AR glasses
By employing wireless communication modules and connection components in AR glasses, a detachable connection between the temples and the frame is achieved, solving the problem of non-replaceable temples in existing technologies and improving the user experience.
Patent Information
- Application Number
- CN202520784074.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-23
- Publication Date
- 2026-02-27
- Estimated Expiration
- 2035-04-23
AI Technical Summary
The temples of existing AR glasses are connected to the frame via wired communication, which makes it impossible to replace the temples and affects the user experience.
The temples and frame are detachably connected using a wireless communication module and a connecting component. Data interaction is achieved through wireless communication, and power signals are transmitted through the connecting component.
It enables a detachable connection between the temples and the frame, improving the user experience and allowing the temples to be replaced as needed.
Smart Images

Figure CN223955894U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The embodiment of the present disclosure relates to the technical field of AR glasses, and more particularly, to an AR glass. BACKGROUND
[0002] In the current technical field of AR glasses, the communication between the temple and the frame plays a crucial role in realizing various functions of the AR glasses. At present, it is common to use wired communication to realize data interaction between the temple and the frame.
[0003] In the existing wired communication technical solution, a flexible printed circuit (FPC) connector is usually used to complete signal transmission. This wired communication method requires cables and connectors to be arranged between the temple and the frame. Therefore, in order to improve the reliability of the AR glasses, an integral molding process is usually used to make the frame and the temple into an indivisible whole structure. This results in the user being unable to replace the temple of the AR glasses according to his own needs. UTILITY MODEL CONTENT
[0004] An object of the embodiment of the present disclosure is to provide an AR glass capable of replacing the temple.
[0005] According to a first aspect of the embodiment of the present disclosure, an AR glass is provided, comprising a temple, a frame and a connecting assembly, the temple comprising a first processing module and a first wireless communication module, the frame comprising a second processing module and a second wireless communication module used in cooperation with the first wireless communication module; the temple is detachably connected with the frame through the connecting assembly.
[0006] The connecting assembly is further configured to transmit power signals between the temple and the frame.
[0007] The first processing module and the second processing module perform data interaction through the first wireless communication module and the second wireless communication module.
[0008] Optionally, the connecting assembly comprises a first connecting member and a second connecting member which are insulated from each other, the first connecting member is configured to transmit positive power signals, and the second connecting member is configured to transmit negative power signals.
[0009] Optionally, the temple further comprises a battery, a positive electrode of the battery is electrically connected with the first connecting member, and a negative electrode of the battery is electrically connected with the second connecting member.
[0010] Optionally, the temple is rotationally connected with the frame through the connecting assembly.
[0011] Optionally, the first connecting member and the second connecting member are both rotation shafts.
[0012] Optionally, the connection component is configured to transmit the power supply signal when the temple is unfolded, and stop transmitting the power supply signal when the temple is folded.
[0013] Optionally, the frame further comprises a display component, the first processing module is configured to transmit a target picture to be displayed to the first wireless communication module, the first wireless communication module is configured to perform encapsulation processing on the target picture based on a wireless communication protocol, and send the encapsulated target picture to the second wireless communication module, the second wireless communication module is configured to perform analysis processing on the encapsulated target picture based on the wireless communication protocol, and the second processing module is configured to control the display component to display the target picture.
[0014] Optionally, the frame further comprises an image acquisition module, the image acquisition module is configured to acquire an external image, the second processing module is configured to send the external image to the first processing module through the first wireless processing module and the second wireless processing module, and the first processing module is configured to generate the target picture according to the external image.
[0015] Optionally, the temple comprises a first temple and a second temple, the second wireless communication module comprises a first wireless communication unit used in cooperation with the first wireless communication module of the first temple, and a second wireless communication unit used in cooperation with the first wireless communication module of the second temple.
[0016] The first processing module of the first temple and the second processing module perform data interaction through the first wireless communication module of the first temple and the first wireless communication unit, and the first processing module of the second temple and the second processing module perform data interaction through the first wireless communication module of the second temple and the second wireless communication unit.
[0017] Optionally, the first temple further comprises a control module, the control module is configured to receive control data of a user, the first processing module of the first temple is configured to send the control data to the second processing module through the first wireless communication module of the first temple and the first wireless communication unit, the second processing module is configured to send the control data to the first processing module of the second temple through the second wireless communication unit and the first wireless communication module of the second temple, and the first processing module of the second temple is configured to adjust a picture displayed by the AR glasses according to the control data.
[0018] Through the embodiment, the data interaction between the glasses legs and the glasses frame is carried out through wireless communication, and the power supply signal transmission is also carried out through the connecting assembly, so that a hardware basis can be provided for the detachable connection between the glasses legs and the glasses frame, and the user can replace the glasses legs of the AR glasses according to the own demand, and the user experience is improved.
[0019] Other features of the present application, and their advantages, will become apparent from the following detailed description of exemplary embodiments of the present application, together with the drawings. BRIEF DESCRIPTION OF DRAWINGS
[0020] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments of the application and, together with the description, serve to explain the principles of the application.
[0021] Figure 1 is a block diagram of an AR glasses according to one embodiment of the present disclosure;
[0022] Figure 2 is a block diagram of an AR glasses according to another embodiment of the present disclosure. DETAILED DESCRIPTION
[0023] Various exemplary embodiments of the present application will now be described in detail with reference to the accompanying drawings. If it is considered that the relative arrangement, numerical expressions, and numerical values of components and steps set forth in these embodiments are not limiting the scope of the present application unless otherwise specifically stated, the present application will be described in detail.
[0024] The following description of at least one exemplary embodiment is merely exemplary in nature and is in no way intended to limit the scope of the present application, its application, or uses.
[0025] Techniques, methods, and devices known to those of ordinary skill in the relevant art can not be discussed in detail herein. However, where appropriate, techniques, methods, and devices should be considered part of the description of the present application.
[0026] In all examples shown and discussed herein, any specific values should be interpreted as merely exemplary and not limiting. Thus, other examples of the exemplary embodiments can have different values.
[0027] It should be noted that like reference numerals and letters refer to like items in the following drawings, and thus, once an item is defined in one drawing, it need not be discussed further in subsequent drawings.
[0028] The present disclosure provides an AR glasses, such as Figure 1As shown, the AR glasses 1000 can include a temple 1100, a frame 1200, and a connecting assembly 1300, the temple 1100 includes a first processing module 1110 and a first wireless communication module 1120, the frame 1200 includes a second processing module 1210 and a second wireless communication module 1220 used in cooperation with the first wireless communication module 1120. The temple 1100 is detachably connected with the frame 1200 through the connecting assembly 1300.
[0029] The connecting assembly 1300 is used for transmitting power signals between the temple 1100 and the frame 1200, and the first processing module 1110 and the second processing module 1210 perform data interaction through the first wireless communication module 1120 and the second wireless communication module 1220.
[0030] In this embodiment, the first wireless communication module 1120 and the second wireless communication module 1220 can communicate by using a set wireless communication protocol. For example, the wireless communication protocol can be, but is not limited to, a 60GHz wireless communication protocol.
[0031] The first processing module 1110 and the second processing module 1210 perform data interaction through the first wireless communication module 1120 and the second wireless communication module 1220, including: the first processing module 1110 sends first data to the first wireless communication module 1120; the first wireless communication module 1120 encapsulates according to the wireless communication protocol, and sends the encapsulated first data to the second wireless communication module 1220; the second wireless communication module 1220 receives the encapsulated first data, analyzes and processes the encapsulated first data according to the wireless communication protocol to obtain the first data, and sends the first data to the second processing module 1210.
[0032] In this embodiment, the first data can include any one of the following: a target picture to be displayed, user control data, a target audio to be played, sensor data, etc.
[0033] The first processing module 1110 and the second processing module 1210 perform data interaction through the first wireless communication module 1120 and the second wireless communication module 1220, and further include: the second processing module 1210 sends second data to the second wireless communication module 1220; the second wireless communication module 1220 encapsulates according to the wireless communication protocol, and sends the encapsulated second data to the first wireless communication module 1120; the first wireless communication module 1120 receives the encapsulated second data, analyzes and processes the encapsulated second data according to the wireless communication protocol to obtain the second data, and sends the second data to the first processing module 1110.
[0034] In the embodiment, the second data can include any of the following: an image collected by the image collection module, user control data, target audio to be played, sensor data, and the like.
[0035] In some embodiments, the temple 1100 includes a first positive power supply end and a first negative power supply end, the frame 1200 includes a second positive power supply end and a second negative power supply end, the first positive power supply end and the second positive power supply end are electrically connected through the connecting assembly 1300, and the first negative power supply end and the second negative power supply end are also electrically connected through the connecting assembly 1300, so that the positive power supply signal is transmitted between the first positive power supply end of the temple 1100 and the second positive power supply end of the frame 1200, and the negative power supply signal is transmitted between the first negative power supply end of the temple 1100 and the second negative power supply end of the frame 1200.
[0036] Through the embodiment, data interaction is performed between the temple and the frame through wireless communication, and the transmission of the power supply signal is also performed through the connecting assembly, so that a hardware basis can be provided for detachable connection between the temple and the frame, and the user can replace the temple of the AR glasses according to the own needs, thereby improving the user experience.
[0037] In some embodiments, the connecting assembly 1300 includes a first connecting piece and a second connecting piece that are insulated from each other, the first connecting piece is used to transmit the positive power supply signal, and the second connecting piece is used to transmit the negative power supply signal.
[0038] Specifically, the first positive power supply end of the temple 1100 and the second positive power supply end of the frame 1200 are electrically connected through the first connecting piece, and the first negative power supply end of the temple 1100 and the second negative power supply end of the frame 1200 are electrically connected through the second connecting piece.
[0039] In the embodiment, the transmission of the positive power supply signal and the negative power supply signal is realized through the first connecting piece and the second connecting piece that are insulated from each other, so that the mutual insulation between the positive power supply signal and the negative power supply signal can be ensured, and normal use of the AR glasses can be ensured.
[0040] In some embodiments, the temple 1100 further includes a battery 1130, the positive pole of the battery 1130 is electrically connected with the first connecting piece, and the negative pole of the battery 1130 is electrically connected with the second connecting piece.
[0041] In some embodiments, the AR glasses include two temples, and the battery 1130 can be arranged on one of the two temples or on both of the two temples.
[0042] Through the embodiment, the battery can supply power to both the temple and the frame.
[0043] In some embodiments, the temple 1100 is rotatably connected with the frame 1200 through the connecting assembly 1300.
[0044] Through the embodiment, the temple and the frame can be folded at the connecting assembly, which facilitates the storage of the AR glasses.
[0045] In some embodiments, the first connecting member and the second connecting member are both pivots.
[0046] The pivot of the embodiment can be in any form, which is not limited in the embodiment.
[0047] In some embodiments, the connecting assembly 1300 is configured to transmit the power supply signal when the temple 1100 is unfolded, and stop transmitting the power supply signal when the temple 1100 is folded.
[0048] In one embodiment, the first connecting member can include a first connecting end and a second connecting end, the first connecting end of the first connecting member is configured to be electrically connected with the first positive power supply end of the temple 1100, and the second connecting point of the first connecting member is configured to be electrically connected with the second positive power supply end of the frame 1200. When the temple 1100 is unfolded, the first connecting end and the second connecting point of the first connecting member are connected in conduction; when the temple 1100 is folded, the connection between the first connecting end and the second connecting point of the first connecting member is disconnected. In this way, the first connecting member can transmit the positive power supply signal when the temple 1100 is unfolded, and stop transmitting the positive power supply signal when the temple 1100 is folded.
[0049] In one embodiment, the second connecting member can include a first connecting end and a second connecting end, the first connecting end of the second connecting member is configured to be electrically connected with the first negative power supply end of the temple 1100, and the second connecting point of the second connecting member is configured to be electrically connected with the second negative power supply end of the frame 1200. When the temple 1100 is unfolded, the first connecting end and the second connecting point of the second connecting member are connected in conduction; when the temple 1100 is folded, the connection between the first connecting end and the second connecting point of the second connecting member is disconnected. In this way, the second connecting member can transmit the negative power supply signal when the temple 1100 is unfolded, and stop transmitting the negative power supply signal when the temple 1100 is folded.
[0050] In the embodiment, when the temple is folded, the user has no need to use the AR glasses, and if the user wants to use the AR glasses, the temple needs to be unfolded. Therefore, the connecting assembly stops transmitting the power supply signal when the temple is folded, which can reduce the power consumption of the AR glasses and does not affect the normal use of the AR glasses.
[0051] In some embodiments, the frame 1200 further comprises a display component, the first processing module 1110 is configured to transmit a target picture to be displayed to the first wireless communication module 1120, the first wireless communication module 1120 is configured to perform encapsulation processing on the target picture based on a wireless communication protocol, and send the encapsulated target picture to the second wireless communication module 1220, the second wireless communication module 1220 is configured to perform analysis processing on the encapsulated target picture based on the wireless communication protocol, obtain the target picture, and send the target picture to the second processing module 1210, the second processing module 1210 is configured to control the display component to display the target picture.
[0052] In some embodiments, the frame 1200 further comprises an image acquisition module, the image acquisition module is configured to acquire an external image; the second processing module 1210 is configured to send the external image to the first processing module 1110 through the first wireless processing module 1120 and the second wireless processing module 1220, and the first processing module 1110 is configured to generate a target picture according to the external image.
[0053] In the present embodiment, the second processing module 1210 is configured to send the external image to the first processing module 1110 through the first wireless processing module 1120 and the second wireless processing module 1220, which can include that the second processing module 1210 sends the external image to the second wireless processing module 1220, the second wireless processing module 1220 performs encapsulation processing on the external image based on a wireless communication protocol, and sends the encapsulated external image to the first wireless processing module 1120, the first wireless processing module 1120 performs analysis processing on the encapsulated external image based on the wireless communication protocol, obtains the external image, and sends the external image to the first processing module 1110.
[0054] In some embodiments, as shown in Figure 2 The frame 1200 further comprises a first frame 1200-1 and a second frame 1200-2, and the second wireless communication module 1220 comprises a first wireless communication unit 1221 configured to be used in cooperation with the first wireless communication module 1120-1 of the first frame 1200-1, and a second wireless communication unit 1222 configured to be used in cooperation with the first wireless communication module 1120-2 of the second frame 1200-2.
[0055] The first processing module 1110-1 and the second processing module 1210 of the first frame 1200-1 perform data interaction through the first wireless communication module 1120-1, the first wireless communication unit 1221 of the first frame 1200-1; the first processing module 1110-2 and the second processing module 1210 of the second frame 1200-2 perform data interaction through the first wireless communication module 1120-2, the second wireless communication unit 1222 of the second frame 1200-2.
[0056] In the embodiment, the first temple 1100-1 is detachably connected with the frame 1200 through the connecting assembly 1300-1, and the second temple 1100-2 is detachably connected with the frame 1200 through the connecting assembly 1300-2.
[0057] Through the embodiment, the data interaction between the two temples is performed through wireless communication, and the power supply signal is also transmitted through the connecting assembly, so that a hardware basis is provided for the detachable connection between the temples and the frame, and the user can replace the temples of the AR glasses according to the own needs, thereby improving the user experience.
[0058] In some embodiments, the first temple 1100-1 further includes a control module configured to receive control data of a user, the first processing module 1110-1 of the first temple 1100-1 is configured to send the control data to the second processing module 1210 through the first wireless communication module 1120-1 and the first wireless communication unit 1221 of the first temple 1100-1, the second processing module 1210 is configured to send the control data to the first processing module 1110-2 of the second temple 1100-2 through the second wireless communication unit 1222 and the first wireless communication module 1120-2 of the second temple 1100-2, and the first processing module 1110-2 of the second temple 1100-2 is configured to adjust a picture displayed by the AR glasses according to the control data.
[0059] In the embodiment, the control data can include touch data of the user on an operation button or a switch key, can include gesture operation of the user on a touch area, and can include Hall data indicating whether the user wears the AR glasses.
[0060] In some embodiments, the first temple 1100-1 further includes a first audio playing module, the second temple 1100-2 further includes a second audio playing module, the first processing module 1110-2 of the second temple 1100-2 is configured to send target audio of a first channel to the second processing module 1210 through the first wireless communication module 1120-2 and the second wireless communication unit 1222 of the second temple 1100-2, and control the second audio playing module to play target audio of a second channel; the second processing module 1210 is configured to send the target audio of the first channel to the first processing module 1110-1 of the first temple 1100-1 through the first wireless communication unit 1211 and the first wireless communication module 1120-1 of the first temple 1100-1, and the first processing module 1110-1 of the first temple 1100-1 is configured to control the first audio playing module to play the target audio of the first channel.
[0061] The above has described various embodiments of the present application, the above description is exemplary, not exhaustive, and is not limited to the disclosed embodiments. Many modifications and changes are obvious to those skilled in the art without departing from the scope and spirit of the described embodiments. The selection of terms used herein is intended to best explain the principles of the embodiments, practical applications, or improvements in the technology in the market, or to enable other ordinary skilled in the art to understand the embodiments disclosed herein. The scope of the present application is defined by the appended claims.
Claims
1. An AR glass, characterized by, The glasses frame comprises a first processing module and a first wireless communication module, and the glasses frame comprises a second processing module and a second wireless communication module cooperating with the first wireless communication module; the glasses leg is detachably connected with the glasses frame through the connecting assembly; The connecting assembly is also used for transmitting power signals between the glasses leg and the glasses frame; The first processing module and the second processing module interact with each other through the first wireless communication module and the second wireless communication module.
2. The AR glasses of claim 1, wherein, The connecting assembly comprises a first connecting piece and a second connecting piece which are insulated from each other, the first connecting piece is used for transmitting positive power signals, and the second connecting piece is used for transmitting negative power signals.
3. The AR glasses of claim 2, wherein, The glasses leg further comprises a battery, the positive electrode of the battery is electrically connected with the first connecting piece, and the negative electrode of the battery is electrically connected with the second connecting piece.
4. The AR glasses of claim 2, wherein, The glasses leg is rotatably connected with the glasses frame through the connecting assembly.
5. The AR glasses of claim 4, wherein, The first connecting piece and the second connecting piece are both rotating shafts.
6. The AR glasses of claim 4, wherein, The connecting assembly is used for transmitting the power signals when the glasses leg is unfolded and stopping transmitting the power signals when the glasses leg is folded.
7. The AR glasses of claim 1, wherein, The glasses frame further comprises a display assembly, the first processing module is used for transmitting a target picture to be displayed to the first wireless communication module, the first wireless communication module is used for performing encapsulation processing on the target picture based on a wireless communication protocol and sending the encapsulated target picture to the second wireless communication module, the second wireless communication module is used for performing analysis processing on the encapsulated target picture based on the wireless communication protocol, and the second processing module is used for controlling the display assembly to display the target picture.
8. The AR glasses of claim 7, wherein, The glasses frame further comprises an image acquisition module, the image acquisition module is used for acquiring external images, the second processing module is used for sending the external images to the first processing module through the first wireless communication module and the second wireless communication module, and the first processing module is used for generating the target picture according to the external images.
9. The AR glasses of claim 1, wherein, The glasses leg comprises a first glasses leg and a second glasses leg, the second wireless communication module comprises a first wireless communication unit cooperating with the first wireless communication module of the first glasses leg and a second wireless communication unit cooperating with the first wireless communication module of the second glasses leg; The first processing module of the first glasses leg and the second processing module interact with each other through the first wireless communication module of the first glasses leg and the first wireless communication unit, and the first processing module of the second glasses leg and the second processing module interact with each other through the first wireless communication module of the second glasses leg and the second wireless communication unit.
10. The AR glasses of claim 9, wherein, The first temple further comprises a control module configured to receive control data of a user, and the first processing module of the first temple is configured to send the control data to the second processing module through the first wireless communication module of the first temple and the first wireless communication unit, the second processing module is configured to send the control data to the first processing module of the second temple through the second wireless communication unit and the first wireless communication module of the second temple, and the first processing module of the second temple is configured to adjust a picture displayed by the AR glasses according to the control data.