Camera shooting assembly and electronic equipment
By adopting multiple mounting surface designs in the camera assembly, the camera direction of the lens is consistent with the mounting surface, solving the problem of difficult processing of mounting parts, and achieving simpler lens installation and longer service life.
Patent Information
- Application Number
- CN202422193758.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-06
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-09-06
AI Technical Summary
The machining of the mounting parts in the existing camera components is difficult, mainly because the size of the mounting groove is limited by the lens size, which leads to machining difficulties.
The mounting member has multiple mounting surfaces facing different directions, each lens is consistent with its corresponding mounting surface. The imaging direction of the lens depends on the orientation of the mounting surface, which eliminates the limitation on the size of the mounting groove and simplifies the difficulty of processing of the mounting surface.
By changing the design of the mounting surface, the difficulty of processing of the mounting parts is reduced, making the lens more convenient to install, and improving the reliability and service life of the lens.
Smart Images

Figure CN223168373U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the technical field of image acquisition devices, and particularly relates to a camera assembly and an electronic device. Background Art
[0002] Electronic devices, such as education all-in-one machines, conference tablets, smart blackboards, etc., usually are equipped with a camera assembly. The camera assembly is used to collect images and is an important bridge for realizing human-computer interaction between users and electronic devices.
[0003] Generally, the camera assembly includes a mounting member and at least two lenses. At least two mounting grooves are provided on the mounting member, and the mounting grooves correspond to the lenses one by one. Each lens is disposed in its corresponding mounting groove, and the orientations of at least two mounting grooves are different, so that the imaging directions of at least two lenses are different, thereby enabling the camera assembly to have a larger field of view. In this design, the size of the mounting groove is generally adapted to the size of the lens, and the size of the lens is usually small, so the size of the mounting groove is also small, which makes the processing of the mounting groove difficult, and further leads to the difficult processing of the mounting member. Summary of the Utility Model
[0004] The purpose of the embodiments of this application is to provide a camera assembly and an electronic device, which can solve the problem of difficult processing of the mounting member in the related art.
[0005] In a first aspect, the embodiments of this application provide a camera assembly, including: a cover body, a mounting member, and at least two lenses. The mounting member has at least two mounting surfaces, and the orientations of at least two mounting surfaces are different. The lenses correspond to the mounting surfaces one by one. Each lens is disposed on its corresponding mounting surface, and the imaging direction of each lens is consistent with the orientation of its corresponding mounting surface. The cover body is connected to the mounting member, and each lens is disposed between the cover body and the mounting member. A first light inlet is provided at a position of the cover body opposite to each lens.
[0006] In a second aspect, the embodiments of this application also provide an electronic device, which includes the camera assembly described above.
[0007] In the embodiments of this application, the mounting member has at least two mounting surfaces, and the orientations of at least two mounting surfaces are different. The lenses correspond to the mounting surfaces one by one. Each lens is disposed on its corresponding mounting surface, and the imaging direction of each lens is consistent with the orientation of its corresponding mounting surface. Thus, it can be seen that in the embodiments of this application, the imaging direction of the lens depends on the orientation of its corresponding mounting surface. Compared with the mounting groove in the background art, the size of the mounting surface in the embodiments of this application is not limited by the size of the lens. In this way, the processing of the mounting surface is more difficult, and compared with the mounting member in the background art, the processing of the mounting member in the embodiments of this application is more difficult. Brief Description of the Drawings
[0008] Figure 1 It is an exploded view of the camera module disclosed in the embodiment of the present application;
[0009] Figure 2 It is a cross-sectional view of the camera module disclosed in the embodiment of the present application;
[0010] Figure 3 It is one of the perspective views of the camera module disclosed in the embodiment of the present application;
[0011] Figure 4 It is another perspective view of the camera module disclosed in the embodiment of the present application;
[0012] Figure 5 It is yet another perspective view of the camera module disclosed in the embodiment of the present application;
[0013] Figure 6 It is a partial structural schematic diagram of the camera module disclosed in the embodiment of the present application;
[0014] Figure 7 It is a structural schematic diagram of the mounting member disclosed in the embodiment of the present application;
[0015] Figure 8 It is a structural schematic diagram of the cover body disclosed in the embodiment of the present application.
[0016] Description of Reference Numerals:
[0017] 100 - Cover body, 110 - First light inlet, 120 - Opening, 130 - Second light inlet;
[0018] 200 - Mounting member, 210 - Mounting surface, 210a - First mounting surface, 210b - Second mounting surface, 210c - Third mounting surface, 220 - Mounting plate, 230 - Heat dissipation holes;
[0019] 300 - Lens, 300a - First lens, 300b - Second lens, 300c - Third lens;
[0020] 400 - Positioning post;
[0021] 510 - First clamping portion, 520 - Second clamping portion, 530 - First limiting portion, 540 - Second limiting portion, 550 - First mounting portion, 560 - Second mounting portion, 570 - Operating portion, 580 - Connecting portion;
[0022] 610 - Limiting member, 620 - Connecting sleeve;
[0023] 700 - Mounting structure;
[0024] 800 - Camera module. Detailed implementation manners
[0025] Next, the technical solutions in the embodiments of the present application will be clearly described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art belong to the scope of protection of the present application.
[0026] The terms "first", "second", etc. in the specification and claims of the present application are used to distinguish similar objects, rather than to describe a specific order or sequence. It should be understood that such used data can be interchanged under appropriate circumstances so that the embodiments of the present application can be implemented in an order other than those illustrated or described herein, and the objects distinguished by "first", "second", etc. are generally of the same type, and the number of objects is not limited. For example, the first object can be one or multiple. In addition, "and / or" in the specification and claims means at least one of the connected objects, and the character " / " generally indicates an "or" relationship between the related objects before and after.
[0027] Next, in conjunction with the accompanying drawings, the camera module and the electronic device provided by the embodiments of the present application will be described in detail through specific embodiments and their application scenarios.
[0028] Please refer to Figures 1 to 8 As shown, a camera module is provided in an embodiment of the present application, including: a cover body 100, a mounting member 200, and at least two lenses 300.
[0029] Specifically, referring to Figure 6 and Figure 7 As shown, the mounting member 200 has at least two mounting surfaces 210, the orientations of the at least two mounting surfaces 210 are different, the lenses 300 correspond to the mounting surfaces 210 one by one, each lens 300 is disposed on the corresponding mounting surface 210, and the imaging direction of each lens 300 is consistent with the orientation of the corresponding mounting surface 210. The specific numbers of the mounting member 200 and the lenses 300 are determined according to actual needs, and the mounting member 200 is, for example, a metal part or a plastic part.
[0030] The cover body 100 is connected to the mounting member 200, and each lens 300 is disposed between the cover body 100 and the mounting member 200. The cover body 100 and the mounting member 200 can both protect the lens 300, so that the lens 300 is less affected by the outside world. A first light inlet 110 is provided at a position of the cover body 100 opposite to each lens 300. During the specific use process, external light passes through the first light inlet 110 and irradiates on the corresponding lens 300, so that the corresponding lens 300 can collect external images.
[0031] In an embodiment of the present application, the mounting member 200 has at least two mounting surfaces 210, the orientations of the at least two mounting surfaces 210 are different, the lenses 300 correspond to the mounting surfaces 210 one by one, each lens 300 is provided on the corresponding mounting surface 210, and the imaging direction of each lens 300 is consistent with the orientation of the corresponding mounting surface 210. Thus, it can be seen that the imaging direction of the lens 300 in the embodiment of the present application depends on the orientation of the corresponding mounting surface 210. Compared with the mounting groove in the background art, the size of the mounting surface 210 in the embodiment of the present application is not limited by the size of the lens 300. In this way, the processing difficulty of the mounting surface 210 is smaller, and thus, compared with the mounting member 200 in the background art, the processing difficulty of the mounting member 200 in the embodiment of the present application is smaller.
[0032] In another embodiment, referring to Figure 2 and Figure 7 as shown, the mounting member 200 is provided with at least two heat dissipation holes 230, the heat dissipation holes 230 correspond to the lenses 300 and the mounting surfaces 210 one by one, the heat dissipation holes 230 penetrate through the mounting member 200, and are oppositely arranged with the corresponding lenses 300 in the imaging direction of the lenses 300. With such a setting, each heat dissipation hole 230 can dissipate heat from the corresponding lens 300, thereby preventing the lens 300 from having too high a temperature, and further enabling the lens 300 to have a longer service life.
[0033] In other alternative embodiments, the mounting member 200 may not be provided with the heat dissipation holes 230.
[0034] In another embodiment, the lens 300 is, for example, adhered to the mounting surface 210. The adhesion method does not damage the structure of the lens 300 itself, thereby making the reliability of the lens 300 itself better.
[0035] As a specific implementation manner, for example, glue is applied at the end of the heat dissipation hole 230 facing away from the lens 300 as described above to connect the lens 300 to the corresponding mounting surface 210 by adhesion. With such a setting, there is no need to additionally open other holes for applying glue, thereby making the installation of the lens 300 more convenient.
[0036] In other alternative embodiments, the lens 300 may also be connected to the corresponding mounting surface 210 by screws.
[0037] In another embodiment, referring to Figure 7 as shown, one of the mounting member 200 and the cover body 100 is provided with a positioning post 400, and the other is provided with a positioning hole, and the positioning post 400 is inserted into the positioning hole. By inserting the positioning post 400 into the positioning hole, the relative positions of the mounting member 200 and the cover body 100 can be simply positioned, thereby making the connection between the mounting member 200 and the cover body 100 more convenient and enabling a higher connection accuracy between the two.
[0038] As a specific implementation manner, for example, the positioning posts 400 are provided on the mounting member 200, and the corresponding positioning holes are provided on the cover body 100 described above.
[0039] In other alternative embodiments, the positioning posts 400 and the positioning holes described above may not be provided.
[0040] In another embodiment, the mounting member 200 and the cover body 100 may also be connected by bolts to limit the relative movement between the two and to realize the connection between the mounting member 200 and the cover body 100.
[0041] In other alternative embodiments, referring to Figures 3 to 5 as shown, the cover body 100 may further be provided with a first clamping portion 510 and a second clamping portion 520 at intervals in the first direction, and a first clamping groove is formed between the first clamping portion 510 and the cover body 100, and a second clamping groove is formed between the second clamping portion 520 and the cover body 100. The opposite ends of the mounting member 200 in the first direction are respectively clamped and matched with the first clamping groove and the second clamping groove. The first direction is, for example, Figure 3 the direction indicated by the arrow line A in
[0042] In this embodiment, by respectively clamping and matching the opposite ends of the mounting member 200 in the first direction with the first clamping groove and the second clamping groove, the relative movement between the mounting member 200 and the cover body 100 can be restricted without damaging the structures of the mounting member 200 and the cover body 100 themselves, so that the self-reliabilities of the mounting member 200 and the cover body 100 are both relatively good.
[0043] In other alternative embodiments, the cover body 100 may further be provided with a first limiting portion 530 and a second limiting portion 540 at intervals in the second direction. The mounting member 200 is located between the first limiting portion 530 and the second limiting portion 540 and is in limiting cooperation with both the first limiting portion 530 and the second limiting portion 540 in the second direction. The second direction intersects the first direction. The second direction is, for example, Figure 3 the direction indicated by the arrow line B in
[0044] In this embodiment, by making the mounting member 200 located between the first limiting portion 530 and the second limiting portion 540 and making the mounting member 200 in limiting cooperation with both the first limiting portion 530 and the second limiting portion 540 in the second direction, the movement of the mounting member 200 in the second direction can be restricted without damaging the structure of the mounting member 200 itself, so that the self-reliability of the mounting member 200 is relatively good.
[0045] Furthermore, the number of the first limiting portion 530 and the second limiting portion 540 is, for example, at least two, and the first limiting portion 530 and the second limiting portion 540 correspond to each other one by one. Each of the first limiting portion 530 and each of the second limiting portion 540 are, for example, arranged at intervals in the first direction.Figures 3 to 5 The number of the first limiting portion 530 and the number of the second limiting portion 540 are both two.
[0046] In another embodiment, reference Figure 2 and Figure 8 As shown, the cover body 100 is provided with a first mounting portion 550, and a first clamping portion 510 is provided on a side of the first mounting portion 550 facing the second clamping portion 520. The first mounting portion 550 is configured as an elastic portion, and the first mounting portion 550 can be elastically deformed in a direction away from the second clamping portion 520 so that the mounting member 200 can enter and exit the first clamping slot.
[0047] During specific use, by causing the first mounting portion 550 to undergo elastic deformation in a direction away from the second clamping portion 520, at least a portion of the second clamping portion 520 can be staggered with the mounting member 200, so that the mounting member 200 can more conveniently enter and exit the first clamping slot.
[0048] In other optional embodiments, the first mounting portion 550 may also be a rigid portion. In this case, the first mounting portion 550 cannot be elastically deformed in a direction away from the second clamping portion 520 .
[0049] In a further embodiment, reference Figure 4 As shown, the camera assembly further includes a stopper 610, which is detachably connected to the housing 100. The stopper 610 is disposed on a side of the first mounting portion 550 facing away from the first engaging portion 510, and the stopper 610 cooperates with the first mounting portion 550 to limit position in the first direction. With this arrangement, when the stopper 610 is connected to the housing 100, the stopper 610 cooperates with the first mounting portion 550 to limit position in the first direction, thereby preventing the first mounting portion 550 from elastically deforming in a direction away from the second engaging portion 520. This prevents the mounting member 200 from being dislodged from the first engaging slot, thereby reducing the possibility of the lens 300 being dislodged from between the mounting member 200 and the housing 100 during transportation.
[0050] It should be noted that, under normal circumstances, the limiting member 610 is connected to the cover body 100 to make the connection between the mounting member 200 and the cover body 100 more reliable. The limiting member 610 is only removed from the cover body 100 when the mounting member 200 needs to be disassembled, thereby facilitating the mounting member 200 to be removed from the first slot.
[0051] In a further embodiment, the cover body 100 is provided with a connecting sleeve 620, and the limiting member 610 includes a threaded connection part and a gasket part. The gasket part is sleeved on the threaded connection part, and a part of the threaded connection part extends into the inner cavity of the connecting sleeve 620 and is threadedly connected to the connecting sleeve 620. The gasket part cooperates with the first mounting part 550 to limit the position in the first direction. The connecting sleeve 620 is provided on the side of the first mounting part 550 away from the first clamping part 510, and is spaced apart from the first mounting part 550 in the first direction, so that the first mounting part 550 can undergo elastic deformation in the direction away from the second clamping part 520, so that the mounting member 200 can enter and exit the first slot. Specifically, the first mounting portion 550 undergoes elastic deformation in a direction away from the second clamping portion 520 so that the first clamping portion 510 and the mounting member 200 are staggered with each other, thereby releasing the limiting effect of the first clamping portion 510 on the mounting member 200, and making it easier to remove the mounting member 200 from the cover body 100. Alternatively, the first mounting portion 550 undergoes elastic deformation in a direction away from the second clamping portion 520 so as to reduce the influence of the first clamping portion 510 on the installation of the mounting member 200, and making it easier to install the mounting member 200 on the cover body 100.
[0052] In this embodiment, since the connecting sleeve 620 is additionally provided on the cover body 100 , the connection between the cover body 100 and the limiting member 610 does not weaken the strength of the cover body 100 itself, thereby improving the overall strength of the cover body 100 .
[0053] Optionally, the limiting member 610 is, for example, a pion screw. In this case, the threaded connection portion mentioned above is, for example, the screw portion of the pion screw, and the gasket portion mentioned above is the gasket portion of the pion screw itself.
[0054] In other optional embodiments, a threaded hole may be directly opened on the cover body 100 , and a portion of the pion screw extends into the threaded hole and is threadedly connected to the inner wall of the threaded hole.
[0055] In another embodiment, reference Figure 2 As shown, the first surface of the first mounting portion 550 extends in a direction away from the cover body 100 and is formed with an operating portion 570 . The first surface is a surface of the first mounting portion 550 facing away from the cover body 100 .
[0056] During specific use, the user can toggle the operating portion 570 to elastically deform the first mounting portion 550 in a direction away from the second clamping portion 520 , thereby facilitating assembly and disassembly between the mounting member 200 and the cover body 100 .
[0057] In other optional embodiments, the operating unit 570 described above may not be included.
[0058] In another embodiment, one side of the first mounting portion 550 in the second direction is connected to the cover body 100. With such an arrangement, the connection between the first mounting portion 550 and the cover body 100 mainly focuses on the second direction. In this way, the flexibility of the first mounting portion 550 in other directions, such as the first direction, is relatively high, so that the first mounting portion 550 is more likely to elastically deform in a direction away from the second engaging portion 520, and further, the mounting member 200 can be more quickly disengaged from the first card slot.
[0059] As a specific implementation manner, referring to Figure 8 as shown, the cover body 100 is provided with a connecting portion 580, for example. One side of the first mounting portion 550 in the second direction is connected to the connecting portion 580, for example, and referring to Figure 2 as shown, in order to save materials, an opening 120 is provided at a position of the cover body 100 opposite to the first mounting portion 550, for example.
[0060] In other alternative embodiments, the side of the first mounting portion 550 facing the cover body 100 can also be connected to the cover body 100 to mount the mounting member 200 on the cover body 100. At this time, the cover body 100 does not have the opening 120 described above, for example, and the first mounting portion 550 is connected to the first part of the cover body 100, and the position of the first part is the position of the opening 120 described above, for example.
[0061] In another embodiment, referring to Figure 2 as shown, the cover body 100 is provided with a second mounting portion 560. A second engaging portion 520 is provided on one side of the second mounting portion 560 facing the first mounting portion 550. The mounting member 200 is arranged between the first mounting portion 550 and the second mounting portion 560 and is in limit fit with both the first mounting portion 550 and the second mounting portion 560 in the first direction. By making the mounting member 200 in limit fit with both the first mounting portion 550 and the second mounting portion 560 in the first direction, the movement of the mounting member 200 in the first direction is restricted, so that the stability of the mounting member 200 is better.
[0062] In other alternative embodiments, there may not be a limit fit relationship between the mounting member 200 and the first mounting portion 550 and the second mounting portion 560 in the first direction.
[0063] In another embodiment, there is a clearance between at least one of the first engaging portion 510, the second engaging portion 520, the first limiting portion 530, the second limiting portion 540, the first mounting portion 550, the second mounting portion 560, and the cover 100 and the mounting member 200. Due to the existence of the clearance, the mounting member 200 has a certain adjustment space during the installation process, so that the connection between the mounting member 200 and the cover 100 is smoother. In addition, when the mounting member 200 is subjected to an external force impact, the clearance provides a buffer space for the mounting member 200. In this way, the external force received by the mounting member 200 is buffered, so that the situation where the mounting member 200 undergoes large deformation due to excessive local stress can be reduced, and thus the quality of the image collected by the lens 300 is relatively high.
[0064] In other alternative embodiments, there may be no such clearance between the first engaging portion 510, the second engaging portion 520, the first limiting portion 530, the second limiting portion 540, the first mounting portion 550, the second mounting portion 560, and the cover 100 and the mounting member 200. At this time, for example, the first engaging portion 510, the second engaging portion 520, the first limiting portion 530, the second limiting portion 540, the first mounting portion 550, the second mounting portion 560, and the cover 100 are all in contact with the mounting member 200.
[0065] In another embodiment, referring to Figure 6 As shown, at least two mounting surfaces 210 include a first mounting surface 210a and a second mounting surface 210b. The first mounting surface 210a and the second mounting surface 210b face different directions and are symmetrically arranged. For the convenience of description, the lens 300 provided on the first mounting surface 210a is defined as the first lens 300a, and the lens 300 provided on the second mounting surface 210b is defined as the second lens 300b. With such a setting, the arrangement of the first mounting surface 210a and the second mounting surface 210b has a certain regularity, so that the imaging directions of the first lens 300a and the second lens 300b have regularity, and thus it is relatively convenient to splice the image collected by the first lens 300a and the image collected by the second lens 300b together, or it is relatively easy to splice the image collected by the first lens 300a and the image collected by the second lens 300b with the images collected by other lenses 300 together.
[0066] As a specific implementation manner, referring to Figure 6 As shown, at least two mounting surfaces 210 may further include a third mounting surface 210c, for example. The third mounting surface 210c is provided between the first mounting surface 210a and the second mounting surface 210b. For the convenience of description, the lens 300 provided on the third mounting surface 210c is defined as the third lens 300c. The imaging direction of the first lens 300a is, for example, Figure 6In the direction indicated by the arrow line C, the imaging direction of the second lens 300b is, for example, Figure 6 In the manner indicated by the arrow line D, the imaging direction of the third lens 300c is, for example, Figure 6 In the direction indicated by the arrow E, the imaging directions of the first lens 300a and the second lens 300b are, for example, symmetric with respect to the imaging direction of the third lens 300c, and the angles between the imaging directions of the first lens 300a and the second lens 300b and the imaging direction of the third lens 300c are, for example, all acute angles. In other words, the first mounting surface 210a and the second mounting surface 210b are, for example, symmetric with respect to the first plane, the optical axes of the first lens 300a, the second lens 300b, and the third lens 300c are, for example, in the second plane, and the first plane is, for example, perpendicular to the second plane.
[0067] Optionally, the third mounting surface 210c is, for example, provided with the positioning posts 400 described above, and correspondingly, the cover 100 is, for example, provided with the positioning holes described above.
[0068] In other alternative embodiments, the first mounting surface 210a and the second mounting surface 210b may also have an asymmetric relationship.
[0069] In another embodiment, referring to Figure 7 As shown, the mounting member 200 includes at least two mounting plates 220, the mounting plates 220 are connected in sequence, the thickness directions of the mounting plates 220 are different, the mounting plates 220 correspond to the mounting surfaces 210 one by one, and the mounting surface 210 includes one side perpendicular to the thickness direction of the corresponding mounting plate 220. With such a setting, one side perpendicular to the thickness direction of the mounting plate 220 can serve as at least part of the mounting surface 210, so that the step of machining the mounting surface 210 can be omitted or the area of the mounting surface 210 that needs to be machined can be reduced, thereby making the machining of the mounting member 200 more convenient.
[0070] In this embodiment, the orientation of the mounting surface 210 and the imaging direction of the lens 300 are, for example, both coincident with the thickness direction of the corresponding mounting plate 220.
[0071] Optionally, the at least two mounting plates 220, for example, include a first mounting plate, a third mounting plate, and a second mounting plate that are connected in sequence, and one side perpendicular to the thickness direction of the first mounting plate is, for example, the first mounting surface 210a described above, one side perpendicular to the thickness direction of the second mounting plate is, for example, the second mounting surface 210b described above, and one side perpendicular to the thickness direction of the third mounting plate is, for example, the third mounting surface 210c described above.
[0072] In other alternative embodiments, the mounting flat plate 220 can also be machined to obtain the aforementioned mounting surface 210.
[0073] In an alternative embodiment, the imaging assembly may further include a mounting structure 700. The mounting structure 700 is, for example, a flat plate structure. The imaging module 800 is, for example, connected to one side of the mounting structure 700. The imaging module 800 is disposed between the mounting structure 700 and the aforementioned housing 100. A second light inlet 130 is provided at a position of the housing 100 opposite to the imaging module 800. In the specific use process, external light passes through the second light inlet 130 and irradiates on the imaging module 800, so that the imaging module 800 can collect external images. The imaging module 800 and the aforementioned lens 300 are respectively used to collect different types of images. At the same time, setting the imaging module 800 and the lens 300 can better meet the user's image collection requirements.
[0074] An electronic device is also provided in an embodiment of the present application, which includes the aforementioned imaging assembly. As known from the above, compared with the mounting member 200 in the background art, the processing difficulty of the mounting member 200 of the aforementioned imaging assembly is smaller. The electronic device provided in the embodiment of the present application includes the aforementioned imaging assembly. Therefore, compared with the mounting member 200 in the background art, the processing difficulty of the mounting member 200 of the electronic device provided in the embodiment of the present application is also smaller, and thus the processing of the electronic device is more convenient.
[0075] The embodiments of the present application have been described above with reference to the drawings. However, the present application is not limited to the above specific embodiments. The above specific embodiments are merely illustrative and not restrictive. Under the inspiration of the present application, those of ordinary skill in the art can also make many forms without departing from the purpose of the present application and the scope protected by the claims, and all belong to the protection scope of the present application.
Claims
1. An imaging component, characterized in that, Including: A cover body (100), a mounting member (200), and at least two lenses (300). The mounting member (200) has at least two mounting surfaces (210), and the orientations of at least two of the mounting surfaces (210) are different. The lenses (300) correspond to the mounting surfaces (210) one by one. Each lens (300) is provided on the corresponding mounting surface (210), and the imaging direction of each lens (300) is consistent with the orientation of the corresponding mounting surface (210). The cover body (100) is connected to the mounting member (200), and each lens (300) is provided between the cover body (100) and the mounting member (200). A first light inlet (110) is provided at a position of the cover body (100) opposite to each lens (300).
2. The imaging component according to claim 1, wherein The mounting member (200) is provided with at least two heat dissipation holes (230), and the heat dissipation holes (230) correspond to the lenses (300) and the mounting surfaces (210) one by one. The heat dissipation holes (230) penetrate through the mounting member (200) and are oppositely arranged with the corresponding lenses (300) in the imaging direction of the lenses (300).
3. The imaging component according to claim 1, characterized in that, One of the mounting member (200) and the cover body (100) is provided with a positioning post (400), and the other is provided with a positioning hole. The positioning post (400) is inserted into the positioning hole.
4. The imaging component according to claim 1, wherein The cover body (100) is provided with a first clamping portion (510) and a second clamping portion (520) at intervals in a first direction, and a first clamping groove is formed between the first clamping portion (510) and the cover body (100). A second clamping groove is formed between the second clamping portion (520) and the cover body (100). Opposite ends of the mounting member (200) in the first direction are respectively clamped and matched with the first clamping groove and the second clamping groove. And / or, the cover body (100) is provided with a first limiting portion (530) and a second limiting portion (540) at intervals in a second direction. The mounting member (200) is located between the first limiting portion (530) and the second limiting portion (540) and is in limiting cooperation with the first limiting portion (530) and the second limiting portion (540) in the second direction. The first direction intersects with the second direction.
5. The imaging assembly according to claim 4, wherein The cover body (100) is provided with a first mounting portion (550). The first clamping portion (510) is provided on a surface of the first mounting portion (550) facing the second clamping portion (520). The first mounting portion (550) is configured as an elastic portion, and the first mounting portion (550) can elastically deform in a direction away from the second clamping portion (520) so that the mounting member (200) can enter and exit the first clamping groove.
6. The imaging component according to claim 5, characterized in that, The camera component further includes a limiting member (610), the limiting member (610) is detachably connected to the cover body (100), the limiting member (610) is arranged on a side of the first mounting portion (550) away from the first clamping portion (510), and the limiting member (610) is in limiting cooperation with the first mounting portion (550) in the first direction; And / or, a first surface of the first mounting portion (550) extends in a direction away from the cover body (100) and forms an operating portion (570), and the first surface is a surface of the first mounting portion (550) facing away from the cover body (100); And / or, one surface of the first mounting portion (550) in the second direction is connected to the cover body (100); And / or, the cover body (100) is provided with a second mounting portion (560), a second clamping portion (520) is arranged on a surface of the second mounting portion (560) facing the first mounting portion (550), the mounting member (200) is arranged between the first mounting portion (550) and the second mounting portion (560), and is in limiting cooperation with both the first mounting portion (550) and the second mounting portion (560) in the first direction.
7. The imaging component according to claim 6, wherein There is an activity gap between at least one of the first clamping portion (510), the second clamping portion (520), the first limiting portion (530), the second limiting portion (540), the first mounting portion (550), the second mounting portion (560) and the cover body (100) and the mounting member (200); And / or, the cover body (100) is provided with a connecting sleeve (620), the limiting member (610) includes a threaded connection portion and a gasket portion, the gasket portion is sleeved on the threaded connection portion, a part of the threaded connection portion extends into the inner cavity of the connecting sleeve (620) and is threadedly connected to the connecting sleeve (620), the gasket portion is in limiting cooperation with the first mounting portion (550) in the first direction, the connecting sleeve (620) is arranged on a side of the first mounting portion (550) away from the first clamping portion (510) and is spaced from the first mounting portion (550) in the first direction, so that the first mounting portion (550) can elastically deform in a direction away from the second clamping portion (520).
8. The imaging component according to claim 3, characterized in that, The at least two mounting surfaces (210) include a first mounting surface (210a), a second mounting surface (210b) and a third mounting surface (210c), the orientations of the first mounting surface (210a), the second mounting surface (210b) and the third mounting surface (210c) are different, the third mounting surface (210c) is arranged between the first mounting surface (210a) and the second mounting surface (210b), and the first mounting surface (210a) and the second mounting surface (210b) are symmetrically arranged; The third mounting surface (210c) is provided with the positioning post (400), and the cover body (100) is provided with the positioning hole.
9. The imaging component according to claim 1, wherein The mounting member (200) includes at least two mounting plates (220), each of the mounting plates (220) is connected in sequence, the thickness directions of the mounting plates (220) are different, the mounting plates (220) correspond to the mounting surfaces (210) one by one, and the mounting surface (210) includes a surface perpendicular to the thickness direction of the corresponding mounting plate (220); the at least two mounting plates (220) include a first mounting plate, a third mounting plate, and a second mounting plate that are connected in sequence; And / or, the imaging assembly further includes a mounting structure (700) and an imaging module (800), the mounting structure is a flat structure, the imaging module (800) is connected to one surface of the mounting structure (700), the imaging module (800) is disposed between the mounting structure (700) and the cover body (100), and a second light inlet (130) is provided at a position of the cover body (100) opposite to the imaging module (800); And / or, the lens (300) is bonded to the mounting surface (210).
10. An electronic device, characterized in that, Comprising the imaging assembly according to any one of claims 1-9.