3D scanner LS300
measurementfor surface inspectionfor mapping

3D scanner - LS300 - ComNav Technology Ltd. - measurement / for surface inspection / for mapping
3D scanner - LS300 - ComNav Technology Ltd. - measurement / for surface inspection / for mapping
3D scanner - LS300 - ComNav Technology Ltd. - measurement / for surface inspection / for mapping - image - 2
3D scanner - LS300 - ComNav Technology Ltd. - measurement / for surface inspection / for mapping - image - 3
3D scanner - LS300 - ComNav Technology Ltd. - measurement / for surface inspection / for mapping - image - 4
3D scanner - LS300 - ComNav Technology Ltd. - measurement / for surface inspection / for mapping - image - 5
3D scanner - LS300 - ComNav Technology Ltd. - measurement / for surface inspection / for mapping - image - 6
3D scanner - LS300 - ComNav Technology Ltd. - measurement / for surface inspection / for mapping - image - 7
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Characteristics

Number of axes
3D
Applications
measurement, for surface inspection, for mapping
Technology
laser, point cloud
Application domain
underground, for surveying
Configuration
compact, portable, mobile, vehicle-mount
Other characteristics
color, GNSS, simultaneous localization and mapping (SLAM)
Measuring distance

Max.: 120 m
(393'08" )

Min.: 0 m
(0'00" )

Description

The LS300 Laser Scanner uses SLAM technology (simultaneous localization and mapping), which is real-time positioning and mapping technology. It does not rely on GNSS positioning, and performs self positioning and incremental 3D mapping in unknown environments, including indoors and outdoors. Its lightweight design makes measurement work so easy. With synchronous data acquisition, simply walking around can complete the information data collection. ComNav Technology is committed to providing user-centered 3D laser mobile scaner measurement system product solutions, bringing users a better work experience. The LS300 has a 120m working distance, 0.32M points per second sample rate, 360×285 field of scan, and point accuracy up to 1.0cm The larger color display enhances information visibility and simplifies operations, making it easier to use Multiple external ports provide diverse way of collaborative work and expand application possibilities The LS300 dopts two batteries uninterruptible redundancy design, supports hot swapping and replacement of batterie The LS300s unique hybrid technology can perform post processing for the previous data during the scanning. High precision data collected is more faster and efficiency ever before During operation, the app allows real-time browsing of point cloud data with multiple modes for enhanced human-computer interaction Pioneering Efficiency in Laser Scanning LS300 configures a rotating laser sensor probe with 120 meters working distance, offering excellent performance.

The LS300 is an exceptional laser scanning system with remarkable performance and several features. It utilizes SLAM technology (Simultaneous Localization and Mapping), an advanced real-time positioning and mapping technique. It operates autonomously, independent of GNSS positioning, making it suitable for various environments, whether indoor or outdoor.It boasts impressive specifications, including a 120-meter working range and a high sampling rate of 0.32 million points per second. The point cloud accuracy can reach 1.0 centimeter, especially excelling in low reflectivity extended-range mode.

Moreover,it demonstrates robust compatibility with specialized kits, including the handheld, backpack kit, car mount kit, and dorne kit, enhance its adaptability. Its high precision and compatibility make it suitable for various application fields, including smart city, digitization of underground facilities, geology, surveying, and mapping, agriculture, forestry, mining.

By using data processing software specifically designed and developed for the LS series by ComNav, users can handle large volumes of point cloud data and simplify complex tasks, including point cloud denoising, point cloud splicing, shadow rendering, coordinate transformation, automatic horizontal plane fitting, automatic point cloud data report generation, forward photography, and point cloud encapsulation.


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