Nosepad assembly, frame, and head-mounted device

By introducing deformable elastic elements into the nose pad assembly, the issues of fit and comfort during long-term wear of smart glasses have been resolved, the adjustability of the nose pad has been achieved, and the user experience has been improved.

CN115808795BActive Publication Date: 2026-02-06GUANGDONG OPPO MOBILE TELECOMMUNICATIONS CORP LTD
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Patent Information

Application Number
CN202111081791.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-09-15
Publication Date
2026-02-06
Estimated Expiration
2041-09-15

AI Technical Summary

Technical Problem

Existing smart glasses do not provide sufficient fit and comfort for users when worn for extended periods, making it difficult to meet the needs of prolonged wear.

Method used

Design a nose pad assembly including a support frame, an elastic element, and a nose pad. The elastic element's deformation capability allows the nose pad to move relative to the support frame, providing a greater range of adjustment and angle, thus improving fit.

Benefits of technology

The adjustable nose pads have been enhanced, improving the fit and comfort of users wearing smart glasses.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a nose pad assembly, a frame and a head-mounted device. The nose pad assembly comprises a support frame, an elastic member connected with the support frame, and a nose pad connected with the elastic member. The elastic member is configured to be deformable so that the nose pad is movable relative to the support frame. In this way, the nose pad can be adjusted, and the movement range and angle of the nose pad can be expanded, thereby improving the fitting degree and comfort of the user when wearing.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of electronic devices, in particular to a nose pad assembly, a frame and a head-mounted device. BACKGROUND

[0002] With the continuous development and popularization of smart glasses, the electronic devices loaded on the existing smart glasses are more and more, and the functions realized are more and more comprehensive, so that people will wear smart glasses for a long time for entertainment or work. Therefore, how to improve the adaptability of users wearing smart glasses to ensure the comfort of long-time wearing has become the main concern of the industry personnel. SUMMARY

[0003] The present application provides a nose pad assembly, which comprises a support frame, an elastic member connected with the support frame, and a nose pad connected with the elastic member, wherein the elastic member is configured to be deformable so that the nose pad is movable relative to the support frame.

[0004] The present application also provides a frame for a head-mounted device, which comprises a crossbeam, a frame body connected with the crossbeam and forming a bearing surface together with the crossbeam, wherein the bearing surface is configured to mount an optical lens of the head-mounted device, and a nose pad assembly comprising a support frame, an elastic member and a nose pad, wherein the support frame is connected with the frame body, the elastic member is connected with the support frame, and the nose pad is connected with the elastic member, and the elastic member is configured to be deformable so that the nose pad is movable relative to the support frame.

[0005] The present application also provides a head-mounted device, which comprises a frame comprising a crossbeam, a frame body and a nose pad assembly, wherein the crossbeam is connected with the frame body and forms a bearing surface together with the frame body, the nose pad assembly comprises a support frame, an elastic member and a nose pad, the support frame is connected with the frame body, the elastic member is connected with the support frame, the nose pad is connected with the elastic member, and the elastic member is configured to be deformable so that the nose pad is movable relative to the support frame, an optical engine is arranged on the crossbeam, and an optical lens is arranged on the bearing surface and opposite to the optical engine, wherein the optical lens is configured to present a virtual reality / augmented reality environment under the control of the optical engine.

[0006] The nose pad assembly provided by the embodiments of the present application is provided with a deformable elastic member between the support frame and the nose pad, so that the nose pad can move relative to the support frame by deformation of the elastic member, and the nose pad is adjustable. Compared with the scheme of using a metal support to slightly deform to realize the adjustment of the nose pad, the deformation capacity of the elastic member is stronger, and the elastic member can provide a larger movement range and adjustment angle for the nose pad, increase the range that the nose pad can adapt to, and improve the adaptability and comfort of the user when wearing. BRIEF DESCRIPTION OF DRAWINGS

[0007] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0008] FIG. 1 is a structural schematic diagram of a head-mounted device 10 provided by the embodiments of the present application;

[0009] FIG. 2 is FIG. 1 is an exploded structural schematic diagram of the head-mounted device 10 in the embodiment;

[0010] FIG. 3 is FIG. 2 is an exploded structural schematic diagram of the wearing support 100 in the embodiment;

[0011] FIG. 4 is FIG. 3 is a structural schematic diagram of the frame 110 in the embodiment;

[0012] FIG. 5 is FIG. 4 is a connection structural schematic diagram of the cross beam 111 and the frame body 112 in the embodiment;

[0013] FIG. 6 is FIG. 5 is a partial cross-sectional structural schematic diagram of the cross beam 111 and the frame body 112 along V-V in the embodiment;

[0014] FIG. 7 is FIG. 5 is a connection structural schematic diagram of the cross beam 111 and the frame body 112 in another view in the embodiment;

[0015] FIG. 8 is FIG. 7 is a partial cross-sectional structural schematic diagram of the cross beam 111 and the frame body 112 along VI-VI in the embodiment;

[0016] FIG. 9 is FIG. 4 is a partial cross-sectional structural schematic diagram of the frame 110 along IV-IV in the embodiment;

[0017] FIG. 10 is a structural schematic view of the blocking member 113 in the second embodiment; FIG. 9

[0018] FIG. 11 is a structural schematic view of the blocking member 113 in the second embodiment; FIG. 4

[0019] FIG. 12 is a structural schematic view of the blocking member 113 in the second embodiment; FIG. 10

[0020] FIG. 13 is a structural schematic view of the blocking member 113 in the second embodiment; FIG. 12

[0021] FIG. 14 is a structural schematic view of the blocking member 113 in the second embodiment; FIG. 12

[0022] FIG. 15 is a structural schematic view of the blocking member 113 in the second embodiment; FIG. 10

[0023] FIG. 16 is a structural schematic view of the blocking member 113 in the second embodiment; FIG. 15

[0024] FIG. 17 is a structural schematic view of the blocking member 113 in the second embodiment; FIG. 15

[0025] FIG. 18 is a structural schematic view of the blocking member 113 in the second embodiment; FIG. 15

[0026] FIG. 19 is a structural schematic view of the blocking member 113 in the second embodiment; FIG. 2

[0027] FIG. 20 is a structural schematic view of the blocking member 113 in the second embodiment; FIG. 19

[0028] FIG. 21 is a structural schematic view of the blocking member 113 in the second embodiment; FIG. 19

[0029] FIG. 22 is a structural schematic view of the blocking member 113 in the second embodiment; FIG. 19

[0030] FIG. 23 is a structural schematic view of the blocking member 113 in the second embodiment; FIG. 2

[0031] FIG. 24 is a structural schematic view of the blocking member 113 in the second embodiment;​​​​​​​​​​​​​​FIG. 23 A schematic diagram of a partial cross-sectional structure of the middle frame 110, optical lens 200, and electrical connector 500 along XI-XI;

[0032] FIG. 25 yes FIG. 23 Schematic diagram of the structure of Zhongguang Optical Lens 200;

[0033] FIG. 26 yes FIG. 1 A schematic diagram of a partial cross-sectional structure of the head-mounted device 10 along IX-IX;

[0034] FIG. 27 yes FIG. 2 Assembly diagram of the central crossbeam 111, frame 112, first electronic component 300 and electrical connector 500;

[0035] FIG. 28 yes FIG. 27 A schematic diagram of the connection structure of the charging adapter board 320, the pressure-sensitive circuit board 330 and the support component 150.

[0036] FIG. 29 yes FIG. 2 Assembly diagram of the first leg 123 and the second electronic component 400;

[0037] FIG. 30 yes FIG. 29 Another assembly diagram of the first leg 123 and the second electronic component 400;

[0038] FIG. 31 yes FIG. 2 Assembly diagram of the second leg 124 and the second electronic component 400;

[0039] FIG. 32 yes FIG. 31 Another assembly diagram of the second leg 124 and the second electronic component 400. Detailed Implementation

[0040] The present application will now be described in further detail with reference to the accompanying drawings and embodiments. It should be particularly noted that the following embodiments are for illustrative purposes only and do not limit the scope of the application. Similarly, the following embodiments are only some, not all, embodiments of the present application, and all other embodiments obtained by those skilled in the art without inventive effort are within the scope of protection of the present application.

[0041] Reference to an "embodiment" in this application means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the application. The appearances of the phrase in various places in the specification are not necessarily all referring to the same embodiment, nor are they necessarily mutually exclusive of one another. It is expressly understood that the embodiments described herein can be combined with each other in their various permutations and combinations.

[0042] The present application sets forth a head-mounted device. The head-mounted device can be an augmented reality or virtual reality device, such as augmented reality or virtual reality glasses. Of course, the head-mounted device can also be other devices that are to be worn on the head, such as glasses, for example, devices that have other functions such as illumination and are wearable on the head, without being limited thereto. In the following, augmented reality or virtual reality glasses are taken as an example for a detailed description.

[0043] In the example of augmented reality or virtual reality glasses, the head-mounted device can be configured to transfer data to and receive data from an external processing device by a signal connection, which can be a wired connection, a wireless connection, or a combination thereof. In other scenarios, however, the head-mounted device can be used as a standalone device, i.e., data processing is performed by the head-mounted device itself. The signal connection can be configured to carry any kind of data, such as image data (e.g., still images and / or full motion video, including 2D and 3D images), audio, multimedia, speech, and / or any other type of data. The external processing device can be, for example, a game console, a personal computer, a tablet computer, a smartphone, or other types of processing devices. The signal connection can be, for example, a Universal Serial Bus (USB) connection, a Wi-Fi connection, a Bluetooth or Bluetooth Low Energy (BLE) connection, an Ethernet connection, a cable connection, a DSL connection, a cellular connection (e.g., 3G, LTE / 4G, or 5G), or the like or a combination thereof. Additionally, the external processing device can communicate with one or more other external processing devices via a network, which can be or include, for example, a local area network (LAN), a wide area network (WAN), an intranet, a metropolitan area network (MAN), the global Internet, or a combination thereof.

[0044] Display components, optics, sensors, and processors, among others, can be installed in the head-mounted device. In the example of augmented reality or virtual reality glasses, the display components are designed to, for example, implement the functionality of virtual reality glasses by projecting light into the user's eyes, for example, to implement the functionality of augmented reality glasses by overlaying images on the user's view of their real-world environment. The head-mounted device can also include ambient light sensors and can also include electronic circuitry to control at least some of the above-mentioned components and to perform associated data processing functions. The electronic circuitry can include, for example, one or more processors and one or more memories.

[0045] Please refer to FIG. 1 to FIG. 3 , FIG. 1 is a structural schematic diagram of a head-mounted device 10 provided by an embodiment of the present application, FIG. 2 is FIG. 1 an exploded structural schematic diagram of the head-mounted device 10 in FIG. 3 is FIG. 2 an exploded structural schematic diagram of the wearing support 100 in

[0046] As shown in FIG. 1 to FIG. 2 , the head-mounted device 10 provided by an embodiment of the present application can include a wearing support 100, an optical lens 200, a first electronic assembly 300, a second electronic assembly 400, and an electrical connector 500. The wearing support 100 can be worn on the head of a user. The optical lens 200, the first electronic assembly 300, and the second electronic assembly 400 can all be arranged on the wearing support 100, and the optical lens 200 can be used in cooperation with the first electronic assembly 300 and the second electronic assembly 400 to realize the function of augmented reality or virtual reality in front of the eyes of the user. Of course, the first electronic assembly 300 and the second electronic assembly 400 can also be used to realize other functions of the head-mounted device 10. The electrical connector 500 can also be arranged on the wearing support 100, and the electrical connector 500 can be electrically connected with the first electronic assembly 300 and the second electronic assembly 400 respectively to realize the transmission of electrical signals between the first electronic assembly 300 and the second electronic assembly 400. The terms “first”, “second”, “third” in the present application are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by “first”, “second”, “third” can explicitly or implicitly include at least one of the features.

[0047] The wearing support 100 can be used to carry the optical lens 200, the first electronic assembly 300, the second electronic assembly 400, and the electrical connector 500. As FIG. 3As shown, the wearable support 100 can include a frame 110, a leg 120, and a pivot assembly 130. The frame 110 can be provided with the leg 120 at opposite ends thereof, and the frame 110 can be used to mount the optical lens 200 and the first electronic component 300, and the leg 120 can be used to mount the second electronic component 400. The pivot assembly 130 can be connected with the frame 110 and the leg 120 respectively, to realize the rotational connection of the frame 110 and the leg 120. An electrical connector 500 can be provided on the frame 110, and the electrical connector 500 can also extend to the leg 120 through the frame 110, so as to electrically connect the first electronic component 300 and the second electronic component 400 with the electrical connector 500 respectively. In the embodiment, the orthographic projection of the optical lens 200 on the frame 110 can overlap the orthographic projection of the electrical connector 500 on the frame 110, so that the optical lens 200 and the electrical connector 500 can share the same mounting area on the frame 110, to reduce the width of the area of the frame 110 for mounting the optical lens 200 and the electrical connector 500, not only can increase the visual range of the optical lens 200, but also can bring the user a visual effect of narrow frame, to improve the appearance performance of the head-mounted device 10.

[0048] Please refer to FIG. 4 to FIG. 6 , FIG. 4 is FIG. 3 the structural schematic view of the frame 110 in the embodiment, FIG. 5 is FIG. 4 the connection structure schematic view of the crossbeam 111 and the frame body 112 in the embodiment, FIG. 6 is FIG. 5 the partial cross-section structure schematic view of the crossbeam 111 and the frame body 112 along V-V in the embodiment.

[0049] The frame 110 can be worn in front of the eyes of the user, so that the optical lens 200 provided on the frame 110 cooperates with the first electronic component 300 and the second electronic component 400, to realize the function of augmented reality or virtual reality. As shown in FIG. 4As shown, the frame 110 can include a beam 111, a frame body 112, a shielding piece 113, and a nose pad assembly 114. The beam 111 can be provided with a support leg 120 at opposite ends thereof, and can be used to mount the first electronic component 300 and the electrical connector 500. The frame body 112 is connected to the beam 111, and the two can be used to mount the optical lens 200 in cooperation. The shielding piece 113 can be arranged on the beam 111, and can be used to shield the electrical connector 500 on the beam 111. The nose pad assembly 114 can be arranged on the frame body 112, and can be used to contact the bridge of the nose of the user to support the beam 111, the frame body 112, and various components arranged on the beam 111 and the frame body 112. In this embodiment, the orthographic projection of the optical lens 200 on the beam 111 can overlap the orthographic projection of the electrical connector 500 on the beam 111, so that the optical lens 200 and the electrical connector 500 can share the same mounting area on the beam 111, so as to reduce the width of the area of the beam 111 for mounting the optical lens 200 and the electrical connector 500, which not only can increase the visual range of the optical lens 200, but also can bring the user a visual effect of narrow frame, and improve the appearance performance of the head-mounted device 10.

[0050] Specifically, the beam 111 and the frame body 112 can jointly form a bearing surface 1101, and the bearing surface 1101 can be used to mount the optical lens 200 to achieve the mounting of the frame 110 and the optical lens 200. As shown, FIG. 4 to FIG. 5 As shown, the beam 111 can be arranged in a strip shape in appearance, and the frame body 112 can be arranged in a "C" shape in appearance, and one end of the frame body 112 can be connected to the peripheral side of the beam 111, and the other end can be connected to the end of the beam 111, so that the two can jointly form a ring-shaped bearing surface 1101 to mount the optical lens 200. For example, the bearing surface 1101 can be glued, so that the optical lens 200 can be fixed by glue to the beam 111 and the frame body 112. Meanwhile, in order to improve the installation convenience, the beam 111 and the frame body 112 can jointly form a ring-shaped convex edge 1102, and the ring-shaped convex edge 1102 can be arranged around the bearing surface 1101. In this way, when the optical lens 200 is installed, the ring-shaped convex edge 1102 can be used to determine the installation position of the optical lens 200, and the bearing surface 1101 can be positioned and assembled, so as to improve the installation convenience of the optical lens 200. In this embodiment, the glue used to bond the beam 111, the frame body 112, and the optical lens 200 can be a hot melt adhesive, and the beam 111 and the frame body 112 can be an integral structure, and the two can be integrally formed by an injection molding process. In some embodiments, the material of the glue can not be limited to hot melt adhesive, and the beam 111 and the frame body 112 can also be formed by other integral molding processes. For example, when the materials of the beam 111 and the frame body 112 are metal, the two can be integrally formed by a stamping process.

[0051] Both ends of the crossbeam 111 can be provided with legs 120, and the crossbeam 111 can also be used to install the first electronic component 300 and the electrical connector 500. For example... FIG. 4 to FIG. 5 As shown, the crossbeam 111 can be provided with a main body 1111 and a mounting part 1112. The main body 1111 can be strip-shaped and can be used to mount the electrical connector 500. The mounting part 1112 can be column-shaped and can be used to mount the first electronic component 300. Mounting parts 1112 can be provided at both ends of the main body 1111, and one end of the frame 112 can be connected to the periphery of the main body 1111, while the other end can be connected to the mounting part 1112, so that the three together form the aforementioned bearing surface 1101 and an annular flange 1102 for mounting the optical lens 200. This configuration allows for the installation of two first electronic components 300 at opposite ends of the main body 1111 using the mounting portion 1112. Furthermore, the mounting portions 1112 at opposite ends of the main body 1111 can be connected to the support leg 120. This enables the electrical connector 500 to be electrically connected to the first electronic component 300 on the mounting portion 1112, and then extend through the mounting portion 1112 to the support leg 120, where it can be electrically connected to the second electronic component 400, thus improving the ease of installation of the electrical connector 500. In this embodiment, the orthographic projection of the optical lens 200 on the main body 1111 can overlap with the orthographic projection of the electrical connector 500 on the main body 1111, so that the optical lens 200 and the electrical connector 500 can share the same mounting area on the main body 1111, thereby reducing the width of the area of ​​the main body 1111 used for mounting the optical lens 200 and the electrical connector 500. This not only increases the field of view of the optical lens 200, but also provides users with a narrow bezel visual effect, enhancing the appearance of the head-mounted device 10.

[0052] In some embodiments, the mounting portion 1112 may also be connected to the main body portion 1111 at locations other than its ends, so that the mounting portion 1112 can be used solely for mounting the first electronic component 300. For example, the mounting portion 1112 may be connected to the middle position between opposite ends of the main body portion 1111, while the opposite ends of the main body portion 1111 may be used for connection to the support leg 120. Accordingly, the frame 112 may be connected to the periphery and the end of the main body portion 1111, respectively, thereby forming the aforementioned bearing surface 1101 and annular flange 1102 together with the main body portion 1111 for mounting the optical lens 200. The electrical connector 500 may extend from the opposite ends of the main body portion 1111 to the support leg 120 and be electrically connected to the second electronic component 400 on the support leg 120.

[0053] In some embodiments, the first electronic component 300 and the second electronic component 400 may also be respectively disposed on the support legs 120 at opposite ends of the crossbeam 111, that is, the first electronic component 300 may be disposed in one support leg 120 and the second electronic component 400 may be disposed in the other support leg 120. Therefore, the crossbeam 111 may also only be provided with a main body 1111 for mounting the electrical connector 500, so as to use the electrical connector 500 to connect the support legs 120 at opposite ends of the main body 1111 to realize the electrical connection between the first electronic component 300 and the second electronic component 400. Correspondingly, one end of the frame 112 can still be connected to the periphery of the main body 1111, and the other end can still be connected to the end of the main body 1111, thereby forming the aforementioned bearing surface 1101 and annular flange 1102 together with the main body 1111 for mounting the optical lens 200.

[0054] The main body 1111 can be used to mount the electrical connector 500 to achieve electrical connection between the first electronic component 300 and the second electronic component 400. For example... FIG. 5 to FIG. 6 As shown, the main body 1111 may have a wiring groove 11101 for mounting the electrical connector 500 on one side of the bearing surface 1101. This wiring groove 11101 can also connect to the mounting portions 1112 at opposite ends of the main body 1111, allowing the electrical connector 500 to be electrically connected to the first electronic components 300 on the two mounting portions 1112 via the wiring groove 11101. Furthermore, after the electrical connector 500 is electrically connected to the first electronic component 300 via the wiring groove 11101, it can also extend through the mounting portion 1112 to the support leg 120 for electrical connection to the second electronic component 400. Correspondingly, since the wiring groove 11101 is provided on one side of the main body 1111 located on the bearing surface 1101, the optical lens 200 can be covered by the wiring groove 11101 and disposed opposite to the electrical connector 500 in the wiring groove 11101, so that the orthographic projection of the optical lens 200 on the bearing surface 1101 can overlap with the orthographic projection of the electrical connector 500 on the bearing surface 1101.

[0055] Compared with the scheme that the optical lens 200 and the electrical connector 500 need to respectively occupy an installation area on the main body part 1111, the present embodiment sets a wiring slot 11101 on the side of the main body part 1111 located on the bearing surface 1101 for installing the electrical connector 500, and the optical lens 200 is arranged opposite to the wiring slot 11101 and the electrical connector 500, so that the orthogonal projection of the optical lens 200 on the bearing surface 1101 can overlap with the orthogonal projection of the electrical connector 500 on the bearing surface 1101. In this way, when the optical lens 200, the electrical connector 500 and the frame 110 are installed, the optical lens 200 and the electrical connector 500 can be installed on the main body part 1111 in the direction perpendicular to the bearing surface 1101, using the same installation area on the main body part 1111, so as to reduce the width occupied by the area of the main body part 1111 for installing the optical lens 200 and the electrical connector 500 in the direction parallel to the bearing surface 1101, which not only can increase the visual range of the optical lens 200, but also can bring the user a visual effect of narrow frame, and improve the appearance performance of the head-mounted device 10. In addition, by setting the wiring slot 11101 to install the electrical connector 500, not only the thickness of the electrical connector 500 can be absorbed by the wiring slot 11101, but also the electrical connector 500 can be protected by the wiring slot 11101, so as to avoid the interference between the optical lens 200 and the electrical connector 500 during the assembly process, and cause the damage of the electrical connector 500.

[0056] In some embodiments, the wiring slot 11101 can also be arranged on the side of the main body part 1111 away from the bearing surface 1101, so that the optical lens 200 and the electrical connector 500 can be arranged on the two opposite sides of the main body part 1111, so as to facilitate the main body part 1111 to support the optical lens 200, and only the orthogonal projection of the electrical connector 500 on the bearing surface 1101 needs to overlap with the orthogonal projection of the optical lens 200. In some embodiments, in addition to the scheme of setting the wiring slot 11101, the main body part 1111 can also set a channel penetrating through the two opposite ends of the main body part 1111 to install the electrical connector 500. Of course, the electrical connector 500 can also be directly arranged on the outer surface of the main body part 1111, and only the orthogonal projection of the electrical connector 500 on the bearing surface 1101 needs to overlap with the orthogonal projection of the optical lens 200 on the bearing surface 1101. The terms "comprising" and "having" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product or device including a series of steps or units is not limited to the listed steps or units, but optionally also includes steps or units not listed, or optionally also includes other steps or units inherent to the process, method, product or device.

[0057] Please refer to FIG. 5 Please refer to FIG. 7 to FIG. 8 ,FIG. 7 is FIG. 5 Connection structure schematic diagram of the middle cross beam 111 and the frame body 112 in another perspective view, FIG. 8 is FIG. 7 Part cross-sectional structure schematic diagram of the middle cross beam 111 and the frame body 112 along VI-VI.

[0058] The mounting part 1112 can be arranged at opposite ends of the main body part 1111, which can be used not only for mounting the first electronic assembly 300 but also for connecting with the supporting leg 120. As shown in FIG. 5 and FIG. 7 The mounting part 1112 located at one side of the bearing surface 1101 can be provided with a containing groove 11102, and the containing groove 11102 can be used for mounting the first electronic assembly 300. The wiring groove 11101 can be in communication with the containing groove 11102, so as to facilitate the electrical connection between the electrical connecting part 500 and the first electronic assembly 300 in the containing groove 11102. The optical lens 200 can be arranged on the containing groove 11102, so as to realize the virtual reality or augmented reality function of the optical lens 200 and the first electronic assembly 300. Meanwhile, the side of the mounting part 1112 away from the bearing surface 1101 can also be provided with a connecting groove 11103, and the connecting groove 11103 can be used for connecting with the supporting leg 120. As shown in FIG. 7 to FIG. 8 The side wall of the mounting part 1112 between the containing groove 11102 and the connecting groove 11103 can be provided with a through groove, so as to communicate the containing groove 11102 and the connecting groove 11103, so that the electrical connection between the electrical connecting part 500 and the first electronic assembly 300 can also extend to the connecting groove 11103 through the containing groove 11102, and be electrically connected with the second electronic assembly 400 on the supporting leg 120. In the embodiment, the number of the mounting part 1112 can be two, and the two mounting parts 1112 are respectively a first mounting part 11121 and a second mounting part 11122. The first mounting part 11121 can be located at one end of the main body part 1111, and the second mounting part 11122 can be located at the other opposite end of the main body part 1111, and the first mounting part 11121 and the second mounting part 11122 can also be symmetrically arranged. The wiring groove 11101 can be in communication with the containing groove 11102 of the first mounting part 11121 and the containing groove 11102 of the second mounting part 11122 respectively, so that the electrical connecting part 500 can be electrically connected with the two first electronic assemblies 300 through the wiring groove 11101.

[0059] The frame body 112 can be connected with the main body part 1111 and the mounting part 1112 respectively, and the three can jointly form the bearing surface 1101 and the annular convex edge 1102. As shown in FIG. 5 and FIG. 7As shown, the number of frames 110 can be two, and the two frames 112 are respectively a first frame 1121 and a second frame 1122. The first frame 1121 and the second frame 1122 can be arranged on the same side of the main body 1111, and the first frame 1121 and the second frame 1122 can also be oppositely arranged. One end of the first frame 1121 can be connected with the circumferential side of the main body 1111, the other end can be connected with the first mounting portion 11121, and the three can jointly form a bearing surface 1101 and an annular protrusion 1102. One end of the second frame 1122 can also be connected with the circumferential side of the main body 1111, and the other end can be connected with the second mounting portion 11122, and the three can jointly form another bearing surface 1101 and another annular protrusion 1102. In this way, the two frames 112 can cooperate with the cross beam 111 to mount two optical lenses 200. At the same time, the side of the first frame 1121 close to the second frame 1122 can be provided with a groove 11201, and the side of the second frame 1122 close to the first frame 1121 can also be provided with a groove 11201. The groove 11201 can be used to mount the nose pad assembly 114 to realize the connection between the frame 112 and the nose pad assembly 114. In the embodiment, the first frame 1121 and the second frame 1122 can also be symmetrically arranged to adapt to the eyes of the user. In some embodiments, the number of frames 112 can also be one, so that the frame 110 can only mount one optical lens 200. At the same time, the shape of the frame 112 can not be limited to the "C" shape, as long as the frame 112 can jointly form a bearing surface 1101 with the cross beam 111 to mount the optical lens 200. All directional indications (such as up, down, left, right, front, back, etc.) in the embodiments of the present application are only used to explain the relative positional relationship, movement condition, etc. between components in a certain specific posture (as shown in the drawings), and if the specific posture changes, the directional indications also change accordingly.

[0060] Please combine FIG. 5 Refer to FIG. 9 to FIG. 11 , FIG. 9 is FIG. 4 the partial cross-sectional structure diagram of the frame 110 along IV-IV in FIG. 1, FIG. 10 is FIG. 9 the structure diagram of the shielding piece 113 in FIG. 1, FIG. 11 is FIG. 4 the structure diagram of the nose pad assembly 114 in FIG. 1.

[0061] Since the wire slot 11101 is arranged on the side of the main body portion 1111 on the bearing surface 1101, and the accommodation slot 11102 is also arranged on the side of the mounting portion 1112 on the bearing surface 1101, in order to facilitate the assembly of the optical lens 200, and avoid the user seeing the wire slot 11101 and the accommodation slot 11102 through the optical lens 200, the crossbeam 111 can further be provided with a shielding member 113 to shield the wire slot 11101 and the accommodation slot 11102. As shown in FIG. 5 and FIG. 9 to FIG. 10 The shielding member 113 can be arranged on the side of the main body portion 1111 and the mounting portion 1112 on the bearing surface 1101 to shield the wire slot 11101 and the accommodation slot 11102. At the same time, in order to reduce the stacking thickness of the crossbeam 111 and the shielding member 113, the shielding member 113 can also be arranged in the wire slot 11101 and the accommodation slot 11102 to absorb the thickness of the shielding member 113 by the wire slot 11101 and the accommodation slot 11102. In addition, since the area of the main body portion 1111 corresponding to the user's nose bridge does not need to install the optical lens 200, the thickness of the area between the two frame bodies 112 of the main body portion 1111 is thinner, and the depth of the wire slot 11101 opened is also shallower. In order to improve the assembly convenience and firmness, the shielding member 113 can be arranged on the wire slot 11101 of the area of the main body portion 1111 where the optical lens 200 is not installed, and assembled with the main body portion 1111.

[0062] The shielding piece 113 can include a first shielding portion 1131 and a second shielding portion 1132. The first shielding portion 1131 can also be in a strip shape, and the second shielding portion 1132 can be arranged at opposite ends of the first shielding portion 1131. The first shielding portion 1131 can be used to shield the wiring groove 11101, and the second shielding portion 1132 can be used to shield the accommodating groove 11102. Further, the first shielding portion 1131 can be arranged in the wiring groove 11101, and the shape of the first shielding portion 1131 can be matched with the wiring groove 11101 to fill the opening formed by the wiring groove 11101 on the main body portion 1111. That is, the first shielding portion 1131 can be arranged flush with the bearing surface 1101, so that after the optical lens 200 is installed with the main body portion 1111, the first shielding portion 1131 can support the optical lens 200 and improve the structural strength of the optical lens 200. At the same time, since the main body portion 1111 is provided with the wiring groove 11101, the area where the annular convex edge 1102 is located in the wiring groove 11101 will have a gap, so part of the area of the first shielding portion 1131 can also be arranged to protrude from the wiring groove 11101 to fill the gap where the annular convex edge 1102 is located in the wiring groove 11101. That is, part of the area of the first shielding portion 1131 can be arranged to protrude from the wiring groove 11101 to form the annular convex edge 1102 together with the cross beam 111 and the frame 112 to realize the positioning and installation of the optical lens 200. In addition, the bottom wall of the wiring groove 11101 can also be provided with a step 11104, which can be used to support the first shielding portion 1131, so that the electrical connecting piece 500 can be arranged in a spaced manner with the first shielding portion 1131, avoiding interference between the first shielding portion 1131 and the electrical connecting piece 500 during assembly, which can cause damage to the electrical connecting piece 500.

[0063] The second shielding part 1132 can be arranged at opposite ends of the first shielding part 1131, that is, the number of the second shielding part 1132 is two, to match the number of the mounting part 1112. The second shielding part 1132 can be arranged in the accommodating groove 11102, and the shape of the second shielding part 1132 can be matched with the accommodating groove 11102 to fill the opening formed by the mounting part 1112 in the accommodating groove 11102. That is, the second shielding part 1132 can be arranged flush with the bearing surface 1101, so that after the optical lens 200 is mounted with the mounting part 1112, the second shielding part 1132 can support the optical lens 200 to improve the structural strength of the optical lens 200. At the same time, in order to facilitate the first electronic assembly 300 to cooperate with the optical lens 200 to realize the function of virtual reality or augmented reality, the second shielding part 1132 is also provided with a gap 11105 to connect the optical lens 200 and the first electronic assembly 300 in the accommodating groove 11102, so that the first electronic assembly 300 can cooperate with the optical lens 200 through the gap 11105. In this embodiment, the first shielding part 1131 and the second shielding part 1132 can be an integral structure, and the material of the shielding part 113 and the material of the cross beam 111 and the frame 112 can be the same to improve the consistency of the frame 110. In some embodiments, in addition to the function of virtual reality or augmented reality, the first electronic assembly 300 can also realize other corresponding functions through the gap 11105. Of course, with the different functions of the first electronic assembly 300, the second shielding part 1132 can completely shield the accommodating groove 11102 without the gap 11105 to improve the sealing performance of the frame 110.

[0064] The nose pad assembly 114 can be connected with the frame 112, which can be used to contact the nose bridge of the user to cooperate with the support leg 120 to realize the wearing of the head-mounted device 10. As shown in FIG. 1, the nose pad assembly 114 can be arranged on the bearing surface 1101, and the nose pad assembly 114 can be arranged on the bearing surface 1101 to contact the nose bridge of the user to realize the wearing of the head-mounted device 10. FIG. 5 and FIG. 11As shown, the nose pad assembly 114 may include a support frame 1141 and a nose pad 1142. The support frame 1141 can be connected to the frame 112, and the nose pad 1142 can be connected to the support frame 1141. The support frame 1141 supports the nose pad 1142 and provides it with a certain degree of toughness and elasticity, allowing the nose pad 1142 to move relative to the frame 112 using the elasticity of the support frame 1141. With this configuration, when a user wears the head-mounted device 10, the support frame 1141 can undergo corresponding elastic deformation according to the shape of the user's nose bridge, allowing the nose pad 1142 to move relative to the support frame 1141, thus achieving adjustability of the nose pad 1142 and improving the fit between the nose pad 1142 and the user's nose bridge. In this embodiment, the support frame 1141 can be made of metal, giving it a certain degree of rigidity and elastic deformation capability to achieve adjustability of the nose pad 1142. The nose pad 1142 can be made of flexible, skin-friendly materials such as plastic, rubber, and silicone to improve the user's comfort when wearing the head-mounted device 10.

[0065] The support frame 1141 may be provided with a protrusion 11401, which may be disposed within a groove 11201 and interference-fitted with the frame 112 to achieve connection between the support frame 1141 and the frame 112. The nose pad 1142 may resemble an "I" shape in appearance. The support frame 1141 may be fitted onto the nose pad 1142, and the two may be integrally formed by in-mold injection molding to achieve connection between the support frame 1141 and the nose pad 1142. In this embodiment, there are two support frames 1141 and two nose pads 1142 to match the two frames 112. For example, one support frame 1141 may be disposed on the first frame 1121, and the other support frame 1141 may be disposed on the second frame 1122, and the two support frames 1141 may also be symmetrically arranged. Correspondingly, the two nose pads 1142 can be respectively disposed on the two support frames 1141, and the two nose pads 1142 can also be symmetrically disposed to fit the user's nose bridge. In some embodiments, the support frame 1141 can also be integrally formed with the frame 112 by in-mold injection molding to improve the connection between the support frame 1141 and the frame 112.

[0066] Please see FIG. 12 to FIG. 14 , FIG. 12 yes FIG. 10 Another structural diagram of the nose bridge component 114. FIG. 13 yes FIG. 12 Exploded structural diagram of the middle support frame 1141 FIG. 14 yes FIG. 12 A schematic diagram of the structure of the nasal support pad 1142.

[0067] To further enhance the adjustability of the nose pad 1142 to improve the fitting of the wearable device 10 on the user, the support frame 1141 can also be correspondingly configured to provide a larger range of movement and adjustment angle for the nose pad 1142. As shown in FIG. 12 to FIG. 13 The support frame 1141 can include a rigid portion 11411 and an elastic portion 11412 in an integrated structure. The rigid portion 11411 can be connected with the frame 112 to realize the assembly of the support frame 1141 and the frame 112. The elastic portion 11412 can be arranged on the rigid portion 11411 and connected with the nose pad 1142, and the elastic portion 11412 can have a strong deformation capability to expand the range and angle of movement of the nose pad 1142 relative to the rigid portion 11411, thereby improving the fitting of the wearable device 10 on the user. In this embodiment, the rigid portion 11411 can be made of metal, the elastic portion 11412 can be made of soft rubber, and the rigid portion 11411 and the elastic portion 11412 can be integrally formed by in-mold injection.

[0068] The rigid portion 11411 can be connected with the frame 112 and provide a certain toughness and elasticity for the support frame 1141. As shown in FIG. 12 to FIG. 13 The rigid portion 11411 can be arranged in a ring shape and surround the accommodation space 11402. The elastic portion 11412 can be arranged around the rigid portion 11411, and the elastic portion 11412 can also fill the accommodation space 11402 and form a sheet structure to facilitate the deformation of the elastic portion 11412 relative to the rigid portion 11411, thereby providing a larger movement space and angle for the nose pad 1142. In this embodiment, the rigid portion 11411 can also be provided with a protrusion 11401, and the protrusion 11401 can protrude from the elastic portion 11412, so that the rigid portion 11411 can be matched with the groove 11201 on the frame 112 through the protrusion 11401 to realize the assembly of the support frame 1141 and the frame 112. In some embodiments, the rigid portion 11411 can also be integrally formed with the frame 112 by in-mold injection to improve the assembly firmness of the support frame 1141 and the frame 112.

[0069] Further, the area of the accommodation space 11402 where the elastic portion 11412 is arranged can also be provided with a first connecting portion 11403, and the first connecting portion 11403 can be used to detachably connect with the nose pad 1142. As shown in FIG. 12 to FIG. 13As shown, the first connecting portion 11403 can be a part of the region where the elastic portion 11412 is arranged in the accommodating space 11402, and the first connecting portion 11403 can be provided with a through slot 11404. The nose pad 1142 can be arranged in the through slot 11404 and is in interference fit with the first connecting portion 11403 to realize the connection of the nose pad 1142 and the elastic portion 11412. Since the material of the first connecting portion 11403 is also soft glue, the first connecting portion 11403 can also be deformed to provide a space for the nose pad 1142 to exit the through slot 11404, thereby realizing the detachable connection of the elastic portion 11412 and the nose pad 1142.

[0070] Correspondingly, in order to adapt to the number of the frame body 112, the number of the support frame 1141 is also two, and the elastic portion 11412 on one support frame 1141 can be connected with the elastic portion 11412 on the other support frame 1141, so that the elastic portions 11412 on the two support frames 1141 can form an integral. For example, the nose pad assembly 114 is also provided with a connecting piece 1143, one end of which can be connected with the elastic portion 11412 on one support frame 1141, and the other end can be connected with the elastic portion 11412 on the other support frame 1141. In this way, the two support frames 1141 can be connected together by the connecting piece 1143 to assemble with the frame body 112, thereby improving the assembly convenience. In this embodiment, the connecting piece 1143 and the elastic portions 11412 on the two support frames 1141 can be an integral structure, and the three can be integrally formed by injection molding process, so that the connecting piece 1143 also has a deformation capability to avoid the rigid connecting piece 1143 pulling the support frame 1141 during the deformation of the support frame 1141, and to ensure the normal deformation of the support frame 1141. At the same time, the connecting piece 1143 can also be arranged in an arch shape towards the main body portion 1111 to adapt to the shape of the user's nose bridge. Of course, in some embodiments, the nose pad assembly 114 can also not be provided with the connecting piece 1143 to connect the two support frames 1141, so that the two support frames 1141 can be independently assembled with the frame body 112.

[0071] The nose pad 1142 can be in contact with the nose bridge of the user, and the nose pad 1142 can move relative to the support frame 1141 through the elastic portion 11412 to realize the multi-angle adjustment of the nose pad 1142. As shown in FIG. 6, the nose pad 1142 can be in contact with the nose bridge of the user, and the nose pad 1142 can be in contact with the nose bridge of the user. FIG. 12 and FIG. 14As shown, the nose pad 1142 can be provided with a flexible portion 11421 and a first fitting portion 11405 in an integrated structure. The flexible portion 11421 can be used to contact the user's nose bridge to reduce the pressure of the head-mounted device 10 acting on the user's nose bridge and improve the user's wearing comfort. The first fitting portion 11405 can be provided on one side of the flexible portion 11421 and can be detachably connected with the first connecting portion 11403. For example, the first fitting portion 11405 can be similar in shape to a "T" shaped structure, and the first fitting portion 11405 can be arranged in the through slot 11404 and be in interference fit with the first connecting portion 11403, so as to realize the connection of the nose pad 1142 and the elastic portion 11412. At the same time, the first fitting portion 11405 arranged in the end of the first connecting portion 11403 can also be clamped with the side of the first connecting portion 11403 away from the flexible portion 11421, so as to further enhance the connection firmness of the nose pad 1142 and the elastic portion 11412.

[0072] Correspondingly, when it is necessary to detach the nose pad 1142 and the support frame 1141, an external force can be used to deform the first connecting portion 11403, so as to provide a space for the "T" shaped end of the first fitting portion 11405 to exit from the through slot 1103, so as to realize the detachment of the nose pad 1142 and the elastic portion 11412. In this way, the elastic portion 11412 can be used to further expand the activity range and angle of the nose pad 1142 and enhance the adjustability of the nose pad 1142, and the detachable connection of the elastic portion 11412 and the nose pad 1142 can be used to replace the nose pad 1142, so that the user can select a corresponding nose pad 1142 according to the own needs to wear, and improve the adaptability of the user wearing the head-mounted device 10. In this embodiment, the flexible portion 11421 and the first fitting portion 11405 can be made of hard rubber, so that the nose pad 1142 can have a certain flexibility while maintaining a certain rigidity and being assembled with the elastic portion 11412. In addition, the number of nose pads 1142 can be two, and the two nose pads 1142 can be respectively arranged on the two support frames 1141.

[0073] In some embodiments, the first connecting portion 11403 and the first matching portion 11405 can also be detachably connected by other means such as magnetic attraction or buckling. For example, the first connecting portion 11403 can be a magnet embedded in the elastic portion 11412, and the first matching portion 11405 can be a metal embedded in the flexible portion 11421, so that they can be detachably connected by magnetic attraction. Of course, the first connecting portion 11403 can also be a metal, and the first matching portion 11405 can be a magnet. In addition, in some embodiments, since the first matching portion 11405 is hard rubber and the elastic portion 11412 is soft rubber, in order to improve the connection firmness, the two can also be integrally formed by soft and hard rubber injection molding, so that the first matching portion 11405 and the elastic portion 11412 can be an integrated structure, thereby ensuring the assembly firmness of the support frame 1141 and the nose pad 1142.

[0074] Please refer to FIG. 15 to FIG. 18 , FIG. 15 is FIG. 10 another structural schematic view of the nose pad assembly 114, FIG. 16 is FIG. 15 a structural schematic view of the support frame 1141, FIG. 17 is FIG. 15 a structural schematic view of the nose pad 1142, FIG. 18 is FIG. 15 a structural schematic view of the elastic member 1144.

[0075] In addition to enhancing the adjustability of the nose pad 1142 by providing the elastic portion 11412 composed of soft rubber on the support frame 1141, other ways can also be used to expand the range and angle of movement of the nose pad 1142 relative to the support frame 1141. As shown in FIG. 15 , the nose pad assembly 114 in the present embodiment can also be provided with an elastic member 1144. One end of the elastic member 1144 can be detachably connected with the support frame 1141, and the other end can also be detachably connected with the nose pad 1142, and the elastic member 1144 can also have a deformation capability, so that the nose pad 1142 not only expands the range and angle of movement of the nose pad 1142 by using the deformation of the elastic member 1144, but also can be replaced by using the detachability of the elastic member 1144, so as to facilitate the user to select the corresponding nose pad 1142 according to their own needs.

[0076] Specifically, since the nose pad 1142 is connected with the support frame 1141 by an independent elastic member 1144, the support frame 1141 can only be provided with a rigid portion 11411 for providing a certain supporting force for the nose pad 1142. As shown in FIG. 15 to FIG. 16As shown, the rigid portion 11411 can also be annularly arranged to improve the structural strength of the rigid portion 11411, and the rigid portion 11411 can also be made of metal. Meanwhile, the rigid portion 11411 can also be provided with a protrusion 11401, which can also be arranged in the groove 11201 of the frame 112 and be in interference fit with the frame 112, thereby realizing the assembly of the support frame 1141 and the frame 112. Of course, since the independent elastic member 1144 is adopted to realize the movement of the nose pad 1142 relative to the support frame 1141, the shape of the rigid portion 11411 can not be limited to annular, and the specific shape can be set according to the requirements. In addition, in order to improve the connection firmness, the rigid portion 11411 can also be integrally formed with the frame 112 by in-mold injection as in the above embodiment.

[0077] Since the support frame 1141 is also detachably connected with the elastic member 1144, the support frame 1141 can also be provided with a second matching portion 11406 matched with the elastic member 1144. The second matching portion 11406 can be connected with the rigid portion 11411, and the second matching portion 11406 can be arranged in the space formed around the rigid portion 11411. Among them, the second matching portion 11406 can be a metal that can be attracted by magnetic force, and one end of the elastic member 1144 can have a magnetic force, so that the second matching portion 11406 and the elastic member 1144 can be detachably connected by magnetic attraction. Meanwhile, in order to avoid the second matching portion 11406 and the elastic member 1144 from being dislocated by external force after being magnetically attached, the second matching portion 11406 can also be provided with a positioning groove 11407, and the shape of the positioning groove 11407 can be matched with the shape of the elastic member 1144. One end of the elastic member 1144 can be arranged in the positioning groove 11407 and magnetically connected with the second matching portion 11406, so that the inner side wall of the positioning groove 11407 can limit the position of the elastic member 1144, avoiding the elastic member 1144 and the second matching portion 11406 from being dislocated by external force. In this embodiment, the second matching portion 11406 and the rigid portion 11411 can be an integral structure, that is, the rigid portion 11411 can also be a metal that can be attracted by magnetic force. Of course, the material of the second matching portion 11406 can not be limited to metal, as long as the second matching portion 11406 can be attracted by magnetic force to realize the magnetic attraction connection between the second matching portion 11406 and the elastic member 1144. In this embodiment, the number of support frames 1141 can still be two, and the two support frames 1141 can be arranged on the first frame 1121 and the second frame 1122 respectively.

[0078] In some embodiments, the second matching part 11406 can also be a magnet with magnetic force, and one end of the elastic member 1144 can be metal that can be attracted by magnetic force, so that the two still achieve detachable connection by magnetic attraction. Alternatively, the second matching part 11406 can be a magnet with magnetic force, and one end of the elastic member 1144 can also be a magnet with magnetic force, and the magnetic properties of the two are different, so that the two still achieve detachable connection by magnetic attraction. In addition, in some embodiments, the positioning groove 11407 can also be arranged on the elastic member 1144, and the second matching part 11406 can be provided with a protrusion matched with the positioning groove 11407. After the two are magnetically attracted and connected, the positioning groove 11407 can limit the position of the two to avoid dislocation of the two under the action of external force.

[0079] The nose pad 1142 can still be provided with a flexible part 11421 and a first matching part 11405, and the flexible part 11421 can be used to contact the user's nose bridge to reduce the pressure of the head-mounted device 10 on the user's nose bridge and improve the user's wearing comfort, and the first matching part 11405 can be used to detachably connect with the elastic member 1144. As shown in FIG. 15 and FIG. 17 The flexible part 11421 can wrap the first matching part 11405, and the first matching part 11405 can be a magnetic attraction piece with magnetic force, and the other end of the elastic member 1144 can be metal that can be attracted by magnetic force, so that the first matching part 11405 and the elastic member 1144 can be detachably connected by magnetic attraction. Accordingly, in order to avoid the first matching part 11405 and the elastic member 1144 from being dislocated under the action of external force after being magnetically attracted and attached, the flexible part 11421 can also be provided with an opening 11408 communicating with the first matching part 11405, and the shape of the opening 11408 can be matched with the shape of the elastic member 1144. The elastic member 1144 can be arranged in the opening 11408 and magnetically attracted and connected with the first matching part 11405, so that the flexible part 11421 can limit the position of the elastic member 1144 to avoid the elastic member 1144 from being deviated under the action of external force. In this embodiment, the first matching part 11405 and the flexible part 11421 can be an integral structure, and the two can be integrally formed by in-mold injection. Of course, the material of the other end of the elastic member 1144 can not be limited to metal, as long as the other end of the elastic member 1144 can be attracted by magnetic force to achieve magnetic attraction connection of the first matching part 11405 and the elastic member 1144.

[0080] Correspondingly, in order to adapt to the number of support frames 1141, the number of nose pad 1142 in the embodiment is also two, and the flexible part 11421 on one nose pad 1142 can be connected with another flexible part 11421 on another nose pad 1142, so that the two nose pads 1142 can form a whole. For example, the nose pad assembly 114 in the embodiment can also be provided with a connecting piece 1143, and one end of the connecting piece 1143 can be connected with the flexible part 11421 of one nose pad 1142, and the other end can be connected with the flexible part 11421 of another nose pad 1142. In this way, the two nose pads 1142 can be connected together by the connecting piece 1143 and assembled with the frame 112, thereby improving the assembly convenience. In some embodiments, the connecting piece 1143 connects the two nose pads 1142, and can be configured to be deformable, so that the nose pad 1142 can move relative to the support frame 1141. In the embodiment, the connecting piece 1143 and the flexible part 11421 on the two nose pads 1142 can be a whole structure, so that the connecting piece 1143 can also have a certain deformation ability, so as to avoid that the rigid connecting piece 1143 pulls the flexible part 11421 during the movement of the flexible part 11421 relative to the support frame 1141, and ensure the normal deformation movement of the flexible part 11421. At the same time, the connecting piece 1143 can also be arranged in an arch shape towards the main body part 1111, so as to adapt to the shape of the user's nose bridge. Of course, in some embodiments, the nose pad assembly 114 can also not be provided with the connecting piece 1143 to connect the two nose pads 1142, so that the two nose pads 1142 can be independently assembled with the elastic piece 1144 on the support frame 1141.

[0081] In some embodiments, the first matching part 11405 can also be a metal that can be magnetically attracted, and the other end of the elastic piece 1144 can be a magnet with magnetic force, so that the two can still be detachably connected by magnetic attraction. Alternatively, the first matching part 11405 can be a magnet with magnetic force, and the other end of the elastic piece 1144 can also be a magnet with magnetic force, and the magnetic properties of the two are different, so that the two can still be detachably connected by magnetic attraction. In addition, in some embodiments, the first matching part 11405 can be arranged protruding from the flexible part 11421, and the other end of the elastic piece 1144 can be provided with a corresponding groove, so that the first matching part 11405 can be arranged in the groove and magnetically connected with the elastic piece 1144, to avoid dislocation of the two due to external force.

[0082] The elastic piece 1144 can be detachably connected with the support frame 1141 and the nose pad 1142 respectively, and the elastic piece 1144 can also be used to realize the movement of the nose pad 1142 relative to the support frame 1141. As shown in FIG. 11B, the elastic piece 1144 can be arranged in an arch shape towards the main body part 1111, so as to adapt to the shape of the user's nose bridge. FIG. 15 to FIG. 18As shown, the elastic member 1144 can be provided with a second connecting portion 11409 and a deformation portion 11441 in addition to the first connecting portion 11403 as in the above embodiment. The first connecting portion 11403 can be arranged at one end of the deformation portion 11441, and can be used to detachably connect with the first cooperating portion 11405. The second connecting portion 11409 can be arranged at the other opposite end of the deformation portion 11441, and can be used to detachably connect with the second cooperating portion 11406. The first connecting portion 11403 can be a metal capable of being attracted by magnetic force, and can be arranged in the opening 11408 to be magnetically connected with the first cooperating portion 11405, so as to realize detachable connection of the elastic member 1144 and the nose pad 1142. The second connecting portion 11409 can be a magnet with magnetic force, and can be arranged in the positioning groove 11407 to be magnetically connected with the second cooperating portion 11406, so as to realize detachable connection of the elastic member 1144 and the support frame 1141. In some embodiments, the first connecting portion 11403 can also be a magnet with magnetic force, and the first cooperating portion 11405 can be a metal capable of being attracted by magnetic force. The second connecting portion 11409 can also be a metal capable of being attracted by magnetic force, and the second cooperating portion 11406 can be a magnet with magnetic force.

[0083] The deformation portion 11441 can be a special-shaped spring, i.e., an irregular spring, to provide the elastic member 1144 with deformation capability, so that the nose pad 1142 can move relative to the support frame 1141 by deformation of the elastic member 1144, thereby expanding the moving range and angle of the nose pad, and improving the fitting degree of the user wearing the head-mounted device 10. In this embodiment, the cross-sectional shape of the deformation portion 11441 can be square, and the winding radius of the opposite ends of the deformation portion 11441 can be smaller than the winding radius of the middle region, so that the deformation portion 11441 can not only be compressed in the length direction, but also be bent by the difference in winding radius between the opposite ends and the middle region, thereby expanding the moving range and angle of the nose pad 1142 relative to the support frame 1141, enhancing the adjustability of the nose pad 1142, and improving the fitting degree of the user wearing the head-mounted device 10.

[0084] Correspondingly, in order to adapt to the number of support frames 1141 and nose pad 1142, the number of elastic members 1144 in the embodiment is also two, and the two elastic members 1144 are respectively arranged on the two support frames 1141 to respectively connect the two nose pads 1142. In this way, by arranging the elastic members 1144 respectively connecting the support frames 1141 and the nose pads 1142, the nose pads 1142 can move relative to the support frames 1141 by the deformation of the elastic members 1144, which not only realizes the adjustability of the nose pads 1142, but also expands the movement range and angle of the nose pads 1142. At the same time, by arranging the first connecting part 11403 at one end of the elastic member 1144 and the second connecting part 11409 at the other end, and arranging the first matching part 11405 magnetically connected with the first connecting part 11403 on the nose pad 1142, and the second matching part 11406 magnetically connected with the second connecting part 11409 on the support frame 1141, the detachable connection of the elastic member 1144 with the support frame 1141 and the nose pad 1142 can also be realized, so as to facilitate the user to replace the nose pad 1142.

[0085] In some embodiments, a plurality of elastic members 1144 can also be arranged between the support frame 1141 and the nose pad 1142, and the spring shape of the deformation part 11441 can be square to improve the uniformity of the elastic force of the elastic member 1144. For example, three elastic members 1144 can be arranged between the support frame 1141 and the nose pad 1142, and three second matching parts 11406 can be arranged on the support frame 1141, and three first matching parts 11405 can be arranged on the nose pad 1142 to realize the assembly of the three elastic members 1144 with the support frame 1141 and the nose pad 1142. In some embodiments, the number of elastic members 1144 between the support frame 1141 and the nose pad 1142 can also not be limited to three, and the number can also be two, four or more. At the same time, the cross-sectional shape of the deformation part 11441 can also not be limited to square, and the specific structure and shape thereof can also be arranged according to the actual required stress direction and stress mode.

[0086] In order to further improve the appearance delicacy of the head-mounted device 10, the frame 110 can also be provided with a first decorative member 115 and a second decorative member 116. As shown in FIG. 1, the first decorative member 115 is arranged on the support frame 1141, and the second decorative member 116 is arranged on the nose pad 1142. FIG. 4 and FIG. 9As shown, the first decoration 115 can be disposed on the annular protrusion 1102 formed by the main body 1111 and the frame 112, and the first decoration 115 can be disposed around the optical lens 200 to decorate the optical lens 200 and improve the appearance expressiveness of the head-mounted device 10. The second decoration 116 can be disposed on the side of the first decoration 115 away from the optical lens 200, and the second decoration 116 can be disposed on the mounting portion 1112 and cover the accommodation groove 11102 to shield the partial area of the optical lens 200 in the accommodation groove 11102 and decorate the optical lens 200. In this way, the appearance delicacy of the head-mounted device 10 can be improved by the first decoration 115 and the second decoration 116. In some embodiments, the arrangement manner and shape of the first decoration 115 and the second decoration 116 can also be adjusted and arranged according to requirements, as long as the first decoration 115 and the second decoration 116 can decorate the frame 110 to improve the appearance expressiveness of the head-mounted device 10.

[0087] Please refer to FIG. 19 to FIG. 22 , FIG. 19 is FIG. 2 a structural schematic view of the wearing support 100, FIG. 20 is FIG. 19 an exploded structural schematic view of the support leg 120, FIG. 21 is FIG. 19 a partial cross-sectional structural schematic view of the wearing support 100 along VII-VII, FIG. 22 is FIG. 19 a structural schematic view of the rotating shaft assembly 130.

[0088] The support leg 120 can be disposed at opposite ends of the cross beam 111, which can be used in cooperation with the nose pad assembly 114 to realize the wearing of the head-mounted device 10. As shown, FIG. 19 to FIG. 20 the support leg 120 can include a support leg main body 121 and a support leg side cover 122. The support leg main body 121 can be connected with the rotating shaft assembly 130 and can rotate relative to the rotating shaft assembly 130 to realize the rotating connection of the support leg 120 and the frame 110. The support leg side cover 122 can be collectively formed with the support leg main body 121 to form a receiving space 1201 and a wiring channel 1202, and the receiving space 1201 can be used to install the second electronic component 400, and the wiring channel 1202 can communicate the receiving space 1201 and the connecting groove 11103, so that the electrical connector 500 can extend into the receiving space 1201 through the wiring channel 1202 and be electrically connected with the second electronic component 400.

[0089] Specifically, the leg body 121 may include a bottom wall 1211 and a side wall 1212, and the side wall 1212 may be arranged around the edge of the bottom wall 1211, forming an open structure together with the bottom wall 1211. The leg side cover 122 may be provided on the above-mentioned open structure, forming a receiving space 1201 together with the leg body 121 for installing the second electronic component 400. In this embodiment, a sensing area 12111 may be provided on the side of the bottom wall 1211 away from the receiving space 1201, and the sensing area 12111 may be used to cooperate with the second electronic component 400 to realize the touch function of the head-mounted device 10, so that the user can control the working state of the head-mounted device 10 by clicking, long-pressing or sliding on the sensing area 12111. The side wall 1212 facing away from the receiving space 1201 may be provided with external interfaces such as audio interfaces, charging interfaces, and USB interfaces, allowing users to connect to the head-mounted device 10 via these external interfaces and perform corresponding functions. Of course, in addition to the side wall 1212, the bottom wall 1211 may also be provided with external interfaces; this embodiment does not limit this.

[0090] Furthermore, the support leg body 121 can be elongated, and one end of the support leg body 121 can also be provided with a rotating part 1213. For example... FIG. 20 to FIG. 21 As shown, the rotating part 1213 can be disposed on the side of the side wall 1212 opposite to the receiving space 1201, and can be sleeved on the rotating shaft assembly 130, so that the leg body 121 can rotate relative to the rotating shaft assembly 130. Simultaneously, the rotating part 1213 can also form a wiring channel 1202 together with the leg side cover 122. For example, the leg side cover 122 can be provided with an extension 1221, and the extension 1221 can be disposed on one side of the rotating part 1213, forming the wiring channel 1202 together with the rotating part 1213. Accordingly, in order to achieve communication between the wiring channel 1202 and the receiving space 1201, the side wall 1212 with the rotating part 1213 can be formed with a notch, allowing the wiring channel 1202 to communicate with the receiving space 1201 through the notch. In this embodiment, the number of legs 120 can be two, and the two legs 120 are the first leg 123 and the second leg 124. The first leg 123 can be rotatably connected to the first mounting part 11121 via a pivot assembly 130, and the second leg 124 can be rotatably connected to the second mounting part 11122 via another pivot assembly 130.

[0091] Furthermore, to enhance the refinement of the support leg 120, the support bracket 100 may also be equipped with a third decorative element 140 for decorating the support leg 120. For example... FIG. 19 to FIG. 20As shown, the end of the leg body 121 away from the rotating shaft assembly 130, i.e. the end of the leg body 121 away from the rotating part 1213 can be provided with an arc-shaped part 1214. One end of the third decorative piece 140 can be connected to one end of the arc-shaped part 1214, and the other opposite end can be connected to the other end of the arc-shaped part 1214, and the two can jointly enclose the decorative groove 1203. For example, the region of the side wall 1212 at one end of the arc-shaped part 1214 can be provided with a notch, and the region at the other end of the arc-shaped part 1214 can also be provided with a notch, so that the opposite ends of the third decorative piece 140 can be inserted into the leg body 121 through the aforementioned two notches. The leg side cover 122 can be covered on the aforementioned two notches, so that the third decorative piece 140 can be clamped in the middle by the leg body 121 and the leg side cover 122, realizing the assembly of the third decorative piece 140 and the leg 120. In this way, not only can the appearance expressiveness of the head-mounted device 10 be improved by using the third decorative piece 140, but also the structural strength of the leg body 121 at the arc-shaped part 1214 can be enhanced by using the third decorative piece 140.

[0092] The rotating shaft assembly 130 can be connected with the frame 110 and the leg 120 respectively, and can be used to realize the rotating connection of the leg 120 and the frame 110. FIG. 21 to FIG. 22 As shown, the rotating shaft assembly 130 can include a fixing frame 131 and a rotating shaft 132. The fixing frame 131 can be arranged in the connecting groove 11103 and fixedly connected with the mounting part 1112. The rotating shaft 132 can be arranged on the fixing frame 131. The rotating part 1213 can be arranged in the connecting groove 11103 and sleeved on the rotating shaft 132, so that the leg 120 can be rotated relative to the mounting part 1112 through the rotating shaft 132. At the same time, since the rotating part 1213 is arranged in the connecting groove 11103, the wiring channel 1202 jointly formed by the rotating part 1213 and the extending part 1221 can also be in communication with the connecting groove 11103, so that the electrical connecting piece 500 can extend into the accommodation space 1201 through the accommodating groove 11102, the connecting groove 11103 and the wiring channel 1202, and be electrically connected with the second electronic assembly 400. In some embodiments, the rotating shaft assembly 130 can only be provided with the rotating shaft 132, and by arranging the rotating part 1213 in the connecting groove 11103, the rotating shaft 132 can also realize the rotating connection of the frame 110 and the leg 120.

[0093] The fixing frame 131 can be provided with a top surface 1311, a bottom surface 1312 and a side surface 1313. The top surface 1311 and the bottom surface 1312 can be oppositely arranged, and the side surface 1313 can be respectively connected with the top surface 1311 and the bottom surface 1312 and perpendicularly arranged with the top surface 1311 and the bottom surface 1312. Among them, the top surface 1311, the bottom surface 1312 and the side surface 1313 can be used for dispensing, so that the fixing frame 131 can be adhesively fixed with the inner wall of the connecting groove 11103. In this way, during assembly, the rotating part 1213 can be assembled to the fixing frame 131 first, and then the rotating shaft 132 is arranged in the fixing frame 131 and the rotating part 1213, so that the supporting leg 120 can rotate relative to the fixing frame 131, and finally the fixing frame 131 with the rotating shaft 132 and the rotating part 1213 is arranged in the connecting groove 11103 and fixedly connected with the mounting part 1112, thereby realizing the assembly of the frame 110, the supporting leg 120 and the rotating shaft assembly 130.

[0094] Further, in order to make the supporting leg 120 have a damping feeling during rotation, the rotating shaft 132 can also be a polygonal prism, so that the outer surface of the rotating shaft 132 can have a plurality of edges, and then during the rotation of the rotating part 1213 relative to the rotating shaft 132, the plurality of edges of the rotating shaft 132 are scraped with the rotating part 1213, thereby bringing a damping feeling to the rotation of the supporting leg 120. At the same time, the outer surface of the rotating shaft 132 can also be provided with a rubber sleeve to further increase the friction between the rotating shaft 132 and the rotating part 1213 during rotation, thereby improving the rotation damping feeling of the supporting leg 120. In this embodiment, the number of rotating shaft assemblies 130 can be two, and one rotating shaft assembly 130 can be arranged in the connecting groove 11103 of the first mounting part 11121, and the other rotating shaft assembly 130 can be arranged in the connecting groove 11103 of the second mounting part 11122, so as to realize the rotation connection of the two supporting legs 120 and the two mounting parts 1112. In the description of the present application, the meaning of "a plurality of" is at least two, for example, two, three, etc., unless otherwise explicitly and specifically limited.

[0095] Please refer to FIG. 23 to FIG. 25 , FIG. 23 is FIG. 2 the connection structure diagram of the frame 110, the optical lens 200 and the electrical connecting piece 500, FIG. 24 is FIG. 23 the partial cross-sectional structure diagram of the frame 110, the optical lens 200 and the electrical connecting piece 500 along XI-XI, FIG. 25 is FIG. 23 the structure diagram of the optical lens 200.

[0096] The optical lens 200 can be arranged on the frame 110, and the optical lens 200 can also cooperate with the first electronic assembly 300 to realize the virtual reality or augmented reality function. As shown inFIG. 23 to FIG. 24 As shown, the optical lens 200 can be arranged on the bearing surface 1101 formed by the crossbeam 111 and the frame 112, and the optical lens 200 can also cover the wiring groove 11101, so that the electrical connector 500 in the wiring groove 11101 can be arranged opposite to the optical lens 200. In this way, the orthogonal projection of the optical lens 200 on the bearing surface 1101 can overlap with the orthogonal projection of the electrical connector 500 on the optical lens 200, so that the optical lens 200 and the electrical connector 500 can share the same mounting area on the main body 1111, so as to reduce the width of the area of the main body 1111 for mounting the optical lens 200 and the electrical connector 500, not only can improve the visual range of the optical lens 200, but also can bring the user a narrow frame visual effect, and improve the appearance performance of the head-mounted device 10. At the same time, the optical lens 200 can also cover the accommodation groove 11102, so that the first electronic component 300 in the accommodation groove 11102 can also be arranged opposite to the optical lens 200. In this way, the first electronic component 300 can cooperate with the optical lens 200 through the gap 11105 formed on the second shielding portion 1132, so as to realize the virtual reality or augmented reality function of the head-mounted device 10.

[0097] The optical lens 200 can be an optical waveguide, specifically a planar grating waveguide such as a diffraction grating waveguide, so that the head-mounted device 10 can present a virtual reality / augmented reality environment through the optical lens 200. FIG. 23 And FIG. 25 As shown, the optical lens 200 can be provided with a light coupling inlet portion 201 and a light coupling outlet portion 202. The light coupling inlet portion 201 can cover the accommodation groove 11102, and the first electronic component 300 can be arranged opposite to the light coupling inlet portion 201 through the gap 11105. The light coupling outlet portion 202 can be connected with the light coupling inlet portion 201 and arranged corresponding to the eye of the user. At the same time, the light coupling inlet portion 201 and the light coupling outlet portion 202 connected together can form an optical path, light can be coupled into the optical lens 200 from the light coupling inlet portion 201, transmitted in the optical path, and finally the light will be coupled out of the optical lens 200 at the light coupling outlet portion 202, enter the wearer's eye and form an image on the retina, so as to realize the virtual reality or augmented reality function of the head-mounted device 10.

[0098] In some embodiments, the head-mounted device 10 can also implement other functions than virtual reality or augmented reality as the first electronic component 300 changes its functions. When the head-mounted device 10 needs to implement functions other than virtual reality or augmented reality, the optical lens 200 can be a vision correction lens made of one or more of convex lenses, concave lenses, and other types of lenses (e.g., flat lenses, anti-glare lenses, colored lenses, etc.) or functional films (e.g., anti-reflection films, polarizing films, filtering films, etc.) can also be arranged in the vision correction lens. Of course, the optical lens 200 can also be other functional lenses such as flat lenses, anti-glare lenses, colored lenses, and myopic lenses, etc.

[0099] In other embodiments, the optical lens 200 can also be a photochromic device. For example, the photochromic device can be made of photochromic materials so that the photochromic device can change color after being excited by light of a certain wavelength. The photochromic materials can be made within the scope of the understanding of those skilled in the art using existing technical solutions in the prior art, which will not be described in detail. Alternatively, the optical lens 200 can also be an electrochromic device. For example, the electrochromic device can be made of electrochromic materials. The electrochromic materials can be one of inorganic electrochromic materials and organic electrochromic materials. The inorganic electrochromic material can be tungsten trioxide. The organic electrochromic material can be one of polythiophene and its derivatives, viologens, tetrathiafulvalene, metal phthalocyanine compounds, etc. Of course, the electrochromic materials can be made within the scope of the understanding of those skilled in the art using existing technical solutions in the prior art, which will not be described in detail.

[0100] Further, the number of the optical lens 200 can be two, and the two optical lenses 200 are respectively a first optical lens 210 and a second optical lens 220. The first optical lens 210 can be arranged on a bearing surface 1101 formed by the main body 1111, the first mounting portion 11121, and the first frame 1121, and the second optical lens 220 can be arranged on another bearing surface 1101 formed by the main body 1111, the second mounting portion 11122, and the second frame 1122, and the first optical lens 210 and the second optical lens 220 can also be symmetrically arranged. In this embodiment, the first optical lens 210 can be the aforementioned optical waveguide, and the first optical lens 210 can cooperate with the first electronic component 300 arranged on the first mounting portion 11121 to implement the virtual reality or augmented reality function of the head-mounted device 10. The second optical lens 220 can be the aforementioned general functional lens such as flat lenses, anti-glare lenses, colored lenses, and myopic lenses, etc.

[0101] In some embodiments, the first optical lens 210 and the second optical lens 220 can also be optical waveguides, and only the first electronic assembly 300 disposed opposite to the two optical lenses can have the function of realizing virtual reality or augmented reality of the head-mounted device 10. In addition, in other embodiments, the number of the optical lenses 200 can also be one, and the single optical lens 200 can be an optical waveguide or a common functional lens. Whether the optical lens 200 is an optical waveguide or a common functional lens can be determined according to the required function of the head-mounted device 10, which is not limited in the present embodiment.

[0102] Please refer to FIG. 26 to FIG. 28 , FIG. 26 is FIG. 1 a partial cross-sectional structure diagram of the head-mounted device 10 along IX-IX in FIG. 1, FIG. 27 is FIG. 2 an assembly diagram of the frame 110, the first electronic assembly 300 and the electrical connector 500 in FIG. 1, FIG. 28 is FIG. 27 a connection structure diagram of the charging adapter plate 320, the pressure sensing circuit board 330 and the support 150 in FIG. 1.

[0103] The first electronic assembly 300 can be disposed on the frame 110, and the first electronic assembly 300 can be used to cooperate with the optical lens 200 to realize the function of virtual reality or augmented reality of the head-mounted device 10. As shown in FIG. 26 to FIG. 27 , the first electronic assembly 300 can include an optical machine 310, a charging adapter plate 320 and a pressure sensing circuit board 330. The optical machine 310 can be disposed in the accommodation groove 11102 of the first mounting portion 11121 and disposed opposite to the first optical lens 210, so that the first optical lens 210 can cooperate with the optical machine 310 to realize the function of virtual reality or augmented reality of the head-mounted device 10. The charging adapter plate 320 and the pressure sensing circuit board 330 can be disposed in the accommodation groove 11102 of the second mounting portion 11122, and can be used to realize the functions of power supply adaptation and pressure sensing of the head-mounted device 10. In some embodiments, when the head-mounted device 10 does not need to realize the function of virtual reality or augmented reality, the first electronic assembly 300 can also be provided with electronic devices such as cameras, illuminating lamps and sensors. It can be understood that the first electronic assembly 300 referred to in the present embodiment can include all electronic devices required to be disposed on the frame 110 of the head-mounted device 10, and is not limited to the optical machine 310, the charging adapter plate 320 and the pressure sensing circuit board 330 described above.

[0104] The light machine 310 can be arranged in the accommodating groove 11102 of the first mounting portion 11121, and the light machine 310 can also be electrically connected with the electrical connecting piece 500. For example, the electrical connecting piece 500 can extend into the accommodating groove 11102 of the first mounting portion 11121 through the wiring groove 11101, and the electrical connecting piece 500 can also be attached to the outer surface of the light machine 310 by double-sided adhesive tape to be fixedly connected with the light machine 310. At the same time, the light machine 310 can also be wrapped with adhesive tape to wrap the light machine 310 and the electrical connecting piece 500 together, further improving the connection firmness of the two. Correspondingly, the flexible circuit board of the light machine 310 can be buckled with the electrical connecting piece 500 through the BTB, so as to realize the electrical connection of the light machine 310 and the electrical connecting piece 500. The specific structure and working principle of the light machine 310 can be referred to the prior art, and the present embodiment will not be described here.

[0105] The charging adapter plate 320 can be arranged in the accommodating groove 11102 of the second mounting portion 11122, and the charging adapter plate 320 can also be electrically connected with the electrical connecting piece 500. For example, the electrical connecting piece 500 can extend into the accommodating groove 11102 of the second mounting portion 11122 through the wiring groove 11101, and the BTB on the electrical connecting piece 500 can be buckled on the charging adapter plate 320 to realize the electrical connection of the charging adapter plate 320 and the electrical connecting piece 500. In the present embodiment, the charging adapter plate 320 can be a flexible circuit board. In order to facilitate the fixation of the charging adapter plate 320, the wearing support 100 can also be provided with a supporting piece 150 for supporting the charging adapter plate 320. As shown in FIG. 28 the charging adapter plate 320 can be attached to the supporting piece 150, and the supporting piece 150 with the charging adapter plate 320 can be arranged in the accommodating groove 11102 to fix the position of the charging adapter plate 320 in the accommodating groove 11102. In addition, in order to improve the electrical connection reliability of the charging adapter plate 320 and the electrical connecting piece 500, the outer surface of the supporting piece 150 can also be wrapped with adhesive tape to wrap the charging adapter plate 320 and the electrical connecting piece 500 together, improving the electrical connection reliability of the two.

[0106] The pressure sensing circuit board 330 can be arranged in the same accommodating groove 11102 as the charging adapter plate 320, and the pressure sensing circuit board 330 can be arranged on the side wall of the accommodating groove 11102. The pressure sensing circuit board 330 can also be a flexible circuit board, and the pressure sensing circuit board 330 can be attached to the side wall of the accommodating groove 11102 by double-sided adhesive tape. At the same time, the pressure sensing circuit board 330 can also be electrically connected with the electrical connecting piece 500. In addition, in order to ensure the attachment flatness of the pressure sensing circuit board 330 and the side wall of the accommodating groove 11102, the pressure sensing circuit board 330 can be flattened by using a tool during assembly, so that the pressure sensing circuit board 330 can be closely attached to the side wall of the accommodating groove 11102.

[0107] In some embodiments, the first mounting portion 11121 and the second mounting portion 11122 can each be mounted with an optical engine 310, and the first optical lens 210 and the second optical lens 220 can each be an optical waveguide, so that the virtual reality or augmented reality function can be realized by cooperation of the two optical engines 310 and the two optical lenses 200. In other embodiments, when the head-mounted device 10 does not need to realize the virtual reality or augmented reality function, the first mounting portion 11121 and the second mounting portion 11122 can also be used to mount other electronic devices such as a camera or a lighting lamp, and the optical lens 220 can be a normal functional lens.

[0108] Please refer to FIG. 26 Please refer to FIG. 29 to FIG. 32 , FIG. 29 is FIG. 2 a schematic view of the assembly of the first leg 123 and the second electronic component 400 in the first embodiment, FIG. 30 is FIG. 29 another schematic view of the assembly of the first leg 123 and the second electronic component 400 in the first embodiment, FIG. 31 is FIG. 2 a schematic view of the assembly of the second leg 124 and the second electronic component 400 in the first embodiment, FIG. 32 is FIG. 31 another schematic view of the assembly of the second leg 124 and the second electronic component 400 in the first embodiment.

[0109] The second electronic component 400 can be arranged on the leg 120, which can be used to realize the functions required by the head-mounted device 10. For example, FIG. 26 and FIG. 29 to FIG. 30As shown, the second electronic component 400 can include a main control board 410, a battery 420, a speaker 430, a wearing sensing circuit board 440, a touch circuit board 450 and an antenna 460. The main control board 410, the touch circuit board 450 and the antenna 460 can be arranged in the accommodation space 1201 of the first leg 123, and the touch circuit board 450 and the antenna 460 are electrically connected with the main control board 410. The battery 420 can be arranged in the accommodation space 1201 of the second leg 124. The speaker 430 and the wearing sensing circuit board 440 are arranged in the accommodation space 1201 of the first leg 123 and the second leg 124 respectively, and the speaker 430 can be electrically connected with the wearing sensing circuit board 440. In the embodiment, one end of the electric connector 500 can extend into the accommodation space 1201 of the first leg 123 through the connecting groove 11103 of the first mounting portion 11121 and the wire channel 1202 of the first leg 123, and is electrically connected with the main control board 410. The other end of the electric connector 500 can extend into the accommodation space 1201 of the second leg 124 through the connecting groove 11103 of the second mounting portion 11122 and the wire channel 1202 of the second leg 124, and is electrically connected with the battery 420 and the wearing sensing circuit board 440. It can be understood that the second electronic component 400 in the embodiment can include all electronic devices required to be arranged on the leg 120 of the head-mounted device 10, and is not limited to the main control board 410, the battery 420, the speaker 430, the wearing sensing circuit board 440, the touch circuit board 450 and the antenna 460.

[0110] The main control board 410 can be used to control the working state of the head-mounted device 10, and the main control board 410 can be arranged at the end of the first leg 123 close to the first mounting portion 11121, so that the main control board 410 is electrically connected with the optical engine 310 in the first mounting portion 11121 through the electric connector 500 extending into the accommodation space 1201, reduces the transmission path of the electrical signal between the main control board 410 and the optical engine 310, and improves the response speed of the optical engine 310. In the embodiment, the main control board 410 can be arranged on the bottom wall 1211, and the main control board 410 can be provided with a buckle, and the side wall 1212 can be provided with a buckle, and the buckle can be buckled on the buckle of the main control board 410 to realize the assembly of the main control board 410 and the leg body 121. Meanwhile, in order to improve the assembly firmness, the main control board 410 and the leg body 121 can also be provided with adhesive to bond the main control board 410 and the leg body 121.

[0111] The touch circuit board 450 can be disposed between the main control board 410 and the bottom wall 1211, and is electrically connected to the main control board 410. Simultaneously, the touch circuit board 450 can be adhesively attached to the bottom wall 1211, and is positioned opposite to the sensing area 12111 on the bottom wall 1211. Thus, when the user performs operations such as clicking, long-pressing, and swiping on the sensing area 12111 of the bottom wall 1211, the touch circuit board 450 can trigger the corresponding electrical signal and transmit the electrical signal to the main control board 410 to control the working state of the head-mounted device 10. The antenna 460 can be disposed between the main control board 410 and the side wall 1212, and is electrically connected to the main control board 410. Simultaneously, the side wall 1212 can also be provided with a limiting groove for mounting the antenna 460, to fix the position of the antenna 460 in the receiving space 1201, ensuring the operational reliability of the antenna 460.

[0112] The speaker 430 and the wear-sensing circuit board 440, both housed within the first leg 123, are electrically connected to the main control board 410. The wear-sensing circuit board 440 can be adhesively attached to the bottom wall 1211 and can be located at the tail end of the first leg 123, away from the first mounting portion 11121. Simultaneously, the wear-sensing circuit board 440 can also be electrically connected to the main control board 410. For example, the wear-sensing circuit board 440 can include a sensing unit 441 and a transmission unit 442. The sensing unit 441 can be located at the tail end of the leg body 121. When the user wears the head-mounted device 10, the sensing unit 441 can trigger a corresponding electrical signal. One end of the transmission unit 442 can be connected to the sensing unit 441, and the other end can be connected to the main control board 410, allowing the electrical signal triggered by the sensing unit 441 to be transmitted to the main control board 410 to control the operating state of the head-mounted device 10. The speaker 430 can be adhesively attached to the bottom wall 1211, and the speaker 430 can be located between the main control board 410 and the sensing unit 441. The transmission unit 442 can be attached to the side of the speaker 430 facing away from the bottom wall 1211 and is electrically connected to the speaker 430, so that the speaker 430 can also be electrically connected to the main control board 410 via the transmission unit 442. In some embodiments, the speaker 430 may also have an independent circuit board electrically connected to the main control board 410.

[0113] like FIG. 26 and FIG. 31 to FIG. 32 As shown, the battery 420 can be used to power the head-mounted device 10 to enable the head-mounted device 10 to perform its functions. The battery 420 can also be fixed to the bottom wall 1211 with adhesive, and the battery 420 can be disposed at the end of the second leg 124 near the second mounting portion 11122, so that the battery 420 can be electrically connected to the charging adapter plate 320 in the second mounting portion 11122 via an electrical connector 500 extending into the receiving space 1201.

[0114] The speaker 430 and the wearing sensing circuit board 440 arranged in the second leg 124 are electrically connected with the electrical connector 500 extending into the second leg 124. The wearing sensing circuit board 440 can be attached to the bottom wall 1211 by adhesive, and the wearing sensing circuit board 440 can be arranged at the tail end of the second leg 124 away from the second mounting portion 11122. Meanwhile, the wearing sensing circuit board 440 can also be electrically connected with the electrical connector 500. Like the wearing sensing circuit board 440 in the first leg 123, the wearing sensing circuit board 440 in the second leg 124 can also be provided with a sensing portion 441 and a transmission portion 442, and the sensing portion 441 can also be arranged at the tail end of the leg body 121. When the user wears the head-mounted device 10, the sensing portion 441 can trigger an electrical signal. One end of the transmission portion 442 can be connected with the sensing portion 441, and the other end can be connected with the electrical connector 500, so that the electrical signal triggered by the sensing portion 441 can be transmitted to the main control board 410 to control the working state of the head-mounted device 10. Meanwhile, the transmission portion 442 can also be attached to the side of the battery 420 away from the bottom wall 1211 and electrically connected with the battery 420, so that the battery 420 can be electrically connected with the electrical connector 500 through the transmission portion 442. Correspondingly, the speaker 430 can be attached to the bottom wall 1211 by adhesive, and the speaker 430 can be located between the battery 420 and the sensing portion 441. The transmission portion 442 can be attached to the side of the speaker 430 away from the bottom wall 1211 and electrically connected with the speaker 430, so that the speaker 430 can also be electrically connected with the electrical connector 500 through the transmission portion 442. In some embodiments, the battery 420 can also be provided with a separate circuit board electrically connected with the electrical connector 500.

[0115] As FIG. 26As shown, the electrical connector 500 can be arranged in the wiring slot 11101, and one end of the electrical connector 500 can extend into the accommodation space 1201 of the first leg 123 through the accommodation slot 11102 and the connecting slot 11103 of the first mounting portion 11121 and the wiring channel 1202 of the first leg 123, so as to realize the electrical connection of the electrical connector 500 with the optical engine 310 and the main control board 410 respectively. At the same time, the other end of the electrical connector 500 can extend into the accommodation space 1201 of the second leg 124 through the accommodation slot 11102 and the connecting slot 11103 of the second mounting portion 11122 and the wiring channel 1202 of the second leg 124, so as to realize the electrical connection of the electrical connector 500 with the charging adapter board 320 and the wearing sensing circuit board 440 respectively. In this way, the electrical connector 500 can connect the first electronic component 300 on the frame 110 and the second electronic component 400 on the leg 120, so as to realize the electrical signal transmission of the first electronic component 300 and the second electronic component 400. In the embodiment, the electrical connector 500 can be a flexible circuit board, so as to facilitate the bending of the electrical connector 500 in the wiring slot 11101, the accommodation slot 11102, the connecting slot 11103 and the wiring channel 1202. In some embodiments, the electrical connector 500 can also be other devices capable of realizing electrical connection, such as coaxial cable.

[0116] In the above manner, the main control board 410, the battery 420, the loudspeaker 430, the wearing sensing circuit board 440, the touch circuit board 450 and the antenna 460 can be reasonably distributed on the two legs 120, so as to keep the weight balance of the head-mounted device 10 and avoid the problem of uneven weight of the two legs 120, which reduces the comfort of the user. At the same time, by arranging the main control board 410 and the optical engine 310 adjacently, the electrical signal transmission path between the main control board 410 and the optical engine 310 can be reduced, and the response speed of the optical engine 310 can be improved. Of course, in some embodiments, the main control board 410, the battery 420, the loudspeaker 430, the wearing sensing circuit board 440, the touch circuit board 450 and the antenna 460 are not limited to the above-mentioned layout manner, and only need to be electrically connected between devices to realize the corresponding functions of the head-mounted device 10.

[0117] The nose pad assembly 114 provided in the embodiment of the application is arranged between the support frame 1141 and the nose pad 1142. The nose pad 1142 can move relative to the support frame 1141 by the deformation of the elastic member 1144, so as to realize the adjustment of the nose pad 1142. Compared with the scheme of adjusting the nose pad 1142 by the slight deformation of the metal support, the deformation ability of the elastic member 1144 is stronger, which can provide a larger movement range and adjustment angle for the nose pad 1142, increase the adaptable range of the nose pad 1142, and improve the adaptability and comfort of the user when wearing.

[0118] The above merely provides part of embodiments of the present application, and does not limit the protection scope of the present application, and any equivalent device or equivalent flow transformation, or direct or indirect application in other related technical fields, which is made by using the content of the present application specification and drawings, are also included in the patent protection scope of the present application.

Claims

1. A nosepad assembly, characterized by, The nose pad assembly comprises: two support frames; two elastic members, one of which is connected with one of the two support frames, and the other is connected with the other of the two support frames; two nose pad pads, one of which is connected with one of the two elastic members, and the other is connected with the other of the two elastic members, and the elastic members are configured to be deformable so that the nose pad pads are movable relative to the support frames; a connecting member connecting the two nose pad pads and configured to be deformable so that the nose pad pads are movable relative to the support frames.

2. The nosepad assembly of claim 1, wherein The elastic member is provided with a first connecting portion, any one of the support frame and the nose pad pad is provided with a first matching portion, and the first connecting portion is configured to be detachably connected with the first matching portion.

3. The nosepad assembly of claim 2, wherein The elastic member is further provided with a second connecting portion, the other of the support frame and the nose pad pad is provided with a second matching portion, and the second connecting portion is configured to be detachably connected with the second matching portion.

4. The nosepad assembly of claim 3, wherein Any one of the first connecting portion and the first matching portion is configured to have a magnetic force, and the other is configured to be attracted by the magnetic force; any one of the second connecting portion and the second matching portion is configured to have a magnetic force, and the other is configured to be attracted by the magnetic force.

5. The nosepad assembly of claim 4, wherein The elastic member is further provided with a deformation portion, and one end of the deformation portion is connected with the first connecting portion and the other end is connected with the second connecting portion; wherein the deformation portion is a special-shaped spring.

6. The nosepad assembly of claim 4, wherein The nose pad pad is provided with a flexible portion and the first matching portion, and the flexible portion wraps the first matching portion; wherein the first matching portion is a magnetic attraction piece with a magnetic force.

7. The nosepad assembly of claim 6, wherein The flexible portion is further provided with an opening communicating with the first matching portion, and the first connecting portion is arranged in the opening and magnetically connected with the first matching portion.

8. The nosepad assembly of claim 4, wherein The support frame is provided with a rigid portion and the second matching portion; the second matching portion is connected with the rigid portion; wherein the second matching portion is a metal that can be attracted by a magnetic force, and the rigid portion and the second matching portion are an integral structure.

9. The nosepad assembly of claim 8, wherein, The second matching portion is provided with a positioning groove, and the second connecting portion is arranged in the positioning groove and magnetically connected with the second matching portion; wherein the positioning groove is matched with the shape of the second connecting portion.

10. The nosepad assembly of claim 1, wherein The two support frames, the two elastic members and the two nose pad pads are symmetrically arranged.

11. A frame for a head-mounted device, the frame comprising: The frame comprises: a cross beam; a frame body connected with the cross beam and forming a bearing surface together with the cross beam, and the bearing surface is configured to mount optical lenses of the head-mounted device; The nose pad assembly is provided with two support frames, two elastic members, a connecting member and two nose pad pads; one of the two support frames is connected with the frame body, one of the two elastic members is connected with one of the two support frames, and the other is connected with the other support frame; one of the two nose pad pads is connected with one of the two elastic members, and the other is connected with the other elastic member; the elastic member is configured to be deformed so that the nose pad pad can move relative to the support frame; the connecting member connects the two nose pad pads and is configured to be deformed so that the nose pad pad can move relative to the support frame.

12. The frame of claim 11, wherein, The frame body is provided with a groove, the support frame is provided with a rigid part, and the rigid part is also provided with a protrusion; the protrusion is arranged in the groove and is in interference fit with the frame body.

13. A head-mounted device, comprising: The head-mounted device comprises: The frame is provided with a crossbeam, a frame body and a nose pad assembly; the crossbeam is connected with the frame body and forms a bearing surface with the frame body; the nose pad assembly is provided with two support frames, two elastic members, a connecting member and two nose pad pads; the two support frames are connected with the frame body; one of the two elastic members is connected with one of the two support frames, and the other is connected with the other support frame; one of the two nose pad pads is connected with one of the two elastic members, and the other is connected with the other elastic member; the elastic member is configured to be deformed so that the nose pad pad can move relative to the support frame; the connecting member connects the two nose pad pads and is configured to be deformed so that the nose pad pad can move relative to the support frame; The optical machine is arranged on the crossbeam; The optical lens is arranged on the bearing surface and is arranged opposite to the optical machine; wherein the optical lens is configured to present a virtual reality / augmented reality environment under the control of the optical machine.

Citation Information

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