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CN212231563U - Piezoelectric actuator and camera module thereof - Google Patents

Piezoelectric actuator and camera module thereof Download PDF

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Publication number
CN212231563U
CN212231563U CN202020848022.4U CN202020848022U CN212231563U CN 212231563 U CN212231563 U CN 212231563U CN 202020848022 U CN202020848022 U CN 202020848022U CN 212231563 U CN212231563 U CN 212231563U
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China
Prior art keywords
camera module
piezoelectric actuator
piezoelectric
lens assembly
height
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CN202020848022.4U
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Chinese (zh)
Inventor
杨伟成
杨鑫
顾自明
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Geke Microelectronics Shanghai Co Ltd
Galaxycore Shanghai Ltd Corp
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Geke Microelectronics Shanghai Co Ltd
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Priority to CN202020848022.4U priority Critical patent/CN212231563U/en
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Abstract

The utility model provides a piezoelectric actuator and camera module thereof, through setting up the actuating lever between two piezoelectric element, the connection structure who is located the top connects piezoelectric element and actuating lever, the piezoelectric actuator height has been reduced, the driving force has been improved, increase drive stroke under the same module height, reduce the module height under the same drive stroke, thereby compromise great drive stroke, the product demand of lower module height, improve the imaging quality, and under same drive signal, it is bigger to realize piezoelectric actuator single step stroke, it is higher to focus efficiency, thereby camera module wholeness can be improved.

Description

Piezoelectric actuator and camera module thereof
Technical Field
The utility model relates to a piezoelectric actuator and camera module thereof.
Background
An existing camera module generally includes a lens assembly and an actuator for driving the lens assembly to move in an optical axis direction. With the rapid development of the portable electronic equipment industry, the requirements of people on the imaging effect of the camera module are gradually improved, the shooting quality is improved mainly by increasing the optical sizes of a lens and an image sensor at present, the increase of the lens also forms a challenge to the driving capability of an actuator, the movable stroke of the existing voice coil actuator and the memory alloy actuator is short, the effect of macro-shooting is poor, on the other hand, the lens of the existing camera module cannot perform telescopic motion at a large distance outside a mobile phone, and in order to meet the requirements, the piezoelectric actuator is a great trend of the industry development.
However, the conventional piezoelectric actuator generally includes a piezoelectric element and a driving rod disposed above the piezoelectric element, the piezoelectric element drives the driving rod to reciprocate up and down at high frequency during high-frequency vibration, and the height of the piezoelectric element and the height of the driving rod determine the driving capability and the driving stroke, so that if a large stroke is to be realized, the height of the piezoelectric actuator is difficult to further reduce, the height of the piezoelectric actuator is limited by the overall height of the portable electronic device, and the product requirements of a large driving stroke and a low module height are difficult to be considered.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a piezoelectric actuator and camera module thereof reduces piezoelectric actuator height, improves the driving force, compromises great drive stroke, the product demand of lower module height, improves the imaging quality, improves camera module wholeness ability.
Based on the above consideration, the utility model provides a piezoelectric actuator, include: two piezoelectric elements; a drive rod located between the two piezoelectric elements; a connecting structure for connecting the piezoelectric element and the driving rod; wherein the connecting structure is a rigid plate; the connecting structure is located on top of the piezoelectric element and the drive rod.
The utility model also provides a camera module, including the piezoelectric actuator who has above-mentioned technical characteristic, piezoelectric actuator is used for driving the camera lens subassembly along the motion of optical axis direction.
Preferably, the other side opposite to the two piezoelectric elements is provided with an elastic supporting structure, and the elastic supporting structure is abutted against the lens assembly through a ball so as to ensure the stability of the optical axis of the lens assembly.
Preferably, the elastic buckle fixedly connected with the lens component is in friction contact with the driving rod to drive the lens component to move along the optical axis direction.
Preferably, a position detection element provided in correspondence with the piezoelectric actuator is used to feed back position information of a corresponding portion of the lens assembly.
Preferably, the position detection element is a hall sensor or a capacitive grating sensor.
The utility model discloses a piezoelectric actuator and camera module thereof, through setting up the actuating lever between two piezoelectric element, the connection structure who is located the top connects piezoelectric element and actuating lever, the piezoelectric actuator height has been reduced, the driving force has been improved, increase drive stroke under the same module height, reduce the module height under the same drive stroke, thereby compromise great drive stroke, the product demand of lower module height, improve the imaging quality, and under same drive signal, it is bigger to realize the single step stroke of piezoelectric actuator, it is higher to focus efficiency, thereby camera module wholeness ability has been improved.
Drawings
Other features, objects and advantages of the invention will become more apparent from the following detailed description of non-limiting embodiments thereof, which proceeds with reference to the accompanying drawings.
Fig. 1 and fig. 2 are schematic structural diagrams of the camera module of the present invention.
In the drawings, like or similar reference numbers indicate like or similar devices (modules) or steps throughout the different views.
Detailed Description
The utility model provides a piezoelectric actuator and camera module thereof, through setting up the actuating lever between two piezoelectric element, the connection structure who is located the top connects piezoelectric element and actuating lever, the piezoelectric actuator height has been reduced, the driving force has been improved, increase drive stroke under the same module height, reduce the module height under the same drive stroke, thereby compromise great drive stroke, the product demand of lower module height, improve the imaging quality, and under same drive signal, it is bigger to realize piezoelectric actuator single step stroke, it is higher to focus efficiency, thereby camera module wholeness can be improved.
In the following detailed description of the preferred embodiments, reference is made to the accompanying drawings which form a part hereof. The accompanying drawings illustrate, by way of example, specific embodiments in which the invention may be practiced. The illustrated embodiments are not intended to be exhaustive of all embodiments according to the invention. It is to be understood that other embodiments may be utilized and structural or logical changes may be made without departing from the scope of the present invention. The following detailed description is, therefore, not to be taken in a limiting sense, and the scope of the present invention is defined by the appended claims.
The present invention will be described in detail with reference to the following embodiments.
As shown in fig. 1 and fig. 2, the camera module of the present invention includes a lens assembly 1 and a piezoelectric actuator 2 for driving the lens assembly 1 to move along the optical axis direction. The piezoelectric actuator 2 includes two piezoelectric elements 21; a drive rod 22 located between the two piezoelectric elements 21; a connecting structure 23 for connecting the piezoelectric element 21 with the drive rod 22. Wherein the connecting structure 23 is a rigid plate; the connecting structure 23 is located on top of the piezoelectric element 21 and the drive rod 22.
Compared with the piezoelectric actuator in the prior art, the driving rod 22 is shifted from above the piezoelectric element 21 to between two piezoelectric elements 21, so that the overall height of the piezoelectric actuator 2 is effectively reduced, and therefore, a larger space is available for increasing the height of the piezoelectric element 21 or the driving rod 22, thereby improving the driving capability of the piezoelectric actuator 2. Therefore, the driving stroke can be increased under the same module height, the module height can be effectively reduced under the same driving stroke, the product requirements of a larger driving stroke and a lower module height are considered, the imaging quality is improved, the single-step stroke of the piezoelectric actuator is larger under the same driving signal due to the improvement of the driving capability, the focusing efficiency is higher, and the overall performance of the camera module is improved.
Specifically, the shape of the driving rod 22 can be set as required, which is illustrated as a cylinder as an example and not as a limitation, the piezoelectric elements 21 on both sides can transfer the vibration to the driving rod 22 in the middle through the rigid connection structure 23 on the top when vibrating at high frequency, so as to carry the driving rod 22 to reciprocate up and down with high frequency, the driving rod 22 is in friction contact with an elastic buckle 4 in the tangential direction, the other end of the elastic buckle 4 is fixedly connected with the lens assembly 1, and the driving rod 22 and the elastic buckle 4 can provide the lens assembly 1 with a driving force moving along the optical axis under the action of friction and inertia, so that the lens assembly 1 can move up and down smoothly in the optical axis direction.
In the preferred embodiment shown in fig. 1 and 2, a piezoelectric actuator 2 is disposed on one side of the lens assembly 1, and an elastic support structure, here shown as a flat spring plate 6, is disposed on the other side of the lens assembly 1 opposite to two piezoelectric elements 21 of the piezoelectric actuator 2, two balls 5 are disposed between the flat spring plate 6 and the lens assembly 1, the two balls 5 are respectively located at two ends of the flat spring plate 6, and the flat spring plate 6 abuts against the lens assembly 1 through the balls 5, so as to apply elastic pressure to the lens assembly 1. On the one hand, this ensures that the center of gravity of the lens assembly 1 moves along a fixed axis in the direction of the optical axis, thereby ensuring the stability of the optical axis of the lens assembly 1; on the other hand, the elastic pressure on the opposite side can ensure that the driving rod 22 and the elastic buckle 4 are better contacted in the normal direction, thereby providing effective friction force for the driving rod and the elastic buckle.
In other preferred embodiments, not shown, the other side of the lens assembly 1 can also be provided symmetrically with the same piezoelectric actuator 2, in which case the elastic support structure 6 and the ball 5 need not be provided.
Furthermore, a position detection element 3 (e.g., a hall sensor or a capacitive sensor) may also be provided at a position corresponding to the piezoelectric actuator 2, here shown between the two piezoelectric elements 21, the position detection element 3 being used to feed back position information of a corresponding portion of the lens assembly 1 to the piezoelectric actuator 2 to determine the movement distance of the lens assembly 1.
To sum up, the utility model discloses a piezoelectric actuator and camera module thereof, through setting up the actuating lever between two piezoelectric element, the connection structure who is located the top connects piezoelectric element and actuating lever, the piezoelectric actuator height has been reduced, the driving force has been improved, increase drive stroke under the same module height, reduce the module height under the same drive stroke, thereby compromise great drive stroke, the product demand of lower module height, improve the imaging quality, and under same drive signal, it is bigger to realize piezoelectric actuator single step stroke, it is higher to focus efficiency, thereby camera module wholeness can be improved.
It is obvious to a person skilled in the art that the invention is not restricted to details of the above-described exemplary embodiments, but that it can be implemented in other specific forms without departing from the spirit or essential characteristics of the invention. The present embodiments are, therefore, to be considered in all respects as illustrative and not restrictive. Furthermore, it will be obvious that the word "comprising" does not exclude other elements or steps, and the word "a" or "an" does not exclude a plurality. Several elements recited in the apparatus claims may also be implemented by one element. The terms first, second, etc. are used to denote names, but not any particular order.

Claims (6)

1. A piezoelectric actuator, comprising:
two piezoelectric elements;
a drive rod located between the two piezoelectric elements;
a connecting structure for connecting the piezoelectric element and the driving rod;
wherein the connecting structure is a rigid plate; the connecting structure is located on top of the piezoelectric element and the drive rod.
2. A camera module, comprising a piezoelectric actuator as claimed in claim 1 for driving the lens assembly in the direction of the optical axis.
3. The camera module according to claim 2, wherein an elastic support structure is disposed on the other side opposite to the two piezoelectric elements, and the elastic support structure abuts against the lens assembly through a ball to ensure stability of an optical axis of the lens assembly.
4. The camera module of claim 2, wherein the resilient latch fixedly coupled to the lens assembly frictionally engages the actuator rod to move the lens assembly in the direction of the optical axis.
5. The camera module according to claim 2, wherein a position detecting element provided in correspondence with the piezoelectric actuator is used for feeding back position information of a corresponding portion of the lens assembly.
6. The camera module of claim 5, wherein the position detection element is a Hall sensor or a capacitive grating sensor.
CN202020848022.4U 2020-05-20 2020-05-20 Piezoelectric actuator and camera module thereof Active CN212231563U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202020848022.4U CN212231563U (en) 2020-05-20 2020-05-20 Piezoelectric actuator and camera module thereof

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202020848022.4U CN212231563U (en) 2020-05-20 2020-05-20 Piezoelectric actuator and camera module thereof

Publications (1)

Publication Number Publication Date
CN212231563U true CN212231563U (en) 2020-12-25

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113709327A (en) * 2020-05-20 2021-11-26 格科微电子(上海)有限公司 Piezoelectric actuator and camera module thereof
CN115842950A (en) * 2021-09-18 2023-03-24 格科微电子(上海)有限公司 Camera module

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113709327A (en) * 2020-05-20 2021-11-26 格科微电子(上海)有限公司 Piezoelectric actuator and camera module thereof
CN113709327B (en) * 2020-05-20 2025-06-03 格科微电子(上海)有限公司 Piezoelectric actuator and camera module thereof
CN115842950A (en) * 2021-09-18 2023-03-24 格科微电子(上海)有限公司 Camera module

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