CHCNAV Airborne LiDAR Systems
CHCNAV Airborne LiDAR Systems
CHCNAV Airborne LiDAR Systems
CHCNAV Airborne LiDAR Systems

CHCNAV Airborne LiDAR Systems

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CHCNAV Airborne LiDAR Systems offer five professional UAV LiDAR payloads — AA450, AA15, AA15L, AlphaAir 10, and AU20 — spanning entry-level terrain mapping to flagship ultra-high-density urban modeling. Every system delivers high-density 3D point clouds, direct georeferencing, and native integration with CHCNAV platforms and CoProcess software. The AlphaAir 10 adds integrated RGB imaging for colorized point cloud and combined photogrammetric deliverables.

Five Systems. Entry-Level to Flagship. Every Mission Covered.
• AA450: compact entry-level UAV LiDAR for terrain mapping and survey teams entering airborne workflows ($14,999) • AA15: mid-range high-density multi-return LiDAR for demanding mapping and corridor survey ($79,999) • AA15L: extended-range AA15 variant for large-area and high-altitude airborne missions ($80,000) • AlphaAir 10: integrated LiDAR + RGB system for colorized point clouds and combined photogrammetric deliverables ($65,000) • AU20: flagship ultra-high-density system for precision urban modeling and infrastructure documentation ($139,000) • Integrated IMU + GNSS across all systems for direct georeferencing — no ground control points required • Multi-return LiDAR for vegetation penetration and bare-earth surface extraction • Native integration with CHCNAV UAV platforms and CoProcess post-processing software

From Entry-Level to Flagship. AA450 to AU20 — scale your airborne LiDAR capability to match your mission, platform, and point density requirements.

Direct Georeferencing. Integrated IMU and GNSS on every system — centimeter-level accuracy without ground control points, from the first pass.

Built for the CHCNAV Ecosystem. Every LiDAR system integrates natively with CHCNAV UAV platforms and CoProcess software — from sensor to finished point cloud deliverable.

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Mission-Grade Airborne LiDAR. Five Systems. Every Scale of Survey.

CHCNAV Airborne LiDAR Systems deliver professional-grade UAV and airborne LiDAR payloads engineered for large-area mapping, corridor survey, infrastructure inspection, and precision terrain modeling. From the entry-level AA450 to the flagship AU20, every system is built to deliver high-density point clouds, centimeter-level accuracy, and seamless integration with CHCNAV UAV platforms and CoProcess software.

Select the system that matches your mission scale, point density requirements, and platform specifications.

Available Systems

  • AA450 LiDAR System — Compact, lightweight airborne LiDAR payload for entry-level UAV mapping and terrain survey. Ideal for teams entering airborne LiDAR workflows ($14,999)
  • AA15 LiDAR System — Mid-range airborne LiDAR system with high point density and multi-return capability for demanding mapping and corridor survey applications ($79,999)
  • AA15L LiDAR System — Extended-range variant of the AA15 with enhanced long-range scanning capability for large-area and high-altitude survey missions ($80,000)
  • AlphaAir 10 – Airborne LiDAR + RGB System — Integrated LiDAR and RGB imaging system combining high-density point cloud capture with simultaneous true-color imagery for colorized point clouds and photogrammetric deliverables ($65,000)
  • AU20 LiDAR System — Flagship ultra-high-density airborne LiDAR system for the most demanding precision mapping, urban modeling, and infrastructure documentation workflows ($139,000)

Key Capabilities Across All Systems

  • High-density 3D point cloud generation from UAV and airborne platforms
  • Multi-return LiDAR for vegetation penetration and ground surface extraction
  • Integrated IMU and GNSS for direct georeferencing — no GCPs required
  • LiDAR + RGB fusion for colorized point clouds and combined deliverables (AlphaAir 10)
  • Native integration with CHCNAV UAV platforms and CoProcess post-processing software
  • Designed for mapping, corridor survey, infrastructure inspection, and forestry applications
  • Export to LAS/LAZ and industry-standard geospatial formats

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