Lens drive device and electronic device

The lens driving device uses conductive elastic members and a circuit board to separate support and electrical functions, ensuring stable and reliable connections, addressing the reliability issues in conventional devices.

JP7770429B2Active Publication Date: 2025-11-14CHANGZHOU RAYTECH OPTRONICS CO LTD
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Patent Information

Application Number
JP2023575993
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2023-07-11
Publication Date
2025-11-14
Estimated Expiration
2043-07-11

AI Technical Summary

Technical Problem

In conventional lens driving devices, the suspension wire supports the support frame and provides electrical connection, leading to deformation and susceptibility to separation from the conductive terminal, affecting reliability.

Method used

A lens driving device with conductive elastic members and a support suspension wire that only supports the movable parts, while a circuit board ensures electrical connection through the conductive elastic members and focusing circuit board, maintaining stability and reliability.

Benefits of technology

The solution ensures stable and reliable electrical connections by isolating the support function of the suspension wire from the conductive elastic members, enhancing the overall reliability of the lens driving device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a lens driving device and an electronic device, the lens driving device comprising: a base, a support frame, a pair of conductive elastic members, a support suspension wire, a circuit board, a focusing circuit board, a shared magnetic steel, a focusing coil, and an anti-shake coil; the support frame is suspended from the base; the lens holder is suspended from the support frame and is used to mount the lens; the conductive elastic members are connected to the support frame and the lens holder; the circuit board includes a fixed part fixed on the base and a movable part suspended from the base and connected to the fixed part; the support suspension wire elastically connects the conductive elastic members to the movable part, and the support suspension wire only has a supporting function of supporting the movable part; the focusing circuit board elastically connects the conductive elastic members to the fixed part, electrically connecting the conductive elastic members to the fixed part, and the electrical connection is extended through the circuit board, thereby ensuring the stability and reliability of the electrical connection between the conductive elastic members, the focusing circuit board, and the circuit board.
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Description

[Technical Field]

[0001] The present invention relates to the field of camera technology, and more particularly to a lens driving device and an electronic device. [Background technology]

[0002] With the development of camera technology, lens drivers are widely used in various imaging devices, and the combination of lens drivers with various portable electronic devices such as mobile phones, video cameras, and personal computers is becoming more popular among consumers.

[0003] A lens driving device according to a related art includes a base, a support frame, a lens holder for mounting a lens, a pair of upper springs connected to the support frame and the lens holder and suspending the lens holder within the support frame, a suspension wire connected to the support frame and the base and suspending the support frame from the base and electrically connected to the upper spring, a focusing coil fixed to the outside of the lens holder, a shared magnetic steel fixed to the support frame and coupled to the focusing coil to drive the lens holder in the optical axis direction, and an anti-shake coil coupled to the shared magnetic steel to drive the lens holder in the direction perpendicular to the optical axis, wherein the base is provided with a conductive terminal electrically connected to the suspension wire. However, in such a lens driving device, the suspension wire not only serves to support the suspension but also to provide electrical connection, and therefore deformation occurs when the suspension wire supports the support frame and moves relative to the base, making the suspension wire more susceptible to separation from the conductive terminal, which affects the reliability of the lens driving device.

[0004] Therefore, it is necessary to provide a new lens driving device to solve the above problems. Summary of the Invention

[0005] The present invention aims to provide a lens driving device and electronic equipment that solves a technical problem in which, in conventional lens driving devices, the suspension wire not only plays a role in supporting the suspension but also in electrical connection, so that the suspension wire supports the support frame and is deformed when it moves relative to the base, making it easy for the suspension wire to peel off from the conductive terminal, thereby affecting the reliability of the lens driving device.

[0006] The technical solutions of the present invention are as follows:

[0007] In a first aspect, the present invention provides a lens driving device, the lens driving device comprising: With the base, a support frame suspended from the base; a lens holder suspended within the support frame for mounting a lens; a pair of conductive elastic members (conductive elastic sheets) insulated from each other, the conductive elastic members elastically connecting the support frame and the lens holder; a support suspension wire that elastically connects the conductive elastic member and the movable portion; a circuit board attached to the base, the circuit board including a fixed portion fixed to the base and a movable portion suspended from the base and connected to the fixed portion; an image sensor attached to the movable part; a support suspension wire that elastically connects the conductive elastic member and the movable portion; a convergence circuit board that fixedly connects the conductive elastic member and the fixed portion and electrically connects the conductive elastic member and the fixed portion; a shared magnetic steel fixed to the support frame; a focusing coil fixed to the outside of the lens holder and electrically connected to each of the pair of conductive elastic members, the focusing coil being electric field coupled with the shared magnetic steel to drive the lens holder to move in the optical axis direction; and an anti-shake coil attached to the movable part and coupled to the shared magnetic steel in an electric field to drive the movable part and move the image sensor in a direction perpendicular to the optical axis.

[0008] In one embodiment, the support suspension wire is fitted to the movable part by welding or injection molding, and is electrically insulated from the movable part.

[0009] In one embodiment, the conductive elastic member includes a first arm fixed to the lens holder and spaced from one side of the base, a second arm fixed to the support frame and spaced from one side of the base, and an elastic arm connecting the first arm and the second arm, and the support suspension wire is provided on each of the two second arms of each of the conductive elastic members.

[0010] In one embodiment, one side of each of the conductive elastic members is electrically connected to the focusing circuit board, and the second arms include a 21st arm that is close to the focusing circuit board and electrically connected to the focusing circuit board, and a 22nd arm that is remote from the focusing circuit board; Here, the 21st arm includes a first conductive part electrically connected to the convergence circuit board, a first mounting part connected to the support suspension wire, and a first fixed part connecting the first conductive part and the first mounting part, the first fixed part being fixed to the support frame, The arm includes a second mounting portion connected to the support suspension filament and a second fixed portion connected to the second mounting portion, the second fixed portion being fixed to the support frame.

[0011] In one embodiment, the support frame is provided with a first mounting pillar extending along the optical axis direction, and both the first fixing portion and the second fixing portion are attached to the support frame via the first mounting pillar, The lens holder is provided with a second mounting pillar extending along the optical axis direction, and the first arm is attached to the lens holder via the second mounting pillar.

[0012] In one embodiment, the support frame is provided with an accommodation groove, and at least a portion of the conductive elastic member is accommodated in the accommodation groove.

[0013] In one embodiment, the support frame is further provided with an avoidance groove extending along the optical axis direction, four of the avoidance grooves are provided and distributed at four corners of the support frame, and four of the support suspension wires are provided and each is accommodated in one of the avoidance grooves.

[0014] In one embodiment, the circuit board further includes a flexible portion, and the flexible portion is movable relative to the fixed portion during movement of the movable portion in a direction perpendicular to the optical axis; Here, the flexible portion includes a first portion attached to the movable portion, a second portion connected to the first portion and extending along the optical axis direction, a third portion connected to the second portion and extending around the optical axis, and a fourth portion connecting the third portion to the fixed portion.

[0015] In one embodiment, the convergence circuit board includes an electrical connection portion fixed to the conductive elastic member and electrically connected to the conductive elastic member, a fixed connection portion fixed to the support frame, and a main body portion, wherein one end of the main body portion is connected to the electrical connection portion and the fixed connection portion, and the other end is electrically connected to the fixed portion of the circuit board.

[0016] In a second aspect, the present invention further provides an electronic device, the electronic device comprising an apparatus body, a lens, and a lens driving device described in any one of the above-described embodiments, wherein the lens is attached to the apparatus body by the lens driving device.

[0017] The lens driving device and electronic device provided by the present invention have the following beneficial effects.

[0018] The conductive elastic member is elastically connected to the support frame and the lens holder, the support suspension wire is elastically connected to the conductive elastic member and the movable part, and the support suspension wire only has the supporting function of supporting the movable part, and further, the circuit board is attached to the base, and the focusing circuit board is elastically connected to the conductive elastic member and the fixed part, electrically connecting the conductive elastic member and the fixed part, and drawing out the electrical connection through the circuit board, thereby ensuring the stability and reliability of the electrical connection between the conductive elastic member, the focusing circuit board and the circuit board. [Brief explanation of the drawings]

[0019] [Figure 1] 1 is a schematic diagram of a lens driving device and a lens according to an embodiment of the present invention. [Figure 2] 2 is an exploded view of the lens driving device and the lens shown in FIG. 1. [Figure 3] 2 is a plan view of the lens driving device and the lens shown in FIG. 1. [Figure 4] 4 is a cross-sectional view taken along the line AA in FIG. 3. [Figure 5] FIG. 5 is an enlarged view of part B in FIG. [Figure 6] 2 is a schematic diagram of the lens driving device and the lens shown in FIG. 1, showing the outer shell being removed. [Figure 7] FIG. 7 is an enlarged schematic view of part C in FIG. 6. [Figure 8] FIG. 7 is an enlarged schematic view of part D in FIG. 6. [Figure 9] 2 is a schematic diagram of a conductive elastic member in the lens driving device shown in FIG. 1. [Figure 10] 2 is a schematic diagram of a focusing circuit board in the lens driving device shown in FIG. 1. FIG. [Figure 11] 2 is a schematic diagram of a fixed portion and a flexible portion of a circuit board in the lens driving device shown in FIG. 1. [Figure 12] 2 is a schematic diagram of a first substrate body of a circuit board in the lens driving device shown in FIG. 1. FIG. [Figure 13] 1 is a schematic diagram of an electronic device according to an embodiment of the present invention;

[0020] Symbol Description: 10: Lens driving device; 20: Lens; 30: device body; 100:base; 200: Support frame; 210: mounting groove; 220: First mounting post; 230: accommodation trench; 240: Avoidance groove; 300: Lens holder; 310: Second mounting post; 400: Conductive elastic member (conductive elastic sheet); 410: 1st arm; 420: Second arm; 421: 21st arm; 4211: First mounting part; 4212: First conductive part; 4213: 1st fixed part; 422: 22nd arm; 4221: Second mounting part; 4222:Second fixed part; 430: spring arm; 500: supporting hanging wire; 600: Circuit board; 610: Moving part; 611: 1st plate; 6111: resting groove; 612:Second board; 6121: Shading hole; 620:Fixed part; 621:Connection; 622: Insertion part; 630:Flexible part; 631: Part 1; 632:Second part; 633:3rd part; 6331:1st extension part; 6332:Second extension part; 634:4th part; 700: Focused circuit board; 710: Electrical connections; 720: Fixed connection; 730: Main body; 810: Common magnetic steel; 820: focusing coil; 830: Anti-vibration coil; 841: First elastic sheet; 842: Second elastic sheet; 850: Image sensor; 851: Glass plate; 900: Outer shell. DETAILED DESCRIPTION OF THE INVENTION

[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0022] It is to be noted that the embodiments described herein are only a part of the embodiments of the present invention, and are not all of the embodiments. All other embodiments that can be obtained by a person skilled in the art based on the embodiments of the present invention without requiring creative ingenuity fall within the scope of protection of the present invention.

[0023] It should be noted that similar symbols and letters represent similar items in the following accompanying drawings, and therefore once an item is defined in one accompanying drawing, it does not need to be further defined or explained in subsequent accompanying drawings.

[0024] It should be noted that when terms such as "upper," "lower," "inner," and "outer" appear in the description of the present invention, they indicate an orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, or an orientation or positional relationship commonly used when using the utility model product, and are merely for the convenience and simplification of the description of the present invention, and are not intended to indicate or imply that the referenced device or element must have a specific orientation, be configured, or operate in a specific orientation, and therefore should not be construed as a limitation of the present invention.

[0025] Additionally, when terms such as "first," "second," etc. appear, they are used for descriptive purposes only and are not to be understood as indicating or suggesting relative importance.

[0026] It should be noted that features in the embodiments of the present invention can be combined with each other unless they are inconsistent.

[0027] Referring to Figures 1 to 8, the present invention provides a lens driving device 10, which includes a base 100, a support frame 200, a lens holder 300, a pair of conductive elastic members 400, a support suspension wire 500, a circuit board 600, an image sensor 850, a focusing circuit board 700, a shared magnetic steel 810, a focusing coil 820, and an anti-shake coil 830.

[0028] In this embodiment, a support frame 200 is suspended on the base 100, a lens holder 300 for mounting a lens 20 is suspended within the support frame 200, a pair of conductive elastic members 400 are insulated from each other, the conductive elastic members 400 elastically connect the support frame 200 and the lens holder 300, and the lens holder 300 is suspended within the support frame 200 via the conductive elastic members 400, so that the lens holder 300 and the lens 20 mounted on the lens holder 300 can move up and down in the optical axis direction.

[0029] In this embodiment, the circuit board 600 is attached to the base 100, and the circuit board 600 includes a fixed part 620 fixed on the base 100 and a movable part 610 suspended from the base 100 and connected to the fixed part 620, an image sensor 850 is attached to the movable part 610, and a support suspension wire 500 elastically connects the conductive elastic member 400 and the movable part 610, thereby suspending the movable part 610 above the base 100, and the movable part 610 is suspended between the base 100 and the support frame 200 via the support suspension wire 500, so that the movable part 610 drives the image sensor 850 to move in a direction perpendicular to the optical axis.

[0030] In this embodiment, the convergence circuit board 700 is fixedly connected to the conductive elastic member 400 and the fixed portion 620, electrically connecting the conductive elastic member 400 and the fixed portion 620, and the shared magnetic steel 810 is fixed to the support frame 200.

[0031] Furthermore, focusing coil 820 is fixed to the outside of lens holder 300 and electrically connected to each of the pair of conductive elastic members 400, and focusing coil 820 is electrically coupled to shared magnetic steel 810 to drive lens holder 300 to move in the optical axis direction, thereby realizing the autofocus function (AF) of lens driving device 10. Anti-shake coil 830 is attached to movable part 610, and is electrically coupled to shared magnetic steel 810 to drive movable part 610 to move image sensor 850 in a direction perpendicular to the optical axis, thereby realizing optical image stabilization (OIS) of lens driving device 10.

[0032] It should be understood that the conductive elastic member 400 elastically connects the support frame 200 and the lens holder 300, and the support suspender wire 500 elastically connects the conductive elastic member 400 and the movable part 610, and only serves to support the movable part 610. Furthermore, the circuit board 600 is attached to the base 100, and the focusing circuit board 700 is fixedly connected to the conductive elastic member 400 and the fixed part 620, electrically connecting the conductive elastic member 400 and the fixed part 620 and guiding the electrical connection through the circuit board 600, thereby ensuring the stability and reliability of the electrical connection between the conductive elastic member 400, the focusing circuit board 700 and the circuit board 600.

[0033] Specifically, four shared magnetic steel pieces 810 are provided, and the four shared magnetic steel pieces 810 are arranged around the focusing coil 820, and are arranged symmetrically with respect to the center of the optical axis to form a uniform magnetic field, and the magnetization direction of the shared magnetic steel pieces 810 is perpendicular to the optical axis.

[0034] In this embodiment, four mounting grooves 210 are formed on the support frame 200, and the four mounting grooves 210 are distributed at the four corners of the support frame 200, and the four shared magnetic steel pieces 810 are fixed in the four mounting grooves 210, respectively.

[0035] 2, 8, and 10, the focusing circuit board 700 includes an electrical connection part 710 fixed to the conductive elastic member 400 and electrically connected to the conductive elastic member 400, a fixed connection part 720 fixed to the support frame 200, and a main body part 730. Here, one end of the main body part 730 is connected to the electrical connection part 710 and the fixed connection part 720, and the other end is electrically connected to the fixing part 620 of the circuit board 600, thereby realizing an electrical connection between the conductive elastic member 400 and the circuit board 600 and forming an electrical path between the focusing coil 820, the conductive elastic member 400, the focusing circuit board 700, and the circuit board 600.

[0036] Furthermore, two electrical connection parts 710 are provided, which are electrically connected to the respective conductive elastic members 400, and two fixed connection parts 720 are provided, which are installed symmetrically with respect to the main body part 730. Specifically, ICs and capacitors are provided on the convergence circuit board 700, and are fixed to the fixing part 620 of the circuit board 600 by soldering.

[0037] In one embodiment, referring to Figures 2, 6 and 7, the support suspension wire 500 is fitted to the movable part 610 by welding or injection molding, and is electrically insulated from the movable part 610 so that the support suspension wire 500 does not have a conductive function.

[0038] In addition, the support suspension wire 500 may optionally be a metal wire, and the bottom of the support suspension wire 500 may be welded or embedded into the base 100. Of course, in some embodiments, the support suspension wire 500 may optionally be selected as a plastic support member, and the support suspension wire 500 may be welded or embedded into the circuit board 600.

[0039] 6 to 9, in one embodiment, the conductive elastic member 400 includes a first arm 410 fixed to the lens holder 300 and spaced apart from one side of the base 100, a second arm 420 fixed to the support frame 200 and spaced apart from one side of the base 100, and an elastic arm 430 connecting the first arm 410 and the second arm 420. That is, the lens holder 300 is suspended within the support frame 200 by the conductive elastic member 400, so that the lens holder 300 and the lens 20 attached to the lens holder 300 can move up and down in the optical axis direction.

[0040] In this embodiment, the two second arms 420 of each conductive elastic member 400 are each provided with the supporting suspension wires 500. That is, four supporting suspension wires are provided. Here, the four supporting suspension wires 500 are installed symmetrically with respect to the center of the optical axis.

[0041] 6 to 9, in one embodiment, one side of each of the conductive elastic members 400 is electrically connected to the focusing circuit board 700, and the second arm 420 includes a 21st arm 421 that is close to the focusing circuit board 700 and electrically connected to the focusing circuit board 700, and a 22nd arm 422 that is remote from the focusing circuit board 700. That is, each of the conductive elastic members 400 has only one external electrical connection path.

[0042] Here, the twenty-first arm 421 includes a first conductive part 4212 electrically connected to the convergence circuit board 700, a first mounting part 4211 connected to the support suspension wire 500, and a first fixed part 4213 connecting the first conductive part 4212 and the first mounting part 4211, and the first fixed part 4213 is fixed to the support frame 200 and realizes an external electrical connection path through the twenty-first arm 421. Specifically, the convergence circuit board 700 is a flexible board.

[0043] The 22nd arm 422 includes a second mounting portion 4221 connected to the support suspension wire 500 and a second fixed portion 4222 connected to the second mounting portion 4221, the second fixed portion 4222 being fixed to the support frame 200, and the 22nd arm 422 does not have an external electrical connection path.

[0044] Of course, in some embodiments, a conductive portion may be provided on the 22nd arm 422, and an electrical connection between the conductive elastic member 400 and the circuit board 600 is achieved by installing a flexible substrate adapted to this conductive portion.

[0045] In one embodiment, referring to Figures 6 and 9, the support frame 200 is provided with a first mounting pillar 220 extending along the optical axis direction, and the first fixing portion 4213 and the second fixing portion 4222 are both attached to the support frame 200 via the first mounting pillar 220, thereby making it easy to attach the conductive elastic member 400 to the support frame 200.

[0046] The lens holder 300 is provided with a second mounting pillar 310 extending along the optical axis direction, and the first arm 410 is attached to the lens holder 300 via the second mounting pillar 310, thereby making it easy to attach the conductive elastic member 400 to the lens holder 300.

[0047] Furthermore, in this embodiment, the support frame 200 is provided with a housing groove 230, and at least a portion of the conductive elastic member 400 is housed in the housing groove 230, thereby facilitating the installation of the conductive elastic member 400.

[0048] Specifically, the support frame 200 is further provided with avoidance grooves 240 extending along the optical axis direction, and four avoidance grooves 240 are provided and distributed at the square corners of the support frame 200, and four support suspension wires 500 are provided and are respectively accommodated in each avoidance groove 240, thereby making it easy to install each support suspension wire 500.

[0049] 2, 4 to 6, and 11, the circuit board 600 further includes a flexible portion 630, which is movable relative to the fixed portion 620 when the movable portion 610 moves in a direction perpendicular to the optical axis. The flexible portion 630 includes a first portion 631 attached to the movable portion 610, a second portion 632 connected to the first portion 631 and extending along the optical axis, a third portion 633 connected to the second portion 632 and extending around the optical axis, and a fourth portion 634 connected to the third portion 633 and the fixed portion 620. As a result, electrical connection is established by the flexible portion 630, and the flexible portion 630 has a large degree of freedom of movement, thereby ensuring stability and reliability of the electrical connection between the conductive elastic member 400, the convergence circuit board 700, and the circuit board 600.

[0050] Specifically, the flexible part 630 and the fixed part 620 are both flexible substrates, the fixed part 620 includes a connecting part 621 and an insertion part 622, the fourth part 634 of the flexible part 630 is connected to the insertion part 622, the connecting part 621 is fixed to the base 100 and is connected to the insertion part 622 and the focusing circuit board 700, and the insertion part 622 is used for external insertion.

[0051] The third portion 633 includes a first extension portion 6331 and a second extension portion 6332, the support frame 200 includes a first side surface and a second side surface connected to each other, the first extension portion 6331 is connected to the second portion 632 and extends along the plane in which the first side surface is located, the second extension portion 6332 is connected to the first extension portion 6331 and extends along the plane in which the second side surface is located, and further, the second extension portion 6332 is arranged perpendicular to the first extension portion 6331.

[0052] In one embodiment, the movable part 610 includes a first plate 611 and a second plate 612, a mounting groove 6111 is provided on the light-receiving side of the first plate 611, an image sensor 850 is housed in the mounting groove 6111, a glass plate 851 is placed over the groove opening of the mounting groove 6111, a second plate 612 is stacked on the first plate 611, a light-shielding hole 6121 is provided in the second plate 612 to avoid light beams, and four anti-shake coils 830 are provided and distributed corresponding to the square locations of the second plate 612. Specifically, a first part 631 of the flexible part 630 is connected to the bottom surface of the first plate 611 and is electrically connected to the first plate 611.

[0053] In one embodiment, referring to Figures 1 and 2, the lens driving device 10 further includes a pair of first elastic members (elastic sheets) 841 and a pair of second elastic members (elastic sheets) 842, the lens holder 300 is suspended within the support frame 200 by the first elastic members 841 and the second elastic members 842, and the conductive elastic member 400, the first elastic members 841 and the second elastic members 842 are all spring plate-shaped structures having a deformation direction in the optical axis direction.

[0054] Specifically, one ends of the first elastic members 841 and the second elastic members 842 are both fixed to a side of the lens holder 300 facing the base 100, and the other ends are both fixed to a side of the support frame 200 facing the base 100. Furthermore, the pair of first elastic members 841 are arranged symmetrically with respect to the center of the optical axis, the pair of second elastic members 842 are arranged symmetrically with respect to the center of the optical axis, and each first elastic member 841 and each second elastic member 842 are arranged at intervals from each other in the circumferential direction of the optical axis.

[0055] In this embodiment, the lens driving device 10 further includes an outer shell 900 fitted to the support frame 200 and fixedly supported on the base 100. The outer shell 900 provides protection for the internal components of the lens driving device 10, and the upper wall of the support frame 200 is fixedly connected to the inner wall of the outer shell 900, thereby suspending the support frame 200 above the base 100.

[0056] 1 to 13, the present invention further provides an electronic device, which includes a device body 30, a lens 20, and the lens driving device 10 according to any one of the above-described embodiments, and the lens 20 is attached to the device body 30 via the lens driving device 10. The electronic device may be a mobile phone, a video camera, a computer, or the like. Here, the lens 20 includes a lens barrel fixed on a lens holder 300 and a lens set fixed within the lens barrel.

[0057] It should be noted that the above-described embodiments are merely examples of the present invention, and those skilled in the art may make improvements without departing from the creative idea of ​​the present invention, which still fall within the scope of protection of the present invention.

Claims

1. A lens driving device, The lens driving device With the base, a support frame suspended from the base; a lens holder suspended within the support frame for mounting a lens; a pair of conductive elastic members insulated from each other, the conductive elastic members elastically connecting the support frame and the lens holder; a circuit board attached to the base, the circuit board including a fixed portion fixed to the base and a movable portion suspended from the base and connected to the fixed portion; an image sensor attached to the movable part; a support suspension wire that elastically connects the conductive elastic member and the movable portion; a convergence circuit board that fixedly connects the conductive elastic member and the fixed portion and electrically connects the conductive elastic member and the fixed portion; a shared magnetic steel fixed to the support frame; a focusing coil fixed to the outside of the lens holder and electrically connected to each of the pair of conductive elastic members; the focusing coil is electrically coupled to the shared magnetic steel, thereby driving the lens holder to move in the optical axis direction; a vibration prevention coil attached to the movable part and electrically coupled to the shared magnetic steel to drive the movable part and move the image sensor in a direction perpendicular to the optical axis, wherein the support suspension wire is fitted to the movable part by welding or injection molding and is electrically insulated from the movable part.

2. the conductive elastic member includes a first arm fixed to the lens holder and spaced apart from one side of the base, a second arm fixed to the support frame and spaced apart from one side of the base, and an elastic arm connecting the first arm and the second arm, 2. The lens driving device according to claim 1, wherein the supporting suspending wires are provided on both of the two second arms of each of the conductive elastic members.

3. One side of each of the conductive elastic members is electrically connected to the focusing circuit board, and the second arms include a 21st arm that is close to the focusing circuit board and electrically connected to the focusing circuit board, and a 22nd arm that is distant from the focusing circuit board; Here, the 21st arm includes a first conductive portion electrically connected to the convergence circuit board, a first mounting portion connected to the support suspension wire, and a first fixed portion connecting the first conductive portion and the first mounting portion, the first fixed portion being fixed to the support frame, The lens driving device according to claim 2, characterized in that the 22nd arm includes a second mounting portion connected to the support suspension wire and a second fixed portion connected to the second mounting portion, and the second fixed portion is fixed to the support frame.

4. a first mounting pillar extending along the optical axis direction is provided on the support frame, and both the first fixing portion and the second fixing portion are attached to the support frame via the first mounting pillar; 4. The lens driving device according to claim 3, wherein the lens holder is provided with a second mounting pillar extending along the optical axis direction, and the first arm is attached to the lens holder via the second mounting pillar.

5. 5. The lens driving device according to claim 4, wherein the support frame is provided with a housing groove, and at least a portion of the conductive elastic member is housed in the housing groove.

6. 3. The lens driving device according to claim 2, wherein the support frame is further provided with avoidance grooves extending along the optical axis direction, the avoidance grooves being provided in four numbers and distributed at four corners of the support frame, and the support suspension wires being provided in four numbers and accommodated in each of the avoidance grooves.

7. the circuit board further includes a flexible portion, the flexible portion being movable relative to the fixed portion during the movement of the movable portion in a direction perpendicular to the optical axis; The lens driving device of claim 1, characterized in that the flexible portion includes a first portion affixed to the movable portion, a second portion connected to the first portion and extending along the optical axis direction, a third portion connected to the second portion and extending around the optical axis, and a fourth portion connecting the third portion to the fixed portion.

8. The lens driving device according to any one of claims 1 to 7, characterized in that the focusing circuit board includes an electrical connection portion fixed to the conductive elastic member and electrically connected to the conductive elastic member, a fixed connection portion fixed to the support frame, and a main body portion, wherein one end of the main body portion is connected to the electrical connection portion and the fixed connection portion, and the other end is electrically connected to the fixed portion of the circuit board.

9. An electronic device, The electronic device comprises a device body, a lens, and a lens driving device according to any one of claims 1 to 7, wherein the lens is attached to the device body by the lens driving device.

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