Vibration drive device capable of generating click feeling and image pickup apparatus
US-2016373630-A1 · Dec 22, 2016 · US
US11476406B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11476406-B2 |
| Application number | US-202016785835-A |
| Country | US |
| Kind code | B2 |
| Filing date | Feb 10, 2020 |
| Priority date | Feb 19, 2019 |
| Publication date | Oct 18, 2022 |
| Grant date | Oct 18, 2022 |
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A displacement magnification device has a first link portion including a first rigid body and a first plate spring that couples the first rigid body to a supporting portion and a movable portion. A second link portion includes a second rigid body and a second plate spring that couples the second rigid body to the supporting portion and the movable portion. In this structure, the first rigid body and the second rigid body play roles to suppress the bending of the first plate spring and the second plate spring. In addition, a connection portion between the first plate spring and the supporting portion, a connection portion between the second plate spring and the supporting portion, a connection portion between the first plate spring and the movable portion, and a connection portion between the second plate spring and the movable portion play roles of elastic hinges.
Opening claim text (preview).
The invention claimed is: 1. A displacement magnification device comprising: a piezoelectric element; and a displacement magnification mechanism configured to magnify an amount of displacement of the piezoelectric element, wherein the displacement magnification mechanism comprises: a supporting portion supporting the piezoelectric element, a movable portion facing and spaced apart from the supporting portion, and a pair of mutually parallel link portions coupling the supporting portion to the movable portion, wherein the piezoelectric element is mounted to the supporting portion so as to be displaced orthogonally to a direction in which the supporting portion faces the movable portion, wherein one of the pair of link portions comprises: a first rigid body having a pressure receiving surface that receives a force generated by displacement of the piezoelectric element, and a first plate spring that couples the first rigid body to the supporting portion and the movable portion, and wherein the first plate spring comprises: a first supporting-portion-side plate spring that couples the supporting portion to the first rigid body, and a first movable-portion-side plate spring that couples the movable portion to the first rigid body. 2. The displacement magnification device according to claim 1 , wherein the supporting portion has a seat portion that projects toward the movable portion, and wherein the piezoelectric element is fixed between a side wall surface of the seat portion and the pressure receiving surface of the first rigid body. 3. The displacement magnification device according to claim 1 , wherein the first rigid body has a projection portion that projects toward the piezoelectric element, and wherein a front end surface of the projection portion of the first rigid body functions as the pressure receiving surface and makes contact with the piezoelectric element. 4. The displacement magnification device according to claim 3 , wherein the projection portion of the first rigid body has a small width in a root portion connected to the first rigid body. 5. The displacement magnification device according to claim 1 , wherein the other of the pair of link portions comprises: a second rigid body located between the supporting portion and the movable portion, and a second plate spring that couples the second rigid body to the supporting portion and the movable portion. 6. The displacement magnification device according to claim 5 , wherein the second plate spring comprises one plate spring that is stretched between the supporting portion and the movable portion, and has one end fixed to the supporting portion and another end fixed to the movable portion, and wherein the second rigid body is fixed to a portion of the second plate spring between the supporting portion and the movable portion. 7. The displacement magnification device according to claim 5 , wherein the second plate spring comprises a second supporting-portion-side plate spring that couples the supporting portion to the second rigid body, and a second movable-portion-side plate spring that couples the movable portion to the second rigid body. 8. A displacement magnification device comprising: a piezoelectric element; and a displacement magnification mechanism configured to magnify an amount of displacement of the piezoelectric element, wherein the displacement magnification mechanism comprises: a supporting portion supporting the piezoelectric element, a movable portion facing and spaced apart from the supporting portion, and a pair of mutually parallel link portions coupling the supporting portion to the movable portion, wherein the piezoelectric element is mounted to the supporting portion so as to be displaced orthogonally to a direction in which the supporting portion faces the movable portion, wherein one of the pair of link portions comprises a first rigid body having a pressure receiving surface that receives a force generated by displacement of the piezoelectric element, and a first plate spring that couples the first rigid body to the supporting portion and the movable portion, wherein the first plate spring comprises one plate spring that is stretched between the supporting portion and the movable portion, and has one end fixed to the supporting portion and another end fixed to the movable portion, and wherein the first rigid body is fixed to a portion of the first plate spring between the supporting portion and the movable portion. 9. The displacement magnification device according to claim 8 , wherein the supporting portion has a seat portion that projects toward the movable portion and the piezoelectric element is fixed between a side wall surface of the seat portion and the pressure receiving surface of the first rigid body. 10. The displacement magnification device according to claim 8 , wherein the first rigid body has a projection portion that projects toward the piezoelectric element and a front end surface of the projection portion of the first rigid body functions as the pressure receiving surface and makes contact with the piezoelectric element. 11. The displacement magnification device according to claim 10 , wherein the projection portion of the first rigid body has a small width in a root portion connected to the first rigid body. 12. The displacement magnification device according to claim 8 , wherein the other of the pair of link portions comprises a second rigid body located between the supporting portion and the movable portion and a second plate spring that couples the second rigid body to the supporting portion and the movable portion. 13. The displacement magnification device according to claim 12 , wherein the second plate spring comprises one plate spring that is stretched between the supporting portion and the movable portion and has one end fixed to the supporting portion and another end fixed to the movable portion, and wherein the second rigid body is fixed to a portion of the second plate spring between the supporting portion and the movable portion. 14. The displacement magnification device according to claim 12 , wherein the second plate spring comprises a second supporting-portion-side plate spring that couples the supporting portion to the second rigid body and a second movable-portion-side plate spring that couples the movable portion to the second rigid body.
Elastic elements, e.g. springs (in general F16F1/00) · CPC title
Constructional details · CPC title
Mechanical transmission means, e.g. for stroke amplification · CPC title
with inter-engaging portions between leaves or between leaves and mountings, e.g. ridges, notches, ripples · CPC title
Electricity · mapped topic
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