Vibration-wave motor

US11038439B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11038439-B2
Application numberUS-201715840096-A
CountryUS
Kind codeB2
Filing dateDec 13, 2017
Priority dateDec 15, 2016
Publication dateJun 15, 2021
Grant dateJun 15, 2021

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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-wave motor includes a vibrator, a first holding member configured to hold the vibrator, a second holding member configured to hold the first holding member, a plurality of pressing members arranged around the vibrator and configured to press the vibrator against a contacting member that contacts the vibrator, a movable plate disposed opposite to the vibrator with respect to the contacting member, and a coupling part configured to couple the second holding member and the movable plate with each other. The vibrator and the contacting member move relatively to each other due to a vibration generated by the vibrator. One of the second holding member and the movable plate includes a transmitting part configured to transmit a driving force of the vibration-wave motor to a driven member.

First claim

Opening claim text (preview).

What is claimed is: 1. A vibration-wave motor comprising: a vibrator; a contacting member configured to contact the vibrator; first and second movable parts configured to move relative to the contacting member by vibrating the vibrator; a fixing part configured to fix the first movable part and the second movable part; a driving force transmitting part disposed to at least one of the first and second movable parts and configured to transmit a driving force from the vibration-wave motor; and a pressing mechanism that includes a plurality of elastic members and a transmitting member configured to transmit a force from the plurality of elastic members to the vibrator, and presses the vibrator against the contacting member, wherein one end of the plurality of elastic members is held by the transmitting member, and another end of the plurality of elastic members is held by one of the first and second members, wherein the contacting member is disposed between the first and second movable parts in a first direction orthogonal to moving directions of the first and second movable parts, and wherein the driving force transmitting part is provided near the fixing part. 2. A vibration-wave motor comprising: a vibrator; a contacting member configured to contact the vibrator; first and second movable parts configured to move relative to the contacting member by vibrating the vibrator; a fixing part configured to fix the first movable part and the second movable part; a driving force transmitting part disposed to at least one of the first and second movable parts and configured to transmit a driving force from the vibration-wave motor; and a pressing mechanism that includes a plurality of elastic members and a transmitting member configured to transmit a force from the plurality of elastic members to the vibrator, and presses the vibrator against the contacting member, wherein one end of the plurality of elastic members is held by the transmitting member, and another end of the plurality of elastic members is held by one of the first and second members, wherein the contacting member is disposed between the first and second movable parts in a first direction orthogonal to moving directions of the first and second movable parts, and wherein the fixing part and the driving force transmitting part are provided in one of areas outside of the vibrator in a second direction orthogonal to the moving direction and the first direction. 3. The vibration-wave motor according to claim 2 , wherein at least part of the driving force transmitting part is disposed on a plane orthogonal to the moving direction on which the fixing part is disposed. 4. The vibration-wave motor according to claim 3 , wherein the fixing part has holes provided in the first and second movable parts and a fastening member configured to fix the first movable part onto the second movable part using the holes. 5. The vibration-wave motor according to claim 4 , wherein a fastening direction of the fastening member is approximately parallel to the second direction. 6. The vibration-wave motor according to claim 4 , wherein a fastening direction of the fastening member is approximately parallel to the first direction. 7. The vibration-wave motor according to claim 2 , wherein the driving force transmitting part has a curved shape projecting in the first direction. 8. The vibration-wave motor according to claim 2 , wherein the driving force transmitting part is a groove that extends in the second direction. 9. The vibration-wave motor according to claim 2 , wherein the first movable part holds the vibrator, and the second movable part holds a guide part configured to guide a movement of the first and second movable parts. 10. A vibration-wave motor comprising: a vibrator; a contacting member configured to contact the vibrator; first and second movable parts configured to move relative to the contacting member by vibrating the vibrator; a fixing part configured to fix the first movable part and the second movable part; a driving force transmitting part disposed to at least one of the first and second movable parts and configured to transmit a driving force from the vibration-wave motor; and a pressing mechanism that includes a plurality of elastic members and a transmitting member configured to transmit a force from the plurality of elastic members to the vibrator, and presses the vibrator against the contacting member, wherein one end of the plurality of elastic members is held by the transmitting member, and another end of the plurality of elastic members is held by one of the first and second members, wherein the contacting member is disposed between the first and second movable parts in a first direction orthogonal to moving directions of the first and second movable parts, and wherein the driving force transmitting part is provided at a position that provides a rigidity higher than those of the first and second movable parts at position overlapping the contacting member in the first direction. 11. An apparatus comprising: a vibration-wave motor; and a driven member driven by a driving force transmitted by the vibration-wave motor, wherein the vibration-wave motor includes: a vibrator; a contacting member configured to contact the vibrator; first and second movable parts configured to move relative to the contacting member by vibrating the vibrator; a fixing part configured to fix the first movable part and the second movable part; a driving force transmitting part disposed to at least one of the first and second movable parts and configured to transmit a driving force from the vibration-wave motor; and a pressing mechanism that includes a plurality of elastic members and a transmitting member configured to transmit a force from the plurality of elastic members to the vibrator, and presses the vibrator against the contacting member, wherein one end of the plurality of elastic members is held by the transmitting member, and another end of the plurality of elastic members is held by one of the first and second members, wherein the contacting member is disposed between the first and second movable parts in a first direction orthogonal to moving directions of the first and second movable parts, and wherein the driving force transmitting part is provided near the fixing part. 12. The apparatus according to claim 11 , wherein the apparatus is an optical apparatus that includes a lens as the driven member, wherein the driving force transmitting part transmits the driving force to the lens. 13. The apparatus according to claim 11 , wherein the apparatus is an image pickup apparatus. 14. An apparatus comprising: a vibration-wave motor; and a driven member driven by a driving force transmitted by the vibration-wave motor, wherein the vibration-wave motor includes: a vibrator; a contacting member configured to contact the vibrator; first and second movable parts configured to move relative to the contacting member by vibrating the vibrator; a fixing part configured to fix the first movable part and the second movable part; a driving force transmitting part disposed to at least one of the first and second movable parts and configured to transmit a driving force from the vibration-wave motor; and a pressing mechanism that includes a plurality of elastic members and a transmitting member configured to transmit a force from the plurality of elastic members to the vibrator, and presses the vibrator against the contacting member, wherein one end of the plurality of elastic members is held by the transmitting member, and another end of the plura

Assignees

Inventors

Classifications

  • using combined longitudinal modes · CPC title

  • Supports for driving or driven bodies; Means for pressing driving body against driven body · CPC title

  • using piezoelectric actuators · CPC title

  • for lenses {(supports for magnifying lenses G02B25/002)} · CPC title

  • with means for supporting objectives, supplementary lenses, filters, masks, or turrets · CPC title

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What does patent US11038439B2 cover?
A vibration-wave motor includes a vibrator, a first holding member configured to hold the vibrator, a second holding member configured to hold the first holding member, a plurality of pressing members arranged around the vibrator and configured to press the vibrator against a contacting member that contacts the vibrator, a movable plate disposed opposite to the vibrator with respect to the cont…
Who is the assignee on this patent?
Canon Kk
What technology area does this patent fall under?
Primary CPC classification H02N2/026. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Jun 15 2021 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 1 related publication on this page (citations in our corpus or others sharing the same primary CPC).