XT-M120 Max 120 Lines Solid-State Flash LiDAR 80m Detect Range

Specifications

Scanning Method: Solid-State Flash LiDAR
Measurement Principle: Time-of-Flight (ToF) LiDAR
Light Wavelength: 940 nm
FOV (Horizontal Image View): 32 deg
FOV (Vertical Image View): 24 deg
FOV (Mechanical View) X Span: 40 deg
FOV Vertical (Mechanical View): 30 deg
Average Power: 6 – 6 W
Angle Resolution (H): 0.1 deg
Angle Resolution (V): 0.2 deg
Measurement Distance Outdoor (50% Reflectivity): 80 m
Frame Rate: 1 – 30 Hz
Working Temperature: -40 – 85 degC
Max Lines: 120
Laser Safety Class: Class 1
Certification: CB certification
Standard: EN60825
ECCN: EAR99
HTS: 9015.10.4000
Approximate Delivery Time To USA: 5 to 7 days
Estimated Tariff In USA (Based On Section 301 Tariff List): 25%
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Features


  • Advanced Solid-State Flash Lidar: The XT-M120Max features 120 lines of solid-state flash lidar technology, providing high-resolution and accurate distance measurement capabilities.

  • Class 1 Laser Safety: Certified to meet Class 1 laser safety standards, ensuring it is safe for human eyes and body during normal operation.

  • Wide Operating Temperature Range: Designed to perform reliably in various environmental conditions, including high and low temperatures, strong vibrations, and heavy fog.

  • Continuous Operation: The XT-M120Max operates continuously once powered, with no need for a power switch, making it ideal for automated systems.

  • Compact and Durable Design: Built with a robust shell to withstand challenging operational environments, ensuring long-term durability and performance.

  • Easy Integration: Suitable for integration into a wide range of applications, providing flexibility for developers and engineers.

  • Technical Support: Comprehensive support available through ToFFuture's technical team to assist with any operational or integration challenges.

Applications


  • Autonomous Vehicles: Enhance navigation and obstacle detection for self-driving cars.

  • Robotics: Improve spatial awareness and path planning for industrial and service robots.

  • Mapping and Surveying: Create detailed 3D maps for construction and land surveying.

  • Security and Surveillance: Monitor large areas and detect intrusions with high precision.

  • Smart Cities: Facilitate traffic management and urban planning with real-time data.

  • Agriculture: Optimize crop monitoring and management through precise field mapping.

  • Augmented Reality (AR): Enhance AR experiences by providing accurate environmental data.

  • Virtual Reality (VR): Improve VR environments with realistic 3D modeling.

  • Environmental Monitoring: Track changes in natural landscapes and ecosystems.

  • Logistics: Streamline warehouse operations and inventory management with precise object detection.