Adjustable jaws linked by an elastic mechanism let one watch press fit bezels or crystals across case sizes without plate changes or surface damage.
Ultra-short pulse laser ablation with cone-angle correction shapes watch bearing stones precisely while limiting thermal damage and improving surface finish.
Ultra-short pulse laser ablation with beam precession shapes horological stones into precise bearing rims without thermal damage.
Ultrashort laser pulses below 10 ps cut metallic-glass strips while limiting heat buildup, preventing crystallization, burrs, and heat-affected zones.
Ultra-short pulse laser ablation forms a precise cone at the watch stone hole entrance to cut friction, wear, and pivot rim damage.
Movable jaws and an elastic clamping mechanism let one watch press hold case middles of many sizes for stable bezel or crystal fitting.
Independent centering and holding devices use adaptive radial force to machine fragile watch components without breakage or loss of concentricity.
A longer zero-curvature neck helps watch barrel springs withstand small barrel radii, reducing plastic deformation and premature breakage.
Independent centering and holding devices distribute clamping force on fragile watch components to prevent cracking and improve concentricity.
A longer zero-curvature neck helps low-core-radius mainsprings limit plastic deformation, reduce breakage, and preserve winding efficiency.
Partial flange insertion and axial pressure form a uniform adhesive ring, preventing spillage inside the watch case and easing glass replacement.
This case uses perpendicular laser irradiation to weld an exterior member while preserving surface accuracy and positioning precision.
Segmented elastic cam surfaces enable micrometric axial play adjustment in watch movements without threading, resolving size and accessibility constraints.
Segmented conductive tracks on a universal support reduce galvanic waste and manual handling risks during watch dial element processing.
A pull-out piece mechanism with a movable connecting element and elastic return member enables spontaneous locking of the control stem.
Boron-doped diamond coatings eliminate electrostatic charging and particle attraction in micromechanical watch movements.
Applying coatings after assembly reduces manual handling and manufacturing costs while enabling personalized decoration through server-based selection.