GeoCue TrueView 641 LiDAR Sensor

GeoCue SKU: GEO-TV-539
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The GeoCue TrueView 641 is a high-performance LiDAR system combining European precision with American assembly. Built for surveyors and mappers, it delivers long-range accuracy, seamless LP360 data processing, and reliable results—all in an accessible, compact payload that meets NDAA compliance standards for secure U.S.-based operations.


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The GeoCue TrueView 641 combines European laser engineering with U.S.-built integration and support, delivering engineering-grade accuracy, long-range capability, and full NDAA compliance. Compact, precise, and accessible, the TrueView 641 enables surveyors and mapping professionals to collect high-quality LiDAR and imagery data with confidence.

Introducing TV641 LiDAR

Developed in partnership with Triple-IN Laser Technic, the TrueView 641 brings together precision optics, rugged construction, and an efficient workflow supported by GeoCue’s LP360 Drone software suite. It’s the ideal solution for users who demand reliable, high-accuracy data without sacrificing compliance or portability.

Why it fits professional survey workflows

  • NDAA-compliant engineering-grade performance: a U.S.-assembled system with European-manufactured components for federal and enterprise-ready missions.
  • High-precision LiDAR: Triple-IN SLP-LW single-beam laser with ≤3 mm precision and ≤4 mm accuracy.
  • Flexible, long-range data capture: usable up to 170 m on 20% reflective targets, ideal for corridor, topographic, and vegetation mapping.
  • TrueNav positioning: integrated navigation system ensures consistent 3 cm RMSE results under optimal GNSS and control conditions.
  • Lightweight & durable: 2 kg payload supports UAV integration and operates from −10 °C to +50 °C.

LiDAR + Imagery Collection

  • LiDAR scanner: Triple-IN SLP-LW single-beam laser
  • Returns: up to 6 per pulse
  • Usable range: 170 m (20% reflectivity)
  • Pulse repetition rate: up to 125 kHz
  • Precision: ≤3 mm
  • Accuracy: ≤4 mm
  • Field of view: 120°

Trajectory & Orientation

The TV641 features GeoCue’s TrueNav GNSS/INS navigation system for tightly coupled post-processing and precision mapping performance.

  • Position accuracy: ~20–50 mm
  • Orientation accuracy: 0.025° roll/pitch; 0.08° heading

LP360 Drone Workflow

Each TrueView 641 includes LP360 Drone with integrated Strip Align and Photo add-ons. LP360 Drone simplifies LiDAR and imagery post-processing—allowing users to visualize, classify, and deliver professional-grade datasets quickly.

  • LP360 Drone core features: intuitive workflow, multi-flight import, synchronized 2D/3D/profile visualization.
  • Integrated add-ons: Strip Align for Drone (automatic flight line correction), Photo (rapid orthophoto generation).

Designed for Real-World Projects

  • Manufactured in Germany, assembled and supported in the United States.
  • Engineered for survey, construction, and infrastructure workflows requiring NDAA compliance.
  • Compact, 2 kg payload suitable for most professional UAV platforms.

The GeoCue TrueView 641 combines European laser engineering with U.S.-built integration and support, delivering engineering-grade accuracy, long-range capability, and full NDAA compliance. Compact, precise, and accessible, the TrueView 641 enables surveyors and mapping professionals to collect high-quality LiDAR and imagery data with confidence.

Introducing TV641 LiDAR

Developed in partnership with Triple-IN Laser Technic, the TrueView 641 brings together precision optics, rugged construction, and an efficient workflow supported by GeoCue’s LP360 Drone software suite. It’s the ideal solution for users who demand reliable, high-accuracy data without sacrificing compliance or portability.

Why it fits professional survey workflows

  • NDAA-compliant engineering-grade performance: a U.S.-assembled system with European-manufactured components for federal and enterprise-ready missions.
  • High-precision LiDAR: Triple-IN SLP-LW single-beam laser with ≤3 mm precision and ≤4 mm accuracy.
  • Flexible, long-range data capture: usable up to 170 m on 20% reflective targets, ideal for corridor, topographic, and vegetation mapping.
  • TrueNav positioning: integrated navigation system ensures consistent 3 cm RMSE results under optimal GNSS and control conditions.
  • Lightweight & durable: 2 kg payload supports UAV integration and operates from −10 °C to +50 °C.

LiDAR + Imagery Collection

  • LiDAR scanner: Triple-IN SLP-LW single-beam laser
  • Returns: up to 6 per pulse
  • Usable range: 170 m (20% reflectivity)
  • Pulse repetition rate: up to 125 kHz
  • Precision: ≤3 mm
  • Accuracy: ≤4 mm
  • Field of view: 120°

Trajectory & Orientation

The TV641 features GeoCue’s TrueNav GNSS/INS navigation system for tightly coupled post-processing and precision mapping performance.

  • Position accuracy: ~20–50 mm
  • Orientation accuracy: 0.025° roll/pitch; 0.08° heading

LP360 Drone Workflow

Each TrueView 641 includes LP360 Drone with integrated Strip Align and Photo add-ons. LP360 Drone simplifies LiDAR and imagery post-processing—allowing users to visualize, classify, and deliver professional-grade datasets quickly.

  • LP360 Drone core features: intuitive workflow, multi-flight import, synchronized 2D/3D/profile visualization.
  • Integrated add-ons: Strip Align for Drone (automatic flight line correction), Photo (rapid orthophoto generation).

Designed for Real-World Projects

  • Manufactured in Germany, assembled and supported in the United States.
  • Engineered for survey, construction, and infrastructure workflows requiring NDAA compliance.
  • Compact, 2 kg payload suitable for most professional UAV platforms.
Data Collection LiDAR + Imagery
Laser Scanner CHCNAV single beam laser scanner – 1535 nm wavelength
LiDAR Returns Up to 6
Usable Range Up to 300 m for targets with > 20% reflectivity
Pulse Repetition Rate Up to 500 kHz
Precision 5 mm
Accuracy 15 mm
GNSS/INS Performance Position: 10–20 mm
Angle: 0.006° Roll/Pitch, 0.019° Heading
System Accuracy 2–5 cm (absolute) with CHC PPK navigation + 5 mm ranging accuracy
Camera Sensor 26 MP Global Shutter full-frame
Operating Temperature –20° to 50° C
Payload Weight 1.45 kg (payload only)
1.75–1.90 kg (with accessories)

(1) TrueView 641 LiDAR payload
(1) USB thumb drive
(1) GNSS antenna
(1) Sensor hard case
(1) Concentric target
(1) LP360 Drone processing software (includes Strip Align and Photo add-ons)
(1) Hardware & software support (1 year)
(1) Training — 2 days at GeoCue’s Huntsville, AL office

The TrueView 539 LiDAR system is designed for seamless integration with a range of commercial drone platforms from trusted manufacturers. If your preferred UAV is not listed, contact our team to explore custom integration options.

  • DJI
  • Harris Aerial
  • Inspired Flight
  • Skyfront
  • Freefly Systems
  • WiSPR Systems
  • Xer Technologies

Note: Mount kits and availability vary by airframe and configuration. Contact Advexure for current options and lead times.

NDAA compliant Yes
Blue UAS (DIU) listed No
Green UAS (AUVSI) certified No

Where is the TrueView 641 manufactured?

The TrueView 641 sensor is manufactured in Germany and assembled in the United States. It comes bundled with LP360 Drone, a robust geospatial data processing software developed by GeoCue’s team in Huntsville, Alabama.

What is the advantage of a 3D Imaging Sensor compared to a standard LiDAR system?

Traditional LiDAR systems generate a monochromatic 3D point cloud with basic spatial attributes like XYZ position, intensity, return number, scan angle, and GPS timestamp. In contrast, a 3D Imaging Sensor like the TrueView 641 produces a colorized point cloud and offers richer, more actionable datasets by tightly integrating high-resolution imagery with LiDAR data. This results in enhanced feature extraction, classification, and visualization capabilities.

What derived products can be produced by LP360 software?

LP360 Drone enables users to generate a wide range of derived geospatial products from TrueView 641 data, including:

  • Classified ground models (bare earth)
  • Planar surface extractions (e.g., roof prints)
  • Topographic contour maps
  • Stockpile boundaries and volumetric calculations (cut/fill)
  • Cross sections and profile views
  • Rail extraction (classified rail points and vectorized centerlines)
  • Power line extraction (classified wires and vectorized catenaries)
  • Gridded elevation models (from ground or first surface points)
  • Feature-constrained models using breaklines for water bodies, pavements, walls, and more

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