Assembling structure of glasses and externally-hung function amplification device

The external expansion device, connected by magnetic components, solves the problem of requiring special design for eyeglass frames, enabling quick assembly and disassembly, stable connection, and multi-functional expansion, thereby improving the comfort and modular adaptability of eyeglasses.

CN121559770APending Publication Date: 2026-02-24黄文泽
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Patent Information

Application Number
CN202512055342.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-12-31
Publication Date
2026-02-24

AI Technical Summary

Technical Problem

In the existing technology, eyeglass frames need to be specially designed to accommodate displays or electronic modules, which results in limitations on the frame structure and appearance, inability to quickly disassemble and replace modules, concentrated weight affecting comfort, and a lack of standardized external interfaces.

Method used

It adopts an assembly structure of glasses and an external amplification device, and uses magnetic components to detachably connect the external connector to the temples, supporting the rapid installation and removal of various amplification modules, including LED modules, imaging lens modules, optical waveguide display modules, and micro UAV platforms.

Benefits of technology

It enables quick assembly and disassembly, maintains the normal appearance of the glasses, improves stability and expandability, is suitable for a variety of usage scenarios, does not increase the weight burden on the front of the frame, and enhances wearing comfort and modular flexibility.

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Abstract

The invention provides an assembly structure of glasses and an external hanging type function amplification device. The assembly structure comprises the glasses, an external hanging connector, an amplification body and a first magnetic assembly, the glasses comprise a glasses frame, glasses legs and hinges, the glasses frame is provided with a front frame part, and the outer side of the front frame part extends to form a pile head; each glasses leg is provided with a front section; the hinges are connected with the corresponding pile heads and the front sections of the glasses legs; the externally-hung combining piece is provided with a sitting part and a combining part, the sitting part is arranged on the top surface of the front frame and extends to the top surfaces of the glasses legs, and the combining part extends to the front sections of the glasses legs from the sitting part; the amplification body is arranged on the sitting part; the first magnetic assembly comprises a first combining part and a second combining part, the first combining part is arranged at the combining part of the external hanging combining part, the second combining part is arranged at the front section of the glasses leg and corresponds to the position of the first combining part, and the first combining part and the second combining part are detachably combined in a magnetic attraction manner. The problems that in the prior art, a mirror frame needs to be specially designed, functional modules cannot be rapidly replaced, the weight is uneven, and a standardized plug-in interface is lacked are solved.
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Description

Technical Field

[0001] This invention relates to the field of eyeglass attachment devices, and more particularly to an assembly structure for eyeglasses and an external augmentation device. Background Technology

[0002] With advancements in integrated circuit nanotechnology, various wearable electronic devices have been published. For example, patent application number TW202204978 (title: Near-eye display device) discloses a display module integrated into eyeglass frames or head-mounted devices, comprising a device body, a display, and a circuit system for receiving image information via wireless connection technology. This device can be directly integrated into eyeglass frames, with the display positioned at the lens, allowing users to view images at near-eye distance.

[0003] However, the aforementioned existing technologies integrate functional modules directly into the frame or lenses, requiring the frame to have a special structure, and the size and weight of the display module are all concentrated on the frame, resulting in at least the following problems: (1) Limited frame structure and appearance: If a display or electronic module needs to be added, the frame needs to be redesigned to accommodate the relevant components, and the thin and light appearance of ordinary glasses cannot be maintained.

[0004] (2) The mechanism is not detachable and lacks modular flexibility: Existing technology fixes the functional modules to the frame, and users cannot quickly disassemble or replace different types of amplification modules (such as cameras, waveguide displays, LED lighting, etc.) as needed.

[0005] (3) The weight is concentrated on the front of the frame, affecting the wearing comfort: the functional modules of the existing technology are mostly located at the front of the lens or frame, making the glasses heavy in the front and light in the back, causing a burden for long-term wear.

[0006] (4) Lack of standardized interface and inability to support various functions: Existing technology is only designed for the display function and there is no universal external interface for different expansion modules to be integrated.

[0007] Therefore, how to provide an assembly structure that can maintain the appearance of ordinary glasses, can be quickly disassembled and assembled, can support a variety of augmentation function modules, and has a stable structure has become a technical problem that urgently needs to be solved by those skilled in the art. Summary of the Invention

[0008] To address at least one of the technical problems mentioned above, the present invention provides an assembly structure for eyeglasses and an external augmentation device, thereby solving problems in the prior art such as the need for special frame design, the inability to quickly replace functional modules, uneven weight distribution, and the lack of a standardized external interface.

[0009] The present invention solves the technical problem by adopting the following technical solution: An assembly structure for eyeglasses and an external amplification device includes: eyeglasses, an external connector, an amplifier, and a first magnetic component; the eyeglasses include a frame, temples, and hinges, the frame having a pair of front frame portions, each front frame portion extending outwards with a post; each pair of temples having a front section; a pair of hinges respectively connecting the corresponding post to the front section of the temple; the external connector has a rest portion and a connecting portion, the rest portion being disposed on the top surface of the front frame and extending to the top surface of the temple, the connecting portion extending from the rest portion to the front section of the temple; the amplifier is disposed on the rest portion; the first magnetic component includes a first connecting member and a second connecting member, the first connecting member being disposed on the connecting portion of the external connector, the second connecting member being disposed on the front section of the temple and corresponding to the position of the first connecting member, the first connecting member and the second connecting member being detachably magnetically connected to each other.

[0010] Furthermore, the inner surface of the seat portion of the external connector extends downward to form a backing piece. The backing piece faces the inner surface of the outer side of the front frame portion and includes at least one second magnetic component. The second magnetic component includes a third connector and a fourth connector. The third connector is disposed on the backing piece of the external connector, and the fourth connector is disposed on the inner surface of the front frame portion corresponding to the third connector. The third connector and the fourth connector are detachably magnetically attracted to each other.

[0011] Furthermore, the second coupling member is located on the inner side of the front section of the temple, which is the side facing the user when wearing the glasses.

[0012] Furthermore, the second connecting member is located on the bottom surface of the front section of the temple.

[0013] Furthermore, the second coupling is located on the outer side of the front section of the temple, which is the side facing away from the user when wearing the glasses.

[0014] Furthermore, the amplification body can be an LED module, a camera lens module, a monocular waveguide display module, or a binocular waveguide display module.

[0015] Furthermore, the augmentation body is a miniature lifting platform to provide lifting and lowering for miniature aerial drones.

[0016] Furthermore, each lens foot contains a battery, which is electrically connected to the amplifier to supply power to the amplifier.

[0017] The beneficial effects of this invention are: (1) Quick disassembly and assembly: Users can quickly replace the amplifier without using tools.

[0018] (2) Maintain normal eyeglass appearance: When the external connector is not installed, the eyeglasses look no different from ordinary eyeglasses, which meets the aesthetic requirements of daily use.

[0019] (3) High stability of the connection: The multi-point magnetic attraction structure greatly improves the fixing strength of the external connector.

[0020] (4) High expandability: suitable for various modules such as LED lighting, shooting, AR display, and drones.

[0021] (5) Suitable for different usage scenarios: different amplifiers can be switched for work, outdoor, sports, shooting or industrial use. Attached Figure Description

[0022] Figure 1 This is a three-dimensional structural diagram of eyeglasses according to an embodiment of the present invention.

[0023] Figure 2 for Figure 1 An exploded perspective view of the glasses and the external amplification device in the embodiment.

[0024] Figure 3 for Figure 2 A three-dimensional composite diagram.

[0025] Figure 4 These are three layout diagrams for the first magnetic component.

[0026] Figure 5 This is a three-dimensional structural diagram of glasses according to another embodiment of the present invention.

[0027] Figure 6 for Figure 5 An exploded perspective view of the glasses and the external amplification device in the embodiment.

[0028] Figure 7 This is a perspective view of the first coupling member disposed on the inner side in another embodiment.

[0029] Figure 8 This is a perspective view of the first coupling member disposed on the bottom surface in another embodiment.

[0030] Figure 9 This is a perspective view of the first coupling member disposed on the outer side in another embodiment.

[0031] Figure 10 This is a 3D view of an amplifier that is an LED module.

[0032] Figure 11 This is a stereoscopic view of the amplified lens module.

[0033] Figure 12 This is a 3D view of an amplified monocular optical waveguide display module.

[0034] Figure 13 This is a top view of a binocular optical waveguide display module.

[0035] Figure 14 This is a 3D view of the augmented body, which consists of a lifting platform module and a miniature camera drone.

[0036] In the figure: 10-Eyeglasses; 11-Frame; 111-Front frame; 1111-Inner surface; 112-Pendant; 12-Temperature; 121-Front section; 1211-Inner surface; 1212-Bottom surface; 1213-Outer surface; 13-Hinge; 20-External mounting bracket; 21-Seat; 211-Brace; 22-Joint; 221-First surface; 222-Second surface; 223-Third surface; 30-Amplifier; 30a - LED module; 30b - Camera lens module; 30c - Monocular waveguide display module; 30d - Binocular waveguide display module; 30e - Lifting platform; 40 - First magnetic component; 41 - First connector; 42 - Second connector; 50 - Second magnetic component; 51 - Fourth connector; 52 - Third connector; 60 - Battery; FD - Micro aerial drone; T1 - Top surface of front frame; T2 - Top surface of temple. Detailed Implementation

[0037] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention. Example

[0038] refer to Figure 1-4This embodiment provides an assembly structure for eyeglasses and an external amplification device, including: eyeglasses 10, an external connector 20, an amplifier 30, and a first magnetic component 40; the eyeglasses 10 includes a frame 11, temples 12, and hinges 13. The frame 11 has a pair of front frame portions 111, each front frame portion 111 having a post 112 extending outward from its outer side; each pair of temples 12 has a front section 121; a pair of hinges 13 respectively connect the corresponding post 112 to the front section 121 of the temple 12, so that the pair of temples 12 can be moved relative to the front frame portion 111 to a suitable unfolded position, which is the unfolded angle of the temples 12 when the user wears the eyeglasses 10; the external connector 20... The device has a seat portion 21 and a connecting portion 22. The seat portion 21 is disposed on the top surface T1 of the front frame and extends to the top surface T2 of the temple. The connecting portion 22 extends from the seat portion 21 to the front section 121 of the temple 12. The amplifier 30 is disposed on the seat portion 21. The first magnetic component 40 includes a first connecting member 41 and a second connecting member 42. The first connecting member 41 is disposed on the connecting portion 22 of the external connecting member 20, and the second connecting member 42 is disposed on the front section 121 of the temple 12 and corresponds to the position of the first connecting member 41. The first connecting member 41 and the second connecting member 42 are detachably magnetically attracted to each other, so that the external connecting member 20 is detachably attached to the glasses 10. This invention, by setting the seat portion 21 and the connecting portion 22 of the external connecting member 20 on the frame 11 and the temple 12, and forming a detachable and stable adsorption structure by the first magnetic component 40, allows the functional module to be quickly attached and detached from the glasses 10.

[0039] like Figure 4 (a) Figure 4 (b) Figure 4 As shown in (c), the present invention can further be configured to place the second coupling member 42 on the inner side 1211 of the front section 121 of the temple 12 according to different design requirements (e.g., Figure 4 (a) Bottom surface 1212 (e.g.) Figure 4 (b) or outer surface 1213 (e.g.) Figure 4 (c)), in order to meet different appearance requirements and usage scenarios, in principle, with Figure 4 (a) Figure 4 (b) and Figure 4 (c) For example, under the same magnet size conditions, Figure 4 (a) The embodiment with the strongest adsorption and fixation force Figure 4 (b) Second place, Figure 4 (c) Weakest. Among them, the inner side 1211 is the side facing the user in the wearing state, and the outer side 1213 is the side facing away from the user in the wearing state.

[0040] Further optimize the technical solution, such as Figure 10As shown, the amplifier 30 is an LED module 30a, used to provide functions such as lighting, signal prompts, and outdoor activity assistance.

[0041] Further optimize the technical solution, such as Figure 11 As shown, the amplification body 30 is a camera lens module 30b, which can be used for shooting, recording, or as a visual aid image source, and can be placed at different angles as needed.

[0042] Further optimize the technical solution, such as Figure 12 As shown, the amplification module 30 is a monocular optical waveguide display module 30c, used for AR information projection, navigation prompts, or work assistance display.

[0043] Further optimize the technical solution, such as Figure 13 As shown, the amplification body 30 is a binocular optical waveguide display module 30d, which provides a more complete augmented reality display effect.

[0044] Further optimize the technical solution, such as Figure 14 As shown, the augmentation unit 30 is a miniature lifting platform 30e, which provides the lifting function of the miniature aerial photography drone FD, allowing users to capture images from an aerial perspective.

[0045] Further optimize the technical solution, such as Figure 12 As shown, each lens foot 12 is provided with a battery 60, which is electrically connected to the amplifier 30 through a wire or a hidden circuit to supply power to the amplifier 30.

[0046] The amplification body 30 of this invention does not require a separate power supply, which helps to reduce weight and maintain an aesthetically pleasing appearance. The Pool 60 can be a lithium battery, solid-state battery, or other small rechargeable power module, and can integrate a charging interface. Wireless charging is also available at the rear of the temple or the side of the frame (not shown).

[0047] The mounting portion 21 of the external connector 20 of the present invention sits on the top surface T1 of the front frame of the glasses 10, and extends at an angle to the top surface T2 of the temple, and is fixed to the temple 12 by the connecting portion 22, forming a triangular support with extremely high stability, and retaining the function of quick removal or assembly from the glasses 10.

[0048] This invention maintains the appearance of standard eyeglasses: the external connector rests flat against the top surface of the frame and temples without altering the existing shape of the glasses. Unlike previous technologies, this invention does not require embedding electronic modules into the frame structure. This invention features quick installation and removal, facilitating the replacement of different augmentation modules: magnetic adsorption allows for installation or removal within seconds without any tools. This invention provides high support strength and a stable fit: the external module bridges the front frame and temples, distributing force and preventing single-point stress that could cause detachment or wobbling. This invention has a standardized external interface, supporting various augmentation functions: users can replace various modules such as LED lighting, cameras, waveguide displays, and micro-drones according to different situations without replacing the glasses themselves. This invention does not increase the weight burden on the front of the frame: the connecting structure bridges the front frame and temples, allowing the weight to be shared by both temples, improving wearing comfort. This invention improves the flexibility and lifespan of the eyeglasses: the external functional modules can be maintained or upgraded independently without affecting the glasses themselves. Example

[0049] The difference between this embodiment and Embodiment 1 is that it includes a second magnetic component 50. An abutment piece 211 extends downward from the inner surface 1111 of the seat portion 21 of the external attachment 20. The abutment piece 211 faces the inner surface 1111 of the front frame portion 111 on the outer side. It includes at least one second magnetic component 50. The second magnetic component 50 includes a third connector 52 and a fourth connector 51. The third connector 52 is disposed on the abutment piece 211 of the external attachment 20, and the fourth connector 51 is disposed on the inner surface 1111 of the front frame portion 111 corresponding to the third connector 52. The third connector 52 and the fourth connector 51 are detachably magnetically attracted to each other, so that the external attachment 20 is detachably attached to the glasses 10.

[0050] Reference Figures 5 to 9 In this embodiment, the external attachment 20, in addition to the first magnetic component 40 (such as...), includes... Figure 7 As shown, the first connecting member 41 may be disposed on the first surface 221 of the connecting portion 22, the first surface 221 corresponding to the inner surface 1211 of the temple 12; as Figure 8 As shown, the first connecting member 41 can be disposed on the second surface 222 of the connecting portion 22, which corresponds to the bottom surface 1212 of the temple 12; as Figure 9As shown, the first coupling member 41 can be disposed on the third surface 223 of the coupling portion 22 (the third surface 223 corresponds to the outer surface 1213 of the temple 12). An abutment piece 211 extends downward from the inner surface of the seat portion 21 of the external coupling member 20 to abut against the inner surface of the outer side of the front frame portion 111. A third coupling member 52 of the second magnetic component 50 is disposed on the abutment piece 211, while a fourth coupling member 51 is disposed on the inner surface of the outer side of the front frame portion 111. The third coupling member 52 and the fourth coupling member 51 are detachably magnetically coupled, providing another set of attachment points for the external coupling member 20 (i.e., magnetically attached to the inner surface of the outer side of the front frame portion 111), making the coupling more stable, especially preventing the external coupling member 20 from shaking or shifting when installing large or heavy amplifiers 30.

[0051] This magnetic structure has the advantage of multi-point adsorption, which enables the external connector 20 and the glasses 10 to form a stronger, more torsional and lateral slip-resistant joint.

[0052] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. An assembly structure for eyeglasses and an external amplification device, characterized in that, include: Eyeglasses, an external connector, an amplifier, and a first magnetic assembly; the eyeglasses include a frame, temples, and hinges, the frame having a pair of front frame portions, each front frame portion extending outwards with a post; each pair of temples having a front section; a pair of hinges respectively connecting the corresponding post to the front section of the temple; the external connector having a rest portion and a connecting portion, the rest portion being disposed on the top surface of the front frame and extending to the top surface of the temple, the connecting portion extending from the rest portion to the front section of the temple; the amplifier being disposed on the rest portion; the first magnetic assembly includes a first connecting member and a second connecting member, the first connecting member being disposed on the connecting portion of the external connector, the second connecting member being disposed on the front section of the temple and corresponding to the position of the first connecting member, the first connecting member and the second connecting member being detachably magnetically connected to each other.

2. The assembly structure of glasses and an external amplification device according to claim 1, characterized in that, The inner surface of the seat portion of the external connector extends downward to form a backing piece. The backing piece faces the inner surface of the outer side of the front frame portion and includes at least one second magnetic component. The second magnetic component includes a third connector and a fourth connector. The third connector is disposed on the backing piece of the external connector, and the fourth connector is disposed on the inner surface of the front frame portion corresponding to the third connector. The third connector and the fourth connector are detachably magnetically attracted to each other.

3. The assembly structure of glasses and an external amplification device according to claim 1 or 2, characterized in that, The second coupling is located on the inner side of the front section of the temple, which is the side facing the user when wearing the glasses.

4. The assembly structure of glasses and an external amplification device according to claim 1 or 2, characterized in that, The second connecting member is located on the bottom surface of the front section of the temple.

5. The assembly structure of glasses and an external amplification device according to claim 1 or 2, characterized in that, The second connecting member is located on the outer side of the front section of the temple, which is the side facing away from the user when wearing the glasses.

6. The assembly structure of glasses and an external amplification device according to claim 1 or 2, characterized in that, The amplification module is an LED module, a camera lens module, a monocular waveguide display module, or a binocular waveguide display module.

7. The assembly structure of glasses and an external amplification device according to claim 1 or 2, characterized in that, The augmentation unit is a miniature lifting platform to provide lifting and take-off for miniature aerial drones.

8. The assembly structure of glasses and an external amplification device according to claim 1 or 2, characterized in that, Each lens foot contains a battery, which is electrically connected to the amplifier to supply power to the amplifier.

Citation Information

Patent Citations

  • Near-eye display device including an apparatus body and a display combined to the apparatus body

    TW202204978A