Electronic device
By adjusting the module, the camera module is controlled to switch in different postures, the problem of excessive gap caused by the tilt of the camera module is solved, and the structure of the electronic equipment and waterproof and dustproof performance are optimized.
Patent Information
- Application Number
- CN201910388533.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2019-05-10
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2039-05-10
AI Technical Summary
In the prior art, the inclination demand of the camera module leads to excessive gaps, affecting the aesthetics of electronic devices and dust-proof and waterproof performance.
By setting up an adjustment module, the camera module is controlled to switch between the first posture and the second posture, and the adjustment module moves at least part of the camera module out of the device body and tilts it, reducing the gap with the accommodating space.
The camera module's shooting range changes in different postures are realized, the internal structure and space utilization of the equipment are optimized, and the waterproof and dustproof performance is improved.
Smart Images

Figure CN111917945B_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the field of camera technology, and in particular to an electronic device. Background Art
[0002] In related technologies, electronic devices are implementing an increasing number of shooting functions. In some scenarios, electronic devices support more shooting functions by adopting more powerful cameras. In some scenarios, the number of cameras used by electronic devices has increased from the original single camera to two, three, or even more cameras, which is the so-called multi-camera solution. Summary of the Invention
[0003] The present disclosure provides an electronic device to solve the deficiencies in the related art.
[0004] According to an embodiment of the present disclosure, there is provided an electronic device, including:
[0005] Equipment body;
[0006] a camera module disposed on the device body, wherein the camera module is located in a receiving space within the device body in a first posture and has a first shooting range;
[0007] An adjustment module is provided on the device body, and the adjustment module can move the camera module in the first posture outward from the accommodating space, move at least a part of the camera module to the outside of the device body, and then tilt the camera module to switch the camera module to a second posture, wherein the camera module has a second shooting range in the second posture.
[0008] Optionally, the camera module includes one or more cameras.
[0009] Optionally, the field of view angles of multiple cameras overlap or substantially overlap in the first posture and correspond to the first shooting range.
[0010] Optionally, the field of view angles of multiple cameras are spliced into a combined field of view angle in the second posture, the combined field of view angle is larger than the field of view angle of each camera, and the combined field of view angle corresponds to the second shooting range.
[0011] Optionally, multiple cameras are set up in parallel.
[0012] Optionally, multiple cameras are arranged in a centrally symmetrical manner around a center point.
[0013] Optionally, when the camera module switches from the first posture to the second posture, one end of each camera close to the center point moves away from the center point and / or the other end away from the center point moves toward the center point.
[0014] Optionally, when the camera module switches from the first posture to the second posture, some or all of the multiple cameras are tilted.
[0015] Optional,
[0016] Each camera in the camera module includes: a photographing portion and a fixing portion connected to the photographing portion; the photographing portion is provided with a first group of protrusions extending along a first axis, and the first axis divides the photographing portion into a first portion away from the fixing portion and a second portion close to the fixing portion; the fixing portion is provided with a second group of protrusions extending along a second axis, and the second axis divides the fixing portion into a third portion close to the photographing portion and a fourth portion away from the photographing portion;
[0017] The adjustment module includes:
[0018] a lifting portion capable of reciprocating in a vertical direction and cooperating with the first portion of the photographing portion;
[0019] The lifting limit portion includes a vertical slide groove matched with the second group of protrusions; wherein, when the lifting portion is raised from the lowest point to the middle point, the second group of protrusions can rise from the bottom of the vertical slide groove to the top;
[0020] The tilt limiting portion is fixed on the lifting portion and includes a horizontal slide groove that cooperates with the first group of protrusions; wherein, when the lifting portion rises from the lowest point to the middle point, the first group of protrusions rises with the lifting portion, and when the lifting portion rises from the middle point to the highest point, the first group of protrusions can rotate in the horizontal slide groove and move from the first end of the horizontal slide groove away from the fixed portion to the second end close to the fixed portion, so that the shooting portion is tilted around the first axis.
[0021] Optionally, the fixing portion includes a flexible cable extending outward from the shooting portion.
[0022] Optionally, the lifting portion is located at the bottom of the shooting portion.
[0023] Optional,
[0024] The number of the lifting part is one, and the lifting part is located between the multiple cameras included in the camera module to simultaneously cooperate with the shooting parts of the multiple cameras; or,
[0025] There are multiple lifting parts, and each lifting part is matched with the shooting part of at least one camera.
[0026] The technical solutions provided by the embodiments of the present disclosure may have the following beneficial effects:
[0027] The present disclosure provides an adjustment module that cooperates with the camera module to adjust the camera module's posture, so that the camera module can achieve different shooting ranges in different postures, which can expand the application scenarios of the camera module, such as achieving wide-angle or ultra-wide-angle shooting through a normal lens. At the same time, during the posture adjustment process, the adjustment module can reduce the space occupied by the camera module on the device body when it is tilted by moving at least a portion of the camera module out of the device body. On the one hand, it helps to optimize the structure and space between the components inside the device body. On the other hand, it can avoid the formation of excessive gaps around the camera module, which helps to optimize the waterproof and dustproof performance of the electronic device.
[0028] It is to be understood that the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the disclosure. BRIEF DESCRIPTION OF THE DRAWINGS
[0029] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present disclosure and, together with the description, serve to explain the principles of the present disclosure.
[0030] Figure 1 This is a schematic diagram of controlling the tilt of a camera module in the related art.
[0031] Figures 2A-2B The figure is a schematic diagram showing a method of controlling a camera module to tilt according to an exemplary embodiment.
[0032] Figure 3 The figure is a schematic diagram showing a method of controlling the movement of multiple cameras according to an exemplary embodiment.
[0033] Figure 4 The figure is a schematic diagram showing a centrally symmetrical arrangement of multiple cameras according to an exemplary embodiment.
[0034] Figure 5 The figure is a schematic diagram showing a camera tilt according to an exemplary embodiment.
[0035] Figure 6 The figure is a schematic diagram showing an assembly between a camera and an adjustment module according to an exemplary embodiment.
[0036] Figure 7 yes Figure 6 Corresponding cross-sectional view.
[0037] Figure 8-10 The figure is a schematic diagram showing an adjustment module driving a camera to move according to an exemplary embodiment.
[0038] Figure 11 The figure is a schematic diagram showing movement control of multiple cameras by an adjustment module according to an exemplary embodiment. DETAILED DESCRIPTION
[0039] Exemplary embodiments will be described in detail herein, with examples illustrated in the accompanying drawings. In the following description, when referring to the drawings, identical numerals in different figures represent identical or similar elements, unless otherwise indicated. The embodiments described in the following exemplary embodiments are not intended to represent all embodiments consistent with the present application. Rather, they are merely examples of apparatus and methods consistent with certain aspects of the present application, as detailed in the appended claims.
[0040] The terms used in this application are for the purpose of describing specific embodiments only and are not intended to limit this application. As used in this application and the appended claims, the singular forms "a," "an," "the," and "the" are intended to include the plural forms, unless the context clearly indicates otherwise. It should also be understood that the term "and / or" as used herein refers to and encompasses any and all possible combinations of one or more of the associated listed items.
[0041] It should be understood that although the terms first, second, third, etc. may be used in this application to describe various information, such information should not be limited to these terms. These terms are only used to distinguish information of the same type from each other. For example, without departing from the scope of this application, first information may also be referred to as second information, and similarly, second information may also be referred to as first information. Depending on the context, the word "if" as used herein may be interpreted as "at the time of" or "when" or "in response to determining".
[0042] Figure 1 This is a schematic diagram of controlling the tilt of a camera module in the related art. Figure 1 As shown, the electronic device may include a device body 1 and a camera module 2 provided on the device body 1. In some scenarios, it is desired to adjust and control the camera module 2 so that the camera module 2 can be tilted at a certain angle, such as Figure 1The tilt angle formed to the left is α. Assuming that a storage space 10 is provided on the device body 1 for setting the camera module 2, then in order to meet the tilt requirement of the camera module 2, the gap between the camera module 2 and the left inner wall of the storage space 10 should be no less than a, otherwise the camera module 2 will be hindered by the left inner wall and cannot complete the tilt or the tilt angle cannot reach α. Similarly, if you want the camera module 2 to tilt to the right at an angle of α, the gap between the camera module 2 and the right inner wall of the storage space 10 should also be no less than a; the situations in other directions are similar and will not be repeated here.
[0043] However, when the gap between the camera module 2 and the accommodating space 10 is too large, it will not only affect the aesthetics of the electronic device, but also easily cause foreign matter to enter, increase the difficulty of dust and water prevention, and thus reduce the reliability of the electronic device.
[0044] Therefore, the present disclosure proposes a corresponding structural improvement to address the tilt requirement of the camera module 2, so as to solve the problem of excessive gap in the related art.
[0045] Figures 2A-2B FIG. 1 is a schematic diagram showing a method of controlling a camera module to tilt according to an exemplary embodiment. Figures 2A-2B As shown, the electronic device of the present disclosure may include: a device body 1, a camera module 2, and an adjustment module 3. The device body 1 is provided with a housing 10 for accommodating and disposing the camera module 2. The adjustment module 3 can cooperate with the camera module 2 to control the camera module 2 to switch between a first posture and a second posture, that is, from the first posture to the second posture, or from the second posture to the first posture.
[0046] When the camera module 2 is in the first posture, the camera module 2 is located in the accommodation space 10. For example, the camera module 2 can be Figure 2A As shown, the camera module 2 is located at the bottom of the storage space 10. At this time, the lens of the camera module 2 is facing the direction L1. If the direction L1 is 0° and the right is the positive direction and the left is the negative direction, then when the FOV (field of view) of the camera module 2 is 2β, it can be considered that the first shooting range formed by the camera module 2 is [-β, β].
[0047] The adjustment module 3 can move the camera module 2 in the first posture outward from the accommodating space 10, so that at least a part of the camera module 2 is moved to the outside of the device body 1, for example, to Figure 2B further, the adjustment module 3 can cause the camera module 2 to tilt (eg, the tilt angle to the left is α), so that the camera module 2 is switched to Figure 2BIn the second posture indicated by the dotted line, the lens orientation of the camera module 2 changes from the direction L1 to the direction L2, and the camera module 2 has a second shooting range in the second posture, which can be expressed as [-(β+α),β-α]. Therefore, by adjusting the module 2 to control the camera module 2 to switch between the first posture and the second posture, the shooting range formed by the camera module 2 can be changed to meet the user's shooting needs.
[0048] Since the adjustment module 2 first drives at least a part of the camera module 2 to the outside of the device body 1, and then controls the camera module 2 to tilt, Figure 1 Compared with the direct control of the camera module 2 to produce a tilt: in the case of the same tilt of α, due to Figure 1 The gap in the camera module 2 needs to fit the entire side wall. Figure 2B The gap in the embodiment shown only needs to fit part of the side wall of the camera module 2 so that Figure 2B In the illustrated embodiment, the gap between the camera module 2 and the accommodating space 10 can be reduced from a to b, thereby reducing the width by a total of 2(ab) in the left-right direction. Furthermore, if the adjustment module 2 can completely move the camera module 2 out of the accommodating space 10, there can be almost no gap between the camera module 2 and the accommodating space 10 (the gap can be as small as possible without hindering the movement of the camera module 2).
[0049] In one embodiment, the camera module 2 may include only one camera, or the camera module 2 may include multiple cameras that can move synchronously, as shown in FIG. Figures 2A-2B In this embodiment, although the size of the FOV formed by a single camera or the combined FOV formed by multiple cameras on the camera module 2 remains unchanged, the tilt of the camera module 2 can change the shooting range, thereby meeting the user's shooting needs in some scenarios. For example, panoramic shooting can be achieved by controlling the movement of the camera module 2 without moving the electronic device. In this case, the user only needs to focus on how to keep the electronic device still without having to rotate the electronic device, which helps to improve shooting stability and enhance shooting quality.
[0050] In one embodiment, the camera module 2 may include multiple cameras, and the adjustment module 3 may drive some or all of the multiple cameras to move. Figure 3 FIG. 1 is a schematic diagram showing a method of controlling the movement of multiple cameras according to an exemplary embodiment. Figure 3 As shown, it is assumed that the camera module 2 includes camera 2A and camera 2B. Figure 3 The left side shows the camera module 2 in the first posture. Figure 3The right side shows the camera module 2 in the second posture.
[0051] When the camera module 2 is in the first posture, the lenses of the camera 2A and the camera 2B are both facing forward (ie Figure 3 ), and the FOV1 of camera 2A overlaps or substantially overlaps with the FOV2 of camera 2B (such as the overlap reaches a preset ratio) to achieve shooting effects such as blurred background of portraits. When the camera module 2 is in the second posture, camera 2A tilts to the left and camera 2B tilts to the right, causing the FOV1 of camera 2A to deviate from the FOV2 of camera 2B. Ultimately, FOV1 and FOV2 are adjacent or partially interlaced, so that FOV1 and FOV2 can form a combined field of view FOV3. That is, after the cameras 2A and 2B are tilted separately, they can form a combined field of view FOV3, and the FOV3 is larger than the individual FOV1 and FOV2. It can be seen that the second shooting range of the camera module 2 in the second posture is obviously larger than the first shooting range in the first posture, so as to meet the user's wide-angle shooting needs.
[0052] As described above, only some of the multiple cameras included in camera module 2 can be tilted. For example, when camera module 2 includes camera 2A and camera 2B, only camera 2A can be tilted to the left, while camera 2B cannot be tilted. However, a relatively larger combined field of view angle can still be formed by tilting camera 2A.
[0053] When the camera module 2 includes more than two cameras, the multiple cameras can be arranged in parallel, that is, arranged in sequence along a straight line. For example, when the camera module 2 includes three cameras, the three cameras can be arranged in sequence along an edge of the electronic device, such as a horizontal edge or a vertical edge. This disclosure is not limited to this.
[0054] In one embodiment, the multiple cameras included in the camera module 2 can be arranged symmetrically around the center point. For example, Figure 4 FIG. 1 is a schematic diagram showing a centrally symmetrical arrangement of multiple cameras according to an exemplary embodiment. Figure 4 As shown, when the camera module 2 includes cameras 2C, 2D, 2E, and 2F, the four cameras 2C to 2F can be centrally symmetrically arranged about the center point O. Then, when the camera module 2 switches from the first posture to the second posture, the end of each camera closer to the center point O moves away from the center point O and / or the other end away from the center point O moves toward the center point O.
[0055] Figure 5 FIG. 1 is a schematic diagram showing a camera tilt according to an exemplary embodiment. Figure 4Take the camera 2C in the figure as an example, assuming that the camera 2C includes a right end close to the center point O, where point A exists, a left end away from the center point O, where point B exists, and a point C located between points A and B. Figure 5 In the left figure (a), the camera 2C can be rotated around the axis at point B, so that the right end of the camera 2C close to the center point O moves to the left, that is, moves away from the center point O. When the camera 2C is tilted to a preset angle, it occupies a space of width a1 on the left side. Figure 5 In the middle figure (b), the camera 2C can rotate around the axis at point A, so that the left end of the camera 2C away from the center point O moves to the right, that is, moves closer to the center point O. When the camera 2C is tilted to a preset angle, the left side occupies a space of width a2. Figure 5 In the middle figure (c), the camera 2C can be rotated around the axis at point C, so that the right end of the camera 2C close to the center point O moves to the left, that is, moves away from the center point O, and at the same time, the left end of the camera 2C away from the center point O moves to the right, that is, moves closer to the center point O, and when the camera 2C is tilted to a preset angle, it occupies a space of width a3 on the left side.
[0056] exist Figure 5 In the three cases shown, the space occupied by camera 2C on the left side is: a2 < a3 < a1. Although camera 2C occupies the largest space on the left side in Figure (a) and the smallest space on the left side in Figure (b), camera 2C does not occupy any bottom space in Figure (a), so the electronic device does not need to provide corresponding reserved space for camera 2C in the vertical direction. However, camera 2C in Figure (b) needs to occupy the bottom space, so the electronic device needs to provide corresponding reserved space for camera 2C in the vertical direction. Camera 2C needs to occupy a certain amount of bottom space in Figure (c), but the occupancy is better than the embodiment shown in Figure (b).
[0057] Of course, the adjustment module 3 in the present disclosure can first push at least a portion of the camera module 2 out of the accommodation space 10 of the device body 1, so that even if the electronic device does not provide or only provides a small amount of reserved space, it can form available space in the vertical direction at the bottom of the camera module 2 to meet the vertical space occupation requirements of the camera 2C, such as the above. In other words, when the electronic device does not provide a vertical reserved space, if the adjustment module 3 is not used to push at least a portion of the camera module 2 out of the accommodation space 10, the camera module 2 can only be used according to the vertical direction. Figure 5 Case (a) produces a tilt, resulting in a larger lateral ( Figure 5However, if at least a portion of the camera module 2 is pushed out of the accommodating space 10 by adjusting the module 3, the corresponding space can be provided to the camera module 2 in the vertical direction so that the camera module 2 can be adjusted according to the Figure 5 Cases (b) or (c) result in an inclination, resulting in a smaller lateral space occupation.
[0058] Figure 6 The figure is a schematic diagram showing an assembly between a camera and an adjustment module according to an exemplary embodiment. Figure 7 yes Figure 6 Corresponding cross-sectional view. Still taking the camera 2C contained in the camera module 2 as an example. Figure 6-7 As shown, the camera 2C includes: a shooting portion 21, a fixing portion 22 connected to the shooting portion 21, for example, the fixing portion 22 can be a flexible cable extending outward from the shooting portion 21; a first group of protrusions 211 extending along a first axis L3 is provided on the shooting portion 21, and the first axis L3 divides the shooting portion 21 into a first portion away from the fixing portion 22 (i.e., Figure 7 The portion below the first axis L3), the second portion close to the fixing portion 22 (ie Figure 7 The fixing portion 22 is provided with a second group of protrusions 221 extending along the second axis L4, and the second axis L4 divides the fixing portion 22 into a third portion close to the shooting portion 21 (i.e. Figure 7 The portion located above the second axis L4), the fourth portion away from the imaging unit 21 (ie Figure 7 The adjustment module 3 includes a lifting portion 31 capable of reciprocating in the vertical direction and engaging with the first portion of the imaging portion 21; a lifting stopper 32 including a vertical slot 321 engaging with the second set of protrusions 221; and a tilting stopper 33 fixed to the lifting portion 31 and including a horizontal slot 331 engaging with the first set of protrusions 211.
[0059] Accordingly, Figure 8-10 FIG. 1 is a schematic diagram showing an example of an adjustment module driving a camera to move according to an exemplary embodiment. Figure 8 In the embodiment shown, the lifting portion 31 is at its lowest point, the second set of protrusions 221 is located at the bottom of the vertical slot 321, and the first set of protrusions 211 is located in the horizontal slot 331 away from the first end of the fixing portion 22 (i.e. Figure 8-10 Driven by the adjustment module 3, the movement process of the camera 2C is divided into two stages:
[0060] like Figure 8-9As shown, in the first stage, the lifting portion 31 rises from the lowest point to the middle point (i.e., the point between the lowest point and the highest point, not necessarily the middle point between the lowest point and the highest point). During this process, the lifting portion 31 directly pushes the first part of the shooting portion 21 to rise, and the shooting portion 21 further drives the fixing portion 22 to rise, until the second group of protrusions 221 on the fixing portion 22 rises from the bottom to the top of the vertical slide groove 221, and the fixing portion 22 is restricted from further rising under the limiting action of the vertical slide groove 221.
[0061] like Figure 9-10 As shown, in the second stage, the lifting portion 31 continues to rise from the middle point to the highest point. Although the lifting portion 31 applies an upward lifting force to the first portion of the imaging portion 21, the imaging portion 21 is restrained by the fixing portion 22 and cannot continue to rise, causing the first group of protrusions 211 to rotate in the horizontal slot 331 and move away from the first end of the fixing portion 22 (i.e., the first end of the fixing portion 22). Figure 8-10 The right end in FIG) moves to the second end close to the fixing portion 22 (i.e. Figure 8-10 The left end of the lifting portion 31 is lifted, and in this process, the camera unit 21 is tilted leftward about the first axis L3. It can be seen that the mating surface between the lifting portion 31 and the camera unit 21 should not exceed the first portion, thereby ensuring that the camera unit 21 can be tilted about the first axis L3 in the second stage.
[0062] In one embodiment, when the camera module 2 includes multiple cameras, the adjustment module 3 may include multiple Figure 6-10 The lifting portion 31 shown is respectively matched with each camera, so that the adjustment module 3 can control any one or more cameras to tilt according to needs, with high flexibility.
[0063] In one embodiment, when the camera module 2 includes multiple cameras, the adjustment module 3 may include: Figure 11 A lifting portion 31 is shown, and the lifting portion 31 is located between the multiple cameras 2C-2F included in the camera module 2 to simultaneously cooperate with the shooting parts of the multiple cameras 2C-2F, thereby synchronously controlling all the cameras 2C-2F to tilt.
[0064] In the technical solution disclosed in the present invention, the driving force for the adjustment module 3 can be provided in a variety of ways, such as providing the driving force through a stepper motor, or providing a driving member for the adjustment module 3 on the electronic device, so that the user can provide the driving force by applying an external force to the driving member, or other methods can be used, and the present invention does not limit this. When a stepper motor is used, in order to reduce the vertical space occupied by the electronic device and avoid increasing the thickness of the electronic device, the stepper motor can be placed horizontally so that the rotating axis of the stepper motor is perpendicular to the lifting direction of the camera module 2, and further the driving direction of the rotating axis can be converted to be parallel to the lifting direction through a worm structure or a bevel gear, and then matched with a screw, which can be connected with a screw such as a worm gear. Figure 11 The threaded holes 310 provided on the lifting portion 31 shown cooperate with each other to drive the lifting portion 31 to achieve reciprocating motion in the vertical direction.
[0065] In addition, it is easy to understand that the cooperation between the first group of protrusions 211 and the horizontal slide groove 331, and the cooperation between the second group of protrusions 221 and the vertical slide groove 321 can also be replaced by other forms based on the cooperation between the slider and the guide rail, roller cooperation, gear meshing, etc., and the present disclosure does not limit this.
[0066] Other embodiments of the present disclosure will readily occur to those skilled in the art after considering the specification and practicing the disclosure herein. This application is intended to cover any variations, uses, or adaptations of the present disclosure that follow the general principles of the present disclosure and include common knowledge or customary techniques in the art not disclosed herein. The description and examples are to be considered as exemplary only, with the true scope and spirit of the present disclosure being indicated by the following claims.
[0067] It should be understood that the present disclosure is not limited to the exact structures that have been described above and shown in the drawings, and that various modifications and changes can be made without departing from the scope thereof. The scope of the present disclosure is limited only by the appended claims.
Claims
1. An electronic device, characterized in that: include: Equipment body; a camera module disposed on the device body, the camera module being located in a receiving space within the device body in a first posture and having a first shooting range, the camera module including one or more cameras, and the size of the first shooting range remaining unchanged; an adjustment module disposed on the device body, the adjustment module being capable of moving the camera module in the first posture outward from the accommodating space, causing at least a portion of the camera module to move outside the device body, and thereby tilting the camera module to switch the camera module to a second posture, wherein the camera module has a second shooting range in the second posture, and the size of the second shooting range remains unchanged; Each camera in the camera module includes: a photographing portion and a fixing portion connected to the photographing portion; the photographing portion is provided with a first group of protrusions extending along a first axis, and the first axis divides the photographing portion into a first portion away from the fixing portion and a second portion close to the fixing portion; the fixing portion is provided with a second group of protrusions extending along a second axis, and the second axis divides the fixing portion into a third portion close to the photographing portion and a fourth portion away from the photographing portion; The adjustment module includes: a lifting portion capable of reciprocating in a vertical direction and cooperating with the first portion of the photographing portion; The lifting limit portion includes a vertical slide groove matched with the second group of protrusions; wherein, when the lifting portion is raised from the lowest point to the middle point, the second group of protrusions can rise from the bottom of the vertical slide groove to the top; The tilt limiting portion is fixed on the lifting portion and includes a horizontal slide groove that cooperates with the first group of protrusions; wherein, when the lifting portion rises from the lowest point to the middle point, the first group of protrusions rises with the lifting portion, and when the lifting portion rises from the middle point to the highest point, the first group of protrusions can rotate in the horizontal slide groove and move from the first end of the horizontal slide groove away from the fixed portion to the second end close to the fixed portion, so that the shooting portion is tilted around the first axis.
2. The electronic device according to claim 1, wherein The field of view angles of the multiple cameras overlap or substantially overlap in the first posture and correspond to the first shooting range.
3. The electronic device according to claim 1, wherein The field of view angles of multiple cameras are spliced into a combined field of view angle in the second posture, the combined field of view angle is larger than the field of view angle of each camera, and the combined field of view angle corresponds to the second shooting range.
4. The electronic device according to claim 1, wherein Multiple cameras are set up in parallel.
5. The electronic device according to claim 1, wherein The multiple cameras are arranged symmetrically around the center point.
6. The electronic device according to claim 5, characterized in that When the camera module switches from the first posture to the second posture, one end of each camera close to the center point moves away from the center point and / or the other end away from the center point moves toward the center point.
7. The electronic device according to claim 1, wherein: When the camera module switches from the first posture to the second posture, some or all of the multiple cameras are tilted.
8. The electronic device according to claim 1, wherein: The fixing portion includes a flexible cable extending outward from the shooting portion.
9. The electronic device according to claim 1, wherein: The lifting part is located at the bottom of the shooting part.
10. The electronic device according to claim 1, wherein The number of the lifting part is one, and the lifting part is located between the multiple cameras included in the camera module to cooperate with the shooting parts of the multiple cameras at the same time; or, There are multiple lifting parts, and each lifting part is matched with the shooting part of at least one camera.
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