AR glasses and AR devices

By separating the wireless communication components and control components in AR glasses, the problem of antenna interference from the control circuit module is solved, improving the stability and reliability of signal transmission and enhancing the user experience.

CN119667944BActive Publication Date: 2026-04-24GOERTEK INC
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
GOERTEK INC
Filing Date
2023-09-20
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

The antennas of existing AR glasses are easily interfered with because they are close to the control circuit module, which affects the stability and reliability of signal transmission.

Method used

By staggering the wireless communication components and control components in different mounting positions within the frame, interference from the control components to the wireless communication components is reduced, thus optimizing their working environment.

Benefits of technology

It improves the signal transmission stability and reliability of wireless communication components, thereby enhancing the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an AR glasses and an AR device, wherein the AR glasses comprises a frame, a temple assembly, a wireless communication assembly and a control assembly, the frame has two mounting sides and a middle part between the two mounting sides, the frame is provided with mounting positions at the two mounting sides and the middle part, the two mounting sides are respectively provided with the temple assembly, the control assembly is connected with the wireless communication assembly, and the control assembly is used for establishing a wireless communication connection with an external terminal when a communication instruction output by the external terminal is received through the wireless communication assembly; the wireless communication assembly and the control assembly are arranged in the mounting positions in a staggered mode; and the AR device comprises the terminal and the AR glasses. The technical scheme of the application can reduce the interference of control circuit modules on the wireless communication module, improve the working environment of the wireless communication module, and improve the stability and reliability of the wireless communication module in signal transmission.
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Description

Technical Field

[0001] This invention relates to the field of head-mounted display technology, and particularly to an AR glasses and an AR device. Background Technology

[0002] Head-mounted display devices, such as AR glasses, require control circuit modules to achieve augmented reality functionality. These modules are located in the temples and the connection between the temples and the frame. The interaction between these control circuit modules and external devices relies heavily on antennas. As a core component for signal transmission and reception, the design of the antenna directly impacts the stability and reliability of signal transmission between the AR glasses and external devices.

[0003] Currently, the antennas of AR glasses on the market are generally placed in the temples and the connection between the temples and the frame. The distance between them and the control and other circuit modules is relatively close, which restricts the working environment of the antenna and makes it susceptible to interference from the aforementioned circuit modules, thereby affecting the stability and reliability of its signal transmission. Summary of the Invention

[0004] The main objective of this invention is to propose an AR glasses system that aims to reduce interference from control and other circuit modules on the wireless communication module, improve the working environment of the wireless communication module, and enhance its stability and reliability in signal transmission.

[0005] To achieve the above objectives, the AR glasses proposed in this invention include:

[0006] A mirror frame has two mounting sides and a middle section located between the two mounting sides, and the mirror frame is provided with mounting positions on both mounting sides and the middle section;

[0007] The temple assembly is provided on both of the mounting sides;

[0008] A wireless communication component and a control component, wherein the control component is connected to the wireless communication component, and the control component is used to establish a wireless communication connection with an external terminal via the wireless communication component;

[0009] The wireless communication component and the control component are staggered and arranged in multiple mounting positions.

[0010] Optionally, two wireless communication components are provided, with each component positioned one-to-one in a corresponding mounting position on one of the two mounting sides of the frame, and the control component is positioned in a corresponding mounting position in the middle of the frame.

[0011] Optionally, the control component has a control terminal and a first ground terminal, and the wireless communication component has a controlled terminal and a second ground terminal. The control terminal of the control component is connected to the controlled terminal of the wireless communication component, and the first ground terminal and the second ground terminal are connected.

[0012] Optionally, the AR glasses also include:

[0013] A mounting bracket is provided in one of the plurality of mounting positions, and the control component is mounted on the mounting bracket.

[0014] Optionally, the mounting positions corresponding to the two mounting sides of the frame include mounting portions. The mounting portions are located below the connection between the mounting side and the temple assembly. One end of the mounting portion is connected to the inner side of the frame, and the other end extends away from the connection point, bends upward, and then extends horizontally towards the center of the frame to form a support portion.

[0015] The mounting bracket is disposed in the corresponding mounting position in the middle of the mirror frame, and the two ends of the mounting bracket extend toward the two mounting sides respectively. The support portion formed by the mounting positions corresponding to the two mounting sides of the mirror frame is used to support the two ends of the mounting bracket respectively.

[0016] Optionally, a wiring gap is formed between the bottom surface of the mounting bracket and the support surface of the support portion, and the grounding wire of the first grounding terminal of the control component passes through the wiring gap from one side of the mounting bracket to the other side of the mounting bracket and is connected to the second grounding terminal of the wireless communication component.

[0017] Optionally, the mounting bracket is provided with a wiring groove, and the grounding wire of the first grounding terminal of the control component is connected to the second grounding terminal of the wireless communication component through the wiring groove.

[0018] Optionally, the AR glasses also include:

[0019] The hinge assembly is provided on both mounting sides. The two mounting sides of the frame are respectively hinged to the temple assembly through the hinge assembly. A wiring space is formed in the hinge assembly. The grounding wire of the first grounding terminal of the control component is connected to the second grounding terminal of the wireless communication component through the wiring space.

[0020] Optionally, the temple assembly includes:

[0021] A temple support, wherein the temple support is movably connected to the mounting side;

[0022] The temple housing and temple cover are provided. The temple housing is connected to the temple cover via the temple bracket to form a receiving cavity. The temple bracket is disposed within the receiving cavity.

[0023] Furthermore, to achieve the above objectives, the present invention also proposes an AR device, the AR device comprising:

[0024] Terminal; and

[0025] As described above, the AR glasses establish a wireless communication connection with the terminal via the wireless communication component.

[0026] The present invention provides AR glasses and an AR device. The AR glasses include a frame, temple assemblies, a wireless communication component, and a control component. The frame has two mounting sides and a central section between the two mounting sides. Mounting positions are provided on both mounting sides and in the central section. Temple assemblies are respectively mounted on the two mounting sides. The control component is connected to the wireless communication component and establishes a wireless communication connection with the external terminal when it receives a communication command from the external terminal via the wireless communication component. The wireless communication component and the control component are staggered in multiple mounting positions. The AR device includes a terminal and AR glasses. The present invention reduces interference from control and other circuit modules to the wireless communication module, improves the working environment of the wireless communication module, and enhances its stability and reliability in signal transmission. Attached Figure Description

[0027] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0028] Figure 1 This is an exploded view of an embodiment of the AR glasses of the present invention;

[0029] Figure 2 for Figure 1 A magnified view of a section at point A in the middle;

[0030] Figure 3 for Figure 1 A magnified view of a section at point B in the middle;

[0031] Figure 4 This is a schematic diagram of the overall structure of an embodiment of the AR glasses of the present invention.

[0032] Explanation of icon numbers:

[0033]

[0034]

[0035] The realization of the objective, functional features and advantages of the present invention will be further explained in conjunction with the embodiments and with reference to the accompanying drawings. Detailed Implementation

[0036] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.

[0037] It should be noted that if the embodiments of the present invention involve directional indications (such as up, down, left, right, front, back, etc.), the directional indications are only used to explain the relative positional relationship and movement of the components in a specific posture. If the specific posture changes, the directional indications will also change accordingly.

[0038] Furthermore, if the embodiments of this invention involve descriptions such as "first" or "second," these descriptions are for descriptive purposes only and should not be construed as indicating or implying their relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined with "first" or "second" may explicitly or implicitly include at least one of those features. Additionally, the use of "and / or" or "and / or" throughout the text includes three parallel solutions. For example, "A and / or B" includes solution A, solution B, or a solution where both A and B are satisfied simultaneously. Furthermore, the technical solutions of the various embodiments can be combined with each other, but this must be based on the ability of those skilled in the art to implement them. When the combination of technical solutions is contradictory or impossible to implement, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection claimed by this invention.

[0039] AR glasses are wearable devices that implement AR (Augmented Reality, also known as mixed reality) technology and can be worn on the human head for display. Through computer technology, they can overlay virtual information onto the real world, allowing the real environment and virtual objects to be superimposed on the same screen in real time, achieving mutual supplementation of the two types of information. The screen is then displayed in front of the user through optical projection lenses and other devices, enhancing the user's sense of reality.

[0040] AR glasses require control circuit modules to achieve augmented reality functionality. These modules are located in the temples and at the connection points between the temples and the frame 100. The interaction between these control circuit modules and external devices relies heavily on antennas. As a core component for signal transmission and reception, the design of the antenna directly impacts the stability and reliability of signal transmission between the AR glasses and external devices.

[0041] Currently, the antennas of AR glasses on the market are generally placed on the temples and the connection between the temples and the frame 100. The distance between them and the control and other circuit modules is relatively close, which restricts the working environment of the antenna and makes it susceptible to interference from the aforementioned circuit modules, thereby affecting the stability and reliability of its signal transmission.

[0042] To this end, the present invention also proposes an AR glasses, which aims to reduce the interference of control and other circuit modules on the wireless communication module, improve the working environment of the wireless communication module, and enhance its stability and reliability in signal transmission.

[0043] Reference Figures 1 to 4 In one embodiment of the present invention, the AR glasses include:

[0044] The mirror frame 100 has two mounting sides and a middle portion located between the two mounting sides, and the mirror frame 100 is provided with mounting positions 200 on both mounting sides and the middle portion;

[0045] Temple assembly 300, with the temple assembly 300 respectively provided on both mounting sides;

[0046] The system includes a wireless communication component 400 and a control component 500, wherein the control component 500 is connected to the wireless communication component 400 and is used to establish a wireless communication connection with an external terminal via the wireless communication component 400.

[0047] The wireless communication component 400 and the control component 500 are staggered and arranged in multiple mounting positions 200.

[0048] Optionally, the AR glasses of this application may include, but are not limited to, a frame 100, temple assembly 300, wireless communication assembly 400, and control assembly 500. They may also include a detection assembly, a camera assembly, an optical assembly, and a display assembly, all electrically connected to the control assembly 500. The detection assembly uses a sensor to detect the user's head and body movements and output motion signals to the control assembly 500. The camera assembly uses a built-in camera to capture images of the external environment and output image signals to the control assembly 500, which processes these signals into image data and outputs it to the optical assembly. The optical assembly includes an image generator, a lens assembly, and an optical waveguide assembly. The image generator converts the image data output by the control assembly 500 into a light image, the lens assembly amplifies the incident light image, and the optical waveguide assembly outputs the amplified light image to the display assembly, allowing the display assembly to project the light image into the user's field of vision.

[0049] Specifically, in this embodiment, the AR glasses include a frame 100, temple assembly 300, wireless communication assembly 400, and control assembly 500. The frame 100 includes a left frame 110 and a right frame 120. The two mounting sides of the frame 100 refer to the first mounting side of the left frame 110 and the second mounting side of the right frame 120. The first mounting side is provided with the left temple assembly 310, and the second mounting side is provided with the right temple assembly 320. Optionally, the connection between the first mounting side and the left temple assembly 310, or the connection between the second mounting side and the right temple assembly 320, is a hinge connection in a movable connection. The specific hinge structure involved is not limited here and can be set according to actual connection requirements. The middle part located between the two mounting sides refers to the middle connecting body located between the left frame 110 and the right frame 120. For ease of distinction and understanding, the mounting positions 200 provided on the two mounting sides of the frame 100, namely the first mounting side of the left frame 110 and the second mounting side of the right frame 120, are respectively the first mounting position 210 and the second mounting position 220. The mounting position 200 provided in the middle of the frame 100, namely the middle connecting body, is the third mounting position 230.

[0050] In this embodiment, the wireless communication component 400 includes a circuit board and an antenna. The circuit board is electrically connected to the control component 500 and the antenna, respectively. Optionally, the wireless communication component 400 can be implemented using a WiFi component, a Bluetooth component, or a 3G / 4G / 5G component. Specifically, in this embodiment, the wireless communication component 400 is implemented using a WiFi component. The WiFi component includes a circuit board and a WiFi antenna disposed on the circuit board. In the practical application of AR glasses, the WiFi antenna receives wireless communication signals output by an external terminal in real time and outputs them to the control component 500 via the circuit board, so that the control component 500 outputs corresponding control signals to the display component based on the received wireless communication signals, so as to display the information transmitted by the external terminal. Optionally, the external terminal may include a controller, a smart device, or other devices. For example, when the external terminal is a controller, the controller communicates with the AR glasses of this application through the WiFi component, so that the information received by the controller is uploaded to the AR glasses, and the AR glasses can display the information transmitted by the controller.

[0051] Based on the above, it can be understood that, in order to reduce the interference of the control component 500 on the wireless communication component 400, improve the working environment of the wireless communication component 400 itself, and enhance its stability and reliability in signal transmission, the wireless communication component 400 and the control component 500 in this embodiment can be staggered and arranged in multiple mounting positions 200. For example, the wireless communication component 400 is arranged in the first mounting position 210, and the control component 500 is arranged in the second mounting position 220 or the third mounting position 230; or the wireless communication component 400 is arranged in the first mounting position 210, and the control component 500 is arranged in the first mounting position 210 or the third mounting position 230; or the wireless communication component 400 is arranged in the third mounting position 230, and the control component 500 is arranged in the first mounting position 210 or the second mounting position 220. Optionally, when the AR glasses of this application also include other circuit modules such as a detection component, a camera component, an optical component, and a display component that are electrically connected to the control component 500, the other circuit modules and the wireless communication component 400 are also arranged in multiple mounting positions 200 in a staggered manner. The specific arrangement can be referred to the above embodiments, and will not be elaborated in detail here.

[0052] With this setup, the wireless communication component 400 and circuit modules such as the control component 500 are kept far apart, which reduces the interference caused by the control component 500 and other circuit modules to the wireless communication component 400 during actual operation. This optimizes the working environment of the wireless communication component 400, improves the stability and reliability of its signal transmission, and thus enhances the user experience when using AR glasses.

[0053] The present invention provides AR glasses and an AR device. The AR glasses include a frame 100, temple assemblies 300, a wireless communication component 400, and a control component 500. The frame 100 has two mounting sides and a central portion between the two mounting sides. Mounting positions 200 are provided on both mounting sides and in the central portion of the frame 100. Temple assemblies 300 are respectively mounted on the two mounting sides. The control component 500 is connected to the wireless communication component 400. When the control component 500 receives a communication command from an external terminal via the wireless communication component 400, it establishes a wireless communication connection with the external terminal. The wireless communication component 400 and the control component 500 are staggered and arranged in multiple mounting positions 200. The AR device includes a terminal and AR glasses. The technical solution of the present invention can reduce interference from control and other circuit modules to the wireless communication module, improve the working environment of the wireless communication module, and enhance its stability and reliability in signal transmission.

[0054] Reference Figures 1 to 4 In one embodiment of the present invention, two wireless communication components 400 are provided, and the two wireless communication components 400 are provided one-to-one in the mounting positions 200 corresponding to the two mounting sides of the frame 100, and the control component 500 is provided in the mounting position 200 corresponding to the middle part of the frame 100.

[0055] It is understood that there are two wireless communication components 400 in this embodiment. When one of the wireless communication components 400 fails or is damaged, the other wireless communication component 400 can still enable the control component 500 to establish a wireless communication connection with the external terminal and maintain communication between the AR glasses and the external terminal.

[0056] Specifically, in this embodiment, the two wireless communication components 400 include a first wireless communication component 410 and a second wireless communication component 420. The first wireless communication component 410 includes a first circuit board and a first antenna disposed on the first circuit board. The second wireless communication component 420 includes a second circuit board and a second antenna disposed on the second circuit board. Optionally, the first wireless communication component 410, the second wireless communication component 420, and the control component 500 can be respectively disposed in multiple mounting positions 200. For example, in this embodiment, the first wireless communication component 410 and the second wireless communication component 420 are disposed one-to-one in the first mounting position 210 and the second mounting position 220, and the control component 500 is disposed in the third mounting position 230. Since the control component 500 is relatively large and heavy, this arrangement not only balances the weight of the control component 500 but also keeps the two wireless communication components 400 far apart from the control component 500, reducing interference from the control component 500 to the two wireless communication components 400 and improving the stability and reliability of signal transmission for both wireless communication components 400.

[0057] Reference Figures 1 to 4 In one embodiment of the present invention, the control component 500 has a control terminal and a first ground terminal, and the wireless communication component 400 has a controlled terminal and a second ground terminal. The control terminal of the control component 500 is connected to the controlled terminal of the wireless communication component 400, and the first ground terminal and the second ground terminal are connected.

[0058] Specifically, in this embodiment, the controlled terminal of the control component 500 is connected to the controlled terminal of the wireless communication component 400, controlling the wireless communication component 400 to receive wireless communication signals output by an external terminal, thereby establishing a communication connection between the AR glasses and the external terminal. Furthermore, the first ground terminal of the control component 500 is connected to the second ground terminal of the wireless communication component 400. This reasonable connection layout can reduce signal attenuation and interference, thereby improving the receiving and radiation efficiency of the wireless communication component 400.

[0059] Reference Figures 1 to 4 In one embodiment of the present invention, the AR glasses further include:

[0060] Mounting bracket 600 is disposed in one of the plurality of mounting positions 200, and the control component 500 is mounted on the mounting bracket 600.

[0061] Understandably, the mounting bracket 600 is used to mount the control component 500, avoiding direct mounting of the control component 500 onto the frame 100 and improving the ease of installation. Optionally, the mounting bracket 600 can be located in one of the multiple mounting positions 200. For example, the mounting bracket 600 can be located in the first mounting position 210, the second mounting position 220, or the third mounting position 230. In this embodiment, the mounting bracket 600 is located in the third mounting position 230 so that the control component 500 is also simultaneously located in the third mounting position 230, thereby balancing the weight of the control component 500 and, consequently, the weight of the AR glasses themselves.

[0062] Reference Figures 1 to 4 In one embodiment of the present invention, the mounting positions 200 corresponding to the two mounting sides of the frame 100 include mounting portions. The mounting portions are located below the connection between the mounting side and the temple assembly 300. One end of the mounting portion is connected to the inner side of the frame 100, and the other end of the mounting portion extends away from the connection and bends upward before extending horizontally towards the center of the frame 100 to form a support portion.

[0063] The mounting bracket 600 is disposed in the mounting position 200 corresponding to the middle part of the mirror frame 100. The two ends of the mounting bracket 600 extend toward the two mounting sides respectively. The support portion formed by the mounting positions 200 corresponding to the two mounting sides of the mirror frame 100 is used to support the two ends of the mounting bracket 600 respectively.

[0064] Specifically, in this embodiment, the mounting positions 200 corresponding to the two mounting sides of the frame 100, namely the first mounting position 210 and the second mounting position 220, respectively include a first mounting portion 211 and a second mounting portion 221. The first mounting portion 211 is located below the connection between the first mounting side and the left temple assembly 310. One end of the first mounting portion 211 is connected to the inner side of the left frame 110, and the other end extends away from the connection between the first mounting side and the left temple assembly 310, bends upward, and then extends horizontally in the opposite direction to the central connecting body to form a first support portion. Similarly, the second mounting portion 221 is located below the connection between the second mounting side and the right temple assembly 320. One end of the second mounting portion 221 is connected to the inner side of the right frame 120, and the other end extends away from the connection between the second mounting side and the right temple assembly 320, bends upward, and then extends horizontally in the direction of the central connecting body to form a second support portion. In this embodiment, the mounting bracket 600 is disposed in the mounting position 200 corresponding to the middle of the mirror frame 100, that is, in the third mounting position 230, and the two ends of the mounting bracket 600 extend toward the first mounting side and the second mounting side, respectively. At this time, the first support part and the second support part support the two ends of the mounting bracket 600, respectively, so as to improve the stability of the mounting bracket 600 on the mirror frame 100, thereby improving the stability of the control component 500 on the mounting bracket 600.

[0065] Reference Figures 1 to 4 In one embodiment of the present invention, a wiring gap 700 is formed between the bottom surface of the mounting bracket 600 and the support surface of the support portion. The grounding wire 800 of the first grounding terminal of the control component 500 passes through the wiring gap 700 from one side of the mounting bracket 600 to the other side of the mounting bracket 600 and is connected to the second grounding terminal of the wireless communication component 400.

[0066] Specifically, in this embodiment, in conjunction with the content of the above embodiments, when the mounting bracket 600 is installed in the third mounting position 230, and the first support and the second support support support the two ends of the mounting bracket 600, a wiring gap 700 is formed between the bottom surface of the mounting bracket 600 and the support surface of the support support in this embodiment. This allows the grounding wire 800 of the first grounding terminal of the control component 500 to pass through the wiring gap 700 from one side (outer side) of the mounting bracket 600 to the other side (inner side) of the mounting bracket 600, and then connect to the second grounding terminal of the wireless communication component 400 in the first mounting position 210 or the second mounting position 220 to fix the grounding wire 800. This allows for a reasonable wiring layout within the AR glasses, effectively reducing the overall size of the AR glasses.

[0067] Optionally, the mounting bracket 600 is also provided with a wiring slot 900. Optionally, the number of wiring slots 900 is not limited to one; it can also be two or three. In this embodiment, there are two wiring slots 900, namely the first wiring slot and the second wiring slot. The grounding wire 800 of the first grounding terminal of the control component 500 in the third mounting position 230 can be connected to the second grounding terminal of the wireless communication component 400 in the first mounting position 210 or the second mounting position 220 in sequence through the first wiring slot and the second wiring slot. Alternatively, the grounding wire 800 can be fixed to reasonably arrange the wiring structure inside the AR glasses.

[0068] Reference Figures 1 to 4 In one embodiment of the present invention, the AR glasses further include:

[0069] A hinge assembly 1000 is provided on each of the two mounting sides. The two mounting sides of the frame 100 are hinged to the temple assembly 300 through the hinge assembly 1000. A wiring space 1100 is formed in the hinge assembly 1000. The grounding wire 800 of the first grounding terminal of the control component 500 is connected to the second grounding terminal of the wireless communication component 400 through the wiring space 1100.

[0070] Specifically, in this embodiment, the AR glasses further include a hinge assembly 1000, which includes a left hinge assembly and a right hinge assembly. The first mounting side of the left frame 110 is hinged to the left temple assembly 310 via the left hinge assembly, and the second mounting side of the right frame 120 is hinged to the right temple assembly 320 via the right hinge assembly. A first wiring space is formed within the left hinge assembly, and a second wiring space is formed within the right hinge assembly.

[0071] As can be seen from the above embodiments, when the control component 500 is provided with a third mounting position 230, if only one wireless communication component 400 is provided, the wireless communication component 400 can be selectively located in the first mounting position 210 or the second mounting position 220. For example, when the wireless communication component 400 is located in the first mounting position 210, the grounding wire 800 of the first grounding terminal of the control component 500 is connected to the second grounding terminal of the wireless communication component 400 through the first wiring space. When two wireless communication components 400 are provided, namely the first wireless communication component 410 and the second wireless communication component 420, the grounding wire 800 of the first grounding terminal of the control component 500 can be connected to the second grounding terminal of the first wireless communication component 410 through the first wiring space, and the grounding wire 800 of the first grounding terminal of the control component 500 can be connected to the third grounding terminal of the second wireless communication component 420 through the second wiring space. All of the above methods can reasonably arrange the wiring structure within the AR glasses and effectively reduce the overall size of the AR glasses.

[0072] Reference Figures 1 to 4 In one embodiment of the present invention, the temple assembly 300 includes:

[0073] A temple support, wherein the temple support is movably connected to the mounting side;

[0074] The temple housing and temple cover are provided. The temple housing is connected to the temple cover via the temple bracket to form a receiving cavity. The temple bracket is disposed within the receiving cavity.

[0075] Specifically, in this embodiment, as described in the above embodiments, the temple assembly 300 includes a left temple assembly 310 and a right temple assembly 320. The left temple assembly 310 includes a left temple support, a left temple housing, and a left temple cover. The left temple housing is connected to the left temple cover via the left temple support, forming a first receiving cavity. The left temple support is disposed within the first receiving cavity, and its end near the left hinge assembly is hinged to the left hinge assembly. Similarly, the right temple assembly 320 includes a right temple support, a right temple housing, and a right temple cover. The right temple housing is connected to the right temple cover via the right temple support, forming a second receiving cavity. The right temple support is disposed within the second receiving cavity, and its end near the right hinge assembly is hinged to the right hinge assembly. The above connection method not only reduces the impact of external environmental factors on the structure of the left and right hinge components, maintaining their flexible rotation performance, but also greatly improves the installation efficiency of the left temple component 310 and the right temple component 320, thereby increasing the production efficiency of AR glasses.

[0076] The present invention also proposes an AR device, which includes a terminal and AR glasses. The specific structure of the AR glasses is as described in the above embodiments. Since the present AR device adopts all the technical solutions of all the above embodiments, it has at least all the beneficial effects brought about by the technical solutions of the above embodiments, which will not be described in detail here.

[0077] The terminal may include devices such as a gamepad or a smart device. When the terminal is a gamepad, the gamepad communicates with the AR glasses of this application via a wireless communication component 400, so that information received by the gamepad is uploaded to the AR glasses, allowing the AR glasses to display the information transmitted by the gamepad. For example, when playing a virtual game, the gamepad is used to perform game operations, and the operation information is sent to the AR glasses, causing the AR glasses to display the corresponding operation screen. When the terminal is a smart device, the video information of the smart device can be sent to the AR glasses, causing the AR glasses to display the corresponding video screen.

[0078] The above description is merely a preferred embodiment of the present invention and does not limit the patent scope of the present invention. Any equivalent structural transformations made using the contents of the present invention's specification and drawings under the inventive concept of the present invention, or direct / indirect applications in other related technical fields, are included within the patent protection scope of the present invention.

Claims

1. An AR glasses, characterized in that, include: A mirror frame has two mounting sides and a middle section located between the two mounting sides. The mirror frame includes a left mirror frame and a right mirror frame. The two mounting sides are a first mounting side of the left mirror frame and a second mounting side of the right mirror frame, respectively. The middle section is a connecting body located between the left mirror frame and the right mirror frame and connecting the left mirror frame and the right mirror frame. The mirror frame is provided with a first mounting position, a second mounting position and a third mounting position on the two mounting sides and the middle section, respectively. The temple assembly includes a left temple assembly and a right temple assembly, wherein the left temple assembly is disposed on the first mounting side and the right temple assembly is disposed on the second mounting side; The system includes a wireless communication component, a display component, and a control component, wherein the control component is electrically connected to the wireless communication component and the display component, and the control component is used to establish a wireless communication connection with an external terminal via the wireless communication component. The wireless communication component is disposed in the first mounting position, the second mounting position, and the third mounting position in a staggered manner from the display component and the control component. A mounting bracket is provided in the third mounting position, and the control component is mounted on the mounting bracket; The first mounting position and the second mounting position each include a first mounting portion and a second mounting portion. The first mounting portion is located below the connection between the first mounting side and the left temple assembly. One end of the first mounting portion is connected to the inner side of the left frame, and the other end of the first mounting portion extends away from the connection and bends upward before extending horizontally towards the central connector to form a first support portion. The second mounting portion is located below the connection between the second mounting side and the right temple assembly. One end of the second mounting portion is connected to the inner side of the right frame, and the other end of the second mounting portion extends away from the connection and bends upward before extending horizontally towards the central connector to form a second support portion. The two ends of the mounting bracket extend toward the first mounting side and the second mounting side, respectively, and the first support portion and the second support portion are used to support the two ends of the mounting bracket, respectively. A wiring gap is formed between the bottom surface of the mounting bracket and the support surface of the support part. The grounding wire of the first grounding terminal of the control component passes through the wiring gap from one side of the mounting bracket to the other side of the mounting bracket and is connected to the second grounding terminal of the wireless communication component to fix the grounding wire.

2. The AR glasses as described in claim 1, characterized in that, Two wireless communication components are provided, and the two wireless communication components are installed one-to-one in the corresponding mounting positions on the two mounting sides of the mirror frame. The control component is installed in the corresponding mounting position in the middle of the mirror frame.

3. The AR glasses as described in claim 1, characterized in that, The control component has a control terminal and a first ground terminal, and the wireless communication component has a controlled terminal and a second ground terminal. The control terminal of the control component is connected to the controlled terminal of the wireless communication component, and the first ground terminal and the second ground terminal are connected.

4. The AR glasses as described in claim 1, characterized in that, The AR glasses also include: The hinge assembly is provided on both mounting sides. The two mounting sides of the frame are hinged to the temple assembly through the hinge assembly. A wiring space is formed inside the hinge assembly. The grounding wire of the first grounding terminal of the control component is connected to the second grounding terminal of the wireless communication component through the wiring space.

5. The AR glasses as described in claim 1, characterized in that, The temple assembly includes: A temple support, wherein the temple support is movably connected to the mounting side; The temple housing and temple cover are provided. The temple housing is connected to the temple cover via the temple bracket to form a receiving cavity. The temple bracket is disposed within the receiving cavity.

6. An AR device, characterized in that, include: terminal; as well as The AR glasses as described in any one of claims 1 to 5, wherein the AR glasses establish a wireless communication connection with the terminal via the wireless communication component.

Citation Information

Patent Citations

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