Instrumentation Engineered for
Millimeter-Grade Outcomes.
We combine high-speed terrestrial LiDAR, aerial drone fleets, geodetic GNSS networks, and spatial deep learning models to convert complex physical terrain into certified digital intelligence.
Field-Proven Infrastructure.
Every instrument and computational pipeline is benchmarked for repeatability, environmental ruggedness, and geodetic compliance.

Terrestrial Laser Scanning
Millimeter-level FARO S350 / X330 LiDAR capturing complex industrial and historical geometry.

Drone Photogrammetry
Compact enterprise UAVs for photogrammetric corridor mapping and DTMs.

Dense Point Cloud Processing
Billions of spatial coordinates registered into unified engineering baselines.

Intelligent As-Built BIM
Parametric BIM models with verified structural, MEP, and architectural assets.
Integrated Technology Ecosystem.
Explore our instrumentation, authoring platforms, and machine learning models organized across the three core layers of spatial engineering.
Terrestrial Laser Scanners (TLS)
High-speed phase-shift terrestrial LiDAR capturing millimeter-accurate 3D point clouds with integrated HDR photographic texturing for industrial plants, heritage, and complex civil works.
- S350 & X330 platforms
- Integrated HDR imaging
- In-field target registration
- IP54 environmental rating
Aerial Drone Platforms
Compact UAV platforms equipped with high-resolution RGB sensors for photogrammetric mapping, corridor analysis, and volumetric estimation.
- High-resolution photogrammetry
- RTK positioning support
- Automated waypoint missions
- Rapid deployment
Geodetic GNSS RTK Base & Rovers
Multi-constellation, multi-frequency satellite receivers delivering geodetic-grade base control networks tied directly to national and global datum benchmarks (WGS84 / UTM).
- GPS, GLONASS, Galileo & BeiDou
- Multi-frequency tracking
- Redundant benchmark closure
- Sub-centimeter absolute control
360° Spherical Photogrammetric Rigs
High-resolution spherical vision rigs capturing dense spatial photo sequences for photogrammetric mesh reconstruction, Gaussian Splatting, and virtual walkthroughs.
- Ultra-high radiometric quality
- Gaussian Splatting baseline
- Virtual tour integration
- Zero blind-spot coverage
Precision Quality Assurance Pipeline.
Every millimeter of captured spatial data undergoes strict multi-stage verification before final issuance.
Field Calibration & Network Control
Establishment of primary and secondary geodetic DGPS control networks with multi-frequency RTK calibration. All instrument baselines are cross-checked against national survey benchmarks.
Point Cloud Registration & Synthesis
Multi-station scan registration using cloud-to-cloud and target-based algorithms. Multi-temporal and multi-sensor datasets (TLS, UAV) are synthesized into a unified georeferenced coordinate frame.
Parametric Modeling & Schema Validation
Translation of point cloud geometry into intelligent 3D BIM, CAD drawings, and GIS geodatabases. Complete verification against ISO 19650 BIM execution plans and client BoQ standards.
Engineered to National & Global Standards
Every spatial model and engineering design is delivered in full compliance with applicable statutory mandates and international standards — auditable, reproducible, and tender-ready.
Consult with our engineering team.
Request detailed instrument calibration certificates, sample LAS/BIM datasets, or customized methodology proposals for your project.