WO2023197721A1 - 一种摄像模组 - Google Patents

一种摄像模组 Download PDF

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Publication number
WO2023197721A1
WO2023197721A1 PCT/CN2023/072660 CN2023072660W WO2023197721A1 WO 2023197721 A1 WO2023197721 A1 WO 2023197721A1 CN 2023072660 W CN2023072660 W CN 2023072660W WO 2023197721 A1 WO2023197721 A1 WO 2023197721A1
Authority
WO
WIPO (PCT)
Prior art keywords
lens
lens barrel
receiving space
camera module
camera device
Prior art date
Application number
PCT/CN2023/072660
Other languages
English (en)
French (fr)
Inventor
王兴
邓艳玲
高志聪
聂兵兵
张晓辉
罗亮
Original Assignee
惠州Tcl移动通信有限公司
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 惠州Tcl移动通信有限公司 filed Critical 惠州Tcl移动通信有限公司
Publication of WO2023197721A1 publication Critical patent/WO2023197721A1/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
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B15/00Optical objectives with means for varying the magnification
    • G02B15/14Optical objectives with means for varying the magnification by axial movement of one or more lenses or groups of lenses relative to the image plane for continuously varying the equivalent focal length of the objective
    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03BAPPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
    • G03B13/00Viewfinders; Focusing aids for cameras; Means for focusing for cameras; Autofocus systems for cameras
    • G03B13/32Means for focusing

Definitions

  • This application relates to the field of camera technology, and specifically to a camera module.
  • the camera functions of the devices can record pictures of people, scenes, etc.
  • the module that implements the camera function usually has a zoom function. Through the camera zoom, the focal length can be changed within a certain range, thereby obtaining different wide and narrow field of view angles to obtain shooting pictures with different effects.
  • the zoom setting of the camera module only uses the driving device to drive the position of the zoom lens to achieve the purpose of zooming.
  • the camera module is not equipped with a structure that limits the starting and ending positions of the zoom lens, so that during the driving process, The drive unit cannot accurately position the beginning and end of the zoom lens.
  • Embodiments of the present application provide a camera module provided with a position-limiting structure to achieve precise positioning of the beginning and end positions of the zoom lens.
  • An embodiment of the present application provides a camera module.
  • the camera module includes a first camera device.
  • the first camera device includes a limiting block, a limiting piece and a first lens assembly.
  • the first camera device is provided with The first receiving space, the limiting block is fixed on the inner wall of the first receiving space, the limiting block includes a first long frame and a second long frame arranged in parallel, and the limiting piece is fixed on the inner wall of the first receiving space.
  • the outer side of the first lens assembly, and the limiting piece protrudes from the first lens assembly and is located between the first long frame and the second long frame.
  • the first lens assembly can drive The limiting piece moves in a first direction, and the first long frame and the second long frame can limit the movement stroke of the limiting piece.
  • a limiter piece is provided on the outer side of the first lens assembly, a limiter block is provided at a position opposite to the limiter piece, and the limiter piece is partially located on the first long frame of the limiter block. and the second long frame, so that when adjusting the focal length at both ends, the first lens assembly drives the limiter piece to move.
  • the movement stroke of the limiter piece is limited by the first long frame and the second long frame, thus Limiting the travel of both ends of the first lens assembly makes the adjustment of the focal length at both ends more precise.
  • Figure 1 is a cross-sectional view of a camera module provided by an embodiment of the present application.
  • Figure 2 is a partial structural schematic diagram of a camera module provided by an embodiment of the present application.
  • FIG. 3 is another partial structural diagram of a camera module provided by an embodiment of the present application.
  • 300 is a camera module
  • 10 is the first camera device
  • 20 is the second camera device
  • 101 is the first housing
  • 102 is the first base
  • 103 is the first lens barrel
  • 104 is the first lens barrel.
  • a lens 105 is the first circlip
  • 106 is the second circlip
  • 107 is the limiting piece
  • 108 is the limiting block
  • 201 is the second housing
  • 202 is the second base
  • 203 is the second barrel
  • 204 is
  • 205 is an elastic member
  • 206 is a second driving coil
  • 207 is a second magnetic component
  • 1031 is a first assembly hole
  • 1032 is an escape groove
  • 2031 is a second assembly hole
  • 2032 is a mating groove.
  • connection should be understood in a broad sense.
  • connection or integral connection; it can be mechanical connection, electrical connection or mutual communication; it can be direct connection, or indirect connection through an intermediary, it can be internal connection of two elements or interaction of two elements relation.
  • an element is said to be “fixed to” an element, it can be directly on another element or there can also be an intervening element.
  • Figure 1 is a cross-sectional view of a camera module provided by an embodiment of the present application.
  • the camera module 300 can be used in electronic equipment with a shooting function, including a first camera device 10 and a second camera device. 20.
  • the first camera device 10 and the second camera device 20 can be connected through adhesive tape, and the thickness of the adhesive layer is set according to the focal lengths of both ends.
  • both the first camera 10 and the second camera 20 are used to adjust the focal length, wherein the first camera 10 is used to accurately adjust the focal length of both ends.
  • the focal length is the focal length of the starting and ending positions.
  • the first camera device 10 includes a first housing 101, a first base 102, a first barrel 103, a first lens 104, a first circlip 105, a second circlip 106, a limiting piece 107 and a limiting block 108 .
  • the first housing 101 is a hollow structure located outside the first camera device 10.
  • the first base 102 and the first housing 101 can be regarded as collectively surrounding a first receiving space (not labeled).
  • the first receiving space is in an unenclosed state and is used for installing and receiving other structural components.
  • the first housing 101 forms the surrounding walls of the first receiving space and a top wall with an opening.
  • the first base 102 is partially located in the first receiving space and partially forms all the openings. Describe the bottom wall of the first containment space.
  • the first lens barrel 103 is located in the first receiving space, and the first lens barrel 103 is movable in the first receiving space. Specifically, the first lens barrel 103 can move in a first direction, that is, the first lens barrel 103 can move toward the second camera device 20 or away from the second camera device in the first receiving space. 20 direction movement.
  • FIG. 2 is a partial structural diagram of a camera module provided by an embodiment of the present application.
  • the first lens barrel 103 is provided with a first assembly hole 1031 and an escape groove 1032 .
  • the first assembly hole 1031 penetrates the first lens barrel 103 and is a through hole for assembling with the first lens 104 and fixing the first lens barrel 103 and the first lens 104 so that the first lens barrel 103 and the first lens 104 are fixed.
  • the first lens barrel 103 and the first lens 104 serve as a component, and when the first lens barrel 103 moves, the first lens 104 is driven to move synchronously.
  • a slot can be provided on the inner wall of the first assembly hole 1031.
  • the edge of the first lens 104 and the slot are assembled to connect and fix the first lens barrel 103 and the first lens 104, and make the first lens 104 partially It is located in the first assembly hole 1031 and partially protrudes from the first assembly hole 1031 .
  • Threads can be provided on the inner wall of the first assembly hole 1031, and suitable threads can be provided on the first lens 104 as well.
  • the threads on the first lens 104 cooperate with the threads in the first assembly hole 1031 to connect and fix the first lens 104 .
  • the lens barrel 103 and the first lens 104 are such that the first lens 104 is partially located in the first assembly hole 1031 and partially protrudes from the first assembly hole 1031 , and it is easy to replace the first lens 104 .
  • the first lens 104 is used to collect shooting images. After being assembled with the first lens barrel 103, part of the first lens 104 is located in the first receiving space and part protrudes from the first receiving space. The first lens 104 The movement is driven by the first lens barrel 103 , that is, the focal length is adjusted through the first lens barrel 103 to collect shooting images with different effects.
  • the escape groove 1032 is disposed on the outer surface of the first lens barrel 103 and is in a rectangular shape.
  • the escape groove 1032 and the limiting piece 107 are located at opposite positions.
  • the limiting piece 107 is used to limit the starting and ending movement positions of the first lens barrel 103, that is, to limit the focal lengths of both ends of the first lens barrel 103. It is an important component for accurately positioning the focal lengths of both ends.
  • the piece 107 is located in the escape groove 1032, and the limiting piece 107 is located in the first receiving space.
  • the limiting piece 107 may be partially located in the avoidance groove 1032.
  • the limiting piece 107 and the first lens barrel 103 can be integrated, and the limiting piece 107 can be a metal piece with high precision and a certain strength and hardness.
  • the first lens barrel 103 and the first lens 104 can be set as a first lens assembly.
  • the first circlip 105 and the second circlip 106 are both located in the first receiving space and are used to restrict the first lens barrel 103. At the same time, when adjusting the focal length at the beginning and end, the The first circlip 105 and the second circlip 106 can exert a spring force opposite to the first movement direction due to deformation to limit movement and protect the limiting piece 107 .
  • the first circlip 105 and the second circlip 106 are respectively provided as one, and the first circlip 105 and the second circlip 106 are both fixed on the third circlip.
  • the position limitation can be achieved by clamping on the inner wall of the first housing 101 or by other structural components.
  • the first circlip 105 is located at the top of the first lens barrel 103
  • the second circlip 106 is located at the bottom of the first lens barrel 103 .
  • the first circlip 105 is located above the first lens barrel 103
  • the second circlip 106 is located below the first lens barrel 103 .
  • the first lens barrel 103 drives the first lens 104 to move to the lower initial position, since the position of the second circlip 106 is fixed, the first lens barrel 103 is aligned with the lower third lens 104 .
  • the second circlip 106 is squeezed, and the second circlip 106 elastically deforms under the action of the extrusion force, generating an upward spring force and restricting the movement of the first lens barrel 103 .
  • the first lens barrel 103 drives the first lens 104 to move to the upper end position, since the position of the first circlip 105 is fixed, the first lens barrel 103 is aligned with the upper end position.
  • the first circlip 105 is squeezed, and the first circlip 105 elastically deforms under the action of the extrusion force to generate a downward spring force, which restricts the movement of the first lens barrel 103 .
  • the limiting block 108 is located in the first receiving space and is fixed in position by the first base 102.
  • the limiting block 108 is used to limit the movement position of the limiting piece 107, that is, the limiting block 108 is used to limit the movement stroke of the limiting piece 107 to achieve precise positioning of two focal lengths.
  • the limiting block 108 is connected and fixed to the inner wall of the first base 102, forming a rectangular frame structure with an opening at one end, and the opening is provided on a short frame on one side.
  • One end of the limiting piece 107 is located between the two long frames of the limiting block 108 .
  • the distance between the two long frames of the limiting block 108 is the adjustment stroke of the focal length of the first camera device 10 .
  • the limiting block 108 may include a short frame, a first long frame and a second long frame, the cross sections of the short frame, the first long frame and the second long frame are all rectangular, and the third One end of a long frame and the second long frame are respectively connected to two ends of the short frame, so that the limiting block 108 has a rectangular frame structure lacking a short frame.
  • the limiting piece 107 is partially located on the first circlip 105.
  • the first lens barrel 103 drives the first lens 104 and the limiting piece 107 to move upward, when the limiting piece 107 moves to be in contact with the first
  • the position where the inner wall of the long frame contacts is equivalent to moving to the end position. At this time, the focal length of the first camera device 10 is the largest.
  • the first circlip 105 Since the position of the first circlip 105 is fixed, the first lens barrel 103 The first circlip 105 is squeezed, and the first circlip 105 undergoes elastic deformation under the action of the extrusion force to generate a downward spring force, which restricts the movement and avoids the limiting piece. 107 is deformed and damaged under external force.
  • the limiting piece 107 is partially located on the first circlip 105.
  • the first lens barrel 103 drives the first lens 104 and the limiting piece 107 to move downward
  • the limiting piece 107 moves to be in line with the third
  • the position where the inner walls of the two long frames are in contact is equivalent to moving to the initial position.
  • the focal length of the first camera device 10 is the smallest.
  • the first lens barrel 103 squeezes the second circlip 106, and the second circlip 106 elastically deforms under the action of the extrusion force, generating an upward spring force, which restricts the movement and avoids the limiting piece. 107 is deformed and damaged under external force.
  • the first camera device 10 also includes a first driving coil (not shown) and a first magnetic element (not shown), and the first driving coil and the first magnetic element are located at In the first receiving space, the first driving coil is fixed on the inner wall of the first housing 101, the first magnetic element is fixed on the outer surface of the first lens barrel 103, and the first The lens barrel 103 realizes driving movement through the first driving coil and the first magnetic element.
  • the first driving coil and the first magnetic element can drive the first lens barrel 103 to move in the first direction.
  • the second camera device 20 includes a second housing 201 , a second base 202 , a second lens barrel 203 , a second lens 204 , an elastic member 205 , a second driving coil 206 and a second magnetic element 207 .
  • the second housing 201 is a hollow structure and is located outside the second camera device 20.
  • the second base 202 and the second housing 201 can be regarded as collectively surrounding a second receiving space (not labeled).
  • the second receiving space is in an unenclosed state and is used for installing and receiving other structural components.
  • the first receiving space and the second receiving space are connected, and the second camera device 20 partially protrudes from the second receiving space and is located in the first receiving space.
  • the second housing 201 forms the surrounding walls of the second receiving space and a top wall with an opening
  • the second base 202 forms a bottom wall of the second receiving space with an opening
  • the second lens barrel 203 is located in the second receiving space, and the second lens barrel 203 is movable in the second receiving space. Specifically, the second lens barrel 203 can move along the first direction, that is, the second lens barrel 203 can move toward the first camera device 10 or away from the first camera device in the second receiving space. 10 direction movement.
  • Figure 3 and Figure 2 are another partial structural diagram of a camera module provided by an embodiment of the present application. Furthermore, the second lens barrel 203 is provided with a second assembly hole 2031 and a mating groove. 2032.
  • the second assembly hole 2031 penetrates the second lens barrel 203 and is a through hole for assembling with the second lens 204 and fixing the second lens barrel 203 and the second lens 204 so that the The second lens barrel 203 and the second lens 204 serve as a component, and when the second lens barrel 203 moves, the second lens 204 is driven to move synchronously.
  • a first thread is provided on the inner wall of the second assembly hole 2031, and a matching second thread is provided on the outer wall of the second lens 204.
  • the second thread on the second lens 204 is The threads cooperate with the first threads in the second assembly hole 2031 to connect and fix the second lens 204 and the second lens barrel 203.
  • the second lens 204 is partially located on the second Part of the assembly hole 2031 protrudes from the second assembly hole 2031 .
  • the second lens 204 is used to collect shooting images. After being assembled with the second lens barrel 203, part of the second lens 204 is located in the second receiving space and part protrudes from the second receiving space and is located in the first receiving space. Inside, the second lens 204 is driven to move by the second lens barrel 203, that is, the focal length is adjusted through the first lens barrel 203, so as to capture shooting images with different effects.
  • the first lens 104 and the second lens 204 jointly capture shooting images with different effects.
  • the matching groove 2032 is provided on the outer surface of the second lens barrel 204 for assembly with the second magnetic component 207 .
  • the second driving coil 206 and the second magnetic element 207 are both located in the second receiving space.
  • the second driving coil 206 is fixed on the inner wall of the second housing 201.
  • the second magnetic element 207 is installed in the matching groove 2032, and the second driving coil 206 and the second magnetic element 207 are used to jointly drive the second lens barrel 203 to move.
  • the second lens barrel 203 and the second lens 204 can be set as a second lens assembly.
  • the elastic member 205 is located in the second receiving space and is used to restrict the second lens barrel 203 .
  • the two elastic members 205 may be respectively configured as a first elastic member and a second elastic member.
  • the first elastic member and the second elastic member The elastic members are all fixed in the second receiving space, and the position limitation can be achieved by clamping on the inner wall of the second housing 201 or through other structural components.
  • the first elastic member is located at the top of the second lens barrel 203 , and the second elastic member is located at the bottom of the second lens barrel 203 .
  • the first elastic member is located above the second lens barrel 203
  • the second elastic member is located below the second lens barrel 203 .
  • An embodiment of the present application provides a camera module, which includes a first camera device 10.
  • the first camera device 10 includes a limiting block 108, a limiting piece 107, and a first lens 104 assembly.
  • the first camera device 10 A first receiving space is provided, and the limiting block 108 is fixed on the inner wall of the first receiving space.
  • the limiting block 108 includes a first long frame and a second long frame arranged in parallel.
  • the piece 107 is fixed on the outer side of the first lens 104 component, and the limiting piece 107 partially protrudes from the first lens 104 component and is located between the first long frame and the second long frame,
  • the first lens 104 assembly can drive the limiting piece 107 to move in the first direction, and the first long frame and the second long frame can limit the movement stroke of the limiting piece 107 .
  • the first lens 104 assembly includes a first lens barrel 103.
  • the first lens barrel 103 is located in the first receiving space.
  • An escape groove 20321032 is provided on the outer surface of the first lens barrel 103.
  • the limit Part of the bit piece 107 is located in the relief groove 20321032, and part of it protrudes beyond the relief groove 20321032 and is located between the first long frame and the second long frame.
  • the first lens 104 assembly further includes a first lens 104.
  • the first lens barrel 103 is also provided with a first mounting hole 1031.
  • the first mounting hole 1031 extends from the top of the first lens barrel 103 to At the bottom of the first lens barrel 103, the first lens 104 is partially located in the first assembly hole 1031, and the first lens 104 is partially protruded from the first assembly hole 1031 and is located in the first assembly hole 1031. Outside the containment space.
  • a slot 2032 is provided on the inner wall of the first assembly hole 1031 .
  • the edge of the first lens 104 is assembled with the slot 2032 to connect and fix the first lens barrel 103 and the first lens 104 .
  • the inner wall of the first assembly hole 1031 is provided with threads, and the first lens 104 is provided with threads correspondingly.
  • the threads on the first lens 104 cooperate with the threads in the first assembly hole 1031 to connect.
  • the first lens barrel 103 and the first lens 104 are fixed.
  • the first camera device 10 also includes a first circlip 105 and a second circlip 106.
  • the first circlip 105 and the second circlip 106 are both fixed in the first receiving space.
  • a circlip 105 is located above the first lens barrel 103
  • the second circlip 106 is located below the first lens barrel 103 .
  • the first lens barrel 103 drives the first lens 104 to move to the lower initial position
  • the first lens barrel 103 squeezes the second circlip 106 , and the second circlip 106 Elastic deformation occurs under the action of the extrusion force to generate a spring force, which restricts the movement of the first lens barrel 103 .
  • the first lens barrel 103 drives the first lens 104 to move to the upper end position, the first lens barrel 103 squeezes the first circlip 105 , and the first circlip 105 Elastic deformation occurs under the action of the extrusion force to generate a spring force, which restricts the movement of the first lens barrel 103 .
  • the first camera device 10 further includes a first driving coil and a first magnetic element.
  • the first driving coil is fixed on the inner wall of the first receiving space, and the first magnetic element is fixed on the first On the outer surface of the lens barrel 103, the first driving coil and the first magnetic element can drive the first lens barrel 103 to move in the first direction.
  • the first camera device 10 also includes a first circlip 105, a second circlip 106, a first driving coil and a first magnetic element.
  • the first circlip 105 and the second circlip 106 are both fixed on the In the first receiving space, the first circlip 105 is located above the first lens barrel 103, and the second circlip 106 is located below the first lens barrel 103; the first driving coil is fixed On the inner wall of the first receiving space, the first magnetic element is fixed on the outer surface of the first lens barrel 103, and the first driving coil and the first magnetic element can drive the first lens barrel 103.
  • a lens barrel 103 moves along the first direction.
  • the limiting block 108 also includes a short frame. One end of the first long frame and the second long frame are respectively connected to both ends of the short frame, so that the limiting block 108 is in a rectangular shape lacking a short frame. box structure.
  • the first camera device 10 includes a first housing 101 and a first base 102.
  • the first housing 101 is a hollow structure.
  • the first base 102 and the first housing 101 together form the first housing. space.
  • the camera module 300 also includes a second camera device 20.
  • the second camera device 20 includes a second lens barrel 203 and a second lens 204.
  • the second camera device 20 is provided with a second receiving space. Two receiving spaces are connected with the first receiving space, the second lens barrel 203 is located in the second receiving space, the second lens 204 is assembled with the second lens barrel 203, and the second lens 204 Part of it is located in the second receiving space, and part of it protrudes from the second receiving space and is located in the first receiving space.
  • the second lens 204 is located below the first lens 104 assembly.
  • the first camera device 10 and the second camera device 20 are connected by adhesive tape.
  • the second lens barrel 203 is provided with a second assembly hole 2031 that extends from the top of the second lens barrel 203 to the bottom of the second lens barrel 203.
  • the second assembly hole 2031 extends from the top of the second lens barrel 203 to the bottom of the second lens barrel 203.
  • a first thread is provided in the hole 2031, and a second thread is provided on the outer surface of the second lens 204. The first thread and the second thread cooperate.
  • the second camera device 20 further includes a second magnetic element 207 .
  • a fitting groove 2032 is provided on the outer surface of the second lens barrel 203 , and the second magnetic element 207 is installed in the fitting groove 2032 .
  • the second camera device 20 further includes a second drive coil 205 , which is fixed on the inner wall of the second receiving space.
  • the second drive coil 205 and the second magnetic element 207 The second lens barrel 203 can be driven to move in the first direction.
  • the second camera device 20 further includes a first elastic member 205 , which is fixed in the second receiving space.
  • the first elastic member 205 is located above the second lens barrel 203 .
  • the second camera device 20 further includes a second elastic body, the second elastic body is fixed in the second receiving space, and the second elastic body is located below the second lens barrel 203 .
  • the second camera device 20 includes a second housing 201 and a second base 202.
  • the second housing 201 is a hollow structure.
  • the second base 202 and the second housing 201 together form the second housing. space.
  • the embodiment of the present application provides a camera module 300, which includes a connected first camera device 10 and a second camera device 20.
  • the first camera device 10 and the second camera device 20 are both used to adjust the focus, wherein , the first camera device 10 achieves precise adjustment of the focal length at both ends by setting the limiting piece 107 and the limiting block 108 .

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  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Lens Barrels (AREA)

Abstract

一种摄像模组,包括第一摄像装置,第一摄像装置包括限位块、限位片和第一镜头组件,第一摄像装置设有第一收容空间,限位块固定于第一收容空间的内侧壁上,限位块包括第一长边框和第二长边框,限位片固定于第一镜头组件的外侧面,第一镜头组件可带动限位片沿第一方向运动,第一长边框和第二长边框可限制限位片的运动行程。

Description

一种摄像模组 技术领域
本申请涉及摄像技术领域,具体涉及一种摄像模组。
背景技术
随着科学技术的发展,带有摄像功能的设备越来越多,通过设备带有的摄像功能可以实现对人物画面、场景画面等的记录。
实现摄像功能的模组通常具有变焦功能,通过摄像变焦使得在一定范围内可以变换焦距、从而得到不同宽窄的视场角,以获得不同效果的拍摄画面。
技术问题
目前,摄像模组在变焦的设置上仅仅是通过驱动装置来驱动变焦镜头的位置来实现变焦的目的,摄像模组上未设置有限制变焦镜头的始末位置的结构,使得在驱动的过程中,驱动装置无法准确定位变焦镜头的始末位置。
技术解决方案
本申请实施例提供一种设置有限位结构的摄像模组,以实现对变焦镜头的始末位置的精准定位。
本申请实施例提供一种摄像模组,所述摄像模组包括第一摄像装置,所述第一摄像装置包括限位块、限位片和第一镜头组件,所述第一摄像装置设有第一收容空间,所述限位块固定于所述第一收容空间的内侧壁上,所述限位块包括平行设置的第一长边框和第二长边框,所述限位片固定于所述第一镜头组件的外侧面,并且,所述限位片部分突出于所述第一镜头组件位于所述第一长边框和所述第二长边框之间,所述第一镜头组件可带动所述限位片沿第一方向运动,所述第一长边框和所述第二长边框可限制所述限位片的运动行程。
有益效果
本申请实施例所提供的摄像模组,在第一镜头组件的外侧面设置限位片,在与限位片相对的位置设置限位块,限位片部分位于限位块的第一长边框和第二长边框内,使得在调节两端焦距时,第一镜头组件带动限位片运动,当运动至两端,限位片的运动行程被第一长边框和第二长边框限制,从而限制第一镜头组件的两端行程,使得两端焦距的调节更加精准。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其它的附图。
图1是本申请实施例提供的一种摄像模组的剖视图。
图2是本申请实施例提供的一种摄像模组的一局部结构示意图。
图3是本申请实施例提供的一种摄像模组的另一局部结构示意图。
请参阅图1至图3,300为摄像模组,10为第一摄像装置,20为第二摄像装置,101为第一外壳,102为第一底座,103为第一镜筒,104为第一镜头,105为第一卡簧,106为第二卡簧,107为限位片,108为限位块,201为第二外壳,202为第二底座,203为第二镜筒,204为第二镜头,205为弹性件,206为第二驱动线圈,207为第二磁性元件,1031为第一装配孔,1032为避让槽,2031为第二装配孔,2032为配合槽。
本申请的实施方式
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域技术人员在没有作出创造性劳动前提下所获得的所有其它实施例,都属于本申请保护的范围。
在本申请的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体地连接;可以是机械连接,也可以是电连接或可以相互通讯;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通或两个元件的相互作用关系。当元件被称为“固定于”元件,它可以直接在另一个元件上或者也可以存在居中的元件。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本申请中的具体含义。
下文的公开提供了许多不同的实施方式或例子用来实现本申请的不同结构。为了简化本申请的公开,下文中对特定例子的部件和设置进行描述。当然,它们仅仅为示例,并且目的不在于限制本申请。此外,本申请可以在不同例子中重复参考数字和/或参考字母,这种重复是为了简化和清楚的目的,其本身不指示所讨论各种实施方式和/或设置之间的关系。此外,本申请提供了的各种特定的工艺和材料的例子,但是本领域普通技术人员可以意识到其它工艺的应用和/或其它材料的使用。
请参阅图1,图1为本申请实施例提供的一种摄像模组的剖视图,所述摄像模组300可运用于具有拍摄功能的电子设备中,包括第一摄像装置10和第二摄像装置20,所述第一摄像装置10和所述第二摄像装置20之间可通过胶贴的方式实现连接,胶层的厚度根据两端焦距进行设置。
在本申请的实施例中,所述第一摄像装置10和所述第二摄像装置20均用于调节焦距,其中,所述第一摄像装置10用于精准调节两端焦距,所述两端焦距为始末位置的焦距。
所述第一摄像装置10包括第一外壳101、第一底座102、第一镜筒103、第一镜头104、第一卡簧105、第二卡簧106、限位片107以及限位块108。
所述第一外壳101为中空结构,位于所述第一摄像装置10的外部,所述第一底座102和所述第一外壳101可以看成共同围设为第一收容空间(未标示),所述第一收容空间为非封闭状态,用于安装收容其它结构件。
可选的,所述第一外壳101形成所述第一收容空间的四周围壁及具有开口的顶壁,所述第一底座102部分位于所述第一收容空间内,部分形成具有开口的所述第一收容空间的底壁。
所述第一镜筒103位于所述第一收容空间内,并且,所述第一镜筒103可于所述第一收容空间内运动。具体的,所述第一镜筒103可沿第一方向运动,即所述第一镜筒103可于所述第一收容空间内朝向所述第二摄像装置20或者远离所述第二摄像装置20的方向运动。
请一并参阅图2,图2为本申请实施例提供的一种摄像模组的一局部结构示意图,进一步的,所述第一镜筒103设有第一装配孔1031和避让槽1032。
所述第一装配孔1031贯穿所述第一镜筒103,为通孔,用于与所述第一镜头104进行装配,固定所述第一镜筒103和所述第一镜头104,使得所述第一镜筒103和所述第一镜头104作为一个组件,在所述第一镜筒103运动时,带动所述第一镜头104进行同步运动。
所述第一镜筒103和所述第一镜头104的一种装配方式为卡合,可在所述第一装配孔1031的内壁上设置卡槽,在所述第一镜筒103和所述第一镜头104装配时,所述第一镜头104的边缘和所述卡槽装配,以连接固定所述第一镜筒103和所述第一镜头104,并且,使得所述第一镜头104部分位于所述第一装配孔1031内,部分突出于所述第一装配孔1031。
所述第一镜筒103和所述第一镜头104的另一种装配方式为螺接,可在所述第一装配孔1031的内壁上设置螺纹,在所述第一镜头104上同样设置适配的螺纹,在所述第一镜筒103和所述第一镜头104装配时,所述第一镜头104上的螺纹和所述第一装配孔1031内的螺纹配合,连接固定所述第一镜筒103和所述第一镜头104,使得所述第一镜头104部分位于所述第一装配孔1031内,部分突出于所述第一装配孔1031,并且,便于更换所述第一镜头104。
所述第一镜头104用于采集拍摄画面,在与所述第一镜筒103装配之后,部分位于所述第一收容空间内,部分突出于所述第一收容空间,所述第一镜头104通过所述第一镜筒103带动进行运动,即通过所述第一镜筒103实现调节焦距,以采集到不同效果的拍摄画面。
所述避让槽1032设置于所述第一镜筒103的外侧面上,呈矩形状,并且,所述避让槽1032与所述限位片107位于相对位置。
所述限位片107用于限制所述第一镜筒103的始末运动位置,即限制所述第一镜筒103的两端焦距,是实现精准定位两端焦距的重要部件,所述限位片107位于所述避让槽1032内,并且,所述限位片107位于所述第一收容空间内。例如,限位片107可以部分位于避让槽1032内。
在本申请的实施例中,所述限位片107和所述第一镜筒103可设置为一体化,并且,所述限位片107可为高精度、具有一定强度和硬度的金属片。
在本申请的实施例中,可将所述第一镜筒103和所述第一镜头104设为第一镜头组件。
所述第一卡簧105和所述第二卡簧106均位于所述第一收容空间内,用于对所述第一镜筒103起限制作用,同时,在调节始末两端焦距时,所述第一卡簧105和所述第二卡簧106可由于变形施加与第一运动方向相反的弹簧力,以限制运动,保护所述限位片107。
在本申请的实施例中,所述第一卡簧105和所述第二卡簧106分别设置为一个,所述第一卡簧105和所述第二卡簧106均被固定于所述第一收容空间内,可通过所述第一外壳101的内壁进行卡位的方式实现位置限定,也可通过其它结构件实现位置限定。
所述第一卡簧105位于所述第一镜筒103的顶部,所述第二卡簧106位于所述第一镜筒103的底部。例如,第一卡簧105位于第一镜筒103的上方,第二卡簧106位于第一镜筒103的下方。
在所述第一镜筒103带动所述第一镜头104运动至下方的初始位置时,由于所述第二卡簧106的位置固定,使得所述第一镜筒103对位于下方的所述第二卡簧106进行挤压,所述第二卡簧106在挤压力的作用下发生弹性形变,产生向上的弹簧力,对第一镜筒103的运动产生限制的作用。
相应的,在所述第一镜筒103带动所述第一镜头104运动至上方的末端位置时,由于所述第一卡簧105的位置固定,使得所述第一镜筒103对位于上方的所述第一卡簧105进行挤压,所述第一卡簧105在挤压力的作用下发生弹性形变,产生向下的弹簧力,对第一镜筒103的运动产生限制的作用。
所述限位块108位于所述第一收容空间内,被所述第一底座102固定位置,所述限位块108用于限制所述限位片107的运动位置,即所述限位块108用于限制所述限位片107的运动行程,实现精准定位两段焦距。
在本申请的实施例中,所述限位块108和所述第一底座102的内侧壁连接固定,呈一端设有开口的矩形框结构,其开口设于一侧的短边框上,所述限位片107的一端位于所述限位块108的两长边框之间,所述限位块108的两长边框之间的距离为所述第一摄像装置10的焦距的调节行程。
可选的,所述限位块108可以包括短边框、第一长边框和第二长边框,所述短边框、第一长边框和所述第二长边框的截面均为矩形,所述第一长边框和所述第二长边框分别一端连接于所述短边框的两端,使得所述限位块108呈缺少一短边框的矩形框结构。
设置所述第一长边框位于靠近所述第一卡簧105的位置,所述第二长边框位于靠近所述第二卡簧106的位置,则所述限位片107部分位于所述第一长边框和第二长边框之间,在所述第一镜筒103带动所述第一镜头104以及所述限位片107向上运动时,当所述限位片107运动至与所述第一长边框的内壁接触的位置,则相当于运动至末端位置,此时,所述第一摄像装置10的焦距最大,由于所述第一卡簧105的位置固定,使得所述第一镜筒103对所述第一卡簧105进行挤压,所述第一卡簧105在挤压力的作用下发生弹性形变,产生向下的弹簧力,对运动产生限制的作用,避免所述限位片107在外力下发生变形损坏。
设置所述第一长边框位于靠近所述第一卡簧105的位置,所述第二长边框位于靠近所述第二卡簧106的位置,则所述限位片107部分位于所述第一长边框和第二长边框之间,在所述第一镜筒103带动所述第一镜头104以及所述限位片107向下运动时,当所述限位片107运动至与所述第二长边框的内壁接触的位置,则相当于运动至初始位置,此时,所述第一摄像装置10的焦距最小,由于所述第二卡簧106的位置固定,使得所述第一镜筒103对所述第二卡簧106进行挤压,所述第二卡簧106在挤压力的作用下发生弹性形变,产生向上的弹簧力,对运动产生限制的作用,避免所述限位片107在外力下发生变形损坏。
需要说明的是,所述第一摄像装置10还包括第一驱动线圈(图未示)和第一磁性元件(图未示),所述第一驱动线圈和所述第一磁性元件均位于所述第一收容空间内,所述第一驱动线圈固定于所述第一外壳101的内侧壁上,所述第一磁性元件固定于所述第一镜筒103的外侧面上,所述第一镜筒103通过所述第一驱动线圈和所述第一磁性元件实现驱动运动。例如,所述第一驱动线圈和所述第一磁性元件可驱动所述第一镜筒103沿所述第一方向运动。
所述第二摄像装置20包括第二外壳201、第二底座202、第二镜筒203、第二镜头204、弹性件205、第二驱动线圈206以及第二磁性元件207。
所述第二外壳201为中空结构,位于所述第二摄像装置20的外部,所述第二底座202和所述第二外壳201可以看成共同围设为第二收容空间(未标示),所述第二收容空间为非封闭状态,用于安装收容其它结构件。
在本申请的实施例中,所述第一收容空间和所述第二收容空间连通,所述第二摄像装置20部分突出于所述第二收容空间位于所述第一收容空间内。
可选的,所述第二外壳201形成所述第二收容空间的四周围壁及具有开口的顶壁,所述第二底座202形成具有开口的所述第二收容空间的底壁。
所述第二镜筒203位于所述第二收容空间内,并且,所述第二镜筒203可于所述第二收容空间内运动。具体的,所述第二镜筒203可沿第一方向运动,即所述第二镜筒203可于所述第二收容空间内朝向所述第一摄像装置10或者远离所述第一摄像装置10的方向运动。
请一并参阅图3,图3图2为本申请实施例提供的一种摄像模组的另一局部结构示意图,进一步的,所述第二镜筒203设有第二装配孔2031和配合槽2032。
所述第二装配孔2031贯穿所述第二镜筒203,为通孔,用于与所述第二镜头204进行装配,固定所述第二镜筒203和所述第二镜头204,使得所述第二镜筒203和所述第二镜头204作为一个组件,在所述第二镜筒203运动时,带动所述第二镜头204进行同步运动。
在所述第二装配孔2031的内壁上设置有第一螺纹,所述第二镜头204的外侧壁上设置有适配的第二螺纹,在装配时,所述第二镜头204上的第二螺纹与所述第二装配孔2031内的第一螺纹配合,以连接固定所述第二镜头204和所述第二镜筒203,在装配之后,所述第二镜头204部分位于所述第二装配孔2031内,部分突出于所述第二装配孔2031。
所述第二镜头204用于采集拍摄画面,在与所述第二镜筒203装配之后,部分位于所述第二收容空间内,部分突出于所述第二收容空间位于所述第一收容空间内,所述第二镜头204通过所述第二镜筒203带动进行运动,即通过所述第一镜筒203实现调节焦距,以采集到不同效果的拍摄画面。
可选的,通过对所述第一镜头104和所述第二镜头204的焦距的调节,使得所述第一镜头104和所述第二镜头204共同采集到不同效果的拍摄画面。
所述配合槽2032设置于所述第二镜筒204的外侧面上,用于和所述第二磁性元件207进行装配。
所述第二驱动线圈206和所述第二磁性元件207均位于所述第二收容空间内,所述第二驱动线圈206固定于所述第二外壳201的内壁上,所述第二磁性元件207安装于所述配合槽2032,所述第二驱动线圈206和所述第二磁性元件207用于共同驱动所述第二镜筒203进行运动。
在本申请的实施例中,可将所述第二镜筒203和所述第二镜头204设为第二镜头组件。
所述弹性件205位于所述第二收容空间内,用于对所述第二镜筒203起限制的作用。
在本申请的实施例中,所述弹性件205设置为两个,两个所述弹性件205可分别设为第一弹性件和第二弹性件,所述第一弹性件和所述第二弹性件均被固定于所述第二收容空间内,可以通过所述第二外壳201的内壁进行卡位的方式实现位置限定,也可以通过其它结构件实现位置限定。
所述第一弹性件位于所述第二镜筒203的顶部,所述第二弹性件位于所述第二镜筒203的底部。又或者,第一弹性件位于第二镜筒203的上方,第二弹性件位于第二镜筒203的下方。
当所述第二驱动线圈206和所述第二磁性元件207驱动所述第二镜筒203带动所述第二镜头204向下运动至底部时,由于所述第二弹性件的位置固定,使得所述第二镜筒203对位于下方的所述第二弹性件进行挤压,所述第二弹性件在挤压力的作用下发生弹性形变,产生向上的弹簧力,对运动进行限制。
当所述第二驱动线圈206和所述第二磁性元件207驱动所述第二镜筒203带动所述第二镜头204向上运动至顶部时,由于所述第一弹性件的位置固定,使得所述第二镜筒203对位于上方的所述第一弹性件进行挤压,所述第一弹性件在挤压力的作用下发生弹性形变,产生向下的弹簧力,对运动进行限制。
本申请实施例提供一种摄像头模组,其包括第一摄像装置10,所述第一摄像装置10包括限位块108、限位片107和第一镜头104组件,所述第一摄像装置10设有第一收容空间,所述限位块108固定于所述第一收容空间的内侧壁上,所述限位块108包括平行设置的第一长边框和第二长边框,所述限位片107固定于所述第一镜头104组件的外侧面,并且,所述限位片107部分突出于所述第一镜头104组件位于所述第一长边框和所述第二长边框之间,所述第一镜头104组件可带动所述限位片107沿第一方向运动,所述第一长边框和所述第二长边框可限制所述限位片107的运动行程。
所述第一镜头104组件包括第一镜筒103,所述第一镜筒103位于所述第一收容空间内,所述第一镜筒103的外侧面上设有避让槽20321032,所述限位片107部分位于所述避让槽20321032内,部分突出于所述避让槽20321032位于所述第一长边框和所述第二长边框之间。
所述第一镜头104组件还包括第一镜头104,所述第一镜筒103上还设有第一装配孔1031,所述第一装配孔1031从所述第一镜筒103的顶部延伸至所述第一镜筒103的底部,所述第一镜头104部分位于所述第一装配孔1031内,并且,所述第一镜头104部分突出于所述第一装配孔1031位于所述第一收容空间外。
所述第一装配孔1031的内壁上设置有卡槽2032,所述第一镜头104的边缘与所述卡槽2032装配,以连接固定所述第一镜筒103和所述第一镜头104。
所述第一装配孔1031的内壁上设置有螺纹,所述第一镜头104上相应设置有螺纹,所述第一镜头104上的螺纹与所述第一装配孔1031内的螺纹配合,以连接固定所述第一镜筒103和所述第一镜头104。
所述第一摄像装置10还包括第一卡簧105和第二卡簧106,所述第一卡簧105和所述第二卡簧106均固定于所述第一收容空间内,所述第一卡簧105位于所述第一镜筒103的上方,所述第二卡簧106位于所述第一镜筒103的下方。
在所述第一镜筒103带动所述第一镜头104运动至下方的初始位置时,所述第一镜筒103对所述第二卡簧106进行挤压,所述第二卡簧106在挤压力的作用下发生弹性形变,以产生弹簧力,所述弹簧力对第一镜筒103的运动产生限制。
在所述第一镜筒103带动所述第一镜头104运动至上方的末端位置时,所述第一镜筒103对所述第一卡簧105进行挤压,所述第一卡簧105在挤压力的作用下发生弹性形变,以产生弹簧力,所述弹簧力对第一镜筒103的运动产生限制。
所述第一摄像装置10还包括第一驱动线圈和第一磁性元件,所述第一驱动线圈固定于所述第一收容空间的内侧壁上,所述第一磁性元件固定于所述第一镜筒103的外侧面上,所述第一驱动线圈和所述第一磁性元件可驱动所述第一镜筒103沿所述第一方向运动。
所述第一摄像装置10还包括第一卡簧105、第二卡簧106、第一驱动线圈和第一磁性元件,所述第一卡簧105和所述第二卡簧106均固定于所述第一收容空间内,所述第一卡簧105位于所述第一镜筒103的上方,所述第二卡簧106位于所述第一镜筒103的下方;所述第一驱动线圈固定于所述第一收容空间的内侧壁上,所述第一磁性元件固定于所述第一镜筒103的外侧面上,所述第一驱动线圈和所述第一磁性元件可驱动所述第一镜筒103沿所述第一方向运动。
所述限位块108还包括短边框,所述第一长边框和所述第二长边框分别一端连接于所述短边框的两端,使得所述限位块108呈缺少一短边框的矩形框结构。
所述第一摄像装置10包括第一外壳101以及第一底座102,所述第一外壳101为中空结构,所述第一底座102与所述第一外壳101共同围设为所述第一收容空间。
所述摄像模组300还包括第二摄像装置20,所述第二摄像装置20包括第二镜筒203和第二镜头204,所述第二摄像装置20设有第二收容空间,所述第二收容空间和所述第一收容空间连通,所述第二镜筒203位于所述第二收容空间内,所述第二镜头204和所述第二镜筒203装配,所述第二镜头204部分位于所述第二收容空间内,部分突出于所述第二收容空间位于所述第一收容空间内,所述第二镜头204位于所述第一镜头104组件的下方。
所述第一摄像装置10和所述第二摄像装置20之间通过胶贴的方式实现连接。
所述第二镜筒203上设有第二装配孔2031,所述第二装配孔2031从所述第二镜筒203的顶部延伸至所述第二镜筒203的底部,所述第二装配孔2031内设有第一螺纹,所述第二镜头204的外侧面上设有第二螺纹,所述第一螺纹和所述第二螺纹配合。
所述第二摄像装置20还包括第二磁性元件207,所述第二镜筒203的外侧面上设有配合槽2032,所述第二磁性元件207安装于所述配合槽2032。
所述第二摄像装置20还包括第二驱动线圈205,所述第二驱动线圈205固定于所述第二收容空间的内侧壁上,所述第二驱动线圈205和所述第二磁性元件207可驱动所述第二镜筒203沿所述第一方向运动。
所述第二摄像装置20还包括第一弹性件205,所述第一弹性件205固定于所述第二收容空间内,所述第一弹性件205位于所述第二镜筒203的上方。
所述第二摄像装置20还包括第二弹性体,所述第二弹性体固定于所述第二收容空间内,所述第二弹性体位于所述第二镜筒203的下方。
所述第二摄像装置20包括第二外壳201以及第二底座202,所述第二外壳201为中空结构,所述第二底座202与所述第二外壳201共同围设为所述第二收容空间。
本申请实施例提供了一种摄像模组300,包括连接的第一摄像装置10和第二摄像装置20,所述第一摄像装置10和所述第二摄像装置20均用于调节焦距,其中,所述第一摄像装置10通过设置限位片107和限位块108,实现对两端焦距的精准调节。
以上所述实施例的各技术特征可以进行任意的组合,为使描述简洁,未对上述实施例中的各个技术特征所有可能的组合都进行描述,然而,只要这些技术特征的组合不存在矛盾,都应当认为是本说明书记载的范围。
以上所述实施例仅表达了本申请的几种实施方式,其描述较为具体和详细,但并不能因此而理解为对本申请专利范围的限制。应当指出的是,对于本领域的普通技术人员来说,在不脱离本申请构思的前提下,还可以做出若干变形和改进,这些都属于本申请的保护范围。因此,本申请的保护范围应以所附权利要求为准。

Claims (20)

  1. 一种摄像模组,其包括第一摄像装置,所述第一摄像装置包括限位块、限位片和第一镜头组件,所述第一摄像装置设有第一收容空间,所述限位块固定于所述第一收容空间的内侧壁上,所述限位块包括平行设置的第一长边框和第二长边框,所述限位片固定于所述第一镜头组件的外侧面,并且,所述限位片部分突出于所述第一镜头组件位于所述第一长边框和所述第二长边框之间,所述第一镜头组件可带动所述限位片沿第一方向运动,所述第一长边框和所述第二长边框可限制所述限位片的运动行程。
  2. 根据权利要求1所述的摄像模组,其中,所述第一镜头组件包括第一镜筒,所述第一镜筒位于所述第一收容空间内,所述第一镜筒的外侧面上设有避让槽,所述限位片部分位于所述避让槽内,部分突出于所述避让槽位于所述第一长边框和所述第二长边框之间。
  3. 根据权利要求2所述的摄像模组,其中,所述避让槽为矩形。
  4. 根据权利要求2所述的摄像模组,其中,所述第一镜头组件还包括第一镜头,所述第一镜筒上还设有第一装配孔,所述第一装配孔从所述第一镜筒的顶部延伸至所述第一镜筒的底部,所述第一镜头部分位于所述第一装配孔内,并且,所述第一镜头部分突出于所述第一装配孔位于所述第一收容空间外。
  5. 根据权利要求4所述的摄像模组,其中,所述第一装配孔的内壁上设置有卡槽,所述第一镜头的边缘与所述卡槽装配,以连接固定所述第一镜筒和所述第一镜头。
  6. 根据权利要求4所述的摄像模组,其中,所述第一装配孔的内壁上设置有螺纹,所述第一镜头上相应设置有螺纹,所述第一镜头上的螺纹与所述第一装配孔内的螺纹配合,以连接固定所述第一镜筒和所述第一镜头。
  7. 根据权利要求2所述的摄像模组,其中,所述第一摄像装置还包括第一卡簧和第二卡簧,所述第一卡簧和所述第二卡簧均固定于所述第一收容空间内,所述第一卡簧位于所述第一镜筒的上方,所述第二卡簧位于所述第一镜筒的下方。
  8. 根据权利要求2所述的摄像模组,其中,所述第一摄像装置还包括第一驱动线圈和第一磁性元件,所述第一驱动线圈固定于所述第一收容空间的内侧壁上,所述第一磁性元件固定于所述第一镜筒的外侧面上,所述第一驱动线圈和所述第一磁性元件可驱动所述第一镜筒沿所述第一方向运动。
  9. 根据权利要求2所述的摄像模组,其中,所述第一摄像装置还包括第一卡簧、第二卡簧、第一驱动线圈和第一磁性元件,所述第一卡簧和所述第二卡簧均固定于所述第一收容空间内,所述第一卡簧位于所述第一镜筒的上方,所述第二卡簧位于所述第一镜筒的下方;所述第一驱动线圈固定于所述第一收容空间的内侧壁上,所述第一磁性元件固定于所述第一镜筒的外侧面上,所述第一驱动线圈和所述第一磁性元件可驱动所述第一镜筒沿所述第一方向运动。
  10. 根据权利要求2所述的摄像模组,其中,所述限位片和第一镜筒一体化设置。
  11. 根据权利要求1所述的摄像模组,其中,所述限位块还包括短边框,所述第一长边框和所述第二长边框分别一端连接于所述短边框的两端,使得所述限位块呈缺少一短边框的矩形框结构。
  12. 根据权利要求1所述的摄像模组,其中,所述第一摄像装置包括第一外壳以及第一底座,所述第一外壳为中空结构,所述第一底座与所述第一外壳共同围设为所述第一收容空间。
  13. 根据权利要求1所述的摄像模组,其中,所述摄像模组还包括第二摄像装置,所述第二摄像装置包括第二镜筒和第二镜头,所述第二摄像装置设有第二收容空间,所述第二收容空间和所述第一收容空间连通,所述第二镜筒位于所述第二收容空间内,所述第二镜头和所述第二镜筒装配,所述第二镜头部分位于所述第二收容空间内,部分突出于所述第二收容空间位于所述第一收容空间内,所述第二镜头位于所述第一镜头组件的下方。
  14. 根据权利要求13所述的摄像模组,其中,所述第一摄像装置和所述第二摄像装置之间通过胶贴的方式实现连接。
  15. 根据权利要求13所述的摄像模组,其中,所述第二镜筒上设有第二装配孔,所述第二装配孔从所述第二镜筒的顶部延伸至所述第二镜筒的底部,所述第二装配孔内设有第一螺纹,所述第二镜头的外侧面上设有第二螺纹,所述第一螺纹和所述第二螺纹配合。
  16. 根据权利要求13所述的摄像模组,其中,所述第二摄像装置还包括第二磁性元件,所述第二镜筒的外侧面上设有配合槽,所述第二磁性元件安装于所述配合槽。
  17. 根据权利要求16所述的摄像模组,其中,所述第二摄像装置还包括第二驱动线圈,所述第二驱动线圈固定于所述第二收容空间的内侧壁上,所述第二驱动线圈和所述第二磁性元件可驱动所述第二镜筒沿所述第一方向运动。
  18. 根据权利要求13所述的摄像模组,其中,所述第二摄像装置还包括第一弹性件,所述第一弹性件固定于所述第二收容空间内,所述第一弹性件位于所述第二镜筒的上方。
  19. 根据权利要求13所述的摄像模组,其中,所述第二摄像装置还包括第二弹性体,所述第二弹性体固定于所述第二收容空间内,所述第二弹性体位于所述第二镜筒的下方。
  20. 根据权利要求13所述的摄像模组,其中,所述第二摄像装置包括第二外壳以及第二底座,所述第二外壳为中空结构,所述第二底座与所述第二外壳共同围设为所述第二收容空间。
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