Optical element drive mechanism
An optical element drive mechanism is provided. The optical element drive mechanism includes an immovable part, a movable part, and a drive assembly. The movable part is connected to an optical element that includes an optical axis. The movable part is movable relative to the immovable part. The drive assembly drives the movable part to move relative to the immovable part.
1 . An optical element drive mechanism, comprising:
an immovable part;
a movable part connected to an optical element that has an optical axis, wherein the movable part is movable relative to the immovable part;
a sensing assembly sensing the movement of the movable part; and
a drive assembly driving the movable part to move relative to the immovable part, wherein the drive assembly comprises:
a piezoelectric element comprising a piezoelectric material, wherein the piezoelectric element generates a driving force;
a transmission element extending in a first direction, wherein the transmission element transmits the driving force;
a contact element in direct contact with the transmission element; and
a compression element for generating a compression force, so that the contact element is in contact with the transmission element, wherein the compression element has a compression-element opening corresponding to the contact element, and the contact element is received in the compression-element opening,
wherein the driving force is transmitted to the contact element by the transmission element, and the compression element thereby drives the movable part to move relative to the immovable part in the first direction, and
wherein the contact element comprises a plurality of metal pieces located on different sides of the compression-element opening.
2 . The optical element drive mechanism as claimed in claim 1 , wherein the movable part comprises a holder, and Young's modulus of the holder is less than Young's modulus of the compression element.
3 . The optical element drive mechanism as claimed in claim 2 , further comprising a dust-proof element disposed on the immovable part or the movable part, wherein the dust-proof element comprises an adhesive material.
4 . The optical element drive mechanism as claimed in claim 3 , wherein when viewed from the first direction, the dust-proof element at least partially overlaps the piezoelectric element.
5 . The optical element drive mechanism as claimed in claim 3 , wherein when viewed from the first direction, the transmission element is surrounded by the dust-proof element, and there is a first space between the dust-proof element and the transmission element to prevent the dust-proof element from coming into contact with the transmission element.
6 . The optical element drive mechanism as claimed in claim 4 , wherein when viewed from the first direction, there is a second space between the transmission element and the contact element, and the dust-proof element at least partially overlaps the second space.
7 . The optical element drive mechanism as claimed in claim 3 , wherein the immovable part comprises a case, a base plate connected to the case, and a bottom disposed between the case and the base plate, and the dust-proof element is disposed on at least one of the case, the bottom, and the base plate.
8 . The optical element drive mechanism as claimed in claim 3 , wherein the movable part comprises a holder, the immovable part comprises a case, a base plate connected to the case, and a bottom disposed between the case and the base plate, and the dust-proof element is disposed in at least one of the following locations: between the holder and the case, between the holder and the bottom, and between the bottom and the base plate.
9 . The optical element drive mechanism as claimed in claim 1 , further comprising a guidance assembly in contact with the movable part and the immovable part to guide the movable part to move relative to the immovable part in the first direction.
10 . The optical element drive mechanism as claimed in claim 9 , wherein when viewed from the first direction, the immovable part is polygonal, and the drive assembly and the guidance assembly are disposed on different corners of the immovable part, respectively.
11 . The optical element drive mechanism as claimed in claim 9 , wherein the guidance assembly comprises a guidance element and a guidance plate connected to the guidance element, the guidance element has a rod structure extending in the first direction, and the guidance plate has a plate-like structure.
12 . The optical element drive mechanism as claimed in claim 11 , wherein the immovable part comprises a case, a base plate connected to the case, and a bottom disposed between the case and the base plate, and when viewed from a direction that is perpendicular to the first direction, the guidance plate is located between the bottom and the base plate.
13 . The optical element drive mechanism as claimed in claim 1 , further comprising a circuit assembly, wherein the circuit assembly comprises a circuit-assembly immovable portion that is parallel with the first direction and a circuit-assembly movable portion that is not parallel with the first direction, and the circuit-assembly movable portion is movable relative to the movable part and the immovable part.
14 . The optical element drive mechanism as claimed in claim 13 , wherein the circuit-assembly immovable portion comprises a plurality of pins, and when viewed from a direction that is perpendicular to the first direction, the pins at least partially overlap the immovable part.
15 . The optical element drive mechanism as claimed in claim 13 , wherein when viewed from the first direction, the circuit-assembly movable portion has a Y-shaped structure.
16 . The optical element drive mechanism as claimed in claim 13 , wherein the sensing assembly comprises a reference element and a sensing element detecting the reference element to find out a position of the movable part, and when viewed from the first direction, the reference element and the sensing element are located at a side where the circuit-assembly immovable portion is located.
17 . The optical element drive mechanism as claimed in claim 16 , wherein the movable part comprises a holder, a recess is formed on a top surface of the holder, and the reference element is disposed in the recess.
18 . The optical element drive mechanism as claimed in claim 1 , wherein the drive assembly further comprises another piezoelectric element with substantially the same structure as the piezoelectric element.
19 . The optical element drive mechanism as claimed in claim 1 , wherein a portion of the immovable part that surrounds the transmission element comprises a concave structure.
20 . The optical element drive mechanism as claimed in claim 1 , wherein the immovable part comprises a bottom, and the bottom comprises a bottom stage having a step-like structure.