Camera actuator, camera module, and camera mounted device
US-2020174270-A1 · Jun 4, 2020 · US
US12436355B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12436355-B2 |
| Application number | US-202017785463-A |
| Country | US |
| Kind code | B2 |
| Filing date | Dec 21, 2020 |
| Priority date | Dec 26, 2019 |
| Publication date | Oct 7, 2025 |
| Grant date | Oct 7, 2025 |
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This lens drive device is provided with: a first movable part; a second movable part; a first drive part; and a second drive part. The first drive part and the second drive part respectively have a first ultrasonic motor and a second ultrasonic motor. The first ultrasonic motor and the second ultrasonic motor are arranged on sides opposite to each other with respect an optical axis, and independently drive the first movable part and the second movable part in the optical axis direction.
Opening claim text (preview).
The invention claimed is: 1. A lens driving device, comprising: a first movable part and a second movable part arranged in a direction of an optical axis, wherein the first movable part is capable of holding a first movable lens, and the second movable part is capable of holding a second movable lens; and a first driving part and a second driving part that respectively drive the first movable part and the second movable part in the direction of the optical axis, wherein: the first driving part and the second driving part respectively include a first ultrasonic motor and a second ultrasonic motor, the first ultrasonic motor and the second ultrasonic motor are disposed so as to be opposite to each other with respect to the optical axis, the first ultrasonic motor independently drives the first movable part in the direction of the optical axis, and the second ultrasonic motor independently drives the second movable part in the direction of the optical axis; the first driving part includes a first frame and a first drive shaft both disposed on the side on which the first ultrasonic motor is disposed with respect to the optical axis; the first frame is connected to the first movable part; the second driving part includes a second frame and a second drive shaft both disposed on the side on which the second ultrasonic motor is disposed with respect to the optical axis; and the second frame is connected to the second movable part. 2. The lens driving device according to claim 1 , further comprising: a guide part disposed on both sides on which the first ultrasonic motor and the second ultrasonic motor are respectively disposed with respect to the optical axis, wherein the guide part supports the first movable part and the second movable part on the both sides in such a way that the first movable part and the second movable part are movable in the direction of the optical axis. 3. The lens driving device according to claim 1 , wherein: the first drive shaft supports the first frame in such a way that the first frame is movable in the direction of the optical axis; and the second drive shaft supports the second frame in such a way that the second frame is movable in the direction of the optical axis. 4. The lens driving device according to claim 1 , further comprising: a housing that houses at least the first movable part, the second movable part, the first driving part, and the second driving part, wherein the housing includes a pair of wall parts extending in the direction of the optical axis on both sides on which the first ultrasonic motor and the second ultrasonic motor are respectively disposed with respect to the optical axis, and a metal plate bridging the pair of wall parts. 5. The lens driving device according to claim 4 , wherein: the metal plate bridges bottom parts of the pair of wall parts; and an end of the metal plate is bent toward the pair of wall parts, the end being located on a light incident side in the direction of the optical axis. 6. The lens driving device according to claim 4 , wherein: the pair of wall parts are made of resin; and the metal plate is integrated by insert molding with the pair of wall parts. 7. The lens driving device according to claim 4 , wherein: each of the pair of wall parts is disposed at a predetermined distance from the optical axis; and the first ultrasonic motor and the second ultrasonic motor are respectively provided on the pair of wall parts. 8. The lens driving device according to claim 1 , wherein: each of the first ultrasonic motor and the second ultrasonic motor includes a vibration element that generates vibration by applying a high frequency voltage, and a resonance part that causes a resonance according to the vibration of the vibration element so that the resonance part vibrates in an inclined direction inclined with respect to the direction of the optical axis; and the first driving part includes a moving part connected to the first movable part and the second driving part includes a moving part connected to the second movable part in such a way that each of the moving parts performs movement in the direction of the optical axis according to the resonance of the resonance part and transmits the movement in the direction of the optical axis to a corresponding one of the first movable part and the second movable part. 9. A camera module, comprising: the lens driving device according to claim 1 ; a lens part that includes the first movable lens held by the first movable part and the second movable lens held by the second movable part; and an image capturing part that captures a subject image formed by the lens part, wherein the camera module drives the first movable lens and the second movable lens in the direction of the optical axis. 10. A camera-mounted device that is an information device or a transporting device, the camera-mounted device comprising: the camera module according to claim 9 ; and an image capturing control part that processes image information obtained by the camera module. 11. A lens driving device, comprising: a first movable part and a second movable part arranged in a direction of an optical axis, wherein the first movable part is capable of holding a first movable lens, and the second movable part is capable of holding a second movable lens; a first driving part and a second driving part that respectively drive the first movable part and the second movable part in the direction of the optical axis; and a housing that houses at least the first movable part, the second movable part, the first driving part, and the second driving part, wherein: the first driving part and the second driving part respectively include a first ultrasonic motor and a second ultrasonic motor, the first ultrasonic motor and the second ultrasonic motor are disposed so as to be opposite to each other with respect to the optical axis, the first ultrasonic motor independently drives the first movable part in the direction of the optical axis, and the second ultrasonic motor independently drives the second movable part in the direction of the optical axis; and the housing includes a pair of wall parts extending in the direction of the optical axis on both sides on which the first ultrasonic motor and the second ultrasonic motor are respectively disposed with respect to the optical axis, and a metal plate bridging the pair of wall parts. 12. The lens driving device according to claim 11 , wherein: the metal plate bridges bottom parts of the pair of wall parts; and an end of the metal plate is bent toward the pair of wall parts, the end being located on a light incident side in the direction of the optical axis. 13. The lens driving device according to claim 11 , wherein: the pair of wall parts are made of resin; and the metal plate is integrated by insert molding with the pair of wall parts. 14. The lens driving device according to claim 11 , wherein: each of the pair of wall parts is disposed at a predetermined distance from the optical axis; and the first ultrasonic motor and the second ultrasonic motor are respectively provided on the pair of wall parts. 15. The lens driving device according to claim 11 , wherein: each of the first ultrasonic motor and the second ultrasonic motor includes a vibration element that generates vibration by applying a high frequency voltage, and a resonance part that causes a resonance according to the vibration of the vibration element so that the resonance part vibrates in an inclined direction inclined with respect to the direction of the optical axis; and the fir
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