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GP1A51HRJ00F

GP1A51HRJ00F

Introduction

The GP1A51HRJ00F is a photo interrupter sensor that belongs to the category of electronic components used for detecting the presence or absence of an object. This device is widely utilized in various applications due to its reliable performance and precise functionality.

Basic Information Overview

  • Category: Electronic component
  • Use: Object detection
  • Characteristics: Reliable, precise
  • Package: Through-hole
  • Essence: Photo interrupter sensor
  • Packaging/Quantity: Varies based on supplier

Specifications

The GP1A51HRJ00F features the following specifications: - Operating Wavelength: 950 nm - Collector-Emitter Voltage: 20 V - Collector Current: 50 mA - Power Dissipation: 100 mW - Operating Temperature: -25°C to 85°C

Detailed Pin Configuration

The GP1A51HRJ00F has a standard pin configuration with detailed specifications as follows: - Pin 1: Anode - Pin 2: Cathode - Pin 3: Emitter - Pin 4: Collector

Functional Features

The key functional features of the GP1A51HRJ00F include: - High sensitivity to detect objects - Fast response time - Compact design for easy integration - Low power consumption

Advantages and Disadvantages

Advantages

  • Reliable object detection
  • Precise and accurate performance
  • Compact size for versatile applications
  • Low power consumption

Disadvantages

  • Limited operating temperature range
  • Sensitivity may be affected by ambient light

Working Principles

The GP1A51HRJ00F operates based on the interruption of the infrared light beam between the emitter and receiver. When an object obstructs the light path, the sensor detects the interruption and triggers the corresponding output signal.

Detailed Application Field Plans

The GP1A51HRJ00F is commonly used in the following application fields: - Automated machinery - Printers and copiers - Counting and sorting systems - Security systems - Robotics

Detailed and Complete Alternative Models

Some alternative models to the GP1A51HRJ00F include: - GP1A52HRJ00F - GP1A53HRJ00F - GP1A54HRJ00F - GP1A55HRJ00F

In conclusion, the GP1A51HRJ00F is a reliable and precise photo interrupter sensor that finds extensive use in various industries due to its functional features and compact design.

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Liste 10 perguntas e respostas comuns relacionadas à aplicação de GP1A51HRJ00F em soluções técnicas

  1. What is GP1A51HRJ00F?

    • GP1A51HRJ00F is a reflective photointerrupter, which consists of an infrared emitting diode and a phototransistor.
  2. What are the typical applications of GP1A51HRJ00F?

    • GP1A51HRJ00F is commonly used in printers, copiers, vending machines, and industrial automation equipment for paper detection, edge sensing, and position sensing.
  3. What is the operating voltage range for GP1A51HRJ00F?

    • The operating voltage range for GP1A51HRJ00F is typically 4.5V to 5.5V.
  4. How does GP1A51HRJ00F detect objects?

    • GP1A51HRJ00F detects objects by emitting infrared light and measuring the amount of light reflected back to the phototransistor.
  5. What is the typical output configuration of GP1A51HRJ00F?

    • GP1A51HRJ00F typically has an open collector output configuration.
  6. Can GP1A51HRJ00F be used for non-contact sensing?

    • Yes, GP1A51HRJ00F can be used for non-contact sensing applications due to its reflective sensing mechanism.
  7. What is the maximum sensing distance of GP1A51HRJ00F?

    • The maximum sensing distance of GP1A51HRJ00F is typically around 3mm.
  8. Is GP1A51HRJ00F resistant to ambient light interference?

    • Yes, GP1A51HRJ00F is designed to be resistant to ambient light interference, making it suitable for reliable sensing in various environments.
  9. Does GP1A51HRJ00F have built-in protection features?

    • GP1A51HRJ00F may have built-in features such as reverse polarity protection and output current limiting to enhance its robustness.
  10. Are there any specific precautions to consider when using GP1A51HRJ00F?

    • It is important to avoid exposing GP1A51HRJ00F to direct sunlight or strong artificial light sources, as this can affect its performance. Additionally, proper circuit design and layout considerations should be taken into account to ensure optimal functionality.