• Available indoors and outdoors S3 LiDAR
  • Available indoors and outdoors S3 LiDAR
  • Available indoors and outdoors S3 LiDAR
  • Available indoors and outdoors S3 LiDAR
  • Available indoors and outdoors S3 LiDAR
  • Available indoors and outdoors S3 LiDAR
  • Available indoors and outdoors S3 LiDAR
  • Available indoors and outdoors S3 LiDAR
  • Available indoors and outdoors S3 LiDAR
  • Available indoors and outdoors S3 LiDAR

Available indoors and outdoors S3 LiDAR

Using dToF technology to measure a radius of 40m, IP65 dustproof and waterproof S3 LiDAR

Measurement blind area :
0.05m
Sampling speed :
32000 times/second (32KHz)
Pitch angle :
0°~1.5° (special range can be customized)
Scanning frequency :
Typical value: 10Hz (10Hz - 20Hz adjustable)
Angular resolution :
Typical value: 0.1125° (0.1125° - 0.225°

USD: 930

ablity:Monthly Output300

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  • Product Description
  • Product Params

Product Description

Product description

S3 is a new generation low-cost LiDAR with a high-speed laser ranging sampling capability of 32000 times per second. It adopts non-contact energy and signal transmission technology, overcoming the lifespan limitations of traditional LiDAR and enabling long-term reliable and stable operation.S3 is a two-dimensional laser ranging radar that can perform 360 degree omnidirectional laser ranging scanning in a two-dimensional plane with a radius of 40m and generate planar point cloud map information in that space. These point cloud map information can be used for practical applications such as map measurement, robot positioning and navigation, and object/environment modeling.The typical scanning frequency of S3 is 10Hz (600rpm). At a scanning frequency of 10Hz, a sampling frequency of 32K can achieve an angular resolution of 0.1125 °.


S3 adopts laser time-of-flight ranging technology, coupled with a self-developed high-speed laser acquisition and processing mechanism. It can perform ranging actions 32,000 times per second. During each ranging process, S3 will emit a modulated infrared laser signal. The reflection generated after the laser signal is irradiated onto the target object will be received by the laser acquisition system of S3, and then solved in real time by the processor embedded inside S3. , the distance value between the illuminated target object and S3 and the current angle information will be output from the communication interface.



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