Temple, frame and smart glasses

Through the removable temple design, the problem of excessive weight of smart glasses and the inability to wear them separately after removal of temples is solved, achieving the effect of reducing weight and improving convenience.

WO2025152478A1PCT designated stage expired Publication Date: 2025-07-24HUAWEI TECH CO LTD
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Patent Information

Application Number
PCT/CN2024/118319
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-01-17
Filing Date
2024-09-11
Publication Date
2025-07-24

AI Technical Summary

Technical Problem

The existing smart glasses are heavier, and the user has a poor experience after wearing them for a long time. Moreover, the frame cannot be worn separately after the temples are removed, which brings inconvenience to users.

Method used

A temple structure is designed so that it can be detached into a first temple part and a second temple part. The first temple part can be detached and connected to the second temple part. The electronic unit is arranged in the first temple part. The user can remove the first temple part as needed to reduce weight. The second temple part can still be clamped to the ear part, and the mirror frame can continue to be worn and used.

Benefits of technology

By disassembling the first temple part, the weight of the smart glasses is reduced, and the wearing comfort and convenience of use is improved. Users can continue to wear without installing new temples, which enhances the convenience of using smart glasses.

✦ Generated by Eureka AI based on patent content.

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    Figure CN2024118319_24072025_PF_FP_ABST
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Abstract

A temple (100), a frame (400) and smart glasses (500). The temple (100) comprises a first temple part (1) and a second temple part (2) arranged on the outer side of the first temple part (1), wherein the first temple part (1) is provided with a first electronic unit (41), and comprises a front temple segment (121) and a rear temple segment (122) which are connected to each other, the rear temple segment (122) and the second temple part (2) being held on a user's ear when the smart glasses (500) are worn. A front end (21) of the second temple part (2) is configured to connect to one end of a lens frame (200) of the smart glasses (500), and the first temple part (1) is detachably connected to the second temple part (2). Alternatively, the end of the front temple segment (121) of the first temple part (1) away from the rear temple segment (122) is configured to connect to one end of the lens frame (200) of the smart glasses (500), the second temple part (2) is connected to the front temple segment (121), at least part of the first electronic unit (41) is arranged on the rear temple segment (122), and the rear temple segment (122) is detachably connected to the front temple segment (121) and / or the second temple part (2). Part of the temple (100) can be detached according to requirements in order to reduce weight and improve the user's wearing experience; in addition, the smart glasses can still be worn after said detachment, and are thus convenient to use.
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Description

Temples, frames and smart glasses

[0001] This application claims priority to the Chinese patent application filed with the China Patent Office on January 17, 2024, with application number: 202420119429.1 and application name: “Temples, frames and smart glasses”, the entire contents of which are incorporated by reference into this application. Technical Field

[0002] The present application relates to the technical field of smart glasses, and in particular to a pair of temples, a frame and smart glasses. Background Art

[0003] With the development of technology, smart glasses are gradually becoming part of people's daily lives. Smart glasses typically consist of a frame, lenses, and two temples. The lenses are mounted in the frame, and the temples are hinged at the ends of the frame, clamping around the user's ears when worn. The temples and frame of smart glasses can be equipped with electronic units such as speakers, batteries, and processing devices to transmit information such as audio and virtual images to the user and interact with the user. These electronic units are heavy, making the smart glasses heavier overall, and users may experience discomfort after wearing them for extended periods of time.

[0004] Furthermore, to accommodate different head shapes and circumferences and meet aesthetic requirements, some manufacturers have designed detachable temples for smart glasses, allowing users to replace them as needed. However, once the temples are removed, new temples must be reattached to the frames before the smart glasses can be worn again, making them less convenient to use.

[0005] It can be seen that in the prior art, smart glasses are heavy, and users have a poor experience after wearing them for a long time. In addition, after the temples are removed, the frame cannot be worn alone, which brings inconvenience to users.

[0006] Summary of the Invention

[0007] The embodiments of the present application provide temples, frames and smart glasses, which solve the problems in the prior art that smart glasses are heavy, resulting in a poor user experience after long-term wearing, and that the frames cannot be worn alone after the temples are removed, causing inconvenience to the user.

[0008] An embodiment of the present application provides a temple for smart glasses, including a first temple portion and a second temple portion arranged on the outside of the first temple portion, the first temple portion is provided with a first electronic unit, and includes a front leg segment and a rear leg segment connected to each other, the rear leg segment and the second temple portion are clamped on the user's ear when the smart glasses are worn.

[0009] The front end of the second temple portion is used to connect to one end of the frame of the smart glasses, and the first temple portion is detachably connected to the second temple portion. Alternatively, the end of the front leg section of the first temple portion away from the rear leg section is used to connect to one end of the frame of the smart glasses, the second temple portion is connected to the front leg section, and at least a portion of the first electronic unit is disposed in the rear leg section, and the rear leg section is detachably connected to the front leg section and / or the second temple portion.

[0010] The temples provided in the embodiment of the present application include two parts. The second temple portion is connected to the frame, and the first temple portion as a whole can be detached from the second temple portion. The first electronic unit is installed in the first temple portion. When the user does not need to use the smart functions of the smart glasses, the first temple portion as a whole can be removed from the second temple portion, thereby reducing the weight of the smart glasses and improving the wearing comfort of the user. At this time, the second temple portion is still connected to the frame and can be clamped to the user's ear. The user can continue to wear and use the smart glasses as ordinary glasses without having to install new temples, thereby improving the convenience of using the smart glasses.

[0011] Alternatively, the front leg section of the first temple portion is connected to the frame, and the second temple portion is connected to the front leg section of the first temple portion, that is, the second temple portion is indirectly connected to the frame via the front leg section of the first temple portion. The rear leg section of the first temple portion is detachable relative to the front leg section and the second temple portion. All or part of the first electronic unit is installed in the rear leg section of the first temple portion, and the user can remove the rear leg section from the front leg section and the second temple portion. At this time, the second temple portion is connected to the frame via the front leg section and can be clamped to the user's ear, so that the smart glasses can be worn and used by the user as ordinary glasses without the need to install a new structure, thereby improving the convenience of using the smart glasses. After removing the rear leg section, the weight of the smart glasses is reduced, which improves the wearing comfort of the user.

[0012] Therefore, the temples provided in the embodiments of the present application can be partially disassembled as needed to reduce weight and improve the user's wearing experience, and the temples can continue to be worn after disassembly, which is convenient to use.

[0013] In some embodiments, the second temple portion is disposed on a first side of the first temple portion. When the smart glasses are worn, the first side of the first temple portion is the side of the first temple portion facing the user's head. When the smart glasses are worn, the first temple portion is disposed on a side of the second temple portion away from the user's head, making it easier for the user to remove or install the glasses when wearing them.

[0014] In some embodiments, the first side of the first temple portion is inwardly recessed to form a groove, and the groove extends along the length of the first temple portion, and the second temple portion is locked in the groove. The second temple portion is disposed in the groove of the first temple portion, making the temple width smaller and the structure more compact, thereby improving user wearing comfort and enhancing aesthetics.

[0015] In some embodiments, at least one magnetic element is provided on the bottom surface of the groove, and a magnetically attracted element is provided on the second temple portion corresponding to the at least one magnetic element. The at least one magnetic element and the corresponding magnetically attracted element are attracted to each other, so that the entire first temple portion is detachably connected to the second temple portion, or only the rear leg section of the first temple portion is detachably connected to the second temple portion. The magnetic connection allows a user to quickly and conveniently remove or install the first temple portion or the rear leg section of the first temple portion.

[0016] In some embodiments, the at least one magnetic member is configured as a plurality of magnetic members spaced apart along the extending direction of the groove, with the magnetically attracted member formed by the second temple portion. This provides for greater connection strength and reliability. The magnetically attracted member formed by the second temple portion eliminates the need for a separate magnetic member, simplifies the temple structure, and reduces both weight and cost.

[0017] In some embodiments, the groove includes a first groove portion and a second groove portion connected to each other, the first groove portion being located on a first side of the front leg section, and the second groove portion being located on a first side of the rear leg section. The second temple portion is clamped in the first and second groove portions, and the front end portion of the second temple portion is slidably connected to the first groove portion along the extension direction of the first groove portion, so that the second temple portion can slide relative to the front leg section in a direction closer to or away from the frame to adjust the length of the temple. Different temple lengths can be adapted to different user head shapes, making it easier for users to adjust the temple to a length that suits them.

[0018] In some embodiments, the first electronic unit includes a main circuit board, a processing device integrated with the main circuit board, a battery, and an audio device.

[0019] In some embodiments, when the end of the front leg segment away from the rear leg segment is used to connect with one end of the frame: the first electronic unit includes a first sub-electronic unit integrated in the front leg segment and a second sub-electronic unit integrated in the rear leg segment.

[0020] The first temple portion also includes an electrical connection device, which includes a first electrical connection portion and a second electrical connection portion that are correspondingly arranged. The first electrical connection portion is arranged at an end portion of the front leg segment facing the rear leg segment and is electrically connected to the first sub-electronic unit. The second electrical connection portion is arranged at an end portion of the rear leg segment facing the front leg segment and is electrically connected to the second sub-electronic unit.

[0021] When the rear leg segment is connected to the front leg segment, the first electrical connection part is electrically connected to the corresponding second electrical connection part, and the first sub-electronic unit is electrically connected to the second sub-electronic unit through the electrical connection device. When the rear leg segment is separated from the front leg segment, the first electrical connection part is electrically disconnected from the corresponding second electrical connection part.

[0022] By adopting the above solution, electrical signal conduction between the first sub-electronic unit and the second sub-electronic unit can be achieved without setting wiring between the front leg segment and the rear leg segment, thereby improving the flexibility and convenience of disassembling or installing the rear leg segment relative to the front leg segment.

[0023] In some embodiments, when the first electronic unit includes a main circuit board, a processing device integrated in the main circuit board, and a battery and an audio device, the main circuit board and the processing device constitute at least part of the first sub-electronic unit, and the battery and the audio device constitute at least part of the second sub-electronic unit. The main circuit board and the processing device are arranged in the front leg section, which is convenient for electrical connection with the frame through wiring to realize functions such as augmented reality (AR). The weight of the battery and the audio device is relatively heavy. Setting them in the rear leg section is conducive to removing them from the rear leg section when the user does not need to use the smart function to reduce the weight of the temple and improve the user's wearing comfort. In addition, the number of pins required for the connection between the battery and the audio device and the main circuit board and the processing device is relatively small, and they can be electrically connected to the first sub-electronic unit in the front leg section through the electrical connection device.

[0024] In some embodiments, the first electrical connection portion includes at least one first sub-electrical connection portion, the second electrical connection portion includes at least one second sub-electrical connection portion, and the first sub-electrical connection portion and the second sub-electrical connection portion are arranged correspondingly.

[0025] One end portion of the front leg segment and the rear leg segment facing each other is fixed and detachably connected by at least one snap-fit ​​structure. Each snap-fit ​​structure in at least one snap-fit ​​structure includes a snap-fit ​​groove and a boss snapped into the snap-fit ​​groove. One of the snap-fit ​​groove and the boss is located in the rear leg segment, and the other is located in the front leg segment.

[0026] With this solution, at least one first sub-electrical connection portion corresponds to at least one second sub-electrical connection portion, and there may be multiple sub-electrical connections, ensuring the integrity of signal transmission. The snap-fit ​​structure prevents the front and rear leg segments from becoming detached after connection, ensuring the stability of the connection.

[0027] In some embodiments, the at least one snap-fit ​​structure is two snap-fit ​​structures, and the electrical connection device is located between the two snap-fit ​​structures.

[0028] In some embodiments, the end surfaces of the front leg segment and the rear leg segment facing each other are configured as oblique planes, and the oblique planes are inclined relative to the cross-section of the first temple portion, wherein the cross-section of the first temple portion is perpendicular to the length of the first temple portion. The oblique planes have a larger area relative to the cross-section, and the larger area facilitates the arrangement of the first sub-electrical connection portion, the second sub-electrical connection portion, and the snap structure.

[0029] In some embodiments, when the first temple portion is detachably connected to the second temple portion, an electrical connection portion is provided at an end of the first temple portion away from the frame, the electrical connection portion being electrically connected to the first electronic unit. The electrical connection portion is provided at the end of the first temple portion to facilitate charging.

[0030] In some embodiments, the first temple portion is made of plastic, and the second temple portion is made of metal. The plastic construction of the first temple portion reduces costs, and the light weight of plastic reduces the weight of the body, facilitating the placement of the first electronic unit therein. The metal construction of the second temple portion not only enhances durability but also allows it to directly form the magnetically attracted component, eliminating the need for a separate magnetically attracted component on the second temple portion, thereby reducing weight and costs.

[0031] The present application also provides a frame comprising a frame and at least one temple, wherein at least a portion of the at least one temple is provided as provided in any of the above embodiments. The frame provided in the present application has a portion of the temple detachably connected to another portion of the temple, allowing the user to remove the portion of the temple to reduce the weight of the frame while still being able to wear the frame.

[0032] In some embodiments, the spectacles frame is provided with a second electronic unit, and the second electronic unit includes a display unit capable of displaying images.

[0033] When the first electronic unit includes a first sub-electronic unit integrated into the front leg segment and a second sub-electronic unit integrated into the rear leg segment, the first sub-electronic unit is electrically connected to the second electronic unit.

[0034] The second electronic unit is arranged on the frame, and the first sub-electronic unit is electrically connected to the second electronic unit, so that the data, video and other signals sent by the main circuit board and processing device in the first sub-electronic unit can be transmitted to the second electronic unit and received by the user.

[0035] In some embodiments, at least one temple is two temples, and each of the two temples is a temple provided in any of the above embodiments.

[0036] A frame wiring is provided in the frame, and the second electronic unit is electrically connected to the frame wiring.

[0037] The first sub-electronic unit located on each temple can be electrically connected to the second electronic unit located on the frame via the frame wiring, and the first sub-electronic units located on two temples can be electrically connected to each other via the frame wiring.

[0038] The present application also provides smart glasses, comprising lenses and the frame provided by any of the above embodiments, wherein the lenses are fixed to the frame of the frame. The smart glasses provided by the present application can be conveniently removed in whole or in part by removing the first temple portion when the user does not need the smart function, thereby reducing weight and improving wearing comfort. BRIEF DESCRIPTION OF THE DRAWINGS

[0039] FIG1 is a schematic diagram of the three-dimensional structure of smart glasses with the temples and frame separated;

[0040] FIG2 a is a top view of a first embodiment of the smart glasses according to an embodiment of the present application, wherein the first temple portion is in an installed state;

[0041] FIG2 b is a top view of the first embodiment of the eyeglass frame according to an embodiment of the present application, wherein the first temple portion is in a disassembled state;

[0042] FIG2 c is a schematic diagram of the three-dimensional structure of the first embodiment of the eyeglass frame according to an embodiment of the present application, wherein a first temple portion is in a disassembled state;

[0043] FIG3 is a schematic diagram of the exploded structure of a first embodiment of the temple of the present application;

[0044] FIG4 is a schematic diagram of the three-dimensional structure of the first temple portion in the first embodiment of the temple of the embodiment of the present application;

[0045] FIG5 a is a top view of a second embodiment of the smart glasses according to an embodiment of the present application, wherein the rear leg section is in an installed state;

[0046] FIG5 b is a top view of a second embodiment of the eyeglass frame according to an embodiment of the present application, wherein the rear leg section is in a disassembled state;

[0047] FIG5 c is a schematic perspective view of the second embodiment of the eyeglass frame according to the present application, wherein the rear leg section is in a disassembled state;

[0048] FIG6 a is a schematic diagram of the exploded structure of a second embodiment of the temple of the present application;

[0049] FIG6 b is a schematic diagram of the three-dimensional structure of the second embodiment of the temple of the embodiment of the present application;

[0050] FIG6c is a schematic diagram of the cross-sectional structure of FIG6b along the AA direction;

[0051] FIG7 is a schematic diagram of the three-dimensional structure of the rear leg section in the second embodiment of the temple of the embodiment of the present application;

[0052] FIG8 a is a side view of a second embodiment of a temple according to an embodiment of the present application;

[0053] FIG8 b is a side view of a third embodiment of the temple of the present application.

[0054] Description of reference numerals:

[0055] One solution:

[0056] 10', smart glasses; 11', frame; 12', lenses; 13', temples.

[0057] This application:

[0058] 100, temples;

[0059] 1. First temple portion; 11. First side; 121. Front temple segment; 122. Back temple segment;

[0060] 13. Groove; 131. Bottom surface; 1321. First groove portion; 1322. Second groove portion;

[0061] 2. Second temple portion; 21. Front end portion; 22. Rear end portion;

[0062] 311, magnetic attraction member; 312, magnetically attracted member; 32, buckle structure; 321, slot; 322, boss;

[0063] 41, first electronic unit; 411, first sub-electronic unit; 412, second sub-electronic unit; 42, second electronic unit;

[0064] 51. Electrical connection portion; 511. Sub-electrical connection portion;

[0065] 52. Electrical connection device; 521. First electrical connection portion; 5211. First sub-electrical connection portion;

[0066] 522, second electrical connection portion; 5221, second sub-electrical connection portion;

[0067] 200, frame; 300, lens; 400, frame; 500, smart glasses;

[0068] L, length direction of the first temple portion; M1, oblique plane; M2, oblique plane; N, cross section. DETAILED DESCRIPTION

[0069] The following specific embodiments illustrate the implementation of the present application. Those skilled in the art can easily understand other advantages and effects of the present application from the contents disclosed in this specification. Although the description of the present application will be introduced in conjunction with some embodiments, this does not mean that the features of this application are limited to the implementation. On the contrary, the purpose of introducing the application in conjunction with the implementation is to cover other options or modifications that may be extended based on the claims of the present application. In order to provide an in-depth understanding of the present application, the following description will contain many specific details. The present application can also be implemented without using these details. In addition, in order to avoid confusion or blurring the focus of the present application, some specific details will be omitted in the description. It should be noted that the embodiments in the present application and the features in the embodiments can be combined with each other unless there is a conflict.

[0070] It should be noted that in this specification, similar reference numerals and letters denote similar items in the following drawings, and therefore, once an item is defined in one drawing, it does not need to be further defined or explained in subsequent drawings.

[0071] In the description of this application, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," "outer," "top," "bottom," and the like, indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings and are intended only to facilitate the description of this application and simplify the description. They do not indicate or imply that the devices or components referred to must have a specific orientation, be constructed, or operate in a specific orientation. Therefore, they should not be construed as limiting this application. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0072] In the description of this application, it should be noted that, unless otherwise expressly specified or limited, the terms "mounted," "connected," and "connected" should be understood in a broad sense. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections or electrical connections; direct connections or indirect connections through an intermediate medium; and internal connections between two components. Those skilled in the art will understand the specific meanings of the above terms in this application based on the specific circumstances.

[0073] In the description of this application, it should be understood that "electrical connection" in this application can be understood as physical contact and electrical conduction between components; it can also be understood as a form of connection between different components in a circuit structure through physical lines such as printed circuit board (PCB) copper foil or wires that can transmit electrical signals.

[0074] In the description of this application, it should be noted that the term "perpendicular" in this application does not mean absolute perpendicularity. Approximate perpendicularity due to processing errors and assembly errors (for example, an angle of 89.9° between two structural features) is also within the scope of "perpendicular" in this application. The term "parallel" in this application does not mean absolute parallelism. Approximate parallelism due to processing errors and assembly errors (for example, an angle of 0.1° between two structural features) is also within the scope of "parallel" in this application. This application does not make any specific restrictions on this.

[0075] In order to make the objectives, technical solutions and advantages of this application clearer, the implementation methods of this application will be further described in detail below with reference to the accompanying drawings.

[0076] Please refer to FIG1 , which is a schematic diagram of the three-dimensional structure of smart glasses with the temples and frame separated.

[0077] As shown in Figure 1, smart glasses 10' typically include a frame 11', a lens 12', and two temples 13'. The lens 12' is mounted in the frame 11', and one end of the two temples 13' is hinged to the two ends of the frame 11' and can be clamped to the user's ears, allowing the user to wear the smart glasses 10' on the head. The temples 13' and frame 11' of the smart glasses 10' can be equipped with electronic units (not shown in the figure), such as speakers, batteries, a main circuit board, and a processing device. This allows the smart glasses 10' to transmit information to the user and interact with the user, enabling functions such as augmented reality (AR). However, due to the weight of these electronic units, the weight of the smart glasses 10' is greater than that of ordinary glasses. For example, ordinary glasses that users wear daily can be relatively thin and can be as light as 10-20g, while the lightest smart glasses 10' currently on the market weigh approximately 35g. Users may experience discomfort after wearing the smart glasses 10' for an extended period of time.

[0078] In addition, to adapt to different users' head shapes and head circumferences, as well as to meet aesthetic requirements, some manufacturers design the connection between the temples 13' and the frame 11' to be detachable, allowing users to replace different temples 13' according to their needs. However, after the temples 13' are removed from the frame 11' (as shown in FIG. 1 ), new temples 13' must be reinstalled on the frame 11' to continue wearing the smart glasses 10'. Otherwise, the frame 11' cannot be worn. If the user wants to replace the temples 13', they need to carry multiple pairs of temples 13', which makes the smart glasses 10' less portable.

[0079] It can be seen that in the prior art, smart glasses are heavy, and users have a poor experience after wearing them for a long time. In addition, after the temples are removed, the frame cannot be worn alone, which brings inconvenience to users.

[0080] In order to solve the above technical problems, an embodiment of the present application provides a temple. Through structural improvement, one part of the temple can be disassembled relative to the other part to reduce weight, and the user can continue to wear the glasses after disassembly.

[0081] The present application also provides smart glasses. The smart glasses may be, but are not limited to, smart glasses with audio functionality, or smart glasses with display functionality, such as virtual reality (VR) glasses, augmented reality (AR) glasses, and mixed reality (MR) glasses. This application will specifically describe the structure of the smart glasses with only audio functionality and with display functionality.

[0082] Please refer to Figures 2a-2c, Figure 2a is a top view of the first embodiment of the smart glasses of the embodiment of the present application, wherein the first temple portion is in an installed state; Figure 2b is a top view of the first embodiment of the frame of the embodiment of the present application, wherein the first temple portion is in a disassembled state; Figure 2c is a schematic diagram of the three-dimensional structure of the first embodiment of the frame of the embodiment of the present application, wherein one first temple portion is in a disassembled state.

[0083] As shown in FIG2a , the smart glasses 500 include a frame 400 and lenses 300. The frame 400 includes a frame 200 and temples 100. It should be noted that the frame 400 may include two temples 100, or may include only one temple 100, and this is not a limitation in this application. As shown in FIG2b-2c , the frame 400 in this application is illustrated as having two temples 100. The lenses 300 are mounted on the frame 200, and the ends of the two temples 100 are respectively connected to the left and right ends of the frame 200. In one embodiment, the temples 100 can rotate relative to the frame 200 (e.g., they can be hinged to the frame 200), allowing the smart glasses 500 to switch between an open state and a folded state. When the smart glasses 500 are in the open state as shown in FIG2a , the temples 100 are angled relative to the frame 200, allowing the temples 100 to be clamped to the user's ears, making them easier to wear. In one embodiment, when the smart glasses 500 are in the open state, the angle between the temples 100 and the frame 200 is 90°. It should be noted that the angles illustrated in this application are all allowed to have slight deviations. For example, when the smart glasses 500 are in the open state, the angle between the temples 100 and the frame 200 can be 90°, or approximately 90°, such as 85°, 87°, 93°, or 95°, and other angles will be understood similarly hereinafter. When the smart glasses 500 are switched to the folded state (not shown in the figure), the angle between the temples 100 and the frame 200 is approximately 0°, and the two temples 100 and the frame 200 are stacked in sequence, making it easier to store the smart glasses 500 in a glasses case.

[0084] The frame 400 provided by the present application has at least one temple that adopts the temple 100 provided by the present application, and the user can disassemble it as needed to reduce the overall weight of the frame 400. It should be noted that when the frame 400 is provided with two temples, both temples can adopt the temple 100 provided by the present application, or only one temple can adopt the temple 100 provided by the present application, and the other temple does not adopt the temple 100 provided by the present application. When both temples adopt the temple 100 provided by the present application, the structures of the two temples 100 can be exactly the same or different (for example, one temple 100 adopts the structure shown in Figure 3, and the other temple 100 adopts the structure shown in Figure 6a). The temple 100 provided by the present application is described in detail below in conjunction with the accompanying drawings.

[0085] Please refer to Figures 3-4. Figure 3 is a schematic diagram of the decomposed structure of the first embodiment of the temple of the embodiment of the present application; Figure 4 is a schematic diagram of the three-dimensional structure of the first temple part in the first embodiment of the temple of the embodiment of the present application.

[0086] As shown in FIG3 , and in conjunction with FIG2a - FIG2c , the temple 100 includes a first temple portion 1 and a second temple portion 2 disposed outside the first temple portion 1. The outside of the first temple portion 1 refers to the exterior of the housing of the first temple portion 1. The first temple portion 1 is provided with a first electronic unit 41 (see FIG4 ; in one example, the first electronic unit 41 is located within the first temple portion 1, indicated by a dotted box. Alternatively, the first electronic unit 41 may be disposed outside the first temple portion 1, or a portion of the electronic components of the first electronic unit 41 may be disposed inside the first temple portion 1 and another portion of the electronic components of the first electronic unit 41 may be disposed outside the first temple portion 1, although this is not limited in this application). This enables certain intelligent functions of the smart glasses 500, such as audio output, AR display, VR display, information prompts, and charging and discharging. The first temple portion 1 includes a connected front leg segment 121 and a rear leg segment 122. The front leg segment 121 can be understood as the section of the first temple portion 1 that is closest to the frame 200. The rear leg section 122 can be understood as the section of the first temple portion 1 away from the frame 200. That is, when the user wears the temple 100, the first temple portion 1 is close to the user's ear along the length direction L of the first temple portion. Both the rear leg section 122 and the second temple portion 2 can be clamped to the user's ear. As shown in Figure 3, the front leg section 121 and the rear leg section 122 can adopt an integrated structure, or it can be understood that the first temple portion 1 is integrated. As shown in Figures 5a to 5c, the front leg section 121 and the rear leg section 122 can also adopt a split structure, or it can be understood that the first temple portion 1 is divided into two independent temple sections (i.e., the front leg section 121 and the rear leg section 122). It should be noted that the length direction L of the first temple portion can be understood as the extension path direction of the first temple portion 1, for example, the bending direction of the first temple portion 1 as shown in Figure 3.

[0087] The temples 100 provided herein can be detachably connected to one another. As shown in Figures 2b-3 , in one embodiment, the first temple portion 1 is entirely detachably connected to the second temple portion 2 , and the front end 21 of the second temple portion 2 is connected to one end of the frame 200 of the smart glasses 500 . Alternatively, a portion of the first temple portion 1 is detachably connected to the second temple portion 2 (as shown in the structure of FIG6 a , which will be further expanded upon in the following text). It can be understood that the front leg section 121 and the rear leg section 122 of the first temple portion 1 are split, the front leg section 121 is connected to one end of the frame 200, the second temple portion 2 is connected to the front leg section 121, and the rear leg section 122 is detachably connected to the front leg section 121 and the second temple portion 2 (it should be noted that the rear leg section 122 may also be detachably connected only to the front leg section 121, but may be brought closer to or even in contact with the second temple portion 2, or may be separated from the front leg section 121. Alternatively, the rear leg section 122 may also be detachably connected only to the second temple portion 2, but may be in contact with or separated from the front leg section 121), and at least a portion of the electronic components of the first electronic unit 41 are disposed in the rear leg section 122. The two schemes will be described in detail below.

[0088] The temple 100 provided in the present application includes two parts. Among them, the second temple part 2 is connected to the frame 200, and the first temple part 1 as a whole can be disassembled from the second temple part 2. The first electronic unit is installed in the first temple part 1. When the user does not need to use the smart functions of the smart glasses 500, the first temple part 1 can be removed from the second temple part 2 as a whole, thereby reducing the weight of the smart glasses 500 and improving the wearing comfort of the user. At this time, the second temple part 2 is still connected to the frame 200 and can be clamped on the user's ear. The user can continue to wear and use the smart glasses 500 as ordinary glasses without installing new temples, thereby improving the convenience of using the smart glasses 500.

[0089] Alternatively, the front leg section 121 of the first temple portion 1 is connected to the frame 200, and the second temple portion 2 is connected to the front leg section 121 of the first temple portion 1, that is, the second temple portion 2 is indirectly connected to the frame 200 via the front leg section 121 of the first temple portion 1. The rear leg section 122 of the first temple portion 1 is detachable relative to the front leg section 121 and the second temple portion 2. All or part of the first electronic unit is installed in the rear leg section 122 of the first temple portion 1. The user can remove the rear leg section 122 from the front leg section 121 and the second temple portion 2. In this case, the second temple portion 2 is connected to the frame 200 via the front leg section 121 and can be clamped to the user's ear, allowing the smart glasses 500 to be worn and used as ordinary glasses without the need to install new structures, thereby improving the convenience of using the smart glasses 500. After removing the rear leg section 122, the weight of the smart glasses 500 is reduced, improving the wearing comfort of the user.

[0090] Therefore, the temple 100 provided in the embodiment of the present application can be partially disassembled as needed to reduce weight and improve the user's wearing experience, and can continue to be worn after disassembly, which is convenient to use.

[0091] Those skilled in the art will understand that the key to reducing the weight of the smart glasses 500 of the present application lies in the disassembly of the first temple portion 1. As for whether to disassemble part of the first temple portion 1 or the entire portion, which electronic units are arranged in the disassembled portion, and how to perform structural connection and signal transmission with the non-detachable portion, all of these can be flexibly designed according to product needs. The present application does not impose any restrictions on this. The following is a detailed introduction to the solutions of "disassembling the entire first temple portion 1" and "disassembling part of the first temple portion 1" respectively.

[0092] As shown in Figures 2b to 3, in one embodiment, the first temple portion 1 is detachably connected to the second temple portion 2 as a whole. Specifically, the first temple portion 1 is integral, that is, an integral structure is adopted between the front leg section 121 and the rear leg section 122. The front end portion 21 of the second temple portion 2 is hinged to one end of the frame 200, so that the second temple portion 2 can rotate relative to the frame 200. In an alternative embodiment, the second temple portion 2 can also be fixedly connected to the frame 200, which is not limited in this application. The first temple portion 1 is detachably connected to the second temple portion 2. The first temple portion 1 and the second temple portion 2 can be assembled together through the connection structure therebetween and together form the temple 100. At this time, the first electronic unit provided in the first temple portion 1 can provide the user with intelligent functions (for example, providing the user with audio functions). When the user does not need to use the smart functions of the smart glasses 500, the first temple portion 1 can be completely detached from the second temple portion 2 to reduce weight and improve wearing comfort. The user can then continue to wear the frame 200 and use the lenses 300 by connecting the second temple portion 2 to the frame 200. Furthermore, the detached first temple portion 1 can be stored in the charging compartment for charging, thereby improving convenience and efficiency of use.

[0093] As shown in FIG2b , in one embodiment, the second temple portion 2 is disposed on the first side 11 of the first temple portion 1. The first side 11 of the first temple portion 1 can be understood as the side of the first temple portion 1 facing the user's head when the smart glasses 500 are worn, or the side of the first temple portion 1 facing the frame 200 when the smart glasses 500 are in a folded state. When the smart glasses 500 are worn, the first temple portion 1 is located on the side of the second temple portion 2 away from the user's head, making it easy for the user to remove or install the glasses when wearing them.

[0094] As shown in Figures 2c and 4, in one embodiment, the first temple portion 1 is provided with a groove 13 to facilitate assembly with the second temple portion 2. The groove 13 is formed inwardly from the surface of the first side 11 of the first temple portion 1 and extends along the length direction L of the first temple portion. Its shape matches that of the second temple portion 2. It will be understood that when the first temple portion 1 and the second temple portion 2 are assembled together, the second temple portion 2 is retained within the groove 13. In the depth direction of the groove 13, the second temple portion 2 may be partially embedded in the groove 13, or may be fully embedded in the groove 13. This is not limited in this application.

[0095] In one embodiment, after the first temple portion 1 and the second temple portion 2 are assembled, the second temple portion 2 is completely embedded in the groove 13 in the depth direction of the groove 13, so that the second temple portion 2 can be hidden by the first temple portion 1. This not only improves the appearance, but also reduces the width of the temple 100, making it easier to clamp around the user's ear and improving wearing comfort. The width of the temple 100 can be understood as the width of the temple 100 in the length direction L perpendicular to the first temple portion.

[0096] It should be noted that the present application does not limit the positional relationship between the first temple portion 1 and the second temple portion 2. In other alternative embodiments, the second temple portion 2 may not be arranged on the first side 11 of the first temple portion 1, nor may it be arranged in the groove 13. The present application does not limit this.

[0097] As shown in Figures 2c and 4, in one embodiment, the bottom surface 131 of the groove 13 is provided with a magnetic component 311, wherein the number of the magnetic components 311 is not limited, and can be 1, 2, 4, 8, etc., and this application does not limit this. The second temple portion 2 is correspondingly provided with a magnetic component 312. When the first temple portion 1 and the second temple portion 2 are assembled, the magnetic component 311 and the magnetic component 312 are attracted to each other, so that there is a certain binding force (i.e., magnetic attraction) between the first temple portion 1 and the second temple portion 2. When the user wants to remove the first temple portion 1, the magnetic component 311 and the magnetic component 312 can be easily separated by applying external force, thereby achieving convenient disassembly.

[0098] It should be noted that at least one of the magnetic element 311 and the magnetically attracted element 312 may be made of a magnetic material. For example, one of the magnetic element 311 and the magnetically attracted element 312 may be made of a magnetic material, and the other may be made of a metal material that is attracted to the magnetic material (e.g., stainless steel, nickel, cobalt, etc.). Alternatively, both the magnetic element 311 and the magnetically attracted element 312 may be made of a magnetic material. The specific type of magnetic material is not limited and may include a permanent magnet, an electromagnet, etc., and this application does not impose any restrictions on this.

[0099] In one embodiment, the magnetic member 311 is configured as a magnetic material, such as a permanent magnet. The second temple portion 2 is made of a metal material that can be attracted by magnetic materials, such as stainless steel. It is understood that in this case, the magnetic member 312 is directly formed by the second temple portion 2 without the need for additional components, which can simplify the structure of the temple 100 and reduce the weight and cost of the temple 100. In other alternative embodiments, the magnetic member 312 can also be provided on the side surface of the second temple portion 2 facing the first temple portion 1.

[0100] In one embodiment, a plurality of magnetic members 311 are arranged at intervals along the extension direction of the groove 13 , and the plurality of magnetic members 311 ensures the reliability of the connection.

[0101] Those skilled in the art will appreciate that the first temple portion 1 and the second temple portion 2 may also be assembled and disassembled through other connection structures, such as a snap-fit ​​structure, etc., which is not limited in this application.

[0102] As shown in Figure 4, in one embodiment, a first electronic unit 41 is disposed within the first temple portion 1. Those skilled in the art will appreciate that the first electronic unit 41 is comprised of electronic components to enable certain intelligent functions of the smart glasses 500. The electronic components of the first electronic unit 41 include, but are not limited to, a main circuit board (not shown), a processing device integrated into the main circuit board (not shown), a battery (not shown), and an audio device (not shown, which may be, for example, a speaker). The processing device can generate control signals to process information and execute user commands. The battery can power other electronic components in the first electronic unit 41. When the frame 200 and lens 300 are equipped with electronic units, the battery can also be electrically connected to power them. The audio device includes a speaker. In one embodiment, the audio device is disposed within the rear temple portion 122, such that it is close to the user's ear when the first temple portion 1 is worn. It should be noted that the aforementioned electronic components can all be known in the art and will not be described in detail here. When the frame 400 includes two temples 100, the electronic components included in the first electronic unit 41 in the two temples 100 can be the same or different.

[0103] As shown in FIG4 , in one embodiment, an electrical connection portion 51 is provided at one end of the rear leg section 122 of the first temple portion 1 away from the front leg section 121. It can be understood that the electrical connection portion 51 is provided at the tail end of the first temple portion 1. The electrical connection portion 51 is electrically connected to the first electronic unit 41, and the battery in the first electronic unit 41 can be charged through the electrical connection portion 51. The electrical connection portion 51 includes sub-electrical connection portions 511. The number of sub-electrical connection portions 511 is not limited and can be 1, 2, 4, etc., and this application does not impose any restrictions on this. In one embodiment, the number of sub-electrical connection portions 511 is 2. In one embodiment, the glasses case of the smart glasses 500 is used as a charging device. When the first temple portion 1 is disassembled, it can be charged separately without affecting the use of other parts of the smart glasses 500, thereby improving efficiency.

[0104] It will be appreciated by those skilled in the art that if the first temple portion 1 is detachable as a whole, all electronic components of the first electronic unit 41 therein can be detached, thereby achieving the best weight reduction effect. However, this solution is more suitable for smart glasses 500 without a display function (e.g., smart glasses with only an audio function). Since smart glasses with a display function require an optical engine to be installed on the frame 200, and the optical engine needs to be connected to electronic units such as a processor and a battery in the temple 100, if the first temple portion 1 is detachable as a whole, it is difficult to electrically connect the optical engine to other electronic units in the temple 100. Therefore, the following structure can be adopted, in which the first temple portion 1 is designed to be split, with only a portion being detachable and the remaining portion being used to connect to the electronic units in the frame 200.

[0105] Please refer to Figures 5a to 6a. Figure 5a is a top view of the second embodiment of the smart glasses of the embodiment of the present application, wherein the rear leg section is in an installed state; Figure 5b is a top view of the second embodiment of the frame of the embodiment of the present application, wherein the rear leg section is in a disassembled state; Figure 5c is a schematic diagram of the three-dimensional structure of the second embodiment of the frame of the embodiment of the present application, wherein the rear leg section is in a disassembled state; Figure 6a is a schematic diagram of the decomposed structure of the second embodiment of the temple of the embodiment of the present application.

[0106] As shown in Figures 5a-6a, in one embodiment, a portion of the first temple portion 1 is detachably connected to the second temple portion 2. Specifically, the front leg end and rear leg section 122 of the first temple portion 1 are separate, and the connection between them is detachable. The rear leg section 122 of the first temple portion 1 is detachably connected to the front leg section 121 and the second temple portion 2. As shown in Figure 5c, in one embodiment, the groove 13 on the first temple portion 1 includes a first groove portion 1321 and a second groove portion 1322, wherein the first groove portion 1321 is located on the first side 11 of the front leg section 121, and the second groove portion 1322 is located on the first side 11 of the rear leg section 122. The end of the front leg section 121 away from the rear leg section 122 is hingedly connected to one end of the frame 200, allowing the front leg section 121 to rotate relative to the frame 200. In an alternative embodiment, the front leg section 121 can also be fixedly connected to one end of the frame 200, which is not limited in this application. The front end portion 21 of the second temple portion 2 is snap-fitted and slidably connected to the first groove portion 1321, thereby indirectly connecting to the frame 200 and the smart glasses 500. The rear end portion 22 of the second temple portion 2 can be snap-fitted into the second groove portion 1322, allowing the rear leg segment 122 to be assembled onto the second temple portion 2. In an alternative embodiment, the second temple portion 2 can be fixedly connected to the front leg segment 121, and no displacement occurs between the second temple portion 2 and the front leg segment 121 in the length direction L of the first temple portion.

[0107] Those skilled in the art will appreciate that the user can remove the rear leg section 122 from the second temple portion 2 as needed, and continue to wear the frame 200 and use the lens 300 through the second temple portion 2 and the front leg section 121 .

[0108] As shown in FIG6a , in one embodiment, a portion of the electronic components in the first electronic unit 41 are disposed in the rear leg section 122, so that after the rear leg section 122 is disassembled, the weight of the temple 100 can be significantly reduced, thereby improving the user's wearing experience. In one embodiment, the first electronic unit 41 includes a first sub-electronic unit 411 integrated into the front leg section 121 and a second sub-electronic unit 412 integrated into the rear leg section 122, wherein the main circuit board and the processing device constitute at least a portion (which can be understood as part or the entirety) of the first sub-electronic unit 411, and the battery and the audio device constitute at least a portion (which can be understood as part or the entirety) of the second sub-electronic unit 412. The first sub-electronic unit 411 and the second sub-electronic unit 412 may also include other electronic components, which is not limited in this application.

[0109] Those skilled in the art will appreciate that some smart glasses (e.g., VR glasses) need to transmit information to the user's eyes, and therefore, an electronic unit is also required within the frame 200. As shown in Figure 5b, in one embodiment, the frame 200 is provided with a second electronic unit 42, which includes a display unit capable of displaying images, allowing the user to receive image information. For example, optical engines (not shown) are provided at the left and right ends of the frame 200. The optical engines can transmit image information to the lenses 300 to be displayed, and the lenses 300 can display the image information transmitted by the optical engines, allowing the image information to be viewed by the user. The second electronic unit 42 can be electrically connected to the main circuit board and processing device via wiring to transmit signals. The main circuit board and processing device are disposed in the front leg section 121, which is hinged to the frame 200. The front leg section 121 generally does not need to be detached from the frame 200. This facilitates the provision of an electrical wiring connection between the frame 200 and the front leg section 121, eliminating the need for the user to repeatedly install the components, thereby improving convenience. The battery and audio device are relatively heavy, and the electrical connection between them and the main circuit board and processing device requires a simple structure, which can be achieved through pins. Therefore, placing the battery and audio device in the second sub-electronics unit 412 located in the rear leg section 122 facilitates weight reduction after the rear leg section 122 is removed, and facilitates electrical connection with the first sub-electronics unit 411 located in the front leg section 121. In other alternative embodiments, the entire first electronic unit 41 can also be located in the rear leg section 122, which is not limited in this application.

[0110] As shown in Figures 5a-5c, in one embodiment, both temples 100 of the frame 400 employ a structure in which the rear leg section 122 is detachably connected to the second temple portion 2 and the front leg section 121. In each temple 100, the first sub-electronics unit 411 located in the front leg section 121 is electrically connected to the second electronic unit 42 located in the frame 200 via wiring. This allows data, video, and other signals generated by the main circuit board and processing device in the first sub-electronics unit 411 to be transmitted to the second electronic unit 42 and received by the user. The first sub-electronics units 411 located in each temple 100 are electrically connected via wiring in the frame 200, enabling signal transmission between the two first sub-electronics units 411. Furthermore, signals emitted by the first sub-electronics unit 411 on one temple 100 can be transmitted to the second sub-electronics unit 412 on the other temple 100. In one example, to further reduce the weight of the smart glasses 500, only the first sub-electronic unit 411 on one of the temples 100 does not include a main circuit board and a processing device, while the first sub-electronic unit 411 on the other temple 100 includes a main circuit board and a processing device integrated into the main circuit board. The first sub-electronic units 411 located on the two temples 100 are electrically connected via the frame 200, allowing the audio device (belonging to the second sub-electronic unit 412) in one temple 100 to communicate with the processing device on the other temple 100. In an alternative embodiment, the first sub-electronic unit 411 on one of the two temples 100 is electrically connected to the second electronic unit 42 in the frame 200, while the first sub-electronic unit 411 on the other temple is not electrically connected to the second electronic unit 42. This is not limited in this application.

[0111] As shown in FIG5c , in one embodiment, the first temple portion 1 is provided with an electrical connection device 52. The electrical connection device 52 includes a first electrical connection portion 521 disposed at one end of the front leg section 121 facing the rear leg section 122, and a second electrical connection portion 522 disposed at one end of the rear leg section 122 facing the front leg section 121. It will be understood that the first electrical connection portion 521 is electrically connected to the first sub-electronics unit 411, and the second electrical connection portion 522 is electrically connected to the second sub-electronics unit 412, with the first electrical connection portion 521 and the second electrical connection portion 522 being provided in correspondence with each other. When the rear leg section 122 is connected to the front leg section 121, the first electrical connection portion 521 and the second electrical connection portion 522 are electrically connected, electrically connecting the first sub-electronics unit 411 to the second sub-electronics unit 412 via the electrical connection device 52, enabling signal transmission between the two sub-electronics units. Furthermore, the battery disposed in the second sub-electronics unit 412 can power electronic components, such as the processing device, disposed in the first sub-electronics unit 411. When the rear leg section 122 is removed from the second temple portion 2 and separated from the front leg section 121, the electrical connection between the first electrical connection portion 521 and the second electrical connection portion 522 is disconnected, the electronic components of the first sub-electronic unit 411 are in a power-off state, and the smart glasses 500 can only be used as ordinary glasses.

[0112] In one embodiment, the first electrical connection portion 521 includes at least one first sub-electrical connection portion 5211, and the second electrical connection portion 522 includes at least one second sub-electrical connection portion 5221. It should be noted that the first sub-electrical connection portion 5211 and the second sub-electrical connection portion 5221 are provided in a one-to-one correspondence. In one embodiment, there are four first sub-electrical connection portions 5211 and four second sub-electrical connection portions 5221, which is the minimum number of pins required to connect the battery and audio device to the main circuit board and processing device. In other alternative embodiments, there may be more first sub-electrical connection portions 5211 and second sub-electrical connection portions 5221, such as six or eight, to accommodate more electronic devices and achieve more functions.

[0113] In one embodiment, the electrical connection between the first sub-electrical connection portion 5211 and the corresponding second sub-electrical connection portion 5221 is an elastic electrical connection. When extrusion occurs between the front leg segment 121 and the rear leg segment 122 along the length direction L of the first temple portion or in a direction roughly parallel to the length direction L of the first temple portion, there is a certain floating displacement between the first sub-electrical connection portion 5211 and the corresponding second sub-electrical connection portion 5221, which can eliminate the extrusion force generated by the extrusion, avoid hard damage between the two, and ensure the stability of the electrical contact. In one embodiment, each first sub-electrical connection portion 5211 of the first electrical connection portion 521 adopts an elastic probe structure. In other alternative embodiments, a non-elastic electrical connection can also be adopted between the first sub-electrical connection portion 5211 and the second sub-electrical connection portion 5221.

[0114] Please refer to Figures 6b-7, Figure 6b is a schematic diagram of the three-dimensional structure of the second embodiment of the temple of the embodiment of the present application; Figure 6c is a schematic diagram of the cross-sectional structure of Figure 6b along the AA direction; Figure 7 is a schematic diagram of the three-dimensional structure of the rear leg section in the second embodiment of the temple of the embodiment of the present application.

[0115] As shown in Figures 5c, 6b-7, in one embodiment, a snap-fit ​​structure 32 is provided at one end of the front leg segment 121 and the rear leg segment 122, which are arranged facing each other. When the rear leg segment 122 is assembled with the front leg segment 121, the two are fixed and detachably connected via the snap-fit ​​structure 32. The number of snap-fit ​​structures 32 is not limited, and can be 1, 2, 4, etc., and this application does not impose any restrictions on this. When multiple snap-fit ​​structures 32 are provided, the arrangement of the snap-fit ​​structures 32 is not limited. Each snap-fit ​​structure 32 includes a slot 321 and a boss 322 that snaps into the slot 321. One of the slot 321 and the boss 322 is located in the rear leg segment 122, and the other is located in the front leg segment 121.

[0116] In one embodiment, two snap-fit ​​structures 32 are provided at one end of the front leg section 121 and the rear leg section 122, which are arranged facing each other. The two snap-fit ​​structures 32 are spaced apart in an upper and lower arrangement, and the electrical connection device 52 is located between the two snap-fit ​​structures 32. The slot 321 of each snap-fit ​​structure 32 is located in the front leg section 121, and the boss 322 is located in the rear leg section 122. When the rear leg section 122 is assembled with the second temple portion 2, the boss 322 on the rear leg section 122 inserts into the corresponding slot 321 on the front leg section 121, so that the front leg section 121 and the rear leg section 122 do not produce relative displacement in any direction, thereby ensuring that the front leg section 121 and the rear leg section 122 are not easily disengaged, thereby improving the stability of the connection. In other alternative embodiments, the snap-fit ​​structure 32 may not be provided between the front leg section 121 and the rear leg section 122, and the stability of the connection may be improved by using other connection structures.

[0117] As shown in FIG7 , in one embodiment, the end surfaces of the rear leg segment 122 and the front leg segment 121 facing each other are configured as oblique planes (e.g., oblique plane M1 on the front leg segment 121 and oblique plane M2 on the rear leg segment 122 in FIG6 a ). The oblique planes M1 and M2 can be understood as planes inclined relative to the cross-section N of the first temple portion 1, wherein the cross-section N of the first temple portion 1 is perpendicular to the length direction L of the first temple portion. The areas of the oblique planes M1 and M2 are larger than the area of ​​the cross-section N, which facilitates the arrangement of the first sub-electrical connection portion 5211, the second sub-electrical connection portion 5221, and the buckle structure 32.

[0118] Please refer to Figures 8a-8b, Figure 8a is a side view of the second embodiment of the temple of the embodiment of the present application; Figure 8b is a side view of the third embodiment of the temple of the embodiment of the present application.

[0119] As shown in FIG8a-8b , in one embodiment, when the rear leg section 122 is assembled with the front leg section 121 and the second temple portion 2, the second temple portion 2 is engaged with the first groove portion 1321 and the second groove portion 1322, and the front end portion 21 of the second temple portion 2 is slidably connected to the first groove portion 1321 along the extension direction of the first groove portion 1321, so that the second temple portion 2 can slide relative to the front leg section 121 along the length direction L of the first temple portion to move closer to or away from the end of the front leg section 121 away from the rear leg section 122, thereby adjusting the length of the temple 100. The user can adjust the length of the front end portion 21 of the second temple portion 2 in the first groove portion 1321 according to their needs, and then purchase rear leg sections 122 of different lengths so that the rear end portion 22 of the second temple portion 2 is engaged with the end of the second groove portion 1322 away from the front leg section 121 along its extension direction.

[0120] In one embodiment, the material of the first temple portion 1 is plastic. The light weight of plastic is conducive to reducing the weight of the temple 100 and improving the wearing comfort of the user. In addition, the use of plastic to make the first temple portion 1 facilitates the arrangement of the first electronic unit 41 inside the first temple portion 1. In addition, plastic has the advantage of a variety of colors, which can improve the aesthetics of the temple 100. The material of the second temple portion 2 is metal, such as stainless steel. On the one hand, the second temple portion 2 is generally not disassembled from the frame 200, and the use of metals such as stainless steel makes it durable. On the other hand, some metal materials are magnetic, so that the second temple portion 2 can directly constitute the magnetically attracted part 312 without the need for additional settings, which can reduce weight and save costs. The first temple portion 1 and the second temple portion 2 can also be made of other suitable materials, which is not limited in this application.

[0121] Obviously, those skilled in the art may make various changes and modifications to this application without departing from the spirit and scope of this application. Thus, if these modifications and variations of this application fall within the scope of the claims of this application and their equivalents, this application is intended to include these modifications and variations.

Claims

1. A temple for smart glasses, characterized in that, The temple includes a first temple part and a second temple part disposed outside the first temple part. The first temple part is provided with a first electronic unit and includes a front leg segment and a rear leg segment that are connected. The rear leg segment and the second temple part are clamped on the user's ear when the smart glasses are worn; wherein, The front end of the second temple part is used to connect to one end of the frame of the smart glasses, and the first temple part is detachably connected to the second temple part; or, The end of the front leg segment of the first temple part away from the rear leg segment is used to connect to one end of the frame of the smart glasses, the second temple part is connected to the front leg segment, at least part of the first electronic unit is disposed in the rear leg segment, and the rear leg segment is detachably connected to the front leg segment and / or the second temple part.

2. The temple according to claim 1, characterized in that The second temple part is disposed on the first side of the first temple part. When the smart glasses are worn, the first side of the first temple part is the side of the first temple part facing the user's head.

3. The temple according to claim 2, characterized in that, A groove is formed by inward depression on the first side of the first temple part, and the groove extends along the length direction of the first temple part. The second temple part is clamped in the groove.

4. The temple according to claim 3, wherein At least one magnetic attracting member is disposed on the bottom surface of the groove, and a magnetizable member corresponding to the at least one magnetic attracting member is provided on the second temple part. The at least one magnetic attracting member and the corresponding magnetizable member are attracted to each other, so that the whole of the first temple part is detachably connected to the second temple part, or only the rear leg segment of the first temple part is detachably connected to the second temple part.

5. The temple according to claim 4, wherein The at least one magnetic attracting member is arranged as a plurality of magnetic attracting members arranged at intervals along the extending direction of the groove, and the magnetizable member is constituted by the second temple part.

6. The temple according to claim 3, characterized in that, The groove includes a first groove part and a second groove part that are connected. The first groove part is located on the first side of the front leg segment, and the second groove part is located on the first side of the rear leg segment. The second temple part is clamped in the first groove part and the second groove part, and the front end of the second temple part is slidably connected to the first groove part along the extending direction of the first groove part, so that the second temple part can slide relative to the front leg segment in a direction close to or away from the frame to adjust the length of the temple.

7. The temple according to claim 1, characterized in that, The first electronic unit includes a main circuit board, a processing device integrated on the main circuit board, and a battery and an audio device.

8. The temple according to any one of claims 1 to 7, characterized in that, When the end of the front leg segment away from the rear leg segment is used to connect to one end of the frame: The first electronic unit includes a first sub-electronic unit integrated in the front leg segment and a second sub-electronic unit integrated in the rear leg segment; The first temple part further includes an electrical connection device, which includes correspondingly arranged first and second electrical connection parts. The first electrical connection part is arranged at one end of the front leg section facing the rear leg section and is electrically connected to the first sub-electronic unit. The second electrical connection part is arranged at one end of the rear leg section facing the front leg section and is electrically connected to the second sub-electronic unit; When the rear leg section is connected to the front leg section, the first electrical connection part is electrically connected to the corresponding second electrical connection part, and the first sub-electronic unit is electrically connected to the second sub-electronic unit through the electrical connection device. When the rear leg section is separated from the front leg section, the first electrical connection part is electrically disconnected from the corresponding second electrical connection part.

9. The temple according to claim 8, wherein, When the first electronic unit includes a main circuit board, a processing device integrated on the main circuit board, as well as a battery and an audio device, the main circuit board and the processing device constitute at least part of the first sub-electronic unit, and the battery and the audio device constitute at least part of the second sub-electronic unit.

10. The temple according to claim 8, characterized in that, The first electrical connection part includes at least one first sub-electrical connection part, and the second electrical connection part includes at least one second sub-electrical connection part. The first sub-electrical connection part and the second sub-electrical connection part are correspondingly arranged; One end of the front leg section and the rear leg section facing each other is fixed and detachably connected through at least one snap structure. Each snap structure in the at least one snap structure includes a slot and a boss clamped in the slot. One of the slot and the boss is located on the rear leg section, and the other is located on the front leg section.

11. The temple according to claim 10, characterized in that, The at least one snap structure is two snap structures, and the electrical connection device is located between the two snap structures.

12. The temple according to claim 8, characterized in that, The end faces of the front leg section and the rear leg section facing each other are arranged as inclined planes, and the inclined planes are inclined with respect to the cross-section of the first temple part, wherein the cross-section of the first temple part is perpendicular to the length direction of the first temple part.

13. The temple according to claim 1, wherein, When the first temple part is detachably connected to the second temple part, an electrical connection part is arranged at one end of the first temple part away from the frame, and the electrical connection part is electrically connected to the first electronic unit.

14. The temple according to any one of claims 1 to 7, characterized in that The material of the first temple part is plastic, and the material of the second temple part is metal.

15. A spectacle frame, comprising a spectacle frame body and at least one temple, characterized in that, At least part of at least one temple adopts the temple according to any one of claims 1 to 14.

16. The spectacle frame according to claim 15, characterized in that, The frame is provided with a second electronic unit, and the second electronic unit includes a display unit capable of displaying images; When the first electronic unit includes a first sub-electronic unit integrated in the front leg section and a second sub-electronic unit integrated in the rear leg section, the first sub-electronic unit is electrically connected to the second electronic unit.

17. The spectacle frame according to claim 16, characterized in that, The at least one temple is two temples, and each of the two temples adopts the temple according to any one of claims 1 to 14; A frame wiring is arranged in the frame, and the second electronic unit is electrically connected to the frame wiring; The first sub-electronic unit located on each of the temple arms can be electrically connected to the second electronic unit located on the frame through wiring in the frame, and the first sub-electronic units located on the two temple arms can be electrically connected through wiring in the frame.

18. An intelligent glasses, characterized in that, It includes a lens and a frame as described in any one of claims 15 to 17, and the lens is fixed to the frame of the frame.

Citation Information

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