A timepiece movement uses a differential gear to combine two independent energy sources for continuous time display.
A watch movement control stem uses a pivoting actuating lever to select and drive multiple functions through distinct axial positions.
Deformable arms adjust wheel position on the arbor to eliminate component play and ensure visual clarity.
A high-entropy alloy timepiece component achieves superior mechanical strength and ductility through a single-phase solid solution structure.
Independent sequencer function units process MIDI data without an operating system, resolving memory constraints in compact devices.
A mechanical watch force control mechanism uses an accumulation fixed seconds wheel to maintain escapement oscillations.
A shaped aperture with alternating rigidifying and resilient zones secures brittle micro-mechanical parts onto shafts.
Segmented spring arms lock into pre-formed support shoulders to simplify assembly and reduce orientation errors.
A timepiece mechanism uses a holding member to secure gear wheels while an intermediate wheel shifts between engaged and disengaged positions.
Timing controller adjusts internal clock using video time codes to eliminate time lags between picture and tones during recording.
Axial positioning of a driven pinion selects specific horological functions, reducing moving parts and device bulk.
A music fingerprinting system generates identification codes from inter-onset intervals within filtered frequency bands.
Elastic blades isolate the gear train from rapid calendar adjustments, preventing mechanical stress during timekeeping operations.
An electronic controller synchronizes the motor-driven gear with the mechanical driving gear to correct time deviations caused by aging and wear.
Direct deposition and laser sintering eliminate lithography steps, reducing manufacturing costs for prototypes.
Assigns distinct colors to musical notes based on their frequency of occurrence across scales and chords.
Shrink-fitting a metallic stud into a recess secures fragile silicon watch parts to arbours, eliminating breakage risks from driving techniques.
A polymer mould replicates a master piece using fluid resin and pressure to build timepiece components through electroforming.
Photolithography forms complex timepiece component molds with inclined faces, eliminating post-machining precision trade-offs.
A shockproof timepiece wheel uses a flexible element to absorb impact energy through elastic torsion.
A transmission unit superimposes an addition sound on input voice to generate a synthesis sound for reception terminals.
Elastically deformable receiving structures retain watch members through reversible geometry changes, resolving loosening risks in compact ceramic assemblies.
A train wheel unit uses conductive polymer and carbon powder to discharge static electricity, preventing motor module stoppages caused by frictional resistance.
A controller synchronizes MIDI sequences with commercial CDs using digital audio sample rates as a high-resolution time base.
A singing synthesis parameter estimation system refines pitch and dynamics data from audio signals to generate human-like vocal output.
A rigid horological component uses a composite material with nanotubes to maintain structural integrity.
Integrates composition tools into portable devices to enable community-sourced score generation, resolving labor-intensive content bottlenecks.
An adjustable timepiece assembly uses press-fit pinions and toothed sectors to align pivot points on a base bar.
Segmented elastic holding member mounts timepiece components without elastic tightening using internal connecting portions.
A programmable mechanical memory wheel uses a pivoting heart-piece to store and adjust timepiece settings.
A barrel system integrates a rotation transmission shaft within the barrel axis to drive additional watch mechanisms.
A sliding lever with a locking beak holds a wheel set, avoiding obstructive screws that reduce the display surface.
A system detects accent patterns in musical data to generate rhythmic accompaniment.
A musical data input system automatically adjusts incoming note values to conform to a specified key and scale.
A multilayer metallic coating deposits on non-metallic watch components to enable brazing.
A signaling tone generation system uses recursive algorithms to create raw data sequences converted into unique audio patterns.
A detection circuit samples ambient noise to generate signals that guide an audio player processor in selecting appropriate music type modes.
An automatic composition apparatus retrieves phrase sets from a database to generate melodies based on matching levels.
A plastic mounting portion incorporates a drive shaft end piece via melting to secure display elements.
A virtual instrument system generates custom chords by applying transposition rules to predefined chord data stored in a database.
Repurposes graphics pipeline data for haptic rendering, eliminating separate processing bottlenecks that limit speed and realism in virtual environments.
Coaxially disposed display wheels reduce axial thickness while enabling independent correction of date and lunar age indicators.
A plano-concave lens projects a shutter edge image to create realistic lunar phases in wristwatches.
Elastic return means adjust friction via discrete values, reducing wear and oversized forces while maintaining consistent braking reliability.
Computer processing unit generates melodic lines in real time using contour control and timing templates.
An oscillating seconds clutch mobile with elastic teeth eliminates quavering and starting jump in watch movements.
A performance apparatus detects stick positions by comparing consecutive images to generate musical tones.
A melody division unit segments audio tracks using predicted phrase breaks and note lengths for accurate music retrieval.
A sintered zirconia watch component expands during heat treatment to mechanically interlock with a second part.