The E3S-LS3P 2M belongs to the category of photoelectric sensors and is commonly used for detecting the presence or absence of an object. These sensors are known for their high precision and reliability, making them suitable for a wide range of industrial applications. The E3S-LS3P 2M sensor is characterized by its compact design, long sensing distance, and resistance to various environmental conditions. It is typically packaged in a durable housing, ensuring protection from external elements. Each package contains one E3S-LS3P 2M sensor.
The E3S-LS3P 2M sensor features the following pin configuration: - Pin 1: V+ - Pin 2: V- - Pin 3: Output
The E3S-LS3P 2M sensor operates based on the through-beam sensing method. It consists of a transmitter and receiver. The transmitter emits an infrared beam, which is then received by the receiver. When an object obstructs the beam, the sensor detects the interruption and triggers the output signal.
The E3S-LS3P 2M sensor finds extensive use in industrial automation, particularly in conveyor systems, packaging machinery, and material handling equipment. Its long sensing distance and environmental resistance make it suitable for applications where reliable object detection is critical.
In conclusion, the E3S-LS3P 2M photoelectric sensor is a versatile and reliable solution for object detection in industrial settings. Its long sensing distance, precision, and environmental resistance make it well-suited for a variety of applications, contributing to enhanced operational efficiency and productivity.
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What is the operating voltage range of E3S-LS3P 2M?
What is the sensing distance of E3S-LS3P 2M?
Can E3S-LS3P 2M be used in outdoor environments?
What is the response time of E3S-LS3P 2M?
Does E3S-LS3P 2M have any built-in diagnostics or indicators?
Is E3S-LS3P 2M suitable for use in industrial automation applications?
What is the ambient temperature range for E3S-LS3P 2M?
Can E3S-LS3P 2M detect transparent or glossy objects?
Does E3S-LS3P 2M have any output options?
Is E3S-LS3P 2M resistant to electromagnetic interference (EMI)?