Intelligent glasses
By incorporating a backup power supply component on the lanyard and an adjustable flexible cable, the design solves the problems of poor comfort and stability of smart glasses during exercise, enabling quick installation and removal as well as nighttime alerts, thus improving the user experience and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 东莞市三奕电子科技股份有限公司
- Filing Date
- 2025-03-31
- Publication Date
- 2026-05-08
AI Technical Summary
Existing smart glasses suffer from poor comfort and stability during exercise, lack sufficient backup battery indication, and are cumbersome to install and remove, affecting user experience and safety.
A backup power supply component with a lanyard was designed. It utilizes an adjustable elastic cable and a buckle connection structure, combined with fluorescent reflective stickers, to achieve quick installation and removal and nighttime visibility, thereby improving wearing comfort and stability.
It improves the wearing comfort and stability of smart glasses during exercise, enhances safety for finding and using them at night, ensures convenient switching to backup power, and extends usage time.
Smart Images

Figure CN224216952U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of wearable devices, specifically to a smart pair of glasses. Background Technology
[0002] Smart glasses, like smartphones, have their own independent operating system. They can be controlled by voice or gestures to add schedules, navigate maps, interact with friends, take photos and videos, and make video calls. They are one of the most promising wearable smart devices proposed in recent years, and the public generally believes that the emergence of smart glasses will make people's lives more convenient.
[0003] Existing smart glasses technology offers more intelligent functions, such as wireless communication and information display, to enhance the sports experience. Furthermore, for extended sports activities or outdoor events, an efficient backup power solution is essential, directly impacting the practicality and reliability of sports glasses. Current methods involve replacing backup batteries mounted on the temples; however, these backup batteries only provide backup power, and this design often fails to adequately consider comfort and stability during exercise. For example, during strenuous activity, the glasses can easily fall off or shift, affecting the user experience. Existing backup batteries also have poor visibility; their small size makes them difficult to locate, and their visibility is low at night, affecting safety during outdoor use. Moreover, existing backup batteries are mostly fixed connections, making installation and removal cumbersome and reducing efficiency. Utility Model Content
[0004] This utility model addresses the shortcomings of current technology by providing a smart glasses solution that aims to solve the technical problems of poor comfort and stability, poor alertness, and cumbersome installation and disassembly in existing smart glasses.
[0005] The technical solution adopted by this utility model to achieve the above objectives is as follows:
[0006] A smart pair of glasses includes a glasses body, which comprises a frame assembly, a lens assembly, and a temple assembly. The temple assembly has a backup power supply component for the lanyard, and the backup power supply component for the lanyard is detachably connected to the temple assembly. The frame assembly has a PCB board with a chip, and the temple assembly includes a first temple and a second temple, both of which have a control circuit board. The first temple and the second temple are respectively located at both ends of the frame assembly, and hinge structures are provided between the first temple and the frame assembly, and between the second temple and the frame assembly. The backup power supply component for the lanyard has a fluorescent reflective sticker.
[0007] As a further improvement, battery modules are provided at the tail ends of the first temple and the second temple, and the battery modules are electrically connected to the control circuit board. Each battery module is provided with a housing. Adjustable elastic cables are provided at both ends of the lanyard backup power supply component. Each adjustable elastic cable is provided with a connecting block, and each connecting block is provided with two metal plates.
[0008] As a further improvement, the detachable connection structure includes two snap-fit connection structures and two slot connection structures. The two snap-fit connection structures are respectively disposed at the ends of the adjustable elastic cable, and the two slot connection structures are respectively disposed at the ends of the housing. The snap-fit connection structures are respectively snapped into connection with the slot connection structures.
[0009] As a further improvement, the snap-fit connection structure includes a connecting part and an insertion part. The connecting part is provided with two through holes, which extend to the surface of the insertion part. The insertion part is provided with a groove, and the metal pieces are arranged in an array in the groove.
[0010] The card slot connection structure includes a card slot portion and a positioning socket portion. Both the card slot portion and the positioning socket portion are provided with an insertion port. The inner wall of the card slot portion is provided with a groove. The groove is provided with two through holes. The through holes are connected and communicate with the inside of the outer shell. The groove is provided with two arrayed arc-shaped metal elastic sheets. Each arc-shaped metal elastic sheet is provided with a connecting wire. The connecting wire is electrically connected to the battery module.
[0011] As a further improvement, the backup power supply component for the lanyard includes a waterproof housing, a battery, and a control circuit board. The battery is electrically connected to the control circuit board and is disposed within the waterproof housing. The control circuit board is electrically connected to the adjustable elastic cable. The waterproof housing also has a metal sheet, which is electrically connected to the control circuit board. The fluorescent reflective sticker is disposed on the outer surface of the waterproof housing.
[0012] As a further improvement, the adjustable elastic cable includes an elastic cable and an adjustable buckle, the adjustable buckle being disposed on the elastic cable; the outer surface of the elastic cable is provided with a fluorescent coating and a reflective texture.
[0013] As a further improvement, both the first temple and the second temple are also provided with touch control buttons; both the tail of the first temple and the tail of the second temple are provided with elastic bending clamping parts, the tail end of the elastic bending clamping parts is provided with a socket, the battery module is provided with a socket, and the socket is electrically connected to the socket.
[0014] As a further improvement, the frame assembly is provided with a nose pad recess and a lens mounting opening, and the lens assembly is disposed within the lens mounting opening.
[0015] Compared with the prior art, the smart glasses provided in this utility model embodiment have at least one of the following technical effects:
[0016] 1. This utility model improves the wearing comfort and stability of glasses by setting up a spare power supply component for the hanging rope, which provides backup power and serves as a hanging rope, reduces the risk of glasses slipping during exercise, and improves the user experience; and by setting up an adjustable buckle to adjust the length of the elastic cable, it can be adjusted according to the user's usage requirements, thereby improving the wearing stability.
[0017] 2. By setting the fluorescent reflective sticker, it serves as both a fluorescent and reflective indicator, making it easier to find the smart glasses at night and providing a nighttime illumination, thus improving the search and illuminating performance and safety features during outdoor use;
[0018] 3. By setting a snap-fit connection structure for quick installation or removal of the lanyard backup power supply component from the first and second temples, the efficiency of installation and removal is improved. In addition, the curved metal elastic sheet is provided to provide elasticity and fit with the metal sheet, ensuring electrical connection while providing stable fixation. This greatly improves the convenience and efficiency of the backup power supply, ensuring that even if the main power is exhausted during exercise, it can be quickly switched to the backup power supply, extending the usage time. Attached Figure Description
[0019] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0020] Figure 1 This is a schematic diagram of the overall structure of the smart glasses in this embodiment;
[0021] Figure 2 This is a schematic diagram of the battery module in this embodiment;
[0022] Figure 3 This is a schematic diagram of the backup power supply component for the lanyard in this embodiment;
[0023] Figure 4 This is a bottom view of the backup power supply component for the lanyard in this embodiment. Detailed Implementation
[0024] The following description is only a preferred embodiment of the present invention and does not limit the scope of protection of the present invention.
[0025] For examples, see the appendix. Figures 1-4 A smart glasses system includes a glasses body 1, which includes a frame assembly 2, a lens assembly 3, and a temple assembly 4. The temple assembly 4 is equipped with a lanyard backup power supply component 5, and the lanyard backup power supply component 5 and the temple assembly 4 are connected by a detachable connection structure 6. The frame assembly 2 is equipped with a PCB board with a chip, and the PCB board with the chip is equipped with an AI processing module for AI data processing. The temple assembly 4 includes a first temple 40 and a second temple 41, both of which are equipped with a control circuit board. The control circuit board is equipped with a wireless communication module for wireless data transmission or reception. A temple 40 and a second temple 41 are respectively disposed at both ends of the frame assembly 2, and a hinge structure 7 is provided between the first temple 40 and the frame assembly 2, and between the second temple 41 and the frame assembly 2. The hinge structure 7 is used to allow the first temple 40 and the second temple 41 to be folded and stored. The lanyard backup power supply assembly 5 is provided with a fluorescent reflective sticker 52. The lanyard backup power supply assembly 5 is used to greatly improve the convenience and efficiency of the backup power supply through a quick disassembly and assembly mechanism, ensuring that the main power supply can be switched to the backup power supply during exercise, extending the usage time, improving the wearing comfort and stability of the glasses, reducing the risk of the glasses slipping during exercise, and improving the user experience.
[0026] The tail end of the first temple 40 and the tail end of the second temple 41 are both provided with battery modules 8. The battery modules 8 are electrically connected to the control circuit board and are all provided with a housing. The two ends of the lanyard backup power supply component 5 are provided with adjustable elastic cables 50. The adjustable elastic cables 50 are all provided with connecting blocks and the connecting blocks are all provided with two metal plates 500.
[0027] The detachable connection structure 6 includes two snap-fit connection structures 60 and two slot connection structures 61. The two snap-fit connection structures 60 are respectively disposed at the ends of the adjustable elastic cable 50, and the two slot connection structures 61 are respectively disposed at the ends of the outer shell. The snap-fit connection structures 60 are respectively snapped into the slot connection structures 61. The detachable connection structure 6 is used to allow the lanyard backup power supply component 5 to be detachably installed or connected.
[0028] Each snap-fit connection structure 60 includes a connecting part and an insertion part. The connecting part has two through holes that extend to the surface of the insertion part. Each insertion part has a groove, and the metal pieces 500 are arranged in an array within the groove. Each slot connection structure 61 includes a slot part and a positioning socket part. Both the slot part and the positioning socket part have an insertion port. The inner wall of the slot part has a groove, and the groove has two through holes that are connected to the inside of the outer shell. The groove has two arrayed arc-shaped metal elastic pieces 610, each with a connecting wire that is electrically connected to the battery module 8. The snap-fit connection structure 60 is used for quick installation or removal of the lanyard backup power supply component 5 from the first temple 40 and the second temple 41, improving the efficiency of installation and removal. In addition, the arc-shaped metal elastic pieces 610 provide elasticity that fits the metal pieces 500, ensuring electrical connection while providing stable fixation.
[0029] The lanyard backup power supply component 5 includes a waterproof housing 51, a battery, and a control circuit board. The battery is electrically connected to the control circuit board and is housed inside the waterproof housing 51. The control circuit board is electrically connected to the adjustable elastic cable 50. The waterproof housing 51 also has a second metal plate 53, with a positioning magnet on its side. The positioning magnet is used for magnetic positioning during charging. The second metal plate 53 is electrically connected to the control circuit board. A fluorescent reflective sticker 52 is disposed on the outer surface of the waterproof housing 51. The lanyard backup power supply component 5 provides backup power, and the fluorescent reflective sticker 52 serves as both a fluorescent and reflective indicator, facilitating the search for the smart glasses at night and providing illumination at night, thus improving safety during outdoor use.
[0030] Each adjustable elastic cable 50 includes an elastic cable 501 and an adjustable buckle 502. The adjustable buckle is disposed on the elastic cable 501. The outer surface of the elastic cable 501 is provided with a fluorescent coating and reflective texture. The adjustable buckle 502 is used to adjust the length of the elastic cable 501, thereby adjusting it according to the user's usage requirements and improving the stability of wearing. The adjustable buckle 502 is either a rubber adjustable buckle or a metal adjustable buckle with a sponge pad.
[0031] Both the first temple 40 and the second temple 41 are equipped with touch control buttons; both the tail of the first temple 40 and the tail of the second temple 41 are equipped with elastic bending clamping parts, the tail end of the elastic bending clamping parts is equipped with a socket, the battery module 8 is equipped with a socket, the socket is electrically connected to the socket, both the socket and the socket are waterproofed, and the elastic bending clamping parts are used to provide a certain elastic clamping force, thereby improving the wearing stability of the smart glasses.
[0032] The frame assembly 2 is provided with a nose pad recess and a lens mounting opening. The lens assembly 3 is disposed in the lens mounting opening. The lens assembly 3 includes two virtual reality structure optical module lenses. The virtual reality structure optical module lenses are used to display information on the temple assembly 4, thereby forming a smart glasses 1 with AI display function.
[0033] In another embodiment, the frame assembly 2 is further provided with a camera, which is electrically connected to the PCB board with chip. The camera is used for taking pictures, thereby forming smart glasses 1 with AI shooting function.
[0034] This invention improves the comfort and stability of the glasses by incorporating a backup power supply component for both power supply and hanging, reducing the risk of the glasses slipping during exercise and enhancing the user experience. An adjustable buckle allows for adjustment of the elastic cable length to suit user needs, further improving stability. Fluorescent reflective stickers provide both fluorescent and reflective cues, facilitating nighttime location and enhancing safety during outdoor use. A snap-fit connection structure allows for quick installation and removal of the backup power supply component from the first and second temples, improving efficiency. The curved metal elastic sheet provides both elasticity and stability, ensuring electrical connection and providing a secure fit. This significantly enhances the convenience and efficiency of the backup power supply, ensuring a rapid switch to backup power even if the main power is depleted during exercise, extending usage time.
[0035] This utility model is not limited to the above-described embodiments. Other smart glasses made using the same or similar structures or devices as the above-described embodiments of this utility model are all within the protection scope of this utility model.
Claims
1. A type of smart glasses, characterized in that: The smart glasses include a glasses body, which comprises a frame assembly, a lens assembly, and a temple assembly. The temple assembly has a backup power supply component for the lanyard, and the backup power supply component for the lanyard is detachably connected to the temple assembly. The frame assembly has a PCB board with a chip, and the temple assembly includes a first temple and a second temple, both of which have a control circuit board. The first temple and the second temple are respectively located at both ends of the frame assembly, and hinge structures are provided between the first temple and the frame assembly, and between the second temple and the frame assembly. The backup power supply component for the lanyard has a fluorescent reflective sticker.
2. The smart glasses according to claim 1, characterized in that: The tail ends of the first temple and the tail ends of the second temple are each provided with a battery module. The battery modules are electrically connected to the control circuit board and each battery module is provided with a housing. The two ends of the lanyard backup power supply component are provided with adjustable elastic cables. Each adjustable elastic cable is provided with a connecting block and each connecting block is provided with two metal plates.
3. The smart glasses according to claim 2, characterized in that: The detachable connection structure includes two snap-fit connection structures and two slot connection structures. The two snap-fit connection structures are respectively disposed at the ends of the adjustable elastic cable, and the two slot connection structures are respectively disposed at the ends of the outer shell. The snap-fit connection structures are respectively engaged with the slot connection structures.
4. The smart glasses according to claim 3, characterized in that: The snap-fit connection structure includes a connecting part and an insertion part. The connecting part has two through holes that extend to the surface of the insertion part. The insertion part has a groove, and the metal pieces are arranged in an array within the groove. The card slot connection structure includes a card slot portion and a positioning socket portion. Both the card slot portion and the positioning socket portion are provided with an insertion port. The inner wall of the card slot portion is provided with a groove. The groove is provided with two through holes. The through holes are connected and communicate with the inside of the outer shell. The groove is provided with two arrayed arc-shaped metal elastic sheets. Each arc-shaped metal elastic sheet is provided with a connecting wire. The connecting wire is electrically connected to the battery module.
5. The smart glasses according to claim 4, characterized in that: The backup power supply assembly for the lanyard includes a waterproof housing, a battery, and a control circuit board. The battery is electrically connected to the control circuit board and is housed within the waterproof housing. The control circuit board is electrically connected to the adjustable elastic cable. The waterproof housing also includes a metal sheet, which is electrically connected to the control circuit board. The fluorescent reflective sticker is disposed on the outer surface of the waterproof housing.
6. The smart glasses according to claim 5, characterized in that: The adjustable elastic cables all include an elastic cable and an adjustable buckle, with the adjustable buckle disposed on the elastic cable; the outer surface of the elastic cable is provided with a fluorescent coating and reflective texture.
7. The smart glasses according to claim 6, characterized in that: Both the first temple and the second temple are equipped with touch control buttons; both the tail of the first temple and the tail of the second temple are equipped with elastic bending clamping parts, the tail end of the elastic bending clamping parts is equipped with a socket, the battery module is equipped with a socket, and the socket is electrically connected to the socket.
8. The smart glasses according to claim 7, characterized in that: The frame assembly has a nose pad recess and a lens mounting opening, and the lens assembly is disposed within the lens mounting opening.