WO2022142691A1 - 一种用于防抖结构的ois簧片、防抖结构及摄像装置 - Google Patents

一种用于防抖结构的ois簧片、防抖结构及摄像装置 Download PDF

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WO2022142691A1
WO2022142691A1 PCT/CN2021/127706 CN2021127706W WO2022142691A1 WO 2022142691 A1 WO2022142691 A1 WO 2022142691A1 CN 2021127706 W CN2021127706 W CN 2021127706W WO 2022142691 A1 WO2022142691 A1 WO 2022142691A1
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conductive
reed
ois
insulating layer
motor
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PCT/CN2021/127706
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English (en)
French (fr)
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王建华
张晓良
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上海信迈电子科技有限公司
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Publication of WO2022142691A1 publication Critical patent/WO2022142691A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N23/00Cameras or camera modules comprising electronic image sensors; Control thereof
    • H04N23/60Control of cameras or camera modules

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  • the invention relates to the technical field of camera device design, in particular to an OIS reed used for an anti-shake structure, an anti-shake structure and a camera device.
  • the invention patent with the patent number of CN201810096756.9 discloses an anti-shake structure, an anti-shake system and a camera device having the same.
  • the cold expansion characteristic is used to change the length of the SMA wire, so that at least part of the OIS reed can be adjusted along the X axis and/or the Y axis, and then the AF motor is driven by the pulling force of the SMA wire to make the AF motor fast Adjust the position along the X-axis and/or the Y-axis, and then move the entire lens at a small distance, change the focal length, and achieve the purpose of clear images.
  • the above solution has the following problems. After the conductive lead body that realizes the electrical connection between the AF motor and the conductive component on the OIS base is assembled with the OIS reed, the middle part of the conductive lead body and the reed may be in direct contact and there is a short circuit phenomenon, which affects the motor performance.
  • the present invention provides an OIS reed for an anti-shake structure
  • the OIS reed includes a reed body and a conductive lead assembly disposed on the reed body, and the conductive lead assembly is provided on the reed body.
  • the lead assembly includes a conductive lead, a first insulating layer covering the side of the conductive lead facing the reed body, and a second insulating layer covering the side of the conductive lead facing away from the reed body.
  • the conductive lead assembly includes an AF motor input conductor for accessing current and an AF for outputting current
  • a motor output conductor the AF motor input conductor is used for electrical connection with the input conductive lead assembly
  • the AF motor output conductor is used for electrical connection with the output conductive lead assembly.
  • the conductive lead includes a first conductive part, a second conductive part, and a conductive arm connecting the first conductive part and the second conductive part; the first conductive part is used for connecting with all the conductive parts.
  • the coil body of the AF motor is electrically connected, and the second conductive portion is used for electrical connection with the conductive component.
  • the first insulating layer completely covers the first conductive part and the conductive arm, and partially covers or does not cover the second conductive part, so that the second conductive part and the conductive component are electrically connected connection; the second insulating layer fully covers the second conductive part and the conductive arm, and partially covers or does not cover the first conductive part, so that the first conductive part is electrically connected to the coil body of the AF motor .
  • an opening for partially exposing the first conductive portion is formed on the second insulating layer.
  • the reed body has a support arm that matches the shape of the conductive arm, the side of the conductive arm covered with the first insulating layer is disposed on the support arm, and the The shape of the first insulating layer is adapted to the shape of the support arm.
  • the conductive lead, the first insulating layer, and the second insulating layer are a flexible PCB board structure processed into one piece, and the flexible PCB board structure is mounted on the reed body.
  • one end of the flexible PCB structure is pasted on the reed body, and the other end is provided with a welding hole penetrating the first insulating layer and the second insulating layer. The other end of the structure is welded on the reed body through the welding hole.
  • the present invention also provides an anti-shake structure, which includes an OIS reed and an OIS base, the AF motor is mounted on the OIS reed, the OIS reed is arranged on the OIS base; the OIS reed is also arranged on the OIS reed There is an SMA wire, and the OIS base includes a conductive component, the conductive component is conductively connected to the SMA wire, and energizes the SMA wire, so that the SMA wire shrinks or expands under the action of the current and drives the SMA wire. At least part of the OIS reed moves in a predetermined direction, and when at least part of the OIS reed moves, the AF motor is driven to move in a predetermined direction;
  • the OIS reed is the OIS reed described in any one of claims 1-8, and the conductive lead assembly is electrically connected to the conductive assembly and the coil body of the AF motor, so as to provide the coil of the AF motor body electrified.
  • the present invention also provides a camera device, comprising a camera body and an anti-shake structure for performing anti-shake processing on the camera body, and the anti-shake structure is the anti-shake structure described in claim 9 .
  • the present invention has the following advantages and positive effects due to the adoption of the above technical solutions:
  • the OIS reed used for the anti-shake structure provided by the present invention, the first insulating layer and the second insulating layer are arranged, the conductive lead is wrapped, only the parts that need to be electrically connected are exposed, and the conductive lead is insulated and protected. Therefore, the middle of the conductive lead is prevented from contacting with the reed body, thereby preventing the short circuit of the AF motor and ensuring the normal operation of the AF motor.
  • Fig. 1 is the structural representation of the OIS reed for anti-shake structure provided by the present invention
  • FIG. 2 is a schematic view of the disassembly of the OIS reed for the anti-shake structure provided by the present invention.
  • the present embodiment provides an OIS reed for an anti-shake structure.
  • the OIS reed includes a reed body 1 and a conductive lead assembly disposed on the reed body.
  • the conductive lead assembly includes a conductive lead assembly. The lead, the first insulating layer covering the side of the conductive lead facing the reed body 1, and the second insulating layer covering the side of the conductive lead facing away from the reed body.
  • the anti-shake structure usually includes an OIS reed and an OIS base, the OIS reed is arranged on the OIS base, the AF motor is installed on the OIS reed, and the OIS reed is also provided with an SMA wire.
  • the component is conductively connected with the SMA wire, and energizes the SMA wire, so that the SMA wire shrinks or expands under the action of the current and drives at least part of the OIS reed to move in a predetermined direction, and when at least part of the OIS reed moves, it drives the AF The motor moves in a preset direction.
  • the conductive lead assembly is used to connect the conductive lead assembly and the coil body of the AF motor to energize the coil body of the AF motor.
  • the conductive lead is insulated and protected, thereby preventing the middle part of the conductive lead from contacting the reed body, thereby avoiding the short circuit of the AF motor and ensuring the AF motor of normal operation.
  • the conduction assembly includes an AF motor input conduction member for accessing current and an AF motor output conduction member for outputting current, the AF motor input conduction member is used for electrical connection with the input conductive lead assembly, and the AF motor output conduction member is used for for electrical connection with the output conductive lead assembly.
  • the input conductive lead assembly 2 and the output conductive lead assembly 3 have the same structure, and the output conductive lead assembly 3 is taken as an example for further description below.
  • the output conductive lead assembly 3 includes a conductive lead 301, a first insulating layer 302 covering the side of the conductive lead 301 facing the reed body 1, and a second insulating layer covering the side of the conductive lead 301 facing away from the reed body 303.
  • the conductive lead 301 includes a first conductive part 3011, a second conductive part 3012, and a conductive arm 3013 connecting the first conductive part 3011 and the second conductive part 3012; the first conductive part 3011 is used to electrically connect with the coil body of the AF motor For connection, the second conductive portion 3012 is used for electrical connection with the conductive component.
  • the first insulating layer 302 completely covers the first conductive portion 3011 and the conductive arm 3013, and partially covers or does not cover the second conductive portion 3012, so as to facilitate the electrical connection between the second conductive portion 3012 and the conductive component;
  • the insulating layer 302 does not cover the second conductive portion 3012 at all, as shown in FIG. 2 , of course, in other embodiments, the first insulating layer 302 may also partially cover the second conductive portion 3012 and partially expose the second conductive portion 3012 , here There are no restrictions and can be adjusted according to specific circumstances.
  • the second insulating layer 303 fully covers the second conductive portion 3012 and the conductive arm 3013, and partially covers or does not cover the first conductive portion 3011, so as to facilitate the electrical connection between the first conductive portion 3011 and the coil body of the AF motor; this embodiment
  • the second insulating layer 303 partially covers the first conductive portion 3011.
  • an opening 3031 is provided on the second insulating layer 303 corresponding to the first conductive portion 3011, and the first conductive portion 3011 is exposed through the opening 3031.
  • the second insulating layer 303 may not cover the first conductive portion 3011 at all, which is not limited here, and can be adjusted according to specific conditions.
  • the reed body 1 has a support arm that matches the shape of the conductive arm, the side of the conductive arm covered with the first insulating layer is disposed on the support arm, and the shape of the first insulating layer is the same as the shape of the support arm. fit.
  • the specific shapes of the first insulating layer and the second insulating layer can be adjusted according to specific conditions, which are not limited here.
  • each conductive lead assembly is a flexible PCB board structure that is processed into one by the conductive leads, the first insulating layer, and the second insulating layer, and the flexible PCB board structure is mounted on the reed body 1 on.
  • one end of the flexible PCB board structure is pasted on the reed body 1, and the other end is provided with a welding hole 4 that penetrates the first insulating layer and the second insulating layer, and the other end of the flexible PCB board structure is welded through the welding hole 4.
  • the fixing method of the conductive lead assembly and the reed body 1 can also be adjusted according to specific conditions, which is not limited here.
  • the SMA wire is a nickel-titanium alloy material, and SMA is the abbreviation of Shape Memory Alloy in English, which means “shape memory alloy”.
  • the SMA wire has the characteristics of heat shrinkage and cold expansion. When the current flows into the SMA wire, the SMA wire starts to shrink when heated to overcome the lateral elastic force; when the current is cut off, the bias elastic force overcomes the SMA wire wire force and begins to cold expand.
  • AF is the abbreviation of Auto Focus, which means automatic focus.
  • This embodiment provides an anti-shake structure, which is characterized in that it includes an OIS reed and an OIS base, the AF motor is mounted on the OIS reed, the OIS reed is arranged on the OIS base; the OIS reed is also provided with an SMA wire,
  • the OIS base includes a conductive component, which is conductively connected to the SMA wire, and energizes the SMA wire, so that the SMA wire shrinks or expands under the action of the current and drives at least part of the OIS reed to move in a predetermined direction. At least part of the movement drives the AF motor to move in a preset direction; the conductive lead assembly is electrically connected to the conductive assembly and the coil body of the AF motor, so as to energize the coil body of the AF motor.
  • the OIS reed is the OIS reed described in Example 1.
  • This embodiment provides a camera device, including a camera body and an anti-shake structure for performing anti-shake processing on the camera body, and the anti-shake structure is the anti-shake structure described in Embodiment 2.

Abstract

本发明提供了一种用于防抖结构的OIS簧片、防抖结构及摄像装置,其中述OIS簧片包括有簧片本体和设置在所述簧片本体上的导电引线组件,所述导电引线组件包括有导电引线、覆盖在所述导电引线朝向所述簧片本体一侧的第一绝缘层、覆盖在所述导电引线背向所述簧片本体一侧的第二绝缘层。本发明提供的用于防抖结构的OIS簧片,通过第一绝缘层和第二绝缘层的设置,对导电引线起到绝缘保护的作用,从而防止了导电引线与簧片本体上的导电部接触,从而避免了AF马达发生短路,保证AF马达的正常运行。

Description

一种用于防抖结构的OIS簧片、防抖结构及摄像装置 技术领域
本发明涉及摄像装置设计技术领域,具体涉及一种用于防抖结构的OIS簧片、防抖结构及摄像装置。
背景技术
目前,在手机拍摄过程中有时拍出的照片会发虚,即拍摄出来的画面不够清晰,甚至发生重影或模糊的情况。这些原因,除了偶尔的失焦(即相机未能正常对焦)以外,很大程度上是因为拍摄景物曝光时发生微小抖动所致。
一般而言,在手持条件下经常会发生这种极轻微的抖动的现象,由使用者手抖动将引发摄像装置的镜头偏离轴向,使得图像传感器捕获到的图像质量产生劣化。故近年来对防抖技术功能开发需求相对较大。在此背景下,OIS(光学图像稳定系统的简称)光学防抖功能的提案也随之增多,其主要功能是控制镜头相对于图像传感器平移而将手抖造成的图像偏移抵消补偿掉。
专利号为CN201810096756.9的发明专利公开了防抖结构、防抖系统及具有其的摄像装置,利用SMA丝线在通电后会收缩或膨胀的特性,通过调节电流的大小并利用SMA丝线的热缩冷涨特性来改变SMA丝线的长短,使OIS簧片的至少部分沿X轴和/或Y轴进行位置调整,进而通过SMA丝线的拉动力来完成载动AF马达的目的,以使AF马达快速沿X轴和/或Y轴进行位置调整,进而达到微距离移动整个镜头,改变焦距,实现清晰影像的目的。
但是,上述方案存在以下问题,实现AF马达与OIS底座上的传导组件电连接的导电引线体,在与OIS簧片相装配后,导电引线体中间部与簧片可能直接接触存在短路现象,影响马达性能。
发明内容
针对背景技术中的问题,本发明提供了一种用于防抖结构的OIS簧片,所述OIS簧片包括有簧片本体和设置在所述簧片本体上的导电引线组件,所述导电引线组件包括有导电引线、覆盖在所述导电引线朝向所述簧片本体一侧的第一绝缘层、覆盖在所述导电引线背向所述簧片本体一侧的第二绝缘层。
在一些实施例中,所述导电引线组件为两个,分别为输入导电引线组件和输出导电引线组件;所述传导组件包括用于接入电流的AF马达输入传导件和用于输出电流的AF马达输出传导件,所述AF马达输入传导件用于与所述输入导电引线组件电连接,所述AF马达输出传导件用于与所述输出导电引线组件电连接。
在一些实施例中,所述导电引线包括导第一导电部、第二导电部、连接所述第一导电部和所述第二导电部的导电臂;所述第一导电部用于与所述AF马达的线圈体电连接,所述第二导电部用于与所述传导组件电连接。
在一些实施例中,所述第一绝缘层全覆盖住所述第一导电部和导电臂,部分覆盖或不覆盖所述第二导电部,以使所述第二导电部与所述传导组件电连接;所述第二绝缘层全覆盖住所述第二导电部和导电臂,部分覆盖或不覆盖所述第一导电部,以使所述第一导电部与所述AF马达的线圈体电连接。
在一些实施例中,所述第二绝缘层上开设有用于部分露出所述第一导电部的开口。
在一些实施例中,所述簧片本体具有与所述导电臂形状相适配的支撑臂,所述导电臂覆盖有所述第一绝缘层的一侧设置在所述支撑臂上,且所述第一绝缘层的形状与所述支撑臂形状相适配。
在一些实施例中,所述导电引线、第一绝缘层、第二绝缘层为加工成一体的挠性PCB板结构,挠性PCB板结构安装于所述簧片本体上。
在一些实施例中,所述挠性PCB板结构一端粘贴在所述簧片本体上,另一端上设置有贯穿所述第一绝缘层、第二绝缘层的焊接孔,所述挠性PCB板结构的另一端通过焊接孔焊接在所述簧片本体上。
本发明还提供了一种防抖结构,包括有OIS簧片和OIS底座,AF马达安装于所述OIS簧片上,所述OIS簧片设置在所述OIS底座上;所述OIS簧片上还设置有SMA丝线,所述OIS底座包括有传导组件,所述传导组件与所述SMA丝线导电连接,并为所述SMA丝线通电,以使所述SMA丝线在电流的作用下收缩或膨胀并带动所述OIS簧片的至少部分沿预定方向移动,所述OIS簧片的至少部分移动时带动所述AF马达沿预设方向移动;
所述OIS簧片采用权利要求1-8中任意一项所述的OIS簧片,所述导电引线组件与所述传导组件、AF马达的线圈体电连接连接,以给所述AF马达的线圈体通电。
本发明还提供了一种摄像装置,包括摄像机本体和用于对所述摄像机本体进行防抖处理的防抖结构,所述防抖结构为权利要求9中所述的防抖结构。
本发明由于采用以上技术方案,使之与现有技术相比,具有以下的优点和积极效果:
本发明提供的用于防抖结构的OIS簧片,第一绝缘层和第二绝缘层的设置,将 导电引线包裹起来,只露出需要电连接的部位,对导电引线起到绝缘保护的作用,从而防止了导电引线中间与簧片本体接触,从而避免了AF马达发生短路,保证AF马达的正常运行。
附图说明
结合附图,通过下文的述详细说明,可更清楚地理解本发明的上述及其他特征和优点,其中:
图1为本发明提供的用于防抖结构的OIS簧片的结构示意图;
图2为本发明提供的用于防抖结构的OIS簧片的拆分示意图。
具体实施方式
参见示出本发明实施例的附图,下文将更详细地描述本发明。然而,本发明可以以许多不同形式实现,并且不应解释为受在此提出之实施例的限制。相反,提出这些实施例是为了达成充分及完整公开,并且使本技术领域的技术人员完全了解本发明的范围。这些附图中,为清楚起见,可能放大了层级区域的尺寸及相对尺寸。
需要说明,本发明实施例中所有方向性指示(诸如上、下、左、右、前、后……)仅用于解释在某一特定姿态(如附图所示)下各部件之间的相对位置关系、运动情况等,如果该特定姿态发生改变时,则该方向性指示也相应地随之改变。
实施例1
参照图1-2,本实施例提供了一种用于防抖结构的OIS簧片,OIS簧片包括有簧片本体1和设置在簧片本体上的导电引线组件,导电引线组件包括有导电引线、覆盖在导电引线朝向簧片本体1一侧的第一绝缘层、覆盖在导电引线背向簧片本体一侧的第二绝缘层。
其中,对于防抖结构通常包括有OIS簧片和OIS底座,OIS簧片设置在OIS底座上,AF马达安装于OIS簧片上,OIS簧片上还设置有SMA丝线,OIS底座包括有传导组件,传导组件与SMA丝线导电连接,并为SMA丝线通电,以使SMA丝线在电流的作用下收缩或膨胀并带动OIS簧片的至少部分沿预定方向移动,OIS簧片的至少部分移动时带动所述AF马达沿预设方向移动。导电引线组件用于连接导电引线组件和AF马达的线圈体,以给AF马达的线圈体通电。
本实施例通过第一绝缘层和第二绝缘层的设置,对导电引线起到绝缘保护的作用,从而防止了导电引线中间部分与簧片本体接触,从而避免了AF马达发生短路,保证AF马达的正常运行。
在本实施中,导电引线组件为两个,分别为输入导电引线组件2和输出导电引 线组
件3;传导组件包括用于接入电流的AF马达输入传导件和用于输出电流的AF马达输出传导件,AF马达输入传导件用于与输入导电引线组件电连接,AF马达输出传导件用于与输出导电引线组件电连接。
在本实施例中,输入导电引线组件2和输出导电引线组件3结构相同,下面以输出导电引线组件3为例做进一步的说明。
具体的,输出导电引线组件3包括有导电引线301、覆盖在导电引线301朝向簧片本体1一侧的第一绝缘层302、覆盖在导电引线301背向簧片本体一侧的第二绝缘层303。
其中,导电引线301包括导第一导电部3011、第二导电部3012、连接第一导电部3011和第二导电部3012的导电臂3013;第一导电部3011用于与AF马达的线圈体电连接,第二导电部3012用于与传导组件电连接。
其中,第一绝缘层302全覆盖住第一导电部3011和导电臂3013,部分覆盖或不覆盖第二导电部3012,以便于第二导电部3012与传导组件电连接;本实施例中第一绝缘层302完全不覆盖第二导电部3012,如图2中所示,当然在其他实施例中第一绝缘层302也可部分覆盖第二导电部3012、部分露出第二导电部3012,此处不做限制,可根据具体情况进行调整。
其中,第二绝缘层303全覆盖住第二导电部3012和导电臂3013,部分覆盖或不覆盖第一导电部3011,以便于第一导电部3011与AF马达的线圈体电连接;本实施例中第二绝缘层303部分覆盖第一导电部3011,具体的通过在第二绝缘层303上与第一导电部3011对应处设置有开口3031,通过开口3031露出第一导电部3011来实现,如图2中所示当然在其他实施例中第二绝缘层303也可全不覆盖第一导电部3011,此处不做限制,可根据具体情况进行调整。
在本实施例中,簧片本体1具有与导电臂形状相适配的支撑臂,导电臂覆盖有第一绝缘层的一侧设置在支撑臂上,且第一绝缘层的形状与支撑臂形状相适配。当然,在其他实施例中第一绝缘层和第二绝缘层的具体形状均可根据具体情况进行调整,此处不做限制。[0035]在本实施例中,每个导电引线组件均为由导电引线、第一绝缘层、第二绝缘层为加工成一体的挠性PCB板结构,挠性PCB板结构安装于簧片本体1上。进一步的挠性PCB板结构一端粘贴在簧片本体1上,另一端上设置有贯穿第一绝缘层、第二绝缘层的焊接孔4,挠性PCB板结构的另一端通过焊接孔4焊接在簧片本体1上,从而实现了导电引线组件的固定安装;当然,在其他实 施例中导电引线组件与簧片本体1的固定方式也可根据具体情况进行调整,此处不做限制。
上述,SMA丝线为一种镍钛合金材料,SMA为英文Shape Memory Alloy的缩略语,为“形状记忆合金”的意思。SMA丝线具有热缩冷涨的特点,当电流流入SMA丝线时,SMA丝线受热开始收缩,克服侧弹力;当电流切断时,偏压弹力克服SMA丝线丝力,开始冷涨。AF为Auto Focus的缩略语,是自动对焦的意思。
实施例2
本实施例提供了一种防抖结构,其特征在于,包括有OIS簧片和OIS底座,AF马达安装于OIS簧片上,OIS簧片设置在OIS底座上;OIS簧片上还设置有SMA丝线,OIS底座包括有传导组件,传导组件与SMA丝线导电连接,并为SMA丝线通电,以使SMA丝线在电流的作用下收缩或膨胀并带动OIS簧片的至少部分沿预定方向移动,OIS簧片的至少部分移动时带动AF马达沿预设方向移动;导电引线组件与传导组件、AF马达的线圈体电连接连接,以给AF马达的线圈体通电。
其中,OIS簧片采用实施例1中所述的OIS簧片。
实施例3
本实施例提供了一种摄像装置,包括摄像机本体和用于对摄像机本体进行防抖处理的防抖结构,防抖结构为实施例2中所述的防抖结构。
本技术领域的技术人员应理解,本发明可以以许多其他具体形式实现而不脱离其本身的精神或范围。尽管已描述了本发明的实施案例,应理解本发明不应限制为这些实施例,本技术领域的技术人员可如所附权利要求书界定的本发明的精神和范围之内作出变化和修改。

Claims (10)

  1. 一种用于防抖结构的OIS簧片,其特征在于,所述0IS簧片包括有簧片本体和设置在所述簧片本体上的导电引线组件,所述导电引线组件包括有导电引线、覆盖在所述导电引线朝向所述簧片本体一侧的第一绝缘层、覆盖在所述导电引线背向所述簧片本体一侧的第二绝缘层。
  2. 根据权利要求1所述的用于防抖结构的OIS簧片,其特征在于,所述导电引线组件为两个,分别为输入导电引线组件和输出导电引线组件;所述传导组件包括用于接入电流的AF马达输入传导件和用于输出电流的AF马达输出传导件,所述AF马达输入传导件用于与所述输入导电引线组件电连接,所述AF马达输出传导件用于与所述输出导电引线组件电连接。
  3. 根据权利要求1或2所述的用于防抖结构的OIS簧片,其特征在于,所述导电引线包括导第一导电部、第二导电部、连接所述第一导电部和所述第二导电部的导电臂;所述第一导电部用于与所述AF马达的线圈体电连接,所述第二导电部用于与所述传导组件电连接。
  4. 根据权利要求3所述的用于防抖结构的OIS簧片,其特征在于,所述第一绝缘层全覆盖住所述第一导电部和导电臂,部分覆盖或不覆盖所述第二导电部,以使所述第二导电部与所述传导组件电连接;所述第二绝缘层全覆盖住所述第二导电部和导电臂,部分覆盖或不覆盖所述第一导电部,以使所述第一导电部与所述AF马达的线圈体电连接。
  5. 根据权利要求4所述的用于防抖结构的OIS簧片,其特征在于,所述第二绝缘层上开设有用于部分露出所述第一导电部的开口。
  6. 根据权利要求3所述的用于防抖结构的OIS簧片,其特征在于,所述簧片本体具有与所述导电臂形状相适配的支撑臂,所述导电臂覆盖有所述第一绝缘层的一侧设置在所述支撑臂上,且所述第一绝缘层的形状与所述支撑臂形状相适配。
  7. 根据权利要求1所述的用于防抖结构的OIS簧片,其特征在于,所述导电引线、第一绝缘层、第二绝缘层为加工成一体的挠性PCB板结构,挠性PCB板结构安装于所述簧片本体上。
  8. 根据权利要求1所述的用于防抖结构的OIS簧片,其特征在于,所述挠性PCB板结构一端粘贴在所述簧片本体上,另一端上设置有贯穿所述第一绝缘层、第二绝缘层的焊接孔,所述挠性PCB板结构的另一端通过焊接孔焊接在所述簧片本体上。
  9. 一种防抖结构,其特征在于,包括有OIS簧片和OIS底座,AF马达安装于所述OIS簧片上,所述OIS簧片设置在所述OIS底座上;所述OIS簧片上还设置有SMA丝线, 所述OIS底座包括有传导组件,所述传导组件与所述SMA丝线导电连接,并为所述SMA丝线通电,以使所述SMA丝线在电流的作用下收缩或膨胀并带动所述OIS簧片的至少部分沿预定方向移动,所述OIS簧片的至少部分移动时带动所述AF马达沿预设方向移动;
    所述OIS簧片采用权利要求1-8中任意一项所述的OIS簧片,所述导电引线组件与所述传导组件、AF马达的线圈体电连接连接,以给所述AF马达的线圈体通电。
  10. 一种摄像装置,包括摄像机本体和用于对所述摄像机本体进行防抖处理的防抖结构,其特征在于,所述防抖结构为权利要求9中所述的防抖结构。
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