This guide outlines a user-friendly stockpile measurement solution, covering recommended equipment, key tools, workflows, and volume calculation methods—designed to meet the needs of both large-scale and small/indoor stockpile scenarios.
Recently, an aircraft maintenance base successfully introduced the P3 (T50) flexible tethered cleaning robot to assist with aircraft exterior cleaning operations. Working in coordination with on-site personnel, the P3 (T50) demonstrated powerful yet non-damaging cleaning performance, along with unique capabilities tailored for complex and irregular aircraft structures. The operation significantly improved overall efficiency and passed customer acceptance smoothly.
As China’s “Dual-Carbon” strategy deepens and digital transformation in forestry accelerates, forest resource surveys face increasing technical demands. Core parameters such as tree height, DBH, and stand volume now require centimeter-level accuracy while also meeting compliance requirements for traceability and data auditability. These capabilities form the foundation for carbon sink calculation, ecological monitoring, and sustainable forest management.
In the field of 3D reconstruction, real-time performance, accuracy, and environmental adaptability remain the core areas of technological breakthrough. The SLAM200E handheld LiDAR scanner, powered by advanced SLAM technology and integrated panoramic imaging, is capable of generating high-precision 3D Gaussian Splatting (3DGS) models. To validate its performance in real-world conditions, a technical team conducted a large-scale test in a commercial park. The goal was to evaluate the device’s efficiency in data acquisition and its effectiveness in generating 3DGS models under complex environmental conditions.
Recently, the AP3-P3 flexible tethered aerial cleaning system achieved DJI M400 PSDK mass production certification, becoming one of the first aerial cleaning payloads to pass this rigorous process. This milestone marks an important step forward in scaling aerial cleaning applications, bringing safer, more efficient solutions to high-altitude operations.
High-Precision, High-Performance, and Instant Mapping in One Device The SLAM200E Handheld LiDAR Scanner is a newly launched professional-grade mobile measurement tool that combines high precision, high efficiency, and versatile functionality. Building upon the proven strengths of previous models, it integrates a high-frequency laser sensor, dual 12MP panoramic cameras, a built-in high-precision GNSS module, and a high-performance computing unit to deliver a new standard of spatial data acquisition.
In front of the main building of the Greater Bay Area Data Application Industrial Park, an innovative demonstration drew widespread attention — a professional drone equipped with a high-pressure sprayer and rotating brush steadily took off, hovering close to the glass curtain wall of the high-rise. As the operator adjusted the controls, the drone began an automated cleaning process, spraying cleaning solution and scrubbing away years of accumulated dust. Within moments, the dull façade started to regain its original shine — a vivid example of how low-altitude economy is reshaping urban services.
A Versatile Quadruped Platform Bridging Industry and Academia The development of quadruped robots has rapidly evolved from laboratory research into real-world deployment. Modern bionic quadrupeds are increasingly used for industrial inspection, security patrol, and complex environmental operations that require agility, autonomy, and adaptability. The FOXTECH C1 Series Intelligent Quadruped Robot represents this new generation of robotic platforms—offering advanced mobility, modular architecture, and powerful AI computing for both industrial and research applications.
Have you ever found yourself juggling bags in a supermarket, wishing you had an extra pair of hands? Or struggled to move heavy boxes during a relocation, gasping for help? In moments like these, wouldn’t it be amazing to have a helper quietly following you, carrying your load? That’s exactly what intelligent following robots are designed to do — seamlessly blending into daily life as your smart, loyal companion. Whether you’re moving indoors or outdoors, these robots can automatically follow behind, carrying goods and freeing your hands.
Humanoid robots are increasingly becoming an integral part of modern technology, and at the heart of these robots lies one of their most sophisticated components: the robotic arm. Much like a human arm, the robotic arm is responsible for executing a wide range of tasks with precision and efficiency. Behind its seemingly simple movements lies a complex interplay of mechanics, electronics, and intelligent control.
For decades, robotic arms have served as precise, tireless assistants in factories, laboratories, and research centers. But until recently, they shared one fundamental limitation — they could move, but they couldn’t see or think. The latest fusion of 3D vision and AI-driven decision systems is now changing that paradigm, transforming conventional manipulators into intelligent agents capable of understanding and interacting with the world around them.
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