Dokumentation
mit Mavic 3 Enterprise
im EPOTRONIC-Shop erhältlich
Einleitung: Warum man Drohnen im Bauwesen und in der Infrastruktur einsetzt
Laut einer McKinsey-Studie kämpft die Bauindustrie mit einem hohen Maß an Ineffizienz. Große Bauprojekte dauern in der Regel 20 % länger als erwartet und liegen bis zu 80 % über dem Budget.
Vorteile kompakt:
Mehr Effizienz
- Effizienzsteigerung der geografischen Informationserfassung
- Optimierung der Datenverarbeitung
Lower costs
- Cost reduction for equipment and laboratory equipment
- by automating data acquisition and analysis with drone and software solutions
Standardisierte Ergebnisse
- Erstellung von Ergebnissen wie DSM, DOM und 3D-Modellen aus Luftbildaufnahmen mit Hilfe von Drohnen- und Softwarelösungen
DJI Mavic 3 Enterprise Series
Lösung für die Dokumentation von Objekten und Arealen.
Unglaublich effizient. Ultrakompakt. Unglaublich vielseitig.
Einsatz von Drohnen im Bereich Architektur, Ingenieurswesen und Baugewerbe (AEC) - Herausforderungen und Lösungen
Standortvermessungen mit Drohnen generieren genaue Daten, die sich in Bauprojekten vom Design bis zur Fertigstellung nutzen lassen.
Architektur und Ingenieurwesen
Traditionelle Herausforderungen in der Architekturtechnik
Der Mangel an präzisen Positionsdaten macht es schwierig, BIM-Designs, Straßen-Vektorkarten und Satellitenbilder zusammenzuführen, was wertvolle Zeit und Arbeitskraft kostet.
Wie Drohnen die Architekturtechnik unterstützen
- Präzise 3D-Modelle können zur Visualisierung von Designs in das BIM-Modell eingepasst werden.
- Optimieren Sie deren Projektplanung und Design!
- Kompatibilität von DJI-Produkten mit vielen GIS-Softwarelösungen
Mehrwert in jeder Phase des Lebenszyklus eines Projekts
Phasen
1. proposal process, preliminary planning and construction preparation
- DTMs and DSMs of a site created from drone data can show possible drainage points, elevation changes and other factors.
- The best locations for building, digging or storing materials can be selected.
2nd draft
- New overall picture by overlaying drone-generated 3D models with BIM model (CAD file) next to an existing building is visible and analysable
- Analysis and visualisation of shadows and views
Progress monitoring in the construction process
Traditional challenges in progress monitoring
It is difficult to track construction projects as many teams can be working on a large area at the same time and the overview is often lost.
Fixed cameras on site cannot capture the entire area in detail and fail to capture critical progress information.
How drones help with progress monitoring
- Collect aerial imagery regularly!
- Get complete information on progress and dynamic changes using 3D modelling and editing software
- Allocate resources effectively!
- Create visual schedules and stay on time!
- Compare designs with site conditions!
- Recognise deviations from the plan!
3.1 Earthworks
- Precise volume measurements
- Removal / order analysis
3.2. Bestandsaufnahme vs. Entwurf
- Feststellung von Unterschieden zwischen dem geplanten und tatsächlichen Baufortschritt
- Steuerung von Projekten
3.3 Monitoring the progress of construction work
- Control and validation of completed work
- Regular surveys can be carried out to create a record of progress.
3.4. Dokumentation als Vorbereitung für den Fall von späteren Rechtsstreitigkeiten
- Fehlererkennung vor Gestaltannahme
- Vermeidung von Abriss
- Dokumentation vorrätig bei Überbauung von Fehlern
3.5. Übergabe
- Der Bauherr kann die Dokumentation sorgfältig durchsehen, bevor er der Übergabe zustimmt. Die Auftragnehmer können nachweisen, dass die Arbeiten gemäß den Anforderungen durchgeführt wurden.
4. building inspections
Traditional challenges in building inspections
Conventional building inspections often require skilled labour with manual access via scaffolding, extensions or long distances to the building. This is time-consuming and dangerous.
It is often difficult to visualise the building in its entirety and manual inspections do not produce standardised digital results.
How drones improve the inspection and maintenance of buildings
- Rapid creation of detailed 3D models and maps (with high-resolution close-ups) for building acceptance, routine inspection and maintenance
- Inspection and maintenance process can be digitalised
- Ensure the safety of personnel
- Faster and more cost-effective visual inspection of large installations and hard-to-reach areas
5. Renovation; repair
- Drones can also be used here.
The use of drones in documentation
- Changing product life cycles of buildings in the architecture, engineering and construction industry
- Top-down perspective for virtual planning and construction processes
- Unprecedented project transparency is achieved
- Drones enable important decisions to be made with maximum certainty
- Drones enable large-scale projects to be planned and managed more efficiently
Drones can help keep your project on track!
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The CHCNAV RS10 3D LiDAR scanner is an innovative, integrated handheld SLAM surveying solution with GNSS RTK that combines laser scanning, GNSS technology, and visual SLAM in a single platform. This advanced combination enables precise and efficient 3D data capture and surveying both indoors and outdoors. Features: · Integrated GNSS RTK and SLAM technology for accurate measurements even with weak GNSS signals · Absolute accuracy of 5 cm and relative accuracy of 1 cm RMS thanks to GNSS RTK, visual SLAM fusion, and high-precision LiDAR · Real-time generation of georeferenced point clouds with immediate feedback for optimised data capture · Efficient workflow without loop closure ("loop closure") to improve efficiency by reducing time and lobar · Wide range of applications from BIM and forestry to powerline inspection and underground surveying · Software integration with SmartGo and CoPre for real-time visualisation and efficient data processing · Robust, lightweight IP64-rated housing for use in various environmental conditions · Hot-swappable battery with up to 60 minutes runtime per battery · 512 GB storage capacity for large data amounts and data communication via 4G, Wi-Fi, and Bluetooth 4.2 The RS10 targets surveyors, civil engineers, BIM professionals, and users in agriculture, forestry, power line inspection, material volume calculation, and underground data collection. It allows accurate surveying even in weak or no GNSS signal environments, opening new possibilities for complex environments like indoor spaces or urban canyons. Precision and Technology The system combines a 4th-generation GNSS antenna with high-precision LiDAR and three HD cameras, achieving an absolute measurement accuracy of 5 cm. The innovative SFix technology allows the RS10 to calculate precise GNSS RTK points from LiDAR and SLAM data within one minute without satellite signals. This achieves unprecedented precision in indoor surveying. Vi-LiDAR technology offers a new RTK surveying method that combines GNSS rover capabilities with laser scanning to perform contactless offset measurements with 5 cm accuracy within 15 meters in real time. Seamless Outdoor and Indoor Surveying Equipped with a powerful onboard processor, the RS10 provides real-time SLAM capabilities to generate georeferenced point clouds directly in the field without post-processing. Immediate feedback enables users to adjust on the fly to ensure comprehensive scan coverage. The RS10 can map large areas up to 13,000 square meters in real time, ideal for rapid or complex projects where time and accuracy are critical. Efficient Workflow Without Loop Closure The integration of GNSS RTK and SLAM removes the need for traditional loop closures which often complicate data collection. The RS10 enables loop-free survey path planning, significantly reducing effort and project times. Transition between outdoor and indoor environments is seamless, using the same coordinate system selectable directly in the field through SmartGo or LandStar software, ensuring consistent accurate data collection. User Friendliness and Software Integration The RS10 supports RTK rover users with CHCNAV LandStar software and SLAM scanner users. The hot-swappable battery provides up to 60 minutes runtime. The system provides real-time precision alerts via SmartGo software for instant quality control. Data integrates seamlessly into CHCNAV software ecosystems like CoPre and CoProcess for automatic drawing extraction, intelligent point cloud processing, and efficient feature extraction onsite. Technical Specifications - RS10 16-Channels Absolute accuracy: horizontal & vertical < 5 cm RMS Relative accuracy: < 1 cm Power supply: lithium battery, supports hot-swapping and portable charger Input voltage: 9–20 V DC Power consumption: < 30 W Battery capacity: 24.48 Wh Working time per battery: 1 hour Data storage: 512 GB Field of view: 360° x 270° Weight: 1.9 kg (including RTK and battery) Loop-free data acquisition: Yes Real-time accuracy assessment: Yes Laser Scanner Laser product classification: Class 1 Eye Safe Range: 0.05 to 120 m Channel: 16 Point cloud thickness: 2 cm Range capability: 80 m at 10% reflectivity (Channels 5-12) 50 m at 10% reflectivity (Channels 1-4, 13-16) Effective measurement rate: Single Return: 320,000 pts/s Dual Return: 640,000 pts/s Max scan speed: 10 Hz Max number of return pulses: 2 Wavelength: 905 nm Horizontal FOV: 360° Horizontal angle resolution: 0.18° (10 Hz) Vertical FOV: 30° (-15° to +15°) GNSS Performance Channels: 1408 channels with iStar2.0 GPS: L1C/A, L2C, L2P(Y), L5 GLONASS: L1, L2, L3 Galileo: E1, E5a, E5b, E6 BeiDou: B1I, B2I, B3I, B1C, B2a, B2b QZSS: L1C/A, L1C, L2C, L5, L6 NavIC/IRNSS: L5 PPP: B2b-PPP SBAS: EGNOS (L1, L5) GNSS Accuracies Real-Time Kinematic (RTK): Horizontal: 8 mm + 1 ppm RMS Vertical: 15 mm + 1 ppm RMS Post-processing kinematic (PPK): Horizontal: 3 mm + 1 ppm RMS Vertical: 5 mm + 1 ppm RMS PPP: Horizontal: 10 cm, Vertical: 20 cm High-precision static: Horizontal: 2.5 mm + 0.1 ppm RMS Vertical: 3.5 mm + 0.4 ppm RMS Static and rapid static: Horizontal: 2.5 mm + 0.5 ppm RMS Vertical: 5 mm + 0.5 ppm RMS Code differential: Horizontal 0.4 m RMS, Vertical 0.8 m RMS IMU IMU update rate: 200 Hz Auto initialization: Yes Attitude accuracy after post-processing: 0.005° RMS pitch/roll, 0.010° RMS heading Position accuracy after post-processing: 0.010 m RMS horizontal, 0.020 m RMS vertical Camera Number of cameras: 3 Resolution: 15 MP (5 MP*3) Sensor size: 2592 (H) x 1944 (V) Pixel size: 2.0 µm FOV: 210° x 170° Environments Operating temperature: -20°C to +50°C Storage temperature: -20°C to +60°C Ingress Protection: IP64 (according to IEC 60529) Humidity (operating): 80%, non-condensing Electrical Input voltage: 9-20 V DC Power consumption: < 30 W Battery capacity: 24.48 Wh Equipped Software SmartGo: Data acquisition, real-time point cloud display, etc. CoPre: POS process, Adjust & Refine, Generate point cloud, modelling, etc. CoProcess: Building feature extraction, road feature extraction, volume calculation, etc. LandStar Field Survey APP: Topographic survey, point stakeout, line stakeout, elevation check, facade survey
The CHCNAV RS10 3D LiDAR scanner is an innovative, integrated handheld SLAM surveying solution with GNSS RTK that combines laser scanning, GNSS technology, and visual SLAM in a single platform. This advanced combination enables precise and efficient 3D data capture and surveying both indoors and outdoors. Features: · Integrated GNSS RTK and SLAM technology for accurate measurements even with weak GNSS signals · Absolute accuracy of 5 cm and relative accuracy of 1 cm RMS thanks to GNSS RTK, visual SLAM fusion, and high-precision LiDAR · Real-time generation of georeferenced point clouds with immediate feedback for optimised data capture · Efficient workflow without loop closure ("loop closure") to improve efficiency by reducing time and lobar · Wide range of applications from BIM and forestry to powerline inspection and underground surveying · Software integration with SmartGo and CoPre for real-time visualisation and efficient data processing · Robust, lightweight IP64-rated housing for use in various environmental conditions · Hot-swappable battery with up to 60 minutes runtime per battery · 512 GB storage capacity for large data amounts and data communication via 4G, Wi-Fi, and Bluetooth 4.2 The RS10 targets surveyors, civil engineers, BIM professionals, and users in agriculture, forestry, power line inspection, material volume calculation, and underground data collection. It allows accurate surveying even in weak or no GNSS signal environments, opening new possibilities for complex environments like indoor spaces or urban canyons. Precision and Technology The system combines a 4th-generation GNSS antenna with high-precision LiDAR and three HD cameras, achieving an absolute measurement accuracy of 5 cm. The innovative SFix technology allows the RS10 to calculate precise GNSS RTK points from LiDAR and SLAM data within one minute without satellite signals. This achieves unprecedented precision in indoor surveying. Vi-LiDAR technology offers a new RTK surveying method that combines GNSS rover capabilities with laser scanning to perform contactless offset measurements with 5 cm accuracy within 15 meters in real time. Seamless Outdoor and Indoor Surveying Equipped with a powerful onboard processor, the RS10 provides real-time SLAM capabilities to generate georeferenced point clouds directly in the field without post-processing. Immediate feedback enables users to adjust on the fly to ensure comprehensive scan coverage. The RS10 can map large areas up to 13,000 square meters in real time, ideal for rapid or complex projects where time and accuracy are critical. Efficient Workflow Without Loop Closure The integration of GNSS RTK and SLAM removes the need for traditional loop closures which often complicate data collection. The RS10 enables loop-free survey path planning, significantly reducing effort and project times. Transition between outdoor and indoor environments is seamless, using the same coordinate system selectable directly in the field through SmartGo or LandStar software, ensuring consistent accurate data collection. User Friendliness and Software Integration The RS10 supports RTK rover users with CHCNAV LandStar software and SLAM scanner users. The hot-swappable battery provides up to 60 minutes runtime. The system provides real-time precision alerts via SmartGo software for instant quality control. Data integrates seamlessly into CHCNAV software ecosystems like CoPre and CoProcess for automatic drawing extraction, intelligent point cloud processing, and efficient feature extraction onsite. Technical Specifications - RS10 32-Channels Absolute accuracy: horizontal & vertical < 5 cm RMS Relative accuracy: < 1 cm Power supply: lithium battery, supports hot-swapping and portable charger Input voltage: 9–20 V DC Power consumption: < 30 W Battery capacity: 24.48 Wh Working time per battery: 1 hour Data storage: 512 GB Field of view: 360° x 270° Weight: 1.7 kg (including RTK and battery) Loop-free data acquisition: Yes Real-time accuracy assessment: Yes Laser Scanner Laser classification: Class 1 Eye Safe Range: 0.05 to 300 m Channels: 32 Point cloud density: 1 cm Range capability: 80 m at 10% reflectivity Effective measurement rate: Single return: 640,000 points/s Dual return: 1,280,000 points/s Triple return: 1,920,000 points/s Max scan speed: 10 Hz Max number of pulses: 3 Wavelength: 905 nm Horizontal FOV: 360° Horizontal angle resolution: 0.18° (10 Hz) Vertical FOV: 40.3° (-20.8° to +19.5°) GNSS Performance Channels: 1408 channels with iStar2.0 GPS: L1C/A, L2C, L2P(Y), L5 GLONASS: L1, L2, L3 Galileo: E1, E5a, E5b, E6 BeiDou: B1I, B2I, B3I, B1C, B2a, B2b QZSS: L1C/A, L1C, L2C, L5, L6 NavIC/IRNSS: L5 PPP: B2b-PPP SBAS: EGNOS (L1, L5) GNSS Accuracies Real-Time Kinematic (RTK): Horizontal: 8 mm + 1 ppm RMS Vertical: 15 mm + 1 ppm RMS Post-processing kinematic (PPK): Horizontal: 3 mm + 1 ppm RMS Vertical: 5 mm + 1 ppm RMS PPP: Horizontal: 10 cm, Vertical: 20 cm High-precision static: Horizontal: 2.5 mm + 0.1 ppm RMS Vertical: 3.5 mm + 0.4 ppm RMS Static and rapid static: Horizontal: 2.5 mm + 0.5 ppm RMS Vertical: 5 mm + 0.5 ppm RMS Code differential: Horizontal 0.4 m RMS, Vertical 0.8 m RMS IMU IMU update rate: 200 Hz Auto initialization: Yes Attitude accuracy after post-processing: 0.005° RMS pitch/roll, 0.010° RMS heading Position accuracy after post-processing: 0.010 m RMS horizontal, 0.020 m RMS vertical Camera Number of cameras: 3 Resolution: 15 MP (5 MP*3) Sensor size: 2592 (H) x 1944 (V) Pixel size: 2.0 µm FOV: 210° x 170° Environments Operating temperature: -20°C to +50°C Storage temperature: -20°C to +60°C Ingress Protection: IP64 (according to IEC 60529) Humidity (operating): 80%, non-condensing Electrical Input voltage: 9-20 V DC Power consumption: < 30 W Battery capacity: 24.48 Wh Equipped Software SmartGo: Data acquisition, real-time point cloud display, etc. CoPre: POS process, Adjust & Refine, Generate point cloud, modelling, etc. CoProcess: Building feature extraction, road feature extraction, volume calculation, etc. LandStar Field Survey APP: Topographic survey, point stakeout, line stakeout, elevation check, facade survey
DJI M400 with up to 6 kg payload and 55 min flight time for surveying, inspection, AI, wildlife rescue, construction, energy, agriculture, RTK, lidar, thermal imaging
DJI Zenmuse L3 Long-Range LiDAR System with Highest Accuracy The DJI Zenmuse L3 is a state-of-the-art, next-generation aerial LiDAR system delivering exceptional range and accuracy. Its 1535 nm LiDAR sensor reaches up to 950 meters even on targets with only 10% reflectivity. Dual 100-megapixel RGB mapping cameras and a high-precision Position and Orientation System (POS) accelerate geospatial data acquisition, enabling daily coverage of up to 100 km². 1535 nm Long-Range LiDAR: Extended Range, Broad Coverage The Zenmuse L3 achieves a maximum detection range of 950 meters at 100 kHz pulse frequency under 100 klx ambient light and 10% reflectivity. The adjustable pulse frequency provides flexible power output, optimizing performance for various operational scenarios. Typical flight altitudes between 300 and 500 meters increase coverage per flight and significantly improve mapping efficiency. Small Measurement Point, High Pulse Energy With a laser beam divergence of only 0.25 mrad (1/e²), the laser footprint diameter at distance is about one-fifth that of the Zenmuse L2. This enables clear detection of smaller objects such as power lines or branches. The higher energy density improves penetration, increases ground point density, and allows precise reconstruction of complex terrain. High Pulse Repetition Rate, Multiple Returns With up to 2 million pulses per second and support for up to 16 returns, the Zenmuse L3 delivers accurate 3D spatial reconstructions. Point density and penetration level can be flexibly adapted to meet specific application requirements. Flexible Scanning Modes The system supports linear, star-shaped, and non-repetitive scanning modes for various applications: · Linear: uniform point cloud distribution for precise terrain modeling · Star-shaped: balances accuracy with high penetration, ideal for forests or urban areas · Non-repetitive: wide scan angle and extensive coverage, optimized for powerline and structural inspections Dual 100 MP RGB Camera System Equipped with two 100 MP 4/3 CMOS sensors and mechanical shutters, the L3 significantly improves accuracy and efficiency. Pixel binning supports an effective resolution of 25 MP with larger pixels, ensuring vivid colors even in low-light conditions. 107° Ultra-Wide Field of View The dual RGB cameras offer up to 107° horizontal field of view, capturing a larger area per image. Even with 20% LiDAR overlap, digital orthophoto maps (DOM) and digital elevation models (DEM) can be acquired simultaneously in a single flight, greatly boosting productivity. Accuracy Meets Efficiency The enhanced Position and Orientation System (POS) achieves post-processing accuracy of 0.02° yaw and 0.01° pitch. The LiDAR offers ranging repeatability of 5 mm at 150 m and microsecond timing for highly precise results. Vertical accuracy is under 3 cm at 120 m altitude, under 5 cm at 300 m, and under 10 cm at 500 m suitable for mapping scales from 1:500 to 1:2000. With a ground sample distance (GSD) of 3 cm at 300 m altitude, the L3 enables precise mapping even without ground control points (GCP). High Point Density, Strong Penetration & High Efficiency Thanks to smaller laser footprints and higher pulse energy, the L3 captures significantly more ground points beneath vegetation, enhancing detail, accuracy, and model completeness. Combined with the DJI Matrice 400, the Zenmuse L3 covers up to 10 km² per flight and up to 100 km² daily. Multiple data types, such as point clouds, orthophotos, and 3D models, can be collected in a single mission. DJI Terra Integration: PPK, LiDAR Gaussian Splatting & Fusion-Based Modeling DJI Terra provides integrated PPK (Post-Processed Kinematic) data processing for centimeter-level positioning accuracy, even without RTK availability. The software supports local PPK processing for RGB imagery and LiDAR data. Advanced Gaussian Splatting technology produces highly detailed and realistic 3D models. Fusion of LiDAR and RGB data in a single dataset enables simultaneous generation of high-accuracy point clouds, 2D maps, and 3D mesh models. This data fusion approach improves model completeness, especially for complex structures, meeting the needs of energy, transportation, and infrastructure sectors. Integrated End-to-End Solution The L3 works seamlessly within the DJI ecosystem from data capture and PPK post-processing in DJI Terra to cloud analysis in DJI FlightHub 2. Real-time point cloud previews, live measurements, and flexible split-screen views increase mission efficiency and safety. Secure Data Processing CFexpress card encryption and AES-256 video transmission encryption protect sensitive data. The Matrice 400 also supports one-click log clearing for added security. Typical Applications Topographic surveying, civil and geotechnical engineering, geological studies and hazard mapping, forestry and vegetation analysis, energy and powerline inspections, mining and infrastructure surveying. Please note: The DJI Zenmuse L3 is only compatible with the DJI Matrice 400 due to the payload weight of 1.6 kg, the new gimbal bracket with anti-drop gimbal rails, and the higher power consumption of the 1535 nm laser.
The GreenValley LiGrip O2 is a state-of-the-art, portable SLAM LiDAR 3D scanning system that integrates laser scanning, triple panoramic cameras, dual visual SLAM cameras, and a GNSS antenna in one device. This all-in-one system enables precise and comprehensive data acquisition in any environment and at any time of day without limitations. The GREENVALLEY LiGrip O2 is available in three variants: with 16 channels and a 120 m range, with 32 channels and a 120 m range, and with 32 channels and a 300 m range, differing in scan performance and measuring range to cover various application requirements. Thanks to the triple panoramic camera coverage, a complete 3D capture from different angles is possible, simplifying data acquisition and improving color accuracy as well as the quality of the 3D point clouds. The two visual SLAM cameras provide stable mapping even in areas with few distinctive features, such as tunnels or underground spaces. The device operates with a proprietary multi-sensor fusion SLAM technology that ensures an absolute positioning accuracy of under 3 cm and a repeatability of under 2 cm, regardless of operator, path, environment, or time. The output consists of highly detailed 3D point clouds with a point spacing density of 2 mm, comparable to terrestrial laser scanning. Several positioning modes are available to use the scanner flexibly in various work environments, including RTK-SLAM for areas with RTK signal, PPK-SLAM for environments without RTK signal, MLF-SLAM for open and low-feature environments, and SLAM for GNSS-denied environments. In addition to handheld use, various other carrying options with separately available accessories (backpack, frontpack, telescopic pole, vehicle or drone mounting) allow individual adaptation to the application scenario. Technical Specifications LiGrip O2 · Absolute accuracy: < 3 cm · Relative accuracy: < 1 cm · Repeatability: < 2 cm · Protection class: IP64 · Storage: 512 GB SSD · Ports: USB Type-C · Horizontal and vertical tilt: < 0.015° · Control: App and button operation · Scan rate: Up to 640,000 points per second · Detection range: up to 120 m (XT16/XT32) / 300 m (XT32M2X) · Weight: approx. 2.2 kg (with base unit and battery) · Firmware update: offline possible · Battery life (single battery): 120 minutes · Operating temperature range: -20 °C to 40 °C · Device storage temperature: -40 °C to 70 °C · Battery storage temperature: recommended 22 °C to 30 °C LiDAR Sensor Parameters · Supported laser models: XT16, XT32, XT32M2X · Laser wavelength: 905 nm · Scan rate: 320,000 or 640,000 points per second · Maximum detection range: 120 m (XT16/XT32), 300 m (XT32M2X) · Field of view: 280° horizontal × 360° vertical · LiDAR accuracy: 0.5 cm · Safety class: Class 1 (eye-safe) Camera Parameters · Number of cameras: 5 · Panoramic cameras: 3 × 12 MP · Visual SLAM cameras: 2 × 1.3 MP · Frame rate: adjustable IMU (Inertial Measurement Unit) · Output frequency: 200 Hz · Post-processing position accuracy: horizontal 0.005 m, vertical 0.01 m · Post-processing attitude accuracy: roll/pitch 0.003°, heading 0.01° Mapping Methods · MLF-SLAM, PPK-SLAM, RTK-SLAM, SLAM · Real-time processing and real-time colorization supported Output Formats · Colored point clouds: LAS, LiDATA · Panoramic images: Imglist + JPG · Mesh: LOD-OSGB · Gaussian splatting: lisplat, ply Accessories and Options Telescopic Pole Adapter: · Weight: 300 g · Supported pole diameter: 25 - 25.5 mm · Compatibility: LiGrip O series (including O1 Lite and O2 Lite) Frontpack Kit Weight: 2.1 kg Frontpack Kit Dimensions: 560 × 340 × 160 mm Backpack Kit Weight: 3.9 kg Backpack Kit Dimensions: 580 × 303 × 145 mm Dual battery and hot swap supported Backpack Kit Compatibility: LiGrip O2 series
The GreenValley LiGrip O2 is a state-of-the-art, portable SLAM LiDAR 3D scanning system that integrates laser scanning, triple panoramic cameras, dual visual SLAM cameras, and a GNSS antenna in one device. This all-in-one system enables precise and comprehensive data acquisition in any environment and at any time of day without limitations. The GREENVALLEY LiGrip O2 is available in three variants: with 16 channels and a 120 m range, with 32 channels and a 120 m range, and with 32 channels and a 300 m range, differing in scan performance and measuring range to cover various application requirements. Thanks to the triple panoramic camera coverage, a complete 3D capture from different angles is possible, simplifying data acquisition and improving color accuracy as well as the quality of the 3D point clouds. The two visual SLAM cameras provide stable mapping even in areas with few distinctive features, such as tunnels or underground spaces. The device operates with a proprietary multi-sensor fusion SLAM technology that ensures an absolute positioning accuracy of under 3 cm and a repeatability of under 2 cm, regardless of operator, path, environment, or time. The output consists of highly detailed 3D point clouds with a point spacing density of 2 mm, comparable to terrestrial laser scanning. Several positioning modes are available to use the scanner flexibly in various work environments, including RTK-SLAM for areas with RTK signal, PPK-SLAM for environments without RTK signal, MLF-SLAM for open and low-feature environments, and SLAM for GNSS-denied environments. In addition to handheld use, various other carrying options with separately available accessories (backpack, frontpack, telescopic pole, vehicle or drone mounting) allow individual adaptation to the application scenario. Technical Specifications LiGrip O2 · Absolute accuracy: < 3 cm · Relative accuracy: < 1 cm · Repeatability: < 2 cm · Protection class: IP64 · Storage: 512 GB SSD · Ports: USB Type-C · Horizontal and vertical tilt: < 0.015° · Control: App and button operation · Scan rate: Up to 640,000 points per second · Detection range: up to 120 m (XT16/XT32) / 300 m (XT32M2X) · Weight: approx. 2.2 kg (with base unit and battery) · Firmware update: offline possible · Battery life (single battery): 120 minutes · Operating temperature range: -20 °C to 40 °C · Device storage temperature: -40 °C to 70 °C · Battery storage temperature: recommended 22 °C to 30 °C LiDAR Sensor Parameters · Supported laser models: XT16, XT32, XT32M2X · Laser wavelength: 905 nm · Scan rate: 320,000 or 640,000 points per second · Maximum detection range: 120 m (XT16/XT32), 300 m (XT32M2X) · Field of view: 280° horizontal × 360° vertical · LiDAR accuracy: 0.5 cm · Safety class: Class 1 (eye-safe) Camera Parameters · Number of cameras: 5 · Panoramic cameras: 3 × 12 MP · Visual SLAM cameras: 2 × 1.3 MP · Frame rate: adjustable IMU (Inertial Measurement Unit) · Output frequency: 200 Hz · Post-processing position accuracy: horizontal 0.005 m, vertical 0.01 m · Post-processing attitude accuracy: roll/pitch 0.003°, heading 0.01° Mapping Methods · MLF-SLAM, PPK-SLAM, RTK-SLAM, SLAM · Real-time processing and real-time colorization supported Output Formats · Colored point clouds: LAS, LiDATA · Panoramic images: Imglist + JPG · Mesh: LOD-OSGB · Gaussian splatting: lisplat, ply Accessories and Options Telescopic Pole Adapter: · Weight: 300 g · Supported pole diameter: 25 - 25.5 mm · Compatibility: LiGrip O series (including O1 Lite and O2 Lite) Frontpack Kit Weight: 2.1 kg Frontpack Kit Dimensions: 560 × 340 × 160 mm Backpack Kit Weight: 3.9 kg Backpack Kit Dimensions: 580 × 303 × 145 mm Dual battery and hot swap supported Backpack Kit Compatibility: LiGrip O2 series
The GreenValley LiGrip O2 is a state-of-the-art, portable SLAM LiDAR 3D scanning system that integrates laser scanning, triple panoramic cameras, dual visual SLAM cameras, and a GNSS antenna in one device. This all-in-one system enables precise and comprehensive data acquisition in any environment and at any time of day without limitations. The GREENVALLEY LiGrip O2 is available in three variants: with 16 channels and a 120 m range, with 32 channels and a 120 m range, and with 32 channels and a 300 m range, differing in scan performance and measuring range to cover various application requirements. Thanks to the triple panoramic camera coverage, a complete 3D capture from different angles is possible, simplifying data acquisition and improving color accuracy as well as the quality of the 3D point clouds. The two visual SLAM cameras provide stable mapping even in areas with few distinctive features, such as tunnels or underground spaces. The device operates with a proprietary multi-sensor fusion SLAM technology that ensures an absolute positioning accuracy of under 3 cm and a repeatability of under 2 cm, regardless of operator, path, environment, or time. The output consists of highly detailed 3D point clouds with a point spacing density of 2 mm, comparable to terrestrial laser scanning. Several positioning modes are available to use the scanner flexibly in various work environments, including RTK-SLAM for areas with RTK signal, PPK-SLAM for environments without RTK signal, MLF-SLAM for open and low-feature environments, and SLAM for GNSS-denied environments. In addition to handheld use, various other carrying options with separately available accessories (backpack, frontpack, telescopic pole, vehicle or drone mounting) allow individual adaptation to the application scenario. Technical Specifications LiGrip O2 · Absolute accuracy: < 3 cm · Relative accuracy: < 1 cm · Repeatability: < 2 cm · Protection class: IP64 · Storage: 512 GB SSD · Ports: USB Type-C · Horizontal and vertical tilt: < 0.015° · Control: App and button operation · Scan rate: Up to 640,000 points per second · Detection range: up to 120 m (XT16/XT32) / 300 m (XT32M2X) · Weight: approx. 2.2 kg (with base unit and battery) · Firmware update: offline possible · Battery life (single battery): 120 minutes · Operating temperature range: -20 °C to 40 °C · Device storage temperature: -40 °C to 70 °C · Battery storage temperature: recommended 22 °C to 30 °C LiDAR Sensor Parameters · Supported laser models: XT16, XT32, XT32M2X · Laser wavelength: 905 nm · Scan rate: 320,000 or 640,000 points per second · Maximum detection range: 120 m (XT16/XT32), 300 m (XT32M2X) · Field of view: 280° horizontal × 360° vertical · LiDAR accuracy: 0.5 cm · Safety class: Class 1 (eye-safe) Camera Parameters · Number of cameras: 5 · Panoramic cameras: 3 × 12 MP · Visual SLAM cameras: 2 × 1.3 MP · Frame rate: adjustable IMU (Inertial Measurement Unit) · Output frequency: 200 Hz · Post-processing position accuracy: horizontal 0.005 m, vertical 0.01 m · Post-processing attitude accuracy: roll/pitch 0.003°, heading 0.01° Mapping Methods · MLF-SLAM, PPK-SLAM, RTK-SLAM, SLAM · Real-time processing and real-time colorization supported Output Formats · Colored point clouds: LAS, LiDATA · Panoramic images: Imglist + JPG · Mesh: LOD-OSGB · Gaussian splatting: lisplat, ply Accessories and Options Telescopic Pole Adapter: · Weight: 300 g · Supported pole diameter: 25 - 25.5 mm · Compatibility: LiGrip O series (including O1 Lite and O2 Lite) Frontpack Kit Weight: 2.1 kg Frontpack Kit Dimensions: 560 × 340 × 160 mm Backpack Kit Weight: 3.9 kg Backpack Kit Dimensions: 580 × 303 × 145 mm Dual battery and hot swap supported Backpack Kit Compatibility: LiGrip O2 series
Weatherproof, vehicle-mountable drone hangar with robust IP56 protection from -30 to 50 °C for flexible operations with DJI Matrice 4D/4TD
Weatherproof, vehicle-mountable drone hangar with robust IP56 protection from -30 to 50 °C for flexible operations with DJI Matrice 4D/4TD
Weatherproof, vehicle-mountable drone hangar with robust IP56 protection from -30 to 50 °C for flexible operations with DJI Matrice 4D/4TD
Weatherproof, vehicle-mountable drone hangar with robust IP56 protection from -30 to 50 °C for flexible operations with DJI Matrice 4D/4TD
Weatherproof, vehicle-mountable drone hangar with robust IP56 protection from -30 to 50 °C for flexible operations with DJI Matrice 4D/4TD
Weatherproof, vehicle-mountable drone hangar with robust IP56 protection from -30 to 50 °C for flexible operations with DJI Matrice 4D/4TD
Weatherproof, vehicle-mountable drone hangar with robust IP56 protection from -30 to 50 °C for flexible operations with DJI Matrice 4D/4TD
Weatherproof, vehicle-mountable drone hangar with robust IP56 protection from -30 to 50 °C for flexible operations with DJI Matrice 4D/4TD
The SHARE SLAM S20 is a handheld, ultra-compact 3D LiDAR scanner that delivers high-precision 3D point clouds in real-time with color information. It combines two high-quality 16-megapixel CMOS cameras with a mechanical shutter to produce distortion-free, true-color images for realistic color enrichment of the point clouds. The scanner uses proprietary LiDAR-SLAM and Visual-SLAM algorithms that enable precise positioning and environmental reconstruction even in complex scenarios. An integrated RTK and GNSS module provides georeferenced survey data with an accuracy of up to 1 cm, without the need for external antennas or 4G cards. Weighing only about 1.08 kg and featuring an ergonomic design, the SHARE SLAM S20 offers flexibility and mobility ideal for demanding surveying tasks in architecture, construction, forestry, and industry. The battery life of up to 150 minutes allows long operating times, with fast charging via USB-C for short recharge intervals. The scanner supports WIFI 6 and Bluetooth for fast data transfer and includes 256 GB of storage, expandable via SD card. Its open hardware interfaces and SDK enable seamless integration into existing workflows as well as custom adaptations. SHARE offers comprehensive software for the SLAM S20: SHARE Capture (iOS and Android) is a mobile app for controlling the scanner and capturing data directly on a smartphone or tablet. SHARE PointClouds Studio (PC) is desktop software for post-processing, visualizing, and exporting point clouds and image data, supporting various formats such as PCD, PLY, and LAS. SHARE Data Manager is an additional tool for data management and export. The SHARE SLAM S20 is optimized for modern 3D modeling methods, including Gaussian Splatting and photogrammetric workflows, and integrates easily into BIM and CAD systems. The combination of high-resolution camera, precise LiDAR sensor, and powerful software makes it a powerful tool for professional, efficient, and versatile 3D surveying. Technical Specifications SHARE SLAM S20 · Weight: 1079 g (main unit), 350 g (handle battery) · Dimensions: 110.5 × 140 × 313.3 mm · Battery: 45.36 Wh / 3150 mAh, runtime up to 150 min · Charging port: USB-C, PD 30W fast charging · Cameras: 2 × 16 MP, 1-inch CMOS sensors, mechanical shutter · Image size: 3504 × 4672, JPG format · LiDAR point density: approx. 200,000 points/sec, point cloud thickness ≤ 1 cm · Scan range: 0.1–40 m (10% reflectivity), up to 70 m (80% reflectivity) · Accuracy: relative accuracy ≤ 1 cm, absolute accuracy ≤ 5 cm · RTK accuracy: horizontal 0.8 cm + 1 ppm, vertical 1.5 cm + 1 ppm · SLAM algorithms: proprietary LiDAR SLAM and Visual SLAM · Camera field of view: horizontal 140°, vertical 200° · Protection class: IP5X · Storage: internal 256 GB, expandable via TF card · Communication: WIFI 6 (2.4 GHz/5 GHz), Bluetooth · Operating temperature: -20 °C to +50 °C · Storage temperature: -20 °C to +60 °C
The XGRIDS Lixel L2 Pro is a powerful, state-of-the-art 3D hand scanner designed specifically for large-area indoor and outdoor mapping applications. Thanks to innovative Multi-SLAM algorithms, deep AI optimisation, and the perfect combination of LiDAR sensing, visual 48 MP panorama cameras, and integrated IMU, the L2 Pro delivers real-time point clouds in the field with post-processing–quality results. With point densities of up to 1 million points per square meter at 1 mm spacing and an absolute accuracy of only 3 cm, the L2 Pro sets new benchmarks for mobile mapping, topography, infrastructure, and construction surveying. Features · Mobile 3D LiDAR-SLAM scanner with real-time point clouds including high-resolution colour capture · Multi-SLAM and deep AI optimisation: live calculation of powerful point clouds and three-colour models directly on site · 3D Gaussian Splatting for ultra-dense, realistic, and compact visualisations (with LixelCyberColor Studio) · Two 48 MP panorama cameras (190° field of view) for photorealistic colour images without additional modules · Extremely flexible application: hand-held device, vehicle, backpack, or drone mount possible · 1.5 h battery life, rugged aluminium housing, IP45 protection class for demanding field conditions · Intuitive operation with the LixelGo app (Android & iOS) or one-button operation, real-time status display on the device Available in three variants: · 120 m / 16 channels – efficient for medium to large areas with good scan range · 120 m / 32 channels – increased point density and detail with good scan range · 300 m / 32 channels – maximum range with top resolution for large-scale projects Applications and workflow Whether construction, urban inventory, large-scale infrastructure, BIM, GIS, or environmental projects: The L2 Pro reliably delivers precise and true-to-colour 3D data quickly and flexibly. Modern AI algorithms ensure stable Multi-SLAM performance even in complex, low-signal environments (indoor spaces, tunnels, vegetation). Real-time point cloud output and the integration of various mounting options maximise field efficiency. The all-in-one software LixelStudio (included) enables comprehensive post-processing, fusion, analysis, and export of professional 3D point cloud data. The LixelGO app for Android and iOS connects the device to a smartphone, enabling control and monitoring of scans directly in the field. Technical specifications Lixel L2 Pro · Weight: 1.7 kg (without battery) · Size: 180 × 130 × 400 mm · Housing: Industrial aluminium · Protection class: IP54 (dust- and splash-proof) · Operating temperature: -20 °C to +50 °C · Interface: USB 3.1 Gen2 · Storage: 1 TB SSD · Wireless connection: WiFi (2.4G, 5G2, 5G8), Bluetooth (802.11a/b/g/n/ac) · Visual Positioning: supported · Real-time RTK Fusion: supported · Real-time RGB: supported · Point cloud formats: .las · Image formats: .jpg · Software included: LixelStudio · Compatibility: Standard RTK module, Survey-Grade RTK module, Extension Pole, Backpack Kit, Vehicle/Drone Mount, Mobile-Phone-Mount Real-time accuracy: · Absolute vertical accuracy (RMSE): 3 cm · Absolute horizontal accuracy (RMSE): 3 cm · Relative accuracy (RMSE): 2 cm Processed accuracy: · Absolute vertical accuracy: 3 cm · Absolute horizontal accuracy: 3 cm · Point cloud thickness: 0.5 cm · Horizontal (with RTK): 0.015° · Vertical: 0.03° · Relative accuracy (RMSE): 1 cm · Reproducibility (RMSE): 2 cm · LixelUpSample: supported LiDAR: · Operating range: 0.5–120 m (16 channels), 0.5–300 m (32 channels) · Scan frequency: 320,000 points/second (16 channels), 640,000 points/second (32 channels) · LiDAR sensor: Class 1 / 905 nm · Sensor FOV: 360° × 270° Panorama camera: · Resolution: 2 × 48 MP · CMOS, sensor size: 1/2" · Focal length: 2 mm · Aperture: F/2.0 · Shutter: Rolling Shutter · Field of view: 190° × 190° · Maximum panorama image resolution: 56 MP Visual positioning camera: · Resolution: 1 MP · Global shutter · Field of view: 190° × 119° Battery: · Voltage: 14.4 V · Capacity: 46.8 Wh · Operating time: approx. 1.5 hours per battery · Power consumption: < 30 W Charging: · Input: 100V-240V, 50-60 Hz, 1.5 A, 80 VA · Output: 16.8 V, 2.0 A · Power: 34 W
The XGRIDS Lixel L2 Pro is a powerful, state-of-the-art 3D hand scanner designed specifically for large-area indoor and outdoor mapping applications. Thanks to innovative Multi-SLAM algorithms, deep AI optimisation, and the perfect combination of LiDAR sensing, visual 48 MP panorama cameras, and integrated IMU, the L2 Pro delivers real-time point clouds in the field with post-processing–quality results. With point densities of up to 1 million points per square meter at 1 mm spacing and an absolute accuracy of only 3 cm, the L2 Pro sets new benchmarks for mobile mapping, topography, infrastructure, and construction surveying. Features · Mobile 3D LiDAR-SLAM scanner with real-time point clouds including high-resolution colour capture · Multi-SLAM and deep AI optimisation: live calculation of powerful point clouds and three-colour models directly on site · 3D Gaussian Splatting for ultra-dense, realistic, and compact visualisations (with LixelCyberColor Studio) · Two 48 MP panorama cameras (190° field of view) for photorealistic colour images without additional modules · Extremely flexible application: hand-held device, vehicle, backpack, or drone mount possible · 1.5 h battery life, rugged aluminium housing, IP45 protection class for demanding field conditions · Intuitive operation with the LixelGo app (Android & iOS) or one-button operation, real-time status display on the device Available in three variants: · 120 m / 16 channels – efficient for medium to large areas with good scan range · 120 m / 32 channels – increased point density and detail with good scan range · 300 m / 32 channels – maximum range with top resolution for large-scale projects Applications and workflow Whether construction, urban inventory, large-scale infrastructure, BIM, GIS, or environmental projects: The L2 Pro reliably delivers precise and true-to-colour 3D data quickly and flexibly. Modern AI algorithms ensure stable Multi-SLAM performance even in complex, low-signal environments (indoor spaces, tunnels, vegetation). Real-time point cloud output and the integration of various mounting options maximise field efficiency. The all-in-one software LixelStudio (included) enables comprehensive post-processing, fusion, analysis, and export of professional 3D point cloud data. The LixelGO app for Android and iOS connects the device to a smartphone, enabling control and monitoring of scans directly in the field. Technical specifications Lixel L2 Pro · Weight: 1.7 kg (without battery) · Size: 180 × 130 × 400 mm · Housing: Industrial aluminium · Protection class: IP54 (dust- and splash-proof) · Operating temperature: -20 °C to +50 °C · Interface: USB 3.1 Gen2 · Storage: 1 TB SSD · Wireless connection: WiFi (2.4G, 5G2, 5G8), Bluetooth (802.11a/b/g/n/ac) · Visual Positioning: supported · Real-time RTK Fusion: supported · Real-time RGB: supported · Point cloud formats: .las · Image formats: .jpg · Software included: LixelStudio · Compatibility: Standard RTK module, Survey-Grade RTK module, Extension Pole, Backpack Kit, Vehicle/Drone Mount, Mobile-Phone-Mount Real-time accuracy: · Absolute vertical accuracy (RMSE): 3 cm · Absolute horizontal accuracy (RMSE): 3 cm · Relative accuracy (RMSE): 2 cm Processed accuracy: · Absolute vertical accuracy: 3 cm · Absolute horizontal accuracy: 3 cm · Point cloud thickness: 0.5 cm · Horizontal (with RTK): 0.015° · Vertical: 0.03° · Relative accuracy (RMSE): 1 cm · Reproducibility (RMSE): 2 cm · LixelUpSample: supported LiDAR: · Operating range: 0.5–120 m (16 channels), 0.5–300 m (32 channels) · Scan frequency: 320,000 points/second (16 channels), 640,000 points/second (32 channels) · LiDAR sensor: Class 1 / 905 nm · Sensor FOV: 360° × 270° Panorama camera: · Resolution: 2 × 48 MP · CMOS, sensor size: 1/2" · Focal length: 2 mm · Aperture: F/2.0 · Shutter: Rolling Shutter · Field of view: 190° × 190° · Maximum panorama image resolution: 56 MP Visual positioning camera: · Resolution: 1 MP · Global shutter · Field of view: 190° × 119° Battery: · Voltage: 14.4 V · Capacity: 46.8 Wh · Operating time: approx. 1.5 hours per battery · Power consumption: < 30 W Charging: · Input: 100V-240V, 50-60 Hz, 1.5 A, 80 VA · Output: 16.8 V, 2.0 A · Power: 34 W
The XGRIDS Lixel L2 Pro is a powerful, state-of-the-art 3D hand scanner designed specifically for large-area indoor and outdoor mapping applications. Thanks to innovative Multi-SLAM algorithms, deep AI optimisation, and the perfect combination of LiDAR sensing, visual 48 MP panorama cameras, and integrated IMU, the L2 Pro delivers real-time point clouds in the field with post-processing–quality results. With point densities of up to 1 million points per square meter at 1 mm spacing and an absolute accuracy of only 3 cm, the L2 Pro sets new benchmarks for mobile mapping, topography, infrastructure, and construction surveying. Features · Mobile 3D LiDAR-SLAM scanner with real-time point clouds including high-resolution colour capture · Multi-SLAM and deep AI optimisation: live calculation of powerful point clouds and three-colour models directly on site · 3D Gaussian Splatting for ultra-dense, realistic, and compact visualisations (with LixelCyberColor Studio) · Two 48 MP panorama cameras (190° field of view) for photorealistic colour images without additional modules · Extremely flexible application: hand-held device, vehicle, backpack, or drone mount possible · 1.5 h battery life, rugged aluminium housing, IP45 protection class for demanding field conditions · Intuitive operation with the LixelGo app (Android & iOS) or one-button operation, real-time status display on the device Available in three variants: · 120 m / 16 channels – efficient for medium to large areas with good scan range · 120 m / 32 channels – increased point density and detail with good scan range · 300 m / 32 channels – maximum range with top resolution for large-scale projects Applications and workflow Whether construction, urban inventory, large-scale infrastructure, BIM, GIS, or environmental projects: The L2 Pro reliably delivers precise and true-to-colour 3D data quickly and flexibly. Modern AI algorithms ensure stable Multi-SLAM performance even in complex, low-signal environments (indoor spaces, tunnels, vegetation). Real-time point cloud output and the integration of various mounting options maximise field efficiency. The all-in-one software LixelStudio (included) enables comprehensive post-processing, fusion, analysis, and export of professional 3D point cloud data. The LixelGO app for Android and iOS connects the device to a smartphone, enabling control and monitoring of scans directly in the field. Technical specifications Lixel L2 Pro · Weight: 1.7 kg (without battery) · Size: 180 × 130 × 400 mm · Housing: Industrial aluminium · Protection class: IP54 (dust- and splash-proof) · Operating temperature: -20 °C to +50 °C · Interface: USB 3.1 Gen2 · Storage: 1 TB SSD · Wireless connection: WiFi (2.4G, 5G2, 5G8), Bluetooth (802.11a/b/g/n/ac) · Visual Positioning: supported · Real-time RTK Fusion: supported · Real-time RGB: supported · Point cloud formats: .las · Image formats: .jpg · Software included: LixelStudio · Compatibility: Standard RTK module, Survey-Grade RTK module, Extension Pole, Backpack Kit, Vehicle/Drone Mount, Mobile-Phone-Mount Real-time accuracy: · Absolute vertical accuracy (RMSE): 3 cm · Absolute horizontal accuracy (RMSE): 3 cm · Relative accuracy (RMSE): 2 cm Processed accuracy: · Absolute vertical accuracy: 3 cm · Absolute horizontal accuracy: 3 cm · Point cloud thickness: 0.5 cm · Horizontal (with RTK): 0.015° · Vertical: 0.03° · Relative accuracy (RMSE): 1 cm · Reproducibility (RMSE): 2 cm · LixelUpSample: supported LiDAR: · Operating range: 0.5–120 m (16 channels), 0.5–300 m (32 channels) · Scan frequency: 320,000 points/second (16 channels), 640,000 points/second (32 channels) · LiDAR sensor: Class 1 / 905 nm · Sensor FOV: 360° × 270° Panorama camera: · Resolution: 2 × 48 MP · CMOS, sensor size: 1/2" · Focal length: 2 mm · Aperture: F/2.0 · Shutter: Rolling Shutter · Field of view: 190° × 190° · Maximum panorama image resolution: 56 MP Visual positioning camera: · Resolution: 1 MP · Global shutter · Field of view: 190° × 119° Battery: · Voltage: 14.4 V · Capacity: 46.8 Wh · Operating time: approx. 1.5 hours per battery · Power consumption: < 30 W Charging: · Input: 100V-240V, 50-60 Hz, 1.5 A, 80 VA · Output: 16.8 V, 2.0 A · Power: 34 W
Light handheld camera for real-time 3D scanning and interactive spatial models with 3D Gaussian Splatting technology.
Light handheld camera for real-time 3D scanning and interactive spatial models with 3D Gaussian Splatting technology.
Greenvalley LiPod P1 Der LiPod P1 3D-Laserscanner ist ein hochpräziser long-range Scanner von GreenValley International (GVI), der in verschiedenen komplexen Umgebungen p ...
SHARE SLAM S20 ...
DJI Matrice 400, fawn rescue drone, wildlife rescue, thermal imaging drone, AI drone, Rehkitzrettung, drone bundle, long flight time, search and rescue
Discover the DJI Matrice 400 Surveying bundle (+2 Batteries, D-RTK 3 + GCPs) for unmatched performance, flight endurance, and obstacle detection. Ideal for critical missions.
Discover the DJI Matrice 400 Inspection (+2 Batteries + H30T + Training) for unparalleled performance. Experience 59 minutes of flight time and advanced obstacle detection!
Discover the DJI Matrice 400 Live Inspection (+2 Batteries + H30T + 21), offering 59 mins flight time, advanced obstacle detection, and unmatched performance.
Experience unparalleled flight capabilities with the DJI Matrice 400 Kl-Inspect (+2 Batteries + Phase One P3 + Software). Perfect for demanding missions!
DJI M400 with up to 6 kg payload and 55 min flight time for surveying, inspection, AI, wildlife rescue, construction, energy, agriculture, RTK, lidar, thermal imaging
Experience unmatched performance with the DJI Matrice 400 aircraft. 59 mins flight time, obstacle detection, and 12 months of DJI Care Enterprise Plus.
Experience unrivaled performance with the DJI Matrice 400 Rental / Leasing. Up to 59 minutes flight time and advanced obstacle detection for critical missions.
Experience unmatched performance with the DJI Matrice 400 L2 Bundle (+2 batteries, L2, D-RTK 3 & more). Flight time up to 59 minutes, perfect for any mission!
GreenValley bietet mit LiDAR360 (für Drohnen) und LiDAR360 MLS (für terrestrische Laserscanner) eine umfassende Software-Suite für die Erstellung, Nachbearbeitung und Anal ...
GreenValley bietet mit LiDAR360 (für Drohnen) und LiDAR360 MLS (für terrestrische Laserscanner) eine umfassende Software-Suite für die Erstellung, Nachbearbeitung und Anal ...
GreenValley bietet mit LiDAR360 (für Drohnen) und LiDAR360 MLS (für terrestrische Laserscanner) eine umfassende Software-Suite für die Erstellung, Nachbearbeitung und Anal ...
GreenValley bietet mit LiDAR360 (für Drohnen) und LiDAR360 MLS (für terrestrische Laserscanner) eine umfassende Software-Suite für die Erstellung, Nachbearbeitung und Anal ...