SKU: SENS-0078
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Waveshare TOF Mini Laser Range Sensor, UART/I2C, Up to 7.8m Range

₹1,089.00 (Inclusive of all taxes)
Out of Stock

The Waveshare TOF Mini Laser Range Sensor is a compact time-of-flight module offering up to 7.8m range with ±4cm accuracy. It supports both UART and I2C communication for easy integration with microcontrollers like Arduino, Raspberry Pi, and ESP32, and features high ambient light tolerance for indoor and outdoor applications.

Features

  • Time-of-Flight (TOF) laser ranging with up to 7.8m measurement range.
  • High accuracy of ±4cm and narrow 2°–3° field of view for precise targeting.
  • Dual communication interface supports both UART (default 921.6Kbps) and I2C protocols.
  • High ambient light tolerance up to 100,000 lux for reliable operation outdoors.
  • Compact form factor (18.8mm x 12mm) and low power consumption (~100mW).

Out of stock

Description

The Waveshare TOF Mini Laser Range Sensor employs a 940nm infrared laser and a time-of-flight (TOF) measurement principle, calculating distance based on the round-trip time of a reflected light pulse. An embedded MCU runs a proprietary ranging algorithm, delivering stable readings from 0.02m to 7.8m with an accuracy of ±4cm. Its ultra-narrow field of view (2°–3°) minimizes interference from ambient light and stray reflections, enabling reliable performance even in bright conditions up to 100k lux.

Designed for flexible system integration, the sensor operates from a 4.3V to 5.2V DC supply and communicates via configurable UART or I2C interfaces. This makes it directly compatible with a wide range of development platforms, including Arduino, Raspberry Pi, ESP32, and STM32. The module’s compact SMT design and low power profile make it suitable for embedded applications in mobile robotics, drones, and automated systems where space and efficiency are critical.

Key Features

  • 940nm Class 1 infrared laser source for eye-safe, long-range time-of-flight measurement.
  • Embedded STM32 MCU with proprietary algorithm for real-time distance calculation and data output.
  • Narrow 2°–3° field of view enhances signal-to-noise ratio and tolerance to ambient light interference.
  • Dual-interface flexibility with selectable UART (baud rate 4.8Kbps to 3000Kbps) or I2C communication.
  • Wide operating voltage range (4.3V–5.2V) compatible with 5V and 3.3V logic systems via level shifting.
  • Robust performance across an operating temperature range of -10°C to +60°C.
  • Compact PCB footprint (18.8mm x 12mm) and lightweight (1g) design for space-constrained installations.
  • High-value build optimized for precision ranging in robotics, UAVs, and industrial automation.

Applications

  • Mobile robot obstacle avoidance and SLAM (Simultaneous Localization and Mapping) navigation.
  • Drone altitude hold, terrain following, and ceiling detection for indoor flight stabilization.
  • Industrial automation for non-contact object presence detection and bin level monitoring.
  • Precision measuring tools and handheld devices for construction or surveying.
  • AGV (Automated Guided Vehicle) and forklift rear collision avoidance systems.

Technical Specifications

Item TypeLaser Range Sensor
Measuring Range0.02m to 7.8m
Accuracy±4cm
Laser Wavelength940nm
Field of View (FOV)2° to 3°
Communication InterfaceUART / I2C
Default UART Baud Rate921.6Kbps
UART Baud Rate Range4.8Kbps to 3000Kbps
Supply Voltage4.3V to 5.2V DC
Power Consumption~100mW (5.0V, 20mA)
Ambient Light ToleranceUp to 100,000 lux
Operating Temperature-10°C to +60°C
Dimensions (L x W)18.8mm x 12mm
Weight1g

Frequently Asked Questions

What is the operating voltage range for this TOF laser sensor?

The sensor requires a DC supply voltage between 4.3V and 5.2V. It is designed for standard 5V systems but includes headroom for stable operation with slight voltage fluctuations. For use with 3.3V logic devices, ensure proper level shifting on the communication lines (UART TX/RX or I2C SDA/SCL).

How do I choose between UART and I2C communication?

The module supports both interfaces simultaneously. The default output is via UART at 921.6Kbps. You can switch to I2C mode by sending a specific configuration command over UART or by applying a specific voltage to a configuration pin (refer to the datasheet). I2C is useful for multi-sensor networks on a shared bus, while UART provides simple point-to-point communication.

What is the field of view, and why is a narrow FOV important?

The sensor has an ultra-narrow field of view between 2° and 3°. This small cone of detection minimizes the capture of stray light and reflections from objects outside the direct measurement path. This significantly improves tolerance to high ambient light (up to 100k lux) and enhances accuracy by reducing noise, making it suitable for outdoor and brightly lit industrial environments.

Can this sensor be used for drone altitude holding?

Yes, it is well-suited for drone altitude holding and ceiling detection. Its range up to 7.8m and ±4cm accuracy provide stable ground distance feedback. The high light tolerance ensures reliability outdoors, and the lightweight, compact design minimizes payload impact. Ensure secure mounting with the laser pointed downward and consider vibration damping for optimal performance.

What cables are included, and what is the pinout?

The package includes a GH1.25 4-pin cable and a breakout 'squid' cable. The standard 4-pin connector pinout is: Pin 1 (VCC: 4.3-5.2V), Pin 2 (GND), Pin 3 (SDA/ RX), and Pin 4 (SCL/ TX). The function of Pins 3 and 4 depends on the selected communication mode (I2C: SDA & SCL; UART: RX & TX). Always cross-reference with the product documentation for your specific wiring configuration.

Package Includes

  • 1 x TOF Mini Laser Range Sensor Module
  • 1 x GH1.25 4-pin cable
  • 1 x GH1.25 4-pin breakout cable (squid wire)

Additional Information

Weight 0.001 kg
Dimensions 1.88 × 1.2 cm