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RIEGL VZ-400i

3D Laser Scanning System with Real-Time Registration & Processing

The RIEGL VZ-400i is a cutting-edge 3D Laser Scanning System which combines a future-oriented, innovative new processing architecture and internet connectivity with RIEGL's latest waveform processing LiDAR technology. 


This real-time da

RIEGL LMS GmbH
Riedenburgstrasse 48
3580 Horn
Austria
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Description

The RIEGL VZ-400i is a cutting-edge 3D Laser Scanning System which combines a future-oriented, innovative new processing architecture and internet connectivity with RIEGL's latest waveform processing LiDAR technology. 


This real-time data flow is enabled through dual processing platforms: a dedicated processing system for data acquisition, waveform processing and system operations, and a second processing platform which enables automatic on-board data registration, geo-referencing, and analysis to be executed simultaneously. The VZ-400i provides an integrated 3G/4G LTE modem, Wi-Fi, and Ethernet communications hardware.


With its integrated orientation sensor (MEMS IMU, compass, and barometer) the VZ-400i’s up to 1200 kHz pulse repetition rate can be fully utilized in many environments and orientations. The system provides a high range of flexibility by supporting numerous external peripherals and accessories via its integrated USB ports and stable mounting points. 

Specifications

  • Year of introduction
    2015
  • Height [m]
    0.308
  • Depth [m]
    0.206
  • Width [m]
    0.206
  • Total weight [kg]
    9.7
  • Battery type
    external
  • Scan time per battery [h]
    4.5
  • Range measurement principle
    pulse
  • Laser safety classification
    1
  • Min. Range [m]
    0.5
  • Max. Range [m]
    800
  • Range uncertainty (constant part) [mm]
    5
  • Beam diameter at exit [mm]
    6.5
  • Beam divergence [mrad]
    0.35
  • Intensity recording [bits]
    16
  • Max. vertical field of view [deg]
    100
  • Max. horizontal field of view [deg]
    360
  • Min. horizontal step size [deg]
    0.0015
  • Min. vertical step size [deg]
    0.0007
  • Uncertainty of horizontal step size [deg]
    0.0005
  • Uncertainty of vertical step size [deg]
    0.0007
  • Beam deflection mechanism
    rotating polygon mirror, rotating head
  • Max. measurement rate [kHz]
    1200
  • External Camera
    Y
  • Export formats of camera image
    JEPEG, TIFF, RAW
  • User interface
    integrated touchscreen, tablet, PC
  • Specifications
    Windows, iOS, Android, Linux
  • Additional sensors
    orientation sensors (MEMS), GNSS Receiver. SyncTimer, Laser Plummet
  • Registration/orientation methods
    real-time, control/ tie Points, backsight, overlapping surfaces
  • Software name
    RiSCAN PRO
  • Automatic detection of tie points
    Y
  • Real time visualization during scanning
    Y
  • Geo-referencing
    Y
  • Fitting of primitives
    Y
  • Specification of primitives
    lines, planes
  • Max. size of model [million points]
    1000
  • Training facilities
    Yes
  • Main users
    surveyors, architects, civil engineers, plant design engineers, archeology
  • Main applications
    As-Built Surveying; Architecture & Facade Measurements; Archaeology & Cultural Heritage; Building Infrastructure Management (BIM); Forensics & Crash Scene Investigation; City Modeling; Tunnel Surveying; Civil Engineering; Forestry; Research; Monitoring;
  • Distinguishable features
    High laser pulse repetition rate of up to 1.2 MHz; High speed data acquisition up to 500,000 measurements/sec; Eye safe operation at Laser Class 1; Wide field of view, 100°x360°; Range up to 800 m, accuracy 5 mm; High accuracy, high precision ranging based on echo digitization, online waveform processing, and multiple-time-around processing; Innovative processing architecture for data acquisition and simultaneous geo-referencing in real-time; automatic on-board registration; Easy to use – easy to train (e.g. user friendly touchscreen interface, single touch operation); User-developed apps via python software; Cloud connectivity via Wi-Fi and 3G/4G LTE; fully compatible with the RIEGL VMZ Hybrid Mobile Laser Mapping System; Multiple target capability; Optional full waveform data output; Orientation sensor for pose estimation; Integrated GNSS receiver;

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