Camera decorating part, shell assembly and electronic equipment
By designing the camera decorative element as an antenna radiator, and utilizing multiple decorative units of the decorative element body as antenna radiators, the problem of limited antenna layout space and high design difficulty in electronic devices is solved, thereby improving antenna efficiency and communication performance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- HONOR DEVICE CO LTD
- Filing Date
- 2024-11-01
- Publication Date
- 2026-05-08
AI Technical Summary
The antenna layout space of electronic devices is limited and the antenna design is difficult, especially in foldable phones where the antenna design difficulty is even more significant.
The camera decorative component is designed as an antenna radiator. Multiple decorative units on the body of the decorative component serve as antenna radiators. Insulating and reinforcing components are placed in the gaps to enhance the structural strength. The component is connected to the motherboard through conductive pillars to achieve multi-band coverage.
It increases the design area and number of antennas, improves antenna efficiency, alleviates the problems of limited antenna layout space and high design difficulty, and enhances the communication performance of electronic devices.
Smart Images

Figure CN122002109A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of communication technology, and in particular to a camera decorative part, housing assembly, and electronic device. Background Technology
[0002] An antenna is a device that performs energy conversion and directional radiation or reception of electromagnetic waves in wireless communication. It is widely used in engineering systems such as radio communication, broadcasting, radar, navigation, and remote sensing. For example, antennas are used in electronic devices such as mobile phones, laptops, tablets, netbooks, and wearable devices, enabling signal transmission.
[0003] With the continuous development and iteration of mobile communication technology, the communication requirements of electronic devices are becoming increasingly stringent. However, while the structural design of electronic devices is becoming more compact and thinner, the frequency bands and types that the antennas of these devices need to cover are increasing, thus reducing the design space for antennas and limiting their efficiency. Summary of the Invention
[0004] This application provides a camera decorative part, housing assembly, and electronic device, which can solve or alleviate the problems of limited antenna layout space and high antenna design difficulty in related electronic devices.
[0005] To achieve the above objectives, the embodiments of this application adopt the following technical solutions:
[0006] In a first aspect, embodiments of this application provide a camera decorative element for an electronic device, comprising: a decorative element body, the decorative element body including a plurality of mutually independent decorative units, each pair of decorative units having a first gap, the first gap completely separating each pair of decorative units, at least one of the decorative units having a feed point, the decorative unit having the feed point being used to form an antenna radiator of the electronic device.
[0007] The camera decorative component provided in this application embodiment can serve as an antenna radiator for an electronic device, thereby fully utilizing the structure of the electronic device and alleviating the problems of limited antenna layout space and high antenna design difficulty in related technologies. Furthermore, the camera decorative component provided in this application embodiment includes multiple decorative units, each of which can individually serve as an antenna radiator for the electronic device, thus covering more operating frequency bands. By utilizing the current structure of the electronic device, the number of antennas is increased, improving the overall antenna efficiency of the electronic device and further alleviating the problems of limited antenna layout space and high antenna design difficulty in related technologies.
[0008] In one possible implementation, an insulating element is provided in at least a portion of the first gap.
[0009] Insulating elements are placed in the first gap to prevent independent decorative units from coming into contact, thereby reducing interference to the antenna radiator.
[0010] In one possible implementation, adjacent decorative units are connected by the insulating element to form a whole.
[0011] This increases the structural strength of the decorative component.
[0012] In one possible implementation, the decorative element body includes: a first surface and a second surface opposite to the first surface, wherein a reinforcing member is fixed on the second surface and the reinforcing member is connected to the insulating member.
[0013] This can further increase the structural strength of the decorative component.
[0014] In one possible implementation, the reinforcing member is integrally formed with the insulating member.
[0015] In one possible implementation, both the reinforcing member and the insulating member are made of plastic. The plastic reinforcing member provides insulation, preventing unnecessary interference between the decorative component and internal components of the electronic device. Additionally, the plastic reinforcing member acts as a buffer for the camera module, preventing damage to the camera module from collisions with the decorative component. Furthermore, the reinforcing member and insulating member can be integrally injection molded, which helps improve the connection strength between decorative units, thereby increasing the structural strength of the decorative component itself.
[0016] In one possible implementation, the decorative element body includes a panel and a skirt, the skirt being disposed around the periphery of the panel and connected to the panel, and the first gap extending to the edge of the skirt away from the panel.
[0017] The first gap extends to the edge of the skirt away from the panel, which facilitates the cutting of the decorative piece body and makes it easier to process the decorative piece body into multiple independent decorative units.
[0018] In one possible implementation, at least a portion of the radial cross-section of the skirt is stepped.
[0019] In this way, the insulating component set in the first gap can have a larger connection area with the decorative component body, thereby improving the overall structural strength of the decorative component body.
[0020] In one possible implementation, the reinforcing member is connected to the inner surface of the stepped skirt. The reinforcing member's coverage surface on the inner surface of the decorative body can extend to the stepped skirt to increase the connection area between the reinforcing member and the decorative body, thereby improving the overall structural strength of the decorative body.
[0021] In one possible implementation, the panel has light-transmitting holes.
[0022] In one possible implementation, the decorative unit forming the antenna radiator includes one or more feed points. In another possible implementation, the decorative unit forming the antenna radiator is provided with a conductive post, one end of which is connected to the feed point, and the other end of which is used to connect to the motherboard of the electronic device.
[0023] In one possible implementation, the outer surface of the insulating component is coated with paint. This conceals the insulating component, improving the neatness and aesthetics of the camera decorative component.
[0024] In one possible implementation, the first gap is straight and extends from one edge of the decorative element body to the other edge of the decorative element body.
[0025] In one possible implementation, the first gap is one or more gaps. When there are multiple first gaps, the multiple first gaps are spaced apart in the plane where the decorative body is located, or at least some of the multiple first gaps intersect in the plane where the decorative body is located.
[0026] In one possible implementation, the camera trim further includes a mounting member connected to the inner surface of the trim body, and a second gap is formed between the mounting member and the outer periphery of the trim body, the second gap being for engaging with the housing of the electronic device.
[0027] Secondly, embodiments of this application provide a housing assembly, including: a housing and a camera decorative element as described above, wherein the housing has a camera hole and the camera decorative element is disposed at the camera hole.
[0028] The housing assembly provided in this application embodiment can use the decorative body of the camera decorative component as an antenna radiator of the electronic device, thereby making full use of the structure of the electronic device and alleviating the problems of limited antenna layout space and high antenna design difficulty in related technologies. Furthermore, in the camera decorative component provided in this application embodiment, the decorative body includes multiple decorative units, each of which can individually serve as an antenna radiator of the electronic device, thereby covering more operating frequency bands. By utilizing the current structure of the electronic device, the number of antennas is increased, improving the overall antenna efficiency of the electronic device, and further alleviating the problems of limited antenna layout space and high antenna design difficulty in related technologies.
[0029] Thirdly, embodiments of this application provide an electronic device, including: a camera module, a power supply, a motherboard, and a housing assembly as described above. The camera module is electrically connected to the motherboard, and the camera module is configured with a camera hole corresponding to the housing assembly. The motherboard is connected to the power supply, and a communication module is provided on the motherboard. The feed point on the camera decorative piece in the housing assembly is electrically connected to the communication module.
[0030] The electronic device provided in this application embodiment can use the decorative body of the camera decorative component as an antenna radiator of the electronic device, thereby making full use of the structure of the electronic device and alleviating the problems of limited antenna layout space and high antenna design difficulty in related technologies. Furthermore, in the camera decorative component provided in this application embodiment, the decorative body includes multiple decorative units, each of which can individually serve as an antenna radiator of the electronic device, thereby covering more operating frequency bands. By utilizing the current structure of the electronic device, the number of antennas is increased, improving the overall antenna efficiency of the electronic device, and further alleviating the problems of limited antenna layout space and high antenna design difficulty in related technologies.
[0031] In one possible implementation, the feed point is electrically connected to the motherboard via a conductive elastic element. Attached Figure Description
[0032] Figure 1 This is a schematic diagram of the structure of an electronic device provided in an embodiment of this application;
[0033] Figure 2 A schematic diagram showing the disassembled structure of an electronic device provided in an embodiment of this application;
[0034] Figure 3 A schematic diagram of a folding screen for an electronic device provided in an embodiment of this application;
[0035] Figure 4 This is a schematic diagram of the cross-sectional structure of an electronic device when folded, according to an embodiment of this application.
[0036] Figure 5A schematic diagram showing the split structure of the first main body and the second main body of an electronic device provided in an embodiment of this application;
[0037] Figure 6 This is a schematic diagram of the structure of a housing assembly provided in one embodiment of this application;
[0038] Figure 7 This is a schematic diagram of the disassembled structure of a housing assembly provided in an embodiment of this application;
[0039] Figure 8 for Figure 6 A schematic diagram of the cross-sectional structure along the central cutting line AA;
[0040] Figure 9 A perspective view of the decorative element body provided in an embodiment of this application;
[0041] Figure 10 Another perspective view of the decorative component body provided in an embodiment of this application;
[0042] Figure 11 A simplified schematic diagram of the decorative component body provided in an embodiment of this application;
[0043] Figure 12 A schematic diagram showing the disassembled structure of the decorative component body provided in an embodiment of this application;
[0044] Figure 13 This is a schematic diagram of the structure of a decorative component body provided in an embodiment of this application;
[0045] Figure 14 for Figure 13 A schematic diagram of the cross-sectional structure along the cutting line BB.
[0046] Figure 15 A feed point distribution diagram on a decorative unit provided in an embodiment of this application.
[0047] Explanation of reference numerals in the attached figures:
[0048] 100 - Electronic devices;
[0049] 110 - Foldable screen; 110a - First fixing part; 110b - Second fixing part; 110c - Bending part;
[0050] 120 - First main body; 121 - First middle frame; 1211 - First middle plate; 1212 - First top frame; 1213 - First bottom frame; 1214 - First side frame; 122 - Flat screen;
[0051] 130 - Second main body; 131 - Second middle frame; 1311 - Second middle plate; 1312 - Second upper frame; 1313 - Second lower frame; 1314 - Second side frame;
[0052] 140 - Rotating shaft mechanism; 141 - Base; 142 - Shaft cover;
[0053] 150 - Power supply; 160 - Motherboard; 170 - Camera module;
[0054] 200 - Housing assembly;
[0055] 210 - Camera hole; 220 - Housing; 221 - Boss; 2211 - Accommodation space;
[0056] 300 - Camera decorative component; 310 - Decorative component body; 311 - Decorative unit; 311a - First decorative unit; 311b - Second decorative unit; 311c - Third decorative unit;
[0057] 312-Light-transmitting hole; 313-First gap; 314-Feed point; 315-Conductive post; 316-Insulating component; 317-Reinforcing component; 318-Panel; 319-Skirt edge; 3191-Annular protrusion;
[0058] 320 - Mounting part; 330 - Second gap. Detailed Implementation
[0059] The terminology used in the implementation section of this application is only for explaining specific embodiments of this application and is not intended to limit this application. The implementation of the embodiments of this application will be described in detail below with reference to the accompanying drawings.
[0060] The electronic devices in this application embodiment can be referred to as user equipment (UE) or terminals, etc. For example, electronic devices can be mobile phones, tablets, laptops, televisions, smart wearable products (such as smartwatches, smart bracelets, etc.), virtual reality (VR) devices, augmented reality (AR) devices, ultra-mobile personal computers (UMPCs), netbooks, personal digital assistants (PDAs), handheld devices with wireless communication capabilities, computing devices, in-vehicle equipment, wireless terminals in industrial control, wireless terminals in self-driving, wireless terminals in remote medical care, wireless terminals in smart grids, wireless terminals in transportation safety, wireless terminals in smart cities, wireless terminals in smart homes, and other mobile or fixed terminals. This application embodiment does not specifically limit the form of the terminal device.
[0061] Figure 1 This is a schematic diagram of the structure of an electronic device 100 provided in an embodiment of this application. Figure 1 The following explanation uses electronic device 100 as an example of a handheld device with wireless communication capabilities. For example, a foldable mobile phone could be a handheld device with wireless communication capabilities.
[0062] Figure 2 This is a schematic diagram showing the disassembled structure of an electronic device 100 provided in an embodiment of this application, with reference to... Figure 1 and Figure 2 As shown, the electronic device 100 provided in this embodiment includes: a foldable screen 110, a first main body 120, a second main body 130, and a hinge mechanism 140. The first main body 120 and the second main body 130 are respectively connected to both sides of the hinge mechanism 140 along its axial direction, and the hinge mechanism 140 enables the first main body 120 and the second main body 130 to be relatively unfolded and folded. The structures of the first main body 120 and the second main body 130 may be the same, not exactly the same, or completely different.
[0063] The first main body portion 120 and the second main body portion 130 may house the necessary components of the electronic device 100. For example, in some embodiments of this application, the electronic device 100 further includes multiple components (not shown in the figures), which can be installed within the first main body portion 120 and the second main body portion 130. These multiple components may include, for example, a motherboard, processor, internal memory, external memory interface, universal serial bus (USB) interface, charging management module, power management module, power supply, power cord, communication module, camera, audio module, speaker, receiver, microphone, headphone jack, sensor module, motor, indicator, and subscriber identification module (SIM) card interface, etc. The electronic device 100 may have more or fewer components than described above, may combine two or more components, or may have different component configurations. Each component can be implemented in hardware, software, or a combination of hardware and software, including one or more signal processing and / or application-specific integrated circuits.
[0064] The foldable screen 110 is attached to the surfaces of the first main body 120 and the second main body 130 that are close to each other when folded. For example, Figure 1 As shown, from the user's perspective, when the electronic device 100 is in a flattened state, the user faces the folding screen 110, which is attached to the upper surfaces of the first main body 120 and the second main body 130. During the relative unfolding and folding of the first main body 120 and the second main body 130, the folding screen 110 is also unfolded and folded simultaneously with the first main body 120 and the second main body 130.
[0065] Figure 3 This is a schematic diagram of a foldable screen 110 of an electronic device 100 provided in an embodiment of this application, with reference to... Figure 3 and combined Figure 2 As shown, the foldable screen 110 includes a curved portion 110c and a first fixing portion 110a and a second fixing portion 110b located on both sides of the curved portion 110c. The first fixing portion 110a is assembled to the first main body portion 120, the second fixing portion 110b is assembled to the second main body portion 130, and the curved portion 110c is disposed corresponding to the pivot mechanism 140. During the use of the electronic device 100, the first fixing portion 110a and the second fixing portion 110b generally do not deform, while the curved portion 110c deforms to allow the electronic device 100 to be relatively unfolded and folded, for example... Figure 4 As shown, when the electronic device 100 is fully folded, the cross section of the bent portion 110c along the arrangement direction of the first fixing portion 110a and the second fixing portion 110b can form a teardrop shape.
[0066] Continue to refer to Figure 4 As shown, the hinge mechanism 140 is positioned corresponding to the curved portion 110c of the folding screen 110. The hinge mechanism 140 may include a base 141 and a hinge cover 142. The base 141 serves as the "skeleton" of the hinge mechanism 140, and components required for the hinge mechanism 140, such as a swing arm, a synchronization mechanism, and a damping mechanism, may be mounted on the base 141. The hinge cover 142 is located on the side of the base 141 away from the curved portion 110c. The hinge cover 142 can shield the base 141, which is beneficial to the aesthetic appearance of the electronic device 100. The hinge cover 142 can also protect the base 141 from damage caused by impact.
[0067] Figure 5 A schematic diagram showing the split structure of the first main body portion 120 and the second main body portion 130 of an electronic device 100 provided in an embodiment of this application. Figure 5 The rotating shaft mechanism 140 and some other components are omitted from the reference. Figure 5 and combined Figure 2 As shown, the first main body 120 may include a first middle frame 121 and a flat screen 122. Both the flat screen 122 and the foldable screen 110 shown above can display images and videos. The flat screen 122 and the foldable screen 110 may be liquid crystal displays (LCDs), organic light-emitting diode (OLED) displays, active-matrix organic light-emitting diode (AMOLED) displays, flexible light-emitting diode (FLED) displays, quantum dot light-emitting diode (QLED) displays, etc.
[0068] The flat screen 122 is located on the side of the first frame 121 facing outwards when the first main body 120 is in the folded state. When the electronic device 100 is in the folded state, the flat screen 122 can be used for browsing web pages, accessing information, watching videos, playing games, and other operations. When a large-screen display is required, the electronic device 100 can be switched from the folded state to the unfolded state, and the foldable screen 110 will provide a large-screen display, offering users richer information and a better user experience.
[0069] The first middle frame 121 may include: a first middle plate 1211 and a first upper frame 1212, a first lower frame 1213, and a first side frame 1214 disposed around the first middle plate 1211. The first side frame 1214 connects the first upper frame 1212 and the first lower frame 1213. The first side frame 1214 is disposed on the side of the first middle frame 121 away from the pivot mechanism 140. The side of the first middle frame 121 closest to the pivot mechanism 140 is not convenient for designing a frame structure due to the presence of the pivot mechanism 140. The necessary components of the electronic device 100 can be installed on the first middle plate 1211.
[0070] The second main body 130 may include a second middle frame 131 and a housing assembly 200. The housing assembly 200 is disposed on the side of the second middle frame 131 facing outward when the second main body 130 is in a folded state. The housing assembly 200 serves as a rear cover for the electronic device 100, protecting the internal components of the electronic device 100 and also providing a decorative effect.
[0071] The second middle frame 131 may include a second middle plate 1311 and a second upper frame 1312, a second lower frame 1313, and a second side frame 1314 disposed around the second middle plate 1311. The second side frame 1314 connects the second upper frame 1312 and the second lower frame 1313. The second side frame 1314 is disposed on the side of the second middle frame 131 away from the pivot mechanism 140. The side of the second middle frame 131 closest to the pivot mechanism 140 is not convenient for designing a frame structure due to the presence of the pivot mechanism 140. The components necessary for the electronic device 100 can be installed on the second middle plate 1311.
[0072] Please continue to refer to this. Figure 5 As shown, the electronic device 100 provided in this application embodiment also includes a power supply 150 and a motherboard 160. The power supply 150 and motherboard 160 can be disposed in the first main body 120 or the second main body 130. Generally, since the second main body 130 has a larger internal space than the first main body 120, the power supply 150 and motherboard 160 are usually disposed in the second main body 130. For example, as Figure 5 As shown, the power supply 150 and the motherboard 160 are disposed on one side of the second middle plate 1311 facing the housing assembly 200.
[0073] The motherboard 160 integrates a processor, memory and storage chips, a communication module, and other electronic components. The motherboard 160 can be a printed circuit board (PCB), and the processor, memory and storage chips, communication module, and other electronic components can be soldered onto the motherboard 160 using a soldering process. The motherboard 160 can also be electrically connected to the flat screen 122 and the foldable screen 110. The power supply 150 can be connected to the motherboard 160 to provide power to the processor, communication module, flat screen 122, foldable screen 110, etc.
[0074] In this embodiment of the application, to achieve the shooting function, the electronic device 100 further includes: at least one camera module 170 and a flash (not shown in the figure), wherein the camera module 170 is electrically connected to the motherboard 160. The camera module 170 can be a front-facing camera, a rear-facing camera, etc., and the number of front-facing and rear-facing cameras can be one or more. For example, as... Figure 5 As shown, a front-facing camera and a rear-facing camera will be described separately. The front-facing camera is located in the first main body 120, and the rear-facing camera is located in the second main body 130.
[0075] The rear camera and flash can be disposed on the side of the second middle plate 1311 facing the housing assembly 200. The housing assembly 200 has a camera hole 210 for partial mounting of the flash and rear camera, and the camera module 170 is disposed corresponding to the camera hole 210. The front camera can be disposed on the side of the first middle plate 1211 facing the flat screen 122. In this embodiment, the placement positions of the front camera and rear camera include, but are not limited to, those described above.
[0076] It is understood that the structure of the embodiments of this application does not constitute a specific limitation on the electronic device 100. In other embodiments of this application, the electronic device 100 may include more or fewer components than shown in the figure, or combine some components, or split some components, or have different component configurations.
[0077] The camera module 170 may include: a lens, a filter, a bracket, a photosensitive element, a flexible board, and a connector.
[0078] When taking a picture, the shutter is opened, and light passes through the lens and through the filter to the photosensitive element. The light signal is converted into an electrical signal. The photosensitive element transmits the electrical signal to the image processing unit (ISP) through the flexible board and connector for processing. The image processing unit (ISP) converts the electrical signal into digital image information. The image processing unit (ISP) outputs the digital image to the digital processing unit (DSP) for further processing. The digital processing unit (DSP) converts the digital signal into image signals in standard RGB, YUV, and other formats.
[0079] With the continuous development and iteration of mobile communication technology, the communication requirements of electronic device 100 are becoming increasingly stringent. While the structural design of electronic device 100 is becoming more compact and thinner, the frequency bands and types that the antenna of electronic device 100 needs to cover are increasing, thus reducing the design space for antennas and limiting their efficiency.
[0080] In related technologies, since the motherboard 160 and other devices that need to communicate with the outside are generally located in the second main body 130, antennas are usually designed on the second upper frame 1312, the second lower frame 1313, and the second side frame 1314 of the second frame 131. Compared to candybar phones, which generally have four frames, foldable phones only have one upper frame, one lower frame, and one side frame, for a total of three frames. This makes the antenna design of foldable phones more difficult than that of candybar phones. If the antennas of the devices that need to communicate with the outside in the second main body 130 are to be designed on the first upper frame 1212, the first lower frame 1213, and the first side frame 1214 of the first main body 120, a through-shaft structure is required. This through-shaft structure needs to pass through the hinge mechanism 140 to connect the antennas located on both sides of the hinge mechanism 140 and the devices that need to communicate with the outside, which is quite difficult to design.
[0081] To address the aforementioned issues, this application provides a camera decorative element and housing assembly. By designing the camera decorative element as an antenna, the design area and number of antennas for electronic devices are increased, thus solving the problems of limited antenna layout space and high antenna design difficulty in related technologies.
[0082] The camera decorative part 300 and housing assembly 200 provided in this application embodiment will be described in detail below with reference to the accompanying drawings and specific embodiments.
[0083] Figure 6 This is a schematic diagram of the structure of the housing assembly 200 provided in one embodiment of this application. Figure 7 This is a schematic diagram of the disassembled structure of the housing assembly 200 provided in an embodiment of this application, with reference to... Figure 6 and Figure 7 As shown, the housing assembly 200 provided in this application embodiment includes: housing 220.
[0084] Specifically, in the embodiments provided in this application, the housing assembly 200 can serve as the back cover of the electronic device 100. The housing assembly 200 can protect the internal components of the electronic device 100 from damage, and can also decorate the appearance of the electronic device 100, improving its aesthetic appeal. The material of the housing 220 can be metal, glass, plastic, or ceramic, etc., and this application embodiment does not limit the material of the housing 220.
[0085] A camera hole 210 is provided on the housing 220, allowing external light to enter the electronic device 100 through the camera hole 210, thereby enabling the camera module 170 to capture image information. For example, the camera module 170 can be positioned directly opposite the camera hole 210.
[0086] This application embodiment does not limit the shape of the camera hole 210. For example, the shape of the camera hole 210 can be a regular shape such as rectangular, circular, or elliptical, or it can be an irregular shape. For example, as shown... Figure 7 As shown in the illustration, the camera hole 210 is circular in shape as an example in this embodiment.
[0087] Please continue to refer to this. Figure 6 and Figure 7 As shown, in order to improve the appearance and neatness of the electronic device 100, the housing assembly 200 provided in this application embodiment further includes: a camera decorative piece 300 disposed at the camera hole 210.
[0088] Specifically, the camera decorative component 300 may include a mounting component 320 and a decorative component body 310. Figure 8 for Figure 6 Please refer to the schematic diagram of the cross-sectional structure along the central cutting line AA. Figure 8 and combined Figure 7 As shown, in some embodiments of this application, the housing 220 has a boss 221 protruding outwards from the electronic device 100. A camera hole 210 is provided on the boss 221, and the boss 221 has an accommodating space 2211 inside, where the mounting component 320 can be disposed. It is understood that the boss 221 allows for more internal space in the electronic device 100. The accommodating space 2211 within the boss 221 can accommodate components such as the mounting component 320. On the one hand, this avoids overcrowding of the internal structure of the electronic device 100 and interference between the camera decorative component 300 and internal devices of the electronic device 100. On the other hand, since the boss 221 is a partial protrusion on the housing 220, it helps to reduce the overall thickness of the electronic device 100.
[0089] The mounting component 320 is used to fix the decorative component body 310 to the housing 220. Please refer to the following: Figure 7 and Figure 8 As shown, for example, the mounting member 320 can be connected to the inner surface of the decorative member body 310. A second gap 330 is formed between the mounting member 320 and the outer periphery of the decorative member body 310. The second gap 330 is engaged with the housing 220 to ensure the stability of the camera decorative member 300 on the housing 220. It should be noted that in this application, the side of all components facing the outside of the electronic device 100 is defined as the outer surface, and the side facing away from the outside of the electronic device 100 is defined as the inner surface.
[0090] For example, refer to Figure 7 As shown, the decorative component body 310 can be first assembled onto the outer surface of the housing 220, and then the mounting component 320 can be assembled onto the inner surface of the housing 220, connecting the mounting component 320 to the inner surface of the decorative component body 310. At this time, a second gap 330 is formed between the mounting component 320 and the outer periphery of the decorative component body 310, and the second gap 330 is engaged with the housing 220, thereby completing the installation and fixation of the camera decorative component 300 on the housing 220. The connection method between the mounting component 320 and the decorative component body 310 can be a series of conventional connection methods such as snap-fitting, bonding, or welding.
[0091] The mounting component 320 may be made of materials including but not limited to metal and plastic. When the mounting component 320 is made of a material with deformation properties such as plastic, the mounting component 320 may be integrally formed with the decorative component body 310. When the camera decorative component 300 is installed on the housing 220, the housing 220 may be engaged into the second gap 330 by means of the deformation properties of the mounting component 320, thereby completing the installation and fixation of the camera decorative component 300 on the housing 220.
[0092] For example, please continue to refer to Figure 7 and Figure 8 As shown, in some embodiments of this application, the mounting member 320 may be a ring-shaped metal member. The metal mounting member 320 can improve the mounting strength of the camera decorative member 300 on the housing 220. The ring-shaped mounting member 320 can help reduce the overall weight of the electronic device 100 and promote the development of the electronic device 100 to be thinner and lighter.
[0093] Understandably, to enhance the stability of the camera decoration on the housing 220, adhesives, such as sealant, can be applied between the mounting component 320 and the housing 220, and between the decoration body 310 and the housing 220 (i.e., between the inner surfaces of the mounting component 320 and the housing 220, and between the outer surfaces of the decoration body 310 and the housing 220). This strengthens both the stability of the camera decoration 300 on the housing 220 and the sealing and waterproofing of the camera hole 210.
[0094] It is understood that in some other embodiments of this application, the camera decorative part 300 may not include the mounting part 320, and the decorative part body 310 may be fixed to the outer surface of the housing 220 by a series of conventional connection methods such as snap-fit, welding, and bonding.
[0095] Figure 9 This is a perspective view of the decorative body 310 provided in an embodiment of this application. Figure 9 The decorative element body 310 shown is viewed from the outer surface of the decorative element body 310, with reference to... Figure 9 As shown, the decorative body 310 includes multiple independent decorative units 311. Here, "multiple independent decorative units 311" means that there are two or more decorative units 311, and each pair of decorative units 311 is spaced apart from the others. For example, as... Figure 9 In the design, the decorative component body 310 includes three decorative units 311: a first decorative unit 311a, a second decorative unit 311b, and a third decorative unit 311c. Each of the three decorative units 311a, 311b, and 311c has a light-transmitting hole 312. A lens from a camera module 170 can be mounted at the light-transmitting hole 312 to allow the camera module 170 to collect external light from the electronic device 100 and form an image. Additionally, a flash or similar device can be installed at the light-transmitting hole 312. It should be noted that, generally, there are multiple light-transmitting holes 312. These holes can be concentrated on one decorative unit 311, distributed across some decorative units 311, or distributed across all decorative units 311. Figure 9 The example below illustrates this by showing multiple light-transmitting holes 312 distributed across all decorative units 311.
[0096] Figure 10 This is another perspective view of the decorative body 310 provided in an embodiment of this application. Figure 10 The decorative element body 310 shown is viewed from the inner surface of the decorative element body 310. Please refer to [the image / reference]. Figure 10 and combined Figure 9As shown in the embodiment of this application, there is a first gap 313 between each two decorative units 311. The first gap 313 completely separates each two decorative units 311. It can be understood that the light-transmitting hole 312 between the two decorative units 311 can also be regarded as the first gap 313.
[0097] The width of the first gap 313 can be set according to specific working conditions. For example, the width of some of the first gaps 313 can be set to 0.5mm-2mm, such as 0.5mm, 0.8mm, 1mm, 1.5mm, 2mm, etc. For example, in some embodiments of this application, the width of some of the first gaps 313 is set to 1mm.
[0098] At least one decorative unit 311 is provided with a feed point 314, for example, such as Figure 10 As shown, both the first decorative unit 311a and the second decorative unit 311b are provided with feed points 314. Feed points 314 are used for electrical connection to the communication module on the motherboard 160. Power is supplied to the decorative unit 311 through the feed points 314, allowing the decorative unit 311 with the feed points 314 to form an antenna radiator of the electronic device 100. Exemplarily, in some embodiments of this application, conductive posts 315 can be provided on the decorative unit 311. One end of the conductive post 315 is connected to the feed point 314, and the other end of the conductive post 315 is connected to the communication module on the motherboard 160. By supplying power to the conductive post 315, the decorative unit 311 with the feed points 314 can form an antenna radiator of the electronic device 100. Generally, the motherboard 160 is a conductor; simply connecting the conductive post 315 to the motherboard 160 is sufficient to achieve electrical connection between the decorative unit 311 and the communication module. Of course, in other embodiments of this application, the feed point 314 on the decorative unit 311 can also be connected to the motherboard 160 in other ways, such as by wires.
[0099] In some embodiments of this application, the feed point 314 on the decorative unit 311 can be electrically connected to the main board 160 via a conductive elastic element. The conductive elastic element is disposed between the feed point 314 of the decorative unit 311 and the main board 160. For example, the conductive elastic element can connect the feed point 314 on the decorative unit 311 and the main board 160, or the conductive elastic element can connect the end of the conductive post 315 away from the feed point 314 to the main board 160. The conductive elastic element has conductive properties and can undergo elastic deformation compression under force. Therefore, the conductive elastic element can tightly abut against the feed point 314 or the conductive post 315 on the decorative unit 311 and the main board 160, ensuring the reliability of the electrical connection between the feed point 314 and the main board 160.
[0100] The material of the decorative body 310 may include, but is not limited to, copper or aluminum.
[0101] When multiple decorative units 311 are formed as antenna radiators of the electronic device 100, each decorative unit 311 can cover a certain resonant frequency operating frequency band. For example, in the embodiments provided in this application, a radio frequency signal can be fed into the first decorative unit 311a, causing the first decorative unit 311a to act as an antenna and generate an operating frequency band covering the first resonant frequency; another radio frequency signal can be fed into the second decorative unit 311b, causing the second decorative unit 311b to act as an antenna and generate an operating frequency band covering the second resonant frequency. This allows full utilization of the structure of the electronic device 100, increases the number of antennas, and improves the overall antenna efficiency of the electronic device 100.
[0102] The first gap 313 ensures that the two decorative units 311, which each serve as an antenna radiator, do not contact each other, that is, there is a gap between the two decorative units 311 so that the two antenna radiators meet the isolation requirements.
[0103] It's worth mentioning that isolation is used to quantitatively characterize the strength of electromagnetic coupling between different antennas. It is defined as the ratio of the transmit power of one antenna to the receive power of another, measured in dB. Low isolation between antennas indicates that electromagnetic interference is easily generated between the two antennas, affecting transmission efficiency. Conversely, high isolation indicates that electromagnetic interference is less likely to occur between the two antennas.
[0104] It is understood that the camera decorative component 300 provided in this application embodiment can use the decorative component body 310 as an antenna radiator of the electronic device 100, thereby making full use of the structure of the electronic device 100 and alleviating the problems of limited antenna layout space and high antenna design difficulty in related technologies. Furthermore, in the camera decorative component 300 provided in this application embodiment, the decorative component body 310 includes multiple decorative units 311, each of which can individually serve as an antenna radiator of the electronic device 100, thereby covering more operating frequency bands. By utilizing the current structure of the electronic device 100, the number of antennas is increased, improving the overall antenna efficiency of the electronic device 100, and further alleviating the problems of limited antenna layout space and high antenna design difficulty in related technologies.
[0105] It should be mentioned that in the camera decorative part 300 provided in this application, multiple decorative units 311 can be cut from a single decorative part body 310 in the related technology. Of course, the decorative part body 310 can also be assembled from multiple decorative units 311 that were originally independent of each other.
[0106] Figure 11 A simplified schematic diagram of the decorative body 310 provided in the embodiments of this application, with reference to... Figure 11 and combined Figure 10 As shown, Figure 11Twelve exemplary forms of the first slit 313 presented on the decorative part body 310 are listed below. For example Figure 11 As shown in (a) in, the first slit 313 can be a horizontal slit on the decorative part body 310, dividing the decorative part body 310 into two decorative units 311. For example Figure 11 As shown in (b) in, the first slit 313 can be a vertical slit on the decorative part body 310, dividing the decorative part body 310 into two decorative units 311. For example Figure 11 As shown in (c) in, the first slit 313 is a diagonal slit on the decorative part body 310, dividing the decorative part body 310 into two decorative units 311. For example Figure 11 As shown in (d) in, the first slit 313 is a "cross" - shaped slit on the decorative part body 310, dividing the decorative part body 310 into four decorative units 311. For example Figure 11 [[ID=]10]As shown in (e) in, the first slit 313 is an "X" - shaped slit on the decorative part body 310, dividing the decorative part body 310 into four decorative units 311. For example Figure 11 As shown in (f) in, the first slit 313 is an inverted "L" - shaped slit on the decorative part body 310, dividing the decorative part body 310 into two decorative units 311. For example Figure 11 As shown in (g) in, the first slit 313 is a "Y" - shaped slit on the decorative part body 310, dividing the decorative part body 310 into three decorative units 311. For example Figure 11 As shown in (h) in, the first slit 313 is an inverted "Y" - shaped slit on the decorative part body 310, dividing the decorative part body 310 into three decorative units 311. For example Figure 11 As shown in (i) in, the first slit 313 is a "V" - shaped slit on the decorative part body 310, dividing the decorative part body 310 into two decorative units 311. Figure 11 As shown in (a) to (i) in, the first slit 313 is opened from one edge of the decorative part body 310 to the other edge. It can be understood that in this way, it is convenient to cut the decorative part body 310 and facilitate the processing of the decorative part body 310 to form multiple decorative units 311.
[0107] Of course, in some embodiments of the present application, the first slit 313 may not be opened from one edge of the decorative part body 310 to the other edge. Exemplarily, for example Figure 11 As shown in (j) in, the first slit 313 is a "square" - shaped slit on the decorative part body 310, dividing the decorative part body 310 into two decorative units 311.
[0108] And, in some other embodiments of the present application, the first slit 313 may not be a regular slit as shown in (a) to (i) in. Exemplarily, for example Figure 11 As shown in (a) to (i) in. Figure 11As shown in (k), the first gap 313 can be a slit in any direction on the decorative body 310, for example, Figure 11 As shown, the first gap 313 consists of two slits in any direction on the decorative body 310, dividing the decorative body 310 into three decorative units 311.
[0109] Furthermore, the first gap 313 may not be a straight line, but may also be curved, for example, as shown in the figure. Figure 11 As shown in Figure 1, the first gap 313 is a curved slit, dividing the decorative body 310 into two decorative units 311. Of course, in another embodiment of this application, the first gap 313 can also be wavy, zigzag, etc.
[0110] It is understandable that the first gap 313 may be presented on the decorative body 310 in the form of, but is not limited to, the following: Figure 11 As shown in the example, it is sufficient that the first gap 313 divides the decorative body 310 into multiple independent decorative units 311.
[0111] In some embodiments of this application, the first gap 313 is straight and extends from one edge of the decorative body 310 to the other edge of the decorative body 310 (e.g., Figure 11 As shown in (a) to (e) and (k), in this case, it is convenient to cut the whole decorative body 310 to form multiple independent decorative units 311, which is beneficial to the processing and forming of the camera decorative part 300.
[0112] In summary, in the camera decorative component 300 provided in this application embodiment, the first gap 313 can be one or multiple, and the first gap 313 can be in a regular shape such as a straight line, a curve, or a broken line, or it can be in an irregular shape. When there are multiple first gaps 313, the multiple first gaps 313 can be spaced apart within the plane where the decorative component body 310 is located (e.g., Figure 11 (as shown in (k)), or, two or more of the multiple first slits 313 can be arranged to intersect in the plane where the decorative body 310 is located (e.g., Figure 11 (as shown in (d) to (j)).
[0113] Figure 12 This is a schematic diagram of the disassembled structure provided in an embodiment of this application, with reference to... Figure 12 and combined Figure 9As shown, in some embodiments of this application, at least a portion of the first gap 313 is provided with an insulating member 316, and the material of the insulating member 316 may be plastic, foam, etc. Exemplarily, in this embodiment of the application, the material of the insulating member 316 is described using plastic as an example. It is understood that providing an insulating member 316 in the first gap 313 can prevent independent decorative units 311 from contacting each other, thereby reducing interference to the antenna radiator.
[0114] To increase the structural strength of the decorative element body 310, in some embodiments of this application, the insulating element 316 can also connect adjacent decorative units 311 to form a whole. For example, glue can be injected into the first gap 313 through an injection molding process so that adjacent decorative units 311 can be connected to form a whole.
[0115] To further increase the structural strength of the decorative component body 310, please refer to... Figure 12 and combined Figure 10 As shown, in some embodiments of this application, a reinforcing member 317 can be fixed on the second surface of the decorative member body 310. Here, the outer surface of the decorative member body 310 is defined as the first surface of the decorative member body 310, and the inner surface of the decorative member body 310 is defined as the second surface. That is, the second surface is opposite to the first surface, which is the outer surface of the decorative member body 310. The reinforcing member 317 is disposed on the second surface, which can help improve the neatness and aesthetics of the appearance of the electronic device 100. The reinforcing member 317 is connected to the insulating member 316. It can be understood that after adjacent decorative units 311 are connected to form a whole through the insulating member 316, they are then connected to the insulating member 316 through the reinforcing member 317 and fixed to the decorative member body 310. This can strengthen the connection strength between adjacent decorative units 311, thereby further increasing the structural strength of the decorative member body 310.
[0116] The reinforcing member 317 can be made of the same material as or different from the insulating member 316. For example, the reinforcing member 317 can be made of the same material as the insulating member 316, and both the reinforcing member 317 and the insulating member 316 are made of plastic. The reinforcing member 317, being made of plastic, can cover most of the inner surface area of the decorative member body 310, for example... Figure 10 and Figure 12As shown, the reinforcing member 317 covers most of the inner surface area of the decorative member body 310. Generally, only areas requiring exposure, such as the feed point 314, need to be exposed. This helps improve the connection strength between the decorative units 311, thereby increasing the structural strength of the decorative member body 310. Furthermore, the plastic reinforcing member 317 also serves as insulation, preventing unnecessary interference between the decorative member body 310 and the internal components of the electronic device 100. Additionally, the plastic reinforcing member 317 also acts as a buffer for the camera module 170, preventing damage to the camera module 170 caused by collisions with the decorative member body 310.
[0117] In some embodiments of this application, the insulating member 316 and the reinforcing member 317 can also be integrally formed, for example by injection molding.
[0118] Regarding the overall formation of the decorative body 310, the insulating part 316, and the reinforcing part 317, one method involves placing multiple originally independent decorative units 311, or multiple decorative units 311 cut from a single decorative body 310, into a mold, and then forming the insulating part 316 and the reinforcing part 317 through injection molding, thereby forming the decorative body 310, the insulating part 316, and the reinforcing part 317 into a single unit. Another method involves pre-forming the insulating part 316 and the reinforcing part 317 as an integral part, and then electroplating a metal layer on the reinforcing part 317 to form multiple independent decorative units 311. For example, laser direct forming (LDS) technology can be used to form multiple independent decorative units 311 on the reinforcing part 317.
[0119] Figure 13 This is a structural schematic diagram of the decorative body 310 provided in an embodiment of this application, with reference to... Figure 13 As shown, in some embodiments of this application, the decorative body 310 includes a panel 318 and a skirt 319. The skirt 319 is disposed around the periphery of the panel 318 and connected to the panel 318. This enriches the appearance design of the decorative body 310 and improves the neatness and aesthetics of the electronic device 100. A light-transmitting hole 312 is provided on the panel 318. The first gap 313 can extend to the edge of the skirt 319 away from the panel 318. It is understood that the extension of the first gap 313 to the edge of the skirt 319 away from the panel 318 facilitates the cutting of the decorative body 310 and makes it easier to process the decorative body 310 into multiple independent decorative units 311.
[0120] Figure 14 for Figure 13 Please refer to the schematic diagram of the cross-sectional structure along the central cutting line BB. Figure 14 and combined Figure 13 As shown, the skirt 319 may have an annular protrusion 3191, and the panel 318 is disposed in the annular protrusion 3191. The annular protrusion 3191 can reduce the scratches of external devices on the panel 318.
[0121] Furthermore, at least a portion of the longitudinal section of the skirt 319 can be stepped, wherein the longitudinal section of the skirt 319 is obtained by cutting the skirt 319 with a surface parallel to the thickness direction of the decorative body 310 and passing through the center of the decorative body 310. In this way, the insulating member 316 disposed in the first gap 313 can have a larger connection area with the decorative body 310, thereby improving the overall structural strength of the decorative body 310. Moreover, the reinforcing member 317 can cover the inner surface of the decorative body 310 up to the stepped skirt 319, increasing the connection area between the reinforcing member 317 and the decorative body 310, thereby improving the overall structural strength of the decorative body.
[0122] In some embodiments of this application, the outer surface of the insulating component 316 is coated with paint. For example, the outer surface of the insulating component 316 can be painted. The outer surface of the insulating component 316 refers to one or more sides of the insulating component 316 that the user can observe when the camera decorative component is in use. In the embodiments shown in this application, the outer surface of the insulating component 316 refers to the side of the insulating component 316 that faces away from the interior of the electronic device. The color of the paint on the insulating component 316 can be set according to specific needs. For example, the outer surface of the insulating component 316 can be painted with the same color as the skirt 319 or the panel 318 to cover the insulating component 316 and improve the neatness and aesthetics of the electronic device.
[0123] It should also be mentioned that in the camera decorative component 300 provided in this application embodiment, one or more feed points 314 can be provided on the decorative unit 311 formed as an antenna radiator. For example, as... Figure 15 As shown in (a), the decorative body 310 includes two decorative units 311, each of which has a feed point 314. Figure 15 As shown in (b), the decorative body 310 includes three decorative units 311, and each decorative unit 311 is provided with a feed point 314.
[0124] For example Figure 10As shown, in some embodiments of this application, the first decorative unit 311a has two feed points 314, the second decorative unit 311b has one feed point 314, and the third decorative unit 311c has no feed point 314. The two feed points 314 on the first decorative unit 311a allow it to cover the first and second operating frequency bands, while the feed point 314 on the second decorative unit 311b allows it to cover the third operating frequency band. Furthermore, it should be noted that the two feed points 314 on the first decorative unit 311a can power it simultaneously or not simultaneously.
[0125] In the embodiments of this application, the terms "exemplary" or "for example" are used to indicate examples, illustrations, or descriptions. Any embodiment or design described as "exemplary" or "for example" in the embodiments of this application should not be construed as being more preferred or advantageous than other embodiments or design solutions. Specifically, the use of terms such as "exemplary" or "for example" is intended to present the relevant concepts in a specific manner.
[0126] In the description of the embodiments of this application, the term "at least one" means one or more, and "more than one" means two or more. "At least one of the following" or similar expressions refer to any combination of these items, including any combination of a single item or a plurality of items. For example, at least one of a, b, c can represent a, b, c, a and b, a and c, b and c, a and b and c, where a, b, and c can be a single item or a plurality of items.
[0127] In the description of embodiments of this application, "parallel," "perpendicular," "equal," and "coplanar" include the described situation and situations similar to the described situation, the range of which is within an acceptable deviation range, wherein the acceptable deviation range is determined by those skilled in the art taking into account the measurement under discussion and the error associated with the measurement of a particular quantity (i.e., the limitations of the measurement system). For example, "parallel" includes absolute parallelism and approximately parallelism, wherein the acceptable deviation range for approximately parallelism may be, for example, within ±10° or ±5°. "Perpendicular" includes absolute perpendicularity and approximately perpendicularity, wherein the acceptable deviation range for approximately perpendicularity may be, for example, within ±10° or ±5°; "equal" includes absolute equality and approximately equality, wherein the acceptable deviation range for approximately equality may be, for example, the difference between the two equals being less than or equal to 5% of either one. For example, an angle of 180° between two components includes both absolute 180° and approximate 180°, where an acceptable deviation range for approximate 180° could be, for example, within ±10° or ±5°; similarly, an angle of 0° between two components includes both absolute 0° and approximate 0°, where an acceptable deviation range for approximate 0° could be, for example, within ±10° or ±5°. Similarly, an angle of 90° between two components includes both absolute 90° and approximate 90°, where an acceptable deviation range for approximate 90° could be, for example, within ±10° or ±5°.
[0128] In embodiments of this application, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one" does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element.
[0129] The directional terms used in the embodiments of this application, such as "inner" and "outer," are merely for reference to the directions in the accompanying drawings. Therefore, the directional terms used are for better and clearer explanation and understanding of the embodiments of this application, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or a specific orientation structure and operation. Therefore, they should not be construed as limitations on the embodiments of this application. Furthermore, unless otherwise stated in this application, "multiple" in this application refers to two or more.
[0130] In the embodiments of this application, "and / or" is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, or B existing alone. Additionally, the character " / " in this document generally indicates that the preceding and following related objects have an "or" relationship.
[0131] In the description of the embodiments of this application, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, an indirect connection through an intermediate medium, or the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in the embodiments of this application according to the specific circumstances.
[0132] The terms "first," "second," "third," "fourth," etc. (if present) in the claims, description, and drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence.
[0133] In the description of this specification, specific features, structures, materials, or characteristics may be combined in any suitable manner in one or more embodiments or examples.
[0134] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the embodiments of this application, and are not intended to limit them; although the embodiments of this application have been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the foregoing embodiments, or make equivalent substitutions for some or all of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.
Claims
1. A camera decorative element for use in electronic devices, characterized in that, include: The decorative body includes multiple independent decorative units, and a first gap is provided between each two decorative units, which completely separates each two decorative units. At least one of the decorative units is provided with a feed point, and the decorative unit with the feed point is used to form an antenna radiator of the electronic device.
2. The camera decorative component according to claim 1, characterized in that, An insulating element is provided in at least part of the first gap.
3. The camera decorative component according to claim 2, characterized in that, The adjacent decorative units are connected by the insulating material to form a whole.
4. The camera decorative element according to claim 3, characterized in that, The decorative component body includes: a first surface and a second surface opposite to the first surface; A reinforcing member is fixed on the second surface, and the reinforcing member is connected to the insulating member.
5. The camera decorative element according to claim 4, characterized in that, The reinforcing member and the insulating member are integrally formed.
6. The camera decorative element according to claim 4 or 5, characterized in that, Both the reinforcing component and the insulating component are made of plastic.
7. The camera decorative element according to any one of claims 4-6, characterized in that, The decorative component body includes: a panel and a skirt, wherein the skirt is disposed around the periphery of the panel and connected to the panel; The first gap extends to the edge of the skirt away from the panel.
8. The camera decorative element according to claim 7, characterized in that, At least a portion of the longitudinal section of the skirt is stepped.
9. The camera decorative element according to claim 8, characterized in that, The reinforcing member is connected to the inner surface of the stepped skirt.
10. The camera decorative element according to any one of claims 7 to 9, characterized in that, The panel has light-transmitting holes.
11. The camera decorative element according to any one of claims 1-10, characterized in that, The decorative element formed as the antenna radiator includes one or more feed points.
12. The camera decorative element according to any one of claims 1-11, characterized in that, The decorative unit forming the antenna radiator is provided with a conductive post, one end of which is connected to the feed point, and the other end of which is used to connect to the motherboard of the electronic device.
13. The camera decorative element according to any one of claims 2-12, characterized in that, The outer surface of the insulating component is coated with paint.
14. The camera decorative element according to any one of claims 1-13, characterized in that, The first gap is straight and extends from one edge of the decorative element body to the other edge of the decorative element body.
15. The camera decorative element according to any one of claims 1-13, characterized in that, The first gap can be one or more; When there are multiple first gaps, the multiple first gaps are spaced apart within the plane of the decorative element body, or... At least a portion of the plurality of first gaps intersect within the plane of the decorative element body.
16. The camera decorative element according to any one of claims 1-15, characterized in that, Also includes: Installation components; The mounting component is connected to the inner surface of the decorative component body, and a second gap is formed between the mounting component and the outer periphery of the decorative component body, the second gap being used to engage with the housing of the electronic device.
17. A housing assembly, characterized in that, include: The housing and the camera decorative element as described in any one of claims 1-16, wherein the housing has a camera hole and the camera decorative element is disposed at the camera hole.
18. An electronic device, characterized in that, include: Camera module, power supply, motherboard, and housing assembly as described in claim 17; The camera module is electrically connected to the motherboard, and the camera module is configured to correspond to the camera hole of the housing assembly; The motherboard is connected to the power supply, and a communication module is provided on the motherboard. The feed point on the camera decorative piece in the housing assembly is electrically connected to the communication module.
19. The electronic device according to claim 18, characterized in that, The feed point is electrically connected to the motherboard via a conductive elastic element.