Integrated instrument engineering

One integrated measurement-and-sorting workflow.

Rhei BioTech connects controlled sample handling, optical detection, signal acquisition, real-time processing and intelligent interpretation with selective action.

Explore the architecture
NanoSpec AI / system architectureMeasurement → decision → action
Sample inletOptical interrogationSorting junction / outputs
  1. 01
    Sample handlingMicrofluidics
  2. 02
    Optical interrogationOptics
  3. 03
    Signal acquisitionElectronics
  4. 04
    Event processingReal-time processing
  5. 05
    Event interpretationIntelligent analysis
  6. 06
    Selective actionSorting
Control feedback

Event-linked processing and interpretation inform the intended sorting or manipulation step.

Fig. 01 Concept illustration. NanoSpec AI architecture is in development; geometry is schematic and does not specify a physical instrument configuration.
Direct answer

What is Rhei BioTech’s technology platform?

Rhei BioTech’s technology platform is an integrated instrument-engineering architecture spanning microfluidic handling, optical detection, electronics, real-time signal processing, intelligent analysis and active sorting or manipulation. HyperDrop commercializes the microfluidic foundation, while NanoSpec AI is extending the architecture toward particle-level analysis and action.

Integrated architecture

A physical sample path. A connected signal and control path.

The sample moves through the fluidic path. Optical signals enter the acquisition and processing architecture; interpretation informs the intended actuation step.

NanoSpec AI / system architectureMeasurement → decision → action
Sample inletOptical interrogationSorting junction / outputs
  1. 01
    Sample handlingMicrofluidics

    Structure the sample into a controlled event path.

  2. 02
    Optical interrogationOptics

    Capture optical signals from individual events.

  3. 03
    Signal acquisitionElectronics

    Connect detected signals to the processing architecture.

  4. 04
    Event processingReal-time processing

    Process event information within the instrument workflow.

  5. 05
    Event interpretationIntelligent analysis

    Interpret population structure and support decisions.

  6. 06
    Selective actionSorting

    Link an interpreted event to a developing actuation path.

Control feedback

Event-linked processing and interpretation inform the intended sorting or manipulation step.

Fig. 01 Concept illustration. NanoSpec AI architecture is in development; geometry is schematic and does not specify a physical instrument configuration.

HyperDrop provides commercial fluid-control tools. The complete NanoSpec AI measurement-and-sorting architecture remains in development.

Engineering disciplines

Each discipline supports the handoff to the next.

The instrument workflow depends on coordinated engineering across fluid handling, measurement, computation and actuation.

01 / Fluidics

Microfluidics

Rhei BioTech uses microfluidics to structure fluid handling, event delivery and droplet workflows at small scales. The technology is a core foundation for both NanoSpec AI development and the commercial HyperDrop product family.

  • Controlled sample and fluid handling
  • Integration with chips and workflow consumables
  • Foundation for individual-event or droplet workflows
02 / Optics

Optical detection

Optical detection is the NanoSpec AI platform capability intended to capture signals from individual events as they pass through a controlled interrogation region. Public performance specifications will follow validation and approval.

  • Individual-event signal capture
  • Instrument-level optical integration
  • Designed to connect with real-time processing
03 / Signal acquisition

Electronics

Electronics connect optical detection, signal acquisition and instrument control. This engineering layer provides the interface between physical events and the intended real-time processing workflow.

  • Signal acquisition
  • Coordinated instrument control
  • Interfaces between detection and computation
04 / Event processing

Real-time signal processing

Real-time signal processing connects detected events with timely computation inside the instrument workflow. Electronics, acquisition and processing architecture are being developed as coordinated platform capabilities rather than separate modules.

  • Event-linked data acquisition
  • Timely processing architecture
  • Bridge between detection and intelligent decisions
05 / Algorithms

Intelligent analysis

Intelligent analysis is the developing algorithmic layer intended to interpret particle-level signals, frame heterogeneous populations and support event-level decisions. It is not presented here as a validated diagnostic or clinical system.

  • Population and event interpretation
  • Algorithmic support for heterogeneous data
  • Maturity-aware research positioning
06 / Manipulation

Active sorting / manipulation

Active sorting or manipulation is the developing path from an interpreted event to selective physical action. It represents the final stage of the intended NanoSpec AI workflow and remains subject to ongoing platform validation.

  • From analysis toward selective action
  • Integrated control and actuation
  • Development status stated explicitly