PMpro-2b LiDAR Mapping System


Long-range industrial UAV with integrated LiDAR and RGB mapping payload

2b Lidar System
Payload Model
2 cm
LiDAR Accuracy
250 m
LiDAR Range
5
Number of Returns
300000 pts/s
Point Rate
48 MP
RGB Camera
20 ×
Optical Zoom
42 min
Flight Time
9.3 mi
Operating Range
2.5 kg
Payload Capacity
gnss / rtk / ppk
Positioning
From $59,900

Final pricing depends on payload configuration, batteries,
accessories, positioning options, software, and support requirements

Configuration NDAA

NDAA Configuration — Included

  • NDAA-Compliant UAV Platform
  • Integrated Payload
  • NDAA-Compliant Flight Controller & Communication System
  • Remote Controller / Ground Control Unit
  • 1 Flight Battery
  • Battery Charger
  • Payload Mount & Integration Hardware
  • System Setup & Pre-Shipment Testing
  • Documentation & Training Materials
  • Basic Remote Training — materials + 1–2 hour video session

NDAA Optional Add-ons

Additional Flight Battery
From $495

Additional Battery Set
From $895

Additional / Backup Charger
From $395

Rugged Transport Case
From $595

Extended Remote Training
From $750

On-Site Training
From $2,500

On-Site Setup & Commissioning
From $2,000

Configuration Commercial

Commercial / Non-NDAA Configuration — Included

  • Commercial UAV Platform
  • Integrated Payload
  • Commercial Flight Controller & Communication System
  • Remote Controller / Ground Control Unit
  • 1 Flight Battery
  • Battery Charger
  • Payload Mount & Integration Hardware
  • System Setup & Pre-Shipment Testing
  • Documentation & Training Materials
  • Basic Remote Training — materials + 1–2 hour video session

Commercial / Non-NDAA Optional Add-ons

Additional Flight Battery
From $495

Additional Battery Set
From $895

Additional / Backup Charger
From $395

Rugged Transport Case
From $595

Extended Remote Training
From $750

On-Site Training
From $2,500

On-Site Setup & Commissioning
From $2,000

Software and Data Workflow

The mission continues after landing. A professional workflow turns a field operation into information that can be reviewed, delivered, and integrated.

Surveying & Topographic Mapping

Capture accurate terrain and surface data across construction sites, development areas, and complex earthworks. LiDAR mapping supports elevation modeling, topographic surveys, and site progress documentation.

Forestry & Vegetation Mapping

Collect three-dimensional data in wooded and vegetated environments where surface visibility is limited. Multi-return LiDAR helps model both canopy structure and underlying terrain.

Powerline & Utility Inspection

Survey utility corridors with detailed spatial data for poles, wires, terrain, and surrounding vegetation. LiDAR workflows support corridor mapping, clearance assessment, and infrastructure documentation.

Mining & Stockpile Measurement

Map open-pit operations, quarries, and stockpile areas with fast aerial data collection. LiDAR datasets support terrain modeling, volume calculations, and ongoing site monitoring.

Specifications

Review the key technical specifications of this drone configuration, including aircraft performance, positioning systems, and thermal and RGB imaging capabilities.

Aircraft

Aircraft Type
multirotor
Defines the aircraft platform and its basic flight configuration.
Flight Time
42 min
Maximum stated airborne time per flight for this configuration.
Operating Range
9.3 mi
Maximum stated operating distance supported by the aircraft and control link.
Payload Capacity
2.5 kg
Maximum payload weight the aircraft platform is designed to carry.
Frame Size
780 mm
Overall platform size, useful for transport, deployment, and operating-space planning.
Max Wind Speed
12 m/s
Maximum stated wind speed for operation of the aircraft.

Positioning

Positioning Systems
gnss / rtk / ppk
Positioning technologies available for navigation and repeatable data capture.

Thermal & RGB Imaging

RGB Camera Resolution
48 MP
Determines the level of visible-image detail available for inspection and documentation.
Optical Zoom
20 ×
Provides closer visual detail while maintaining greater distance from the inspected asset.

Compatible Software

This drone configuration supports a range of software tools for flight planning, thermal analysis, photogrammetry, mapping, and inspection reporting. Compatibility depends on the selected flight controller, payload, data formats, and final system configuration.

QGroundControl

This LiDAR configuration supports software for mission planning, flight control, point cloud processing, photogrammetry, and geospatial analysis. Final compatibility depends on the selected flight controller, LiDAR payload, positioning workflow, and supported data formats.

Mission Planner

Mission planning and ground control software for compatible PX4- and MAVLink-based aircraft. Supports waypoint missions, automated survey routes, flight monitoring, vehicle configuration, and repeatable data-collection operations.

Mission LiDAR Processing Suite

Ground control software for ArduPilot-based aircraft. Used for automated mapping missions, flight monitoring, mission configuration, parameter management, telemetry review, and post-flight log analysis.

Pix4Dmatic

Processes raw LiDAR, GNSS, and trajectory data into georeferenced point clouds. Typical workflows include trajectory correction, point cloud generation, filtering, classification, coordinate transformation, and export to common GIS and CAD formats.

AeroScan L6 LiDAR FAQ

What is the AeroScan L6 LiDAR system designed for?

The AeroScan L6 LiDAR system is designed for professional aerial surveying, topographic mapping, forestry, utility and corridor mapping, construction, mining, stockpile measurement and other applications that require accurate three-dimensional geospatial data.

How accurate is the AeroScan L6 LiDAR system?

The integrated LiDAR system is designed for high-accuracy mapping, with final survey accuracy depending on the selected payload, flight altitude, GNSS conditions, trajectory processing, calibration and the use of RTK, PPK or ground control points.

Can the LiDAR system map terrain beneath vegetation?

Yes. Multi-return LiDAR can record reflections from vegetation as well as the ground surface through gaps in the canopy, making the system suitable for forestry, terrain modeling and ground-surface extraction. Actual ground recovery depends on vegetation density and survey conditions.

Does the AeroScan L6 support RTK and PPK?

Yes. The AeroScan L6 can be configured for RTK and PPK positioning workflows to improve aircraft trajectory accuracy and georeferencing of LiDAR and RGB datasets.

How long can the drone fly with a LiDAR payload?

Flight time depends on the selected LiDAR payload, battery configuration, total takeoff weight, wind, temperature and flight profile. The final endurance specification should be based on the exact system configuration selected for the project.

Can the LiDAR payload include an RGB camera?

Yes. LiDAR configurations can include an integrated or synchronized RGB camera for colorized point clouds, visual site documentation and photogrammetric outputs. Camera availability and specifications depend on the selected payload configuration.

What outputs can be generated from a LiDAR survey?

Depending on the selected processing workflow, LiDAR data can be used to generate georeferenced point clouds, digital terrain models, digital surface models, contour lines, cross-sections, elevation profiles, stockpile volumes, measurements and other GIS or CAD deliverables.

What types of LiDAR projects can the AeroScan L6 handle?

The system can be configured for topographic surveys, corridor mapping, powerline and utility inspections, forestry, vegetation analysis, construction progress mapping, mining, stockpile surveys and other projects requiring dense three-dimensional point-cloud data.

Is the AeroScan L6 LiDAR system NDAA compliant?

The AeroScan L6 is available in different hardware configurations. An NDAA-compliant configuration can be selected when the project, organization or procurement requirements specify compliant components and sourcing.

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