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Xvisio Technology: Providing millimeter-level 3D interactive capabilities for industry and medical applications
2025-08-12

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Introduction

"XR" is often translated as "extended reality." It's not a single technology, but rather an umbrella term encompassing all technologies that merge the real and virtual worlds. Simply put, XR (Extended Reality) = VR (Virtual Reality) + AR (Augmented Reality) + MR (Mixed Reality). XR, as a collective term for these technologies, represents the future trend in how we interact with the digital world, breaking down the boundaries between the physical and digital.



The DIC International XR Technology and Digital Display Forum was recently held at the Shanghai New International Expo Center, attracting over 100 technical experts and senior business representatives from the domestic XR industry. Xvisio Technology CEO Qiong Lin was invited to attend the event and delivered a keynote speech titled "Human-Computer Interaction Technology and Product Applications in the Era of AI and Spatial Computing."


Immersive MR: Analysis of Three Key Demand Scenarios


Mr. Lin systematically analyzes the dual-track differentiation of MR technology:



1. Informational MR: lightweight consumer applications (navigation/makeup trial), relying on mobile phones or basic glasses;

2. Immersive MR: Requires millimeter-level spatial positioning, multimodal interaction via eye control and gestures, and low-latency rendering, directly addressing three irreplaceable scenarios:



Industrial precision work

(Boeing performs aircraft wiring harness assembly)



Real-time surgical navigation

(Mayo Clinic uses AR navigation to complete spinal surgery)



Complex training

(Airbus simulates engine disassembly and assembly through AR)



2. Xvisio Technology's full-stack technology creates a domestic product matrix, focusing on immersive XR scenarios, and has achieved large-scale implementation


With spatial computing technology as its core, the company has launched a full-stack spatial computing and perception interaction solution for localization:



SeerLens® Immersive MR Glasses


Spatial computing interactive MR glasses;

Supports 6DoF self-tracking controller, eye tracking technology, 25-joint 3D natural gesture interaction, multi-person collaboration, and remote assistance;

Can be applied to MR operation scenarios such as aerospace, oral implant surgery navigation, and industrial auxiliary visualization;




SeerSense® Spatial Computing Module


Edge computing capabilities, SLAM algorithm integration, multi-sensor fusion (RGBD, binocular fisheye, ToF sensor), built-in SLAM/depth/AI engine;

Adapt to Open CV & Open VINO open source tools, providing rich SDK and convenient development experience;

Can be applied to indoor and outdoor robots, humanoid robots, drones, virtual production and other human-machine interaction scenarios ;




SeerController® self-tracking 6DoF controller


· Inside-out visual positioning, up to 5 meters per second, millimeter-level motion tracking, and no blind spots in control;

Supports universal Bluetooth and wireless communications, and is compatible with various XR devices/PCs/drones/3D TVs;

Can be applied to scenarios such as robotic arms and humanoid robot interaction training;


3. Full-stack self-development: vertical barriers from spatial algorithms to industrial implementation


Xvisio Technology's core differentiation lies in its full-stack self-developed technology closed loop.Different from the common modular assembly solutions in the industry, Xvisio Technology has built a complete technology chain from bottom-level perception to upper-level interaction:



The company has built a complete proprietary technology ecosystem, with core algorithms as its foundation, engine technologies as its pillar, and product applications as its extension. This ecosystem begins with the independently developed SlimEdge core algorithm and, through continuous expansion, has evolved into five core engine technologies covering key areas such as perception, interaction, and simulation:


VSLAM engine (spatial positioning and mapping)

SimEdgeXR Engine (mixed reality simulation)

Audio indexing engine (acoustic analysis and interaction)

Depth engine (3D environment perception)

Gesture and eye control engine (natural human-computer interaction)


Based on the above-mentioned engine technology, the company has opened up the full-chain capabilities from underlying algorithms to terminal products, and has derived a rich product line. This architecture fully reflects the technological autonomy of vertical integration: starting from the underlying algorithm, the modularization of key technologies is realized through five major engines, and finally the closed loop is completed at the hardware terminal (MR glasses, perception modules, interactive devices) and industry solution (aerospace, medical, industry, etc.) level, forming a full-stack innovation system covering "algorithm-engine-product-application".


Conclusion: Become a "spatial computing shovel" in niche areas


Xvisio Technology consistently focuses on high-barrier scenarios such as precision and complex industry, healthcare, robotics, and education and training. Leveraging its full-stack proprietary technology, we deeply tap into the critical needs of these niche sectors. We innovate robotic perception, surpassing the limits of human vision.


The XR industry is currently experiencing a triple-layered convergence: a hardware performance inflection point, a burgeoning content ecosystem, and the release of favorable policy incentives. In the short term, VR will see rapid growth, in the medium term, AR glasses will replace mobile phones, and in the long term, MR will become the next-generation general-purpose computing platform.

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