Non-inductive handover device
The separating component and elastic film assembly eliminate the dividing line between the camera housing and the camera lens, solving the problem of clearly affecting underwater shooting at the connection, achieving a sensorless handover effect, and improving the user experience and appearance texture.
Patent Information
- Application Number
- CN202420781388.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-04-16
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-04-16
AI Technical Summary
The dividing line between the housing of the existing camera equipment and the camera lens is more obvious, affecting the underwater shooting effect.
The elastic film assembly is used to connect the camera housing and the camera lens, and the outer film and inner film made of highly elastic materials eliminate the boundary line, and the connection is hidden through the cross-layer assembly and network layer, combining color matching to enhance concealment.
It realizes the invisible interception between the camera case and the camera lens, improves the smoothness and user experience of underwater shooting, and enhances the appearance texture and safety performance.
Smart Images

Figure CN223092274U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of non - inductive connection, and more specifically to a device for non - inductive connection. Background Art
[0002] Non - inductive connection means that the connection or junction between two objects has as little impact as possible on the human visual and tactile systems, making the junction difficult to detect. In other words, it is to eliminate the obvious feeling and dividing line at the junction of objects, making it smoother, more natural, and continuous. In the fields of product design, industrial production, etc., non - inductive connection usually represents excellent design and manufacturing processes. By reducing or eliminating obvious differences such as gaps, edges, and colors between different components, the whole product looks more unified, complete, and provides a better user experience. For example, in furniture design, non - inductive connection can provide a more smooth and comfortable feeling, facilitating long - term use by users. In the field of automobile manufacturing, non - inductive connection can improve the appearance texture and safety performance of automobiles.
[0003] When an underwater camera device needs to be completely or partially immersed in water for shooting, the junction connecting the camera device housing and the camera lens part will become an obvious flaw. In existing connection devices, the dividing line at the junction is relatively obvious, which is likely to affect the line of sight and cause interference from the gap at the junction during underwater shooting.
[0004] In view of this, the utility model provides a device for non - inductive connection. Summary of the Utility Model
[0005] The utility model provides a device for non - inductive connection, which includes a camera device housing. A camera lens is movably connected inside the camera device housing, and a connection component is fixedly connected between the inner wall of the camera device housing and the outer wall of the camera lens.
[0006] An elastic film component is fixedly connected inside the connection component, and an intersection layer component is fixedly connected inside the elastic film component.
[0007] As a further improvement of this technical solution, the connection component includes an outer ring, the outer ring is movably connected inside a groove on the inner wall of the camera device housing, an inner ring is movably connected inside a groove on the outer wall of the camera lens, and an elastic film component is fixedly connected between the inner ring and the outer ring. The connection component is used to connect the elastic film component between the camera device housing and the camera lens.
[0008] As a further improvement of the technical solution, the elastic film assembly includes an outer film, the outer film is fixedly connected to the inner wall of the outer ring, the inner film is fixedly connected to the outer wall of the inner ring, a cross-layer assembly is arranged between the outer film and the inner film, both the outer film and the inner film are made of highly elastic materials, and the elastic film assembly is used to eliminate obvious dividing lines.
[0009] As a further improvement of the technical solution, the cross-layer assembly includes a network layer, the network layer is fixedly connected between the outer film and the inner film, a plurality of mesh holes are arranged inside the network layer, and the cross-layer assembly is used to conceal the connection part.
[0010] As a further improvement of the technical solution, the connection part between the camera device housing and the outer film is provided with a similar color, the connection parts between the camera lens and the inner film are all provided with a similar color, and the colors between the outer film and the inner film gradually change, which is used for concealment matching with the colors of surrounding objects.
[0011] Compared with the prior art, the beneficial effects of the present utility model are as follows:
[0012] The elastic film assembly connects the camera device housing and the camera lens through the connection assembly. The elastic film assembly provides sufficient softness and stretchability, so that the connection part can deform freely and eliminate obvious dividing lines. The cross-layer assembly makes the elastic film assembly softer, and through various shape changes and overlaps, the connection part is effectively concealed. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Next, with reference to the drawings, the present utility model will be described in more detail by way of example. In the drawings:
[0014] Figure 1 is a schematic diagram of the overall structure of the present utility model;
[0015] Figure 2 is a schematic diagram of the internal structure of the present utility model;
[0016] Figure 3 is a schematic diagram of the connection structure of the present utility model.
[0017] The meanings of each label in the figure are as follows: 1. Camera device housing; 11. Camera lens; 12. Connection assembly; 120. Outer ring; 121. Inner ring; 13. Elastic film assembly; 130. Outer film; 131. Inner film; 14. Cross-layer assembly; 140. Network layer; 141. Mesh hole. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0018] Such as Figures 1 - 3As shown in the figure, the device includes a camera device housing 1. A camera lens 11 is movably connected inside the camera device housing 1. A connection component 12 is fixedly connected between the inner wall of the camera device housing 1 and the outer wall of the camera lens 11;
[0019] An elastic film component 13 is fixedly connected inside the connection component 12. A cross-layer component 14 is fixedly connected inside the elastic film component 13;
[0020] First, the specific structure of the connection component 12 is disclosed. The connection component 12 includes an outer ring 120. The outer ring 120 is movably connected inside a groove on the inner wall of the camera device housing 1. An inner ring 121 is movably connected inside a groove on the outer wall of the camera lens 11. An elastic film component 13 is fixedly connected between the inner ring 121 and the outer ring 120. The connection component 12 is used to connect the elastic film component 13 between the camera device housing 1 and the camera lens 11. By clamping the outer ring 120 inside the camera device housing 1 and simultaneously clamping the inner ring 121 inside the inner wall of the camera lens 11, the elastic film component 13 is fixed between the camera device housing 1 and the camera lens 11;
[0021] According to the above disclosure of the specific structure of the elastic film component 13, the elastic film component 13 includes an outer film 130. The outer film 130 is fixedly connected to the inner wall of the outer ring 120. An inner film 131 is fixedly connected to the outer wall of the inner ring 121. A cross-layer component 14 is provided between the outer film 130 and the inner film 131. Both the outer film 130 and the inner film 131 are made of highly elastic materials. The elastic film component 13 is used to eliminate obvious boundary lines. By making the outer film 130 and the inner film 131 of highly elastic materials such as silicone, elastic polymers, etc., it is convenient to provide sufficient softness and stretchability according to the material properties, so that the connection part between the camera device housing 1 and the camera lens 11 can deform freely and the obvious boundary lines can be eliminated;
[0022] According to the above disclosure of the specific structure of the cross-layer component 14, the cross-layer component 14 includes a network layer 140. The network layer 140 is fixedly connected between the outer film 130 and the inner film 131. A plurality of mesh holes 141 are provided inside the network layer 140. The cross-layer component 14 is used to conceal the connection part. By providing a plurality of tiny mesh holes 141 inside the network layer 140, the elastic film layer is made softer, and through the changes and overlaps of the shapes of the mesh holes 141 in the network layer 140, the connection part is effectively concealed.
[0023] The improvement of this embodiment lies in: by clamping the outer ring 120 inside the housing 1 of the imaging device and clamping the inner ring 121 inside the inner wall of the camera lens 11, the elastic film assembly 13 is fixed between the housing 1 of the imaging device and the camera lens 11. By making the outer film 130 and the inner film 131 of a highly elastic material such as silicone, elastic polymer, etc., it is convenient to provide sufficient softness and stretchability according to the material properties, enabling the connection between the housing 1 of the imaging device and the camera lens 11 to deform freely and eliminating obvious demarcation lines. By providing a plurality of tiny mesh holes 141 inside the network layer 140, the elastic film layer becomes softer, and through the changes and overlaps of the various shapes of the mesh holes 141 in the network layer 140, the connection is effectively hidden;
[0024] To improve the concealment of the elastic film assembly 13 and the cross-layer assembly 14, therefore, similar colors are provided at the connection between the housing 1 of the imaging device and the outer film 130, and similar colors are provided at the connection between the camera lens 11 and the inner film 131. The colors between the outer film 130 and the inner film 131 progress gradually to match the colors of surrounding objects for concealment. According to different application scenarios, different colors are introduced to the outer film 130 and the inner film 131 respectively, making the colors at the connections between the outer film 130 and the inner film 131 and the housing 1 of the imaging device and the camera lens 11 closer. Through color adjustment, the connection becomes more difficult to detect;
[0025] As shown above, the working principle of this solution is as follows:
[0026] The elastic film assembly 13 connects the camera device housing 1 and the camera lens 11 through the connection component 12. The connection component 12 fixes the elastic film assembly 13 between the camera device housing 1 and the camera lens 11 by clamping the outer ring 120 inside the camera device housing 1 and the inner ring 121 on the inner wall of the camera lens 11. The elastic film assembly 13 provides sufficient softness and stretchability, enabling the connection part to deform freely and eliminating obvious demarcation lines. The elastic film assembly 13 is made of the outer film 130 and the inner film 131 using highly elastic materials such as silica gel and elastic polymers, which can conveniently provide sufficient softness and stretchability according to the material characteristics, enabling the connection part between the camera device housing 1 and the camera lens 11 to deform freely and eliminating obvious demarcation lines. The cross-layer component 14 makes the elastic film assembly 13 softer and effectively hides the connection part. The cross-layer component 14 is provided with a plurality of tiny mesh holes 141 inside the network layer 140, making the elastic film layer softer. Through the variation and overlap of the shapes of the mesh holes 141 in the network layer 140, the connection part is effectively hidden. At the same time, according to different application scenarios, different colors are introduced to the outer film 130 and the inner film 131 respectively, making the colors of the connections between the outer film 130 and the inner film 131 and the camera device housing 1 and the camera lens 11 closer. Through color adjustment, the connection part is made more difficult to detect.
[0027] The above shows and describes the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification are only the preferred examples of the present invention and do not limit the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection of the present invention is defined by the appended claims and their equivalents.
Claims
1. An apparatus for seamless handover, comprising a camera device housing (1), characterized in that: Inside the housing (1) of the imaging device, a camera lens (11) is movably connected, and a connection component (12) is fixedly connected between the inner wall of the housing (1) of the imaging device and the outer wall of the camera lens (11). Inside the connection component (12), an elastic film component (13) is fixedly connected, and inside the elastic film component (13), an intersecting layer component (14) is fixedly connected.
2. The device for seamless handover according to claim 1, characterized in that: The connection component (12) includes an outer ring (120) movably connected inside a groove on the inner wall of the housing (1) of the imaging device. An inner ring (121) is movably connected inside a groove on the outer wall of the camera lens (11). An elastic film component (13) is fixedly connected between the inner ring (121) and the outer ring (120). The connection component (12) is used to connect the elastic film component (13) between the housing (1) of the imaging device and the camera lens (11).
3. The device for seamless handover according to claim 2, characterized in that: The elastic film component (13) includes an outer film (130) fixedly connected to the inner wall of the outer ring (120). An inner film (131) is fixedly connected to the outer wall of the inner ring (121). An intersecting layer component (14) is provided between the outer film (130) and the inner film (131). Both the outer film (130) and the inner film (131) are made of highly elastic materials. The elastic film component (13) is used to eliminate obvious demarcation lines.
4. The device for seamless handover according to claim 3, characterized in that: The intersecting layer component (14) includes a network layer (140) fixedly connected between the outer film (130) and the inner film (131). A plurality of mesh holes (141) are provided inside the network layer (140). The intersecting layer component (14) is used to conceal the connection points.