Smart glasses

The design of detachable and installable functional components solves the problem of fixing the functional modules of smart glasses, realizes the flexibility and environmental friendliness of functional upgrades, and reduces excessive consumption by consumers and electronic waste.

WO2026091230A1PCT designated stage Publication Date: 2026-05-07GOERTEK INC
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Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
GOERTEK INC
Filing Date
2024-12-05
Publication Date
2026-05-07

AI Technical Summary

Technical Problem

The fixed functional modules in existing smart glasses cause consumers to pay for functions they don't need, and upgrading functions requires replacing the entire device, leading to overconsumption and the generation of electronic waste.

Method used

Design a smart glasses system where functional components can be detachably installed inside the glasses frame, allowing users to select and replace them as needed, thus avoiding the need to replace the entire device.

Benefits of technology

This reduces the amount of money consumers pay for unnecessary features, decreases electronic waste generation, and enables flexible and economical feature upgrades.

✦ Generated by Eureka AI based on patent content.

Smart Images

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    Figure CN2024137040_07052026_PF_FP_ABST
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Abstract

The present application relates to the technical field of smart devices, and discloses smart glasses. The smart glasses comprise a glasses frame and a functional assembly, wherein the functional assembly is detachably mounted on the inner side of the glasses frame. The present application aims to solve the problem of consumer over‑consumption caused by excessive functionalities in AR glasses, and to reduce the generation of electronic waste.
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Description

Smart glasses

[0001] This application claims priority to Chinese Patent Application No. 202411535864.3, filed on October 30, 2024, entitled “Smart Glasses”, the entire contents of which are incorporated herein by reference. Technical Field

[0002] This application relates to the field of smart device technology, and more particularly to smart glasses. Background Technology

[0003] Smart glasses (such as AR glasses) are iterating very rapidly, offering an ever-increasing number of functions. Currently, the functional modules installed in smart glasses are fixed, meaning consumers often pay for features they don't need, or they have to replace the entire device to upgrade to new features after purchasing the glasses. This not only leads to overconsumption but also generates a large amount of electronic waste. Summary of the Invention

[0004] This application aims to address the problem of excessive consumer spending due to the overabundance of functions in AR glasses and to reduce the generation of electronic waste.

[0005] To achieve the above objectives, this application proposes a smart glasses, the smart glasses comprising:

[0006] Eyeglass frames;

[0007] A functional component, which is detachably installed on the inside of the eyeglass frame.

[0008] In one embodiment, the eyeglasses frame includes a lens frame, and the functional components are detachably mounted on the inside of the lens frame.

[0009] In one embodiment, the functional component is plugged into the side of the lens frame facing the user's face, and the lens frame is provided with a plug-in structure adapted to the functional component.

[0010] In one embodiment, the functional component is a first component, which includes a first mounting bracket detachably mounted on the lens frame and a first optical engine disposed on the first mounting bracket.

[0011] In one embodiment, the lens frame includes a first frame, a second frame, and a first connecting portion for connecting the first frame and the second frame. The second connecting portion is provided with a through hole. A first lens is mounted on the first frame, and a second lens is mounted on the second frame.

[0012] The first mounting bracket includes a first bracket, a second bracket, and a second connecting portion for connecting the first bracket and the second bracket. The first bracket is detachably mounted on the first frame, and the second bracket is detachably mounted on the second frame. The second connecting portion is provided with a protrusion that passes through the through hole.

[0013] In one embodiment, the functional component is a second component, which includes a second mounting bracket, a second optical engine, and a first additional functional module. The first additional functional module includes a first shooting module and / or a first eye-tracking module. The second mounting bracket is detachably mounted on the lens frame, and both the second optical engine and the first additional functional module are located on the mounting bracket.

[0014] In one embodiment, the lens frame includes a first frame, a second frame, and a first connecting portion for connecting the first frame and the second frame. The second connecting portion is provided with a through hole. A first lens is mounted on the first frame, and a second lens is mounted on the second frame.

[0015] The mounting bracket includes a third bracket, a fourth bracket, and a third connecting portion for connecting the third bracket and the fourth bracket. The third bracket is detachably mounted on the first frame, and the fourth bracket is detachably mounted on the second frame. The first shooting module protrudes from the third connecting portion and passes through the through hole.

[0016] In one embodiment, the functional component is a third component, which includes a third mounting bracket, a third optical engine, a second additional functional module, and a third additional functional module. The third mounting bracket is detachably mounted on the lens frame. The third optical engine, the second additional functional module, and the third additional functional module are all disposed on the mounting bracket. The second additional functional module includes a second shooting module and / or a second eye tracking module. The third additional functional module includes a positioning module.

[0017] In one embodiment, the lens frame includes a first frame, a second frame, and a first connecting portion for connecting the first frame and the second frame. The second connecting portion is provided with a through hole. A first lens is mounted on the first frame, and a second lens is mounted on the second frame.

[0018] The mounting bracket includes a fifth bracket, a sixth bracket, and a fourth connecting part for connecting the fifth bracket and the sixth bracket. The fifth bracket is detachably mounted on the first frame, and the sixth bracket is detachably mounted on the second frame.

[0019] The second shooting module protrudes from the fourth connecting part and passes through the through hole.

[0020] In one embodiment, the lens frame includes a first frame, a second frame, and a first connecting portion for connecting the first frame and the second frame. The second connecting portion is provided with a through hole. A first lens is mounted on the first frame, and a second lens is mounted on the second frame.

[0021] The mounting bracket includes a fifth bracket, a sixth bracket, and a fourth connecting part for connecting the fifth bracket and the sixth bracket. The fifth bracket is detachably mounted on the first frame, and the sixth bracket is detachably mounted on the second frame.

[0022] The third component includes two optical engines, which are respectively located on the side of the fifth bracket facing the first lens and on the side of the sixth bracket facing the second lens.

[0023] The one or more technical solutions proposed in this application have at least the following technical effects: In this solution, the functional components are no longer fixedly installed on the eyeglass frame, but are detachably installed on the inside of the eyeglass frame. Users can choose to install different functional components according to their own needs, and the main body of the glasses does not need to be replaced, thereby reducing the cost for users to pay for unnecessary functions. When there is a need for functional upgrades, only the functional components need to be replaced, thereby effectively avoiding excessive consumption by consumers and reducing the generation of electronic waste. Attached Figure Description

[0024] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.

[0025] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, for those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0026] Figure 1 is a schematic diagram of the assembly between the eyeglass frame and different functional components in one embodiment of the smart glasses of this application;

[0027] Figure 2 is a view of the eyeglass frame of the smart glasses in Figure 1 along direction B;

[0028] Figure 3 shows the views of the first component in Figure 1 installed on the eyeglass frame along directions A and B, respectively;

[0029] Figure 4 shows the views of the second component in Figure 1 installed on the eyeglass frame along directions A and B, respectively;

[0030] Figure 5 shows the views along directions A and B when the third component in Figure 1 is installed on the eyeglass frame.

[0031] Reference numerals: 1. Eyeglass frame; 101. Lens frame; 11. First frame; 12. Second frame; 13. First connecting part; 14. Through hole; 2. Functional component; 21. First component; 211. First support; 212. Second support; 213. Second connecting part; 214. Protrusion; 22. Second component; 221. Third support; 222. Fourth support; 223. Third connecting part; 224. First shooting module; 23. Third component; 231. Fifth support; 232. Sixth support; 233. Fourth connecting part; 234. Second shooting module; 235. Binocular camera.

[0032] The purpose, features, and advantages of this application will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0033] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this application, and not all of the embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.

[0034] It should be noted that if the embodiments of this application involve directional indicators (such as up, down, left, right, front, back, etc.), the directional indicators are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indicators will also change accordingly.

[0035] Furthermore, if the embodiments of this application involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution that simultaneously satisfies A and B. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed in this application.

[0036] To better understand the technical solution of this application, a detailed description will be provided below in conjunction with the accompanying drawings and specific implementation methods.

[0037] The main solution of this application embodiment is to propose a smart glasses, which includes a glasses frame and functional components, wherein the functional components are detachably installed on the inside of the glasses frame.

[0038] In this embodiment, for ease of description, the following description uses smart glasses as the execution subject.

[0039] Because the functional modules installed in smart glasses are fixed in the current technology, consumers will pay for functions they don't need, or they will have to replace the whole device when they need to upgrade to new functions after purchasing smart glasses. This not only leads to overconsumption by consumers, but also generates a lot of electronic waste.

[0040] This application provides the above-mentioned solution, which allows users to choose different functional components to install based on their own needs. The main body of the glasses does not need to be replaced, thereby reducing the cost of paying for unnecessary functions. When there is a need for functional upgrades, only the functional components need to be replaced, thus effectively avoiding overconsumption by consumers and reducing the generation of electronic waste.

[0041] This application provides an embodiment of smart glasses. Smart glasses are glasses with a display function. In this embodiment, the smart glasses are augmented reality glasses (AR glasses). In other embodiments, the smart glasses may also be virtual reality glasses (VR glasses) or mixed reality glasses (MR glasses), etc.

[0042] In this embodiment, the smart glasses of this application embodiment will be described with reference to Figures 1 to 5, wherein Figure 1 is a schematic diagram of the assembly of the eyeglasses frame 1 and different functional components 2 in the smart glasses; Figure 2 is a view of the eyeglasses frame 1 in Figure 1 along direction B; Figure 3(a) is a view of the first component 21 installed on the eyeglasses frame 1 along direction A, Figure 3(b) is a view of the first component 21 installed on the eyeglasses frame 1 along direction B; Figure 4(a) is a view of the second component 22 installed on the eyeglasses frame 1 along direction A, Figure 4(b) is a view of the second component 22 installed on the eyeglasses frame 1 along direction B; Figure 5(a) is a view of the third component 23 installed on the eyeglasses frame 1 along direction A, Figure 5(b) is a view of the third component 23 installed on the eyeglasses frame 1 along direction B.

[0043] Referring to Figures 1 to 5, the smart glasses include a glasses frame 1 and a functional component 2, wherein the functional component 2 is detachably installed on the inside of the glasses frame 1.

[0044] The eyeglasses frame 1 is designed as a support for the user to wear. A display lens and basic functional modules can be installed on the eyeglasses frame 1. These basic functional modules may include conventional functions such as a sound module, a translation module, and a power module. The inner side of the eyeglasses frame 1 faces the user's face when worn; that is, the functional component 2 is inserted into the lens frame 1 on the side facing the user's face. The lens frame 1 has a plug-in structure adapted to the functional component 2.

[0045] The detachable installation methods include at least one of the following: snap-fit ​​connection, plug-in fit, interference fit, threaded connection, etc.

[0046] The functional component 2 includes at least an optical engine. When the functional component 2 is installed inside the eyeglass frame 1, the optical engine can cooperate with the lenses on the eyeglass frame 1 to perform a display. When the functional component 2 is not installed inside the eyeglass frame 1, the lenses on the eyeglass frame 1 cannot perform a display.

[0047] The installation and removal of functional component 2 can enable or disable the basic functional module on the eyeglass frame 1. When functional component 2 is installed on the eyeglass frame 1, the basic functional module is activated; when the functional module is not installed on the eyeglass frame 1, the basic functional module is disabled. In other words, when functional component 2 is not installed on the inside of the eyeglass frame 1, the functions on the eyeglass frame 1 are disabled.

[0048] The smart glasses can be pre-configured with a variety of components with different functions. Users can choose one of these components as the functional component 2 to be installed on the glasses holder 1.

[0049] This embodiment proposes a smart glasses solution in which the functional component 2 is no longer fixedly installed on the glasses frame 1, but is detachably installed on the inside of the glasses frame 1. Users can choose to install different functional components 2 according to their own needs, without replacing the main body of the glasses. This reduces the cost for users to pay for unnecessary functions. When there is a need for function upgrades, only the functional component 2 needs to be replaced, thereby effectively avoiding overconsumption by consumers and reducing the generation of electronic waste.

[0050] In one feasible implementation, referring to Figures 1 and 2, the eyeglasses bracket 1 includes a lens frame 101, and the functional component 2 is detachably mounted on the inside of the lens frame 101.

[0051] The lens frame 101 is a frame for mounting a display lens. In one implementation, a display lens is mounted on the lens frame 101, and the display lens includes a first display area corresponding to the left eye and a second display area corresponding to the right eye. In another implementation, a first lens and a second lens are mounted on the lens frame 101, with the first lens corresponding to the left eye and the second lens corresponding to the right eye.

[0052] The inner side of the lens frame 101 is the side facing the user's head when the lens frame 101 is worn.

[0053] In this embodiment, the lens frame 101 includes a mounting part for mounting the nose pad. The functional component 2 is detachably mounted on top of the mounting part, which helps to improve the stability of the installation of the functional component 2 and the safety of use, and makes it less likely to fall to the ground during use.

[0054] In this embodiment, the functional component 2 is installed inside the lens frame 101, which facilitates hiding the functional component 2 within the lens frame 101, improving wearability and the aesthetics of the glasses. It also prevents any foreign body sensation at the point where the glasses meet the user's head, effectively improving wearing comfort. Furthermore, the optical mechanism on the functional component 2 can precisely fit with the lens, effectively enhancing the display effect.

[0055] In other embodiments, the eyeglasses frame 1 may also include temples connected to the lens frame 101, and the functional component 2 may be detachably mounted on the inside of the temples.

[0056] In a first embodiment of functional component 2, referring to Figures 1 and 3, functional component 2 is a first component 21, which includes a first mounting bracket detachably mounted on the lens frame 101 and a first optical engine disposed on the first mounting bracket.

[0057] When the first mounting bracket is installed on the lens frame 101, the first optical engine is set up to cooperate with the lens to enable the video content to be displayed on the lens.

[0058] In this embodiment, the first mounting bracket is inserted into the side of the lens frame 101 facing the user's face.

[0059] In this embodiment, the first component 21 has no additional functions. It can realize the most basic display function of smart glasses by cooperating with the first optical engine and the lens frame 101. Users who do not need additional functions can choose to install the first component 21 on the glasses frame 1, thereby avoiding users from purchasing additional functions unnecessarily, effectively avoiding consumers from over-consuming and reducing the generation of electronic waste.

[0060] In this embodiment, referring to Figures 1 to 3, the lens frame 101 includes a first frame 11, a second frame 12, and a first connecting portion 13 for connecting the first frame 11 and the second frame 12. The second connecting portion 13 is provided with a through hole 14. The first frame 11 is equipped with a first lens, and the second frame 12 is equipped with a second lens. The first mounting bracket includes a first bracket 211, a second bracket 212, and a second connecting portion 213 for connecting the first bracket 211 and the second bracket 212. The first bracket 211 is detachably mounted on the first frame 11, and the second bracket 212 is detachably mounted on the second frame 12. The second connecting portion 213 is provided with a protrusion 214, which passes through the through hole 14.

[0061] The outer shape of the protrusion 214 is the same as the shape of the through hole 14.

[0062] The first bracket 211 can be inserted into the first frame 11, and the second bracket 212 can be inserted into the second frame 12.

[0063] In this embodiment, by using the above-described method, the first frame 11 and the second frame 12 cooperate with the first bracket 211 and the second bracket 212 respectively, which helps to improve the structural stability of the first component 21 when it is installed on the lens frame 101. The through hole 14 is designed to allow other functional components 2 with shooting modules to effectively capture images of the external scene by avoiding the through hole 14, ensuring that the real external world can be reflected to the user on the display lens. When the first component 21 does not have a shooting module and there is no shooting requirement, the protrusion 214 fills the gap of the through hole 14, which on the one hand helps to improve the aesthetics of the smart glasses, and on the other hand helps to reduce the amount of external light shining from the through hole 14 into the inside of the glasses, thus effectively improving the display effect and the user's viewing experience.

[0064] In other embodiments, the through hole 14 may also be provided on the first frame 11 or the second frame 12, and the protrusion 214 may be provided on the first bracket 211 or the second bracket 212 respectively.

[0065] In a second embodiment of functional component 2, referring to Figures 1 and 4, functional component 2 is a second component 22. The second component 22 includes a second mounting bracket, a second optical engine, and a first additional functional module. The first additional functional module includes a first shooting module 224 and / or a first eye tracking module (not shown). The second mounting bracket is detachably mounted on the lens frame 101. The second optical engine and the first additional functional module are both located on the mounting bracket.

[0066] The first shooting module 224 may include an RGB camera module. The first shooting module 224 can capture real-world external scenes and provide feedback to the user. In scenarios such as navigation and smart guides, it can help users identify the environment and match it with the currently displayed navigation map data to provide accurate navigation instructions. Alternatively, in scenarios such as tourist attractions or museums, it can identify exhibits or the environment, enabling the smart glasses to provide relevant information and explanations to the user.

[0067] The first eye-tracking module (not shown) can track the user's eye movements in real time, thereby understanding the user's intentions and needs, enabling direct interaction between the user and virtual information. For example, it can provide more accurate navigation instructions based on the user's visual focus, or in games or movies, eye-tracking technology can adjust the perspective, focus, or special effects in the virtual scene in real time according to the user's gaze direction.

[0068] In this embodiment, in addition to the basic display function, the second component 22 also has additional functions such as shooting and / or eye tracking. Users with relevant needs can choose to install the second component 22 on the glasses holder 1. Other unnecessary additional functions do not need to be purchased and installed, which effectively avoids excessive consumption by consumers and reduces the generation of electronic waste.

[0069] In this embodiment, referring to Figures 1, 2, and 4, the lens frame 101 includes a first frame 11, a second frame 12, and a first connecting portion 13 for connecting the first frame 11 and the second frame 12. The second connecting portion 13 is provided with a through hole 14. The first frame 11 is equipped with a first lens, and the second frame 12 is equipped with a second lens. The mounting bracket includes a third bracket 221, a fourth bracket 222, and a third connecting portion 223 for connecting the third bracket 221 and the fourth bracket 222. The third bracket 221 is detachably mounted on the first frame 11, and the fourth bracket 222 is detachably mounted on the second frame 12. The first shooting module 224 protrudes from the third connecting portion 223 and passes through the through hole 14.

[0070] The outer shape of the first imaging module 224 is the same as that of the through hole 14. The first imaging module 224 is exposed when it is inserted through the through hole 14, and its camera can capture images of the external real scene.

[0071] The third bracket 221 can be inserted into the first frame 11, and the fourth bracket 222 can be inserted into the second frame 12.

[0072] In this embodiment, by using the above-described method, the first frame 11 and the second frame 12 cooperate with the third bracket 221 and the fourth bracket 222 respectively, which helps to improve the structural stability of the second component 22 when it is installed on the lens frame 101. The through-hole 14 allows the shooting module to effectively capture images of the external scene, ensuring that the real external world is displayed on the lens and presented to the user. When other functional components 2 do not have a shooting module and do not require shooting, their protrusions 214 fill the gaps in the through-hole 14. This improves the aesthetics of the smart glasses and reduces external light shining through the through-hole 14 onto the inside of the glasses, effectively enhancing the display effect and the user's viewing experience. Therefore, the lens frame 101 can be easily combined with components of different functions.

[0073] In other embodiments, the through hole 14 may also be provided on the first frame 11 or the second frame 12, and the first shooting module 224 may be provided on the third bracket 221 or the fourth bracket 222.

[0074] In other embodiments, the second additional functional module may include other functional modules not included above, such as a positioning functional module.

[0075] In a third embodiment of functional component 2, referring to Figures 1 and 5, functional component 2 is a third component 23. The third component 23 includes a third mounting bracket, a third optical engine, a second additional functional module, and a third additional functional module. The third mounting bracket is detachably mounted on the lens frame 101. The third optical engine, the second additional functional module, and the third additional functional module are all located on the mounting bracket. The second additional functional module includes a second shooting module 234 and / or a second eye tracking module (not shown). The third additional functional module includes a positioning module.

[0076] The second shooting module 234 may include an RGB camera module. The second shooting module 234 can capture images of real-world external scenes and provide feedback to the user. In navigation, smart guide, and other scenarios, it can help users identify the environment and match it with the currently displayed navigation map data to provide accurate navigation instructions. Alternatively, in tourist attractions or museums, it can identify exhibits or the environment, enabling the smart glasses to provide relevant information and explanations to the user.

[0077] The second eye-tracking module (not shown) can track the user's eye movements in real time, thereby understanding the user's intentions and needs, and enabling the user to interact directly with virtual information. For example, it can provide more accurate navigation instructions based on the user's visual focus, or in games or movies, eye-tracking technology can adjust the perspective, focus, or special effects in the virtual scene in real time according to the user's gaze direction.

[0078] The positioning module, including 6DOF modules, can accurately identify the smart glasses' location in space, providing users with a richer and more realistic virtual reality experience. For example, in educational settings, the positioning module allows users to not only learn about course content like watching videos, but also immerse themselves in teaching practices through location movement, achieving an experience and gains equivalent to in-person learning.

[0079] In this embodiment, in addition to the basic display function, the third component 23 also has additional functions such as shooting and / or eye tracking and positioning. Users with relevant needs can choose to install the third component 23 on the glasses holder 1. Other unnecessary additional functions do not need to be purchased and installed, which effectively avoids excessive consumption by consumers and reduces the generation of electronic waste.

[0080] In this embodiment, referring to Figures 1, 2, and 5, the lens frame 101 includes a first frame 11, a second frame 12, and a first connecting portion 13 for connecting the first frame 11 and the second frame 12. The second connecting portion 13 is provided with a through hole 14. The first frame 11 is equipped with a first lens, and the second frame 12 is equipped with a second lens. The mounting bracket includes a fifth bracket 231, a sixth bracket 232, and a fourth connecting portion 233 for connecting the fifth bracket 231 and the sixth bracket 232. The fifth bracket 231 is detachably mounted to the first frame 11, and the sixth bracket 232 is detachably mounted to the second frame 12. Based on this, by having the first frame 11 and the second frame 12 cooperate with the fifth bracket 231 and the sixth bracket 232 respectively, it is beneficial to improve the structural stability of the third component 23 when it is mounted on the lens frame 101.

[0081] In this embodiment, referring to Figures 1 and 5, the second shooting module 234 protrudes from the fourth connecting portion 233 and passes through the through hole 14.

[0082] In this embodiment, the through-hole 14 allows the camera module to effectively capture images of the external scene, ensuring that the real world is displayed on the lens and presented to the user. When other functional components 2 do not have a camera module and do not require shooting, their protrusions 214 fill the gap in the through-hole 14. This improves the aesthetics of the smart glasses and reduces external light from the through-hole 14 reaching the inside of the glasses, effectively enhancing the display effect and user experience. Therefore, the lens frame 101 can be easily integrated with components of different functions.

[0083] In other embodiments, the through hole 14 may also be provided on the first frame 11 or the second frame 12, and the second shooting module 234 may be provided on the fifth bracket 231 or the sixth bracket 232.

[0084] In other embodiments, the second additional functional module and / or the third additional functional module may include other functional modules not included above.

[0085] In this embodiment, referring to Figures 1 and 5, the third component 23 includes two optical engines, which are respectively located on the side of the fifth bracket 231 facing the first lens and on the side of the sixth bracket 232 facing the second lens.

[0086] Based on this, a binocular optical transducer 235 is provided on the third component 23, thereby ensuring that when the third component 23 is installed on the lens frame 101, the display effect of the display lens is effectively improved.

[0087] The ends of the fifth bracket 231 and the sixth bracket 232 are equipped with binocular optical sensors 235. The ends of the fifth bracket 231 and the sixth bracket 232 need to have a certain width and thickness to accommodate the binocular optical sensors 235. Therefore, the two ends of the eyeglasses bracket 1 also need to have plug-in structures that are compatible with the thickness and width of the ends of the fifth bracket 231 and the sixth bracket 232 to ensure the stability and sealing of the smart glasses after assembly.

[0088] In this context, the optical engine in the first component 21 and the second component 22 mentioned above is a single unit.

[0089] In other embodiments, the optomechanism in the third component 23 may also be a single unit.

[0090] Based on the above embodiments, in this embodiment, the eyeglass holder 1 in the smart glasses can be configured with the first component 21, the second component 22, and the third component 23 to meet user needs. One of the first component 21, the second component 22, and the third component 23 is detachably mounted on the eyeglass holder 1. The structural components of the first component 21, the second component 22, and the third component 23 that are detachably connected to the eyeglass holder 1 are of the same type and position. Connectors on the eyeglass holder 1 can be detachably connected to different components. A through hole 14 is provided in the eyeglass holder 1 to ensure that the shooting module in the user-selected functional component 2 can function normally. This effectively solves the problem of excessive consumer spending caused by the overabundance of AR glasses functions and reduces the generation of electronic waste.

[0091] It should be understood that the various parts disclosed in this application can be implemented using hardware, software, firmware, or a combination thereof. Modules described in the embodiments of this application can be implemented in software or hardware. The names of modules do not necessarily limit the specific unit itself. In the description of the above embodiments, specific features, structures, materials, or characteristics can be combined in any suitable manner in one or more embodiments or examples.

[0092] Although preferred embodiments of this application have been described, those skilled in the art, upon learning the basic inventive concept, can make other changes and modifications to these embodiments. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments as well as all changes and modifications falling within the scope of this application.

[0093] The above description is merely a preferred embodiment of this application and does not limit the patent scope of this application. Any equivalent structural transformations made based on the content of this application's specification and drawings under the concept of this application, or direct / indirect applications in other related technical fields, are included within the patent protection scope of this application.

Claims

1. A type of smart glasses, characterized in that, The smart glasses include: Eyeglass frames; A functional component, which is detachably installed on the inside of the eyeglass frame.

2. The smart glasses as described in claim 1, characterized in that, The eyeglasses frame includes a lens frame, and the functional components are detachably mounted on the inside of the lens frame.

3. The smart glasses as described in claim 2, characterized in that, The functional component is inserted into the side of the lens frame facing the user's face, and the lens frame is provided with an insertion structure adapted to the functional component.

4. The smart glasses as described in claim 2 or 3, characterized in that, The functional component is a first component, which includes a first mounting bracket detachably mounted on the lens frame and a first optical engine disposed on the first mounting bracket.

5. The smart glasses as described in claim 4, characterized in that, The lens frame includes a first frame, a second frame, and a first connecting part for connecting the first frame and the second frame. The second connecting part is provided with a through hole. The first frame is equipped with a first lens, and the second frame is equipped with a second lens. The first mounting bracket includes a first bracket, a second bracket, and a second connecting portion for connecting the first bracket and the second bracket. The first bracket is detachably mounted on the first frame, and the second bracket is detachably mounted on the second frame. The second connecting portion is provided with a protrusion that passes through the through hole.

6. The smart glasses as described in claim 2 or 3, characterized in that, The functional component is a second component, which includes a second mounting bracket, a second optical engine, and a first additional functional module. The first additional functional module includes a first shooting module and / or a first eye-tracking module. The second mounting bracket is detachably mounted on the lens frame, and the second optical engine and the first additional functional module are both located on the mounting bracket.

7. The smart glasses as described in claim 6, characterized in that, The lens frame includes a first frame, a second frame, and a first connecting part for connecting the first frame and the second frame. The second connecting part is provided with a through hole. The first frame is equipped with a first lens, and the second frame is equipped with a second lens. The mounting bracket includes a third bracket, a fourth bracket, and a third connecting portion for connecting the third bracket and the fourth bracket. The third bracket is detachably mounted on the first frame, and the fourth bracket is detachably mounted on the second frame. The first shooting module protrudes from the third connecting portion and passes through the through hole.

8. The smart glasses as described in claim 2 or 3, characterized in that, The functional component is a third component, which includes a third mounting bracket, a third optical engine, a second additional functional module, and a third additional functional module. The third mounting bracket is detachably mounted on the lens frame. The third optical engine, the second additional functional module, and the third additional functional module are all located on the mounting bracket. The second additional functional module includes a second shooting module and / or a second eye tracking module. The third additional functional module includes a positioning module.

9. The smart glasses as described in claim 8, characterized in that, The lens frame includes a first frame, a second frame, and a first connecting part for connecting the first frame and the second frame. The second connecting part is provided with a through hole. The first frame is equipped with a first lens, and the second frame is equipped with a second lens. The mounting bracket includes a fifth bracket, a sixth bracket, and a fourth connecting part for connecting the fifth bracket and the sixth bracket. The fifth bracket is detachably mounted on the first frame, and the sixth bracket is detachably mounted on the second frame. The second shooting module protrudes from the fourth connecting part and passes through the through hole.

10. The smart glasses as described in claim 8, characterized in that, The lens frame includes a first frame, a second frame, and a first connecting part for connecting the first frame and the second frame. The second connecting part is provided with a through hole. The first frame is equipped with a first lens, and the second frame is equipped with a second lens. The mounting bracket includes a fifth bracket, a sixth bracket, and a fourth connecting part for connecting the fifth bracket and the sixth bracket. The fifth bracket is detachably mounted on the first frame, and the sixth bracket is detachably mounted on the second frame. The third component includes two optical engines, which are respectively located on the side of the fifth bracket facing the first lens and on the side of the sixth bracket facing the second lens.

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