The full stack

Filter. Sense. Read. Decide.

Most companies own one layer. Our protected technologies span the entire path a bio-signal travels — from the air and skin it crosses, through the electrode and the spectrum, to the model that returns a decision.

Read the stack bottom-up. Each layer feeds the one above it: the filtration layer keeps the sample clean, the wearable layer acquires the signal, the sensing layer turns it into current, the spectral-AI layer turns current into features, and the decision layer turns features into answers.
L4Decision softwaredecide

Generative and discriminative models close the loop: reconstructing evidence from noise, scoring psychological state from drawn traces, and even designing the physical package a device ships in.

latent-print reconstructiondrawing-based psychological analysis3D scan → generative packaging

Product surface: AI Analysis platform

L3Spectral AI — the braininterpret

Spectra are read as images: important feature regions are extracted, a learned model maps them to sample properties. This layer is what turns raw impedance into a diagnostic claim — the core of the EIS platform.

spectrum-image learningfeature-region extractionoptical + electrochemical modalities

Product surface: EIS platform · why geometry matters

L2Biofluid sensing — the skin interfacesense

Non-invasive quantification with built-in standard-solution calibration removes drift structurally; microneedle sweat extraction makes the sample collection itself passive and wearable.

standard-solution self-calibrationmicroneedle sweat harvestingnon-invasive quantification

Product surface: Bio-Sensor platform

L1Wearable stimulation & monitoringact · acquire

HRV-based anxiety prediction drives closed-loop stimulation; multi-channel low-frequency stimulators synchronise wirelessly; nerve conduction velocity is measured relatively for functional diagnostics. This is the BEAT Connected lineage.

HRV closed-loop stimulationmulti-channel wireless syncrelative nerve-conduction timing

Product surface: BEAT Connected

L0Electrostatic environment controlprepare

Conductive-fibre filter layers with an applied voltage precipitate particles electrostatically — the sample and air environment that everything above depends on stays clean.

electrostatic agglomeration filtermask & purifier integration

Interactive

The stack in motion, and the filings behind it.

Left: the five layers as one signal path — particles rise from clean air to a decision. Right: the actual patent portfolio, one column per filing, height = claim count.

· drag to orbit · ✦ symbolic illustration
· drag to orbit · ⚙ public registry data
Where each capability comes from — the filings behind the stack
  • 10-2943473 Non-invasive quantification with standard-solution calibration registered
  • 10-2965818 Latent fingerprint segmentation + learned reconstruction registered
  • 10-2942566 Electrochemical sensor with feature-region AI registered
  • 10-2755028 Spectrum-image analysis model (optical + electrochemical) registered
  • 10-2965810 HRV-driven brain stimulation device registered
  • 10-2459338 Multi-channel wireless low-frequency stimulator control registered
  • 10-2906148 Nerve-function diagnostics via relative conduction timing registered
  • 10-2462450 Electrostatic sterilising filter for masks and purifiers registered
  • 10-2022-0069400 Drawing-based psychological analysis application pending
  • 10-2023-0061277 Generative AI packaging from 3D scans pending
  • 10-2024-0134585 Microneedle sweat extraction and analysis wearable pending

Registration numbers, filing dates, IPC classes, and claim counts extracted from the KIPRIS registration publications. One-line capability tags summarise the technical field — they are not legal claim scope. Patent holder: UCARETRON Inc. (Anyang, Korea).

Licensing & collaboration

Build on the whole stack.

Technology licensing, joint development, and co-filing inquiries are welcome.