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E52-P35C-N D=10

E52-P35C-N D=10

Product Overview

Category

The E52-P35C-N D=10 belongs to the category of inductive proximity sensors.

Use

It is used for non-contact detection of metallic objects.

Characteristics

  • Package: Cylindrical
  • Essence: Inductive sensing technology
  • Packaging/Quantity: Typically sold individually or in small quantities

Specifications

  • Model: E52-P35C-N D=10
  • Sensing Distance: 10mm
  • Output Configuration: NPN
  • Operating Voltage: 10-30V DC
  • Current Consumption: 10mA max
  • Housing Material: Nickel-plated brass
  • Connection Type: Pre-wired (2m cable)

Detailed Pin Configuration

The detailed pin configuration for the E52-P35C-N D=10 sensor is as follows: - Brown wire: Positive supply voltage (+V) - Blue wire: Output signal (NPN) - Black wire: Ground (GND)

Functional Features

  • Non-contact detection
  • High repeatability
  • Short-circuit and reverse polarity protection
  • LED indication for output status

Advantages and Disadvantages

Advantages

  • Reliable detection of metallic objects
  • Robust construction for industrial environments
  • Easy installation and setup

Disadvantages

  • Limited sensing range
  • Not suitable for non-metallic object detection

Working Principles

The E52-P35C-N D=10 operates based on the principle of inductive sensing. When a metallic object enters its sensing range, it causes a change in the sensor's electromagnetic field, triggering the output signal.

Detailed Application Field Plans

This sensor is commonly used in industrial automation applications such as: - Conveyor systems - Machine tooling - Material handling equipment

Detailed and Complete Alternative Models

Some alternative models to the E52-P35C-N D=10 include: - E52-P15C-N D=5 - E52-P50C-N D=15 - E52-P100C-N D=20

In conclusion, the E52-P35C-N D=10 inductive proximity sensor offers reliable and precise detection of metallic objects within its specified range. Its robust construction and simple operation make it a popular choice for various industrial automation applications.

Word Count: 311

기술 솔루션에 E52-P35C-N D=10 적용과 관련된 10가지 일반적인 질문과 답변을 나열하세요.

  1. What is the E52-P35C-N D=10 used for in technical solutions?

    • The E52-P35C-N D=10 is a proximity sensor used for detecting the presence or absence of an object in various industrial applications.
  2. What is the operating voltage range of the E52-P35C-N D=10?

    • The operating voltage range of the E52-P35C-N D=10 is typically 10-30V DC.
  3. What is the sensing distance of the E52-P35C-N D=10?

    • The sensing distance of the E52-P35C-N D=10 is 10mm.
  4. What type of output does the E52-P35C-N D=10 provide?

    • The E52-P35C-N D=10 provides a digital output, typically NPN or PNP depending on the model.
  5. Is the E52-P35C-N D=10 suitable for use in harsh environments?

    • Yes, the E52-P35C-N D=10 is designed to withstand harsh industrial environments and has a high degree of protection against dust and water.
  6. Can the E52-P35C-N D=10 be used for position sensing in automated machinery?

    • Yes, the E52-P35C-N D=10 can be used for position sensing in automated machinery, such as detecting the presence of components on a conveyor belt.
  7. What is the temperature range for operation of the E52-P35C-N D=10?

    • The E52-P35C-N D=10 is typically rated for operation within a temperature range of -25°C to 70°C.
  8. Does the E52-P35C-N D=10 require any special calibration or setup?

    • No, the E52-P35C-N D=10 is typically a self-contained sensor and does not require special calibration or setup.
  9. Can the E52-P35C-N D=10 be used in conjunction with PLCs or other control systems?

    • Yes, the E52-P35C-N D=10 can be easily integrated with PLCs and other control systems for automation and monitoring purposes.
  10. Are there any specific installation considerations for the E52-P35C-N D=10?

    • It is important to ensure proper alignment and mounting of the E52-P35C-N D=10 for accurate and reliable operation. Additionally, consideration should be given to the environmental conditions and potential sources of interference.