S3 DToF LiDAR Sensor With 40m Range 32KHz Sampling 80000 Lux Sunlight Immunity Go To Ultra Compact 360 Degree Laser Radar For ROS AGV And Service Robots USB UART
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Compact 360-degree LiDAR sensor for robotic navigation with 40m range
✔️ 40m measurement range, 32KHz sampling rate, 80K lux sunlight immunity, compact 4cm design for ROS and AGV robots
✅ 32,000 samples per second for high-speed point cloud data and precise positioning
✅ 80,000 lux ambient light immunity to handle bright indoor or outdoor conditions
✅ Ultra-compact 4cm height design for easy integration into space-limited devices
✅ Supports USB UART and SDKs for Windows, Linux, and ARM platforms for quick setup
✅ Meets Class 1 laser safety standards for safe operation around people
✔️ 40m measurement range, 32KHz sampling rate, 80K lux sunlight immunity, compact 4cm design for ROS and AGV robots
This LiDAR sensor uses direct Time-of-Flight technology to measure distances accurately, making it ideal for mobile robots like AGVs and service bots in warehouses, factories, or homes for tasks such as mapping and obstacle avoidance.
✅ 40m max range at 70% reflectance for reliable long-distance detection✅ 32,000 samples per second for high-speed point cloud data and precise positioning
✅ 80,000 lux ambient light immunity to handle bright indoor or outdoor conditions
✅ Ultra-compact 4cm height design for easy integration into space-limited devices
✅ Supports USB UART and SDKs for Windows, Linux, and ARM platforms for quick setup
✅ Meets Class 1 laser safety standards for safe operation around people
💡 What advantages does dToF LiDAR offer for robotic environment sensing?
This tech provides accurate, real-time distance measurements that's key for robot navigation.
- Delivers high precision in various lighting for better mapping accuracy
- Boosts performance on low-reflectivity surfaces to avoid detection errors
- Enables faster data processing for real-time obstacle avoidance in dynamic settings
- Improves overall reliability, making it a smart pick for automated systems
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