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High-precision, long-range handheld LiDAR scanner developed by Feima Robotics

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Slam200
handheld
lidar scanner

SLAM2000 is another innovative industry-level handheld laser scanner developed by Feima Robotics.

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Slam2000
handheld
lidar scanner

handheld lidar scanner

Feima X-1

Feima Intelligent Aerial Photogrammetry,Remote Sensing,
Inspection,Emergency Command and Logistics Transportation System

Feima x1

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designed for use in various hazardous working environments, including underground and gas mines

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Slam100
intrinsically safe
handheld
lidar scanner

slam100 intrinsically safe
slam100 handheld lidar scanner

Slam100
handheld
lidar scanner

SLAM100 is the first handheld mobile LiDAR scanner launched by China feima-Robotics Co., Ltd.

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DJI M350 RTK PAYLOAD

oblique payload
for dJI uAV platform

DP500 is a tilt photography module developed by Feima Robotics based on market demand, designed to adapt to the DJI UAV platform

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Feima UAV

Feima V500R

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Simple yet powerful

feima D2000s

Feima D2000S

One-stop high-precision operation platform based on high-performance rotor platform

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feima feima e2000s

Feima E2000S

Pegasus Intelligent Aerial Survey System
Focus on high-precision aerial survey and rebuild the real world

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Advantages
High EfficiencyAutomation of Measurement Processes
High Accuracy
High-Precision Imaging and Image Processing
Intelligent AutomationAI Measurement Algorithms and Automated Reporting
Parameters & Key Indicators
ModelBZL-CE02-A
AccessoriesTripod / Scanner / Computing Terminal
Dimensions300x183x103mm
Work Efficiency>300㎡/h &2 Minutes per Room

Industry Status

Actual Measurement and Testing

Based on national or industry-specific quality acceptance standards, it is used to provide project managers with accurate feedback on product quality, enabling them to take timely measures to eliminate critical issues or improve construction techniques.

Problems with Traditional Processes

  1. Measurement tasks are extensive and complicated, requiring the use of numerous measurement tools, which is time-consuming, labor-intensive, and inefficient.
  2. Relying on relatively outdated data collection methods such as spirit levels and feeler gauges, the number of data points collected is limited, the sampling rate is low, and the results are easily influenced by the measuring tools and human operation.
  3. The measurement results are manually compiled, leading to fragmented data that is difficult to maintain and lacks objectivity. This makes it challenging for project management to detect issues in a timely manner and to carry out accurate and comprehensive quality control of the construction.

Supports measurement data quality analysis, measurement progress analysis, and efficiency analysis; facilitates role and permission management for project personnel and equipment management.

Wall Flatness, Verticality, Squareness, Corners, Ceiling Levelness, Floor Levelness, Ceiling Flatness, Floor Flatness, Room Depth Variation

Supports stages and elements such as concrete structures, high-precision blocks/walls, plastering, civil engineering handover, renovation, and unit acceptance.

Supports management of construction project floor plans, standard library management, site type management, and more.

Supports real-time generation of visual data reports, including heatmap displays for underperforming areas.

AI Intelligent Algorithm Recognition: Automatically identifies building elements such as walls, doors, windows, ceilings, and masonry.
Precise Virtual Level and Square Technologies: Replace traditional measuring tools, offering faster and more accurate measurements.

Real-time calculations on-site, with measurement data uploaded to the cloud backend system for centralized management. Strict permission controls are applied for data sharing to the app.

Role classification and permission levels are established based on different roles to facilitate multi-party collaborative management, ensuring that data from a single measurement can be utilized by multiple parties.

You can view the current construction measurement progress and work areas for the project, each construction stage of the project, buildings, each construction stage of the buildings, and data such as the number of measured floors.

The overall pass rate for project measurements, pass rates for each measurement item, and comprehensive measurement data from the project level down to buildings, floors, unit types, and stations are all fully presented.

The surveyor’s work details, including accumulated work area, floors measured, and number of working days, are clearly presented daily, monthly, and yearly, with data trends and traceability.