The Unsoldered GY-VL53L0XV2 Laser Ranging ToF Sensor Module is based on the VL53L0X Time-of-Flight (ToF) sensor, capable of providing accurate distance measurements using laser light. This module operates via serial communication or PWM (Pulse Width Modulation), allowing for flexible integration into various projects. It is ideal for applications where distance measurement and precise proximity detection are required, such as in robotics, automation systems, and gesture recognition devices. The unsoldered version provides flexibility for customization, making it a great option for embedded systems that require a high degree of accuracy in measuring distances.
- VL53L0X Sensor: Based on the VL53L0X ToF sensor, providing accurate laser-based distance measurement.
- Serial and PWM Output: Offers both serial and PWM output options for easy communication with microcontrollers and other systems.
- Distance Range: Measures distances from 30 mm to 2 meters, providing high accuracy for various applications.
- Unsoldered Version: The unsoldered version allows users to customize the board and solder components based on their specific needs.
- Compact and Efficient: Small size and low power consumption make it suitable for integration into space-constrained systems.
Unsoldered GY-VL53L0XV2 Laser Ranging ToF Sensor Module Specifications
- Sensor Type: VL53L0X Time-of-Flight (ToF)
- Distance Range: 30 mm to 2 meters
- Operating Voltage: 3.3V to 5V
- Output: Serial and PWM
- Assembly: Unsoldered version for flexibility
Unsoldered GY-VL53L0XV2 Laser Ranging ToF Sensor Module Applications
- Robotics: Perfect for obstacle detection and navigation in robotic systems.
- Proximity Sensing: Ideal for systems requiring accurate proximity detection, such as touchless controls and automated doors.
- Gesture Recognition: Can be used in gesture-controlled systems to detect hand movements or other gestures.
- Industrial Automation: Suitable for use in industrial environments where high-accuracy distance measurement is required for automation tasks.