Intelligent glasses and intelligent glasses suit

By introducing wireless charging and communication technologies into the smart glasses case and utilizing magnetic and shielding components, the problems of large size and reliance on data cables in smart glasses cases have been solved, achieving low cost, stable and reliable wireless charging and data interaction.

CN224020073UActive Publication Date: 2026-03-20SHENZHEN YIWEN TECH LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-17
Publication Date
2026-03-20

AI Technical Summary

Technical Problem

Existing smart glasses boxes require a data cable for charging and data interaction, resulting in large size, high cost, and reliance on wired connections, making them unusable without a data cable.

Method used

By employing wireless charging and communication technology, a first coil module is placed in the glasses case to form a wireless connection with the smart glasses. The position is fixed by magnetic attachments and electromagnetic interference is reduced by shielding, thereby achieving wireless charging and communication.

Benefits of technology

The size and cost of the glasses case have been reduced, wireless charging and data interaction have been enabled, the reliance on data cables has been reduced, and connection stability and communication reliability have been improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of intelligent glasses, and provides intelligent glasses and an intelligent glasses suite, a glasses box comprises: a box body module, which comprises a main body forming an accommodating groove and a first magnetic attraction piece, and the first magnetic attraction piece is used for attracting the intelligent glasses to a target area in the accommodating groove; the first coil module is in wireless connection with the intelligent glasses when the intelligent glasses are located in the target area; the first power supply module and the first control module are electrically connected with the first coil module respectively, when the first coil module is wirelessly connected with the intelligent glasses, the first power supply module is in wireless charging fit with the intelligent glasses through the first coil module, and the first control module is in communication connection with the intelligent glasses through the first coil module. Therefore, the glasses box can wirelessly charge the intelligent glasses through the wireless connection or perform communication interaction, a charging interface or a communication chip does not need to be arranged in the glasses box, and the setting cost and the product size of the glasses box are reduced.
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Description

[0001] This application is a divisional application of the Chinese Patent Application No. 202421392468.5, filed on June 17, 2024, entitled Eyeglass Case and Smart Eyeglass Set, with the State Intellectual Property Office of China. TECHNICAL FIELD

[0002] The present application relates to the technical field of smart eyeglasses, in particular to a smart eyeglass and a smart eyeglass set. BACKGROUND

[0003] Nowadays, near-eye display device products are developing rapidly, especially smart wearable devices such as smart eyeglasses. Smart eyeglasses have corresponding applications in people's life, work, entertainment and other scenarios.

[0004] At present, the eyeglass case matched with the smart eyeglasses is usually designed with charging function and communication function, that is, the smart eyeglasses are connected with the eyeglass case through a data line to charge, or the smart eyeglasses are connected with the eyeglass case through a data line to interact data.

[0005] However, in order to realize the functions of charging and / or data interaction, a charging interface or a communication chip (such as a Bluetooth or WiFi chip) needs to be provided in the eyeglass case. It can be seen that the design of these functions makes the volume of the communication module and the power module in the eyeglass case larger and the setting cost higher, and it is very dependent on wired connection. Once the user does not carry the data line, the functions of charging and data interaction cannot be realized. UTILITY MODEL CONTENT

[0006] The embodiments of the present application provide a smart eyeglass and a smart eyeglass set, which aims to realize the functions of charging and data interaction between the eyeglass case and the smart eyeglass at a low cost, and reduce the volume of the eyeglass case.

[0007] In a first aspect, the embodiments of the present application provide an eyeglass case, comprising:

[0008] A box body module, at least comprising a main body forming a containing groove and a first magnetic attraction member provided corresponding to the containing groove, the containing groove being used for containing the smart eyeglass, and the first magnetic attraction member being used for attracting the smart eyeglass to a target area in the containing groove;

[0009] A first coil module, provided in the main body, under the condition that the smart eyeglass is contained in the containing groove and is in the target area, the first coil module forms a wireless connection with the smart eyeglass;

[0010] A first power module, provided in the main body and electrically connected with the first coil module;

[0011] A first control module, provided in the main body and electrically connected with the first coil module;

[0012] Wherein, under the condition that the first coil module forms a wireless connection with the smart glasses, the first power module cooperates with the smart glasses for wireless charging through the first coil module, and the first control module forms a communication connection with the smart glasses through the first coil module.

[0013] In some embodiments, the first magnetic attraction member is arranged at a magnetic attraction position of the inner wall of the accommodation groove, and the first coil module is opposite to a coil connection position of the inner wall of the accommodation groove.

[0014] Wherein, the magnetic attraction position and the coil connection position are two different positions arranged at intervals.

[0015] In some embodiments, the box body module further comprises a first shielding member arranged corresponding to the magnetic attraction position, the first shielding member at least partially covers the first direction of the first magnetic attraction member, and the first direction is the direction away from the first magnetic attraction member to attract the smart glasses.

[0016] Wherein, the first shielding member is used to shield the interference of the first magnetic attraction member on the wireless connection between the first coil module and the smart glasses.

[0017] In some embodiments, the first magnetic attraction member and the first shielding member are at least partially embedded in the main body.

[0018] In some embodiments, the distance between the first magnetic attraction member and the first coil module is less than 2cm.

[0019] In some embodiments, the magnetic attraction position is located at a first side of the inner wall of the accommodation groove, the first coil module is arranged at a second side of the inner wall of the accommodation groove, and the second side is different from the first side.

[0020] In some embodiments, the distance between the first magnetic attraction member and the first coil module is greater than 1cm.

[0021] In some embodiments, the accommodation groove has an opening, the box body module further comprises a cover corresponding to the opening and an opening detection assembly, the cover is movably connected with the main body and is used to close the opening, and the opening detection assembly is arranged on at least one of the main body and the cover and is electrically connected with the first control module.

[0022] Wherein, the opening detection assembly is used to detect the opening and closing state of the opening, generate a detection signal corresponding to the opening and closing state of the opening, and transmit the detection signal to the first control module.

[0023] The first control module is further used to perform an operation corresponding to the opening and closing state of the opening in response to the detection signal.

[0024] In some embodiments, the glasses box further comprises a display assembly arranged outside the box body module and electrically connected with the first control module, and the display assembly is at least used to display the power information of the first power module and / or the smart glasses.

[0025] Secondly, embodiments of this application also provide smart glasses, which include at least:

[0026] The frame module provides support for wearing smart glasses.

[0027] The display module is connected and adapted to the frame module and used to display the target image;

[0028] The second control module is connected to the display module and is used to control the image displayed by the display module.

[0029] The second power supply module is connected to the display module and the second control module, and is used to supply power to the display module and the second control module;

[0030] The second coil module, located in the frame module, is used to form a wireless connection with the glasses case when the smart glasses are placed in the target area inside the glasses case.

[0031] The second magnetic component is located on the frame module and is used to magnetically engage with the glasses case so that the smart glasses can be attached to the target area inside the glasses case.

[0032] Specifically, when the second coil module and the glasses case are wirelessly connected, the second power module wirelessly charges the glasses case through the second coil module, and the second control module communicates with the glasses case through the second coil module.

[0033] In some embodiments, the smart glasses also include a second shielding member disposed corresponding to the second magnetic member, the second shielding member at least partially covering a first direction of the second magnetic member, the first direction being the direction away from the second magnetic member adsorbing the glasses case.

[0034] Thirdly, this application also provides a smart glasses kit, which includes a glasses case and smart glasses that are compatible with the glasses case;

[0035] Wherein, the eyeglass case is any eyeglass case as provided in the embodiments of this application, and / or, the smart glasses are any eyeglass case as provided in the embodiments of this application.

[0036] In summary, the embodiment of the present application provides a kind of intelligent glasses and intelligent glasses suit, wherein, glasses box includes: box body module, at least including the main body of forming accommodating groove and the first magnetic attraction piece of accommodating groove corresponding setting, accommodating groove is used to accommodate intelligent glasses, first magnetic attraction piece is used to attract intelligent glasses in the target area in accommodating groove;First coil module is set to main body, under the condition that intelligent glasses is accommodated in accommodating groove and is in target area, first coil module forms wireless connection with intelligent glasses;First power module is set to main body and is electrically connected with first coil module;First control module is set to main body and is electrically connected with first coil module;Wherein, under the condition that first coil module forms wireless connection with intelligent glasses, first power module cooperates with intelligent glasses by first coil module and carries out wireless charging, and first control module forms communication connection with intelligent glasses by first coil module.

[0037] Compared with the setting that glasses box and intelligent glasses need to be connected by data line in prior art, the glasses box provided by the embodiment of the present application forms wireless connection with the intelligent glasses attracted to the accommodating groove by the first coil module, and the glasses box can wirelessly charge the intelligent glasses or carry out communication interaction through the wireless connection, without setting charging interface or communication chip (such as Bluetooth or WiFi chip) in the glasses box, which reduces the setting cost and product volume of the glasses box, and makes the interaction between the glasses box and the intelligent glasses no longer dependent on the data line. BRIEF DESCRIPTION OF DRAWINGS

[0038] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0039] Figure 1 A module schematic diagram of the intelligent glasses suit provided by the embodiment of the present application is shown in the figure.

[0040] Figure 2 A schematic diagram of glasses box and intelligent glasses in the intelligent glasses suit provided by the embodiment of the present application is shown in the figure.

[0041] Figure 3 A structure schematic diagram of the glasses box provided by the embodiment of the present application is shown in the figure.

[0042] Figure 4 A module schematic diagram of the intelligent glasses provided by the embodiment of the present application is shown in the figure.

[0043] Figure 5 A schematic diagram of glasses box and intelligent glasses in another intelligent glasses suit provided by the embodiment of the present application is shown in the figure.

[0044] Figure 6 An interaction scene schematic diagram of a glasses box and smart glasses provided by an embodiment of the present application;

[0045] Figure 7 A side surface schematic diagram of an inner wall of a main body in a glasses box provided by an embodiment of the present application;

[0046] Figure 8 A schematic diagram of cooperation of a cover body and a main body in a glasses box provided by an embodiment of the present application;

[0047] Figure 9 A structural schematic diagram of smart glasses provided by an embodiment of the present application;

[0048] Figure 10 A module schematic diagram of a glasses box provided by an embodiment of the present application.

[0049] Reference signs:

[0050] 1, glasses box; 10, box body module; 11, main body; 12, accommodating groove; 121, opening; 13, first magnetic attraction piece; 14, cover body; 15, magnetic attraction position; 16, coil connection position; 17, first shielding piece; 18, opening detection assembly; 181, Hall sensor; 182, inductive magnet; 19, display assembly; 20, first coil module; 30, first power supply module; 40, first control module; 50, display module; 2, smart glasses; 60, glasses frame module; 71, second control module; 72, second power supply module; 73, second coil module; 81, second magnetic attraction piece; 82, second shielding piece; 3, smart glasses set; 4, target area. DETAILED DESCRIPTION

[0051] The technical solutions of the embodiments of the present application will be described below with reference to the drawings of the embodiments of the present application. Obviously, the described embodiments are part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application. The flowchart shown in the drawings is only an example and does not necessarily include all the contents and operations / steps, nor does it necessarily execute in the order described. For example, some operations / steps can be further divided, combined or partially combined, so the actual execution order can be changed according to the actual situation. The above is only a specific embodiment of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art can easily think of various equivalent modifications or replacements within the technical range disclosed by the present application, and these modifications or replacements should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

[0052] Nowadays, near-eye display device products develop rapidly, especially smart wearable devices such as smart glasses. Smart glasses have corresponding applications in people's life, work, entertainment and other scenarios.

[0053] At present, the smart glasses are usually designed with a charging function and a communication function in a glasses box, that is, the smart glasses are connected to the glasses box through a data line to charge or to interact with data.

[0054] However, in order to realize the functions of charging and / or data interaction, a charging interface or a communication chip (such as a Bluetooth or WiFi chip) needs to be arranged in the glasses box. It can be seen that the design of these functions makes the volume of the communication module and the power module in the glasses box larger and the setting cost higher, and is very dependent on wired connection. Once the user does not carry the data line, the functions of charging and data interaction cannot be realized.

[0055] Based on this, the embodiments of the present application provide a smart glasses and a smart glasses set, which aims to realize the functions of charging and data interaction between the glasses box and the smart glasses at a low cost and reduce the volume of the glasses box.

[0056] Please refer to Figure 1 and Figure 2 , Figure 1 a module schematic diagram of a smart glasses set 3 provided by the embodiments of the present application, Figure 2 a schematic diagram of a glasses box 1 and a smart glasses 2 in the smart glasses set 3 provided by the embodiments of the present application.

[0057] As Figures 1 to 2 shown, the embodiments of the present application provide a glasses box 1, a smart glasses 2 and a smart glasses set 3, wherein the smart glasses set 3 provided by the embodiments of the present application at least includes the glasses box 1 and the smart glasses 2 adapted to the glasses box 1. Specifically, the smart glasses 2 in the embodiments of the present application includes but is not limited to at least one of AR glasses and VR glasses.

[0058] Hereinafter, the structure, function and cooperation scene of the glasses box 1 and the smart glasses 2 in the smart glasses set 3 are described in detail.

[0059] Please refer to Figure 3 , Figure 3 a structure schematic diagram of the glasses box 1 provided by the embodiments of the present application.

[0060] As Figures 1 to 10 shown, the glasses box 1 provided by the embodiments of the present application includes a box body module 10, a first coil module 20, a first power supply module 30 and a first control module 40. The components of the glasses box 1 are described in detail as follows.

[0061] Specifically, the box module 10 at least comprises a main body 11 and a first magnetic attraction member 13. The main body 11 forms a receiving groove 12 with an opening 121, which is used for accommodating the smart glasses 2 matched with the glasses box 1, and the smart glasses 2 can enter and exit the receiving groove 12 through the opening 121. A target area 4 is arranged in the receiving groove 12. When the smart glasses 2 are accommodated in the receiving groove 12 and located in the target area 4, the glasses box 1 can form a wireless connection with the smart glasses 2, and realize wireless charging cooperation and wireless communication interaction of the glasses box 1 and the smart glasses 2 through the wireless connection. The first magnetic attraction member 13 is used for magnetic attraction cooperation with the smart glasses 2, so as to attract the smart glasses 2 to the target area 4 in the receiving groove 12.

[0062] Specifically, the first coil module 20 is arranged in the main body 11. Under the condition that the smart glasses 2 are accommodated in the receiving groove 12 and located in the target area 4, the first coil module 20 forms a wireless connection with the smart glasses 2. The first power supply module 30 and the first control module 40 are both arranged in the main body 11 and both form an electrical connection with the first coil module 20.

[0063] Under the condition that the first coil module 20 forms a wireless connection with the smart glasses 2, the first power supply module 30 realizes wireless charging cooperation with the smart glasses 2 through the first coil module 20, and the first control module 40 forms a communication connection with the smart glasses 2 through the first coil module 20.

[0064] Specifically, the first coil module 20 in the first power supply module 30 realizes wireless power supply for the smart glasses 2 and communication interaction with the smart glasses 2 through the mode of NFC (Near Field Communication) or RFID (Radio Frequency Identification) wireless connection.

[0065] For example, the first coil module 30 is an induction coil, and the induction coil can be at least one of an NFC coil and an RFID coil. Correspondingly, the smart glasses 2 are also configured with an induction coil matched with the first coil module.

[0066] Please refer to Figures 4 to 6 , Figure 4 A module schematic diagram of the smart glasses 2 provided by the embodiment of the application, Figure 5 A schematic diagram of the glasses box and the smart glasses in another smart glasses set provided by the embodiment of the application, Figure 6 An interaction scene schematic diagram of the glasses box 1 and the smart glasses 2 provided by the embodiment of the application.

[0067] As Figures 2 to 6As shown, for example, the smart glasses 2 include a frame module 60, a second coil module 73 disposed on the frame module 60, a second magnetic member 81, a display module 50 connected and adapted to the frame module 60, a second control module 71 connected to the display module 50 and used to control the display module 50 to display images, and a second power module 72 connected to the display module 50 and the second control module 71 and used to supply power to the display module 50 and the second control module 71. The first coil module 20 in the glasses case 1 provided in this embodiment can form a wireless connection with the second coil module 73 of the smart glasses 2.

[0068] Specifically, when the first coil module 20 and the second coil module 73 form a wireless connection, the first power module 30 of the glasses case 1 can wirelessly charge the second power module 72 of the smart glasses 2 through the first coil module 20 and the second coil module 73; the first control module 40 of the glasses case 1 can form a communication connection with the second communication module of the smart glasses 2 through the first coil module 20 and the second coil module 73.

[0069] Especially when the first coil module 20 and the second coil module 73 are accurately aligned, the wireless connection stability and communication reliability between the first coil module 20 and the second coil module 73 are good, and the wireless charging efficiency between the first coil module 20 and the second coil module 73 is high with less power loss.

[0070] For example, the first coil module 30 and the second coil module are mutually compatible NFC coils or mutually compatible RFID coils.

[0071] It should be noted that when smart glasses 2 are like Figure 2 When placed in the target area 4 of the glasses case 1 as shown, the first coil module 20 and the second coil module 73 are accurately aligned, and the first magnetic member 13 is used to magnetically engage with the second magnetic member 81 in the smart glasses 2 to attach the smart glasses 2 to the target area 4 in the receiving slot 12.

[0072] For example, both the first magnetic member 13 and the second magnetic member 81 are magnets. When the smart glasses 2 are placed in the receiving slot 12, the N pole of the first magnetic member 13 is opposite to the S pole of the second magnetic member 81, or the S pole of the first magnetic member 13 is opposite to the N pole of the second magnetic member 81.

[0073] It should be understood that in order to accommodate the smart glasses 2, the volume of the space in the accommodation groove 12 must be greater than or equal to the volume of the smart glasses 2, so that on the one hand, the smart glasses 2 can be offset when placed into the accommodation groove 12, and on the other hand, the smart glasses 2 placed into the accommodation groove 12 can also slide in the accommodation groove 12, both of which can cause the smart glasses 2 not to be accurately positioned in the target area 4, and the first coil module 20 and the second coil module 73 can also be offset.

[0074] Therefore, the eyeglasses case 1 provided by the embodiments of the present application can attract the smart glasses 2 to the target area 4 in the accommodation groove 12 by the design of the first magnetic attraction member 13, so that the first coil module 20 and the second coil module 73 are conveniently aligned with each other, effectively preventing the smart glasses 2 from being offset when placed into the accommodation groove 12 or the smart glasses 2 from sliding in the accommodation groove 12, causing the relative relationship between the first coil module 20 and the second coil module 73 to be deviated, improving the stability of wireless connection and the reliability of communication, and the efficiency of wireless charging between the first coil module 20 and the second coil module 73, and reducing the loss of electric energy.

[0075] In addition, compared with the prior art in which the eyeglasses case 1 and the smart glasses 2 need to be connected by a data line, the eyeglasses case 1 provided by the embodiments of the present application forms a wireless connection between the first coil module 20 and the smart glasses 2 attracted to the accommodation groove 12, and the eyeglasses case 1 can wirelessly charge the smart glasses 2 or communicate with the smart glasses 2 through the wireless connection, without the need to set a charging interface or a communication chip (such as a Bluetooth or WiFi chip) in the eyeglasses case 1, thereby reducing the setting cost and product volume of the eyeglasses case 1, and making the interaction between the eyeglasses case 1 and the smart glasses 2 no longer dependent on a data line.

[0076] It should be noted that when the first coil module 20 is set, a coil with a larger size can be selected to increase the area occupied by the first coil module 20 on the inner wall of the accommodation groove 12 (i.e., the area occupied by the coil connection position 16), so that when the user places the smart glasses 2 into the accommodation groove of the eyeglasses case 1, the second coil module 73 of the smart glasses 2 can be easily aligned with the first coil module 20, and there is a certain fault tolerance space, thereby ensuring that the wireless connection between the eyeglasses case 1 and the smart glasses 2 is easy to connect and stable.

[0077] As shown in FIG. 1, Figures 2 to 3 In some embodiments, the first magnetic attraction member 13 is arranged at the magnetic attraction position 15 of the inner wall of the accommodation groove 12, and the first coil module 20 is opposite to the coil connection position 16 of the inner wall of the accommodation groove 12.

[0078] The magnetic attraction position 15 and the coil connection position 16 are two different positions arranged at intervals.

[0079] It should be understood that the magnetic attraction position 15 is configured for setting the first magnetic attraction element 13, and the first magnetic attraction element 13 is generally a magnetic element, so that the first magnetic attraction element 13 generates a certain magnetic field in the space near the first magnetic attraction element 13, and the first coil module 20 of the glasses box 1 forms a wireless connection with the second coil module 73 of the smart glasses 2 through the generated magnetic field, but the magnetic field generated by the first magnetic attraction element 13 will cause electromagnetic interference to the wireless connection between the first coil module 20 and the second coil module 73.

[0080] Therefore, the configuration of the magnetic attraction position 15 and the coil connection position 16 as two different positions arranged at intervals can reduce the electromagnetic interference of the magnetic field generated by the first magnetic attraction element 13 to the wireless connection between the first coil module 20 and the smart glasses 2, improve the stability and communication reliability of the wireless connection, and improve the efficiency of the wireless charging between the first coil module 20 and the second coil module 73, and reduce the loss of electric energy.

[0081] As shown in Figure 6 In some embodiments, the box body module 10 further comprises a first shielding element 17 arranged corresponding to the magnetic attraction position 15, and the first shielding element 17 at least partially covers the first direction of the first magnetic attraction element 13, and the first direction is the direction away from the first magnetic attraction element 13 to attract the smart glasses 2;

[0082] The first shielding element 17 is used to shield the interference of the first magnetic attraction element 13 to the wireless connection between the first coil module 20 and the smart glasses 2.

[0083] Figure 6 As shown in (a) of the following figure, it is a schematic diagram of the magnetic field formed by the first magnetic attraction element 13 of the glasses box 1 and the second magnetic attraction element 81 of the smart glasses 2 without setting the first shielding element 17, Figure 6 As shown in (b) and (c) of the following figure, it is a schematic diagram of the magnetic field formed by the first magnetic attraction element 13 of the glasses box 1 and the second magnetic attraction element 81 of the smart glasses 2 with setting the first shielding element 17.

[0084] As can be seen from Figure 6 For example, the side of the first magnetic attraction element 13 close to the second magnetic attraction element 81 is N-pole, and the side of the first magnetic attraction element 13 close to the second magnetic attraction element 81 is S-pole:

[0085] A part of the magnetic induction lines corresponding to the first magnetic attraction element 13 is from the N-pole of the first magnetic attraction element 13 to the S-pole of the second magnetic attraction element 81, and another part of the magnetic induction lines corresponding to the first magnetic attraction element 13 is from the N-pole of the first magnetic attraction element 13 to the S-pole of the second magnetic attraction element 81 around the outside of the first magnetic attraction element 13. Therefore, without setting the first shielding element 17, the magnetic field generated by the first magnetic attraction element 13 will cause electromagnetic interference to the wireless connection between the first coil module 20 and the smart glasses 2.

[0086] Therefore, the first shielding member 17 covering the first direction of the first magnetic member 13 can effectively shield the electromagnetic interference of the magnetic field generated by the first magnetic member 13 to the wireless connection between the first coil module 20 and the smart glasses 2.

[0087] For example, the first shielding member 17 and the second shielding member 82 are low-carbon steel plates.

[0088] Further, as shown in FIG. 8, the first shielding member 17 can also cover the side of the first magnetic member 13 other than the side close to the smart glasses 2. Figure 6

[0089] As shown in FIG. 8, in some embodiments, the first magnetic member 13 and the first shielding member 17 are at least partially embedded in the main body 11. Figures 2 to 3

[0090] Specifically, the embedding position of the first magnetic member 13 and the first shielding member 17 corresponds to the magnetic attraction position 15. Preferably, the first magnetic member 13 and the first shielding member 17 are completely embedded in the main body 11.

[0091] It should be understood that the at least partial embedding of the first magnetic member 13 and the first shielding member 17 in the main body 11 can reduce the protruding volume of the inner wall of the accommodating groove 12, easily ensure the smoothness and consistency of the inner wall of the accommodating groove 12, and make the smart glasses 2 better fit the inner wall of the accommodating groove 12 when placed in the target area 4, which indirectly reduces the absolute distance between the second coil module 73 of the smart glasses 2 and the first coil module 20 of the glasses box 1, thereby ensuring the easy and stable wireless connection between the glasses box 1 and the smart glasses 2.

[0092] In some embodiments, the first coil module 20 is at least partially embedded in the main body 11. Preferably, the first coil module 20 is completely embedded in the main body 11.

[0093] It should be understood that this embodiment can reduce the protruding volume of the first coil module 20 on the inner wall of the accommodating groove 12, so that the smart glasses 2 can better fit the inner wall of the accommodating groove 12 when placed in the target area 4, which indirectly reduces the distance between the first magnetic member 13 and the second magnetic member 81, so that the attraction between the first magnetic member 13 and the second magnetic member 81 is stronger, and the alignment between the smart glasses 2 and the glasses box 1 is more accurate and firm.

[0094] ​​In some embodiments, the distance between the first magnetic attraction member 13 and the first coil module 20 is less than 2 cm. It should be noted that, without considering the electromagnetic interference of the magnetic field generated by the first magnetic attraction member 13 on the wireless connection between the first coil module 20 and the smart glasses 2, it is preferred that the distance between the first magnetic attraction member 13 and the first coil module 20 is as small as possible. Such a design makes the magnetic attraction between the first magnetic attraction member 13 and the second magnetic attraction member 81 accurately assist the alignment of the first coil module 20 and the second coil module 73 during the early product design and later use of the smart glasses 2.

[0095] With the first shielding member 17 arranged in the glasses case 1, the shielding effect of the first shielding member 17 on the magnetic field generated by the first magnetic attraction member 13 avoids the electromagnetic interference of the first magnetic attraction member 13 on the wireless connection between the first coil module 20 and the smart glasses 2 when the first magnetic attraction member 13 is close to the first coil module 20. Therefore, the first magnetic attraction member 13 and the first coil module 20 can be arranged as close as possible.

[0096] In some embodiments, the first magnetic attraction member 13 and the first coil module 20 are located on the same side of the inner wall of the accommodation groove 12. For specific embodiments, reference can be made to the above description of the embodiments.

[0097] In other embodiments, the first magnetic attraction member 13 is located on the first side of the inner wall of the accommodation groove 12, and the first coil module 20 is located on the second side of the inner wall of the accommodation groove 12, and the second side is different from the first side.

[0098] Please refer to Figure 7 , Figure 7 for a side view of the inner wall of the main body 11 in the glasses case 1 according to an embodiment of the present application.

[0099] As shown in Figure 2 , Figure 3 and Figure 7 , for example, the inner wall of the accommodation groove 12 formed by the main body 11 can be divided into a front side a, a back side b, a left side c, a right side d, and a bottom side e. Among them, the first side is one of the front side a, the back side b, the left side c, the right side d, and the bottom side e, and the second side is another one of the front side a, the back side b, the left side c, the right side d, and the bottom side e.

[0100] For example, in the glasses case 1 shown in Figure 2 and Figure 3 , the first coil module 20 is arranged on the bottom side e of the inner wall of the accommodation groove 12, and part of the first magnetic attraction member 13 is arranged on the left side c and the right side d of the inner wall of the accommodation groove 12.

[0101] It should be understood that the first magnetic attraction member 13 and the first coil module 20 are arranged on different sides of the inner wall of the accommodating groove 12, which aims to reduce the electromagnetic interference of the first magnetic attraction member 13 on the wireless connection between the first coil module 20 and the smart glasses 2.

[0102] As shown in Figure 2 and Figure 7 It should be noted that one, two or more first magnetic attraction members 13 can be arranged in the box body module 10, and correspondingly, the smart glasses 2 can be provided with one, two or more second magnetic attraction members 81 according to the number of first magnetic attraction members 13 arranged in the glasses box 1, so that the first magnetic attraction member 13 and the second magnetic attraction member 81 correspond one by one.

[0103] It should also be noted that when the box body module 10 of the glasses box 1 includes at least two first magnetic attraction members 13, the at least two first magnetic attraction members 13 can be arranged on different sides of the inner wall of the accommodating groove 12.

[0104] In some embodiments, the distance between the first magnetic attraction member 13 and the first coil module 20 is greater than 1 cm.

[0105] It should be noted that for the purpose of reducing the electromagnetic interference of the first magnetic attraction member 13 on the wireless connection between the first coil module 20 and the smart glasses 2, the distance between the first magnetic attraction member 13 and the first coil module 20 (i.e. the distance between the magnetic attraction position 15 and the coil connection position 16) can be greater than 1 cm. In particular, in the case where no first shielding member 17 is arranged, it is more necessary to limit the distance between the first magnetic attraction member 13 and the first coil module 20, so as to reduce the electromagnetic interference of the first magnetic attraction member 13 on the wireless connection between the first coil module 20 and the smart glasses 2.

[0106] Please refer to Figure 8 , Figure 8 A schematic view of the cooperation between the cover 14 and the main body 11 in the glasses box 1 provided by the embodiment of the present application.

[0107] As shown in Figure 8 In some embodiments, the accommodating groove 12 has an opening 121, the box body module 10 further includes a cover 14 arranged corresponding to the opening 121 and an opening detection assembly 18, the cover 14 is movably connected with the main body 11 and is used for closing the opening 121, and the opening detection assembly 18 is arranged on at least one of the main body 11 and the cover 14 and is electrically connected with the first control module 40.

[0108] The opening detection assembly 18 is used for detecting the opening and closing state of the opening 121, generating a detection signal corresponding to the opening and closing state of the opening 121, and transmitting the detection signal to the first control module 40.

[0109] The first control module 40 is further used for performing an operation corresponding to the opening and closing state of the opening 121 in response to the detection signal.

[0110] Specifically, the opening and closing states of the opening 121 at least include two states of opening and closing, and the cover 14 can be movable relative to the main body 11 to open or close the opening 121. Wherein, the cover 14 and the main body 11 can be detachably connected through snap, thread and the like; the cover 14 and the main body 11 can also be movably connected through hinge cooperation, shaft hole cooperation and the like. For example, in the glasses case 1 shown in the Figure 7 , the cover 14 and the main body 11 are movably connected, and the cover 14 can be flipped relative to the main body 11 to realize the opening or closing of the opening 121.

[0111] It should be understood that the cover 14 and the main body 11 are movably connected to open or close the opening 121, on the one hand, the cover 14 can conveniently close the opening 121 and the accommodating groove 12, and on the other hand, based on the movement of the cover 14 relative to the main body 11, the opening and closing state of the opening 121 changes accordingly, so that the first control module 40 can perform corresponding operations according to the opening and closing state of the opening 121.

[0112] Specifically, the opening detection assembly 18 is arranged on at least one of the main body 11 and the cover 14, which is used to detect the opening and closing state of the opening 121, generate a detection signal corresponding to the opening and closing state of the opening 121, and transmit the detection signal to the first control module 40.

[0113] Exemplarily, the opening detection assembly 18 includes a Hall sensor 181 arranged on one of the main body 11 and the cover 14, and an inductive magnet 182 arranged on the other one, and the Hall sensor 181 and the inductive magnet 182 are arranged correspondingly. For example, in the glasses case 1 shown in the Figure 7 , the inductive magnet 182 is arranged on the cover 14, the Hall sensor 181 is arranged on the main body 11 and is electrically connected with the first control module 40, and when the cover 14 closes the opening 121, the position of the inductive magnet 182 is opposite to the position of the Hall sensor 181.

[0114] When the cover 14 does not close the opening 121, the distance between the inductive magnet 182 and the Hall sensor 181 becomes far, and the Hall sensor 181 generates a detection signal corresponding to the opening of the opening 121. When the cover 14 closes the opening 121, the distance between the inductive magnet 182 and the Hall sensor 181 becomes close, and the Hall sensor 181 is triggered, and the Hall sensor 181 generates a detection signal corresponding to the closing of the opening 121. The Hall sensor 181 is also used to transmit the generated detection signal to the first control module 40, and the first control module 40 is also used to perform an operation corresponding to the opening and closing state of the opening 121 in response to the detection signal.

[0115] For example, the first control module 40 can perform at least one of the following operations based on the open / close state itself and the switching of the open / close state: controlling the glasses case 1 to start / stop charging the smart glasses 2, instructing the smart glasses 2 to pair with an external device via Bluetooth, instructing the glasses case 1 to pair with the external device via Bluetooth, and the like, instructing the smart glasses 2 / glasses case 1 to reset, and communicating with the smart glasses 2 via the first coil module 20, wherein the communication information includes, but is not limited to, the power information of the glasses case 1 and / or the smart glasses 2.

[0116] In some embodiments, the glasses case 1 further comprises a display assembly 19 disposed outside the case body module 10 and electrically connected to the first control module 40, and the display assembly 19 is used at least to display the power information of the first power module 30 and / or the smart glasses 2.

[0117] Specifically, by displaying the power information of at least one of the glasses case 1 (i.e., the first power module 30) and the smart glasses 2 (i.e., the second power module 72) via the display assembly 19, the user can know the remaining power of the glasses case 1 and the smart glasses 2, so as to put the smart glasses 2 into the glasses case 1 for charging, take the smart glasses 2 out of the glasses case 1 to stop charging, or instruct the glasses case 1 to stop charging the smart glasses 2 located in the accommodation groove 12.

[0118] For example, the display assembly 19 is a liquid crystal display.

[0119] For example, the display assembly 19 is a liquid crystal display.

[0120] For example, the display assembly 19 is a liquid crystal display.

[0120] Figure 9 For example, the display assembly 19 is a liquid crystal display. Figure 9 For example, the display assembly 19 is a liquid crystal display.

[0121] For example, the display assembly 19 is a liquid crystal display. Figures 1 to 9As shown, the embodiment of the present application further provides a smart glasses 2, which at least comprises: a frame module 60, configured to provide wearing support for a target object to wear the smart glasses 2; a display module 50, connected to the frame module 60 and configured to display a target image; a second control module 71, connected to the display module 50 and configured to control the image displayed by the display module 50; a second power supply module 72, connected to the display module 50 and the second control module 71, and configured to supply power to the display module 50 and the second control module 71; and a second coil module 73, disposed on the frame module 60 and configured to form a wireless connection with the glasses box 1 under the condition that the smart glasses 2 is accommodated in the target area 4 of the glasses box 1; and a second magnetic attraction member 81, disposed on the frame module 60 and configured to be magnetically attracted to the glasses box 1 to enable the smart glasses 2 to be adsorbed in the target area 4 of the glasses box 1.

[0122] In the condition that the second coil module 73 forms a wireless connection with the glasses box 1, the second power supply module 72 performs wireless charging cooperation with the glasses box 1 through the second coil module 73, and the second control module 71 forms a communication connection with the glasses box 1 through the second coil module 73.

[0123] For the specific implementation of the smart glasses 2 and the glasses box 1 cooperating with each other to form a wireless connection to realize wireless charging cooperation and communication connection between the smart glasses 2 and the glasses box 1, reference can be made to the specific description of the foregoing embodiment, which will not be repeated here.

[0124] It should be pointed out that the positions of the second coil module 73 and the second magnetic attraction member 81 on the frame module 60 can be designed according to the positions of the first coil module 20 and the first magnetic attraction member 13 in the glasses box 1 provided in the foregoing embodiment. For example, in the smart glasses 2 shown in the foregoing embodiment, the second coil module 73 and the second magnetic attraction member 81 are disposed on the temples of the frame module 60. Figure 8 In the smart glasses 2 shown, the frame module 60 can be folded, and when the smart glasses 2 after folding of the frame module 60 is placed in the accommodation groove 12 and is in the target area 4, the first coil module 20 and the second coil module 73 are opposite to each other, and the first magnetic attraction member 13 and the second magnetic attraction member 81 are opposite to each other.

[0125] Preferably, the second coil module 73 and the second magnetic attraction member 81 are both disposed at the ends of the temples of the frame module 60, and correspondingly, the second control module 71 and the second power supply module 72 are also disposed at the ends of the temples of the frame module 60, which can better balance the weight of the smart glasses, and when the smart glasses 2 after folding of the frame module 60 is placed in the target area of the accommodation groove 12, the first coil module 20 and the second coil module 73 are opposite to each other, and the first magnetic attraction member 13 and the second magnetic attraction member 81 are opposite to each other.

[0126] In some embodiments, the smart glasses 2 further comprise a second shielding member 82 corresponding to the second magnetic attraction member 81, the second shielding member 82 at least partially covers the first direction of the second magnetic attraction member 81, the first direction is the direction away from the second magnetic attraction member 81 to attract the glasses box 1.

[0127] Specifically, the setting principle of the second shielding member 82 is the same as that of the first shielding member 17, which is used to shield the electromagnetic interference of the second magnetic attraction member 81 to the wireless connection between the second coil module 73 and the glasses box 1.

[0128] In summary, the embodiments of the present application provide a glasses box 1, smart glasses 2 and a smart glasses set 3, wherein the glasses box 1 comprises: a box body module 10, at least comprising a main body 11 forming a containing groove 12 and a first magnetic attraction member 13 corresponding to the containing groove 12, the containing groove 12 is used to contain the smart glasses 2, and the first magnetic attraction member 13 is used to attract the smart glasses 2 to the target area 4 in the containing groove 12; a first coil module 20 arranged in the main body 11, under the condition that the smart glasses 2 are contained in the containing groove 12 and are in the target area 4, the first coil module 20 forms a wireless connection with the smart glasses 2; a first power supply module 30 arranged in the main body 11 and electrically connected with the first coil module 20; a first control module 40 arranged in the main body 11 and electrically connected with the first coil module 20; wherein under the condition that the first coil module 20 forms a wireless connection with the smart glasses 2, the first power supply module 30 cooperates with the smart glasses 2 for wireless charging through the first coil module 20, and the first control module 40 forms a communication connection with the smart glasses 2 through the first coil module 20.

[0129] Those skilled in the art can understand that all or some of the steps in the above disclosed method, the functional modules / units in the system and the device can be implemented as software, firmware, hardware and appropriate combinations thereof. In the hardware embodiment, the division between the functional modules / units mentioned in the above description does not necessarily correspond to the division of physical components; for example, one physical component can have multiple functions, or one function or step can be performed by several physical components in cooperation. Some or all physical components can be implemented as software executed by a processor such as a central processor, a digital signal processor or a microprocessor, or as hardware, or as a combination of setting circuit such as a special setting circuit. Such software can be distributed on a computer readable medium, which can include computer storage media (or non-transitory media) and communication media (or transitory media).

[0130] It is to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting. Unless specifically defined otherwise in this specification, terms "mount", "connect", "connection" are to be given their broadest interpretation in accordance with the context in which they are used. For example, "connect" can be direct or indirect; "connection" can be mechanical, electrical, or logical; "connection" can be permanent or releasable; "connection" can be two elements or an internal communication within an element. The specific meaning of the above terms will be apparent to those of ordinary skill in the art, in view of the disclosure herein. As used in this specification and the appended claims, the singular forms "a", "an", and "the" include plural referents unless the content clearly dictates otherwise. The following description of the preferred embodiment(s) is provided for the purpose of enabling any person skilled in the art to make and use the application, and is not intended to limit the scope of the application which is defined by the appended claims.

[0131] It is also to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting. Unless specifically defined otherwise in this specification, terms "mount", "connect", "connection" are to be given their broadest interpretation in accordance with the context in which they are used. For example, "connect" can be direct or indirect; "connection" can be mechanical, electrical, or logical; "connection" can be permanent or releasable; "connection" can be two elements or an internal communication within an element. The specific meaning of the above terms will be apparent to those of ordinary skill in the art, in view of the disclosure herein. As used in this specification and the appended claims, the singular forms "a", "an", and "the" include plural referents unless the content clearly dictates otherwise. The following description of the preferred embodiment(s) is provided for the purpose of enabling any person skilled in the art to make and use the application, and is not intended to limit the scope of the application which is defined by the appended claims.

Claims

1. A type of smart glasses, characterized in that, The smart glasses include at least: A frame module is used to provide wearing support so that a target object can wear the smart glasses; The display module is connected and adapted to the frame module and used to display the target image; The second control module is connected to the display module and is used to control the image displayed by the display module; The second power supply module is connected to the display module and the second control module, and is used to supply power to the display module and the second control module; The second coil module is disposed in the frame module and is used to form a wireless connection with the glasses case when the smart glasses are placed in the target area inside the glasses case. The second magnetic component is disposed on the frame module and is used to magnetically engage with the glasses case to allow the smart glasses to be attached to the target area inside the glasses case; Specifically, when the second coil module and the glasses case are wirelessly connected, the second power module wirelessly charges the glasses case through the second coil module, and the second control module communicates with the glasses case through the second coil module.

2. The smart glasses as described in claim 1, characterized in that, The smart glasses also include a second shielding member corresponding to the second magnetic member. The second shielding member at least partially covers the second magnetic member in a first direction, which is the direction away from the second magnetic member that attracts the glasses case.

3. The smart glasses as described in claim 1, characterized in that, The frame module includes temples, and the second coil module and the second magnetic component are both disposed at the ends of the temples.

4. The smart glasses as described in claim 1, characterized in that, The frame module includes temples, and the second control module and the second power module are disposed at the ends of the temples.

5. A smart glasses kit, characterized in that, The smart glasses kit includes a glasses case and smart glasses that are compatible with the glasses case; The smart glasses described herein are the smart glasses as described in any one of claims 1-4.

6. The smart glasses kit as described in claim 5, characterized in that, The glasses case includes a case module and a first coil module. The case module includes at least a main body forming a receiving slot for accommodating the smart glasses. The first coil module is disposed on the main body. The first coil module and the second coil module are mutually compatible NFC coils or mutually compatible RFID coils, so that when the smart glasses are housed in the glasses case, the first coil module and the smart glasses form a wireless connection.

7. The smart glasses kit as described in claim 5, characterized in that, The glasses case includes a case module, which includes at least a main body forming a receiving slot and a first magnetic suction member corresponding to the receiving slot. The receiving slot is used to receive the smart glasses, and the first magnetic suction member is used to attract the smart glasses to a target area within the receiving slot. Both the first magnetic attractor and the second magnetic attractor are magnets.

8. The smart glasses kit as described in claim 7, characterized in that, When the smart glasses are placed in the receiving slot, the N pole of the first magnetic member is opposite to the S pole of the second magnetic member, or the S pole of the first magnetic member is opposite to the N pole of the second magnetic member.

9. The smart glasses kit as described in claim 5, characterized in that, The glasses case includes a case module and a first coil module. The case module includes at least a main body forming a receiving groove, a first magnetic attractor corresponding to the receiving groove, and a first shield. The receiving groove is used to receive the smart glasses and has a magnetic attraction position on its inner wall. The first magnetic attractor is used to attract the smart glasses to a target area within the receiving groove. The first shield is positioned corresponding to the magnetic attraction position and at least partially covers a first direction of the first magnetic attractor, the first direction being away from the direction in which the smart glasses are attracted by the first magnetic attractor. When the smart glasses are in the target area, the first coil module is wirelessly connected to the smart glasses. The first shield is used to shield the first magnetic attractor from interfering with the wireless connection between the first coil module and the smart glasses. The first magnetic attractor and the first shield are completely embedded in the main body.

10. The smart glasses kit as described in claim 5, characterized in that, The glasses case includes a case module and a first coil module. The case module includes at least a main body forming a receiving slot and a first magnetic suction member corresponding to the receiving slot. The receiving slot is used to receive the smart glasses, and the first magnetic suction member is used to attract the smart glasses to a target area within the receiving slot. The first coil module is disposed on the main body. When the smart glasses are received in the receiving slot and are located in the target area, the first coil module and the smart glasses form a wireless connection. The first coil module is completely embedded in the main body.