Timepiece comprising an oscillating mass and a shock-absorbing organ
US-2026093210-A1 · Apr 2, 2026 · US
US9557712B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9557712-B2 |
| Application number | US-201514930746-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 3, 2015 |
| Priority date | Nov 14, 2014 |
| Publication date | Jan 31, 2017 |
| Grant date | Jan 31, 2017 |
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The oscillating weight includes a drive ring and a heavy sector. The drive ring includes an annular transmission portion which has a coaxial toothing and a second annular portion concentric to the annular transmission portion, the heavy sector being fixed to the second annular portion. The drive ring further includes a plurality of connecting elements which are elastically deformable and which connect the annular transmission portion to the second annular portion.
Opening claim text (preview).
What is claimed is: 1. An annular oscillating weight for a self-winding timepiece, comprising: a drive ring including an annular transmission portion provided with a coaxial toothing to drive the winding of the timepiece, and including a heavy sector secured to the drive ring; wherein the drive ring further includes a plurality of elastically deformable connecting elements, the heavy sector being connected to the annular transmission portion via the connecting elements, and wherein the annular transmission portion provided with the coaxial toothing and the elastically deformable connecting elements are movable relative to each other in a same plane that extends in a radial direction of the drive ring. 2. The annular oscillating weight according to claim 1 , wherein the deformable connecting elements are formed by flexible rods arranged to deform elastically. 3. The annular oscillating weight according to claim 2 , wherein the flexible rods each have a longitudinal arbor, and the longitudinal arbors extend in the same plane. 4. The annular oscillating weight according to claim 3 , wherein the flexible rods each include a fork giving them substantially a Y-shape, the fork being comprised in the same plane. 5. The annular oscillating weight according to claim 3 , wherein the flexible rods each include a middle, an inner end and an outer end, the flexible rods being divided into two on either side of the middle towards each of said ends, the flexible rods substantially having a double Y-shape, the double Y including two opposite forks each comprised in the same plane. 6. The annular oscillating weight according to claim 3 , wherein, in an absence of external stress, the longitudinal arbor of each of the flexible rods is oriented radially. 7. The annular oscillating weight according to claim 3 , wherein the longitudinal arbor of each of the flexible rods is non-radial. 8. The annular oscillating weight according to claim 2 , wherein the drive ring includes a second annular portion concentric to the annular transmission portion, the flexible rods being integral with the annular transmission portion and with the second annular portion and the heavy sector being secured to the second annular portion. 9. The annular oscillating weight according to claim 8 , wherein, in an absence of external stress, the second annular portion extends concentrically about the annular transmission portion and in the same plane. 10. The annular oscillating weight according to claim 1 , wherein the annular transmission portion provided with the coaxial toothing includes the coaxial toothing on an inner circumferential surface of the annular transmission portion. 11. The annular oscillating weight according to claim 1 , wherein the annular transmission portion provided with the coaxial toothing includes a groove that is engageable with at least one bearing roller. 12. The annular oscillating weight according to claim 11 , wherein the groove is on a same side of the annular transmission portion as the coaxial toothing. 13. A self-winding timepiece movement comprising: an oscillating weight including an annular transmission portion provided with a coaxial toothing to drive the winding of the timepiece, and including a heavy sector secured to a drive ring; wherein the drive ring further includes a plurality of elastically deformable connecting elements, the heavy sector being connected to the annular transmission portion via the connecting elements, and a self-winding mechanism including a winding wheel set arranged to mesh with the coaxial toothing, and at least three bearing rollers mounted to pivot on a fixed element of the timepiece, the bearing rollers being arranged to cooperate with the annular transmission portion of the drive ring so that the oscillating weight is free to rotate, suspended and guided by the bearing rollers. 14. A self-winding timepiece comprising: a timepiece movement including an oscillating weight including an annular transmission portion provided with a coaxial toothing to drive the winding of the timepiece, and including a heavy sector secured to a drive ring; wherein the drive ring further includes a plurality of elastically deformable connecting elements, the heavy sector being connected to the annular transmission portion via the connecting elements, and a self-winding mechanism including a winding wheel set arranged to mesh with the coaxial toothing, and at least three bearing rollers mounted to pivot on a fixed element of the timepiece, the bearing rollers being arranged to cooperate with the annular transmission portion of the drive ring so that the oscillating weight is free to rotate, suspended and guided by the bearing rollers.
Weights consisting of several parts (diverse weights which are movable in more than one plane G04B5/187) · CPC title
Component shock protection arrangements (shock damping bearings G04B31/02; shock-damping in the case G04B37/04; protection of the pendulum or chime during transport G04B41/00) · CPC title
by oscillating weights the movement of which is limited {(setting the time indicating means with the aid of a rocking bar G04B27/00)} · CPC title
Bearing, guide arrangements or suspension of the movement forming oscillating weight · CPC title
Guide arrangement of the moving weight in a circular course · CPC title
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