuring a wide range of light or color differentials, including near-field and direct-light sensing. This makes it useful for applications such as motion detection, object recognition, and machine vision.

The Working Principle

The working principle of the EX-M2E is based on the principle of maximum-minimum emission. A light source is provided at one end while the other end has a photoelectric element that detects changes in light intensity.The light source in the EX-M2E is an LED or an LCD. The photoelectric element is a photodiode that detects any change in light intensity when an object passes in front of it. The photoelectric element can detect changes in light intensity up to 10 microamps.When an object passes in front of the EX-M2E, the photoelectric element will detect a change in light intensity and send a signal to a control device which will then take the appropriate action. The control device can be anything from a computer to a robotic arm.The EX-M2E can also be used with other types of photoelectric sensors such as proximity sensors and laser distance sensors to provide more accurate data. This allows the user to set different detection parameters depending on the application.

Advantages of EX-M2E Sensor

The EX-M2E has several advantages. It is able to detect changes in light intensity with very high accuracy and speed. It is also very efficient and cost-effective, as it is a single-element industrial optical sensor.In addition, the EX-M2E is easy to install and use and can be used in a variety of applications. It has a simple two-wire design, making it suitable for many applications.The EX-M2E also has a long lifetime and is very reliable. This is due to its robust design and its ability to withstand shocks and vibrations.

Applications of EX-M2E Sensor

The EX-M2E can be used in a variety of applications. It is primarily used in industrial automation, such as in robotic arms, conveyor belt systems, and sorting machines. It is also used in medical applications to detect changes in light intensity, such as detecting dental caries or cell growth.In addition, it can be used in automotive applications, such as in brake systems and in airbag systems.The EX-M2E is also used in the entertainment industry, such as in motion capture systems and in virtual reality systems.

Conclusion

The EX-M2E is an important industrial optical sensor used in a variety of applications. It has a simple two-wire design, making it easy to install and use. It also has a long lifetime and is very reliable.Its ability to detect changes in light intensity accurately and quickly makes it ideal for applications such as motion detection, object recognition, and machine vision. Its cost-effective nature and versatility make it an attractive alternative for industrial automation applications.

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