Turn site planning into autonomous execution
FJD Trion Field robotics connects digital knowledge of a site with machines that can act on it. Instead of guiding equipment through every metre of work, teams capture the operating area, define the task and give the robot a plan it can follow.
The result is a repeatable way to automate outdoor work. Robots can execute planned routes, maintain consistent operating standards and handle recurring tasks while teams supervise progress and focus on the wider site.
Close the gap between the site and every decision that follows
Physical conditions are difficult to measure, document and share, especially when projects are complex, teams are smaller and rework is not an option.
FJD Trion Reality Capture combines LiDAR, cameras, thermal imaging, SLAM and precise positioning to capture sites as they are, then turns that information into 2D drawings, 3D models and different types of reports your team can act on.
Built for professionals who rely on accurate site data
For people whose work depends on understanding real-world conditions, complete and measurable site data is the foundation of a reliable result.
Surveyors & Mappers
Cover more ground without losing control of the data. Move from field capture to georeferenced point clouds, measurements and mapping deliverables in one connected workflow.
Engineering teams
Bring the entire site back to the office. Work from complete, measurable conditions to produce CAD drawings, BIM models and as-built documentation with fewer return visits.
Mine surveyors & quarry managers
Replace scattered measurements with a complete 3D record of the site. Calculate volumes, extract cross-sections and monitor changing terrain without restarting from scratch.
Foresters & vegetation managers
Measure more than individual trees and sample plots. Build a detailed record of terrain and vegetation that supports faster inventory, clearance analysis and forestry reporting.
Utility & energy inspectors
Keep every defect connected to where it was found. Combine spatial, visual and thermal data to inspect assets in context and produce reports that are easier to verify and act on.
Incident investigators & forensic teams
Preserve complete spatial evidence in a measurable 3D record that can be reviewed, analysed and reconstructed long after the site has changed.
How the physical world becomes usable digital intelligence
A connected capture-to-deliver workflow keeps field conditions, measurements and project outputs moving together.
Step 1 : Capture
Record buildings, rooms, infrastructure, industrial assets, roads, tunnels, terrain, forests, stockpiles, accident scenes and entire urban areas. Collect 3D geometry, panoramic imagery, thermal data or high-resolution aerial images by walking, driving, flying or scanning from a fixed position.
Step 3 : Process
Register, clean, merge, colourise and organise point clouds. Review the site, remove unwanted data, take measurements, create sections, calculate volumes and compare captured conditions without returning to the field.
What changes when reality becomes usable data
Complete capture gives teams more information to work from, reduces repeated fieldwork and shortens the path from the site to a finished deliverable.
Up to 50% Faster Scan-to-CAD
Draft from a complete point cloud instead of rebuilding site conditions through repeated manual measurements.
Over 80% More Efficient Forestry Measurement
Capture terrain and tree data across a larger area in one field pass, with less manual measurement between individual points.
Up to 60% Lower Scan-to-BIM Costs
Reduce site revisits and manual survey work by capturing the measurable context needed before modelling begins.
Up to 6× Faster Volume Calculation
Calculate stockpile and terrain volumes directly from captured 3D data instead of relying on repeated point-by-point measurement.
Figures are based on selected FJD Trion workflow comparisons and customer applications. Results vary by site size, field conditions, required accuracy, deliverable complexity, system configuration, processing settings and operator experience.
What you need to capture, process and deliver
Build a professional workflow around the site, the positioning method and the final deliverable.
Switch Between Mobile Capture and Tripod Precision
FJD Trion T1
Move between handheld and tripod scanning when the workflow calls for both mobility and controlled precision. Built for professional capture where the required result matters more than a single scanning method.
Capture More Ground from More Platforms
FJD Trion S2
Capture large terrain and complex sites from the ground, a vehicle or an airborne platform. Select the range and point rate that fit the scale of the work.
Bring Enterprise-Grade Scanning into the Field
FJD Trion X1
Bring professional scanning, panoramic imaging and streamlined control into one field system. Designed for teams that need dependable capture without a complicated field setup.
Take Professional 3D Capture Anywhere
FJD Trion P2
A lightweight, modular scanner for daily fieldwork across buildings, assets and terrain. P2 Vision+ extends the workflow when thermal findings also need full 3D spatial context.
Turn Point Clouds into Project Deliverables
FJD Trion Model
Turn reality-capture data into point clouds, meshes, CAD and BIM-ready outputs, terrain models, orthophotos, cross-sections, volume reports and GIS deliverables.
Bring Scan Data into the Cloud
FJD Trion Model Web
Process, colourise, register, review and share scan data in the browser. Keep field and office teams connected to the same project across desktop, laptop, tablet and mobile.
Measure Where GNSS Alone Falls Short
FJD Trion V100F
Combine precise GNSS positioning with LiDAR and image measurement. Capture points, verify cross-sections and calculate volumes where conventional GNSS access is limited.
Choose the Right Way to Reach Every Point
FJD Trion V10 Series
Choose AR guidance, image-based point capture or long-range non-contact laser measurement with V10a, V10i and V10L receivers built around the same professional field workflow.
Keep Every Survey Point Reliably Positioned
FJD Trion V1
Collect precise positions as a rover or deploy a portable field base for local corrections. A durable system for routine surveying, control and base-rover workflows.
Keep Every Rover Connected to Corrections
FJD Trion N10 CORS
Build a network-based CORS service with centralised station and user management, broad correction coverage and continuous availability for connected field teams.
Turn GNSS Observations into Accurate Control
FJD Trion GNSS Studio
Process static, network-adjustment, PPK and dynamic GNSS observations into accurate control points and reports that support the capture workflow from the beginning.
Map Complete Urban Areas from Above
FJD Trion O1
O1 combines nadir and oblique aerial imaging to capture rooftops, façades and ground surfaces across large urban areas. Create the source data required for detailed city-scale 3D modelling.
Capture More Detail in Every Flight
FJD Trion AM150
AM150A delivers 150 MP medium-format aerial imagery for mapping, inspection and modelling. Capture sharp detail across bright and dark areas while covering more ground with fewer flights.
Choose the right professional setup
Compare capture range, measurement method and field role across the professional reality-capture and GNSS lineup.
Professional 3D LiDAR scanners
Choose between portable everyday capture, enterprise scanning, long-range mobile mapping and flexible handheld-or-tripod precision.
|
|
|
|
|---|---|---|
|
Scanning range
|
70 m @ 80% reflectivity
|
70 m @ 80% reflectivity
|
|
Point rate
|
200,000 pts/s
|
384,000 pts/s
|
|
Accuracy
|
1 cm post-processed relative accuracy
|
1 cm post-processed relative accuracy
|
|
Cameras
|
Built-in: 2 × 48 MP + 1 × 2 MP
Optional external 360° camera |
Front: 1280 × 1024
Panoramic: 2 × 48 MP |
|
Main-unit weight
|
700 g
|
900 g
|
|
Thermal compatibility
|
√
|
×
|
|
Panoramic imaging
|
Optional
|
√
|
Vehicle / airborne capture | × | × |
Best for | Everyday professional use | Enterprise-grade scanning |
|
|
|
|
|---|---|---|
|
Scanning range
|
120-300 m @ 80% reflectivity
|
120 m @ 80% reflectivity
|
|
Point rate
|
320,000-640,000 pts/s
|
640,000 pts/s
|
|
Accuracy
|
1 cm post-processed relative accuracy
|
Handheld: up to 1 cm
Tripod: 4 mm @ 10 m, 8 mm @ 30 m |
|
Cameras
|
Built-in: 2 × 48 MP
Optional external 360° camera |
Built-in: 3 × 48 MP
+ 1 × 2 MP |
|
Main-unit weight
|
1800 g
|
1600 g
|
|
Thermal compatibility
|
√
|
×
|
|
Panoramic imaging
|
Optional
|
√
|
Vehicle / airborne capture | √ | √ |
Best for | Large terrain and complex reality capture | EEfficient workflows where precision matters |
Professional GNSS receivers
Choose the way you need to measure: routine positioning, visual guidance, image-based capture, laser measurement or LiDAR-assisted surveying.
|
|
|
|
|---|---|---|
|
Measurement capability
|
GNSS, LiDAR and image measurement
|
GNSS rover with IMU tilt compensation
|
|
Workflow output
|
GNSS surveying with LiDAR capture, cross-section verification and volume calculation
|
GNSS positioning and base-rover workflows
|
|
Measurement accuracy
|
GNSS H: 8 mm + 1 ppm; V: 15 mm + 1 ppm
|
GNSS H: 8 mm + 1 ppm; V: 15 mm + 1 ppm
|
|
Tilt / IMU
|
60° tilt, calibration-free IMU
|
60° tilt, calibration-free IMU
|
|
Weight / battery
|
1750 g; up to 5 h scanning / 22 h rover operation
|
1070 g; Up to 20 h
|
Best for | Reliable surveying where GNSS is limited | Routine GNSS fieldwork and standard point, line and polygon collection |
|
|
|
|
|
|---|---|---|---|
|
Meas. capability
|
Compact visual GNSS receiver with AR guidance
|
Visual GNSS receiver with image-based point capture
| Laser GNSS receiver for non-contact meas. |
|
Workflow output
|
AR stakeout and CAD layout preview
|
Visual meas. and AR stakeout
| Laser meas., laser stakeout and AR guidance |
|
Meas. accuracy
|
GNSS H: 8 mm + 1 ppm; V: 15 mm + 1 ppm
|
GNSS H: 8 mm + 1 ppm; V: 15 mm + 1 ppm Visual meas.: typically 3 cm at 2-15 m | Laser: ≤3 cm at 0-5 m; ≤4 cm at 5-10 m; ≤5 cm at 10-15 m; range 0-80 m |
|
Tilt / IMU
|
60° tilt, calibration-free IMU
|
60° tilt, calibration-free IMU
| 60° tilt, calibration-free IMU |
|
Weight / battery
|
800 g; up to 15 h
|
970 g; up to 15 h
| 980 g; up to 15 h |
|
Best for
|
Light AR stakeout
|
Visual surveying and image-assisted meas.
| Long-range non-contact meas. |
Professional GNSS base stations
Use a portable field base for local work or a managed CORS system for continuous correction services across a wider network.
|
|
|
|
|---|---|---|
|
Role
|
Long-range GNSS base station for field GNSS operations
|
GNSS CORS system for continuous correction services
|
|
Coverage
|
Long-distance communication; built-in 2 W radio module, optional 5 W; external radio supported
|
Full network coverage; up to 30 km outside network
|
|
Positioning accuracy
|
GNSS H: ±8 mm + 1 ppm; V: ±15 mm + 1 ppm
|
Network GNSS H: ≤20 mm; V: ≤50 mm
|
|
Operational strength
|
Fast setup, portable and suitable for temporary field deployment
|
Centralised station and user management through the FLBS platform
|
|
Reliability
|
IP67; up to 8 h in base mode at 2 W transmit power
|
IP67; over 24 h operating time; 99.9% service availability
|
Best for | Temporary field base stations, surveying and precision agriculture | Regional correction networks, surveying, machine control and precision agriculture |
Where it pays off
Architecture, Engineering & Construction
Forestry & Arboriculture
Mining & Quarrying
Power Infrastructure Inspection
Public Safety & Incident Documentation
Livestock Farming
Turf & Landscape Management
Frequently asked questions
Learn how FJD Trion Reality Capture combines 3D scanning, aerial imaging, GNSS positioning and processing software to turn physical environments into point clouds, maps, models, measurements and professional deliverables.
Professional reality capture records the measurable geometry, position and visual condition of a physical environment. The captured data is then processed into point clouds, maps, models, drawings, measurements and reports.
Depending on the system, teams can collect 3D LiDAR data, panoramic imagery, thermal information, precise GNSS positions and high-resolution nadir or oblique aerial images.
Ground scanners capture buildings, assets, terrain and other environments from close range. Aerial systems cover wider areas from above, making them suitable for urban mapping and large-scale modelling. The resulting datasets can contribute to the same processing and delivery workflow.
GNSS connects captured information to real-world coordinates. This allows scan, survey and aerial data to align with existing CAD, GIS, mapping and project coordinate systems.
Outputs can include point clouds, CAD drawings, BIM models, textured 3D models, city-scale models, orthophotos, digital terrain models, cross-sections, volume calculations, GIS datasets, inspection reports and as-built documentation.
P2 supports portable everyday scanning, P2 Vision+ adds thermal context, X1 is designed for enterprise-grade capture, S2 Series covers large and complex sites, and T1 combines handheld mobility with tripod precision.
O1 captures nadir and oblique aerial imagery for detailed urban 3D modelling. AM150A provides high-resolution medium-format imagery for aerial mapping, inspection and modelling workflows.
Model supports professional processing, analysis, modelling and deliverable creation. Model Web brings browser-based processing, registration, review and collaboration to teams working across different locations and devices.
Start with the environment, required coverage, positioning accuracy and final deliverable. Then select the ground or aerial capture method, GNSS setup and processing software that support those requirements.



