Introducing the E18-D80NK Longer Type Infrared Photoelectric Switch Obstacle Avoidance Sensor Module – a cutting-edge solution for precise and reliable obstacle detection. This sensor module is engineered with advanced technology to provide an efficient and accurate means of avoiding obstacles in various applications. Let's delve into its impressive technical specifications:
Technical Specifications:
- Type: Infrared Photoelectric Switch Obstacle Avoidance Sensor Module
- Model: E18-D80NK Longer Type
- Detection Method: Infrared Reflection
- Detection Range: Extended range for superior obstacle avoidance
- Operating Voltage: 3.3V - 5V DC
- Output Type: Digital Signal
- Output Format: High or Low Logic Level (configurable)
- Indicator LED: Integrated power and detection indicator
- Response Time: Ultra-fast response for quick obstacle detection
- Detection Angle: Wide-angle detection for comprehensive coverage
- Adjustable Sensitivity: Fine-tune the sensor to suit specific applications
- Material: High-quality materials for durability and longevity
- Operating Temperature: Suitable for a wide range of environmental conditions
- Applications: Ideal for obstacle avoidance in robotics, automation, and interactive projects
- Mounting Holes: Convenient holes for easy and secure installation
- Interface: Simple interface for quick integration into circuits
- Compatibility: Compatible with various microcontrollers and development platforms
The E18-D80NK Longer Type Infrared Photoelectric Switch Obstacle Avoidance Sensor Module is designed to enhance the precision and reliability of obstacle detection in your projects. Whether you are working on robotics, automation, or interactive applications, this sensor module provides a versatile and efficient solution. With its extended range, adjustable sensitivity, and quick response time, this sensor module empowers your projects with advanced obstacle avoidance capabilities. Elevate your innovation with the E18-D80NK Longer Type – your go-to choice for intelligent obstacle detection.