A watch correction mechanism selects and adjusts multiple complications through rotational stem movements, removing separate pushers.
A linear correction mechanism independently adjusts two timepiece indicators while simplifying layout constraints and improving correction accuracy.
A control arbor and auxiliary lever immobilize the balance, preload the flexible resonator, and enable automatic restarting without shaking.
An auxiliary lever stops the flexible-guided balance at a controlled angle, enabling automatic oscillation restart without vigorous shaking.
A toothed rocker and elastic stop lever halt the balance during time setting and restart it with a large angle in compact movements.
A selection cam links a winding stem to multiple time indications, increasing adjustability without adding push buttons that compromise aesthetics.
Elastic arm pivots positioning lever to mesh toothed wheels, preventing jamming and disengagement during switching.
A watch stopping device brakes a double plate via a control lever to isolate the balance wheel from direct contact forces.
A watch spring with a pivoting elastic blade compresses between the heel and support element during rotation.
An axial slider mechanism transmits crown displacement to indicate four functional states, resolving assembly complexity in screw-down watch designs.
A timepiece mechanism resets the seconds hand to zero via a push-button control rocker linked to the winding stem.
Axial crown movement switches between winding and setting modes via a torsionally rigid coupling, eliminating pull-out damage risks.
A dual third wheel group mechanism synchronizes minute and second hands, resolving synchronization loss when the crown is pulled for setting.
A watch rotating structure uses a gear set to turn the dial 180 degrees, keeping the adjusting knob accessible.