Intelligent glasses
By using a hinge assembly in smart glasses to achieve electrical connection between the temples and the frame, the problems of complexity and high cost of electrical connection in existing technologies are solved, improving the aesthetics and wearing comfort of the product, while maintaining the stability and continuity of the electrical connection.
Patent Information
- Application Number
- CN202520785997.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-23
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-04-23
AI Technical Summary
In existing smart glasses, the electrical connection between the temples and the frame is usually achieved through complex cable layouts or additional connectors, which increases manufacturing costs and affects aesthetics and wearing comfort.
A hinge assembly is used to electrically connect the temples and the frame. The hinge assembly includes a hinge, a flexible circuit board, and electrical connection wires, which realizes the electrical connection between the temples and the frame in both unfolded and folded states, simplifying the circuit design and saving internal space.
This reduces manufacturing costs, eliminates the need for additional connectors, improves the product's aesthetics and wearing comfort, and ensures the stability and continuity of electrical connections.
Smart Images

Figure CN223955895U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The embodiments of the present application relate to the field of wearable technology, and more particularly, to a smart glasses. BACKGROUND
[0002] In the prior art, the temple and the frame of the glasses are generally connected by a hinge or other mechanical connection structure to facilitate the rotation between the temple and the frame.
[0003] In order to realize the electrical connection between the temple and the frame, the smart glasses often realize the electrical connection between the temple and the frame through a complex cable layout or an additional connector, which not only increases the manufacturing cost, but also affects the appearance and wearing comfort of the product.
[0004] Therefore, it is necessary to provide a new technical solution to solve the above technical problems. UTILITY MODEL CONTENT
[0005] The purpose of the present application is to provide a new technical solution for smart glasses.
[0006] The embodiments of the present application provide a kind of smart glasses. The smart glasses include: rotating shaft component, the rotating shaft component connects the temple and the frame in the same side in the smart glasses, to make the temple relative to the frame in unfolded state and folded state;
[0007] Wherein, in the temple in unfolded state and folded state, the rotating shaft component is electrically connected with the temple and the frame in the same side.
[0008] Optionally, the rotating shaft component includes a rotating shaft part, the rotating shaft part and the first module in the temple connected therewith are electrically connected, and the rotating shaft part and the second module in the frame connected therewith are electrically connected.
[0009] Optionally, the rotating shaft part is electrically connected with the first module and the second module by a flexible circuit board.
[0010] Optionally, the rotating shaft component further includes a first connecting piece and a second connecting piece;
[0011] The first connecting piece is fixedly connected with the temple and can rotate relative to the rotating shaft part;
[0012] One end of the second connecting piece is mechanically connected with the frame, and the other end of the second connecting piece is mechanically connected with the rotating shaft part.
[0013] Optionally, the rotating shaft part is provided with an electric connection line, one end of the electric connection line is electrically connected with the first module, and the other end of the electric connection line is electrically connected with the second module.
[0014] Optionally, the electrical connection wire is wound around the outer periphery of the rotating shaft.
[0015] Optionally, the electrical connection wire is embedded within the rotating shaft.
[0016] Optionally, the rotating shaft assembly includes a rotating shaft body, a first electrical connector, and a second electrical connector;
[0017] Both the first electrical connector and the second electrical connector are disposed on the rotating shaft body, so that the temple connected to the first electrical connector can rotate relative to the frame connected to the second electrical connector, and the first module in the temple connected to the first electrical connector and the second module in the frame connected to the second electrical connector can be electrically connected.
[0018] Optionally, the first electrical connector is electrically connected to the first module via a flexible circuit board or a cable; and the second electrical connector is electrically connected to the second module via a flexible circuit board or a cable.
[0019] Optionally, the smart glasses include a control module that controls the on / off state of the electrical connection between the temples and the frame.
[0020] According to embodiments of this application, the smart glasses achieve both mechanical and electrical connections between the temples and the frame through a hinge assembly, reducing manufacturing costs and saving internal space by avoiding the use of additional connectors.
[0021] Other features and advantages of this specification will become clear from the following detailed description of exemplary embodiments with reference to the accompanying drawings. Attached Figure Description
[0022] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments of this specification and, together with their description, serve to explain the principles of this specification.
[0023] Figure 1 The diagram shown is a structural schematic of the smart glasses provided in an embodiment of this application (the hinge assembly structure is not shown).
[0024] Figure 2 The diagram shown is a structural schematic of the rotating shaft assembly provided in an embodiment of this application. Figure 1 .
[0025] Figure 3 The diagram shown is a structural schematic of the rotating shaft assembly provided in an embodiment of this application. Figure 2 .
[0026] Figure 4 As shown Figure 3 A schematic diagram of the assembly structure of the central shaft assembly.
[0027] Figure 5 Fig. 1 shows a structure of a hinge assembly provided by an embodiment of the present application Figure 3 .
[0028] Figure 6 Fig. 1 shows a structure of a hinge assembly provided by an embodiment of the present application Figure 4 .
[0029] BRIEF DESCRIPTION OF DRAWINGS
[0030] 1, hinge assembly; 2, temple; 3, frame;
[0031] 10, hinge part; 11, first connecting piece; 12, second connecting piece; 13, hinge body; 14, first electrical connecting piece; 15, second electrical connecting piece; 16, electrical connecting wire; 131, electrode sheet;
[0032] 21, first module; 31, second module. DETAILED DESCRIPTION
[0033] Various exemplary embodiments of the present application will now be described in detail with reference to the accompanying drawings. If it is so determined unless otherwise specifically stated, the relative arrangement of the components and steps, numerical expressions, and numerical values set forth in these embodiments are not limiting of the scope of the present application.
[0034] The following description of at least one exemplary embodiment is merely illustrative in nature and is in no way limiting of the scope of the application or its applications or uses.
[0035] Techniques and equipment known to those of ordinary skill in the relevant art can not be discussed in detail, but should be considered as part of the specification where appropriate.
[0036] In all of the examples shown and discussed herein, any specific values should be interpreted as merely illustrative and not as a limitation. Thus, other examples of the exemplary embodiments can have different values.
[0037] It should be noted that like numbers and letters refer to like items throughout the drawings, and that, once an item is defined in one drawing, it should not require further discussion in subsequent drawings.
[0038] An embodiment of the present application provides a smart glasses. Referring to Figures 1-6 , the smart glasses include: a hinge assembly 1, the hinge assembly 1 connects a temple 2 and a frame 3 in the smart glasses on the same side, so that the temple 2 is in an unfolded state and a folded state relative to the frame 3;
[0039] Wherein, in the unfolded state and the folded state of the temple 2, the hinge assembly 1 electrically connects the temple 2 and the frame 3 on the same side.
[0040] In the embodiment of the present application, the smart glasses mainly include a hinge assembly 1, for example, the smart glasses include two hinge assemblies 1, which include a first hinge assembly and a second hinge assembly.
[0041] The first hinge assembly is used to mechanically connect the temple 2 and the frame 3 on one side of the smart glasses, so that the temple 2 can rotate relative to the frame 3 by means of the first hinge assembly, that is, the temple 2 can rotate to the unfolded state and the folded state relative to the frame 3.
[0042] The second hinge assembly is used to mechanically connect the temple 2 and the frame 3 on the other side of the smart glasses, so that the temple 2 can rotate relative to the frame 3 by means of the second hinge assembly, that is, the temple 2 can rotate to the unfolded state and the folded state relative to the frame 3.
[0043] Wherein, when the temple 2 rotates to the unfolded state relative to the frame 3, the smart glasses can be normally worn on the head of the user. When the temple 2 rotates to the folded state relative to the frame 3, the two temples 2 are stacked on the frame 3, and the smart glasses can be stored.
[0044] In the embodiment of the present application, no matter whether the temple 2 is in the unfolded state or the folded state, the temple 2 and the frame 3 in the smart glasses can be in an electrically connected state by means of the hinge assembly 1. That is, no matter whether the temple 2 is in the unfolded wearing state or the folded storage state, the hinge assembly 1 ensures that the temple 2 and the frame 3 on the same side maintain electrical connection. It can also be understood that, in the embodiment of the present application, whether the temple 2 and the frame 3 in the smart glasses are in an electrically connected state is irrelevant to the state of the temple 2. In the embodiment of the present application, the temple 2 can ensure the continuity and stability of signal transmission when changing the form.
[0045] For example, the smart glasses include a first hinge assembly and a second hinge assembly, the first hinge assembly realizes mechanical connection and electrical connection of the temple 2 and the frame 3 on one side of the smart glasses, and the second hinge assembly realizes mechanical connection and electrical connection of the temple 2 and the frame 3 on the other side of the smart glasses. In the smart glasses, the first hinge assembly can be a positive electrode connecting piece in the smart glasses circuit, the second hinge assembly can be a negative electrode connecting piece in the smart glasses circuit, and vice versa.
[0046] For example, the first hinge assembly as a positive electrode connecting piece in the circuit can realize connection of the positive electrode of the power supply in the temple 2 and the module in the frame 3. The second hinge assembly as a negative electrode connecting piece in the circuit can realize connection of the negative electrode of the power supply in the temple 2 and the module in the frame 3.
[0047] Exemplarily, the rotating shaft assembly 1 is an electrical connector, i.e., the rotating shaft assembly 1 has electrical conductivity. For example, the material of the rotating shaft assembly 1 can be defined as a metal conductive material, or the rotating shaft assembly 1 is provided with an electrical connection line or an electrical connector, or the rotating shaft assembly 1 is plated with a conductive substance.
[0048] In the embodiment, the smart glasses realize both mechanical connection and electrical connection of the temple 2 and the frame 3 through the rotating shaft assembly 1, which reduces the manufacturing cost, avoids the use of additional connectors, and saves the internal space of the smart glasses. Specifically, the rotating shaft assembly 1 realizes mechanical connection of the temple 2 and the frame 3 on one hand, so that the glasses structure is stable and easy to wear, and on the other hand, the rotating shaft assembly 1 enables the temple 2 and the frame 3 in the smart glasses to realize continuous and stable electrical connection, prolongs the service life of the rotating shaft assembly 1 as an electrical connector, and improves the user experience.
[0049] In one specific embodiment, referring to Figure 2 , the rotating shaft assembly 1 includes a rotating shaft part 10, the temple 2 rotates relative to the frame 3 around the rotating shaft part 10, the rotating shaft part 10 is electrically connected with the first module 21 in the temple 2 connected thereto, and the rotating shaft part 10 is electrically connected with the second module 31 in the frame 3 connected thereto.
[0050] In this embodiment, the rotating shaft assembly 1 includes a rotating shaft part 10, during the rotation of the temple 2 relative to the frame 3, the temple 2 substantially rotates around the rotating shaft part 10, i.e., during the rotation of the temple 2 relative to the frame 3, the rotating shaft part 10 serves as a connecting part connecting the temple 2 and the frame 3, and the position of the rotating shaft part 10 is fixed.
[0051] Considering that the position of the rotating shaft part 10 is constant during the rotation of the temple 2, the rotating shaft part 10 in the rotating shaft assembly 1 is used as an electrical connector in this embodiment. Exemplarily, the rotating shaft part 10 has electrical conductivity. The rotating shaft part 10 can be a metal column. Alternatively, the surface of the rotating shaft part 10 is plated with a conductive substance, etc.
[0052] Specifically, the rotating shaft part 10 is electrically connected with the first module 21 in the temple 2 connected thereto (directly or indirectly), and the rotating shaft part 10 is electrically connected with the second module 31 in the frame 3 connected thereto (indirectly). Whether the connection relationship between the rotating shaft part 10 and the temple 2 is direct connection or indirect connection is related to the specific structure of the rotating shaft assembly 1.
[0053] In this specific embodiment, when the temple 2 is in the unfolded state and the folded state, the rotating shaft part 10 can be electrically connected with the first module 21 in the temple 2 connected thereto, and the rotating shaft part 10 can be electrically connected with the second module 31 in the frame 3 connected thereto.
[0054] For example, when the temple 2 is in the unfolded state and the folded state, the hinge part 10 is always electrically connected with any of the sensors, power supplies or other electronic components in the temple 2. The hinge part 10 is always electrically connected with any of the display modules, processors or other electronic components in the frame 3.
[0055] It should be noted that in smart glasses, the structure for realizing the rotation of the temple 2 relative to the frame 3 is relatively mature, and the specific mechanical structure of the hinge assembly 1 is not limited in the embodiments of the present application, as long as the hinge assembly 1 includes the hinge part 10 for realizing the rotation of the temple 2. In the embodiments, the hinge part 10 is electrically connected with the first module 21 in the temple 2, and the hinge part 10 is electrically connected with the second module 31 in the frame 3, so that the hinge part 10 has the function of mechanical connection and the function of electrical connection.
[0056] In this embodiment, the hinge part 10 serves as a fixed component connecting the temple 2 and the frame 3, and its position does not change during the rotation of the temple 2, so the hinge part 10 can serve as a stable electrical connector. By using the hinge part 10 as an electrical connector, it can be ensured that the electrical connection will not be disconnected due to position changes when the temple 2 is folded and unfolded, thereby maintaining the continuity and stability of the internal circuit of the smart glasses.
[0057] In addition, by using the hinge part 10 as both a mechanical connector and an electrical connector, the internal circuit design and wiring of the smart glasses can be simplified, making the circuit more concise and compact.
[0058] In this specific embodiment, the hinge part 10 is electrically connected with the first module 21 and the second module 31 through a flexible circuit board.
[0059] In this embodiment, the hinge part 10 is electrically connected with the first module 21 and the second module 31 through a flexible circuit board. This means that the current and signals can be transmitted between the hinge part 10, the first module 21 and the second module 31 through the flexible circuit board.
[0060] The flexible circuit board is a circuit board that can be bent and folded. In this embodiment, the flexible circuit board is used to connect the hinge part 10 and the first module 21 and the second module 31 in the temple 2, because the temple 2 needs to rotate relative to the frame 3, and the flexible circuit board can adapt to such dynamic changes.
[0061] For example, the hinge part 10, the first module and the second module 31 can be provided on the same flexible circuit board. For example, the hinge part 10, the first module and the second module 31 are respectively welded on the same flexible circuit board.
[0062] Or the pivot part 10 and the first module are both arranged on the same flexible circuit board, and the pivot part 10 and the second module are both arranged on another flexible circuit board.
[0063] It should be noted that, in order to improve the connection strength of the pivot part 10 and the flexible circuit board, the surface of the pivot part 10 connected with the flexible circuit board can be subjected to surface treatment (such as plating, etc.).
[0064] In further embodiments, referring to Figure 2 , the pivot assembly 1 further comprises a first connecting piece 11 and a second connecting piece 12;
[0065] The first connecting piece 11 is fixedly connected with the temple 2 and can rotate relative to the pivot part 10;
[0066] One end of the second connecting piece 12 is mechanically connected with the frame 3, and the other end of the second connecting piece 12 is mechanically connected with the pivot part 10.
[0067] In this embodiment, the pivot assembly 1 comprises the pivot part 10, the first connecting piece 11 and the second connecting piece 12, wherein the pivot part 10 serves as both a mechanical connecting component and an electrical connecting component. The first connecting piece 11 and the second connecting piece 12 serve as components for mechanically connecting the temple 2 and the frame 3.
[0068] Specifically, the first connecting piece 11 is fixedly connected with the temple 2 and can rotate relative to the pivot part 10. This means that the first connecting piece 11 not only serves to connect the temple 2 and the pivot part 10 together, but also allows the temple 2 to rotate while remaining connected with the pivot part 10.
[0069] Exemplarily, the first connecting piece 11 can be a connecting ring or the like which is sleeved outside the pivot part 10 and is in clearance fit with the pivot part 10.
[0070] One end of the second connecting piece 12 is mechanically connected with the frame 3, and the other end of the second connecting piece 12 is mechanically connected with the pivot part 10. The main function of the second connecting piece 12 is to ensure that the pivot part 10 can be mechanically connected with the frame 3 through the second connecting piece 12.
[0071] Exemplarily, the second connecting piece 12 can be connected with the frame 3 and the pivot part 10 by means of screws, buckles, welding or other mechanical connection methods. For example, the second connecting piece 12 can be a connecting ring which is in close fit with the pivot part 10.
[0072] Exemplarily, in the case that the rotating shaft assembly 1 comprises the rotating shaft part 10, the first connecting part 11 and the second connecting part 12, and the rotating shaft part 10 is electrically connected with the first module 21 and the second module 31 through the flexible circuit board, the first connecting part 11 and the second connecting part 12 can form a mounting slot inside, and the flexible circuit board penetrates the mounting slot to be electrically connected with the first module 21 and the second module 31.
[0073] In a further embodiment, referring to Figure 1 and Figure 2 , the rotating shaft part 10 is provided with an electric connecting line 16, one end of the electric connecting line 16 is electrically connected with the first module 21, and the other end of the electric connecting line 16 is electrically connected with the second module 31.
[0074] In this embodiment, in order to further ensure the electrical connection stability between the rotating shaft part 10 and the first module 21 and the second module 31, the rotating shaft part 10 is provided with the electric connecting line 16. Specifically, one end of the electric connecting line 16 is electrically connected with the first module 21, and the other end of the electric connecting line 16 is electrically connected with the second module 31, thereby realizing the electrical connection between the rotating shaft part 10 and the two modules.
[0075] Exemplarily, the electric connecting line 16 can be a cable.
[0076] Exemplarily, in the case that the rotating shaft part 10 is provided with the electric connecting line 16, the flexible circuit board connection mode can be combined. For example, the electric connecting line 16 can be electrically connected with the first module 21 and the second module 31 through the flexible circuit board. For example, the electric connecting line 16 is connected with the rotating shaft part 10, and the electric connecting line can also be connected with the flexible circuit board embedded inside the first connecting part 11 and the second connecting part 12 respectively. In this way, one end of the flexible circuit board embedded in the first connecting part 11 is electrically connected with the first module 21 inside the temple 2, and the other end is electrically connected with the electric connecting line 16 provided on the rotating shaft part 10. One end of the flexible circuit board embedded in the second connecting part 12 is electrically connected with the second module 31 inside the frame 3, and the other end is electrically connected with the electric connecting line 16 provided on the rotating shaft part 10.
[0077] In one example, the electric connecting line 16 is wound around the outer periphery of the rotating shaft part 10.
[0078] In this specific embodiment, the electric connecting line 16 is wound around the outer periphery of the rotating shaft part 10. This design not only makes full use of the space of the rotating shaft part 10, but also ensures the stability and continuity of the electrical connection during the rotation of the temple 2.
[0079] Specifically, the electric connection line 16 is wound around the outer periphery of the rotating shaft part 10, which can effectively utilize the space of the rotating shaft part 10 and avoid occupying additional space. This design makes the overall structure of the smart glasses more compact, which helps to improve the portability and aesthetics of the product. In addition, the electric connection line wound around the outer periphery of the rotating shaft part 10 can naturally expand or contract with the rotation of the temple 2, avoiding the disconnection or failure of the electrical connection caused by mechanical stress.
[0080] In another example, referring to Figure 2 , the electric connection line 16 is embedded in the rotating shaft part 10.
[0081] In this specific embodiment, the electric connection line 16 is completely wrapped inside the rotating shaft part 10, making the overall appearance of the rotating shaft part 10 more concise. This design helps to improve the overall aesthetics and user experience of the smart glasses. In addition, the embedded electric connection line 16 is not easily disturbed and damaged by external environment, such as friction, pulling or impact, etc. This helps to ensure the stability and reliability of the electrical connection, especially in the application scenario of frequent rotation or folding.
[0082] In another specific embodiment, referring to Figure 3 and Figure 4 and referring to Figure 5 and Figure 6 , the rotating shaft assembly 1 includes a rotating shaft body 13, a first electric connection 14 and a second electric connection 15;
[0083] The first electric connection 14 and the second electric connection 15 are both arranged on the rotating shaft body 13, so that the temple 2 connected with the first electric connection 14 can rotate relative to the frame 3 connected with the second electric connection 15, and the first module 21 in the temple 2 connected with the first electric connection 14 and the second module 31 in the frame 3 connected with the second electric connection 15 can be electrically connected.
[0084] In this specific embodiment, the rotating shaft assembly 1 includes the rotating shaft body 13, the first electric connection 14 and the second electric connection 15, which serve as both the connecting assembly for the mechanical connection of the temple 2 and the frame 3 and the connecting assembly for the electrical connection of the temple 2 and the frame 3. When the temple 2 rotates relative to the frame 3, the electrical connection between the first electric connection 14 and the second electric connection 15 remains stable, thereby ensuring the normal communication between the first module 21 and the second module 31.
[0085] Specifically, the first electrical connecting member 14 is arranged on the rotating shaft body 13 and connected with the temple 2. The first electrical connecting member 14 serves to mechanically connect the temple 2 and the rotating shaft body 13, and through the mechanical connection of the first electrical connecting member 14, the temple 2 can rotate around the rotating shaft body 13. In addition, the first module 21 is electrically connected with the second module 31 through the first electrical connecting member 14, the rotating shaft body 13 and the second electrical connecting member 15.
[0086] The second electrical connecting member 15 is arranged on the rotating shaft body 13 and connected with the frame 3. The second electrical connecting member 15 serves to mechanically connect the frame 3 and the rotating shaft body 13. In addition, the second module 31 is electrically connected with the first module 21 through the second electrical connecting member 15, the rotating shaft body 13 and the second electrical connecting member 15.
[0087] That is, in this embodiment, the rotating shaft body 13, the first electrical connecting member 14 and the second electrical connecting member 15 all have electrically conductive properties. For example, the materials of the rotating shaft body 13, the first electrical connecting member 14 and the second electrical connecting member 15 are all metal conductive materials, or the surfaces of the rotating shaft body 13, the first electrical connecting member 14 and the second electrical connecting member 15 are plated with conductive materials, etc.
[0088] In this specific embodiment, when the temple 2 is in the unfolded state and the folded state, the first electrical connecting member 14 can be electrically connected with the first module 21 in the temple 2 connected therewith, and the second electrical connecting member 15 can be electrically connected with the second module 31 in the frame 3 connected therewith.
[0089] For example, when the temple 2 is in the unfolded state and the folded state, the first electrical connecting member 14 is always electrically connected with any one of the sensors, power supplies or other electronic components in the temple 2. The second electrical connecting member 15 is always electrically connected with any one of the display modules, processors or other electronic components in the frame 3.
[0090] For example, referring to Figure 3 and Figure 4 , the rotating shaft body 13 is a metal column. The first electrical connecting member 14 can be a metal ring sleeved on the metal column. The second electrical connecting member 15 can also be a metal ring sleeved on the metal column.
[0091] In a further embodiment, referring to Figure 5 , the first electrical connecting member 14 and the second electrical connecting member 15 are detachably arranged on the rotating shaft body 13, and when the first electrical connecting member 14 and the second electrical connecting member 15 are both connected to the rotating shaft body 13, the first module 21 in the temple 2 connected with the first electrical connecting member 14 and the second module 31 in the frame 3 connected with the second electrical connecting member 15 are electrically connected.
[0092] In this way, the frame 3 and the second electrical connector 15 are in one-piece structure, the hinge body 13 is in one-piece structure, and the first electrical connector 14 and the temple 2 are in one-piece structure. Since the first electrical connector 14 and the second electrical connector 15 are detachably arranged on the hinge body 13, the detachable temple 2 and the detachable frame 3 design can be achieved.
[0093] Alternatively, in a further embodiment, the first electrical connector 14 is detachably arranged on the hinge body 13, the second electrical connector 15 is arranged on the frame 3, and the hinge body 13 and the second electrical connector 15 are always electrically connected. In this case, the detachable temple 2 design can be achieved.
[0094] Exemplarily, referring to Figure 5 , the hinge assembly 1 can be combined with a wireless communication mode to achieve the electrical connection between the first module 21 and the second module 31, and the hinge assembly 1 adopts a type of male and female plug-in structure to achieve the detachable temple 2 design.
[0095] The hinge body 13 is a metal hinge, and the metal hinge is provided with a first pin structure on the side close to the first electrical connector 14. The first electrical connector 14 comprises a first socket structure corresponding to the first pin structure. The first electrical connector 14 is embedded in the temple 2 and exposes the first socket structure. When the first pin structure of the metal hinge is inserted into the first socket structure of the first electrical connector 14, the hinge body 13 achieves electrical connection with the first module 21 in the first electrical connector 14. The electrical connection can be achieved by wired mode or by wireless communication mode.
[0096] Correspondingly, the metal hinge is provided with a second pin structure on the side close to the second electrical connector 15. The first pin structure and the second pin structure are electrically connected, and the first pin structure and the second pin structure can be in one-piece structure or in separate structure.
[0097] The second electrical connector 15 comprises a second socket structure corresponding to the second pin structure. The second electrical connector 15 is embedded in the frame 3 and exposes the second socket structure. The metal hinge is rotatably arranged in the second socket structure. When the second pin structure and the second socket structure are matched, and the first pin structure of the metal hinge is inserted into the first socket structure of the first electrical connector 14, the first module 21 in the temple 2 and the second module 31 in the frame 3 are electrically connected through the hinge body 13, the first electrical connector 14 and the second electrical connector 15.
[0098] Exemplarily, referring to Figure 6, the rotating shaft body 13 is a metal rotating shaft, and a plurality of electrode sheets 131 are arranged on the side of the metal rotating shaft close to the first electrical connector 14. The first electrical connector 14 is a connecting seat arranged in the temple 2, and the plurality of electrode sheets 131 are correspondingly inserted into the connecting seat. The temple 2 is arranged on the rotating shaft body 13 and simultaneously plays a conductive role.
[0099] In this embodiment, the connection structure of the rotating shaft body 13 and the frame 3 can adopt the connection structure of the rotating shaft body 13 and the frame 3 as shown in Figure 4 . Alternatively, those skilled in the art can mechanically and electrically connect the rotating shaft body 13 and the frame 3 together according to actual structural needs.
[0100] In an alternative embodiment, further in order to increase the connection reliability of the temple 2 and the rotating shaft body 13, a screw (user detachable) or a buckle and the like structure can be added to mechanically connect the temple 2 and the rotating shaft body 13.
[0101] In this specific embodiment, referring to Figure 3 and Figure 4 , the first electrical connector 14 and the first module 21 are electrically connected through a flexible circuit board or a cable; and the second electrical connector 15 and the second module 31 are electrically connected through a flexible circuit board or a cable.
[0102] In this embodiment, flexible circuit boards or cables are used to achieve electrical connection between the first electrical connector 14 and the first module 21, and between the second electrical connector 15 and the second module 31. This design not only meets the electrical connection requirements of the smart glasses during mechanical rotation, but also ensures the stability and reliability of the circuit connection.
[0103] In an embodiment, the smart glasses are provided with a control module, which controls the on-off state of the electrical connection between the temple 2 and the frame 3.
[0104] In this embodiment, the control module is responsible for managing and coordinating various functions and operations inside the glasses. In this embodiment, the main responsibility of the control module is to control the on-off state of the electrical connection between the temple 2 and the frame 3. This means that according to the preset logic or the user's instructions, the control module can dynamically open or close the circuit connection between the temple 2 and the frame 3.
[0105] For example, in the case of electrical connection between the first module 21 in the temple 2 connected with the rotating shaft assembly 1 and the second module 31 in the frame 3 connected with the rotating shaft assembly 1, the control module can control the on-off state of the electrical connection between the first module 21 and the second module 31.
[0106] The above embodiments mainly describe the differences between the various embodiments, and the optimization features different between the various embodiments can be combined to form a better embodiment without contradiction. For the sake of brevity, details are not repeated here.
[0107] Although some specific embodiments of the present application have been described in detail by way of example with reference to the drawings, it is to be understood that the examples are for illustration only and are not intended to limit the scope of the present application. Those skilled in the art should understand that modifications can be made to the above embodiments without departing from the scope and spirit of the present application. The scope of the present application is defined by the appended claims.
Claims
1. A smart glass, characterized by, The smart glasses comprise a hinge assembly (1) connecting the temple (2) and the frame (3) on the same side of the smart glasses, so that the temple (2) is in an unfolded state and a folded state relative to the frame (3). In the unfolded state and the folded state of the temple (2), the hinge assembly (1) electrically connects the temple (2) and the frame (3) on the same side.
2. The smart glasses of claim 1, wherein, The hinge assembly (1) comprises a hinge part (10), the temple (2) rotates around the hinge part (10) relative to the frame (3); the hinge part (10) is electrically connected with a first module (21) in the temple (2) connected therewith, and the hinge part (10) is electrically connected with a second module (31) in the frame (3) connected therewith.
3. The smart glasses of claim 2, wherein, The hinge part (10) is electrically connected with the first module (21) and the second module (31) through a flexible circuit board respectively.
4. The smart glasses of claim 2, wherein, The hinge assembly (1) further comprises a first connecting piece (11) and a second connecting piece (12). The first connecting piece (11) is fixedly connected with the temple (2) and can rotate relative to the hinge part (10). One end of the second connecting piece (12) is mechanically connected with the frame (3), and the other end of the second connecting piece (12) is mechanically connected with the hinge part (10).
5. The smart glasses of claim 2, wherein, The hinge part (10) is provided with an electric connecting wire (16), one end of the electric connecting wire (16) is electrically connected with the first module (21), and the other end of the electric connecting wire (16) is electrically connected with the second module (31).
6. The smart glasses of claim 5, wherein, The electric connecting wire (16) is wound on the outer periphery of the hinge part (10).
7. The smart glasses of claim 5, wherein, The electric connecting wire (16) is embedded in the hinge part (10).
8. The smart glasses of claim 1, wherein, The hinge assembly (1) comprises a hinge body (13), a first electric connecting piece (14) and a second electric connecting piece (15). The first electric connecting piece (14) and the second electric connecting piece (15) are arranged on the hinge body (13), so that the temple (2) connected with the first electric connecting piece (14) can rotate relative to the frame (3) connected with the second electric connecting piece (15), and the first module (21) in the temple (2) connected with the first electric connecting piece (14) and the second module (31) in the frame (3) connected with the second electric connecting piece (15) are electrically connected.
9. The smart glasses of claim 8, wherein, The first electric connecting piece (14) and the first module (21) are electrically connected through a flexible circuit board or a cable; and the second electric connecting piece (15) and the second module (31) are electrically connected through a flexible circuit board or a cable.
10. The smart glasses of claim 1, wherein, A control module is arranged in the smart glasses, and the control module controls the on-off state of the electrical connection between the temple (2) and the frame (3).