Vibration type driving apparatus and driving circuit thereof

US9362850B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-9362850-B2
Application numberUS-201313851478-A
CountryUS
Kind codeB2
Filing dateMar 27, 2013
Priority dateApr 2, 2012
Publication dateJun 7, 2016
Grant dateJun 7, 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 vibration type driving apparatus includes a vibrating body having an electrical-mechanical energy converting element, a first elastic body and a second elastic body; and a moving body that moves relative to the vibrating body. The vibrating body has a third elastic body that includes a sliding surface. A resonance frequency in a mode where the non-sliding surface side of the vibrating body in the axial direction mainly vibrates with the third elastic body is adapted so as to fall out of a frequency range between a multiple of a maximum frequency of a driving signal applied to the electrical-mechanical energy converting element, and a multiple of a minimum frequency of the driving signal.

First claim

Opening claim text (preview).

What is claimed is: 1. A vibration type driving apparatus comprising: a vibrating body in which an electrical-mechanical energy converting element is provided between a first elastic body and a second elastic body; and a moving body that comes into contact with the vibrating body and moves relative to the vibrating body, wherein the vibrating body has a third elastic body between the first elastic body and the electrical-mechanical energy converting element, wherein the third elastic body extends in a direction perpendicular to an axial direction of the vibrating body and includes a sliding surface further outside than the external diameter of the electrical-mechanical energy converting element, and the moving body slides on the sliding surface, wherein the vibrating body has a plurality of natural vibration modes in which displacement directions and orders are the same and relative proportions of displacements at end portions of the vibrating body in an axial direction are different, and wherein a resonance frequency in a mode where the non-sliding surface side of the vibrating body in the axial direction mainly vibrates with the third elastic body as a border is configured to fall out of a frequency range between a multiple of a maximum frequency of a driving signal applied to the electrical-mechanical energy converting element, and a multiple of a minimum frequency of the driving signal. 2. The vibration type driving apparatus according to claim 1 , wherein the dynamic rigidity on a sliding surface side of the vibrating body is smaller than a dynamic rigidity on the non-sliding surface side of the vibrating body in the axial direction with the third elastic body as a border. 3. The vibration type driving apparatus according to claim 1 , wherein the resonance frequency in the mode where the non-sliding surface side of the vibrating body mainly vibrates is greater than a value within the frequency range between the multiple of the maximum frequency to be swept in the vibration type driving apparatus and the multiple of the minimum frequency to be swept in the vibration type driving apparatus. 4. The vibration type driving apparatus according to claim 1 , wherein the multiple is two times. 5. The vibration type driving apparatus according to claim 1 , further comprising a driving circuit that supplies a driving signal to the electrical-mechanical energy converting element, wherein a mode where the sliding surface side of the vibrating body mainly vibrates is excited among the plurality of different vibration modes by the driving signal. 6. The vibration type driving apparatus according to claim 1 , wherein the third elastic body is formed by integral processing with the first elastic body. 7. The vibration type driving apparatus according to claim 1 , wherein the second elastic body is provided on the non-sliding-surface side with respect to the third elastic body. 8. The vibration type driving apparatus according to claim 1 , wherein the resonance frequency in the mode where the non-sliding surface side of the vibrating body mainly vibrates with the third elastic body as a border is higher than a value within the frequency range between the multiple of the maximum frequency of the driving signal and the multiple of the minimum frequency of the driving signal. 9. The vibration type driving apparatus according to claim 1 , wherein the resonance frequency in the mode where the non-sliding surface side of the vibrating body mainly vibrates with the third elastic body as a border is lower than a value within the frequency range between the multiple of the maximum frequency of the driving signal and the multiple of the minimum frequency of the driving signal. 10. A driving circuit of a vibration type driving apparatus comprising: a vibrating body in which an electrical-mechanical energy converting element is provided between a first elastic body and a second elastic body; and a moving body that moves relative to the vibrating body, wherein the vibrating body includes a third elastic body between the first elastic body and the electrical-mechanical energy converting element, wherein the third elastic body extends in a direction perpendicular to an axial direction of the vibrating body and includes a sliding surface further outside than the external diameter of the electrical-mechanical energy converting element, and the moving body slides on the sliding surface, wherein the vibrating body applies a driving signal to the vibration type driving apparatus having a plurality of natural vibration modes in which displacement directions and orders are the same and relative proportions of displacements at portions of the vibrating body in an axial direction are different, and wherein a frequency range between a multiple of a maximum frequency of the driving signal and a multiple of a minimum frequency of the driving signal is configured to fall out of a resonance frequency in a mode where the non-sliding surface side of the vibrating body in the axial direction mainly vibrates with the third elastic body as a border. 11. The driving circuit of a vibration type driving apparatus according to claim 10 , wherein a frequency range between the multiple of the maximum frequency of the driving signal and the multiple of the minimum frequency of the driving signal is lower than the resonance frequency in the mode where the non-sliding surface side of the vibrating body mainly vibrates with the third elastic body as a border. 12. The driving circuit of a vibration type driving apparatus according to claim 10 , wherein a frequency range between the multiple of the maximum frequency of the driving signal and the multiple of the minimum frequency of the driving signal is higher than the resonance frequency in the mode where the non-sliding surface side of the vibrating body mainly vibrates with the third elastic body as a border.

Assignees

Inventors

Classifications

  • H02N2/001Primary

    Driving devices, e.g. vibrators · CPC title

  • H02N2/106Primary

    Langevin motors · CPC title

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What does patent US9362850B2 cover?
A vibration type driving apparatus includes a vibrating body having an electrical-mechanical energy converting element, a first elastic body and a second elastic body; and a moving body that moves relative to the vibrating body. The vibrating body has a third elastic body that includes a sliding surface. A resonance frequency in a mode where the non-sliding surface side of the vibrating body in…
Who is the assignee on this patent?
Canon Kk
What technology area does this patent fall under?
Primary CPC classification H02N2/001. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Jun 07 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 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).