



LiDAR Laser Distance Sensor Module for Arduino, ESP32 & Raspberry Pi | Time-of-Flight (ToF) Distance Sensor
Measure distances accurately with the LiDAR Laser Distance Sensor Module, designed for Arduino, ESP32, Raspberry Pi, NodeMCU, STM32, and other microcontroller platforms. Using Time-of-Flight (ToF) laser technology, this compact sensor provides fast, precise, and contactless distance measurement, making it ideal for robotics, obstacle detection, automation, drones, smart vehicles, IoT, and industrial applications. Its compact size, low power consumption, and reliable performance make it an excellent choice for educational, research, and professional electronics projects.
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LiDAR Laser Distance Sensor Module for Arduino, ESP32 & Raspberry Pi
The LiDAR Laser Distance Sensor Module is a high-precision Time-of-Flight (ToF) distance measurement sensor that uses laser technology to accurately determine the distance between the sensor and an object. Unlike ultrasonic sensors, LiDAR offers faster response times, improved accuracy, and reliable performance across a wide range of applications.
Compatible with Arduino Uno, Nano, Mega, ESP32, Raspberry Pi, ESP8266 NodeMCU, STM32, and other embedded platforms, this module is widely used in robotics, obstacle avoidance, autonomous vehicles, drones, industrial automation, smart home systems, and research projects.
Its compact form factor makes integration simple, while its laser-based measurement technology delivers dependable distance readings for advanced electronics and IoT applications.
Key Features
- Laser-Based Time-of-Flight (ToF) Distance Measurement
- High Accuracy Distance Detection
- Fast Response Time
- Non-Contact Distance Measurement
- Compact and Lightweight Design
- Low Power Consumption
- Stable and Reliable Performance
- Suitable for Indoor Robotics Applications
- Easy Integration with Microcontrollers
- Compatible with Arduino, ESP32, Raspberry Pi, NodeMCU, and STM32
- Ideal for Robotics, Automation, IoT, and Research
- Excellent for Educational and Industrial Projects
Technical Specifications
| Specification | Details |
|---|---|
| Product Type | LiDAR Laser Distance Sensor Module |
| Sensor Technology | Time-of-Flight (ToF) Laser |
| Measurement Type | Non-Contact Distance Measurement |
| Response Time | Fast |
| Light Source | Laser |
| Compatibility | Arduino, ESP32, Raspberry Pi, NodeMCU, STM32 |
| Applications | Distance Measurement, Robotics, Automation, Obstacle Detection |
Applications
- Robotics
- Obstacle Avoidance
- Autonomous Vehicles
- Drone Navigation
- Distance Measurement
- Smart Parking Systems
- Industrial Automation
- Warehouse Automation
- Smart Home Projects
- IoT Applications
- STEM Education
- Research & Development
- Object Detection
- Position Measurement
- Embedded Systems
Package Includes
- 1 × LiDAR Laser Distance Sensor Module
Why Buy from Horizocart?
- Genuine quality-tested electronics
- Reliable laser distance sensing
- Fast shipping across India
- Secure packaging
- Competitive pricing
- Trusted electronics and IoT supplier
- Excellent customer support
- Suitable for educational, research, and industrial applications
Frequently Asked Questions
Q. What is a LiDAR sensor?
A LiDAR (Light Detection and Ranging) sensor measures distance by emitting laser light and calculating the time it takes for the reflected light to return.
Q. Is this sensor compatible with Arduino?
Yes. It is designed to interface with Arduino-compatible boards, depending on the supported communication interface.
Q. Can I use it with ESP32?
Yes. The sensor is compatible with ESP32 when connected using the supported communication protocol.
Q. Does it work with Raspberry Pi?
Yes. It can be used with Raspberry Pi using compatible software libraries and the appropriate interface.
Q. What is the advantage of LiDAR over ultrasonic sensors?
LiDAR generally provides faster response times, improved precision, and better performance for many distance-measurement applications.
Q. Is this suitable for robotics?
Yes. It is widely used for obstacle detection, navigation, mapping, and autonomous robotics projects.
Q. Can it be used outdoors?
Outdoor performance depends on the specific LiDAR model and environmental conditions. Please verify the manufacturer's specifications for outdoor operating capabilities.


