Lens driving device, camera device, and electronic apparatus
US-2019121053-A1 · Apr 25, 2019 · US
US12429707B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12429707-B2 |
| Application number | US-202117539369-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 1, 2021 |
| Priority date | Dec 25, 2020 |
| Publication date | Sep 30, 2025 |
| Grant date | Sep 30, 2025 |
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A lens driving device, a camera device, and an electronic apparatus are provided in which variation is not liable to occur in a friction coefficient of a guide mechanism. A lens driving device 12 includes a guide mechanism 38 configured to guide movement of a lens. The guide mechanism 38 includes a first member formed with guide projections 44, 48 and a second member conned with guide grooves 46, 50 in which the guide projections slide. At least one out of the first member or the second member is configured from a resin composition resulting from mixing a liquid crystal polymer together with a fluororesin. A fluororesin layer is provided to at least one surface of the guide projections or the guide grooves formed to at least the first member or the second member configured from the resin composition.
Opening claim text (preview).
The invention claimed is: 1. A lens driving device comprising: a guide mechanism configured to guide movement of a lens; wherein the guide mechanism includes a first member formed with a guide projection having a sliding surface and a second member formed with a guide groove having a counter sliding surface on which the sliding surface of the guide projection slides; at least one portion, from out of a portion of the first member where at least the guide projection is formed or a portion of the second member where at least the guide groove is formed, is configured from a resin composition resulting from mixing both a liquid crystal polymer and a fluororesin; and a fluororesin layer is further provided on at least one out of the sliding surface of the guide projection or the counter sliding surface of the guide groove that are made of the resin composition in such a manner that the fluororesin layer is interposed between the guide projection and the guide groove. 2. A lens driving device comprising: a lens support body configured to support a lens; a frame configured to support the lens support body; and a guide mechanism provided to a specific member configuring the lens support body and the frame, and configured to guide the lens support body so as to be movable in a direction orthogonal to an optical axis direction of the lens with respect to the specific member; wherein the guide mechanism includes a guide projection having a sliding surface and a guide groove having a counter sliding surface on which the sliding surface of the guide projection slides; at least one portion, from out of a portion of the specific member and the lens support body where at least the guide projection is formed or a portion of the specific member and the lens support body where at least the guide groove is formed, is configured from a resin composition resulting from mixing both a liquid crystal polymer and a fluororesin; and a fluororesin layer is further provided on at least one out of the sliding surface of the guide projection or the counter sliding surface of the guide groove that are made of the resin composition in such a manner that the fluororesin layer is interposed between the guide projection and the guide groove. 3. A lens driving device comprising: a lens support body configured to support a lens; and a guide mechanism that includes a guide shaft and a sliding portion having a sliding surface that slides on the guide shaft and that is configured to guide the lens support body in an optical axis direction; wherein the sliding portion is configured from a resin composition resulting from mixing both a liquid crystal polymer and a fluororesin; and a fluororesin layer is further provided on the sliding surface of the sliding portion that is made of the resin composition in such a manner that the fluororesin layer is interposed between the guide projection and the guide groove. 4. The lens driving device according to claim 1 , wherein the fluororesin is polytetrafluoroethylene. 5. The lens driving device according to claim 2 , wherein the fluororesin is polytetrafluoroethylene. 6. The lens driving device according to claim 3 , wherein the fluororesin is polytetrafluoroethylene. 7. The lens driving device according to claim 1 , wherein the fluororesin layer is a polytetrafluoroethylene layer. 8. The lens driving device according to claim 2 , wherein the fluororesin layer is a polytetrafluoroethylene layer. 9. The lens driving device according to claim 3 , wherein the fluororesin layer is a polytetrafluoroethylene layer. 10. A camera device comprising: a lens driving device; and a lens supported by a lens support body, wherein the lens driving device includes: a guide mechanism configured to guide movement of a lens; wherein the guide mechanism includes a first member formed with a guide projection having a sliding surface and a second member formed with a guide groove having a sliding surface on which the guide projection slides; at least one portion, from out of a portion of the first member where at least the guide projection is formed or a portion of the second member where at least the guide groove is formed, is configured from a resin composition resulting from mixing both a liquid crystal polymer and a fluororesin; and a fluororesin layer is further provided on the sliding surface of at least one out of the guide projection or the guide groove that are made of the resin composition in such a manner that the fluororesin layer is interposed between the guide projection and the guide groove. 11. A camera device comprising: a lens driving device; and a lens supported by a lens support body, wherein the lens driving device includes: a lens support body configured to support a lens; a frame configured to support the lens support body; and a guide mechanism provided to a specific member configuring the lens support body and the frame, and configured to guide the lens support body so as to be movable in a direction orthogonal to an optical axis direction of the lens with respect to the specific member; wherein the guide mechanism includes a guide projection having a sliding surface and a guide groove having a sliding surface on which the guide projection slides; at least one portion, from out of a portion of the specific member and the lens support body where at least the guide projection is formed or a portion of the specific member and the lens support body where at least the guide groove is formed, is configured from a resin composition resulting from mixing both a liquid crystal polymer and a fluororesin; and a fluororesin layer is further provided on the sliding surface of at least one out of the guide projection or the guide groove that are made of the resin composition in such a manner that the fluororesin layer is interposed between the guide projection and the guide groove. 12. A camera device comprising: a lens driving device; and a lens supported by a lens support body, wherein the lens driving device includes: a lens support body configured to support a lens; and a guide mechanism that includes a guide shaft and a sliding portion having a sliding surface that slides on the guide shaft and that is configured to guide the lens support body in an optical axis direction; wherein the sliding portion is configured from a resin composition resulting from mixing both a liquid crystal polymer and a fluororesin; and a fluororesin layer is further provided on the sliding surface of the sliding portion that is made of the resin composition in such a manner that the fluororesin layer is interposed between the guide projection and the guide groove. 13. An electronic apparatus comprising a camera device including: a lens driving device; and a lens supported by a lens support body, wherein the lens driving device includes: a guide mechanism configured to guide movement of a lens; wherein the guide mechanism includes a first member formed with a guide projection having a sliding surface and a second member formed with a guide groove having a sliding surface on which the guide projection slides; at least one portion, from out of a portion of the first member where at least the guide projection is formed or a portion of the second member where at least the guide groove is formed, is configured from a resin composition resulting from mixing both a liquid crystal polymer and a fluororesin; and a fluororesin layer is further provided on the sliding surface of at least one out of the guide projection or the guide groove that are made of the resin composition in such a manner that the fluororesin layer is interposed between t
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