Grove: Ultrasonic Distance Sensor

Grove: Ultrasonic Distance Sensor

Grove: Ultrasonic Distance Sensor

£5.00
Sale price  £5.00 Regular price 
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Grove: Ultrasonic Distance Sensor
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Features

  • Save GPIO Resources with Single-Wire Communication: Traditional ultrasonic sensors require separate trigger and echo pins. This module combines both signals into a single GPIO pin, reducing wiring complexity and freeing up I/O resources for other sensors.
  • Wide Measurement Range for Real-World Applications: Measures distances from 3cm to 350cm, suitable for water tank level monitoring, parking assistance, and robotic obstacle avoidance.
  • Works Directly with 3.3V and 5V Systems: Compatible with Raspberry Pi, Seeed Studio XIAO, Arduino, and other popular development platforms without requiring external voltage conversion circuits.
  • Grove Plug-and-Play Ecosystem: Standard Grove connector enables fast, reliable connections with minimal wiring errors during prototyping.
  • Optimized for Rapid Development: Comprehensive documentation, example code, and libraries help makers, educators, and developers get started quickly.
  • Full documents and libraries provided for Arduino, Python, and Codecraft
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£5.00
Sale price  £5.00 Regular price 

Description

The Grove - Ultrasonic Distance Sensor is a non-contact distance measurement module that detects how far an object is by using sound waveS. It can measure from 3cm to 350cm with an accuracy of up to 2mm. This makes it ideal for applications such as water tank level monitoring, smart parking systems, robot obstacle avoidance, and home automation projects.

The Grove - Ultrasonic Distance Sensor is an ultrasonic transducer that utilizes ultrasonic waves to measure distance. It can measure from 3cm to 350cm with an accuracy of up to 2mm. It is a perfect ultrasonic module for distance measurement, proximity sensors, and ultrasonic detectors.

This module has an ultrasonic transmitter and an ultrasonic receiver so you can consider it an ultrasonic transceiver. Familiar with sonar, when the 40KHz ultrasonic wave generated by the transmitter encounters the object, the sound wave will be emitted back, and the receiver can receive the reflected ultrasonic wave. It is only necessary to calculate the time from the transmission to the reception, and then multiply the speed of the sound in the air(340 m/s) to calculate the distance from the sensor to the object.

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