Rear-side laser irradiation welds opaque typesetting members onto transparent resin dial plates, preventing visible surface burns.
Segmented watch surfaces snap into place via an abutting ring, allowing style changes without owning multiple watches.
Elastic mounting member prevents bezel wobble and regulates rotation torque without dedicated packing materials.
Segmented dial zones with replaceable bezels resolve the trade-off between structural reliability and aesthetic versatility.
A watch display mechanism uses mobile elements to expose the screen for information while covering it to conserve energy.
Independent rotating indexes on a single plane prevent overlap and parallax errors while maintaining a continuous surface for intuitive time reading.
A luminous watch display integrates a color filter on the moving hand to modify transmitted light radiation.
Segmented dial plates and nested rotary indicators expose index markers through cutouts, resolving function identification errors in analog watches.
Laser ablation creates relief patterns on transparent watch substrates, ensuring precise thin layer alignment without complex manufacturing procedures.
Assigning distinct display periods to varied measurement items reduces continuous sensor power draw while maintaining reliable result confirmation.
Direct drive eliminates intermediate kinematic chains to reduce energy consumption and simplify annual calendar devices.
Segmenting the bezel from the case structure allows free vibration in the 1-6 kHz band while an O-ring seal maintains waterproofness.
A watch bezel extraction tool uses a bell clamp and coaxial thrust unit to grip and release components.
Segmented optical guides direct light from a central spindle to watch hands, resolving weight and design constraints.
Inclined bezel surfaces separate adjacent notations into distinct planes, preventing visual confusion and improving readability.
A timepiece specifies true north direction using a magnetic sensor and positional data reception unit.
Anodic bonding joins stainless steel to sapphire using an intermediate layer and pulsed electric fields, achieving gas-tight seals at lower temperatures.
A rotatable dial plate and independent hand drive mechanism enable clear numerical value display on analog electronic timepieces.
A rotatable bezel protects operation buttons from external contact while a processor accepts valid motion inputs when the cover is in the second position.
A transparent watch hand applies a titanium coating to hide barrel junctions and improve color adhesion, reducing finishing steps.
Two independent motors drive coaxial hands to display identical depth values, allowing detection of motor desynchronization caused by shock impacts.
A translucent sapphire zone pre-excites fluorescent time indications before they appear through a dial opening.
A rotor-driven governor uses fluid viscosity to maintain constant speed without solid contact.
A mechanical watch calendar display uses a bidirectional gear train to index date and day disks automatically.
Elastomer joints decouple gong from case structure, resolving structural stability versus parasitic vibration damping.
A watch bezel ultrasonically welds to the crystal and middle part for a sealed assembly.
A peripheral optical detection system synchronizes watch wheels using a reflective element and light beam.
Distinct color schemes on timepiece pointers resolve viewing ambiguity while maintaining identical manufacturing components.
Straight blades replace complex curves to solve manufacturing difficulties while enabling precise torque profiles and bistable behavior.
Printing device constructs superimposed particle layers to form three-dimensional elements on timepiece dials.
A mechanical gear pump drives fluid circulation through watch glass channels, maintaining legible time indications under shock without spilling.
Segmented radial projections prevent assembly slippage while ensuring accurate positioning through self-aligning engagement with the case.
A peripheral optical sensor detects wheel rotation via a surface reflector to enable compact assembly.
A timepiece display plate uses laminated metallic foil pieces on a light-transmitting base to reflect light while allowing transmission.
Molding a flexible dial with undercut surfaces creates complex reliefs without stacking layers.
Transparent OLED substrates extract trapped light via frosted side faces, illuminating secondary objects without increasing power consumption.
A watch component uses wet plating for a protective film and dry plating for a multilayer decorative film to ensure structural integrity.
A transparent touch screen watch merges mechanical pointers with smart interfaces.
A fibre optic glass plate projects watch display information onto its top surface to eliminate optical interference.
Gear train drives three-dimensional sphere to show lunar phase and day, resolving space constraints limiting wheel count for precise duration representation.
A clockwork stop lever uses a flexible arm to limit travel and control a moving part efficiently.