Isochronous paraxial timepiece resonator

US9429916B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9429916-B2
Application numberUS-201514863513-A
CountryUS
Kind codeB2
Filing dateSep 24, 2015
Priority dateSep 26, 2014
Publication dateAug 30, 2016
Grant dateAug 30, 2016

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

A timepiece resonator including one weight connected by flexible strips to fixed attachment points of a fixed structure, this weight being subjected to a torque and/or a stress, and oscillating with at least two degrees of freedom in translation, and these flexible strips maintain the oscillations of this weight about a virtual pivot.

First claim

Opening claim text (preview).

What is claimed is: 1. An equipped timepiece resonator for a watch movement, comprising: one weight connected by a plurality of flexible strips to four points of attachment of a fixed structure, formed by a plate of said movement or arranged to be secured to a said plate, said weight being arranged to be subjected to a torque and/or a stress, said flexible strips including long arms spirally wound about said weight, wherein said weight is arranged to oscillate with at least two degrees of freedom in translation in a first direction, and in a second direction orthogonal to said first direction, wherein said flexible strips are arranged to maintain oscillations of said at least one weight about a virtual pivot that is movable from an initial position. 2. The equipped timepiece resonator according to claim 1 , wherein each arm has a length at least two times greater than a shortest distance between said weight and said points of attachment. 3. The equipped timepiece resonator according to claim 1 , wherein said resonator is paraxial with at least two degrees of freedom in translation, and wherein said flexible strips include, on the one hand, first flexible strips arranged to allow oscillations of said weight about said virtual pivot in said first direction, and on the other hand, second flexible strips arranged to allow oscillations of said weight about said virtual pivot in said second direction. 4. The equipped timepiece resonator according to claim 3 , wherein said first flexible strips are identical to each other and symmetrical with respect to said virtual pivot in absence of excitation of said resonator, and wherein said second flexible strips are identical to each other and symmetrical with respect to said virtual pivot in absence of excitation of said resonator. 5. The equipped timepiece resonator according to claim 3 , wherein said first flexible strips and said second flexible strips are all identical. 6. The equipped timepiece resonator according to claim 3 , wherein said resonator has an even number of said first flexible strips, and an even number of said second flexible strips. 7. The equipped timepiece resonator according to claim 6 , wherein said resonator has an equal number of said first flexible strips and said second flexible strips. 8. The equipped timepiece resonator according to claim 3 , wherein said first flexible strips are coplanar with each other and said second flexible strips are coplanar with each other. 9. The equipped timepiece resonator according to claim 3 , wherein said resonator is plane, and said first flexible strips and said second flexible strips are all coplanar with each other. 10. The equipped timepiece resonator according to claim 3 , wherein each said long arm is spirally wound about said at least one weight and forms a spiral of more than one turn, and wherein a pitch of said spiral varies along said spiral for each of said first flexible strips and of said second flexible strips. 11. The equipped timepiece resonator according to claim 3 , wherein each said long arm is spirally wound about said at least one weight and forms a spiral of more than one turn, and wherein a thickness of said spiral varies along said spiral, for each of said first flexible strips and of said second flexible strips. 12. The equipped timepiece resonator according to claim 2 , wherein each said long arm forms a spiral of more than one turn. 13. The equipped timepiece resonator according to claim 2 , wherein each said long arm forms a spiral including an integer number of turns to which a half-turn is added. 14. The equipped timepiece resonator according to claim 2 , wherein said long arms each have a developed length greater than a largest circumference of said weight. 15. The equipped timepiece resonator according to claim 1 , wherein there is only one said weight. 16. The equipped timepiece resonator according to claim 15 , wherein a centre of inertia of said weight coincides with said virtual pivot in absence of excitation of said resonator. 17. A timepiece movement including a plate that supports, directly, or indirectly via a fixed structure, at least one equipped timepiece resonator according to claim 1 . 18. The equipped timepiece resonator according to claim 1 , wherein a first point and a second point of said four points are symmetrically located with respect to the initial position, and a third point and a fourth point of said four points are symmetrically located with respect to the initial position. 19. An equipped timepiece resonator for a watch movement, comprising: one weight connected by one flexible strip or a plurality of flexible strips to one or more points of attachment of a fixed structure, formed by a plate of said movement or arranged to be secured to a said plate, said weight being arranged to be subjected to a torque and/or a stress, wherein said weight is arranged to oscillate with at least two degrees of freedom in translation, and wherein said flexible strips are arranged to maintain oscillations of said at least one weight about a virtual pivot, and wherein said resonator includes a plurality of said weights concentric with each other about said virtual pivot, each innermost weight of said weights being suspended from a next one by said first flexible strips and said second flexible strips, and an outermost one of said weights being suspended from said structure by said first flexible strips and said second flexible strips. 20. The equipped timepiece resonator according to claim 19 , wherein the resonator forms a one-piece component including said structure, said weights, said first flexible strips and said second flexible strips. 21. The equipped timepiece resonator according to claim 19 , wherein, on both sides of at least one said weight, long arms are spirally wound in opposite one-directions. 22. The equipped timepiece resonator according to claim 15 , wherein the resonator forms a one-piece component including said structure, said weight, said first flexible strips and said second flexible strips. 23. The equipped timepiece resonator according to claim 22 , wherein the resonator is made of micromachinable material or silicon or silicon oxide. 24. A watch including a timepiece movement according to claim 23 .

Assignees

Inventors

Classifications

  • G04B17/04Primary

    Oscillators acting by spring tension · CPC title

  • G04B17/045Primary

    with oscillating blade springs (mechanical oscillations maintained by electro-magnetic means, e.g. tuning forks G04C3/10) · CPC title

  • G04B1/00Primary

    Driving mechanisms {(driving mechanisms for Turkish time G04B19/22; driving mechanisms in the hands G04B45/043; driving mechanisms for phonographic apparatus G11B19/00; springs, driving weight engines F03G; driving mechanisms for cinematography G03B1/00; driving mechnisms; driving mechanisms for time fuses for missiles F42C; driving mechnisms for toys A63H29/00)} · CPC title

  • Component parts or constructional details, e.g. collet, stud {, virole or piton} · CPC title

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What does patent US9429916B2 cover?
A timepiece resonator including one weight connected by flexible strips to fixed attachment points of a fixed structure, this weight being subjected to a torque and/or a stress, and oscillating with at least two degrees of freedom in translation, and these flexible strips maintain the oscillations of this weight about a virtual pivot.
Who is the assignee on this patent?
Eta Sa Mft Horlogere Suisse
What technology area does this patent fall under?
Primary CPC classification G04B17/04. Mapped technology areas include Physics.
When was this patent published?
Publication date Tue Aug 30 2016 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 2 related publications on this page (citations in our corpus or others sharing the same primary CPC).