STD • 60–150 kHz current UST baseline; alternate mechanisms under studyNo human or animal occupancy during operationService / calibration / future quantum-sensor modes: empty-only
STD • Engineering Envelope • Phase 3
Current public engineering snapshot
This page explains the design envelope without publishing exact proprietary geometry or unvalidated release specifications.
Study Range60–150 kHz current UST baseline; alternate ultrasonic drying mechanisms remain under validation
CouplingAir + damp-fiber interaction + controlled moisture extraction
OccupancyUnoccupied appliance only — never operate with humans or animals inside
PlatformShared UST electrical, sensing, control, safety, materials and service architecture
CAD3D CAD neutral workflow; final toolchain not locked
Architecture Notes
What defines this branch
Drying conceptAcoustic moisture mobilization or droplet ejection is paired with controlled airflow rather than treated as conventional hot-air drying.
Mechanism statusMultiple drying mechanisms remain under study; atomization-frequency claims are not yet a released STD requirement.
Moisture handlingConcept architecture includes mist-laden exhaust, droplet separation / demisting, condensate collection and blower-driven transport.
Air mover selectionFinal blower sizing must be based on an operating point against system pressure drop, not free-air CFM alone.
Public-IP boundaryExact acoustic coupling method, transducer arrangement, separator dimensions and control loops remain engineering-development content.
Functional Field Concept
Controlled energy, not brute force
Concept visualization only — field shape, emitter count, phase map and exact geometry intentionally not disclosed.
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Occupancy / safety boundaryHard occupancy prohibition. Door, airflow, condensate, thermal and acoustic/impedance interlocks must be satisfied before acoustic assist runs.
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