Camera assembly and digital kiosk
Patent Information
- Application Number
- CN202522351590.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-04
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-11-04
AI Technical Summary
[0004]本申请实施例的目的在于提供一种摄像组件及数字展台,旨在解决相关技术中数字展台所需部件较多,整体结构复杂的技术问题
[0015]本申请提供的摄像组件的有益效果在于:一方面而言,相比于传统的将摄像件和照明件分别安装至不同的部件上的结构设计而言,本申请通过将摄像件和照明件都设置在安装件上,减少了摄像组件的零部件数量,提升了摄像组件的集成度,简化了摄像组件的整体结构,使摄像组件的整体结构更加紧凑。
Smart Images

Figure CN224805008U_ABST
Abstract
Description
Technical Field
[0001] This application belongs to the field of digital display technology, and more specifically, relates to a camera component and a digital display stand. Background Technology
[0002] A digital display stand is a device that integrates physical display, digital processing, and display functions, used to clearly display materials, handouts, physical objects, etc.
[0003] In related technologies, digital booths include camera components and lighting components. The camera components are used to capture images of the area to be captured, and the lighting components are used to illuminate the area to be captured. However, currently, the lighting components and camera components in digital booths are installed on different parts, resulting in a large number of components required for digital booths and a complex overall structure. Utility Model Content
[0004] The purpose of this application is to provide a camera component and a digital exhibition stand, aiming to solve the technical problem that digital exhibition stands require many components and have a complex overall structure in related technologies.
[0005] To achieve the above objectives, according to one aspect of this application, a camera assembly is provided, comprising: a mounting member having an installation space and a first opening communicating with the installation space; a camera member disposed within the installation space for acquiring an image of an area to be acquired through the first opening, the area to be acquired being located on one side of the mounting member and corresponding to the first opening; an adjustment member disposed on the mounting member for adjusting the position of the camera member relative to the first opening; and an illumination member disposed on the mounting member for providing illumination to the area to be acquired.
[0006] Optionally, the mounting component has a connection structure that is stationary relative to the first opening; the adjusting component includes a connecting body that is movably disposed on one of the connection structure and the camera component in a direction close to or away from the first opening, and remains relatively stationary with respect to the other; after the relative position of the camera component and the first opening is adjusted, the connecting body, the connection structure, and the camera component remain relatively stationary.
[0007] Optionally, the connecting structure is provided with a first connecting hole, the camera has a control structure, the control structure is provided with a second connecting hole, and at least one of the first connecting hole and the second connecting hole is a threaded hole; the connecting body passes through the first connecting hole and the second connecting hole and is threadedly engaged with the hole wall of the threaded hole in the first connecting hole and the second connecting hole.
[0008] Optionally, the first connecting hole is a threaded hole, the second connecting hole is a smooth hole, and the connector can be slidably disposed in the second connecting hole in a direction perpendicular to the extension direction of the second connecting hole.
[0009] Optionally, the connecting body includes a connecting main body and a limiting structure. The connecting main body passes through the first connecting hole and the second connecting hole and is threadedly engaged with the hole wall of the threaded hole in the first connecting hole and the second connecting hole. The limiting structure is disposed on the connecting main body, and the hole wall of the first connecting hole or the hole wall of the second connecting hole prevents the limiting structure from passing through. The adjusting component also includes an adjusting body, which is an elastic structure capable of elastic deformation. The adjusting body is clamped between the limiting structure and the control structure, or the adjusting body is clamped and fixed between the connecting structure and the control structure. There are multiple connecting structures, connecting bodies, and adjusting bodies. Multiple connecting structures are spaced apart, and multiple connecting bodies and multiple adjusting bodies are respectively arranged in one-to-one correspondence with multiple connecting structures.
[0010] Optionally, the mounting component includes a mounting body and a first sealing body, with the mounting space and the first opening disposed on the mounting body; the surface of the mounting body with the first opening is the opening surface, and a mounting groove is disposed on the opening surface, into which the lighting component is embedded; the first sealing body is disposed on the mounting body and seals the opening of the mounting groove.
[0011] Optionally, the lighting element is positioned around the camera element; and / or, the lighting element is detachably mounted within a mounting recess.
[0012] Optionally, the first sealing body includes an installation structure and a light-transmitting structure. The installation structure is detachably installed on the installation body. The light-transmitting structure is disposed on the installation structure and blocks the opening of the installation groove, so as to allow the illumination light emitted by the illumination element to be transmitted to the area to be collected. And / or, the surface of the first sealing body away from the bottom of the installation groove is a protective surface, and the camera element has an imaging surface located on the side of the protective surface close to the bottom of the installation groove.
[0013] Optionally, the mounting body is provided with a first heat dissipation hole extending into the mounting space; and / or, the mounting body also has a second opening communicating with the mounting space, and the mounting component further includes a second sealing body, which is detachably mounted on the mounting body for sealing the second opening.
[0014] According to another aspect of this application, a digital booth is provided, including a booth body and the aforementioned camera component, wherein the camera component is disposed on the booth body and electrically connected to the booth body.
[0015] The beneficial effects of the camera assembly provided in this application are as follows: On the one hand, compared with the traditional structural design of installing the camera and lighting components on different parts, this application reduces the number of parts of the camera assembly by setting both the camera and lighting components on the mounting part, thereby improving the integration of the camera assembly, simplifying the overall structure of the camera assembly, and making the overall structure of the camera assembly more compact.
[0016] On the other hand, the installation space provides physical protection for the camera, reducing damage caused by external collisions and extending its service life; at the same time, it provides space to accommodate the camera, reducing the overall size of the camera assembly and helping to achieve miniaturization and compact design of the camera assembly.
[0017] On the other hand, the adjustable components allow for flexible adjustment of the camera position, improving the adaptability of the camera assembly and expanding its application scenarios. Attached Figure Description
[0018] 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.
[0019] Figure 1 This is a schematic diagram of the camera module provided in the embodiments of this application from a first-view perspective; Figure 2 This is a front view schematic diagram of the camera module provided in the embodiments of this application; Figure 3 for Figure 2 Schematic diagram of the cross section of AA; Figure 4 for Figure 3 Enlarged view of point B in the middle; Figure 5 This is an exploded view of the camera module provided in an embodiment of this application; Figure 6 This is a cross-sectional schematic diagram of a portion of the structure of the mounting component provided in the embodiments of this application; Figure 7 This is a cross-sectional schematic diagram of the first sealing body provided in an embodiment of this application; Figure 8 for Figure 3 Enlarged view of point C in the middle; Figure 9 for Figure 5 Enlarged view of point D in the middle; Figure 10 This is a schematic diagram of the structure of the second sealing body provided in an embodiment of this application; Figure 11 for Figure 5 Enlarged view of point E in the middle; Figure 12 This is a schematic diagram of the structure of a digital booth provided in an embodiment of this application; The details of the reference numerals used in the above figures are as follows: 100. Mounting component; 110. Mounting body; 111. Mounting space; 112. First opening; 113. Opening surface; 114. Mounting groove; 115. Second opening; 116. First heat dissipation hole; 117. First clearance groove; 120. First sealing body; 121. Mounting structure; 1211. Clip; 1212. Protective surface; 122. Light-transmitting structure; 1221. Light-transmitting surface; 130. Second sealing body; 131. Second heat dissipation hole; 132. Second clearance groove; 140. Connecting protrusion; 150. Decorative piece; 160. Connecting structure; 161. First connecting hole; 200. Camera component; 210. Camera body; 211. Camera surface; 220. Control structure; 221. Second connecting hole; 300. Adjusting component; 310. Connecting body; 311. Connecting main body; 312. Limiting structure; 320. Adjusting body; 400. Lighting components; 500. Booth body; 510. Bottom; 520. Support components. Detailed Implementation
[0020] 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.
[0021] 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.
[0022] 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.
[0023] 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.
[0024] 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 alone, A and B simultaneously, or B alone. Additionally, the character " / " in this document generally indicates that the preceding and following related objects have an "or" relationship. 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.
[0025] As described in the background section, a digital exhibition stand is a device that integrates physical display, digitization, and display functions to clearly showcase materials, handouts, and physical objects. In related technologies, a digital exhibition stand includes a camera and a lighting unit. The camera is used to capture images of the area to be captured, and the lighting unit is used to illuminate that area. However, currently, the lighting and camera units in digital exhibition stands are mounted on separate components, resulting in a large number of components and a complex overall structure.
[0026] Reference Figures 1 to 6 To address the aforementioned problems, according to one aspect of this application, an embodiment of this application provides a camera assembly, which includes a mounting member 100, a camera 200, an adjusting member 300, and an illumination member 400. The mounting member 100 has a mounting space 111 and a first opening 112 communicating with the mounting space 111. The camera 200 is disposed within the mounting space 111 and is used to acquire images of an area to be acquired through the first opening 112. The area to be acquired is located on one side of the mounting member 100 and corresponds to the first opening 112. The adjusting member 300 is disposed on the mounting member 100 and is used to adjust the position of the camera 200 relative to the first opening 112. The illumination member 400 is disposed on the mounting member 100 and is used to provide illumination to the area to be acquired.
[0027] In this embodiment, the camera component is used for a digital display stand. It is understood that the camera component can also be used for security monitoring equipment, automotive electronic equipment, industrial testing equipment, medical equipment, or electronic devices such as mobile phones. The mounting component 100 is a mounting container such as a mounting shell, mounting box, or mounting cylinder. The mounting space 111 is the internal space of the mounting container. The first opening 112 is provided on the outer surface of the mounting component 100 and extends into the mounting space 111. The camera component 200 is a camera, image sensor, or infrared thermal imager. The camera end of the camera component 200 faces the first opening 112 and extends into the first opening 112 to capture images of the area to be captured. The first opening 112 not only enables the camera component 200 to capture images but also serves to position the camera component 200. The area to be captured is located outside the installation space 111, and the area to be captured corresponds to the first opening 112, meaning the area to be captured is directly in front of the first opening 112, and the two are spatially aligned. It can be understood that the camera end of the camera component 200 can also be located inside the installation space 111. The adjustment component 300 can be a focusing motor, pan-tilt head, or telescopic rod; the lighting component 400 is an illumination panel or illumination LEDs.
[0028] On the one hand, compared with the traditional structural design of mounting the camera 200 and the lighting 400 on different components, this application reduces the number of parts in the camera assembly by setting both the camera 200 and the lighting 400 on the mounting component 100, thereby improving the integration of the camera assembly, simplifying the overall structure of the camera assembly, making the overall structure of the camera assembly more compact, and thus reducing the number of parts in the digital booth and simplifying the structure of the digital booth.
[0029] On the other hand, the installation space 111 provides physical protection for the camera 200, reducing damage to the camera 200 caused by external collisions and extending the service life of the camera 200; at the same time, it also provides a space to accommodate the camera 200, reducing the overall size of the camera assembly, which helps to achieve a miniaturized and compact design of the camera assembly, thereby helping to achieve a miniaturized and compact design of the digital exhibition stand.
[0030] On the other hand, the adjustable component 300 allows for flexible adjustment of the position of the camera component 200, improving the adaptability of the camera component and expanding its application scenarios, thereby broadening the application scenarios of the digital exhibition stand.
[0031] Reference Figures 1 to 3 as well as Figures 5 to 7In one embodiment, the mounting component 100 includes a mounting body 110 and a first sealing body 120. The mounting space 111 and the first opening 112 are disposed on the mounting body 110. The surface of the mounting body 110 where the first opening 112 is disposed is an opening surface 113. The opening surface 113 is provided with a mounting groove 114, and the lighting component 400 is embedded in the mounting groove 114. The first sealing body 120 is disposed on the mounting body 110 and seals the opening of the mounting groove 114.
[0032] In this embodiment, the mounting body 110 is the main structure of the mounting container such as the mounting shell, mounting box, or mounting cylinder, and the lighting element 400 is completely embedded in the mounting groove 114; the first sealing body 120 is a sealing plate, and the first sealing body 120 completely covers the groove of the mounting groove 114.
[0033] The mounting groove 114 not only provides physical protection for the lighting element 400, reducing the risk of damage caused by external impacts and effectively extending its service life, but also serves as a light-blocking element on the inner wall of the mounting groove 114. This constrains the light emission direction of the lighting element 400, ensuring that light only shines on the opening surface 113, thus guaranteeing the illumination effect of the area to be captured. Furthermore, by utilizing the unused space of the opening surface 113 to create the mounting groove 114 and integrating the lighting element 400 within it, the need for an additional independent mounting bracket for the lighting element 400 is eliminated, reducing the number of components. This also makes the camera assembly structure more compact, contributing to miniaturization.
[0034] In addition, to further improve the lighting effect of the lighting component 400, the inner wall of the mounting groove 114 is a ring-shaped enclosed structure.
[0035] Reference Figure 6 and Figure 7 In one embodiment, the lighting element 400 is disposed around the camera element 200. In this embodiment, the mounting groove 114 is an annular groove disposed along the circumference of the camera element 200, and the lighting element 400 has an annular structure and is disposed within the mounting groove 114 along the circumference of the camera element 200.
[0036] The ring-shaped illumination element 400 can illuminate the area to be captured from all sides of the camera element 200, making the surface of the object to be captured more uniformly lit, reducing the risk of loss of image details due to uneven lighting, and improving the image acquisition quality.
[0037] Meanwhile, the lighting element 400 is arranged around the camera element 200, and its light emission direction can be more accurately focused within the field of view of the camera element 200, reducing the scattering and waste of light to non-target areas, so that more light can directly act on the area to be collected, improving the light utilization rate.
[0038] Reference Figure 6 and Figure 7 In one embodiment, the lighting element 400 is detachably mounted in the mounting recess 114.
[0039] In this embodiment, the lighting element 400 is detachably mounted on the bottom of the mounting groove 114 by connecting screws; it is understood that the lighting element 400 can also be detachably mounted in the mounting groove 114 by a snap-fit structure, plug-in structure or magnetic structure, or it can be mounted in the mounting groove 114 by welding structure or adhesive structure.
[0040] The detachable design of the illuminator 400 not only simplifies the disassembly and assembly process and reduces the difficulty of disassembly and assembly, but also allows for flexible replacement of different types of illuminators 400 according to different usage scenarios and shooting needs. The camera components have stronger scene adaptability, thus easily meeting diverse shooting needs.
[0041] Reference Figure 5 , Figure 7 as well as Figure 8 In one embodiment, the first sealing body 120 includes a mounting structure 121 and a light-transmitting structure 122. The mounting structure 121 is detachably mounted on the mounting body 110. The light-transmitting structure 122 is disposed on the mounting structure 121 and blocks the opening of the mounting groove 114, so as to allow the illumination light emitted by the illumination element 400 to be transmitted to the area to be collected.
[0042] In this embodiment, the mounting structure 121 is the main structure of the first sealing body 120. The mounting structure 121 is provided with a buckle 1211, and the inner wall of the mounting groove 114 is provided with a slot. The buckle 1211 is detachably snapped into the slot. It is understood that the mounting structure 121 may also have a slot, and the inner wall of the mounting groove 114 may have a buckle 1211. The light-transmitting structure 122 is a transparent or semi-transparent lens or other component capable of light transmission, and it completely covers the opening of the mounting groove 114. For ease of manufacturing, the light-transmitting structure 122 and the mounting structure 121 are integrally formed. It is understood that the light-transmitting structure 122 may also be fixedly installed onto the mounting structure 121 via a snap-fit structure, plug-in structure, magnetic structure, screw structure, welding structure, or adhesive structure.
[0043] The light-transmitting structure 122 ensures that the light emitted by the illuminator 400 can smoothly illuminate the area to be collected. Simultaneously, the light-transmitting structure 122 seals the opening of the mounting groove 114, forming a physical barrier to prevent dust, moisture, foreign objects, and other external impurities from entering the mounting groove 114 and corroding the illuminator 400, thus extending its service life. It also reduces the risk of damage to the illuminator 400 due to external impacts. Combined with the protective function of the mounting groove 114, this further enhances the safety of the illuminator 400 in use.
[0044] In addition, when the lighting component 400 needs to be inspected or replaced, only the first sealing body 120 needs to be removed to take out the lighting component 400, which is simple and efficient and reduces the difficulty of maintenance. At the same time, if the light-transmitting structure 122 is worn, dirty or damaged, the sealing body can also be removed and replaced separately without replacing the entire mounting component 100, which reduces maintenance costs.
[0045] Reference Figure 1 , Figure 5 as well as Figure 8 In one embodiment, the surface of the first sealing body 120 away from the bottom of the mounting groove 114 is a protective surface 1212, and the camera 200 has a camera surface 211, which is located on the side of the protective surface 1212 near the bottom of the mounting groove 114.
[0046] In this embodiment, the protective surface 1212 is the surface of the mounting structure 121 that is away from the bottom of the mounting groove 114, and the imaging surface 211 is the surface of the main structure of the camera 200 that faces the area to be captured; the surface of the light-transmitting structure 122 that is away from the bottom of the mounting groove 114 is the light-transmitting surface 1221, and the light-transmitting surface 1221 is located on the side of the protective surface 1212 that is close to the bottom of the mounting groove 114.
[0047] When the camera assembly is placed on the external support component and the protective surface 1212 is in contact with the external support component, the camera surface 211 will remain spaced from the external support component and will not directly contact it because the camera surface 211 is located on the side of the protective surface 1212 closest to the bottom of the mounting groove 114. This design effectively reduces the risk of the camera surface 211 being scratched and worn by the external support component, ensuring the shooting effect of the camera 200.
[0048] In addition, to minimize the risk of the protective surface 1212 being subjected to hard contact with the load-bearing component, the mounting structure 121 is made of soft rubber; it is understood that the mounting structure 121 may also be made of hard rubber.
[0049] Reference Figure 1 , Figure 5 , Figure 6 , Figure 9 as well as Figure 10In one embodiment, the mounting body 110 further has a second opening 115 communicating with the mounting space 111, and the mounting component 100 further includes a second sealing body 130, which is detachably mounted on the mounting body 110 for sealing the second opening 115.
[0050] In this embodiment, the second opening 115 and the first opening 112 are arranged opposite to each other along the length of the mounting body 110. Specifically, the first opening 112 and the second opening 115 are respectively arranged on two opposite end faces of the mounting body 110. The second sealing body 130 is a sealing plate that completely covers the second opening 115. The camera 200 is installed into the mounting space 111 through the second opening 115. Specifically, the second sealing body 130 is provided with a connecting through hole, and a connecting protrusion 140 is provided in the mounting space 111. The connecting protrusion 140 is a solid structure and is integrally formed with the mounting body 110. The connecting protrusion 140 is provided with a threaded hole. The second sealing body 130 is detachably installed on the mounting body 110 by means of connecting screws sequentially passing through the connecting through hole and the threaded hole and engaging with the threaded hole wall. It can be understood that the second sealing body 130 can also be detachably installed on the mounting body 110 by means of a snap-fit structure, a plug-in structure, or a magnetic structure.
[0051] The second opening 115 provides an operating channel for the components within the installation space 111, which not only facilitates assembly, but also allows for quick access to the internal components by simply removing the second sealing body 130 when these internal components need to be inspected or replaced in the future, thus shortening maintenance time and improving operating efficiency.
[0052] In addition, the connecting through hole is located on the end face of the second sealing body 130 away from the mounting body 110. To ensure the aesthetics of the camera assembly, a decorative piece 150 is provided on the end face of the second sealing body 130 away from the mounting body 110. The decorative piece 150 completely covers the end face of the second sealing body 130 away from the mounting body 110.
[0053] Reference Figure 1 and Figure 6 In one embodiment, the mounting body 110 is provided with a first heat dissipation hole 116 extending into the mounting space 111. The first heat dissipation hole 116 serves to dissipate heat.
[0054] In addition, to ensure the aesthetics of the mounting body 110, a first clearance groove 117 is provided on the end face of the mounting body 110 near the first opening 112, and a first heat dissipation hole 116 is provided on the inner wall surface of the first clearance groove 117; to improve heat dissipation efficiency, there are multiple first heat dissipation holes 116, and the multiple first heat dissipation holes 116 are spaced apart along the circumference of the mounting body 110.
[0055] Reference Figure 2 , Figure 3 as well as Figure 10 In one embodiment, the second sealing body 130 is provided with a second heat dissipation hole 131 extending into the installation space 111. The provided second heat dissipation hole 131 serves to dissipate heat.
[0056] In addition, to ensure the aesthetics of the second sealing body 130, a second clearance groove 132 is provided on the circumferential surface of the second sealing body 130, and a second heat dissipation hole 131 is provided on the bottom of the second clearance groove 132; to improve heat dissipation efficiency, there are multiple second heat dissipation holes 131, and the multiple second heat dissipation holes 131 are spaced apart along the circumference of the sealing body.
[0057] Reference Figure 3 , Figure 4 , Figure 6 as well as Figure 9 In one embodiment, the mounting member 100 has a connecting structure 160 that is stationary relative to the first opening 112; the adjusting member 300 includes a connecting body 310, which is movably disposed on one of the connecting structure 160 and the camera 200 in a direction close to or away from the first opening 112, and remains relatively stationary with respect to the other; after the relative position of the camera 200 and the first opening 112 is adjusted, the connecting body 310, the connecting structure 160 and the camera 200 remain relatively stationary.
[0058] In this embodiment, the connection structure 160 remaining stationary relative to the first opening 112 means that the relative position and orientation of the connection structure 160 and the first opening 112 remain fixed and will not shift or deflect. The connection structure 160 and the connecting body 310 can adopt a sliding fit design, specifically, a combination of slide rail and slider, slide groove and slide bar, or guide post and guide sleeve. To ensure that the position of the camera 200 remains stable after adjustment, a locking component can be added to the connection structure 160 or the connecting body 310. Through the locking action of the locking component, the connection structure 160 and the connecting body 310 can be reliably locked and fixed.
[0059] Because the connector 310 is movably mounted on one of the connecting structure 160 and the camera 200 along a direction approaching or moving away from the first opening 112, while remaining relatively stationary with respect to the other, and the connecting structure 160 itself remains stationary relative to the first opening 112, the relative distance between the camera 200 and the first opening 112 can be changed by moving the connector 310, thus enabling flexible adjustment of the camera 200's position. After adjustment, the connector 310, connecting structure 160, and camera 200 remain relatively stationary, ensuring the stability of the camera 200's position after adjustment and guaranteeing the consistency and reliability of image acquisition.
[0060] Reference Figure 4 , Figure 6 , Figure 9 as well as Figure 11 In one embodiment, the connecting structure 160 is provided with a first connecting hole 161, the camera 200 has a control structure 220, the control structure 220 is provided with a second connecting hole 221, and at least one of the first connecting hole 161 and the second connecting hole 221 is a threaded hole; the connecting body 310 passes through the first connecting hole 161 and the second connecting hole 221 and is threadedly engaged with the hole wall of the threaded hole in the first connecting hole 161 and the second connecting hole 221.
[0061] In this embodiment, the connecting structure 160 is a physical connecting component arranged along the length direction of the mounting member 100, such as a connecting post, connecting block, or connecting rod. The connecting structure 160 is disposed within the mounting space 111 and is integrally formed with the mounting body 110. The first connecting hole 161 is arranged along the length direction of the connecting structure 160. The camera member 200 includes a camera body 210 and a control structure 220. The camera surface 211 refers to the surface on the camera body 210 facing the area to be acquired. The camera body 210 is used to acquire images of the area to be acquired through the first opening 112. The control structure 220 is a camera board, such as a PCB (Printed Circuit Board). The control structure 220 is disposed on the camera body 210 and electrically connected to the camera body 210. It is understood that the second connecting hole 221 can also be disposed on other physical structures of the camera member 200, such as the camera body 210.
[0062] The connector 310 is a connecting screw; in one embodiment, both the first connecting hole 161 and the second connecting hole 221 are threaded holes; in another embodiment, either the first connecting hole 161 or the second connecting hole 221 is a threaded hole; when the first connecting hole 161 is a threaded hole and the second connecting hole 221 is a smooth hole, the connector 310 is first inserted into the second connecting hole 221 and then inserted into the first connecting hole 161; when the first connecting hole 161 is a smooth hole and the second connecting hole 221 is a threaded hole, the connector 310 is first inserted into the first connecting hole 161 and then inserted into the second connecting hole 221.
[0063] The threaded engagement between the connector 310 and the threaded hole has a clear displacement correspondence. This structural design helps to achieve precise control of the relative distance between the camera 200 and the first opening 112. The adjustment accuracy is higher than that of the sliding adjustment, which can match different shooting distances and focusing requirements and ensure the clarity of image acquisition.
[0064] Meanwhile, the threaded structure itself has a good self-locking function. After adjustment, no additional locking parts are needed to keep the connector 310, the connector structure 160, and the camera 200 stable and relatively stationary. This structural design helps to reduce the number of parts and the difficulty of operation, while ensuring the consistency and reliability of image acquisition.
[0065] Reference Figure 4 , Figure 6 , Figure 9 as well as Figure 11 In one embodiment, the first connecting hole 161 is a threaded hole, the second connecting hole 221 is a smooth hole, and the connector 310 is slidably disposed in the second connecting hole 221 in a direction perpendicular to the extension direction of the second connecting hole 221.
[0066] In this embodiment, the second connecting hole 221 is a through hole penetrating the control structure 220, and the extension direction of the second connecting hole 221 refers to the depth direction of the second connecting hole 221. The second connecting hole 221 is an arc-shaped hole arranged along the circumference of the control structure 220. In this case, the connecting body 310 is slidably disposed in the second connecting hole 221 along the circumference of the control structure 220, thereby driving the camera 200 to be adjusted synchronously along the circumference, that is, the angle of the camera 200 is adjusted by rotation. It can be understood that the second connecting hole 221 can also be a straight hole or other irregularly shaped hole. After the connecting body 310 slides to the set position in the second connecting hole 221, the connecting body 310 keeps the connecting structure 160 and the control structure 220 abutting by means of threaded engagement with the hole wall of the first connecting hole 161, thereby keeping the connecting structure 160 and the control structure 220 relatively stationary.
[0067] By sliding the connector 310 within the second connecting hole 221 in a direction perpendicular to its extension direction, the relative position of the control structure 220 and the first opening 112 can be directly changed, thereby enabling flexible adjustment of the camera component 200's position. This design enhances the flexibility of the camera component 200's position adjustment, allowing it to adapt to diverse shooting needs and further expanding the application scenarios of the camera assembly. Simultaneously, the second connecting hole 221 provides a convenient passage for the connector 310 to pass through, reducing the difficulty of assembly and improving assembly efficiency.
[0068] Reference Figure 4 , Figure 6 , Figure 9 as well as Figure 11 In one embodiment, the connector 310 includes a connecting body 311 and a limiting structure 312. The connecting body 311 passes through the first connecting hole 161 and the second connecting hole 221 and is threadedly engaged with the hole walls of the threaded holes in the first connecting hole 161 and the second connecting hole 221. The limiting structure 312 is disposed on the connecting body 311, and the hole wall of the first connecting hole 161 or the hole wall of the second connecting hole 221 prevents the limiting structure 312 from passing through. The adjusting member 300 also includes an adjusting body 320, which is an elastic structure capable of elastic deformation. The adjusting body 320 is clamped between the limiting structure 312 and the control structure 220. There are multiple connecting structures 160, connectors 310, and adjusting bodies 320. Multiple connecting structures 160 are spaced apart, and multiple connectors 310 and multiple adjusting bodies 320 are respectively arranged in one-to-one correspondence with multiple connecting structures 160.
[0069] In this embodiment, the connecting body 310 is a connecting screw, the connecting main body 311 is a connecting screw rod, and the limiting structure 312 is a screw head. The limiting structure 312 is coaxially arranged with the connecting main body 311 and is an integrally formed part. The diameter of the limiting structure 312 is larger than the diameter of the connecting main body 311, and larger than the diameter of the first connecting hole 161 and the diameter of the second connecting hole 221. The adjusting body 320 is a component capable of elastic deformation, such as an adjusting spring, adjusting sheet, adjusting silicone, or adjusting rubber. The opposite ends of the adjusting body 320 are respectively pressed against the limiting structure 312 and the control structure 220. It can be understood that the adjusting body 320 can also be multiple shims used in combination, and the number of shims can be flexibly adjusted according to the distance required between the limiting structure 312 and the control structure 220.
[0070] There are two connecting structures 160, which are spaced apart circumferentially along the control structure 220. The number of first connecting holes 161, second connecting holes 221, connecting bodies 310, and adjusting bodies 320 is the same as the number of connecting structures 160. The two first connecting holes 161 are respectively provided in a one-to-one correspondence with the two connecting structures 160, and the two second connecting holes 221 are respectively provided in a one-to-one correspondence with the two connecting structures 160. It can be understood that the number of connecting structures 160 can also be three, four, or more.
[0071] On one hand, the multiple adjustable bodies 320 correspond to different connection positions on the control structure 220. When the compression of the adjustable bodies 320 at each connection position is changed by adjusting the connecting body 311, the difference in elastic deformation of the different adjustable bodies 320 will cause the control structure 220 to tilt around a certain axis, thereby changing the installation angle of the control structure 220 and the camera 200. For example, if the compression of one adjustable body 320 is larger and the compression of the other side is smaller, the control structure 220 will tilt towards the side with larger compression, thereby achieving fine-tuning of the angle. This design can achieve multi-angle fine-tuning by adjusting the connecting body 311 alone, with a simple structure and flexible adjustment.
[0072] On the other hand, the multiple connecting structures 160, connecting bodies 310 and adjusting bodies 320 are arranged in a one-to-one correspondence and at intervals to form a multi-point support structure, which enhances the stability of the camera component 200 installation.
[0073] On the other hand, the adjusting body 320 is an elastic structure, fixed between the limiting structure 312 and the control structure 220, which can buffer vibration and impact during assembly or use, and reduce wear caused by hard contact; at the same time, it can accommodate the machining errors of parts, reduce the assembly accuracy requirements, and improve assembly efficiency.
[0074] In another embodiment, the connector 310 includes a connector body 311 and a limiting structure 312. The connector body 311 passes through the first connecting hole 161 and the second connecting hole 221 and is threadedly engaged with the hole walls of the threaded holes in the first connecting hole 161 and the second connecting hole 221. The limiting structure 312 is disposed on the connector body 311, and the hole wall of the first connecting hole 161 or the hole wall of the second connecting hole 221 prevents the limiting structure 312 from passing through.
[0075] The adjusting component 300 also includes an adjusting body 320, which is an elastic structure capable of elastic deformation. The adjusting body 320 is clamped and fixed between the connecting structure 160 and the control structure 220. There are multiple connecting structures 160, connecting bodies 310 and adjusting bodies 320. Multiple connecting structures 160 are spaced apart, and multiple connecting bodies 310 and multiple adjusting bodies 320 are respectively arranged in one-to-one correspondence with multiple connecting structures 160.
[0076] In this embodiment, the connecting body 310 is a connecting screw, the connecting main body 311 is a connecting screw rod, and the limiting structure 312 is a screw head. The limiting structure 312 is coaxially arranged with the connecting main body 311 and is an integrally formed part. The diameter of the limiting structure 312 is larger than the diameter of the connecting main body 311, and larger than the diameter of the first connecting hole 161 and the diameter of the second connecting hole 221. The adjusting body 320 is a component capable of elastic deformation, such as an adjusting spring, adjusting sheet, adjusting silicone, or adjusting rubber. The opposite ends of the adjusting body 320 are respectively kept in contact with the connecting structure 160 and the control structure 220. It can be understood that the adjusting body 320 can also be multiple shims used in combination, and the number of shims can be flexibly adjusted according to the distance required between the connecting structure 160 and the control structure 220.
[0077] There are two connecting structures 160, which are spaced apart circumferentially along the control structure 220. The number of first connecting holes 161, second connecting holes 221, connecting bodies 310, and adjusting bodies 320 is the same as the number of connecting structures 160. The two first connecting holes 161 are respectively provided in a one-to-one correspondence with the two connecting structures 160, and the two second connecting holes 221 are respectively provided in a one-to-one correspondence with the two connecting structures 160. It can be understood that the number of connecting structures 160 can also be three, four, or more.
[0078] Reference Figures 1 to 12 According to another aspect of this application, embodiments of this application also provide a digital booth, which includes a booth body 500 and the aforementioned camera component. The camera component is disposed on the booth body 500 and electrically connected to the booth body 500.
[0079] In this embodiment of the application, the booth body 500 includes a bottom 510 and a support 520. The camera component is disposed on the support 520 and electrically connected to the bottom 510 for capturing images on the surface of the bottom 510 near the camera component. The surface of the bottom 510 near the camera component forms the area to be captured. The support 520 is disposed on the bottom 510 and can drive the camera component to move closer to or away from the bottom 510.
[0080] The main body of the digital booth (model 500) is designed to house the camera module, which in turn focuses on capturing images of the area to be captured. These two functions are independent and do not interfere with each other. This modular design allows for the enhancement of the performance of each component according to actual needs, thereby improving the overall performance of the digital booth.
[0081] In summary, implementing the camera assembly and digital display stand provided in this embodiment has at least the following beneficial technical effects: On the one hand, compared with the traditional structural design of installing the camera 200 and the lighting 400 on different components, this application reduces the number of parts in the camera assembly by setting both the camera 200 and the lighting 400 on the mounting component 100, thereby improving the integration of the camera assembly, simplifying the overall structure of the camera assembly, making the overall structure of the camera assembly more compact, and thus reducing the number of parts in the digital display stand and simplifying the structure of the digital display stand.
[0082] On the other hand, the installation space 111 provides physical protection for the camera 200, reducing damage to the camera 200 caused by external collisions and extending the service life of the camera 200; at the same time, it also provides a space to accommodate the camera 200, reducing the overall size of the camera assembly, which helps to achieve a miniaturized and compact design of the camera assembly, thereby helping to achieve a miniaturized and compact design of the digital exhibition stand.
[0083] On the other hand, the adjustable component 300 allows for flexible adjustment of the position of the camera component 200, improving the adaptability of the camera component and expanding its application scenarios, thereby broadening the application scenarios of the digital exhibition stand.
[0084] 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. A camera assembly, characterized in that, include: The mounting component (100) has a mounting space (111) and a first opening (112) communicating with the mounting space (111); A camera (200) is disposed within the mounting space (111) for capturing images of an area to be captured through the first opening (112). The area to be captured is located on one side of the mounting component (100) and is disposed corresponding to the first opening (112). An adjusting member (300) is disposed on the mounting member (100) for adjusting the position of the camera (200) relative to the first opening (112); An illumination element (400) is disposed on the mounting element (100) for providing illumination to the area to be collected.
2. The camera assembly according to claim 1, characterized in that, The mounting component (100) has a connection structure (160) that is stationary relative to the first opening (112); The adjusting member (300) includes a connecting body (310) which is movably disposed on one of the connecting structure (160) and the camera (200) in a direction close to or away from the first opening (112) and remains relatively stationary with respect to the other. After the relative positions of the camera (200) and the first opening (112) are adjusted, the connector (310), the connecting structure (160) and the camera (200) remain relatively stationary.
3. The camera assembly according to claim 2, characterized in that, The connecting structure (160) is provided with a first connecting hole (161), the camera (200) has a control structure (220), the control structure (220) is provided with a second connecting hole (221), and at least one of the first connecting hole (161) and the second connecting hole (221) is a threaded hole; The connector (310) passes through the first connecting hole (161) and the second connecting hole (221) and is threaded into the hole wall of the threaded hole in the first connecting hole (161) and the second connecting hole (221).
4. The camera assembly according to claim 3, characterized in that, The first connecting hole (161) is a threaded hole, the second connecting hole (221) is a smooth hole, and the connecting body (310) can be slidably disposed in the second connecting hole (221) in a direction perpendicular to the extension direction of the second connecting hole (221).
5. The camera assembly according to claim 3, characterized in that, The connector (310) includes a connector body (311) and a limiting structure (312). The connector body (311) passes through the first connecting hole (161) and the second connecting hole (221) and is threadedly engaged with the hole walls of the threaded holes in the first connecting hole (161) and the second connecting hole (221). The limiting structure (312) is disposed on the connector body (311), and the hole wall of the first connecting hole (161) or the hole wall of the second connecting hole (221) prevents the limiting structure (312) from passing through. The adjusting member (300) further includes an adjusting body (320), which is an elastic structure capable of elastic deformation; the adjusting body (320) is clamped between the limiting structure (312) and the control structure (220), or the adjusting body (320) is clamped and fixed between the connecting structure (160) and the control structure (220); The number of the connecting structure (160), the connecting body (310), and the adjusting body (320) is multiple. The multiple connecting structures (160) are arranged at intervals, and the multiple connecting bodies (310) and the multiple adjusting bodies (320) are respectively arranged in a one-to-one correspondence with the multiple connecting structures (160).
6. The camera assembly according to any one of claims 1 to 5, characterized in that, The mounting component (100) includes a mounting body (110) and a first sealing body (120), and the mounting space (111) and the first opening (112) are disposed on the mounting body (110); The surface of the mounting body (110) with the first opening (112) is an opening surface (113), and an installation groove (114) is provided on the opening surface (113). The lighting element (400) is embedded in the installation groove (114). The first sealing body (120) is provided on the mounting body (110) and seals the opening of the installation groove (114).
7. The camera assembly according to claim 6, characterized in that, The lighting element (400) is arranged around the camera element (200); and / or, The lighting element (400) is detachably installed in the mounting groove (114).
8. The camera assembly according to claim 6, characterized in that, The first sealing body (120) includes an installation structure (121) and a light-transmitting structure (122), wherein the installation structure (121) is detachably installed on the installation body (110); The light-transmitting structure (122) is disposed on the mounting structure (121) and seals the opening of the mounting groove (114), so as to allow the illumination light emitted by the illumination element (400) to be transmitted to the area to be collected; and / or, The surface of the first sealing body (120) away from the bottom of the mounting groove (114) is a protective surface (1212), and the camera (200) has a camera surface (211), which is located on the side of the protective surface (1212) near the bottom of the mounting groove (114).
9. The camera assembly according to claim 6, characterized in that, The mounting body (110) is provided with a first heat dissipation hole (116) extending into the mounting space (111); and / or, The mounting body (110) also has a second opening (115) communicating with the mounting space (111), and the mounting component (100) further includes a second sealing body (130), which is detachably mounted on the mounting body (110) for sealing the second opening (115).
10. A digital display stand, characterized in that, The device includes a booth body (500) and a camera assembly as described in any one of claims 1 to 9, the camera assembly being disposed on the booth body (500) and electrically connected to the booth body (500).