Charging structure of multimedia glasses

Through the design of conductive contacts and elastic contacts, combined with the magnetic suction parts of the lens frame and the mirror box, the multimedia glasses are realized without manual plug-in charging, solving the problem of large space occupied by wired charging and poor user experience, and improving the convenience and aesthetics of charging.

CN223218858UActive Publication Date: 2025-08-12ZHONGSHAN YUECHEN ELECTRONICS IND
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Patent Information

Application Number
CN202422258473.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-13
Publication Date
2025-08-12
Estimated Expiration
2034-09-13

AI Technical Summary

Technical Problem

The wired charging method of existing multimedia glasses takes up a lot of space, is not beautiful and has poor user experience.

Method used

The design of conductive contacts and elastic contacts is adopted to maintain contact through the magnetic suction piece of the mirror frame and the mirror box, achieving a charging method without manual plugging.

Benefits of technology

It reduces the space occupied by the charging socket, improves the aesthetics of the glasses, and improves the charging convenience of users.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a charging structure of multimedia glasses, which comprises a glasses frame and a glasses box, a charging circuit I is arranged in the glasses frame, and the charging structure is characterized in that the glasses frame comprises a glasses frame, an inner cavity I is arranged in the glasses frame, and a charging circuit II is arranged in the inner cavity I; the first charging circuit is located in the first inner cavity, a conductive contact electrically connected with the first charging circuit is arranged in the first inner cavity, a first contact hole communicated with the first inner cavity is formed in the mirror frame, and the contact face of the conductive contact is exposed out of the first contact hole. A second charging circuit, a rechargeable battery and an elastic contact are arranged in the second inner cavity, the rechargeable battery and the elastic contact are electrically connected with the second charging circuit, a second contact hole communicated with the second inner cavity is formed in the glasses box, and the contact end of the elastic contact penetrates out of the second contact hole to be in contact with the conductive contact.
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Description

Technical Field

[0001] The utility model relates to a pair of multimedia glasses, in particular to a charging structure of the multimedia glasses. Background Art

[0002] With the development of society and the improvement of people's living standards, smart multimedia glasses have gradually appeared in people's vision. Currently, many glasses are charged through wired charging. Wired charging requires a charging socket on the glasses. Because the charging socket takes up a lot of space, the space available for setting up the charging socket is relatively small, making it inconvenient to set up the charging socket. In addition, setting up the charging socket on the glasses makes the glasses look unsightly. In addition, when charging is needed, the user needs to manually plug in the charging socket, which makes the user charging experience poor.

[0003] Therefore, the present application designs a charging structure for multimedia glasses to solve the above problems. Utility Model Content

[0004] In order to overcome the deficiencies of the prior art, the utility model provides a charging structure for multimedia glasses.

[0005] The technical solution adopted by the utility model to solve its technical problems is:

[0006] A charging structure for multimedia glasses, comprising a frame and a glasses case, wherein a charging circuit is provided in the frame, and characterized in that: the frame comprises a frame, a cavity is provided in the frame, the charging circuit is located in the cavity, and a conductive contact electrically connected to the charging circuit is provided in the cavity, the frame is provided with a contact hole that passes through the cavity, and the contact surface of the conductive contact is exposed through the contact hole, the glasses case is provided with a second cavity, wherein a charging circuit, a rechargeable battery electrically connected to the charging circuit, and an elastic contact are provided in the second cavity, the glasses case is provided with a second contact hole that passes through the cavity, and the contact end of the elastic contact passes through the second contact hole to contact the conductive contact.

[0007] A magnetic component 1 is provided in the inner cavity 1, and a magnetic component 2 capable of attracting the magnetic component 1 is provided in the inner cavity 2.

[0008] The mirror box includes a box body and a box cover. The bottom surface of the box body is provided with a positioning groove corresponding to the shape of the mirror frame. The mirror frame can be inserted into the bottom of the positioning groove. The second inner cavity is provided in the box body.

[0009] The second contact hole is arranged in the positioning groove, and the first contact hole is arranged on the outer side surface of the frame.

[0010] A partition plate is provided at the bottom of the box body, the positioning groove is provided on the partition plate, the space inside the box body is divided into a storage groove for placing glasses and the second inner cavity by the partition plate, a second magnet hole is provided on the partition plate, the second magnetic attraction part is installed in the second magnet hole, and the second contact hole is provided on the partition plate.

[0011] The mirror frame includes a mirror shell 1 and a mirror shell 2 clamped with the mirror shell 1, a mirror groove 1 is provided in the mirror shell 1, a mirror groove 2 is provided in the mirror shell 2, the inner cavity 1 is composed of the mirror groove 1 and the mirror groove 2, a magnet hole 1 is provided on the groove wall of the mirror groove 1, the magnetic attraction part 1 is installed in the magnet hole 1, and the contact hole 1 is set on the groove wall of the mirror groove 1.

[0012] A first clamping block is provided on the groove wall of the first mirror groove, an elastic plate is provided on the groove wall of the second mirror groove, and a second clamping block capable of clamping with the first clamping block is provided on the elastic plate.

[0013] A positioning insert edge is provided on the groove wall of the first mirror groove, and a positioning slot matched with the positioning insert edge is provided on the groove wall of the second mirror groove.

[0014] The mirror frame includes a bent mirror post, and part of the inner cavity constitutes the internal space of the mirror post.

[0015] The beneficial effects of the present invention are as follows: the present invention adopts conductive contacts instead of charging sockets, and the conductive contacts are small in size, so not only do they occupy a small space, but the surface exposed outside the glasses is also small, and can be as flat as the outer surface of the glasses, thus appearing beautiful. In addition, a charging circuit 2 and a rechargeable battery electrically connected to the charging circuit 2, as well as elastic contacts electrically connected to the charging circuit 2 are provided in the glasses case. When the glasses are placed in the glasses case, the conductive contacts will be squeezed into contact with the elastic contacts and be turned on, thereby realizing charging of the glasses during the storage process, without the need for users to manually plug in and charge like ordinary glasses, and the user experience is very convenient. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0017] Figure 1 This is a structural view of the glasses placed in the glasses box;

[0018] Figure 2 This is a structural view of the mirror box;

[0019] Figure 3 It is a structural view of the glasses;

[0020] Figure 4 It is an exploded structural view of the glasses;

[0021] Figure 5 This is a structural view of the mirror shell one;

[0022] Figure 6 This is the exploded structure view of the box. DETAILED DESCRIPTION

[0023] The advantages and features of the present disclosure and its implementation methods will be illustrated by the following embodiments described with reference to the accompanying drawings. However, the present disclosure can be embodied in different forms and should not be construed as being limited to the embodiments set forth herein. On the contrary, these embodiments are provided so that the present disclosure will be comprehensive and complete and will fully convey the scope of the present disclosure to those skilled in the art. Furthermore, the present disclosure is limited only by the scope of the claims.

[0024] The shapes, sizes, proportions, angles and numbers disclosed in the drawings for describing the embodiments of the present disclosure are merely examples, and therefore the present disclosure is not limited to the details shown. Throughout this specification, the same reference numerals refer to the same elements. In the following description, when a detailed description of a related known function or configuration is determined to be unnecessary to obscure the focus of the present disclosure, the detailed description will be omitted. Where “including”, “having” and “comprising” described in this specification are used, other components may be added unless “only” is used. Unless otherwise indicated, terms in the singular may include plural forms.

[0025] When explaining an element, although not explicitly described, the element is understood to include a range of error.

[0026] When describing a positional relationship, for example, when the positional relationship is described as "on," "above," "below," and "adjacent to," one or more parts may be arranged between two other parts, unless "immediately" or "directly" is used.

[0027] When describing a temporal relationship, for example, when a temporal order is described as “after,” “subsequently,” “next,” and “before,” discontinuous cases may be included unless “just” or “directly” is used.

[0028] It should be understood that although the terms "first," "second," etc. may be used herein to describe various elements, these elements should not be limited by these terms. These terms are only used to distinguish one element from other elements. For example, a first element may be referred to as a second element, and similarly, a second element may be referred to as a first element without departing from the scope of this disclosure.

[0029] As will be fully appreciated by those skilled in the art, the features of the different embodiments of the present disclosure may be coupled or combined with each other in part or in whole, and may cooperate with each other in various ways and be driven technically. The embodiments of the present disclosure may be performed independently of each other, or may be performed together in a mutually dependent relationship.

[0030] Reference Figures 1 to 6 The present invention discloses a charging structure for multimedia glasses, including a frame 1 and a mirror box 2. The frame 1 becomes glasses after the lenses are installed. The appearance of the frame 1 and the mirror box 2 is the same as that of ordinary glasses. A charging circuit 1 is provided in the frame 1 (not shown in the figure). The frame 1 includes a frame 3 and temples. An inner cavity 1 is provided in the frame 3. The charging circuit 1 is located in the inner cavity 1 and a conductive contact 4 electrically connected to the charging circuit 1 is provided in the inner cavity 1. In this application, there are two conductive contacts 4, one connected to the positive pole and the other connected to the negative pole, and they are preferably made of copper and welded to the charging circuit 1. A contact hole 1 5 is provided on the frame 3 that passes through the inner cavity 1. The contact surface of the conductive contact 4 is exposed through the contact hole 1 5. Of course, the contact surface is also flush with the surface of the frame 1. It is relatively beautiful. The mirror box 2 is provided with an inner cavity 2, and the inner cavity 2 is provided with the charging circuit 2 6 and the elastic contact 7 electrically connected to the charging circuit 2 6. There are also two elastic contacts 7 in the present application, one is connected to the positive pole and the other is connected to the negative pole. The elastic contact 7 is also welded to the charging circuit 2 6. The mirror box 2 is provided with a contact hole 2 8 that passes through the inner cavity 2. The contact end of the elastic contact 7 passes through the contact hole 2 8 and contacts with the conductive contact 4 to achieve electrical communication. The inner cavity 2 is provided with a rechargeable battery 9 electrically connected to the charging circuit 2 6. The rechargeable battery 9 is used to charge the glasses. Of course, there is also a smaller rechargeable battery 9 in the glasses. In the above, the charging circuit 1, the charging circuit 2 6 and the elastic contact 7 are all existing technologies, so the specific structure and fixing method are not described in detail.

[0031] As shown in the figure, in order to ensure the stability of charging and prevent the conductive contact 4 and the elastic contact 7 from being separated due to problems such as the movement of the mirror box 2, a magnetic component 10 is provided in the inner cavity 1, and a magnetic component 2 11 is provided in the inner cavity 2 that can attract the magnetic component 10. The magnetic component 10 and the magnetic component 2 11 are preferably magnets and the polarities of the opposite surfaces of the magnetic component 10 and the magnetic component 2 11 are opposite. In this way, the conductive contact 4 and the elastic contact 7 maintain good contact through the mutual attraction between the magnetic component 10 and the magnetic component 2 11.

[0032] As a further structure, the mirror box 2 includes a box body 12 and a box cover 13. The bottom surface of the box body 12 is provided with a positioning groove 14 corresponding to the shape of the frame 3. The frame 3 can be inserted into the positioning groove 14. The inner cavity 2 is arranged in the box body 12. The positioning of the positioning groove 14 can ensure that after the glasses are placed in the mirror box 2, the conductive contacts 4 and the elastic contacts 7 can be aligned, and the magnetic part 10 and the magnetic part 2 11 can also be relatively attracted to each other, which makes it easier for users to use and provides a better user experience.

[0033] Of course, as a preferred structure, the second contact hole 8 is arranged at the bottom of the positioning groove 14, and the first contact hole 5 is arranged on the outer side of the frame 3. After the glasses are placed in the glasses box 2, the outer side of the frame 3 is opposite to and in contact with the bottom of the positioning groove 14, so that the gravity of the glasses can be used to make the conductive contact 4 squeeze the elastic contact 7, thereby achieving full contact.

[0034] As shown in the figure, a partition plate 15 is provided at the bottom of the box body 12, and the positioning groove 14 is provided on the partition plate 15. The space inside the box body 12 is divided into a storage groove for placing glasses and the inner cavity 2 by the partition plate 15. A magnet hole 2 is provided on the partition plate 15, and the magnetic attraction part 2 11 is installed in the magnet hole 2 by glue. The contact hole 2 8 is provided on the partition plate 15. The partition plate 15 can be glued to the box body 12 or fixed by screws. The partition plate 15 and the box body 12 are both plastic parts.

[0035] As shown in the figure, in order to facilitate manufacturing and assembly, the mirror frame 3 includes a mirror shell 16 and a mirror shell 2 17 clamped with the mirror shell 16, and the mirror shell 16 and the mirror shell 2 17 are also injection molded parts. The mirror shell 16 is provided with a mirror groove 18, and the mirror shell 2 17 is provided with a mirror groove 2 19. The inner cavity 1 is composed of the mirror groove 18 and the mirror groove 2 19. The groove wall of the mirror groove 18 is provided with a magnet hole 1, and the magnetic attraction part 10 is installed in the magnet hole 1 by glue, and the contact hole 15 is arranged on the groove wall of the mirror groove 18. As a further structure, two blocks 1 20 are provided on the groove wall of the mirror groove 18, and an elastic plate 21 is provided on the groove wall of the mirror groove 2 19. The elastic plate 21 is provided with a block 22 that can be locked with the block 1 20. When the mirror housing 16 and the mirror housing 2 17 are assembled, the block 1 20 and the block 2 22 are basically located at the same horizontal position. After the block 22 contacts the block 1 20, it is squeezed by the block 1 20, so that the elastic plate 21 is bent and deformed, so that the block 22 bypasses the block 1 20, and then the elastic plate 21 recovers, so that the block 1 20 and the block 2 22 are locked. As a further structure, a positioning insert is provided on the groove wall of the mirror groove 18, and a positioning slot that cooperates with the positioning insert is provided on the groove wall of the mirror groove 2 19, so that it is convenient for assembly, and the combination of the mirror housing 16 and the mirror housing 2 17 is more firmly established after assembly.

[0036] As shown in the figure, the frame 3 includes a bent mirror post 23, and part of the inner cavity 1 constitutes the internal space of the mirror post 23. Because the mirror post 23 is located at the outermost side of the glasses and is bent about 90 degrees to be hinged to the temples, a larger installation space can be designed. Therefore, a smaller rechargeable battery 9 or even a charging circuit 2 6 can be set in the mirror post 23 without hindering the user from wearing glasses.

[0037] The above is a detailed introduction to the charging structure of multimedia glasses provided by an embodiment of the present invention. Specific examples are used herein to illustrate the principles and implementation methods of the present invention. The description of the above embodiments is only intended to help understand the method and core concept of the present invention. At the same time, for those skilled in the art, based on the concept of the present invention, there may be changes in the specific implementation methods and application scope. In summary, the contents of this specification should not be understood as limiting the present invention.

Claims

1. A charging structure for multimedia glasses, comprising a frame and a case, wherein a charging circuit is provided within the frame, characterized in that: The spectacles frame includes a frame, a cavity is provided in the frame, a charging circuit is located in the cavity and a conductive contact electrically connected to the charging circuit is provided in the cavity, a contact hole is provided on the frame and passes through the cavity, and a contact surface of the conductive contact is exposed through the contact hole, a cavity is provided in the mirror box, a charging circuit, a rechargeable battery electrically connected to the charging circuit and an elastic contact are provided in the cavity, a contact hole is provided on the mirror box and passes through the cavity, and a contact end of the elastic contact passes through the contact hole and contacts the conductive contact.

2. The charging structure of multimedia glasses according to claim 1, characterized in that: A magnetic component 1 is provided in the inner cavity 1, and a magnetic component 2 capable of attracting the magnetic component 1 is provided in the inner cavity 2.

3. The charging structure of multimedia glasses according to claim 2, characterized in that: The mirror box includes a box body and a box cover. The bottom surface of the box body is provided with a positioning groove corresponding to the shape of the mirror frame. The mirror frame can be inserted into the positioning groove. The second inner cavity is arranged in the box body.

4. The charging structure of multimedia glasses according to claim 3, characterized in that: The second contact hole is arranged at the bottom of the positioning groove, and the first contact hole is arranged on the outer side surface of the mirror frame.

5. The charging structure of multimedia glasses according to claim 4, characterized in that: A partition plate is provided at the bottom of the box body, the positioning groove is provided on the partition plate, the space inside the box body is divided into a storage groove for placing glasses and the second inner cavity by the partition plate, a second magnet hole is provided on the partition plate, the second magnetic attraction part is installed in the second magnet hole, and the second contact hole is provided on the partition plate.

6. The charging structure of multimedia glasses according to claim 1, characterized in that: The mirror frame includes a mirror shell 1 and a mirror shell 2 clamped with the mirror shell 1, a mirror groove 1 is provided in the mirror shell 1, a mirror groove 2 is provided in the mirror shell 2, the inner cavity 1 is composed of the mirror groove 1 and the mirror groove 2, a magnet hole 1 is provided on the groove wall of the mirror groove 1, the magnetic attraction part 1 is installed in the magnet hole 1, and the contact hole 1 is set on the groove wall of the mirror groove 1.

7. The charging structure of multimedia glasses according to claim 6, characterized in that: A first clamping block is provided on the groove wall of the first mirror groove, an elastic plate is provided on the groove wall of the second mirror groove, and a second clamping block capable of clamping with the first clamping block is provided on the elastic plate.

8. The charging structure of multimedia glasses according to claim 6, characterized in that: A positioning insert edge is provided on the groove wall of the first mirror groove, and a positioning slot matched with the positioning insert edge is provided on the groove wall of the second mirror groove.

9. The charging structure of multimedia glasses according to claim 1, characterized in that: The mirror frame includes a bent mirror post, and part of the inner cavity constitutes the internal space of the mirror post.