High-adaptability intelligent glasses

By integrating a camera component into the temples of smart glasses and using a detachable connection component, the problem of high frame replacement costs is solved, achieving low-cost and highly adaptable frame replacement.

CN224287286UActive Publication Date: 2026-05-26SHARGE TECHNOLOGY (SHENZHEN) CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHARGE TECHNOLOGY (SHENZHEN) CO LTD
Filing Date
2025-03-28
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

The high cost of existing smart glasses frames leads to excessive costs for users when replacing frames, increases inventory costs for merchants, and makes frame replacement inconvenient.

Method used

The camera component is integrated into the temple, and the temple and frame are quickly and electrically connected through a detachable connecting component, which supports low-cost replacement of the frame and maintains the electrical connection between the temples.

Benefits of technology

It enables low-cost frame replacement and high compatibility, reducing costs for users and merchants and improving the convenience of frame replacement.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a pair of high-adaptability intelligent glasses. The high-adaptability intelligent glasses comprise a glasses frame, a first glasses leg, a second glasses leg, a connecting assembly and a camera shooting assembly, the camera shooting assembly is arranged in the first glasses leg, and a lens of the camera shooting assembly faces the front end of the first glasses leg; the first glasses leg and the second glasses leg are detachably arranged on the two sides of the glasses frame through connecting assemblies respectively; current channels are arranged in the glasses frame, the first glasses leg, the second glasses leg and the connecting assembly, and the current channels are communicated to form a circuit capable of transmitting current and electric signals. The high-adaptability intelligent glasses disclosed by the utility model have the advantages that the glasses frame can be conveniently replaced at low cost, and the high adaptability is realized.
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Description

Technical Field

[0001] This utility model relates to the field of smart glasses, and in particular to highly adaptable smart glasses. Background Technology

[0002] With the development of electronic technology, the portability of smart glasses has improved, and smart glasses have begun to integrate more functions. Currently, many smart glasses are equipped with cameras, enabling them to take photos and videos.

[0003] When choosing glasses, users not only have functional requirements for smart glasses, but also often have aesthetic requirements. However, current smart glasses typically place the camera on the frame, which increases the cost of the frame; when users need to change to different styles of frames, the high cost reduces their willingness to purchase.

[0004] Furthermore, when various styles of frames are needed, merchants must prepare a variety of frames to meet customer demands. Higher frame costs increase inventory costs for merchants, which is detrimental to sales. Utility Model Content

[0005] Based on this, the purpose of this utility model is to provide a highly adaptable smart glasses, which has the advantages of being able to easily and cost-effectively replace the frames and having high adaptability.

[0006] A highly adaptable smart glasses includes a frame, a first temple, a second temple, a connecting component, and a camera component. The camera component is disposed in the first temple, and the lens of the camera component faces the front end of the first temple. The first temple and the second temple are detachably disposed on both sides of the frame via the connecting component. Current channels are provided in the frame, the first temple, the second temple, and the connecting component, and the current channels are interconnected to form a circuit capable of transmitting current and electrical signals.

[0007] The highly adaptable smart glasses of this invention integrate the camera component into the temple and allow for quick and easy disassembly of the temple, enabling users to easily and cost-effectively replace the frames. After replacing the frames, the electrical connection between the first and second temples is maintained, resulting in high adaptability.

[0008] Furthermore, the connecting component includes a first connecting block and a second connecting block, the second connecting block being rotatably connected to the first connecting block; the first connecting block being detachably connected to both sides of the frame, and the second connecting block being detachably connected to the first temple and the second temple respectively; the first temple and the second temple are respectively disposed on both sides of the frame via the connecting component.

[0009] Furthermore, the first connecting block is provided with a first connecting surface, and the second connecting block is provided with a second connecting surface; a first fixing member is provided on the first connecting surface, and first mating members that cooperate with the first fixing member are provided on both sides of the frame; a second fixing member is provided on the second connecting surface, and a second mating member that cooperates with the second fixing member is provided at the front end of the first temple and the second temple.

[0010] Furthermore, a first conductive port is provided on the first connecting surface of the connecting component, and the first conductive port is connected to the current channel in the connecting component; second conductive ports are provided on both sides of the frame, and the second conductive ports are connected to the current channel in the frame; when the first connecting surface abuts against the frame, the first conductive port abuts against the second conductive port; a third conductive port is provided on the second connecting surface, and the third conductive port is connected to the current channel in the connecting component; a fourth conductive port is provided at the front end of the first temple and the second temple, and the fourth conductive port is electrically connected to the current channel in the first temple and the second temple; when the second connecting surface abuts against the first temple and the second temple, the third conductive port abuts against the fourth conductive port.

[0011] Furthermore, a charging connector is provided at the rear end of the second temple.

[0012] Furthermore, it also includes a detachable temple bend and a battery assembly; the detachable temple bend is provided with a charging interface that cooperates with the charging connector, and the detachable temple bend is detachably connected to the rear end of the second temple; when the detachable temple bend is located at the rear end of the second temple, the charging interface is connected to the charging connector; the battery assembly is located in the detachable temple bend and is electrically connected to the charging interface.

[0013] Furthermore, the detachable temple bend is provided with a magnetic element at one end near the charging interface, and a corresponding magnetic element is provided at the rear end of the second temple. The detachable temple bend is connected to the rear end of the second temple through the magnetic element.

[0014] Furthermore, it also includes a quick-connect charging cable; the quick-connect charging cable includes a magnetic head, a connecting wire, and a charging plug; one end of the connecting wire is connected to the magnetic head, and the other end is connected to the charging plug; the magnetic head is provided with a magnetic element and a charging interface that cooperates with the charging plug, and the rear end of the second temple is provided with a corresponding magnetic element, and the magnetic head is connected to the rear end of the second temple through the magnetic element.

[0015] Furthermore, it also includes a fill light; the fill light is disposed in the second temple and faces the front end of the second temple.

[0016] Furthermore, it also includes a speaker assembly; one end of the speaker assembly is provided with a connecting rod, and the end of the connecting rod is rotatably connected to the first temple or the second temple; furthermore, the first temple and the second temple are provided with receiving grooves; when the speaker assembly rotates to be parallel to the temple, the speaker assembly is retracted into the receiving groove.

[0017] To better understand and implement this invention, the following detailed description is provided in conjunction with the accompanying drawings. Attached Figure Description

[0018] Figure 1 This is a three-dimensional schematic diagram of the highly adaptable smart glasses according to an embodiment of the present invention;

[0019] Figure 2 This is a three-dimensional assembly diagram of the highly adaptable smart glasses according to an embodiment of the present utility model;

[0020] Figure 3 This is a three-dimensional schematic diagram of the first temple of the present invention.

[0021] Figure 4 This is a perspective view of the connecting component according to an embodiment of the present utility model;

[0022] Figure 5 This is a three-dimensional schematic diagram of the mirror frame according to an embodiment of the present utility model;

[0023] Figure 6 This is a three-dimensional perspective view of the front side of the second temple of this utility model embodiment;

[0024] Figure 7 This is a three-dimensional view of the rear side of the second temple of this utility model embodiment. Detailed Implementation

[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0026] In the description of this utility model, it should be noted that the terms "vertical direction," "up," "down," and "horizontal," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model. In addition, "first," "second," "third," and "fourth" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0027] In the description of this utility model, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," "connect," and "link" should be interpreted broadly. For example, they can refer to thermally conductive connections, detachable connections, or integral connections; they can refer to mechanical connections or electrical connections; they can refer to direct connections or connections through an intermediate medium; and they can refer to the internal communication between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0028] Example

[0029] Please see Figures 1 to 7 This application provides a highly adaptable smart glasses. The highly adaptable smart glasses of this application include a frame 1, first temples 2, second temples 3, a connecting component 4, a camera component 5, and a control system. The first temples 2 and second temples 3 are detachably disposed on both sides of the frame 1 via the connecting component 4. Current channels are provided in the frame 1, first temples 2, second temples 3, and connecting component 4, and these current channels are interconnected to form a circuit capable of transmitting current and electrical signals. The camera component 5 is disposed in the first temple 2 and electrically connected to the current channels in the first temple 2, with the lens of the camera component 5 facing the front end of the first temple 2. The control system is disposed in the first temple 2 and electrically connected to the current channels in the first temple 2, and is used to control the operation of various electronic components in the highly adaptable smart glasses. The highly adaptable smart glasses of this application allow for easy disassembly of the first temples 2 and second temples 3, thereby allowing replacement of the frame 1. This enables the temples to fit different frames 1, and maintains the electrical connection between the two temples after frame replacement, improving adaptability.

[0030] Please see Figure 3 Furthermore, a camera hole is provided at the front end of the first temple 2, and the lens of the camera component 5 is directly facing the camera hole. The camera component 5 collects external images through the camera hole.

[0031] Please see Figures 3 to 6The connecting component 4 includes a first connecting block 41 and a second connecting block 42, with the second connecting block 42 rotatably connected to the first connecting block 41. The first connecting block 41 has a first connecting surface 411, and the second connecting block 42 has a second connecting surface 421. The first connecting surface 411 has a first fixing member 411a, and the two sides of the frame 1 have first mating members 1a that cooperate with the first fixing member 411a. The second connecting surface 421 has a second fixing member 421a, and the front ends of the first temple 2 and the second temple 3 have second mating members 2a that cooperate with the second fixing member 421a. When the first temple 2 and the second temple 3 are connected to the frame 1 via the connecting component 4, the first connecting surface 411 abuts against the frame 1, at which point the first fixing member 411a and the first mating member 1a are connected; simultaneously, the second connecting surface 421 abuts against either the first temple 2 or the second temple 3, at which point the second fixing member 421a and the second mating member 2a are connected. In some embodiments, the first fixing member 411a, the first mating member 1a, the second fixing member 421a and the second mating member 2a are all screw holes; the first fixing member 411a is screwed to the first mating member 1a and the second fixing member 421a is screwed to the second mating member 2a respectively.

[0032] Please see Figures 6 to 7 Furthermore, a charging connector 31 is provided at the rear end of the second temple 3, and the charging connector 31 is electrically connected to the current channel in the second temple 3. The charging connector 31 is electrically connected to the camera component 5 and control system and other electronic components in the first temple 2 through the circuit in the frame 1 and the connecting assembly 4. The highly adaptable smart glasses of this application can charge the electronic devices in the first temple 2 and the second temple 3 through the charging connector 31.

[0033] Furthermore, the first connecting surface 411 of the connecting component 4 is provided with a first conductive port 411b, which is electrically connected to the current channel in the connecting component 4; the two sides of the mirror frame 1 are provided with second conductive ports 1b that cooperate with the first conductive port 411b, which are electrically connected to the current channel in the mirror frame 1; when the first connecting surface 411 abuts against the mirror frame 1, the first conductive port 411b abuts against the second conductive port 1b, so that the current channel in the mirror frame 1 is connected to the current channel in the connecting component 4. The second connecting surface 421 is provided with a third conductive port 421b, which is electrically connected to the current channel in the connecting assembly 4; the front ends of the first temple 2 and the second temple 3 are respectively provided with a fourth conductive port 2b that cooperates with the third conductive port 421b, which is electrically connected to the current channel in the first temple 2 and the second temple 3; when the second connecting surface 421 abuts against the first temple 2 and the second temple 3, the third conductive port 421b abuts against the fourth conductive port 2b, so that the current channel in the connecting assembly 4 is connected to the current channel in the first temple 2 and the second temple 3.

[0034] In some embodiments, the highly adaptable smart glasses of this application further include a detachable temple bend 6 and a battery assembly. The detachable temple bend 6 is provided with a charging interface 61 that mates with a charging connector 31. The detachable temple bend 6 is detachably connected to the rear end of the second temple 3. When the detachable temple bend 6 is located at the rear end of the second temple 3, the charging interface 61 is connected to the charging connector 31. The battery assembly is disposed in the detachable temple bend 6 and electrically connected to the charging interface 61. The battery assembly can provide power to various electronic components in the highly adaptable smart glasses, and the battery assembly can be replaced by replacing the detachable temple bend 6, thereby improving battery life. In some embodiments, a magnetic element is provided at one end of the detachable temple bend 6 near the charging interface 61, and a corresponding magnetic element is provided at the rear end of the second temple 3. The detachable temple bend 6 is connected to the rear end of the second temple 3 via the magnetic element.

[0035] In some embodiments, the highly adaptable smart glasses of this application further include a quick-connect charging cable. The quick-connect charging cable includes a magnetic head, a connecting wire, and a charging plug. One end of the connecting wire is connected to the magnetic head, and the other end is connected to the charging plug; in some embodiments, the connecting wire is an adjustable wire with an adjustable length. The magnetic head is provided with a magnetic element and a charging interface that mates with the charging connector 31. The rear end of the second temple 3 is correspondingly provided with a magnetic element, and the magnetic head is connected to the rear end of the second temple 3 through the magnetic element. The charging plug can be a universal USB interface or an AC power plug. When the highly adaptable smart glasses of this application are used for extended periods, they can be connected to a power bank or power source via the quick-connect charging cable to extend the working time of the highly adaptable smart glasses.

[0036] In some embodiments, the highly adaptable smart glasses of this application further include a speaker assembly. One end of the speaker assembly is provided with a connecting rod, the end of which is rotatably connected to the first temple 2 or the second temple 3. Further, the first temple 2 and the second temple 3 are provided with receiving grooves; when the speaker assembly rotates to be parallel to the temple, the speaker assembly is retracted into the receiving groove. The speaker assembly of this application can be stored in the receiving groove when not in use, which helps maintain the aesthetics of the highly adaptable smart glasses.

[0037] In some embodiments, the highly adaptable smart glasses of this application further include a fill light 7. The fill light 7 is disposed in the second temple 3, facing the front end of the second temple 3, and electrically connected to the current channel in the second temple 3; furthermore, the front end of the second temple 3 is provided with a fill light hole, and the fill light 7 is directly facing the fill light hole; when the camera component 5 needs fill light for taking pictures, the fill light 7 emits light through the fill light hole to illuminate the subject, thereby providing fill light for the camera component 5.

[0038] In some embodiments, the highly adaptable smart glasses of this application further include a backup battery assembly, which is disposed in the first temple 2 and electrically connected to the current channel in the first temple 2. When the highly adaptable smart glasses are not powered through the charging connector 31 at the rear end of the second temple 3, they are powered by the backup battery assembly in the first temple 2; and when the first temple 2 is removed, the electronic components of the camera assembly 5 in the first temple 2 can also be used independently through the backup battery assembly.

[0039] The highly adaptable smart glasses of this application embodiment connect the temples and the frame 1 via a connecting component 4, allowing for easy replacement of the frame 1. Furthermore, the frame 1 and the connecting component 4 are equipped with circuitry that connects the first temple 2 and the second temple 3, achieving high adaptability between the temples and the frame 1 while ensuring electrical connection between the first temple 2 and the second temple 3.

[0040] The embodiments described above are merely examples of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this utility model. For example, integrating microphone components, remote communication components, and other electronic components onto the temples of the glasses is also intended to include these modifications and variations.

Claims

1. A highly adaptive smartglasses, characterized in that: The lens includes a frame, a first temple, a second temple, a connecting assembly, and a camera assembly; the camera assembly is disposed in the first temple, and the lens of the camera assembly faces the front end of the first temple; the first temple and the second temple are detachably disposed on both sides of the frame via the connecting assembly; current channels are provided in the frame, the first temple, the second temple, and the connecting assembly, and the current channels are interconnected to form a circuit capable of transmitting current and electrical signals.

2. The highly adaptive smart glasses of claim 1, wherein: The connecting component includes a first connecting block and a second connecting block, the second connecting block being rotatably connected to the first connecting block; the first connecting block being detachably connected to both sides of the frame, and the second connecting block being detachably connected to the first temple and the second temple respectively; the first temple and the second temple are respectively located on both sides of the frame via the connecting component.

3. The highly adaptive smart glasses of claim 2, wherein: The first connecting block has a first connecting surface, and the second connecting block has a second connecting surface; the first connecting surface has a first fixing member, and the two sides of the frame have first mating members that cooperate with the first fixing member; the second connecting surface has a second fixing member, and the front ends of the first temple and the second temple have second mating members that cooperate with the second fixing member.

4. The highly adaptive smart glasses of claim 3, wherein: The first connecting surface of the connecting assembly is provided with a first conductive port, which is connected to the current channel in the connecting assembly; the two sides of the frame are provided with second conductive ports, which are connected to the current channel in the frame; when the first connecting surface abuts against the frame, the first conductive port abuts against the second conductive port; the second connecting surface is provided with a third conductive port, which is connected to the current channel in the connecting assembly; the front ends of the first temple and the second temple are respectively provided with a fourth conductive port, which is electrically connected to the current channel in the first temple and the second temple; when the second connecting surface abuts against the first temple and the second temple, the third conductive port abuts against the fourth conductive port.

5. The highly adaptive smart glasses of claim 4, wherein: A charging connector is provided at the rear end of the second temple.

6. The highly adaptive smart glasses of claim 5, wherein: It also includes a detachable temple bend and a battery assembly; the detachable temple bend is provided with a charging interface that mates with the charging connector, and the detachable temple bend is detachably connected to the rear end of the second temple; when the detachable temple bend is located at the rear end of the second temple, the charging interface is connected to the charging connector; the battery assembly is located in the detachable temple bend and is electrically connected to the charging interface.

7. The highly adaptive smart glasses of claim 6, wherein: The detachable temple bend is provided with a magnetic element at one end near the charging port, and a corresponding magnetic element is provided at the rear end of the second temple. The detachable temple bend is connected to the rear end of the second temple through the magnetic element.

8. The highly adaptable smart glasses according to claim 5, characterized in that: It also includes a quick-connect charging cable; the quick-connect charging cable includes a magnetic head, a connecting wire, and a charging plug; one end of the connecting wire is connected to the magnetic head, and the other end is connected to the charging plug; the magnetic head is provided with a magnetic element and a charging interface that cooperates with the charging plug, and the rear end of the second temple is provided with a corresponding magnetic element, and the magnetic head is connected to the rear end of the second temple through the magnetic element.

9. The highly adaptable smart glasses according to any one of claims 1-8, characterized in that: It also includes a fill light; the fill light is located in the second temple and faces the front end of the second temple.

10. The highly adaptable smart glasses according to claim 9, characterized in that: It also includes a speaker assembly; one end of the speaker assembly is provided with a connecting rod, the end of the connecting rod being rotatably connected to the first temple or the second temple; further, the first temple and the second temple are provided with receiving grooves; when the speaker assembly is rotated to be parallel to the temple, the speaker assembly is retracted into the receiving groove.