An intelligent eyewear
By employing a detachable connection structure and a sealed structure in the smart glasses, the problem of unstable battery connection is solved, achieving stable connection and waterproof performance, and improving wearing comfort 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
- 2025-06-11
- Publication Date
- 2026-06-12
AI Technical Summary
Existing smart glasses have poor battery connection stability, and they are prone to loosening after prolonged use or falling off during strenuous exercise, affecting wearing stability and electrical connection.
It adopts a detachable connection structure and a sealing structure. The first splicing structure and the second splicing structure realize a stable connection between the temple and the battery assembly of the ear loop. The cooperation of the locking block and the connecting slide groove enables quick connection and disassembly. Combined with the sealing ring, the waterproof performance is improved.
It improves the stability of electrical connections, prevents battery components from detaching due to vibration or movement, ensures wearing stability and aesthetics, and extends service life.
Smart Images

Figure CN224354666U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of smart glasses, and specifically to a type of smart glasses. Background Technology
[0002] For people who wear glasses, wearing headphones while wearing glasses can be uncomfortable due to the presence of the temples. Currently, music glasses are available on the market, allowing people to enjoy listening to music while wearing glasses. To use them, the temples are clipped onto the ears, and the earphones are inserted. A battery powers the music playback device, and the music is transmitted to the ears through the earphones.
[0003] Existing music glasses have been found to cause discomfort for some users after prolonged use, especially when the earphones are inserted into their ears. Furthermore, due to the structural limitations of glasses, the battery capacity of current music glasses is relatively small. When the battery is depleted, the glasses must be removed for charging, reducing their practicality. To address these issues, publication number CN202020094459.3 discloses a pair of earphones with a quick-replaceable battery, comprising a frame, lenses, a first temple, and a second temple. Both the first and second temples have mounting cavities and caps on their inner sides. A sound module is installed inside each mounting cavity. A Bluetooth PCB board with a chip is located inside either the first or second temple, and both sound modules are electrically connected to the Bluetooth PCB board. A plug-in battery is fitted at the end of each temple, smoothly transitioning into a natural curve. This invention integrates the temples of glasses with a Bluetooth headset, eliminating the need for earphones and providing a pleasant wearing experience. When the plug-in batteries run out of power, simply remove one battery and replace it with a spare to continue using the glasses without removing them for charging, thus offering unlimited battery life and enhancing practicality.
[0004] However, this pair of glasses-like headphones still has the following problems: Existing glasses use a plug-in method for replacing plug-in batteries. The stability of the connection mainly relies on the cooperation between the plug and the socket. The plug and the socket have a positioning and fixing function, ensuring good contact between the plug pin and the clamping piece of the circular socket, preventing loosening. However, while it ensures the stability of the plug and the socket, it cannot guarantee the stability of the connection in the mating direction. Long-term use may cause the plug and the socket to loosen, affecting the stability of the electrical connection, the power supply, and the user's wearing stability. Under the action of movement, they may detach, resulting in the loss of the plug-in battery. Utility Model Content
[0005] This utility model addresses the shortcomings of current technology by providing a smart glasses solution that aims to solve the technical problems of poor battery connection stability and high risk of loosening or loss during prolonged use or vigorous exercise in existing smart glasses.
[0006] The technical solution adopted by this utility model to achieve the above objectives is as follows:
[0007] A smart pair of glasses includes a frame assembly, with temple assemblies at both ends. A hinge structure connects the temple assemblies to the frame assembly, controlling their folding and stowage. Each temple assembly has an ear-hook battery assembly, with a detachable connection structure and a sealing structure between the ear-hook battery assembly and the temple assemblies. The detachable connection structure allows for quick connection or disconnection between the ear-hook battery assembly and the temple assemblies, while the sealing structure provides a waterproof seal. The frame assembly also includes a lens assembly.
[0008] As a further improvement, each of the temple assemblies includes a temple, the temple having a first cavity, the first cavity having a first circuit board and a first power supply assembly; the ear-mount battery assembly includes a housing, the housing having a second cavity, the second cavity having a second power supply assembly.
[0009] Each of the detachable connection structures includes a first splicing structure and a second splicing structure. The first splicing structure is disposed at the end of the temple, and the second splicing structure is disposed at the end of the housing. The first splicing structure and the second splicing structure cooperate to achieve a snap-fit connection.
[0010] As a further improvement, the first splicing structure includes two first connecting posts, which are arranged in a mirror-like manner on the end face of the temple; each of the two first connecting posts is provided with a locking block, which is used for limiting and fixing after the assembly connection is in place.
[0011] As a further improvement, the second splicing structure includes two connecting slides, each of which is provided with a slot, and the two slots are located on the centerline of the end face of the housing; each of the two connecting slides is also provided with an opening, and the two openings are respectively located on the diagonal of the end face of the housing, and the openings are used for the insertion of the card block.
[0012] As a further improvement, all the connecting grooves are arc-shaped grooves, and each arc-shaped groove is provided with a groove opening, which is used for the passage and engagement of the first connecting column.
[0013] As a further improvement, both of the card blocks are provided with electrical connecting pieces, which are electrically connected to the first circuit board; each of the card slots is provided with a metal elastic piece electrically connected to the electrical connecting piece, which is electrically connected to the second power supply component.
[0014] As a further improvement, the sealing structure includes one or more sealing rings, and the ends of the temples and the housing are provided with annular grooves. The sealing rings are set in the annular grooves by means of adhesive or fastening.
[0015] As a further improvement, each temple is also equipped with a touch control button and a storage structure. The storage structure is located on the outside of the temple and can be either an elastic buckle or an elastic band. The storage structure is used to store the battery assembly with the ear loop.
[0016] As a further improvement, the frame assembly includes a frame, and a PCB board with a chip is provided inside the frame; the frame also has a nose pad recess and a lens mounting opening, and the lens assembly is disposed in the lens mounting opening.
[0017] As a further improvement, the frame can be either a frame with a camera or a frame without a camera; the lens assembly can be one of the following: an optical lens assembly for a virtual reality structure, a plano lens, a sunglass lens, a refractive lens, a photochromic lens, or an electrochromic lens.
[0018] Compared with the prior art, the smart glasses provided in this utility model embodiment have at least one of the following technical effects:
[0019] This invention achieves a detachable connection between the temple and the ear-hook battery assembly by setting the first splicing structure and the second splicing structure. The connection and disassembly operations are simple. When connection is needed, the locking block is inserted into the connecting slide through the slot, and then rotated so that the locking block reaches the end of the connecting slide to complete the connection. When disassembly is needed, the reverse is reversed to complete the disassembly. This ensures the overall connection stability between the temple and the ear-hook battery assembly, preventing it from moving up and down, forward and backward, or left and right due to vibration. It improves the anti-slip performance, ensures electrical connection, improves aesthetics, and ensures the user's wearing stability, reducing the possibility of the ear-hook battery assembly being lost due to movement. Attached Figure Description
[0020] 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.
[0021] Figure 1 This is a schematic diagram of the overall structure of the smart glasses in this embodiment;
[0022] Figure 2 This is an exploded view of the smart glasses in this embodiment;
[0023] Figure 3 This is a schematic diagram of the temple assembly structure in this embodiment;
[0024] Figure 4 This is a schematic diagram of the temple assembly structure in this embodiment. Detailed Implementation
[0025] The following description is only a preferred embodiment of the present invention and does not limit the scope of protection of the present invention.
[0026] For examples, see the appendix. Figures 1-4 A smart glasses 1 includes a frame assembly 2, with temple assemblies 3 at both ends of the frame assembly 2. A hinge structure 4 connects the temple assemblies 3 to the frame assembly 2, and the hinge structure 4 controls the folding and storage of the temple assemblies 3. Each temple assembly 3 has an ear-hook battery assembly 5, and a detachable connection structure 6 and a sealing structure 7 are provided between the ear-hook battery assembly 5 and the temple assemblies 3. The detachable connection structure 6 allows for quick connection or disconnection between the ear-hook battery assembly 5 and the temple assemblies 3, and the sealing structure 7 provides a waterproof seal. The frame assembly 2 also includes a lens assembly 8.
[0027] Each temple assembly 3 includes a temple 30, which has a first cavity containing a first circuit board and a first power supply assembly. The ear-hook battery assembly 5 includes a housing 50, which has a second cavity containing a second power supply assembly. Both the first and second power supply assemblies include a battery and are used to provide power. Both the temple 30 and the housing 50 are also provided with an external power connection terminal, which is used to provide a charging interface.
[0028] Each detachable connection structure 6 includes a first splicing structure 60 and a second splicing structure 61. The first splicing structure 60 is disposed at the end of the temple 30, and the second splicing structure 61 is disposed at the end of the housing 50. The first splicing structure 60 and the second splicing structure 61 cooperate to achieve a snap-fit connection. The first splicing structure 60 includes two first connecting posts 600, which are disposed on the end face of the temple 30 in a mirror-image manner. Each of the two first connecting posts 600 is provided with a locking block 600a, which is used for limiting and fixing after the assembly connection is in place. The second splicing structure 61 includes two connecting grooves 610, each of which is provided with a locking slot 611, which is disposed on the centerline of the end face of the housing 50. Each of the two connecting grooves 610 is also provided with a slot 611a, which is disposed on the diagonal of the end face of the housing 50. The slot 611a is used for inserting the locking block. All connecting grooves 610 are arc-shaped grooves, each with a groove opening 611b. The groove opening 611b is used for the passage and engagement of the first connecting post 600, and also serves as a positioning guide to ensure the stability of the subsequent electrical connection. The first splicing structure 60 and the second splicing structure 61 are simple to operate. When connection is required, the locking block 600a is inserted into the connecting groove 610 through the groove opening 611a, and then rotated so that the locking block 600a reaches the end of the connecting groove 610 to complete the connection. When disassembly is required, it can be completed by reversing the direction of rotation. This ensures the overall connection stability between the temple 30 and the ear-mounted battery assembly 5, preventing vertical, horizontal, or back-and-forth movement due to vibration, improving anti-detachment performance, ensuring electrical connection, and enhancing aesthetics.
[0029] Both of the card blocks 600a are provided with electrical connecting pieces 600b, and the electrical connecting pieces 600b are electrically connected to the first circuit board; each of the card slots 611 is provided with a metal elastic piece 611b electrically connected to the electrical connecting piece 600b, and the metal elastic piece 611b is electrically connected to the second power supply component.
[0030] The sealing structure 7 includes one or more sealing rings. The ends of the temple 30 and the housing 50 are provided with annular grooves. The sealing rings are set in the annular grooves by means of adhesive or fastening. The sealing structure 7 is used to connect and seal, thereby improving the waterproof performance.
[0031] Each temple 30 is also provided with a touch control button 300 and a storage structure 301. The touch control button 300 is used for function control. The storage structure 301 is located on the outside of the temple 30. The storage structure 301 can be one of an elastic buckle or an elastic band. The storage structure 301 is used to store the ear-hook battery assembly 5. The storage structure 301 and the temple 30 are detachably connected.
[0032] The frame assembly 2 includes a frame, and a PCB board with a chip is provided inside the frame; the frame also has a nose pad recess and a lens mounting opening, and the lens assembly 8 is disposed in the lens mounting opening.
[0033] The frame can be either a frame with a camera or a frame without a camera; the lens assembly 8 can be one of the following: an optical lens with a virtual reality structure, a plano lens, a sunglass lens, a refractive lens, a photochromic lens, or an electrochromic lens. The frame and the lens assembly 8 are used to combine as needed to form smart glasses 1 with camera function or smart glasses 1 with AI display function.
[0034] This invention achieves a detachable connection between the temple and the ear-hook battery assembly by setting the first splicing structure and the second splicing structure. The connection and disassembly operations are simple. When connection is needed, the locking block is inserted into the connecting slide through the slot, and then rotated so that the locking block reaches the end of the connecting slide to complete the connection. When disassembly is needed, the reverse is reversed to complete the disassembly. This ensures the overall connection stability between the temple and the ear-hook battery assembly, preventing it from moving up and down, forward and backward, or left and right due to vibration. It improves the anti-slip performance, ensures electrical connection, improves aesthetics, and ensures the user's wearing stability, reducing the possibility of the ear-hook battery assembly being lost due to movement.
[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 frame assembly, with temple assemblies at both ends. A hinge structure connects the temple assemblies to the frame assembly, controlling their folding and storage. Each temple assembly has an ear-hook battery assembly, with a detachable connection structure and a sealing structure between the ear-hook battery assembly and the temple assembly. The detachable connection structure allows for quick connection or disconnection between the ear-hook battery assembly and the temple assembly, while the sealing structure provides a waterproof seal. The frame assembly also includes a lens assembly. Each temple assembly includes a temple, each ear-mount battery assembly includes a housing, and each detachable connection structure includes a first splicing structure and a second splicing structure. The first splicing structure is disposed at the end of the temple, and the second splicing structure is disposed at the end of the housing. The first splicing structure and the second splicing structure cooperate to achieve a snap-fit connection. The first splicing structure includes two first connecting posts, which are arranged in a mirror-like manner on the end face of the temple; each of the two first connecting posts is provided with a locking block, which is used for limiting and fixing after the assembly connection is in place; The second splicing structure includes two connecting slides, each of which has a slot, and the two slots are located on the centerline of the end face of the housing; each of the two connecting slides also has an opening, and the two openings are respectively located on the diagonal of the end face of the housing, and the openings are used for the insertion of the card block.
2. The smart glasses according to claim 1, characterized in that: The temple has a first cavity, in which a first circuit board and a first power supply assembly are disposed; the housing has a second cavity, in which a second power supply assembly is disposed.
3. The smart glasses according to claim 2, characterized in that: All connecting grooves are arc-shaped grooves, and each arc-shaped groove is provided with a groove opening, which is used for the passage and engagement of the first connecting post.
4. The smart glasses according to claim 3, characterized in that: Both of the card blocks are provided with electrical connecting pieces, which are electrically connected to the first circuit board; each of the card slots is provided with a metal elastic piece electrically connected to the electrical connecting piece, which is electrically connected to the second power supply component.
5. The smart glasses according to claim 4, characterized in that: The sealing structure includes one or more sealing rings, and the ends of the temples and the housing are provided with annular grooves. The sealing rings are set in the annular grooves by means of adhesive or fastening.
6. The smart glasses according to claim 5, characterized in that: Each temple is also equipped with a touch control button and a storage structure. The storage structure is located on the outside of the temple and can be either an elastic buckle or an elastic band. The storage structure is used to store the battery assembly with the ear loop.
7. The smart glasses according to claim 6, characterized in that: The eyeglass frame assembly includes an eyeglass frame, within which a PCB board with a chip is disposed; the eyeglass frame also includes a nose pad recess and a lens mounting opening, and the lens assembly is disposed within the lens mounting opening.
8. The smart glasses according to claim 7, characterized in that: The frame can be either a frame with a camera or a frame without a camera; the lens assembly can be one of the following: an optical lens assembly for a virtual reality structure, a plano lens, a sunglass lens, a refractive lens, a photochromic lens, or an electrochromic lens.
Citation Information
Patent Citations
Glasses earphone with rapidly replaceable battery
CN210899564U