Integrated component and display equipment
By integrating the camera, sound acquisition, and control components onto the same mounting device within the interactive large screen and employing a cross-structure design, the problem of high installation costs was solved, achieving a low-cost and highly stable integrated component design.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- SHENZHEN HONGHE INNOVATION INFORMATION TECH CO LTD
- Filing Date
- 2025-06-18
- Publication Date
- 2026-05-19
AI Technical Summary
The separate and independent installation of camera, sound acquisition, and control components in interactive large screens results in high installation costs and inconvenience in assembly and maintenance.
The camera, sound acquisition, and control components are integrated onto the same mounting component, respectively mounted on different mounting surfaces, with the third mounting surface intersecting with the first and/or second mounting surfaces to form a cross structure, thereby achieving integrated installation of the camera, sound acquisition, and control components.
It reduces the number of installation parts, lowers mold costs, simplifies the assembly process, improves installation and functional stability, reduces the risk of component interference and electromagnetic interference, and simplifies maintenance.
Smart Images

Figure CN224265038U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of electronic equipment technology, and more specifically, relates to an integrated component and a display device. Background Technology
[0002] Interactive large screens, as intelligent devices that integrate display and interactive functions, are typically equipped with functional components such as cameras (e.g., webcams), sound acquisition devices (e.g., microphones), and control devices (e.g., control panels).
[0003] In related technologies, the camera, sound acquisition and control components of interactive large screens are installed separately on different parts in different locations, requiring different installation molds, which is costly. Utility Model Content
[0004] The purpose of this application is to provide an integrated component and display device, which aims to solve the technical problem of high installation costs for camera components, sound acquisition components and control components in related technologies.
[0005] To achieve the above objectives, according to one aspect of this application, an integrated component is provided, including a camera, a sound acquisition unit, a control unit, and a mounting component. The mounting component has a first mounting surface, a second mounting surface, and a third mounting surface. The camera is disposed on the first mounting surface, the sound acquisition unit is disposed on the second mounting surface, and the control unit is disposed on the third mounting surface. The third mounting surface intersects with the first mounting surface and / or the second mounting surface.
[0006] Optionally, the mounting component includes a first mounting body and a mounting body. The first mounting body is disposed on the mounting body, and a camera is disposed on the surface of the first mounting body to form a first mounting surface. A sound acquisition element is disposed on the surface of the mounting body to form a second mounting surface.
[0007] Optionally, the mounting component further includes a second mounting body disposed on the mounting body, and a control element is provided on the surface of the second mounting body to form a third mounting surface, which intersects with the first mounting surface.
[0008] Optionally, the first mounting body and the second mounting body are located on opposite sides of the mounting body; and / or, the connection between the first mounting body and the mounting body is the first connection point, and the connection between the second mounting body and the mounting body is the second connection point, with the first connection point and the second connection point spaced apart along the first direction; and / or, the first mounting body, the second mounting body, and the mounting body are integrally formed.
[0009] Optionally, the camera includes a camera body and a mounting structure. The mounting structure has a mounting groove on its surface near the first mounting surface, and the camera body is detachably embedded in the mounting groove. When the camera body is embedded in the mounting groove, the camera body is mounted on the mounting component on the first mounting surface through the mounting structure.
[0010] Optionally, the surface of the camera body near the first mounting surface is covered with a heat-conducting structure; and / or, a transparent lens is provided on the side of the camera body away from the first mounting surface, the transparent lens is disposed on the mounting structure and covers the camera body; and / or, the material of the mounting structure is different from the material of the mounting component.
[0011] Optionally, the mounting structure is provided with a first connecting hole, and the mounting component is provided with a second connecting hole. The mounting structure is installed in the mounting component by fasteners passing through the first connecting hole and into the second connecting hole. The mounting structure is provided with a first positioning structure, and the mounting component is provided with a first positioning hole. When the mounting structure is installed in the mounting component, the first positioning structure is inserted into the first positioning hole. There are at least two first positioning structures and at least two first connecting holes. The line connecting two of the multiple first positioning structures intersects with the line connecting two of the multiple first connecting holes.
[0012] Optionally, the third mounting surface is provided with a first connecting structure, and there are multiple first connecting structures. Some of the multiple first connecting structures are provided with a third connecting hole, and other parts of the first connecting structures are provided with a second positioning structure. The control component is provided with a fourth connecting hole and a second positioning hole. The control component is installed on the mounting component by passing through the fourth connecting hole and into the third connecting hole through a fastener. When the control component is installed on the mounting component, the second positioning structure is inserted into the second positioning hole. There are at least two second positioning structures and at least two third connecting holes. The line connecting two of the multiple second positioning structures intersects with the line connecting two of the multiple third connecting holes.
[0013] Optionally, the second mounting surface and the first mounting surface are located on the same side of the third mounting surface, the second mounting surface intersects with the first mounting surface, and the second mounting surface intersects with the third mounting surface; and / or, the connection between the first mounting body and the mounting main body is the first connection point, the connection between the second mounting body and the mounting main body is the second connection point, and the first connection point and the second connection point are spaced apart along the first direction; the number of sound acquisition components is two, the two sound acquisition components are spaced apart along the second direction, the second direction is perpendicular to the first direction, and the camera is located between the two sound acquisition components; and / or, the second mounting surface is provided with a second connecting structure, the second connecting structure is provided with a fifth connecting hole; the sound acquisition component is provided with a sixth connecting hole, and the sound acquisition component is installed in the mounting component by passing through the sixth connecting hole through a fastener and passing through the fifth connecting hole.
[0014] According to another aspect of this application, a display device is provided, including a display body and the aforementioned integrated component, the integrated component being disposed on the display body.
[0015] The advantages of the integrated component provided in this application are as follows: Firstly, by integrating the camera, sound acquisition, and control components onto the same mounting component, it is not necessary to install the camera, sound acquisition, and control components independently on different mounting components. This structural design not only reduces the number of mounting components and avoids the need to open molds separately for multiple mounting components, thus reducing mold costs, but also simplifies the assembly process and reduces installation steps. In addition, it enhances the integrity and installation stability of the integrated component and reduces the risk of loosening caused by independent installation.
[0016] On the other hand, the camera, sound acquisition, and control components are respectively mounted on the first, second, and third mounting surfaces, with the third mounting surface intersecting with the first and / or second mounting surfaces. This structural design not only allows for flexible planning of the installation positions of the three components according to functional requirements, reducing the risk of interference between them, but also reduces electromagnetic interference between the three components, improving their functional stability. Furthermore, each component can be disassembled individually for maintenance, eliminating the need for overall disassembly and reducing maintenance difficulty. Attached Figure Description
[0017] To more clearly illustrate the technical features of the embodiments of this application, the drawings used in the embodiments of this application will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0018] Figure 1 A schematic diagram of the structure of the integrated component provided in the embodiments of this application;
[0019] Figure 2 A side view schematic diagram of the integrated component provided in an embodiment of this application;
[0020] Figure 3 An exploded view of the integrated components provided in the embodiments of this application;
[0021] Figure 4 This is a schematic diagram of the structure of the mounting component provided in the embodiments of this application;
[0022] Figure 5 for Figure 4 A structural schematic diagram of the enlarged view at point F in the middle;
[0023] Figure 6 for Figure 2Enlarged view of point A in the middle;
[0024] Figure 7 for Figure 3 Enlarged view of point B in the middle;
[0025] Figure 8 for Figure 3 Enlarged view of point C in the middle;
[0026] Figure 9 for Figure 3 Enlarged view of point D in the middle;
[0027] Figure 10 for Figure 3 Enlarged view of point E in the middle;
[0028] The details of the reference numerals used in the above figures are as follows:
[0029] 100. Camera component; 110. Camera body; 120. Mounting structure; 121. Mounting groove; 122. Limiting rib; 123. First connecting hole; 124. First positioning structure; 130. Heat-conducting structure; 140. Transparent lens;
[0030] 200. Sound acquisition component; 210. Sixth connection hole;
[0031] 300, Control component; 310, Fourth connecting hole; 320, Second positioning hole;
[0032] 400. Mounting component; 410. First mounting body; 411. First mounting surface; 412. Second connecting hole; 413. First positioning hole; 420. Mounting body; 421. Second mounting surface; 422. Second connecting structure; 423. Fifth connecting hole; 430. Second mounting body; 431. Third mounting surface; 432. First connecting structure; 433. Third connecting hole; 434. Second positioning structure. Detailed Implementation
[0033] To provide a clearer understanding of the technical features, objectives, and effects of this application, the specific implementation methods of this application will be further described in detail below with reference to the accompanying drawings and embodiments. The following embodiments are for illustrative purposes only and are not intended to limit the scope of protection of this application. Other embodiments obtained by those skilled in the art based on the embodiments of this application without inventive effort should all fall within the scope of protection of this application.
[0034] In the description of this application, it should be noted that the terms "upper", "lower", "front", "back", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They 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, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.
[0035] In the description of this application, it should be understood that the numbering itself, such as "first", "second", etc., is only used to distinguish the described objects and has no sequential or technical meaning, and should not be construed as specifying or implying the importance of the described objects.
[0036] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection between two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0037] In the description of this application, the term "multiple" refers to two or more. Furthermore, the term "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.
[0038] In the description of this application, it should be noted that, unless otherwise defined, all technical and scientific terms used in this application have the same meaning as commonly understood by one of ordinary skill in the art. The terminology used in this application is for the purpose of describing specific embodiments only and is not intended to limit the application. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.
[0039] As described in the background section, interactive large screens, as intelligent devices integrating display and interactive functions, are typically equipped with functional components such as cameras (e.g., webcams), sound acquisition devices (e.g., microphones), and control devices (e.g., control panels). In related technologies, the cameras, sound acquisition devices, and control devices in interactive large screens are installed separately and independently on different components in different locations, requiring different installation molds, which results in higher costs.
[0040] Reference Figures 1 to 5To address the aforementioned problems, according to one aspect of this application, an embodiment of this application provides an integrated component, which includes a camera 100, a sound acquisition unit 200, a control unit 300, and a mounting component 400. The mounting component 400 has a first mounting surface 411, a second mounting surface 421, and a third mounting surface 431. The camera 100 is disposed on the first mounting surface 411, the sound acquisition unit 200 is disposed on the second mounting surface 421, and the control unit 300 is disposed on the third mounting surface 431. The third mounting surface 431 intersects with the first mounting surface 411 and / or the second mounting surface 421.
[0041] In this embodiment, the integrated component is used for an interactive screen; it is understood that the integrated component can also be used for other electronic devices. The camera component 100 includes a camera, the sound acquisition component 200 is a microphone board (a circuit board assembly integrating microphone elements and related signal processing circuits), the control component 300 is a control circuit board, and the mounting component 400 is a mounting base or mounting bracket. "Two surfaces intersecting" refers to two surfaces intersecting each other in a non-parallel manner in space, forming a geometric relationship of intersection lines. In one specific embodiment, the third mounting surface 431 intersects with the first mounting surface 411 and is parallel or coplanar with the second mounting surface 421; in another specific embodiment, the third mounting surface 431 is parallel or coplanar with the first mounting surface 411 and intersects with the second mounting surface 421; in yet another specific embodiment, the third mounting surface 431 intersects with both the first and second mounting surfaces 411 and 421. Furthermore, the camera component 100 and the control component 300 are electrically connected, and the sound acquisition component 200 is also electrically connected to the control component 300.
[0042] On the one hand, by integrating the camera 100, the sound acquisition unit 200, and the control unit 300 onto the same mounting component 400, it is not necessary to install the camera 100, the sound acquisition unit 200, and the control unit 300 independently on different mounting components. This structural design not only reduces the number of mounting components and avoids the need to make separate molds for multiple mounting components, thus reducing mold costs, but also simplifies the assembly process and reduces installation steps. In addition, it enhances the integrity and installation stability of the integrated components and reduces the risk of loosening caused by independent installation.
[0043] On the other hand, the camera 100, the sound acquisition 200, and the control 300 are respectively mounted on the first mounting surface 411, the second mounting surface 421, and the third mounting surface 431, with the third mounting surface 431 intersecting with the first mounting surface 411 and / or the second mounting surface 421. This structural design not only allows for flexible planning of the installation positions of the three components according to functional requirements, reducing the risk of interference between the three components, but also reduces electromagnetic interference between the three components and improves the functional stability of the three components. In addition, each component can be disassembled individually when maintaining the three components, without the need for overall disassembly, reducing the difficulty of maintenance.
[0044] Reference Figures 1 to 5 In one embodiment, the mounting component 400 includes a first mounting body 410 and a mounting body 420. The first mounting body 410 is disposed on the mounting body 420, and a camera 100 is disposed on the surface of the first mounting body 410 to form a first mounting surface 411. A sound acquisition component 200 is disposed on the surface of the mounting body 420 to form a second mounting surface 421.
[0045] In this embodiment, the first mounting body 410 and the mounting body 420 are mounting plates or mounting strips. The first mounting body 410 can be fixedly connected to the mounting body 420 by welding, screw connection, snap-fit or plug-in, or it can be an integrally formed part with the mounting body 420.
[0046] The first mounting surface 411 and the second mounting surface 421 are respectively provided on the first mounting body 410 and the mounting body 420. This not only allows the first mounting surface 411 and the second mounting surface 421 to be independently designed in terms of orientation and angle, reducing the risk of conflict between the installation positions of the camera 100 and the sound acquisition unit 200, but also enables independent operation when installing or maintaining the camera 100 and the sound acquisition unit 200, reducing the difficulty of operation and improving the efficiency of operation.
[0047] Reference Figures 1 to 5 In one embodiment, the mounting member 400 further includes a second mounting body 430 disposed on the mounting body 420. The surface of the second mounting body 430 is provided with a control member 300 to form a third mounting surface 431, which intersects with the first mounting surface 411.
[0048] In this embodiment, the second mounting body 430 is a mounting plate or mounting strip. The second mounting body 430 can be fixedly connected to the mounting body 420 by welding, screw connection, snap-fit or plug-in, or it can be an integral part of the mounting body 420.
[0049] The first mounting surface 411, the second mounting surface 421, and the third mounting surface 431 are respectively disposed on the first mounting body 410, the mounting body 420, and the second mounting body 430. This not only allows the first mounting surface 411, the second mounting surface 421, and the third mounting surface 431 to be independently designed with different orientations and angles, reducing the risk of conflicting installation positions of the camera 100, the sound acquisition component 200, and the control component 300; but also enables independent operation when installing or maintaining the camera 100, the sound acquisition component 200, and the control component 300, reducing the difficulty of operation and improving the efficiency of operation.
[0050] Furthermore, the third mounting surface 431 is intersecting with the first mounting surface 411, so that the third mounting surface 431 and the first mounting surface 411 are angularly distributed, which can make full use of the three-dimensional spatial layout of the control component 300 and the camera component 100, and further reduce the risk of positional conflict or interference when the control component 300 and the camera component 100 are installed.
[0051] Reference Figures 1 to 5 In one embodiment, the first mounting body 410 and the second mounting body 430 are located on opposite sides of the mounting body 420. It is understood that the first mounting body 410 and the second mounting body 430 may also be located on the same side of the mounting body 420.
[0052] The first mounting body 410 and the second mounting body 430 are arranged on opposite sides of the mounting body 420. This structural design not only facilitates the independent installation and maintenance of the camera 100 and the control unit 300 without cross-operation, reducing the difficulty of installation and maintenance, but also balances the overall center of gravity of the mounting unit 400, avoiding structural instability caused by excessive load on one side.
[0053] Reference Figures 1 to 5 In one embodiment, the connection between the first mounting body 410 and the mounting body 420 is the first connection point, and the connection between the second mounting body 430 and the mounting body 420 is the second connection point. The first connection point and the second connection point are spaced apart along a first direction.
[0054] In this embodiment, the first direction is parallel to the width direction of the mounting body 420. It can be understood that the first direction may also be parallel to the length direction or other directions of the mounting body 420.
[0055] The first and second connections are spaced apart along a first direction. This structural design not only prevents the first mounting body 410 and the second mounting body 430 from being stacked in the same position, thus avoiding interference, but also allows the loads of the first mounting body 410 and the second mounting body 430 to be distributed spaced apart along the first direction, avoiding localized stress concentration on the mounting body 420 and improving the overall structural strength and stability of the centralized assembly. Furthermore, the above structural design also ensures that the paths do not overlap when installing and maintaining the camera 100 and the control unit 300, improving operational efficiency and reducing electromagnetic interference between the camera 100 and the control unit 300, thereby enhancing the functional stability of the camera 100 and the control unit 300.
[0056] Reference Figures 1 to 5 In one embodiment, the first mounting body 410, the second mounting body 430, and the mounting body 420 are integrally formed parts.
[0057] In this embodiment, the mounting part 400 is a sheet metal part, which eliminates the need for mold making and saves costs; it is understood that the mounting part 400 may also be a plastic part or other metal part.
[0058] The first mounting body 410, the second mounting body 430, and the mounting body 420 are integrally molded, which not only makes the mounting part 400 seamless, avoiding stress concentration and enhancing the overall deformation resistance of the mounting part 400; but also eliminates the need for multi-part assembly, reducing assembly time and cost.
[0059] Reference Figures 1 to 7 In one embodiment, the camera 100 includes a camera body 110 and a mounting structure 120. The mounting structure 120 has a mounting groove 121 on its surface near the first mounting surface 411. The camera body 110 is detachably embedded in the mounting groove 121. When the camera body 110 is embedded in the mounting groove 121, the camera body 110 is mounted on the mounting member 400 via the mounting structure 120 on the first mounting surface 411.
[0060] In this embodiment, the camera body 110 is a camera, and the mounting structure 120 is a mounting base; the camera body 110 can be embedded in the mounting groove 121, or it can be pulled out from the mounting groove 121. It is understood that the camera body 110 can also be fixedly connected to the mounting structure 120 by welding, screw connection, snap-fit or plug-in.
[0061] The camera body 110 is detachably embedded in the mounting groove 121, facilitating individual replacement, maintenance, or upgrades without requiring the replacement of the entire camera assembly 100. Simultaneously, the groove walls of the mounting groove 121 restrict the movement of the camera body 110, ensuring a fixed shooting angle and thus guaranteeing optimal image quality. Furthermore, the mounting groove 121 encloses the camera body 110, reducing external impact damage and extending its lifespan.
[0062] In addition, to ensure the stability of the camera body 110 within the mounting groove 121, two oppositely arranged groove walls on the mounting groove 121 are provided with limiting ribs 122. The limiting ribs 122 are integrally formed with the mounting structure 120 and restrict the camera body 110 from shaking within the mounting groove 121 by contacting it.
[0063] Reference Figures 1 to 7 In one embodiment, the surface of the camera body 110 near the first mounting surface 411 is covered with a thermally conductive structure 130. In this embodiment, the thermally conductive structure 130 is thermally conductive putty, and the thermally conductive structure 130 completely covers the surface of the camera body 110 near the first mounting surface 411; it is understood that the thermally conductive structure 130 may also be thermally conductive paste, thermally conductive pad, thermally conductive gel, phase change thermally conductive material, or metal thermally conductive sheet.
[0064] The heat-conducting structure 130 can quickly dissipate the heat generated by the camera body 110 during operation, reducing the risk of image noise or device crashes due to high temperature, ensuring the performance stability of the camera body 110, and extending the service life of the camera body 110.
[0065] Reference Figures 1 to 7 In one embodiment, a transparent lens 140 is provided on the side of the camera body 110 away from the first mounting surface 411. The transparent lens 140 is provided on the mounting structure 120 and covers the camera body 110.
[0066] In this embodiment, the transparent lens 140 is fixedly installed on the mounting structure 120 by bonding, welding or other means, and completely covers the camera body 110.
[0067] The transparent lens 140 covers the camera body 110, which can effectively prevent dust, water vapor, oil and other contaminants from directly contacting the camera body 110, avoiding image blurring or equipment damage, ensuring the image clarity and color reproduction of the camera body 110, and extending the service life of the camera body 110.
[0068] Reference Figures 1 to 7 In one embodiment, the materials of the mounting structure 120 and the mounting component 400 are different.
[0069] In this embodiment, the mounting structure 120 is a plastic part, and the mounting component 400 is a metal part. This structural design not only optimizes overall performance by utilizing the properties of different materials, but also reduces overall cost while ensuring performance.
[0070] Reference Figure 5 and Figure 7 In one embodiment, the mounting structure 120 is provided with a first connecting hole 123, and the mounting member 400 is provided with a second connecting hole 412. The mounting structure 120 is installed in the mounting member 400 by fasteners passing through the first connecting hole 123 and into the second connecting hole 412.
[0071] In this embodiment, the fastener is a fastening screw, the first connecting hole 123 can be a smooth hole or a threaded hole, and the second connecting hole 412 is provided in the first mounting body 410 and is a threaded hole. It is understood that the fastener can also be a fastening pin.
[0072] The fastener passes through the first connecting hole 123 and is inserted into the second connecting hole 412 to form a rigid fixation. This not only ensures the stability of the mounting structure 120 and the camera 100 on the mounting part 400, but also facilitates the disassembly and assembly of the mounting structure 120 and the mounting part 400, simplifying the operation process for later maintenance or replacement of the camera 100.
[0073] Reference Figure 5 and Figure 7 In one embodiment, the mounting structure 120 is provided with a first positioning structure 124, and the mounting member 400 is provided with a first positioning hole 413; when the mounting structure 120 is provided on the mounting member 400, the first positioning structure 124 is inserted into the first positioning hole 413.
[0074] In this embodiment, the first positioning structure 124 is a positioning post or positioning pin. It can be understood that the first positioning structure 124 can also be provided on the first mounting body 410 of the mounting component 400, and the first positioning hole 413 is provided on the mounting structure 120. The first positioning structure 124 and the first positioning hole 413 used in conjunction play a positioning role, ensuring that the mounting structure 120 is quickly and accurately installed onto the mounting component 400, avoiding misaligned installation and improving assembly efficiency.
[0075] Reference Figure 5 and Figure 7 In one embodiment, at least two first positioning structures 124 are provided, at least two first connecting holes 123 are provided, and the line connecting two of the plurality of first positioning structures 124 intersects with the line connecting two of the plurality of first connecting holes 123.
[0076] In this embodiment, two first positioning structures 124 are provided, and the number of first positioning holes 413 is the same as the number of first positioning structures 124. Each of the multiple first positioning holes 413 corresponds one-to-one with a multiple of the multiple first positioning structures 124, and each of the two first positioning structures 124 corresponds one-to-one with two diagonally positioned corners on the mounting structure 120. Two first connecting holes 123 are provided, and the number of second connecting holes 412 is the same as the number of first connecting holes 123. Each of the multiple second connecting holes 412 corresponds one-to-one with a multiple of the multiple first connecting holes 123, and each of the two first connecting holes 123 corresponds one-to-one with two diagonally positioned corners on the mounting structure 120. It is understood that the number of first positioning structures 124 and the number of first connecting holes 123 can also be three, four, or more.
[0077] The structural layout in which the lines connecting the two first positioning structures 124 intersect with the lines connecting the two first connecting holes 123 not only forms a spatial geometric constraint, preventing the mounting structure 120 from rotating or shifting on the mounting component 400, but also eliminates the possibility of reverse or misaligned installation by utilizing the uniqueness of the intersecting layout, ensuring that the mounting structure 120 is accurately installed on the mounting component 400.
[0078] Reference Figure 8 and Figure 9 In one embodiment, the third mounting surface 431 is provided with a first connecting structure 432, and there are multiple first connecting structures 432. A portion of the multiple first connecting structures 432 are provided with a third connecting hole 433, and another portion of the first connecting structures 432 are provided with a second positioning structure 434. The control member 300 is provided with a fourth connecting hole 310 and a second positioning hole 320. The control member 300 is installed in the mounting member 400 by fasteners passing through the fourth connecting hole 310 and into the third connecting hole 433. When the control member 300 is installed in the mounting member 400, the second positioning structure 434 is inserted into the second positioning hole 320.
[0079] In this embodiment, the first connecting structure 432 is a connecting protrusion, and multiple first connecting structures 432 are disposed on the third mounting surface 431 of the second mounting body 430, and are integrally formed with the second mounting body 430; the fastener is a fastening screw, the third connecting hole 433 is a threaded hole, and the fourth connecting hole 310 is a smooth hole or a threaded hole; the second positioning structure 434 is a positioning post or a positioning pin. The number of fourth connecting holes 310 is the same as the number of third connecting holes 433, and multiple fourth connecting holes 310 are respectively disposed in a one-to-one correspondence with multiple third connecting holes 433; the number of second positioning holes 320 is the same as the number of second positioning structures 434, and multiple second positioning holes 320 are respectively disposed in a one-to-one correspondence with multiple second positioning structures 434. It can be understood that the fastener can also be a fastening pin, the second positioning structure 434 can also be disposed on the control component 300, and the second positioning hole 320 is disposed on the first connecting structure 432.
[0080] The fastener passes through the fourth connecting hole 310 and is inserted into the third connecting hole 433 to form a rigid fixation. This not only ensures the stability of the control component 300 installed on the mounting component 400, but also facilitates the disassembly and assembly of the control component 300 and the mounting component 400, simplifying the operation process for later maintenance or replacement of the control component 300.
[0081] Reference Figure 8 and Figure 9 In one embodiment, at least two second positioning structures 434 are provided, at least two third connecting holes 433 are provided, and the line connecting two of the multiple second positioning structures 434 intersects with the line connecting two of the multiple third connecting holes 433.
[0082] In this embodiment, there are four first connecting structures 432. Two of the four first connecting structures 432 are provided with second positioning structures 434, which are respectively provided with two diagonally opposite corners on the second mounting body 430. The other two first connecting structures 432 are provided with third connecting holes 433, which are respectively provided with two diagonally opposite corners on the second mounting body 430. It can be understood that the number of first connecting structures 432, the number of second positioning structures 434, and the number of third connecting holes 433 can also be three, four, or more.
[0083] The structural layout in which the lines connecting the two second positioning structures 434 intersect with the lines connecting the two third connecting holes 433 not only forms a spatial geometric constraint, preventing the control component 300 from rotating or shifting on the mounting component 400, but also eliminates the possibility of reverse or misaligned installation by utilizing the uniqueness of the intersecting layout, ensuring that the control component 300 is accurately installed on the mounting component 400.
[0084] Reference Figures 1 to 5 In one embodiment, the second mounting surface 421 and the first mounting surface 411 are located on the same side of the third mounting surface 431, the second mounting surface 421 intersects with the first mounting surface 411, and the second mounting surface 421 intersects with the third mounting surface 431.
[0085] In this embodiment, the first mounting body 410 is an L-shaped mounting strip, and the first mounting surface 411 is the surface of the first mounting body 410 that is away from the mounting body 420.
[0086] The first mounting surface 411, where the camera 100 is located, and the second mounting surface 421, where the sound acquisition component 200 is located, are on the same side of the third mounting surface 431. This ensures that the camera 100 and the sound acquisition component 200 face the same direction, allowing the integrated component to simultaneously perform both image and sound acquisition functions when facing the operator. Furthermore, the second mounting surface 421 intersects with both the first and third mounting surfaces 431. This structural design allows for adaptation to different orientation requirements of the camera 100, the sound acquisition component 200, and the control component 300 through angular variations.
[0087] Reference Figures 1 to 5 In one embodiment, the connection between the first mounting body 410 and the mounting body 420 is the first connection point, and the connection between the second mounting body 430 and the mounting body 420 is the second connection point. The first connection point and the second connection point are spaced apart along a first direction. There are two sound acquisition components 200, which are spaced apart along a second direction. The second direction is perpendicular to the first direction. The camera 100 is located between the two sound acquisition components 200.
[0088] In this embodiment, the first direction is parallel to the width direction of the mounting body 420, and the second direction is parallel to the length direction of the mounting body 420. It can be understood that the first direction may also be parallel to the length direction of the mounting body 420, and the second direction may be parallel to the width direction of the mounting body 420.
[0089] The first and second connection points are spaced apart along the first direction, and the two sound acquisition components 200 are distributed along a second direction perpendicular to the first direction, forming a cross-shaped spatial layout. This structural design not only makes full use of three-dimensional space and avoids interference caused by component stacking, but also ensures that the force on the mounting body 420 is distributed in a rectangular shape, avoiding structural deformation caused by excessive local load. In addition, the two sound acquisition components 200 are spaced apart along the second direction, forming a stereo sound pickup structure with the central camera component 100, which helps to locate the direction of the sound source and improves the accuracy of audio acquisition.
[0090] Reference Figures 1 to 4 as well as Figure 10 In one embodiment, the second mounting surface 421 is provided with a second connecting structure 422, and the second connecting structure 422 is provided with a fifth connecting hole 423; the sound acquisition component 200 is provided with a sixth connecting hole 210, and the sound acquisition component 200 is installed in the mounting component 400 by passing through the sixth connecting hole 210 and the fifth connecting hole 423 through a fastener.
[0091] In this embodiment, the second connecting structure 422 is a connecting protrusion, the fastener is a fastening screw, the fifth connecting hole 423 is a threaded hole, and the sixth connecting hole 210 is provided in the mounting body 420 and is either a smooth hole or a threaded hole. It is understood that the fastener may also be a fastening pin.
[0092] The fastener passes through the sixth connecting hole 210 and is installed in the fifth connecting hole 423 to form a rigid fixation. This not only ensures the stability of the sound acquisition component 200 installed on the mounting component 400, but also facilitates the disassembly and assembly of the sound acquisition component 200 and the mounting component 400, simplifying the operation process for later maintenance or replacement of the sound acquisition component 200.
[0093] In addition, to enhance the stability of the sound acquisition component 200 installed on the mounting body 420, there are multiple second connection structures 422, and the multiple second connection structures 422 are spaced apart along the second direction.
[0094] Reference Figures 1 to 10 According to another aspect of this application, embodiments of this application also provide a display device, the display device including a display body and the aforementioned integrated component, the integrated component being disposed on the display body.
[0095] In the embodiments of this application, the display device is an interactive screen. It is understood that the display device may also be other types of display devices.
[0096] In summary, implementing the integrated component and display device provided in this embodiment has at least the following beneficial technical effects: On the one hand, by integrating the camera 100, the sound acquisition component 200, and the control component 300 onto the same mounting component 400, it is not necessary to independently install the camera 100, the sound acquisition component 200, and the control component 300 on different mounting components; this structural design not only reduces the number of mounting components and avoids the need to open molds separately for multiple mounting components, thus reducing mold costs; it also simplifies the assembly process and reduces installation steps; in addition, it enhances the integrity and installation stability of the integrated component and reduces the risk of loosening caused by independent installation.
[0097] On the other hand, the camera 100, the sound acquisition 200, and the control 300 are respectively mounted on the first mounting surface 411, the second mounting surface 421, and the third mounting surface 431, with the third mounting surface 431 intersecting with the first mounting surface 411 and / or the second mounting surface 421. This structural design not only allows for flexible planning of the installation positions of the three components according to functional requirements, reducing the risk of interference between the three components, but also reduces electromagnetic interference between the three components and improves the functional stability of the three components. In addition, each component can be disassembled individually when maintaining the three components, without the need for overall disassembly, reducing the difficulty of maintenance.
[0098] The above description is merely a preferred embodiment of this application, but the scope of protection of this application is not limited thereto. It should be noted that, for those skilled in the art, several equivalent obvious modifications and / or equivalent substitutions can be made without departing from the technical principles of this application, and these obvious modifications and / or equivalent substitutions should also be considered within the scope of protection of this application.
Claims
1. An integrated assembly, comprising: The device includes a camera (100), a sound acquisition device (200), a control device (300), and a mounting device (400). The mounting device (400) has a first mounting surface (411), a second mounting surface (421), and a third mounting surface (431). The camera (100) is disposed on the first mounting surface (411), the sound acquisition device (200) is disposed on the second mounting surface (421), and the control device (300) is disposed on the third mounting surface (431). The third mounting surface (431) intersects with the first mounting surface (411) and / or the second mounting surface (421).
2. The integrated assembly of claim 1, wherein, The mounting component (400) includes a first mounting body (410) and a mounting body (420). The first mounting body (410) is disposed on the mounting body (420). The camera (100) is disposed on the surface of the first mounting body (410) to form the first mounting surface (411). The sound acquisition component (200) is disposed on the surface of the mounting body (420) to form the second mounting surface (421).
3. The integrated assembly of claim 2, wherein, The mounting component (400) further includes a second mounting body (430), which is disposed on the mounting body (420). The control element (300) is disposed on the surface of the second mounting body (430) to form the third mounting surface (431), which intersects with the first mounting surface (411).
4. The integrated assembly of claim 3, wherein, The first mounting body (410) and the second mounting body (430) are respectively located on opposite sides of the mounting body (420); and / or, The connection point between the first mounting body (410) and the mounting body (420) is a first connection point, and the connection point between the second mounting body (430) and the mounting body (420) is a second connection point. The first connection point and the second connection point are spaced apart along a first direction; and / or, The first mounting body (410), the second mounting body (430), and the mounting body (420) are integrally formed parts.
5. The integrated assembly of any of claims 1 to 4, wherein, The camera (100) includes a camera body (110) and a mounting structure (120). The mounting structure (120) has a mounting groove (121) on its surface near the first mounting surface (411). The camera body (110) is detachably embedded in the mounting groove (121). When the camera body (110) is embedded in the mounting groove (121), the camera body (110) is mounted on the mounting member (400) on the first mounting surface (411) through the mounting structure (120).
6. The integrated assembly of claim 5, wherein, The surface of the camera body (110) near the first mounting surface (411) is covered with a heat-conducting structure (130); and / or, A transparent lens (140) is provided on the side of the camera body (110) away from the first mounting surface (411). The transparent lens (140) is disposed in the mounting structure (120) and covers the camera body (110); and / or, The material of the mounting structure (120) is different from that of the mounting component (400).
7. The integrated assembly of claim 5, wherein, The mounting structure (120) is provided with a first connecting hole (123), and the mounting component (400) is provided with a second connecting hole (412). The mounting structure (120) is mounted on the mounting component (400) by means of fasteners passing through the first connecting hole (123) and through the second connecting hole (412). The mounting structure (120) is provided with a first positioning structure (124), and the mounting component (400) is provided with a first positioning hole (413); when the mounting structure (120) is installed on the mounting component (400), the first positioning structure (124) is inserted into the first positioning hole (413); At least two first positioning structures (124) are provided, and at least two first connecting holes (123) are provided. The line connecting two of the multiple first positioning structures (124) intersects with the line connecting two of the multiple first connecting holes (123).
8. The integrated assembly of any of claims 1-4, wherein, The third mounting surface (431) is provided with a first connecting structure (432), and there are multiple first connecting structures (432). A portion of the multiple first connecting structures (432) is provided with a third connecting hole (433), and another portion of the first connecting structures (432) is provided with a second positioning structure (434). The control component (300) is provided with a fourth connecting hole (310) and a second positioning hole (320). The control component (300) is installed in the mounting component (400) by fasteners passing through the fourth connecting hole (310) and into the third connecting hole (433). When the control component (300) is installed in the mounting component (400), the second positioning structure (434) is inserted into the second positioning hole (320). At least two second positioning structures (434) are provided, and at least two third connecting holes (433) are provided. The line connecting two of the multiple second positioning structures (434) intersects with the line connecting two of the multiple third connecting holes (433).
9. The integrated assembly of claim 3 or 4, wherein, The second mounting surface (421) and the first mounting surface (411) are located on the same side of the third mounting surface (431), the second mounting surface (421) intersects with the first mounting surface (411), and the second mounting surface (421) intersects with the third mounting surface (431); and / or, The connection between the first mounting body (410) and the mounting body (420) is the first connection point, and the connection between the second mounting body (430) and the mounting body (420) is the second connection point. The first connection point and the second connection point are spaced apart along a first direction. The number of sound acquisition devices (200) is two, and the two sound acquisition devices (200) are spaced apart along a second direction, which is perpendicular to the first direction. The camera (100) is located between the two sound acquisition devices (200); and / or, The second mounting surface (421) is provided with a second connecting structure (422), and the second connecting structure (422) is provided with a fifth connecting hole (423); the sound acquisition component (200) is provided with a sixth connecting hole (210), and the sound acquisition component (200) is installed in the mounting component (400) by passing through the sixth connecting hole (210) and through the fifth connecting hole (423) via a fastener.
10. A display device, characterized by comprising: It includes a display body and an integrated component as described in any one of claims 1 to 9, the integrated component being disposed on the display body.