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    • SHARE S100-16 SLAM Scanner
    • SHARE S100-16 SLAM Scanner
    • SHARE S100-16 SLAM Scanner
    • SHARE S100-16 SLAM Scanner
    • SHARE S100-16 SLAM Scanner

    SHARE S100-16 SLAM Scanner

    The SHARE S100-16 is a backpack SLAM scanner that pairs a 16-channel LiDAR sensor capturing 320,000 points per second with integrated RTK and dual 16MP cameras. Its 3-hour hot-swap battery keeps you mapping all day, indoors and out. Buy or hire from Tri-Site Survey Equipment.

    Regular Price £1.00
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    Product Features

    All-Day Dual Battery System

    Two hot-swappable batteries give around 180 minutes of continuous runtime, so crews can keep scanning without downtime, backed by 1TB onboard SSD storage.

    1-Inch Wide-Angle Cameras

    Dual 1-inch mechanical-shutter cameras (16MP) add true-colour detail to every point cloud, producing crisp, well-lit imagery for accurate visual reconstruction.

    RTK/PPK High-Precision Positioning

    Built-in RTK and PPK support delivers horizontal accuracy of 0.8cm + 1ppm and vertical 1.5cm + 1ppm, with absolute accuracy within 5cm and point cloud thickness of ≤5mm.

    Reliable 16-Channel Scanning

    A 16-channel LiDAR captures 320,000 points per second — ideal for detailed indoor and small-to-medium site reconstruction where efficiency and clarity matter more than maximum range.

    Detailed Specifications

    Mechanical Rotating LiDAR for Dense, Consistent Coverage

    The S100-16's 16-channel Hesai mechanical rotating LiDAR generates 320,000 points per second across a full 360° horizontal scan — building consistent, complete point clouds as the operator walks, rather than the sparse returns of early-generation SLAM sensors.

    Surveying-Grade RTK Built In — No External Antenna

    A professional GNSS RTK module with integral antenna is built directly into the S100-16, providing 0.8cm + 1ppm horizontal and 1.5cm + 1ppm vertical accuracy for directly georeferenced scanning without an external receiver or separate equipment. For environments where RTK signal is poor, PPK processing is supported against self-built base stations or cloud PPK.

    Visual Laser GCP Acquisition in Any Terrain

    The S100-16 uses a visual laser-based method for ground control point acquisition — the operator aims the built-in laser at the GCP rather than placing the scanner directly over it, enabling accurate control point capture in challenging terrain including mining sites, caves and uneven ground.

    Hot-Swap Dual Battery for 3-Hour Uninterrupted Operation

    Two 49.436Wh batteries power the S100-16 for up to 180 minutes of continuous field operation. Both are hot-swappable — meaning the system can be kept running by replacing one battery at a time without powering down, extending deployments indefinitely with spare batteries.

    1TB SSD at 10Gb/s for Large-Scale Operations

    A 1TB high-speed SSD handles the storage demands of extended large-area scanning sessions, with data transfer exceeding 1GB/s making post-processing turnaround efficient even with large datasets. Wi-Fi 6 connectivity provides high-speed wireless data management in the field.

    LiDAR Channel
    • 16
    Point Cloud Number
    • 320,000 points/s
    Scanning Range
    • 0.05 ~ 120 m
    Number of Cameras
    • 2
    Sensor Size
    • 1-inch (13.13 × 8.76 mm)
    • Pixel Size 2.4 μm
    Effective Pixels
    • 16 MP
    Dimensions
    • 386.8mm × 152.7mm × 174.4mm
    Weight
    • 2438g
    Wi-Fi
    • Wi-Fi 6, supports 2.4 GHz / 5 GHz, 20m
    Storage Capacity
    • 1TB SSD
    RTK Accuracy
    • Horizontal: 0.8cm + 1ppm
    • Vertical: 1.5cm + 1ppm
    Load-Bearing System
    • Standard Multi-Functional Ergonomic Load-Bearing System
    Battery Capacity
    • 49.436wh (3400mAh) × 2pcs
    Runtime

    Approx. 180 minutes

    Point Cloud Thickness
    • ≤5mm
    Relative Accuracy
    • ≤1cm

    Absolute Accuracy

    • ≤5cm

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    Use Cases

    Extended backpack scanning operations over multiple hours

    Mining, quarry and earthworks 3D mapping

    Industrial facility and infrastructure scanning

    Construction site monitoring and progress capture