Electronic equipment and shielding component thereof
By designing shading components between the camera lens and the case, the dust entry and aesthetics caused by the gap between the lens and the case is solved, and effective gap shading and lens protection are achieved.
Patent Information
- Application Number
- CN202422376853.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2025-08-15
- Estimated Expiration
- 2034-09-27
AI Technical Summary
There is a gap between the camera lens of an electronic device and the case, causing dust to enter the camera base, affecting image clarity and aesthetics.
A shading component is designed, including a base and a shading structure, which has an opening to accommodate the lens. The shading structure is arranged in the circumference of the opening to cover the gap between the lens and the case, and has elastic compression characteristics to provide cushioning force.
Effectively block the gap between the lens and the case, prevent dust from entering, improve aesthetics and user experience, and provide buffer protection lenses to avoid damage.
Smart Images

Figure CN223231243U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of electronic equipment, and in particular to an electronic device and a shielding component thereof. Background Art
[0002] The camera of an electronic device typically has its lens mounted on the device's housing. When a wide-angle camera is mounted on the housing, the viewing angle typically exceeds 100°, requiring a wide opening in the lens's light-transmitting area. This creates a significant gap between the camera lens and the housing, preventing the housing from being obstructed by light. This allows the camera base to be visible through the lens's light-transmitting area. Utility Model Content
[0003] In order to solve the above technical problems, the following technical solutions are provided in the embodiments of the present application:
[0004] In a first aspect, the present application provides a shielding component, comprising:
[0005] A base having an opening for accommodating the lens, the base being used to be sleeved on the lens fixing seat;
[0006] A shielding structure is provided on the base, and is arranged along the circumference of the opening to cover the gap between the opening and the lens;
[0007] The shielding structure has elastic compression characteristics and is used to provide a buffering force to the lens.
[0008] In some modified implementations of the first aspect of the present application, the shielding structure includes:
[0009] a first connecting portion connected to the base;
[0010] a second connecting portion having a first connecting section connected to the first connecting portion and a second connecting section for contacting the lens;
[0011] The second connecting section forms a compressible first gap between the first connecting section and the second connecting section in a folded manner.
[0012] In some modified embodiments of the first aspect of the present application, the first connecting section is folded to form a compressible second gap between the first connecting section and the inner wall of the base;
[0013] The first gap and the second gap are arranged along a first direction. The second connecting section is bent toward the extending direction of the lens. The bending direction of the second connecting section is opposite to the bending direction of the first connecting section.
[0014] In some modified implementations of the first aspect of the present application, the shielding structure is an annular structure that is compatible with the lens, and the shielding structure is integrally formed with the base.
[0015] In some modified implementations of the first aspect of the present application, the shielding structure is made of a flexible material with elasticity.
[0016] In some modified implementations of the first aspect of the present application, the base includes:
[0017] A supporting surface layer having openings on a first surface thereof;
[0018] Angle side walls are respectively connected to the second surface of the supporting surface layer, and each angle side wall extends along the second direction to form a groove body that can be sleeved on the lens fixing seat;
[0019] The first direction and the second direction have a preset angle.
[0020] In some modified implementations of the first aspect of the present application, the base includes:
[0021] The corner side wall has a first supporting surface and a second supporting surface formed by bending, so that the corner side wall is in an L-shaped structure and is used to cover the adjacent side walls of the lens fixing seat.
[0022] In some modified implementations of the first aspect of the present application, the base has a functional gap, which is located between two adjacent angled side walls and is used to make room for the lens support seat.
[0023] In some modified implementations of the first aspect of the present application, the functional notch has an opening formed on the first surface, and the opening is used to connect the lens support seat to penetrate into the corresponding functional notch.
[0024] A second aspect of the present application provides an electronic device, comprising:
[0025] The lens is integrated on the main board via a lens mount;
[0026] Shielding components; shielding components include:
[0027] A base having an opening for accommodating the lens and sleeved on the lens fixing seat;
[0028] A shielding structure is provided on the base and arranged along the circumference of the opening to cover the gap between the opening and the lens;
[0029] The shielding structure has elastic compression characteristics and is used to provide a buffering force to the lens. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] The above and other objects, features and advantages of the exemplary embodiments of the present application will become readily understood by reading the detailed description below with reference to the accompanying drawings. In the accompanying drawings, several embodiments of the present application are shown in an exemplary and non-limiting manner, and the same or corresponding reference numerals represent the same or corresponding parts, wherein:
[0031] Figure 1 A schematic diagram of the three-dimensional structure of a shielding component is shown schematically;
[0032] Figure 2 Schematically shows a schematic diagram of the internal structure of a shielding component;
[0033] Figure 3 A partial structural diagram of an electronic device is schematically shown;
[0034] Figure 4 The figure schematically shows the internal structure of an electronic device.
[0035] Description of Figure Numbers:
[0036] 1. Base; 11. Opening; 12. Supporting surface; 13. Angle side wall; 131. First supporting surface; 132. Second supporting surface; 14. Functional notch; 15. Opening; 2. Shielding structure; 21. First connecting part; 22. Second connecting part; 221. First connecting section; 222. Second connecting section; 23. First gap; 24. Second gap; 25. Lens mounting hole; 3. Lens fixing seat; 4. Lens; 5. Housing 51. Lens supporting seat; 52. Housing body; 6. Light-transmitting area. DETAILED DESCRIPTION
[0037] The exemplary embodiments disclosed herein will be described in more detail below with reference to the accompanying drawings. Although exemplary embodiments of the present disclosure are shown in the accompanying drawings, it should be understood that the present disclosure can be implemented in various forms and should not be limited by the embodiments described herein. Rather, these embodiments are provided to enable a more thorough understanding of the present disclosure and to fully convey the scope of the present disclosure to those skilled in the art.
[0038] It should be noted that, unless otherwise specified, the technical or scientific terms used in this application should have the common meanings understood by those skilled in the art to which this application belongs.
[0039] The camera of an electronic device usually has the camera lens installed on the device casing. When installing a wide-angle camera on the casing, since its viewing angle usually reaches more than 100°, the light-transmitting area of the camera lens needs to be opened very wide. Since the casing cannot be seen through the light-transmitting area, that is, the casing cannot be set in the light-transmitting area to avoid the casing blocking light, a large gap will be created between the camera lens and the casing. On the one hand, dust may enter the camera base, that is, the lens fixing seat, through the gap, and dust or dirt may easily accumulate. These impurities may affect the clarity of the image and are difficult to clean. On the other hand, the camera base can be seen through the light-transmitting area of the camera lens. The base of a zoom camera is usually made of metal. If it can be seen through the light-transmitting hole of the camera lens, it will affect the appearance and the user experience will be poor.
[0040] In order to solve the above technical problems, the present invention discloses a shielding component that can block the gap between the camera lens and the housing, prevent dust from entering the camera base, and avoid seeing the camera base through the light-transmitting area of the camera lens, thereby improving the overall aesthetics and user experience. It can also provide a buffer for the lens to avoid damage to the camera lens during the lens extension and retraction process, and will not affect the normal operation of the camera lens.
[0041] Example 1
[0042] like Figure 1 and Figure 2 As shown, a shielding component includes a base 1 and a shielding structure 2, the base 1 has an opening 11 for accommodating a lens 4, and the base 1 is used to be mounted on a lens fixing seat 3; the shielding structure 2 is arranged on the base 1, and the shielding structure 2 is arranged circumferentially along the opening 11, and is used to cover the gap between the opening 11 and the lens 4; wherein the shielding structure 2 has elastic compression characteristics, and is used to provide a buffering force to the lens 4.
[0043] In the shielding component, the base 1 is a fixing part, and its main function is to fix the entire shielding component in a predetermined position and provide a platform for installing the shielding structure 2. Specifically, the base 1 can be an integrally formed base 1, which is manufactured by injection molding, die casting, etc., has strong integrity, and is suitable for mass production. The base 1 can also be a split base 1, which is composed of multiple parts and then assembled together by screws, snaps or other means. It has high flexibility and can adapt to different sizes and shapes of lenses 4. The base 1 can also be an elastic base 1, which is made of a material with a certain elasticity, such as rubber or some elastic plastics. Such a base 1 can be slightly deformed during the installation process to adapt to lenses 4 of different sizes and provide a certain buffering effect for the lens 4. The shielding structure 2 can also be integrated with the base 1 to form an integral component, which can simplify the installation steps and ensure a close fit between the shielding structure 2 and the base 1. To increase the strength and rigidity of the base 1 and prevent deformation due to external forces, reinforcing ribs or frames may be provided inside or outside the base 1. For example, reinforcing ribs may be provided on the legs or corner sidewalls 13 of the base 1 to increase the overall rigidity of the base 1. The opening 11 is a hole or opening reserved in the base 1 for the purpose of allowing the camera lens 4 to pass through or be installed.
[0044] The shielding structure 2 is a component used to shield or hide the gap between the camera lens 4 and the housing 5. Its main function is to improve the appearance quality of the device and prevent external light or other substances from entering the gap between the lens 4 and the housing 5, so as to avoid affecting the image quality or device performance. Specifically, the shielding structure 2 can be made of different opaque elastic materials, such as opaque plastic, rubber and other elastic materials, so that the shielding structure 2 has elastic compression characteristics. More specifically, the shielding structure 2 can be fixed to the base 1 by snaps, adhesives, screws or other means, or it can be integrally formed with the base 1 and manufactured as an integral component to simplify the installation steps and ensure a close fit between the shielding structure 2 and the base 1. Specifically, the shielding structure 2 can be an annular shielding ring, that is, a simple annular structure used to surround the lens 4 and hide the gap between the lens 4 and the housing 5. The shielding structure 2 can also be a multi-layer shielding structure 2, including a multi-layer structure, each layer has a different function, such as the first layer is used for shielding, the second layer is used for dustproofing, etc.
[0045] Specifically, a lens mounting hole 25 is provided in the center of the shielding structure 2, and the main body of the shielding structure 2 is disposed between the lens mounting hole 25 and the opening 11, thereby shielding the gap between the camera lens 4 and the housing 5. The main body of the shielding structure 2 comprises the first connecting portion 21 and the second connecting portion 22. The shape of the lens mounting hole 25 depends on the outer shape of the lens 4. Specifically, the lens mounting hole 25 can be a standard circular hole, which is the most common type of lens mounting hole 25 and is suitable for mounting most standard lenses 4. It is typically used in applications requiring simple and quick installation. The lens mounting hole 25 can also be a special-shaped hole, i.e., an irregularly shaped lens mounting hole 25, suitable for mounting lenses 4 with specific design requirements or special shapes, such as elliptical, rectangular, or other non-standard shapes. The lens mounting hole 25 can also be a stepped hole, i.e., a lens mounting hole 25 with multiple diameters, which can be used in applications requiring multiple fixations or fitting components of different sizes, such as a small inner hole for securing the lens 4 and a large outer hole for mounting the shielding structure 2. The size of the lens mounting hole 25 needs to precisely match the installed component to ensure a proper fit. A lens mounting hole 25 that is too large will result in a reduced shielding effect, while a hole that is too small will make installation difficult and may damage the lens 4.
[0046] Elastic compression characteristics refer to the ability of an object to deform when subjected to a compressive force and to return to its original state after the external force is removed. The shielding structure 2 has elastic compression characteristics, which allows it to deform during the installation process and the telescopic process of the lens 4 to adapt to different lens 4 sizes, and to return to its original shape after installation, thereby providing a buffering force to the lens 4 and effectively covering the gap between the lens 4 and the opening 11. This design not only improves the shielding effect, but also increases the applicability and durability of the shielding component. Specifically, the shielding structure 2 can be composed of elastic materials such as rubber and silicone, so that the shielding structure 2 has this characteristic; the shielding structure 2 can also have elastic compression characteristics by setting a multi-layer stacked annular structure, thereby providing a buffering force to the lens 4.
[0047] The shielding component provided by the present disclosure is installed in the lens mounting base 3 by providing a base 1. An opening 11 is provided in the base 1. The shielding structure 2 is arranged circumferentially along the opening 11, thereby covering the gap between the opening 11 and the lens 4. This prevents dust from entering the camera base 1 and prevents the camera base 1 from being seen through the light-transmitting area 6 of the camera lens, thereby improving the overall aesthetics and user experience. The shielding structure 2 has elastic compression properties, which can provide a buffering force to the lens 4, preventing damage to the camera lens 4 during the extension and retraction process, and will not affect the normal operation of the camera lens 4.
[0048] like Figure 1 and Figure 2As shown, in some modified embodiments of the present application, the shielding structure 2 includes a first connecting portion 21 and a second connecting portion 22, the first connecting portion 21 is connected to the base 1, the second connecting portion 22 has a first connecting segment 221 connected to the first connecting portion 21 and a second connecting segment 222 for contacting the lens 4, and the second connecting segment 222 forms a compressible first gap 23 between the first connecting segment 221 and the second connecting segment 222 in a folded manner.
[0049] The first connecting part 21 is a part of the shielding structure 2, and its main function is to fix the shielding structure 2 to the base 1 to ensure that the shielding structure 2 can be stably installed in the predetermined position. Specifically, the first connecting part 21 can be fixed to the base 1 by screws, which is suitable for occasions that require a stronger fixing force. The first connecting part 21 can also be fixed to the base 1 using an adhesive, which is suitable for situations where frequent disassembly is not required. The first connecting part 21 can also be integrally formed with the base 1 to enhance the sealing. More specifically, the shape of the first connecting part 21 can be annular, semi-annular or other shapes suitable for matching with the base 1 and the opening 11, and the outer wall of the first connecting part 21 can match with the inner wall of the lens support seat 51 to enhance the shielding effect. The first connecting part 21 can be made of metal, plastic, rubber and other materials.
[0050] The second connecting portion 22 is also part of the shielding structure 2. Its main function is to be able to contact the surface of the lens 4 when the shielding structure 2 is installed on the lens 4, and to block the gap between the lens 4 and the housing 5 through its elastic compression characteristics. The first connecting section 221 is used to connect to the first connecting section 21 to ensure the continuity and stability of the shielding structure 2. Specifically, the first connecting section 221 can be a straight line segment or a curved segment in structure, as long as it can be connected to the first connecting section 21. The second connecting section 222 is the part that directly contacts the lens 4 and is used to block the gap between the lens 4 and the housing 5. The second connecting section 222 can be a curved arc segment, or an elastic segment that can be expanded and contracted according to the size of the lens 4. The side of the second connecting section 222 that contacts the lens 4 can be set to a smooth surface to reduce friction and ensure a good contact effect. The first gap 23 is located between the first connecting section 221 and the second connecting section 222. When the second connecting section 222 contacts the lens 4, the first gap 23 can be compressed, causing the second connecting section 222 to deform during the extension of the lens 4 and return to its original shape after the external force disappears, thereby providing a buffering effect. More specifically, the second connecting portion 22 can be a single-segment elastic connecting portion. The entire second connecting portion 22 is made of a single piece of elastic material, which can directly contact the lens 4 and achieve shielding and buffering through the elasticity of the material itself. It is suitable for occasions where the size of the lens 4 does not change much and the shielding effect is required to be high. The second connecting portion 22 can also be a multi-segment connecting portion, consisting of multiple connecting sections, each of which has a gap between them, which can provide more expansion space and provide better adaptability and buffering effect when the lens 4 is extended.
[0051] like Figure 1 and Figure 2 As shown, in some modified embodiments of the present application, the first connecting segment 221 is folded to form a compressible second gap 24 between the first connecting segment 221 and the inner wall of the base 1; the first gap 23 and the second gap 24 are arranged along the first direction, and the second connecting segment 222 is bent in the direction in which the lens 4 extends, and the bending direction of the second connecting segment 222 is opposite to the bending direction of the first connecting segment 221.
[0052] Specifically, the first direction refers to the radial direction of the opening 11, and the first gap 23 and the second gap 24 are arranged along the first direction to protect the lens 4 on all sides. When the device falls, it has a buffering effect on the camera lens 4, which can protect the camera lens 4 and its transmission mechanism.
[0053] Specifically, two compressible gaps are formed between the first connecting section 221 and the second connecting section 222, providing more room for expansion and contraction, and offering better adaptability and cushioning when the lens 4 is extended. The second connecting section 222 bends in the direction of lens 4 extension. The bending direction of the second connecting section 222 is opposite to that of the first connecting section 221, thereby forming an S-shaped structure along the radial cross-section of the opening 11. The second connecting section 222 bends in the direction of lens 4 extension. This allows the second connecting section 222 to extend and retract with the lens 4 even if it strikes the second connecting section 222 during extension and retraction, preventing significant reaction force, thereby preventing damage to the lens 4 and preventing normal operation of the lens 4. More specifically, the bending direction of the second connecting section 222 can also be the same as that of the first connecting section 221, i.e., both bend in the direction of lens 4 extension or retraction, thereby forming an M- or W-shaped structure along the radial cross-section of the opening 11, thereby achieving multi-stage expansion and contraction. Specifically, the shielding structure 2 can shrink along the first direction and can also deform along the extension and retraction direction of the lens 4. Therefore, during the extension and retraction process of the camera lens 4, even if it hits the shielding structure 2, it will not form a large reaction force, thereby not damaging the camera lens 4 or affecting the normal operation of the camera lens 4.
[0054] like Figure 1 and Figure 2 As shown, in some modified implementations of the present application, the shielding structure 2 is an annular structure that is compatible with the lens 4, and the shielding structure 2 is integrally formed with the base 1. The shielding structure 2 is annular and compatible with the lens 4, ensuring that it can completely cover the gap between the lens 4 and the housing 5. The annular design enables the shielding structure 2 to evenly distribute pressure and provide a good shielding effect. The integral formation of the shielding structure 2 and the base 1 means that the shielding structure 2 and the base 1 are produced and processed as a whole during the manufacturing process. Specifically, the shielding structure 2 and the base 1 can be integrally formed using processes such as injection molding and die casting. The integral formation of the shielding structure 2 and the base 1 ensures a close fit between the shielding structure 2 and the base 1, improves the shielding effect, and simplifies the installation and manufacturing process.
[0055] In some modified embodiments of the present application, the shielding structure 2 is made of a flexible material with elasticity, so that the shielding structure 2 can deform during the extension and retraction of the lens 4 and return to its original shape after the external force disappears, thereby avoiding damage to the lens 4. More specifically, the shielding structure 2 can be made of a flexible material with elasticity, such as silicone, rubber, or TPU (thermoplastic polyurethane). These materials not only have good elasticity but also are wear-resistant and weather-resistant.
[0056] like Figure 1 and Figure 2As shown, in some modified embodiments of the present application, the base 1 includes a supporting surface layer 12 and an angled side wall 13, and an opening 11 is provided on the first surface of the supporting surface layer 12; the angled side walls 13 are respectively connected to the second surface of the supporting surface layer 12, and each angled side wall 13 extends along the second direction to jointly form a groove body that can be mounted on the lens fixing seat 3; wherein the first direction and the second direction have a preset angle.
[0057] Specifically, the supporting surface 12 is the main planar portion of the base 1, and its primary function is to provide a support surface for securing the shielding structure 2 and lens 4. The supporting surface 12 has an opening 11 for accommodating the lens 4 and is connected to an angled sidewall 13 on its back (i.e., second surface) to form a complete base 1 structure. The angled sidewall 13 refers to the sidewall portion of the base 1 that extends from the second surface of the supporting surface 12. It can extend in a second direction, i.e., perpendicular or at a predetermined angle to the plane of the supporting surface 12, thereby forming a groove with the other sidewalls. This groove can be fitted onto the lens mount 3 to ensure a secure installation of the base 1. More specifically, the second direction refers to the direction in which the sidewalls of the lens mount 3 extend, thereby better aligning with the lens mount 3 and enhancing the stability of the base 1 installation. For example, when the sidewalls of the lens mount 3 are perpendicular to the plane of the opening 11, the first and second directions are perpendicular.
[0058] like Figure 1 and Figure 2 As shown, in some modified embodiments of the present application, the angled sidewall 13 has a first support surface 131 and a second support surface 132 that are bent, forming an L-shaped structure for covering the adjacent sidewalls of the lens mount 3. Specifically, the angled sidewall 13 is a sidewall structure having a first support surface 131 and a second support surface 132. By bending to form an L-shaped structure, the structure covers the adjacent sidewalls of the lens mount 3, ensuring that the base 1 is securely fixed to the lens mount 3. Specifically, the first support surface 131 is a plane extending from the second surface of the supporting surface 12, which can be perpendicular to the supporting surface 12 and covers one side surface of the lens mount 3. The second support surface 132 is another plane formed by bending from the first support surface 131. The second support surface 132 can form a right angle or an obtuse angle with the first support surface 131 depending on the shape of the lens mount 3, and can cover the other side surface of the lens mount 3.
[0059] like Figure 1 and Figure 2As shown, in some modified embodiments of the present application, the base 1 has a functional notch 14, which is located between two adjacent angled side walls 13 and is used to make room for the lens support seat 51. Specifically, the functional notch 14 refers to a notch or gap intentionally left in the base 1 to accommodate the installation of the lens support seat 51. This notch is located between two adjacent angled side walls 13, allowing the lens support seat 51 to be installed on the base 1 without obstruction. The shape of the functional notch 14 can be designed according to the shape of the lens support seat 51, and is generally rectangular, circular, or other shapes suitable for the lens support seat 51.
[0060] like Figure 1 and Figure 2 As shown, in some modified embodiments of the present application, the functional recess 14 has an opening 15 formed on the first surface. This opening 15 is used to connect the lens support seat 51 to the corresponding functional recess 14. Specifically, the opening 15 is located on the first surface of the supporting surface layer 12, and its shape and size match the functional recess 14, ensuring that the lens support seat 51 can be smoothly inserted. The provision of the opening 15 ensures that the lens support seat 51 can be smoothly installed without affecting the stability of the base 1.
[0061] Example 2
[0062] like Figure 3 and Figure 4 As shown, the second aspect of the present application provides an electronic device, including a lens 4 and the above-mentioned shielding component, the lens 4 is integrated on the main board through the lens fixing seat 3; the shielding component includes a base 1 and a shielding structure 2, the base 1 has an opening 11 for accommodating the lens 4, and is mounted on the lens fixing seat 3; the shielding structure 2 is arranged on the base 1, and the shielding structure 2 is arranged circumferentially along the opening 11, for covering the gap between the opening 11 and the lens 4; wherein the shielding structure 2 has elastic compression characteristics, for providing a buffering force to the lens 4.
[0063] Specifically, if Figure 4 As shown, the light-transmitting area 6 of the camera lens 4 is the portion of the camera lens 4 through which light can pass, and light outside the lens enters the lens through this area.
[0064] More specifically, if Figure 3 and Figure 4 As shown, the electronic device further includes a housing 5, a lens mounted in a housing space within the housing 5, and a shielding member mounted between the inner wall of the housing 5 and the lens 4. More specifically, the housing 5 includes a lens support 51 and a housing body 52, with the shielding member mounted between the lens support 51 and the lens fixing base 3. The lens support 51 is provided with a long rib that passes through the opening 15 and the functional notch 14 to connect with the lens fixing base 3, thereby directly fixing the lens support 51 and the housing to the lens fixing base 3.
[0065] It should be noted that, in the description of this specification, the terms "upper", "lower", etc. indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on this application; the terms "connect", "install", "fixed", etc. should be understood in a broad sense, for example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a direct connection or an indirect connection through an intermediate medium. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to the specific circumstances.
[0066] Throughout this specification, terms such as "one embodiment," "some embodiments," and "specific embodiments" mean that the specific features, structures, materials, or characteristics described in conjunction with that embodiment or example are included in at least one embodiment or example of the present application. In this specification, schematic representations of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
[0067] The above are only specific embodiments of the present application, but the scope of protection of this application is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this application should be included in the scope of protection of this application. Therefore, the scope of protection of this application should be based on the scope of protection of the claims.
Claims
1. A shielding component, characterized in that: include: A base having an opening for accommodating the lens, the base being adapted to be sleeved on the lens fixing seat; a shielding structure, which is provided on the base and arranged along the circumference of the opening, and is used to cover the gap between the opening and the lens; The shielding structure has elastic compression characteristics and is used to provide a buffering force to the lens.
2. The shielding component according to claim 1, characterized in that: The shielding structure includes: a first connecting portion connected to the base; a second connecting portion, comprising a first connecting section connected to the first connecting portion and a second connecting section for contacting the lens; The second connecting section is folded to form a compressible first gap between the first connecting section and the second connecting section.
3. The shielding component according to claim 2, characterized in that: The first connecting section is folded to form a compressible second gap between the first connecting section and the inner wall of the base; The first gap and the second gap are arranged along a first direction, the second connecting section is bent toward the extending direction of the lens, and the bending direction of the second connecting section is opposite to the bending direction of the first connecting section.
4. The shielding component according to claim 2, characterized in that: The shielding structure is an annular structure adapted to the lens, and the shielding structure and the base are integrally formed.
5. The shielding component according to any one of claims 1 to 4, characterized in that: The shielding structure is made of a flexible material with elasticity.
6. The shielding component according to claim 3, characterized in that: The base comprises: A supporting surface layer, wherein the opening is formed on a first surface of the supporting surface layer; Angle side walls, each connected to the second surface of the supporting surface layer, and each angle side wall extends along the second direction to form a groove body that can be sleeved on the lens fixing seat; Wherein, the first direction and the second direction have a preset angle.
7. The shielding component according to claim 6, characterized in that: The base comprises: The corner side wall has a first supporting surface and a second supporting surface formed by bending, so that the corner side wall has an L-shaped structure and is used to cover the adjacent side walls of the lens fixing seat.
8. The shielding component according to claim 6, characterized in that: The base has a functional notch, which is located between two adjacent corner side walls and is used to make room for a lens support seat.
9. The shielding component according to claim 8, characterized in that: The functional notch has an opening formed on the first surface, and the opening is used to connect with the lens support seat and penetrate into the corresponding functional notch.
10. An electronic device, characterized in that: include: The lens is integrated on the main board via a lens mount; Covering parts; The shielding component includes: A base having an opening for accommodating a lens and being sleeved on the lens fixing seat; a shielding structure, which is provided on the base and arranged along the circumference of the opening, and is used to cover the gap between the opening and the lens; The shielding structure has elastic compression characteristics and is used to provide a buffering force to the lens.