Smart glasses

By using a rotating connection and limiting structure design for the nose pad assembly, the problem of smart glasses nose pads not being able to fit different nose bridges is solved, improving wearing comfort and stability.

CN118567107BActive Publication Date: 2026-05-12GOERTEK INC
View PDF 2 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
GOERTEK INC
Filing Date
2024-06-18
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

The nose pad structure of existing smart glasses is fixed and cannot adapt to different nose bridge shapes, resulting in a poor wearing experience.

Method used

The nose pad assembly includes a nose pad and nose pad legs. The nose pad and nose pad legs can be adjusted in angle and position through a rotating connection to accommodate different nose bridge shapes. The nose pad legs are fixed to the lens body by a limiting structure, and the use of magnetic components and a rotating shaft design improves stability.

Benefits of technology

It improves the user's wearing experience, enhances the connection stability and lifespan of the nose pads and the lens body, adapts to different nose bridge shapes, and is suitable for stable wearing in complex environments.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN118567107B_ABST
    Figure CN118567107B_ABST
Patent Text Reader

Abstract

The application discloses a kind of intelligent glasses, it is related to wearable device technical field, wherein, intelligent glasses include mirror body and nose pad assembly;The nose pad assembly includes nose pad and nose leg, the nose pad is rotatably connected to one end of the nose leg, and the other end of the nose leg is rotatably connected to the mirror body;Wherein, the nose pad is rotatable relative to the nose leg, and the nose leg drives the nose pad rotatable relative to the mirror body.The technical scheme provided by the application allows the nose pad and the entire nose pad assembly to be movable, so that the nose pad assembly can be adapted to different shapes of the nose bridge, and the user's wearing experience is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of wearable device technology, and in particular to a smart glasses. Background Technology

[0002] As people's living standards improve, smart glasses with various functions are becoming increasingly popular, such as VR (virtual reality) glasses, AR (augmented reality) glasses, or smart audio glasses. Smart glasses typically have a nose pad, which is used to support the user's nose when worn.

[0003] In related technologies, the nose pads of smart glasses usually only have a support function and a fixed shape and structure, which cannot adapt to different nose bridge shapes, resulting in a poor wearing experience for users. Summary of the Invention

[0004] The main objective of this invention is to propose a smart glasses system that allows both the nose pad and the entire nose pad assembly to be movable, enabling the nose pad assembly to adapt to different nose bridge shapes and improve the user's wearing experience.

[0005] To achieve the above objectives, the present invention proposes smart glasses, which include:

[0006] mirror body; and

[0007] A nose pad assembly, comprising a nose pad and a nose pad leg, wherein the nose pad is rotatably connected to one end of the nose pad leg, and the other end of the nose pad leg is rotatably connected to the lens body;

[0008] The nose pad is rotatable relative to the nose support leg, and the nose support leg drives the nose pad to rotate relative to the lens body.

[0009] In one embodiment, the nose pad rotates about the width and length directions of the lens body as its axis of rotation;

[0010] And / or, the nose support leg rotates about the length of the lens body.

[0011] In one embodiment, the lens body is provided with a positioning groove, and one end of the nose pad leg is fitted into the positioning groove with a gap; the nose pad assembly further includes a limiting structure installed in the positioning groove, the limiting structure being used to limit the nose pad leg after the position is adjusted.

[0012] In one embodiment, the limiting structure includes:

[0013] The first magnetic element is disposed on the inner wall of the nose support leg and located within the positioning groove; and

[0014] The second magnetic attractor is disposed on the groove wall of the positioning groove, and the second magnetic attractor is disposed opposite to the first magnetic attractor.

[0015] In one embodiment, the second magnetic attractor is arc-shaped, and the center of the second magnetic attractor is concentric with the rotation center of the first rotating shaft.

[0016] In one embodiment, the nose support leg is provided with at least one mounting hole, the mounting hole being disposed adjacent to one end of the nose support leg that extends into the endcap body, and the first magnetic member being located at the mounting hole.

[0017] In one embodiment, there are two first magnetic suction members, which are installed on opposite sides of the nose support leg; there are two second magnetic suction members, which are respectively disposed on opposite sides of the positioning groove, with each first magnetic suction member and one second magnetic suction member being disposed opposite to each other.

[0018] In one embodiment, the two opposite walls of the positioning groove are respectively provided with assembly holes, and the end of the nose support leg away from the nose support pad is provided with a positioning hole;

[0019] The nose pad assembly also includes a rotating shaft installed in the positioning hole, with both ends of the rotating shaft rotatably connected to the two mounting holes, so that the nose pad leg can be rotatably connected to the positioning groove; the extension direction of the rotating shaft is consistent with the length direction of the lens body.

[0020] In one embodiment, the nose pad assembly further includes an elastic cover plate that seals the opening of the positioning groove, the nose pad leg passes through the elastic cover plate and is inserted into the positioning groove, and the elastic cover plate elastically abuts against the outer wall of the nose pad leg.

[0021] In one embodiment, the end of the nose support leg away from the lens body is provided with a mounting cylinder;

[0022] The nose pad includes:

[0023] The insertion part is clearance-fitted into the mounting cylinder and rotatably connected to the mounting cylinder via a second rotating shaft; and

[0024] A contact portion is connected to the insertion portion, and the contact portion is located on the outside of the mounting cylinder.

[0025] In one embodiment, the nose bridge assembly further includes an elastic element disposed between the insertion portion and the mounting cylinder, for adjusting the position of the insertion portion within the mounting cylinder.

[0026] In one embodiment, the nose pad further includes a third magnetic member and a fourth magnetic member. The third magnetic member is disposed in the insertion portion, and the fourth magnetic member is mounted on the second rotating shaft. The third magnetic member and the fourth magnetic member are arranged opposite to each other.

[0027] In one embodiment, the endoscope body is provided with an endoscope FPC assembly, and the nose support leg is provided with a hollow cavity communicating with the mounting cylinder;

[0028] The nose pad assembly also includes a nose pad FPC assembly, which is installed in the hollow cavity, with one end of the nose pad FPC assembly extending into the nose pad, and the other end of the nose pad extending into the lens body and electrically connected to the lens body FPC assembly.

[0029] The smart glasses of the present invention include a lens body and a nose pad assembly; the nose pad assembly includes a nose pad and a nose pad arm, the nose pad being rotatably connected to one end of the nose pad arm, and the other end of the nose pad arm being rotatably connected to the lens body; through the rotatable connection between the nose pad and the nose pad arm of the nose pad assembly, the user can adjust the angle and position of the nose pad according to their individual nose shape, so that the nose pad assembly can be adapted to different shapes of nose bridges, thereby improving the user's wearing experience. Attached Figure Description

[0030] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, 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 the present invention. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0031] Figure 1 This is a schematic diagram of the structure of the smart glasses provided by the present invention;

[0032] Figure 2 A partial structural diagram of the nose pad assembly of the smart glasses provided by the present invention from one perspective.

[0033] Figure 3 A partial structural schematic diagram of the nose pad assembly of the smart glasses provided by the present invention from another perspective;

[0034] Figure 4 A schematic diagram of the structure of the nose pad assembly of the smart glasses provided by the present invention after the elastic cover plate of the lens body is removed.

[0035] Figure 5 A schematic diagram of the inner side of the nose pad assembly of the smart glasses provided by the present invention;

[0036] Figure 6A schematic diagram of the assembly of the nose pad leg and the elastic cover plate of the nose pad assembly of the smart glasses provided by the present invention.

[0037] Figure 7 An exploded view of the nose pad assembly of the smart glasses provided by the present invention.

[0038] Figure 8 A schematic diagram of the nose pad assembly of the smart glasses provided by the present invention from one perspective.

[0039] Figure 9 for Figure 8 Schematic diagram of AA section;

[0040] Figure 10 for Figure 8 Schematic diagram of the BB cross section;

[0041] Figure 11 A schematic diagram of the nose pad assembly of the smart glasses provided by the present invention from another perspective.

[0042] Figure 12 for Figure 11 Schematic diagram of the CC section;

[0043] Figure 13 A partial cross-sectional view of the nose pad assembly of the smart glasses provided by the present invention.

[0044] Explanation of icon numbers:

[0045] label name label name 10 mirror body 23 Rotation axis 10a positioning groove 24 Limiting structure 11 Mirror body FPC 241 First magnetic component 20 nose pad components 242 Second magnetic component 21 nose pad 25 Flexible cover 211 Connector 26 Mounting cylinder 212 Contact Department 27 Second rotation axis 213 Third magnetic component 28 elastic element 214 Fourth magnetic component 29 Nose pad FPC component 22 nose support leg

[0046] The realization of the objective, functional features and advantages of the present invention will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0047] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.

[0048] It should be noted that if the embodiments of the present invention involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications 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 indications will also change accordingly.

[0049] Furthermore, if the embodiments of this invention 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. Thus, 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 where both A and B are satisfied simultaneously. 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 by this invention.

[0050] In related technologies, the nose pads of smart glasses usually only have a support function and a fixed shape and structure, which cannot adapt to different nose bridge shapes, resulting in a poor wearing experience for users.

[0051] Therefore, this invention proposes a smart glasses.

[0052] Please see Figure 1 and Figure 2 In one embodiment of the present invention, the smart glasses include a lens body 10 and a nose pad assembly 20; the nose pad assembly 20 includes a nose pad 21 and a nose pad temple 22, the nose pad 21 is rotatably connected to one end of the nose pad temple 22, and the other end of the nose pad temple 22 is rotatably connected to the lens body 10; wherein, the nose pad 21 is rotatable relative to the nose pad temple 22, and the nose pad temple 22 drives the nose pad 21 to be rotatable relative to the lens body 10.

[0053] The nose pad 21 is rotatably connected to one end of the nose support arm 22. The angle between the nose pad 21 and the nose support arm 22 can be adjusted by rotating the nose pad 21 to adapt to different users' nose shapes. At the same time, the other end of the nose support arm 22 is rotatably connected to the lens body 10. The angle between the nose support arm 22 and the lens body 10 can be adjusted by rotating the nose support arm 22 to better fit the user's face. Compared with the prior art, the rotatable connection method of the nose pad 21 and nose support arm 22 of the nose pad assembly 20 of this smart glasses allows users to adjust the angle and position of the nose pad according to their individual nose shape, so that the nose pad assembly can be adapted to different nose bridge shapes, improving the user's wearing experience.

[0054] In addition, the nose pad 21 can be made of soft, comfortable, and wear-resistant materials such as silicone and TPU to improve the user's wearing experience. The nose support legs 22 can be made of materials with a certain degree of strength and elasticity, such as metal and plastic.

[0055] Optionally, the surface of the nose pad 21 may be provided with an anti-slip texture to increase friction with the user's nose bridge and improve wearing stability.

[0056] Optionally, the length of the nose support leg 22 is adjustable to accommodate users of different ages and nose shapes.

[0057] Optionally, the rotating connection portion of the nose pad assembly 20 may be equipped with a locking device to prevent accidental rotation during use.

[0058] Optionally, the smart glasses' frame 10 features a foldable design for easy carrying and storage. The temples on both sides of the frame 10 can fold along a hinge axis, working in conjunction with the rotating connection of the nose pad assembly 20 to achieve folding. Furthermore, the frame 10 can be equipped with a touchpad, voice recognition, and other interactive features for convenient operation when using the smart glasses.

[0059] In one implementation, please refer to Figure 1 , Figure 2 and Figure 13 The nose pad 21 rotates along the width and length of the lens body 10; the nose support leg 22 rotates along the length of the lens body 10.

[0060] The nose pad 21 has two extension directions along the lens body 10 as its rotation axis, which increases the rotation range of the nose pad 21 and makes the nose pad assembly 20 fit the user's nose better, thereby improving the user's comfort when wearing smart glasses.

[0061] Specifically, the nose pads 21 are disposed on both sides of the lens body 10 to support and fix the lens body 10 on the bridge of the nose. The rotation axes of the nose pads 21 are in the width direction and the length direction of the lens body 10, respectively. In the width direction of the lens body 10, the nose pads 21 can rotate to adapt to the width of different users' noses. Users can adjust the position of the nose pads 21 in the width direction according to their own nose width; at the same time, in the length direction of the lens body 10, the nose pads 21 can rotate to adapt to the curvature of different users' noses. Users can adjust the position of the nose pads 21 in the length direction according to their own nose curvature; during rotation, the nose pads 21 always remain parallel to the width direction of the lens body 10, and the nose pads 21 always remain parallel to the length direction of the lens body 10.

[0062] The nose support leg 22 is located below the nose pad 21 and is used to support the stability of the lens body 10 on the bridge of the nose. The axis of rotation of the nose support leg 22 is in the direction of the length of the lens body 10. The user can adjust the position of the nose support leg 22 in the length direction according to the width of their own nose bridge; during rotation, the nose support leg 22 always remains perpendicular to the width direction of the lens body 10.

[0063] In one implementation, please refer to Figure 2 and Figure 3 The lens body 10 is provided with a positioning groove 10a, and one end of the nose support leg 22 is fitted into the positioning groove 10a with a gap; the nose support assembly 20 also includes a limiting structure 24 installed in the positioning groove 10a, the limiting structure 24 is used to limit the nose support leg 22 after the position is adjusted.

[0064] In existing technologies, the connection between the lens body and the nose pad is often achieved using simple snap-fit ​​or adhesive methods, which can easily lead to loosening of the connection after prolonged use, affecting wearing comfort. However, the lens body 10 of this invention is provided with a positioning groove 10a, which is used to engage with one end of the nose pad leg 22 to fix the nose pad assembly 20. This ensures that the nose pad leg 22 is securely positioned on the lens body 10, effectively improving the connection stability and reliability between the nose pad and the lens body, thereby significantly extending the product's lifespan and the user's wearing experience.

[0065] When the nose pad 22 is driven by the user to rotate along the length of the lens body 10 until the nose pad 21 contacts the user's nose, the nose pad 22 is fixed in its current position by the limiting structure 24. This allows the nose pad arm 22 to remain in its current position without being subjected to force, accurately limiting the position of the nose pad 22 relative to the lens body 10 after movement. This effectively prevents excessive movement of the nose pad 22 during use, avoiding discomfort caused by nose pad position displacement and significantly improving the user's wearing experience. Furthermore, the limiting structure 24 makes the nose pad assembly 20 more firmly and stably fixed to the lens body 10, reducing slippage and displacement during movement and ensuring the stability of the smart glasses in complex environments, making it particularly suitable for sports scenarios.

[0066] It is understandable that the limiting structure 24 can be a magnetic structure, a sliding buckle, an elastic retaining ring, a fixed baffle, etc.; the material of the limiting structure 24 can be metal, plastic, etc., and the specific choice can be made according to actual needs.

[0067] Furthermore, one end of the nose support 22 has a protrusion that matches the shape of the positioning groove 10a. A first rotation axis 23 is disposed between the nose support 22 and the lens body 10. The nose support 22 can be rotated via the rotation axis 23 to adapt to the nose bridge shape of different users.

[0068] In one implementation, please refer to Figures 4 to 6 The limiting structure 24 includes a first magnetic member 241 and a second magnetic member 242. The first magnetic member 241 is disposed on the nose support leg 22 and located in the positioning groove 10a; the second magnetic member 242 is disposed on the groove wall of the positioning groove 10a and is disposed opposite to the first magnetic member 241.

[0069] Specifically, the first magnetic member 241 is positioned at one end of the nose support leg 22 inserted into the positioning groove 10a of the lens body 10, while the second magnetic member 242 is positioned on the side wall of the positioning groove 10a of the nose support leg 22; and by setting the first magnetic member 241 and the second magnetic member 242 opposite to each other, the first magnetic member 241 and the second magnetic member 242 can be attracted together even at the shortest distance.

[0070] When the nose support leg 22 is driven by the user to rotate along the width direction of the lens body 10, the first magnetic 241 and the second magnetic 242 will be misaligned, so that the nose support leg 22 is not easy to shake during the movement due to the mutual attraction of the first magnetic 241 and the second magnetic 242.

[0071] Until the nose support leg 22 rotates until the nose pad 21 contacts the user's nose, the user releases the nose support leg 22. At this time, the nose support leg 22 will form an angle with the lens body 10 due to the support of the user's bridge of the nose. After the first magnetic member 241 and the second magnetic member 242 move without external force, the first magnetic member 241 and the second magnetic member 242 will re-attach, thereby fixing the position of the nose support leg 22 on the lens body 10 and limiting the position of the nose support leg 22 relative to the lens body 10 after movement.

[0072] Due to the magnetic attraction between the first magnetic component 241 and the second magnetic component 242, the nose support leg 22 is positioned more accurately and reliably during movement, thereby significantly improving the product's assembly quality and stability in use.

[0073] The first magnetic attractor 241 described herein is a permanent magnet, an electromagnet, or a metal, and the second magnetic attractor 242 can be a permanent magnet, an electromagnet, or a metal.

[0074] In one implementation, please refer to Figures 4 to 6 The second magnetic attractor 242 is arranged in an arc shape, and the center of the second magnetic attractor is concentric with the rotation center of the rotating shaft.

[0075] The arc-shaped second magnetic clasp 242 and the first magnetic clasp 241 are closely fitted together and have opposite polarities, that is, the first magnetic clasp 241 and the second magnetic clasp 242 attract each other. In this way, during the working state, the arc-shaped second magnetic clasp 242 ensures that the first magnetic clasp 241 is always within the matching range of the arc-shaped second magnetic clasp 242 throughout the entire rotation cycle of the nose support leg 22. The first magnetic clasp 241 can always match the second magnetic clasp 242, thereby improving the movement stability of the nose support leg 22 and the lens body 10.

[0076] Due to the arc-shaped design of the second magnetic component and its concentric arrangement with the first rotation axis, the stability and balance during rotation are greatly improved, effectively reducing vibration and making the rotation smoother. The arc-shaped design of the second magnetic component allows for a more uniform and efficient magnetic force distribution under the influence of a magnetic field, thereby improving magnetic attraction efficiency and ensuring stable adsorption of the nose support leg 22 during high-speed rotation.

[0077] In one implementation, please refer to Figures 4 to 6 The nose support leg 22 is provided with at least one mounting hole, which is located near the end of the nose support leg 22 that extends into the lens body 10, and the first magnetic member 241 is located at the mounting hole.

[0078] In this embodiment, a mounting hole is provided near the end of the nose support leg 22 that extends into the lens body 10. The mounting hole penetrates the inner wall of the nose support leg 22. The first magnetic member 241 is inserted into the mounting hole in the inner wall of the nose support leg 22. The first magnetic member 241 is visible from the mounting hole 22a. The purpose of the mounting hole is to enhance the magnetic force between the first magnetic member 241 and the second magnetic member 242 on the lens body 10, thereby improving the limiting effect of the limiting structure 24.

[0079] In this embodiment, the second magnetic attractor 242 is preferably an electromagnet. In this way, the magnetic attraction force of the second magnetic attractor 242 can be controlled by adjusting the current of the electromagnet, thereby controlling the limiting force of the limiting structure 24.

[0080] In one implementation, please refer to Figures 4 to 6 There are two first magnetic suction components 241, which are installed on opposite sides of the nose support leg 22; there are two second magnetic suction components 242, which are respectively located on opposite sides of the positioning groove 10a, with each first magnetic suction component 241 and a second magnetic suction component 242 being arranged opposite each other.

[0081] By setting two first magnetic clasps 241 on each side of the nose pad 22 and two second magnetic clasps 242 on each side of the positioning groove 10a, a stable and easily adjustable magnetic connection method is formed. This design effectively solves the problems of complex assembly and difficult adjustment in traditional nose pad structures, improving user convenience. Due to the relative arrangement of the first magnetic clasps 241 and the second magnetic clasps 242, a quick and accurate connection between the nose pad and the eyeglass frame can be achieved, which not only improves assembly efficiency but also reduces the phenomenon of nose pad displacement or detachment caused by improper assembly, thereby significantly improving the overall comfort and stability of the glasses.

[0082] In one implementation, please refer to Figures 4 to 6The positioning groove 10a has two opposite groove walls respectively provided with assembly holes, and the nose support leg 22 has a positioning hole at the end away from the nose pad 21; the nose support assembly 20 also includes a rotating shaft 23 installed in the positioning hole, and the two ends of the rotating shaft 23 are respectively rotatably connected to the two assembly holes so that the nose support leg 22 can be rotatably connected to the positioning groove; the extension direction of the rotating shaft 23 is consistent with the length direction of the lens body 10.

[0083] The present invention also introduces a rotating shaft 23 design, which is set between the nose support 22 and the lens body 10, allowing the nose support 22 to rotate around it, greatly increasing the adjustability and adaptability of the nose support assembly 20. This allows users to adjust the nose support according to the height and angle of their nose bridge to achieve the best fit, which not only improves wearing comfort but also helps to disperse the pressure of the lens on the nose bridge and avoid discomfort caused by prolonged wear.

[0084] In one implementation, please refer to Figure 2 , Figure 4 , Figure 6 The nose pad assembly 20 also includes an elastic cover plate 25, which seals the opening of the positioning groove 10a. The nose pad leg 22 passes through the elastic cover plate 25 and is inserted into the positioning groove 10a, and the elastic cover plate 25 elastically abuts against the outer wall of the nose pad leg 22.

[0085] In this embodiment, viewed from the inside of the lens body 10, there is a gap between the nose pad leg 22 and the positioning groove 10a on the lens body 10, allowing the nose pad leg 22 to rotate in both vertical and horizontal directions. Viewed from the outside of the lens body 10, the elastic cover plate 25 is fitted onto the nose pad leg 22 and simultaneously embedded in the opening of the positioning groove 10a of the lens body 10. Because the elastic cover plate 25 elastically abuts against the outer wall of the nose pad leg 22, the nose pad assembly 20 exhibits good stability and reliability during assembly. During use, the elastic cover plate 25 effectively prevents dust, sweat, and other substances from entering the positioning groove 10a, thus improving the service life of the nose pad assembly 20.

[0086] The elastic cover 25 serves two purposes: First, it covers and seals the opening of the positioning groove 10a, preventing the nose support leg 22 from accidentally falling off during movement and ensuring the stability and durability of the nose support assembly 20. Second, the elastic cover 25 utilizes its own good elasticity to ensure that the nose support leg 22 can swing up and down; when the nose support leg 22 swings up and down, the elastic cover 25 can easily deform under pressure without affecting the rotation of the nose support leg 22, and after the external force is removed, the elasticity of the elastic cover 25 can help the nose support leg 22 return to its center position.

[0087] Optionally, the resilient cover 25 comprises two interlocking rectangular structures, fixed to both sides of the opening of the positioning groove 10a. The two rectangular structures of the resilient cover 25 are interlocked by means of snap-fit ​​or other connection methods to form a complete resilient cover. The edges of the two rectangular structures fit tightly against the opening of the positioning groove 10a to ensure sealing performance.

[0088] The elastic cover 25 is made of elastic materials such as silicone, and has good elasticity and sealing performance.

[0089] In one implementation, please refer to Figure 2 , Figure 4 , Figure 6 and Figure 7 The nose support leg 22 is provided with a mounting cylinder 26 at the end away from the lens body 10; the nose pad 21 includes a plug part 211 and a contact part 212. The plug part 211 is fitted with the mounting cylinder 26 with a clearance and is rotatably connected to the mounting cylinder 26 through a second rotating shaft 27; the contact part 211 is connected to the plug part 212 and is located on the outside of the mounting cylinder 26.

[0090] In this embodiment, the mounting tube 26 is located at the end of the nose pad 22 furthest from the lens body 10, and is used to fit with the insertion part 211 with a clearance, so that the nose pad 22 and the nose pad 21 fit more tightly. The insertion part 211 is cylindrical, with one end inserted into the mounting tube 26, and is rotatably connected to the mounting tube 26 via a second rotating shaft 27. The second rotating shaft 27 is located between the insertion part 211 and the mounting tube 26, so that the insertion part 211 can rotate around the second rotating shaft 27 to adjust the fit between the contact part 211 and the user's nose bridge. The contact part 211 is arc-shaped, connected to the insertion part 212, and located on the outside of the mounting tube 26, for contacting the user's nose bridge. During use, the user can adjust the relative position of the insertion part 211 and the mounting tube 26 according to their nose bridge shape, so that the contact part 211 fits tightly against the nose bridge, thereby improving wearing comfort.

[0091] The nose support leg 22 is made of elastic material to adapt to the shape of different users' nose bridges.

[0092] In one implementation, please refer to Figure 8 , Figure 9 and Figure 10 The nose pad assembly 20 also includes an elastic element 28, which is disposed between the insertion part 211 and the mounting cylinder 26 and is used to adjust the position of the insertion part 211 within the mounting cylinder 26.

[0093] By molding, an elastic element 28 is wrapped around one end of the nose pad 21. When the elastic element 28 is compressed, it can easily deform and be squeezed. When the pressure is released, it can easily spring back to its initial state. In this way, the insertion part 211 can be fixed in different positions within the mounting cylinder 26 by the deformation of the elastic element 28, further increasing the adjustment range of the insertion part 211 within the mounting cylinder 26, so that the nose pad 21 can form different angles relative to the nose support leg 22.

[0094] Specifically, the insertion part 211 can be inserted into the mounting tube 26 for connection with the lens body 10. An elastic element 28 is provided on the contact surface between the insertion part 211 and the mounting tube 26, allowing the position of the insertion part 211 within the mounting tube 26 to be adjusted according to the user's needs. By adjusting the elasticity of the elastic element 28, precise adjustment of the position of the insertion part 211 within the mounting tube 26 can be achieved, thereby improving the adaptability and comfort of the nose pad assembly 20.

[0095] The elastic element 28 is made of a silicone material with good elasticity and stability. The elasticity of the silicone material can be adjusted by changing its hardness, thickness, and other parameters to meet the needs of different users.

[0096] In addition, the elastic element 28 can be designed in a wavy, ring-shaped or other suitable shape to increase the contact area with the insertion part 211 and the mounting cylinder 26 and improve the adjustment effect.

[0097] In one implementation, please refer to Figure 8 , Figure 9 , Figure 10 and Figure 13 The nose pad 21 also includes a third magnetic member 213 and a fourth magnetic member 214. The third magnetic member 213 is disposed in the insertion part 211, and the fourth magnetic member 214 is mounted on the second rotating shaft 27. The third magnetic member 213 and the fourth magnetic member 214 are arranged opposite to each other.

[0098] The insertion part 211 is used to connect with the nose support leg 22, facilitating the installation and removal of the nose pad 21. A third magnetic component 213 is disposed within the insertion part 211, opposite to the fourth magnetic component 214, to enhance the fixation between the nose pad 21 and the nose support leg 22. The fourth magnetic component 214 is mounted on the second rotating shaft 27, opposite to the third magnetic component 213, ensuring the nose pad 21 remains stable during rotation. The second rotating shaft 27 enables the nose pad 21 to rotate, allowing it to be adjusted according to the user's nose bridge shape, improving comfort.

[0099] In practical applications, users can adjust the angle of the nose pad 21 as needed to adapt to different nose bridge shapes. The magnetic attraction between the third magnetic component 213 and the fourth magnetic component 214 makes the nose pad 21 less likely to fall off during rotation, improving safety during use.

[0100] Specifically, the nose pad 21 also includes a nose pad support frame, which includes a support bar and a mounting shell located at one end of the support bar. The support bar is L-shaped and is built into the nose pad 21. The mounting shell is used to install the third magnetic component 213. The mounting shell is circular and the second rotating shaft 27 passes through the mounting shell of the nose pad support frame. With this configuration, the nose pad support frame not only provides the nose pad 21 with a certain strength, but also stably installs the third magnetic component 213, so that the third magnetic component 213 is not easily misaligned with the fourth magnetic component 214 when the nose pad 21 does not move.

[0101] Optionally, the third magnetic attractor 213 and the fourth magnetic attractor 214 may be electromagnets or permanent magnets.

[0102] Optionally, the shapes of the third magnetic member 213 and the fourth magnetic member 214 can be designed according to the actual situation.

[0103] In one implementation, please refer to Figures 11 to 13 The scope body 10 is provided with a scope body FPC assembly 11, and the nose pad leg 22 is provided with a hollow cavity communicating with the mounting cylinder 26; the nose pad assembly 20 also includes a nose pad FPC assembly 29, which is installed in the hollow cavity, and one end of the nose pad FPC assembly 29 extends into the nose pad 21, and the other end of the nose pad 21 extends into the scope body 10 and is electrically connected to the scope body FPC assembly 11.

[0104] By incorporating a lens body FPC assembly 11 inside the lens body 10 and electrically connecting it to a nose pad FPC assembly 29 disposed within the hollow cavity of the nose pad leg 22, a high degree of integration between the structure and electrical connection is achieved. This not only reduces the number of connection lines between components, improving the connection stability and signal transmission efficiency between components, but also effectively reduces the product size, making the overall structure more compact and easier for users to use and carry.

[0105] The nose pad FPC assembly 29 is directly installed within the hollow cavity of the nose pad leg 22 and extends into the nose pad pad 21. This design helps reduce the complexity of components, simplifies the assembly process, and lowers production costs. Simultaneously, since one end of the nose pad FPC assembly 29 is directly electrically connected to the lens body FPC assembly 11, signal loss and interference in traditional connection methods are avoided, significantly improving the working efficiency and reliability of the electronic equipment.

[0106] Furthermore, an elastic connection structure is provided between the nose pad FPC component 29 and the nose pad 21 to enhance the connection stability between the two.

[0107] Furthermore, a guide structure is provided between the endoscope body FPC assembly 11 and the nose pad 21 to facilitate the other end of the nose pad 21 to smoothly extend into the endoscope body 10 and electrically connect with the endoscope body FPC assembly 11.

[0108] Optionally, the material of the nose support leg 22 can be optimized by using a material with good biocompatibility and abrasion resistance to improve the comfort and service life of the product.

[0109] The above description is merely an exemplary embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural transformations made using the contents of the present invention specification and drawings under the technical concept of the present invention, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present invention.

Claims

1. A type of smart glasses, characterized in that, include: mirror body; and A nose pad assembly, comprising a nose pad and a nose pad leg, wherein the nose pad is rotatably connected to one end of the nose pad leg, and the other end of the nose pad leg is rotatably connected to the lens body; The nose pad is rotatable relative to the nose support leg, and the nose support leg drives the nose pad to rotate relative to the lens body. The nose pad rotates about the width and length directions of the mirror body as its axis of rotation. The nose support legs rotate about the length of the mirror body; The lens body is provided with a positioning groove, and one end of the nose pad leg is fitted into the positioning groove with a gap; the nose pad assembly also includes a limiting structure installed in the positioning groove, and the limiting structure is used to limit the nose pad leg after the position is adjusted. The end of the nose support leg away from the lens body is provided with a mounting tube; The nose pad includes: The insertion part is clearance-fitted into the mounting cylinder and rotatably connected to the mounting cylinder via a second rotating shaft; and A contact portion, connected to the insertion portion, is located on the outside of the mounting cylinder; The nose pad also includes a third magnetic component and a fourth magnetic component. The third magnetic component is disposed in the insertion part, and the fourth magnetic component is installed on the second rotating shaft. The third magnetic component and the fourth magnetic component are arranged opposite to each other. The nose pad also includes a nose pad support frame, which includes a support bar and a mounting shell located at one end of the support bar. The support bar is L-shaped and is built into the nose pad. The mounting shell is used to install a third magnetic component and to pass through the second rotating shaft inside the mounting shell of the nose pad support frame. The mounting shell is circular.

2. The smart glasses as described in claim 1, characterized in that, The limiting structure includes: The first magnetic element is disposed on the nose support leg and located within the positioning groove; and The second magnetic attractor is disposed on the groove wall of the positioning groove, and the second magnetic attractor is disposed opposite to the first magnetic attractor.

3. The smart glasses as described in claim 2, characterized in that, The second magnetic attractor is arc-shaped, and the center of the second magnetic attractor is concentric with the rotation center of the first rotating shaft.

4. The smart glasses as described in claim 2, characterized in that, The nose support leg is provided with at least one mounting hole, which is located near the end of the nose support leg that extends into the lens body, and the first magnetic member is located at the mounting hole.

5. The smart glasses as described in claim 2, characterized in that, There are two first magnetic suction components, which are installed on opposite sides of the nose support leg; there are two second magnetic suction components, which are respectively located on opposite sides of the positioning groove, with each first magnetic suction component and each second magnetic suction component being oppositely arranged.

6. The smart glasses as described in any one of claims 1 to 5, characterized in that, The two opposite walls of the positioning groove are respectively provided with assembly holes, and the end of the nose support leg away from the nose support pad is provided with a positioning hole; The nose pad assembly also includes a first rotating shaft installed in the positioning hole, with both ends of the first rotating shaft rotatably connected to the two mounting holes respectively, so that the nose pad leg can be rotatably connected to the positioning groove; the extension direction of the first rotating shaft is consistent with the length direction of the lens body.

7. The smart glasses as described in claim 1, characterized in that, The nose pad assembly also includes an elastic cover plate, which seals the opening of the positioning groove. The nose pad leg passes through the elastic cover plate and is inserted into the positioning groove, and the elastic cover plate elastically abuts against the outer wall of the nose pad leg.

8. The smart glasses as described in claim 1, characterized in that, The nose bridge assembly also includes an elastic element disposed between the insertion part and the mounting cylinder, which is used to adjust the position of the insertion part within the mounting cylinder.

9. The smart glasses as described in claim 1, characterized in that, The scope body is provided with a scope body FPC assembly, and the nose support leg is provided with a hollow cavity communicating with the mounting cylinder; The nose pad assembly also includes a nose pad FPC assembly, which is installed in the hollow cavity, with one end of the nose pad FPC assembly extending into the nose pad, and the other end of the nose pad extending into the lens body and electrically connected to the lens body FPC assembly.