WO2021000159A1 - 镜头组件 - Google Patents

镜头组件 Download PDF

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Publication number
WO2021000159A1
WO2021000159A1 PCT/CN2019/094059 CN2019094059W WO2021000159A1 WO 2021000159 A1 WO2021000159 A1 WO 2021000159A1 CN 2019094059 W CN2019094059 W CN 2019094059W WO 2021000159 A1 WO2021000159 A1 WO 2021000159A1
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WO
WIPO (PCT)
Prior art keywords
lens
groove
base
support
lens module
Prior art date
Application number
PCT/CN2019/094059
Other languages
English (en)
French (fr)
Inventor
张晋
李刚
卢继亮
李林珍
Original Assignee
瑞声光学解决方案私人有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 瑞声光学解决方案私人有限公司 filed Critical 瑞声光学解决方案私人有限公司
Priority to PCT/CN2019/094059 priority Critical patent/WO2021000159A1/zh
Priority to CN201921052649.2U priority patent/CN210351314U/zh
Priority to US16/916,146 priority patent/US11428891B2/en
Priority to JP2020112573A priority patent/JP2021009381A/ja
Publication of WO2021000159A1 publication Critical patent/WO2021000159A1/zh

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Classifications

    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B7/00Mountings, adjusting means, or light-tight connections, for optical elements
    • G02B7/02Mountings, adjusting means, or light-tight connections, for optical elements for lenses
    • G02B7/04Mountings, adjusting means, or light-tight connections, for optical elements for lenses with mechanism for focusing or varying magnification
    • G02B7/08Mountings, adjusting means, or light-tight connections, for optical elements for lenses with mechanism for focusing or varying magnification adapted to co-operate with a remote control mechanism
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B7/00Mountings, adjusting means, or light-tight connections, for optical elements
    • G02B7/02Mountings, adjusting means, or light-tight connections, for optical elements for lenses
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B7/00Mountings, adjusting means, or light-tight connections, for optical elements
    • G02B7/02Mountings, adjusting means, or light-tight connections, for optical elements for lenses
    • G02B7/04Mountings, adjusting means, or light-tight connections, for optical elements for lenses with mechanism for focusing or varying magnification
    • G02B7/09Mountings, adjusting means, or light-tight connections, for optical elements for lenses with mechanism for focusing or varying magnification adapted for automatic focusing or varying magnification
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B27/00Optical systems or apparatus not provided for by any of the groups G02B1/00 - G02B26/00, G02B30/00
    • G02B27/64Imaging systems using optical elements for stabilisation of the lateral and angular position of the image
    • G02B27/646Imaging systems using optical elements for stabilisation of the lateral and angular position of the image compensating for small deviations, e.g. due to vibration or shake

Definitions

  • the utility model relates to the technical field of lens optical imaging, in particular to a lens module.
  • high-performance lens modules have been installed on portable smart terminals such as smart phones and tablet computers.
  • the high-performance lens module generally has auto focusing (AF).
  • the high-performance lens module needs to move the lens along the optical axis of the lens during autofocus.
  • suspension wires were used to support the AF part (including lens, lens mount, etc.).
  • the suspension wire was used to suspend the AF part in the base of the lens module by welding.
  • this method is affected by Due to the limitation of suspension wire performance, the AF part shakes greatly in the horizontal direction, which affects the imaging quality of the lens.
  • the purpose of the utility model is to provide a lens module with a low shaking amplitude of the lens holder in the horizontal direction.
  • a lens module including a base, a lens holder, and a support assembly for supporting the lens mount, the lens mount is suspended in the base through the support assembly;
  • the lens mount includes a connecting portion for fixedly connecting the support assembly, the connecting portion is provided with a groove, and a buffer is provided in the groove, and the support assembly includes at least two support members. One end of the member is connected to the groove through a buffer member, and the other end of each support member is fixed relative to the base.
  • the groove includes a groove surface
  • the buffer includes a damping glue coated on the groove surface, and the damping glue covers the groove.
  • the lens mount includes four corners, each of the corners is provided with a connecting portion, the number of the supporting members is four, and each supporting member is fixedly connected to a connecting portion .
  • the base includes a substrate and a frame fixed on the substrate, and the substrate and the frame together form an accommodation space for accommodating the lens holder;
  • the frame is square and includes four A side plate is arranged along the circumferential direction, and a limit hole is arranged at the connection point of the adjacent side plate, and each of the connection parts of the lens mount is located in a corresponding limit hole.
  • the lens holder further includes a lens, a lens holder for installing the lens, and a base for installing the lens holder;
  • the base includes a square body for installing the lens holder and the connecting portion Each connecting portion extends from the corresponding corner of the square body in the direction of the limiting hole of the frame body and is suspended in the limiting hole.
  • connecting portion and the base are integrally formed.
  • a conductive member is provided on the connecting portion, and one end of the support member passing through the groove is fixedly connected to the conductive member to achieve electrical connection.
  • the lens module further includes a first circuit board mounted to the lens mount and a second circuit board mounted to the side of the substrate facing the lens mount, and the other end of the support is welded to the first circuit board. Two circuit boards, the conductive member is electrically connected to the first circuit board.
  • the support member is a conductive suspension wire.
  • the lens module further includes a housing, and the housing is sleeved on the base.
  • the beneficial effect of the utility model is that the lens module is provided with a buffer in the groove of the connecting part, one end of the support is connected to the groove through the buffer, and the support passes through the end of the groove and is fixedly connected to the connection of the lens mount Part, which supports the lens holder, so that the lens holder is suspended and fixed in the base.
  • the buffer has buffering performance. When the lens holder shakes in the direction perpendicular to the optical axis of the lens, the buffer can play a good role on the support.
  • the buffering function can slow down the shaking of the lens mount in a plane perpendicular to the optical axis of the lens, and avoid the shaking of the lens mount.
  • FIG. 1 is a schematic diagram of a three-dimensional structure of a lens module provided by an embodiment of the present invention
  • FIG. 2 is a schematic diagram of an exploded structure of a lens module provided by an embodiment of the present invention.
  • FIG. 3 is a schematic diagram of the three-dimensional structure of the lens module provided by the embodiment of the present invention when the outer shell is removed and the buffer is not added;
  • FIG. 4 is a schematic diagram of the three-dimensional structure of the lens module provided by the embodiment of the present invention when the outer shell is removed and the buffer is added;
  • Figure 5 is a partial enlarged schematic diagram of the circle A in Figure 4.
  • FIG. 6 is a schematic diagram of a three-dimensional structure of a frame provided by an embodiment of the present invention.
  • FIG. 7 is a schematic diagram of a three-dimensional structure of a lens mount provided by an embodiment of the present invention.
  • Figure 8 is a three-dimensional schematic diagram of a base provided by an embodiment of the present invention.
  • Fig. 9 is a schematic diagram of the three-dimensional structure of the suspension wire provided by the embodiment of the present invention.
  • an embodiment of the present invention provides a lens module 100, which includes a base 1, a lens holder 2, and a supporting component for supporting the lens holder 2.
  • the lens holder 2 is suspended on the base through the supporting component 1;
  • the lens mount 2 includes a connecting portion 222 for fixing the connecting support assembly, the connecting portion 222 is provided with a groove 223, and the groove 223 is provided with a buffer 8,
  • the support assembly includes at least two supports 3, each support One end of 3 is connected to the groove 223 through a buffer 8, and the other end of each support 3 is fixed relative to the base 1.
  • the lens module 100 also includes a driving assembly 4 installed between the base 1 and the lens mount 2 for driving the lens mount 2 to shift in a direction perpendicular to the optical axis of the lens to achieve lens anti-shake.
  • a buffer 8 is provided in the groove 223 of the connecting portion 222, one end of the support 3 is connected to the groove 223 through the buffer 8, and the support 3 passes through the end of the groove 223 and is fixedly connected to the connecting portion 222 of the lens mount 2 , To support the lens mount 2, so that the lens mount 2 is suspended and fixed in the base 1.
  • the buffer 8 has buffering performance.
  • the buffer 8 can support the support 3 plays a good buffering effect, can reduce the shaking of the lens holder 2 in a plane perpendicular to the optical axis of the lens, and avoid the lens holder 2 from shaking violently, which affects the image quality.
  • the groove 223 includes a groove surface 224.
  • the buffer 8 includes a damping glue 8 coated on the groove surface 224.
  • the damping glue 8 covers the support. 3The part located in the groove 223. By coating the damping glue 8 on the entire groove surface 224, and the supporting member 3 is disposed through the groove 223, the damping glue 8 can cover the part of the supporting member 3 in the groove 223, and the cushioning effect on the supporting member 3 is improved.
  • the groove 223 can also be set as a closed through hole (not shown in the figure), the support 3 is disposed through the through hole, and the inner surface of the through hole is coated with the damping glue 8, to further ensure that the damping glue 8 is completely covered The part of the support 3 located in the through hole.
  • the lens mount 2 includes four corners, each corner is provided with a connecting portion 222, the number of the support 3 is the same as the number of the connecting portion 222, and four are also provided, and each support 3 is fixedly connected to a connecting portion 222.
  • the four corners of the lens mount 2 are respectively provided with supporting members 3, so that the lens mount 2 is stably hung in the base 1 to avoid tilting.
  • connecting portions 222 with buffers 8 are provided at the four corners to further strengthen the buffering effect on the support assembly and reduce the shaking of the lens mount 2.
  • the base 1 includes a substrate 11 and a frame 12 fixed on the substrate 11.
  • the substrate 11 and the frame 12 together form an accommodation space for accommodating the lens holder 2;
  • the body 12 is square and includes four side plates 121 arranged in the circumferential direction.
  • the connection of adjacent side plates 121 is provided with a limiting hole 122.
  • Each connection part of the lens holder 2 corresponds to the connection of adjacent side plates 121 and Located in the corresponding limit hole 122.
  • the lens holder 2 also includes a lens (not shown in the figure), a lens holder 21 for installing the lens, and a base 22 for installing the lens holder 21;
  • the base 22 includes a square body 221 for installing the lens holder 21 and a connecting portion 222
  • Each connecting portion 222 extends from the corresponding corner of the square body 221 in a direction toward the limiting hole 122 of the frame 12 and is suspended in the limiting hole 122.
  • the connecting portion 222 and the base 22 are integrally formed, of course, it can also be formed separately and then assembled together.
  • Each connecting portion 222 is partially suspended in the corresponding limiting hole 122 to limit the displacement of the lens holder 2 close to the substrate 11 in a direction parallel to the optical axis of the lens.
  • the lens module 100 further includes a first circuit board (not shown in the figure) mounted to the lens mount 2 and a second circuit board 7 mounted to the side of the substrate 11 facing the lens mount 2.
  • the first circuit board is used for Power is supplied to the driving device of the automatic focusing system of the lens module 100
  • the second circuit board 7 is connected to an external power source for supplying power to the driving component 4 and the supporting component of the automatic anti-shake system of the lens module 100.
  • the connecting portion 222 of the lens holder 2 is provided with a conductive member 5, the conductive member 5 is electrically connected to the first circuit board through an electrical connection element, and the end of the supporting member 3 passing through the groove 223 is fixedly connected to the conductive member 5, such as by welding.
  • a connecting port 51 is provided on the conductive member 5 facing the groove 223, and one end of the supporting member 3 passing through the groove 223 is welded to the conductive member 5 through the connecting port 51 to achieve electrical connection.
  • the connecting port 51 can be set as a circular hole closed on all sides, or it can be set as a notch with an opening.
  • the connecting port 51 of the conductive member 5 in FIGS. 2 and 3 is a notch with an opening. In FIGS. 4 and 5
  • the connecting port 51 of the conductive member 5 is a circular hole closed on all sides.
  • the supporting member 3 is a conductive suspension wire 3, which includes a first end 31 and a second end 32.
  • the first end 31 passes through the groove 223 and is fixedly connected to the conductive member 5 on the connecting portion 222.
  • the second end 32 is soldered and fixed on the second circuit board 7, and the second end 32 is electrically connected to the second circuit board 7 so as to electrically connect the conductive member 5 to the second circuit board 7.
  • the material of the suspension wire 3 may include conductive metals such as copper-nickel-tin alloy, which has high support strength characteristics and good conductivity. Utilizing the high support strength of the suspension wire 3, the lens holder 2 can be stably suspended and fixed in the base 1. Therefore, the supporting component not only supports the lens holder 2 but also conducts electricity.
  • the lens module 100 further includes a housing 6 which is sleeved on the base 1.
  • the housing 6 is used to provide protection and dust prevention for the entire lens module 100, to prevent dust from entering the lens module 100, and to prevent damage to the internal components of the housing 6.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Studio Devices (AREA)
  • Adjustment Of Camera Lenses (AREA)
  • Lens Barrels (AREA)

Abstract

一种镜头模组(100),包括基座(1)、镜头座(2)和用于支撑镜头座(2)的支撑组件,镜头座(2)通过支撑组件悬挂于基座(1)内;镜头座(2)包括用于固定连接支撑组件的连接部(222),连接部(222)设凹槽(223),凹槽(223)内设有缓冲件(8),支撑组件包括至少两个支撑件(3),每一支撑件(3)的其中一端通过缓冲件(8)连接到凹槽(223),每一支撑件(3)的另一端相对基座(1)固定。缓冲件(8)具有缓冲性能,当镜头座(2)在垂直于镜头光轴方向晃动时,缓冲件(8)能对支撑件(2)起到很好的缓冲作用,能够减缓镜头座(2)在垂直于镜头光轴的平面内的晃动,避免镜头座(2)晃动。

Description

镜头组件 技术领域
本实用新型涉及镜头光学成像技术领域,尤其涉及一种镜头模组。
背景技术
近年来,在如智能手机、平板电脑等便携式智能终端上都装载有高性能镜头模组。该高性能镜头模组一般具有自动对焦功能(auto focusing,AF)。高性能镜头模组在自动对焦时,需要使镜头沿镜头的光轴方向移动。在本公司早期的设计中,有采用悬丝支撑AF部分(包括镜头、镜头座等),悬丝通过焊接的方式将AF部分悬置于镜头模组的基座内,然而,此种方式受悬丝性能的局限, AF部分在水平方向上晃动幅度大,影响镜头的成像质量。
因此,有必要提供一种改进的镜头模组以解决上述问题。
技术问题
本实用新型的目的在于提供一种镜头座在水平方向晃动幅度低的镜头模组。
技术解决方案
本实用新型的技术方案如下:一种镜头模组,包括基座、镜头座和用于支撑所述镜头座的支撑组件,所述镜头座通过所述支撑组件悬挂于所述基座内;所述镜头座包括用于固定连接所述支撑组件的连接部,所述连接部设凹槽,所述凹槽内设有缓冲件,所述支撑组件包括至少两个支撑件,每一所述支撑件的其中一端通过缓冲件连接到所述凹槽,每一所述支撑件的另一端相对所述基座固定。
进一步地,所述支撑件的其中一端穿过所述凹槽,所述凹槽包括槽面,所述缓冲件包括涂布在所述槽面上的阻尼胶,所述阻尼胶包覆所述支撑件位于所述凹槽中的部分。
进一步地,所述镜头座包括四个角部,每一所述角部设一所述连接部,所述支撑件的数量为四个,每一所述支撑件固定连接至一所述连接部。
进一步地,所述基座包括基板和固定在所述基板上的框体,所述基板和所述框体共同形成用于收容所述镜头座的收容空间;所述框体为方形,包括四个沿周向设置的侧板,相邻所述侧板的连接处设有限位孔,所述镜头座的每一所述连接部位于相应的限位孔内。
进一步地,所述镜头座还包括镜头、用于安装所述镜头的镜头支架和用于安装所述镜头支架的底座;所述底座包括用于安装所述镜头支架的方形本体及所述连接部,每一连接部从所述方形本体的相应角部沿朝向所述框体的限位孔方向延伸且悬设于所述限位孔内。
进一步地,所述连接部与所述底座一体成型。
进一步地,所述连接部上设有导电件,所述支撑件的穿过所述凹槽的一端与所述导电件固定连接从而实现电连接。
进一步地,镜头模组还包括安装至所述镜头座的第一电路板和安装至所述基板朝向所述镜头座一侧的第二电路板,所述支撑件的另一端焊接到所述第二电路板,所述导电件与所述第一电路板电连接。
进一步地,所述支撑件为导电悬丝。
进一步地,所述镜头模组还包括外壳,所述外壳套设于所述基座上。
有益效果
本实用新型的有益效果在于:镜头模组在连接部的凹槽内设缓冲件,支撑件的其中一端通过缓冲件连接到凹槽,支撑件穿过凹槽的末端固定连接到镜头座的连接部,对镜头座起到支撑作用,使镜头座悬挂固定在基座内,缓冲件具有缓冲性能,当镜头座在垂直于镜头光轴方向晃动时,缓冲件能对支撑件起到很好的缓冲作用,能够减缓镜头座在垂直于镜头光轴的平面内的晃动,避免镜头座晃动。
附图说明
图1是本实用新型实施例提供的镜头模组的立体结构示意图;
图2是本实用新型实施例提供的镜头模组的爆炸结构示意图;
图3是本实用新型实施例提供的镜头模组去掉外壳且未添加缓冲件时的立体结构示意图;
图4是本实用新型实施例提供的镜头模组去掉外壳且添加缓冲件时的立体结构示意图;
图5是图4中圈A处的局部放大示意图;
图6是本实用新型实施例提供的框体的立体结构示意图;
图7是本实用新型实施例提供的镜头座的立体结构示意图;
图8是本实用新型实施例提供的底座的立体结构示意图;
图9是本实用新型实施例提供的悬丝的立体结构示意图。
附图标号说明:100、镜头模组;1、基座;11、基板;12、框体;121、侧板;122、限位孔;2、镜头座;21、镜头支架;22、底座;221、方形本体;222、连接部;223、凹槽;224、槽面;3、支撑件/悬丝;31、第一端;32、第二端;4、驱动组件;5、导电件;51、连接口;6、外壳;7、第二电路板;8、缓冲件/阻尼胶。
本发明的实施方式
下面结合附图和实施方式对本实用新型作进一步说明。如图1-9所示,本实用新型实施例提供一种镜头模组100,包括基座1、镜头座2和用于支撑镜头座2的支撑组件,镜头座2通过支撑组件悬挂于基座1内;镜头座2包括用于固定连接支撑组件的连接部222,连接部222设凹槽223,凹槽223内设有缓冲件8,支撑组件包括至少两个支撑件3,每一支撑件3的其中一端通过缓冲件8连接到凹槽223,每一支撑件3的另一端相对基座1固定。镜头模组100还包括安装在基座1与镜头座2之间的驱动组件4,用于驱动镜头座2沿垂直镜头光轴方向位移从而实现镜头防抖。在连接部222的凹槽223内设缓冲件8,支撑件3的其中一端通过缓冲件8连接到凹槽223,支撑件3穿过凹槽223的末端固定连接到镜头座2的连接部222,对镜头座2起到支撑作用,使镜头座2悬挂固定在基座1内,缓冲件8具有缓冲性能,当镜头座2在垂直于镜头光轴方向晃动时,缓冲件8能对支撑件3起到很好的缓冲作用,能够减缓镜头座2在垂直于镜头光轴的平面内的晃动,避免镜头座2晃动剧烈,影响成像质量。
请参阅图3-5,支撑件3的其中一端穿过凹槽223,凹槽223包括槽面224,缓冲件8包括涂布在槽面224上的阻尼胶8,阻尼胶8包覆支撑件3位于凹槽223中的部分。通过在整个槽面224上涂布阻尼胶8,支撑件3穿过凹槽223设置,可使阻尼胶8包覆支撑件3位于凹槽223中的部分,提高对支撑件3的缓冲作用。可以理解,凹槽223也可以设为封闭的通孔(图中未示出),支撑件3穿过通孔设置,通孔的内表面涂布阻尼胶8,进一步确保阻尼胶8完全包覆支撑件3位于通孔中的部分。
优选地,镜头座2包括四个角部,每一角部设一连接部222,支撑件3的数量与连接部222的数量一致,也设置四个,每一支撑件3固定连接至一连接部222。在镜头座2的四个角部分别设置支撑件3,使镜头座2稳定的悬挂在基座1内,避免出现倾斜。另外,在四个角部都设置具有缓冲件8的连接部222,进一步加强对支撑组件的缓冲作用,降低镜头座2的晃动。
请参阅图2至图5,在本实施例中,基座1包括基板11和固定在基板11上的框体12,基板11和框体12共同形成用于收容镜头座2的收容空间;框体12为方形,包括四个沿周向设置的侧板121,相邻侧板121的连接处设有限位孔122,镜头座2的每一连接部对应于相邻侧板121的连接处并位于对应的限位孔122内。镜头座2还包括镜头(图中未示出)、用于安装镜头的镜头支架21和用于安装镜头支架21的底座22;底座22包括用于安装镜头支架21的方形本体221及连接部222,每一连接部222从方形本体221的相应角部沿朝向框体12的限位孔122方向延伸且悬设于限位孔122内。连接部222与底座22一体成型,当然也可以分别成型,然后组装在一起。每个连接部222部分悬设于相应的限位孔122内,可以限位镜头座2沿平行于镜头的光轴方向靠近基板11的位移。
优选地,镜头模组100还包括安装至镜头座2的第一电路板(图中未示出)和安装至基板11朝向镜头座2一侧的第二电路板7,第一电路板用于给镜头模组100的自动调焦系统的驱动装置供电,第二电路板7与外部电源连接,用于给镜头模组100的自动防抖系统的驱动组件4和支撑组件供电。镜头座2的连接部222上设有导电件5,导电件5通过电连接元件与第一电路板电连接,支撑件3的穿过凹槽223的一端与导电件5固定连接如焊接从而实现两者的机械连接和电连接,支撑件3的另一端焊接到第二电路板7从而实现两者的机械连接和电连接。导电件5上正对凹槽223处设有连接口51,支撑件3穿过凹槽223的一端通过连接口51焊接到导电件5实现电连接。连接口51可以设为四周封闭的圆孔,也可以设为有开口的凹口,图2和图3中的导电件5的连接口51为设有开口的凹口,图4和图5中的导电件5的连接口51为四周封闭的圆孔。在本实施例中,支撑件3为导电悬丝3,包括第一端31和第二端32,第一端31穿过凹槽223固定连接到连接部222上的导电件5,第二端32焊接固定在第二电路板7上,第二端32与第二电路板7电连接,从而将导电件5电连接至第二电路板7。悬丝3的材质可以包括铜镍锡合金等导电金属,具有高支撑强度特性,以及良好的导电性。利用悬丝3高支撑强度特性,可使镜头座2稳定的悬空固定在基座1内。因此支撑组件对镜头座2既起到支撑作用,又起到导电作用。
优选地,镜头模组100还包括外壳6,外壳6套设于基座1上。外壳6用于给整个镜头模组100提供保护和防尘,避免灰尘进入镜头模组100,和避免损伤外壳6内部的零部件。
以上所述的仅是本实用新型的实施方式,在此应当指出,对于本领域的普通技术人员来说,在不脱离本实用新型创造构思的前提下,还可以做出改进,但这些均属于本实用新型的保护范围。

Claims (10)

  1. 一种镜头模组,其特征在于,所述镜头模组包括基座、镜头座和用于支撑所述镜头座的支撑组件,所述镜头座通过所述支撑组件悬挂于所述基座内;所述镜头座包括用于固定连接所述支撑组件的连接部,所述连接部设凹槽,所述凹槽内设有缓冲件,所述支撑组件包括至少两个支撑件,每一所述支撑件的其中一端通过缓冲件连接到所述凹槽,每一所述支撑件的另一端相对所述基座固定。
  2. 根据权利要求1所述的镜头模组,其特征在于,所述支撑件的所述其中一端穿过所述凹槽,所述凹槽包括槽面,所述缓冲件包括涂布在所述槽面上的阻尼胶,所述阻尼胶包覆所述支撑件位于所述凹槽中的部分。
  3. 根据权利要求2所述的镜头模组,其特征在于,所述镜头座包括四个角部,每一所述角部设一所述连接部,所述支撑件的数量为四个,每一所述支撑件固定连接至一所述连接部。
  4. 根据权利要求3所述的镜头模组,其特征在于,所述基座包括基板和固定在所述基板上的框体,所述基板和所述框体共同形成用于收容所述镜头座的收容空间;所述框体为方形,包括四个沿周向设置的侧板,相邻所述侧板的连接处设有限位孔,所述镜头座的每一所述连接部位于相应的限位孔内。
  5. 根据权利要求4所述的镜头模组,其特征在于,所述镜头座还包括镜头、用于安装所述镜头的镜头支架和用于安装所述镜头支架的底座;所述底座包括用于安装所述镜头支架的方形本体及所述连接部,每一连接部从所述方形本体的相应角部沿朝向所述框体的限位孔方向延伸且悬设于所述限位孔内。
  6. 根据权利要求5所述的镜头模组,其特征在于,所述连接部与所述底座一体成型。
  7. 根据权利要求4所述的镜头模组,其特征在于,所述连接部上设有导电件,所述支撑件的穿过所述凹槽的一端与所述导电件固定连接从而实现电连接。
  8. 根据权利要求7所述的镜头模组,其特征在于,镜头模组还包括安装至所述镜头座的第一电路板和安装至所述基板朝向所述镜头座一侧的第二电路板,所述支撑件的另一端焊接到所述第二电路板,所述导电件与所述第一电路板电连接。
  9. 根据权利要求1所述的镜头模组,其特征在于,所述支撑件为导电悬丝。
  10. 根据权利要求1至9任一项所述的镜头模组,其特征在于,所述镜头模组还包括外壳,所述外壳套设于所述基座上。
PCT/CN2019/094059 2019-06-30 2019-06-30 镜头组件 WO2021000159A1 (zh)

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