VL53L0CXV0DH/1 Overview
The VL53L0CXV0DH/1 is a high-performance time-of-flight (ToF) distance sensor that offers precise ranging capabilities in a compact form factor. Designed for industrial and consumer applications, this sensor provides accurate distance measurements up to several meters using laser-based technology. Its integrated design reduces system complexity and enables easy integration into various devices requiring reliable proximity sensing. Ideal for automation, robotics, and smart devices, the VL53L0CXV0DH/1 combines low power consumption with fast response times, delivering dependable environmental awareness. Available through IC-Hersteller, it supports advanced distance detection needs with high accuracy and robustness.
VL53L0CXV0DH/1 Technical Specifications
Parameter | Spezifikation |
---|---|
Messbereich | Up to 2 meters |
Betriebsspannung | 2.6 V to 3.5 V |
Stromverbrauch | Typical 20 mW during measurement |
Schnittstelle | I2C (up to 400 kHz) |
Genauigkeit | ??3% typical at 1 meter |
Betriebstemperatur | -20??C to +70??C |
Paket Typ | DFN 3.0 x 3.0 x 1.0 mm |
Laser Wavelength | 940 nm (infrared) |
Measurement Timing Budget | Up to 33 ms |
Field of View (FoV) | ??25?? full angle |
VL53L0CXV0DH/1 Key Features
- Time-of-Flight ranging technology: Enables high-precision distance measurements with minimal interference from ambient light, enhancing accuracy in diverse environments.
- Kompaktes DFN-Gehäuse: Facilitates easy integration into space-constrained applications without sacrificing performance or thermal management.
- Geringer Stromverbrauch: Optimizes battery life in portable and wearable devices by operating efficiently during active measurements.
- Fast measurement update rate: Supports real-time sensing applications with quick response times, improving automation and user interaction.
Typische Anwendungen
- Proximity sensing in mobile devices and consumer electronics, allowing precise gesture detection and user presence awareness.
- Obstacle detection and collision avoidance in robotics and drones, ensuring safer navigation in dynamic environments.
- Industrial automation systems for object detection and distance monitoring, improving process reliability and efficiency.
- Smart home appliances such as automated lighting and HVAC control, enhancing energy savings and user comfort.
VL53L0CXV0DH/1 Advantages vs Typical Alternatives
This sensor offers superior ranging accuracy and a compact footprint compared to typical infrared or ultrasonic alternatives. Its integrated laser-based time-of-flight technology delivers consistent results even in challenging lighting conditions, with reduced power consumption and faster response times. The small package size and I2C interface facilitate seamless integration into complex systems, making it a reliable choice for engineers seeking precision and efficiency in proximity sensing solutions.
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VL53L0CXV0DH/1 Brand Info
The VL53L0CXV0DH/1 is part of STMicroelectronics?? VL53L0X sensor family, renowned for pioneering time-of-flight ToF technology. STMicroelectronics, a global semiconductor leader, designs these sensors to provide precise distance measurement capabilities with high integration and low power consumption. The product benefits from ST??s extensive expertise in sensor innovation, quality manufacturing, and robust supply chain support, making it a trusted component in various industrial, consumer, and automotive applications.
FAQ
What is the maximum measurement range of the VL53L0CXV0DH/1 sensor?
The maximum effective measurement range is up to approximately 2 meters under typical indoor conditions. This range allows accurate detection of objects and surfaces within close proximity, suitable for many consumer and industrial applications.
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How does the sensor interface with host devices?
The sensor communicates via a standard I2C interface, supporting clock speeds up to 400 kHz. This allows easy integration with microcontrollers and processors commonly used in embedded systems and industrial controllers.
What is the typical power consumption during measurement?
During active