FJD Trion V100F GNSS LiDAR Fusion System

FJD Trion V100F GNSS LiDAR Fusion System

Brand: FJD
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FJD TRION · GNSS + LiDAR FUSION FJD Trion V100F GNSS LiDAR Fusion System Combine GNSS positioning, 3D LiDAR scanning, imaging, and IMU in one integrated system for continuous, georeferenced spatial capture across open-sky, obstructed, and GNSS-limited environments. Your browser does not support the video tag. GNSS · LiDAR · CAMERA · IMU ONE SYSTEM FOR COMPLEX FIELD CONDITIONS From Point Survey to Spatial Capture FJD Trion V100F combines GNSS surveying, 3D LiDAR, cameras, and IMU into a single field system. It is designed to keep measurement and spatial data capture moving as site conditions change, helping surveyors collect points, lines, surfaces, cross-sections, and volumes across demanding engineering environments. Built for High-Performance Field Capture *Specifications are based on FJD Trion published data and specified test conditions. Actual performance may vary depending on environment, surface reflectivity, satellite visibility, operating mode, and other conditions. INTEGRATED SENSOR PLATFORM Four Technologies. One Field Workflow. V100F brings positioning, scanning, imaging, and motion sensing together to create a unified workflow for georeferenced spatial capture. 01 GNSS Multi-constellation GNSS positioning supports RTK, PPK, static, and other positioning workflows for georeferenced field data. 02 3D LiDAR A 32-line LiDAR sensor captures surrounding geometry with a 360° horizontal field of view. 03 Cameras Surveying, color, and bottom cameras provide visual references and support target selection and field verification. 04 IMU Integrated motion sensing supports tilted RTK measurement and spatial data capture as the device orientation changes. GNSS-LIMITED MEASUREMENT Keep Measuring When GNSS Conditions Change Outdoor environments do not always provide uninterrupted satellite visibility. Bridges, culverts, tunnel entrances, urban canyons, and other structures can create GNSS-limited areas. V100F combines GNSS, LiDAR, IMU, and imaging to extend field capture into nearby areas where conventional GNSS measurement may become difficult. SUREFIX Typical ±5 cm @ 20 m Radius SureFix is designed to maintain pole-based measurement continuity as you move from open-sky areas into nearby GNSS-limited environments. NON-CONTACT MEASUREMENT Measure Difficult Areas Without Approaching Them Capture targets from a safer distance in areas that may be hazardous, restricted, difficult to access, or inconvenient to reach directly. Your browser does not support the video tag. Trench Edges Select and measure trench boundaries without moving directly to the edge. Wall Corners Use captured imagery to identify targets and obtain LiDAR-based coordinates. Under Bridges Capture difficult areas without requiring direct access to the measurement target. Slope Boundaries Measure selected targets from captured images for field documentation and analysis. Typical ±5 cm @ 20 m CROSS-SECTION CAPTURE Capture Tunnels, Culverts & Slopes in One Pass Use the integrated LiDAR system to capture complex three-dimensional structures and generate spatial data for cross-section verification and engineering analysis. Tunnels Cross-section capture Culverts Spatial documentation Slopes Surface measurement Earthwork Volume analysis REAL-TIME FIELD RESULTS From Point Clouds to Volume Results Capture stockpiles, slopes, and earthwork sites and use FJD Trion Survey to perform volume calculations directly in the field. STEP 01 Capture Collect spatial data and point clouds in the field. STEP 02 Process Generate the spatial data required for measurement. STEP 03 Calculate Calculate stockpile, slope, and earthwork volumes. STEP 04 Deliver Review results and prepare project data for further processing. TILT-COMPENSATED RTK Measure Without Keeping the Pole Perfectly Vertical Integrated IMU technology supports tilt-compensated RTK measurement, allowing the system to maintain positioning performance when the surveying pole is tilted. 0°–60° Tilt Compensation Range 8 mm + 0.6 mm/° RMS RTK accuracy with tilt compensation INTEGRATED IMAGING Visual Data Meets Spatial Data V100F integrates multiple cameras to support surveying, visual reference, target selection, and field verification. 12 MP Surveying Camera 73° H × 58° V × 87° D field of view for surveying and visual measurement workflows. 2 × 12 MP Color Cameras Wide-angle color imaging supports visual reference and field target selection. 2 MP Bottom Camera Additional downward-facing imagery supports field reference and device positioning workflows. FJD TRION WORKFLOW From Field Capture to Project Deliverables Move from field collection to point-cloud processing, measurement, analysis, and project output through the FJD Trion software ecosystem. STEP 01 Field Capture Capture survey points, georeferenced point clouds, images, cross-sections, and field data. STEP 02 FJD Trion Survey Perform field measurement, review spatial data, and calculate applicable volume results. STEP 03 FJD Trion Model Process point clouds, review measurements, perform analysis, and prepare project outputs. STEP 04 Deliver Organize processed spatial data and prepare project-specific deliverables. Built for Demanding Engineering Environments V100F is designed for field conditions where surveyors need both precise positioning and three-dimensional spatial capture. Urban Canyons Capture spatial data where surrounding buildings can limit satellite visibility. Mining & Earthwork Capture terrain, stockpiles, slopes, and earthwork areas for measurement and volume analysis. Tunnels & Underground Mining Capture complex underground environments and generate spatial data for cross-section analysis. Bridges & Viaducts Measure areas beneath structures and capture difficult-to-access spatial targets. Road Engineering Support road surveying, terrain capture, cross-sections, and infrastructure documentation. Utility Trenches Capture trench edges and other difficult targets with non-contact measurement workflows. FIELD CONNECTIVITY Stay Connected in the Field Multiple communication interfaces support flexible connection, correction, data transfer, and field workflows. Built-in UHF 4G LTE Wi-Fi 2.4 / 5 GHz Bluetooth NFC USB Type-C Technical Specifications GNSS Specification Details GPS L1 C/A, L1C, L2C, L2P, L5 GLONASS L1, L2, L3 BeiDou B1I, B2I, B3I, B1C, B2a, B2b Galileo E1, E5a, E5b, E6 QZSS L1, L2C, L5, L6 NavIC L5 SBAS L1 C/A Positioning Rate 1 Hz, 2 Hz, 5 Hz, 10 Hz, 20 Hz Positioning & Survey Accuracy Mode Accuracy RTK Accuracy H: 8 mm + 1 ppm RMS V: 15 mm + 1 ppm RMS RTK with Tilt Compensation RMS: 8 mm + 0.6 mm/° tilt Tilt angle: 0°–60° LiDAR Survey Typical ±5 cm @ 20 m SureFix Survey Typical ±5 cm @ 20 m radius High-Precision Static H: 2.5 mm + 0.1 ppm RMS V: 3.5 mm + 0.4 ppm RMS Post-Processing Static H: 2.5 mm + 0.5 ppm RMS V: 5 mm + 0.5 ppm RMS PPK Accuracy H: 3 mm + 1 ppm RMS V: 5 mm + 1 ppm RMS Autonomous H: 1.5 m RMS V: 2.5 m RMS LiDAR Range 40 m @ 10% reflectivity 60 m @ 80% reflectivity Field of View H 360° × V 62° Number of Lines 32 Eye Safety Class Class 1 Camera System Surveying Camera 1 × 12 MP 73° H × 58° V × 87° D Color Cameras 2 × 12 MP 240° H × 240° V × 240° D Bottom Camera 1 × 2 MP 77° H × 62° V × 92° D Communication & Data Built-in UHF Radio 410–470 MHz / 902–928 MHz 2 W transmit power Typical range 6–12 km; up to 16 km under optimal conditions Bluetooth Bluetooth 2.1 EDR / 3.0 HS / 4.2 BLE / 5.0 BLE Wi-Fi 2.4 GHz / 5 GHz, 802.11a/b/g/n/ac Network Modem TDD-LTE, FDD-LTE, WCDMA, GSM, EDGE SIM Nano-SIM Data Formats Output: NMEA-0183, RTCM 3.x, RINEX, LAS Input: RTCM 2.x, RTCM 3.x, CMR Internal Storage 450 GB General Specifications Operating Temperature -20°C to +55°C (-4°F to +131°F) Storage Temperature -40°C to +75°C (-40°F to +167°F) Humidity 95% non-condensing Ingress Protection IP65 IK Rating IK08 Battery 14.8 V / 5,000 mAh / 74 Wh Li-ion Charging 45 W PD fast charging Approx. 3.5 h from 0–100% LiDAR / Point Cloud Runtime Typical 15 W, up to 5 h UHF / 4G RTK Rover Runtime Typical 3 W, up to 22 h Dimensions 215 × 130 × 120 mm Weight 1.75 kg Display 1.41-inch True-Color OLED 320 × 360, 274 ppi

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