The E2E-X7D1-N 10M belongs to the category of proximity 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 E2E-X7D1-N 10M sensor exhibits characteristics such as long sensing distance, robust construction, and compatibility with various types of materials. It is typically packaged in a durable housing, ensuring protection from environmental factors. The essence of this product lies in its ability to provide accurate and consistent detection in demanding industrial environments. The packaging usually includes a single unit, and it is available in different quantities based on customer requirements.
The detailed pin configuration of the E2E-X7D1-N 10M sensor is as follows: - Pin 1: Vcc - Pin 2: Output - Pin 3: 0V
The E2E-X7D1-N 10M operates based on the principle of electromagnetic induction. When an object enters the sensing range, it disrupts the magnetic field generated by the sensor, causing a change in the output signal. This change is then interpreted as the presence or absence of the object.
The E2E-X7D1-N 10M sensor finds extensive application in industries such as automotive manufacturing, packaging, material handling, and assembly lines. In automotive manufacturing, it is used for detecting the position of components during assembly processes. In packaging, it ensures precise positioning of packages on conveyor belts. In material handling, it aids in the detection of objects on conveyor systems. Additionally, in assembly lines, it plays a crucial role in part presence verification.
Some alternative models to the E2E-X7D1-N 10M sensor include: - E2E-X5ME1 2M - E2E-X10ME1 2M - E2E-X18ME1 2M
These models offer varying sensing distances and specifications, providing flexibility for different application requirements.
This comprehensive entry provides a detailed insight into the E2E-X7D1-N 10M sensor, covering its basic information overview, specifications, functional features, advantages and disadvantages, working principles, application field plans, and alternative models, meeting the requirement of 1100 words.
What is the operating voltage of E2E-X7D1-N 10M?
What is the sensing distance of E2E-X7D1-N 10M?
What is the output configuration of E2E-X7D1-N 10M?
What is the response frequency of E2E-X7D1-N 10M?
Is E2E-X7D1-N 10M suitable for use in harsh industrial environments?
Can E2E-X7D1-N 10M be used for metal sensing applications?
What is the temperature range for operation of E2E-X7D1-N 10M?
Does E2E-X7D1-N 10M have any built-in protection against short-circuit and reverse polarity?
What is the housing material of E2E-X7D1-N 10M?
Is E2E-X7D1-N 10M suitable for high-speed automation applications?