Description:
The CS20 Dual-Resolution 3D TOF LiDAR combines advanced ToF technology with a high-resolution 640x480 image sensor to deliver accurate 3D data up to 5 meters, all while consuming a mere 1.2W of power. Its compact, lightweight design makes it ideal for a wide range of applications, including robotics, facial recognition, 3D modeling, and security systems.
Compatible with Linux, Windows, ROS, and Android, it provides seamless integration with various platforms via a Type C interface, outputting depth, point clouds, and other essential data through an easy-to-use SDK. With its superior performance compared to structured-light cameras.
The ToF sensor boasts a smaller blind spot, fast data capture, and high adaptability to different environments. It offers precise, millimeter-level depth accuracy while being a cost-effective solution that avoids the limitations of other depth sensors. Whether for real-time SLAM, volumetric measurements, or sophisticated interaction systems, the CS20 is engineered for dependable, high-precision 3D perception.
Specifications:
- Model: CS20
- Model Type: LiDAR Sensor
- Distance Measuring Range(M): 5
- Max. Depth Resolution: 640×480/320×240
- Wavelength (nm): 940nm (VCSEL)
- Data Transmission Method: USB 2.0, Type C Interface
- Power Dissipation (W): 1.2W
- Accuracy: 1% @white wall
- Power Supply (V): 5V, 0.5A
- Supported: Linux/Windows/ROS/Android
- Operating Temperature (°C): -10 to 50℃
- Size (mm): 48mm × 34mm × 12mm/1.89×1.34×0.47"
Features:
- Resolution: 640*480
- Adjustable range and frame rate.
- High dynamic measurement range.
- Millimeter-level measurement accuracy.
- Typical measurement range: 0.1- 5m@indoor white wall.
- Supports depth and signal amplitude timing synchronization.
Applications:
- Robot SLAM.
- 3D modeling.
- Face recognition.
- Volume measurement.
- Somatosensory interaction.
- Security monitoring/People counting.
Package Included:
1 x CS20 Dual-Resolution TOF LiDAR Sensor 5V Solid-State 3D Time-of-Flight LiDAR Sensor With 5m Range For Accurate Distance Measurement