VL53L3CXV0DH/1 STMicroelectronics Time-of-Flight Distance Sensor, DFN-8 Package

  • Measures precise distances using time-of-flight technology, enabling accurate object detection and ranging.
  • Supports multi-zone ranging, improving spatial awareness by detecting objects across multiple areas simultaneously.
  • Features a compact package that reduces board space, facilitating integration into small or portable devices.
  • Ideal for robotics and drone navigation, providing reliable obstacle avoidance and environment mapping.
  • Undergoes thorough quality testing to ensure consistent performance and long-term operational stability.
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VL53L3CXV0DH/1 Overview

The VL53L3CXV0DH/1 is a state-of-the-art time-of-flight (ToF) ranging sensor designed for accurate distance measurement in industrial and consumer applications. Utilizing advanced single-photon avalanche diode (SPAD) technology, it delivers high-resolution 3D imaging and long-range detection up to several meters. This sensor integrates seamlessly with embedded systems, offering compact footprint and low power consumption. Ideal for presence detection, gesture recognition, and object avoidance, it provides engineers and sourcing specialists with a reliable, cost-effective solution for smart devices. For detailed technical data and sourcing options, visit IC Manufacturer.

VL53L3CXV0DH/1 Technical Specifications

ParameterSpecification
Distance RangeUp to 6 meters
Resolution1 mm
Field of View (FoV)Up to 60?? ?? 60??
Measurement FrequencyUp to 60 Hz
Power Supply Voltage2.6 V to 3.5 V
Power ConsumptionLow power modes available, typical 20 mW
InterfaceI2C compatible
Operating Temperature-20 ??C to +70 ??C
Package TypeCompact 3.5 mm ?? 3.5 mm ?? 1.0 mm LGA

VL53L3CXV0DH/1 Key Features

  • Wide Field of View: Enables simultaneous monitoring over a large area, enhancing spatial awareness in robotics and industrial automation.
  • High Precision Distance Measurement: Achieves millimeter-level accuracy, critical for applications requiring exact object positioning and height detection.
  • Low Power Operation: Supports various power modes to optimize energy use, extending battery life in portable and embedded systems.
  • Seamless I2C Interface: Simplifies integration into existing system architectures, reducing development time and cost.

Typical Applications

  • Industrial automation ?C precise object detection for conveyor systems and robotic arms, improving operational efficiency and safety.
  • Consumer electronics ?C gesture recognition for touchless user interfaces in smart devices and wearable technology.
  • Smart home devices ?C presence sensing for lighting and HVAC control to enhance energy savings and user comfort.
  • Automotive ?C driver assistance systems requiring reliable proximity detection and obstacle avoidance.

VL53L3CXV0DH/1 Advantages vs Typical Alternatives

This sensor offers superior sensitivity and range compared to traditional infrared or ultrasonic distance sensors. Its compact size and low power consumption make it ideal for space-constrained and battery-operated designs. The advanced SPAD technology delivers higher accuracy and faster measurement rates, improving reliability in dynamic environments. Integration is simplified through a standard I2C interface, reducing system complexity and overall cost.

VL53L3CXV0DH/1 Brand Info

The VL53L3CXV0DH/1 is developed by STMicroelectronics, a global leader in semiconductor solutions. ST??s ToF sensors are renowned for their innovation in 3D sensing technology, combining miniaturization with high performance. This product line supports a wide range of applications from industrial automation to consumer electronics, backed by robust software libraries and comprehensive technical support. STMicroelectronics continues to advance sensor technology with a focus on accuracy, reliability, and energy efficiency.

FAQ

What is the maximum distance measurable by this sensor?

The sensor can measure distances up to 6 meters under optimal conditions, making it suitable for medium-range applications requiring precise detection.

How does the sensor interface with a microcontroller or processor?

It communicates via a standard I2C interface, allowing easy integration with most microcontrollers and processors commonly used in embedded systems.

What is the typical power consumption of the device?

Power consumption is optimized through various modes, with typical operation around 20 milliwatts, enabling use in battery-powered and low-energy applications.

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What environmental conditions can this sensor operate in?

The device is rated for operation in temperatures ranging from -20 ??C up to +70 ??C,

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