DAXY NEURAL LABS

Bio-Link System

NEURAL-LINK ARCHITECTURE

Pan-Dimensional Vision Terminal

Breaking through the limits of conventional optics, retinal direct-projection technology rebuilds physical dimensions. Vast streams of digital information fuse seamlessly with real space, unlocking a higher-dimensional holographic visual experience.

Projection Fidelity 16K Retina-Class
Reality Augmentation 100% FOV
Interaction Latency 0.1ms

Neuron Symbiotic Ring

A nano-flexible electrode array captures the faintest bioelectric pulses with surgical precision. Far more than a vital-signs monitor, it becomes a digital neural hub extending beyond your body.

Biocompatibility Nano-Adaptive Material
Sampling Rate 10,000 Hz
Micro-Gesture Recognition Sub-millimeter

Cerebral Interaction Interface

Built on a non-invasive brain-computer synaptic architecture that reads cortical thought bands directly. Thought becomes command — a single intention is enough to take full control of the most complex digital systems.

EEG Channels 1024 Independent
Intent Translation 99.99%
Transmission Protocol Quantum Entanglement

CORE TECHNOLOGY

Zero-Latency Neural Sensing

A photonic computing core links directly to peripheral nerves, shattering legacy physical lag and synchronizing thought and motion in real time.

Nano-Scale Self-Healing Material

A liquid-metal and polymer-cell composite engineered by the DAXY Bio division conforms perfectly to skin and recovers autonomously from physical damage.

Quantum Encryption Matrix

Irreversible quantum-state signatures protect your biometric data, ensuring absolute cloud-side security for subconscious signals and biological identifiers.

Holographic Topology Mapping

A real-time holographic topology model of your body, from macro skeletal-muscular structures to micro mind-flow frequencies, gives you a panoramic view of your living state.

TECHNICAL WHITE PAPER

Smart Wearable

A phased commercialization path from biosensing to human-machine symbiosis

71-page full report4 technical pillarsPDF 9.9 MB
01

Three Bio-Link Terminal Classes

The Bio-Link System consists of three product forms: the pan-dimensional vision terminal, the neuron symbiosis band, and the brain-domain interaction interface. The pan-dimensional vision terminal adopts mature optical waveguide, microdisplay, and spatial positioning technologies in the near term, prioritizing inspection, training, remote collaboration, and accessibility prompts. The neuron symbiosis band carries optical, temperature, inertial, and limited electrophysiological sensing in wristband, armband, patch, or textile form, delivering vital-sign trends, micro-movement recognition, posture feedback, and low-intrusion haptic alerts. The brain-domain interaction interface focuses on limited commands, state assistance, and accessibility input, combining eye tracking, EMG, inertial sensing, and EEG to reduce false triggers.

Near-term versions are built on industrially commercialized display modules, inertial measurement, photoplethysmography, skin temperature, EMG or EEG research modules, on-device computing, and modern cryptography. Parameters stated on the website—"16K retinal-grade, 100% FOV, 0.1 ms," "10,000 Hz sampling," "1024 independent channels, 99.99% intent-translation rate, quantum-entangled-state communication"—are classified as long-horizon concept targets that must be verified item by item through staged experiments and are not used for near-term sales acceptance.

02

Four Layers, Privacy Minimization

The architecture divides into a sensing and actuation layer, an edge intelligence layer, a trusted data layer, and a state model and application layer. What matters in the sensing layer is not the sensor inventory but time synchronization, quality control, and calibration, with terminals scoring the quality of raw signals. The edge intelligence layer converts high-frequency raw signals into low-dimensional features or events, uploading segments only when genuinely necessary. The trusted data layer sets tiered retention periods across raw signals, features, events, trends, and business records, and individuals can view the scope of their authorization and revoke further processing. The state model layer maps multimodal signals into a human digital model, letting industry applications query state changes through unified semantics.

03

Tiering Four Core Technologies

Zero-latency neural sensing is translated into "task-oriented perceptible low latency": separate latency budgets are established for sampling, processing, transmission, decision, and feedback, with critical paths completed on-device first. Nanoscale self-healing material takes flexible circuits, elastic encapsulation, and conductive textiles as its established base, with repeatable self-healing conductive pathways as frontier exploration, evaluated on bend lifetime and resistance recovery rate. The quantum encryption matrix adopts modern cryptography and hardware key protection in the near term, evaluates post-quantum migration in the mid term, and promises no "absolute security." Holographic topological mapping forms, in the near term, a bounded digital model from posture skeleton, physiological trends, and environmental context.

04

Enterprise Scenarios, Stage Gates

The solution prioritizes enterprise scenarios with quantifiable outcomes, clearly identified budget owners, and controllable deployment boundaries—occupational health and safety, high-risk industrial operations, rehabilitation and accessibility assistance, professional training, and specific spatial-computing collaboration—validating value with metrics such as incident rate, response time, training cycle, error-operation rate, and follow-up efficiency. The unit of delivery is not "device count" but an improvement package for a specific business process, comprising terminals, platform, rules, organizational mechanisms, and evaluation methods.

Before entering each market, four gates are set—value, technology, compliance, and replicability—and only when all four pass does a pilot proceed to scaled deployment. Market entry advances in three phases: phase one defines the product with a small number of design partners and completes lighthouse projects; phase two forms industry editions and replicates regionally; phase three builds the platform ecosystem and standards influence. Every frontier R&D effort connects through standard interfaces without disrupting existing products, and customers purchase capabilities that are verifiable today.

Preview Full Document Download PDF · Chinese edition (9.9 MB)

Smart Wearable · DAXY TECH