Intelligent glasses

By setting up accommodation space and avoidance space in the smart glasses, the flat cable can pass through smoothly, solving the problem of unstable cable transmission in smart glasses and improving data transmission volume and stability.

CN222850814UActive Publication Date: 2025-05-09HISENSE VISUAL TECH CO LTD
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Patent Information

Application Number
CN202421829893.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-30
Publication Date
2025-05-09
Estimated Expiration
2034-07-30

AI Technical Summary

Technical Problem

The existing smart glasses lack structural design to install flat cables so that they can be smoothly worn from the mirror to the temples, resulting in insufficient data transmission and transmission stability.

Method used

By providing the first and second accommodation spaces between the mirror body and temples of the smart glasses, and forming a withdrawal space using the spacing between the two rotation axes, the flat cable can extend from the first accommodation space through the withdrawal space to the second accommodation space, connecting the electronic components in the mirror body and temples.

Benefits of technology

The transmission amount and transmission stability of cable transmission data are improved, making the data transmission between electronic components of smart glasses more stable and efficient.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a pair of intelligent glasses, which comprises a glasses body in which a first accommodating space is formed; a second accommodating space is formed in the glasses leg; the connecting assembly comprises a first hinge base fixedly connected with the glasses body and a second hinge base fixedly connected with the glasses legs, at least part of the first hinge base is contained in the first containing space, and at least part of the second hinge base is contained in the second containing space; the first hinge base and the second hinge base are rotationally connected through two rotating shafts, so that the glasses legs can rotate relative to the glasses body in the axis direction of the rotating shafts to be in an unfolded state or a folded state; the two rotating shafts are coaxially arranged, a gap is formed between the two rotating shafts, so that an avoiding space for avoiding the cable to penetrate through is formed, and the cable extends into the second containing space from the first containing space through the avoiding space. According to the invention, the problem that the flat cable penetrates out of the glasses body to the glasses legs can be solved, so that the data transmission quantity and transmission stability of the cable in the intelligent glasses are improved.
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Description

Technical Field

[0001] The present application relates to the technical field of wearable devices, and in particular to a pair of smart glasses. Background Art

[0002] Smart glasses are a kind of wearable device that has an independent operating system like a smartphone and can realize various functions by installing software. They are easy to use and have a strong sense of technology, and are deeply loved by technology enthusiasts. Smart glasses can usually use AR (augmented reality) technology or MR (mixed reality) technology as a carrier to realize corresponding functions.

[0003] The overall structure of smart glasses is similar to that of traditional glasses, and generally includes a body and temples rotatably connected to the body, and various electronic components are placed on both the body and the temples. In consideration of product lightweight and weight uniformity, more electronic components can be placed on the temples, so that the electronic components of the body and temples need to meet more data transmission requirements and greater stability requirements, so flat cables are needed to ensure stable and large-scale data transmission of the electronic components between the body and temples, but existing smart glasses lack the corresponding structural design to install flat cables so that they can smoothly pass from the body to the temples. Utility Model Content

[0004] The purpose of this application is to solve the above-mentioned problems and other problems.

[0005] The purpose of this application is also to solve the problem of the flat cable extending from the lens body to the temple, so as to improve the transmission volume and transmission stability of smart glasses data.

[0006] The purpose of the present application is not limited to the above-mentioned purpose, and those skilled in the art can clearly understand other purposes not mentioned through the following description.

[0007] The smart glasses of the present application for achieving the above-mentioned purpose include: a lens body.

[0008] A first accommodating space may be formed in the mirror body.

[0009] The smart glasses include temples, which can be arranged on one side of the lens body.

[0010] A second accommodating space may be formed in the temple.

[0011] The second accommodation space may be arranged opposite to the first accommodation space.

[0012] The second accommodating space and the first accommodating space may be open at one side facing the other side.

[0013] Smart glasses include a connected component.

[0014] The connecting assembly may include a first hinge base fixedly connected to the mirror body and a second hinge base fixedly connected to the mirror leg.

[0015] The first hinge base may be at least partially accommodated in the first accommodation space.

[0016] The second hinge base may be at least partially accommodated in the second accommodation space.

[0017] The first hinge base and the second hinge base can be rotatably connected via two rotating shafts, so that the temples can be rotated relative to the mirror body along the axis direction of the rotating shaft to be in an unfolded state or a folded state.

[0018] The two rotating shafts may be coaxially arranged, and there may be a gap between the two rotating shafts to form an escape space for allowing the cable to pass through, and the cable extends from the first accommodating space to the second accommodating space through the escape space.

[0019] One end of the first hinge base close to the temple can extend into the second accommodation space from the open side of the second accommodation space.

[0020] An escape opening may be provided on one end of the inner side surface of the temple close to the mirror body, and the escape opening is used to avoid the portion of the first hinge base extending into the second accommodating space in the rotation direction of the temple.

[0021] The end of the inner side surface of the mirror body can extend toward the direction of the mirror leg to form a covering portion extending into the avoidance opening.

[0022] The covering portion may protrude toward the direction where the escape space is located, so as to define an escape groove for the cable to pass through together with a portion of the first hinge base extending into the second accommodating space.

[0023] The cable may extend from the first accommodation space through the avoidance groove to the second accommodation space.

[0024] The mirror body may include a front shell and a rear shell.

[0025] The rear shell may be covered on the front shell to form the first accommodation space at the end of the lens body.

[0026] The first hinge base may be fixedly connected to the front housing.

[0027] The rear shell may extend toward the temple to form the covering portion.

[0028] The first hinge base may include a first base body and first side plates disposed on opposite sides of the first base body.

[0029] The first seat body may be fixedly connected to the front shell.

[0030] The first side panel may extend along the length direction of the temple.

[0031] A first positioning hole may be provided at one end of the first side plate close to the temple.

[0032] The second hinge base may include a second base body and second side plates disposed on opposite sides of the second base body.

[0033] The second seat body and the bottom wall of the second accommodating space may be fixedly connected.

[0034] The second side plate may extend along the length direction of the temple, and a second positioning hole is provided at one end of the second side plate close to the mirror body.

[0035] The portion of the first side plate where the first positioning hole is formed and the portion of the second side plate where the second positioning hole is formed may be arranged opposite to each other.

[0036] The rotating shaft can be rotatably connected to the first positioning hole and the second positioning hole, so that the first hinge base is hinged to the second hinge base.

[0037] The area between the two first side plates may form a receiving groove, and the cable portion is received in the receiving groove.

[0038] The smart glasses also include shrapnel.

[0039] One end of the elastic sheet may be fixed in the first accommodating space.

[0040] The other end of the elastic sheet can abut against the bottom wall of the second accommodating space when the temple is in the unfolded state, so as to exert a force on the temple to rotate it toward the folded state.

[0041] The first seat body can be fixed to the front shell by a first screw.

[0042] One end of the elastic sheet can be fixed to the first seat body by the first screw.

[0043] The second seat body can be fixed in the second accommodation space by a second screw.

[0044] The first hinge base may further include a first limiting portion connecting the two first side plates, and the first limiting portion is located in the second accommodating space.

[0045] The second hinge base may include a second limiting portion connecting the two second side plates, and when the temple is rotated to the unfolded state, the first limiting portion abuts against the second limiting portion to limit the temple from rotating outward relative to the temple body.

[0046] Beneficial effects:

[0047] In the present application, by setting the first accommodation space and the second accommodation space, the cable can be accommodated in the first accommodation space and the second accommodation space in a flat shape. By setting the spacing between the two rotating shafts, a wider avoidance space can be reserved, so that the avoidance space can be used to avoid the flat cable, so that the cable can pass through it, so that the cable can extend from the first accommodation space through the avoidance space to the second accommodation space, and the two ends of the cable can be connected to the electronic components located in the mirror body and the temple, respectively, so as to improve the transmission volume and transmission stability of the cable transmission data. BRIEF DESCRIPTION OF THE DRAWINGS

[0048] Figure 1 A schematic diagram of the structure of smart glasses according to some embodiments is shown;

[0049] Figure 2 shows a front view of smart glasses according to some embodiments;

[0050] Figure 3 Shows Figure 2 Sectional view in the AA direction;

[0051] Figure 4 Shows Figure 3 A partial enlarged view of point B in the middle;

[0052] Figure 5 A schematic diagram of the structure of smart glasses after the rear shell is hidden according to some embodiments is exemplarily shown;

[0053] Figure 6 An example is shown Figure 5 A partial enlarged view of point C in the middle;

[0054] Figure 7 The schematic diagram of the structure of the connection components in the smart glasses according to some embodiments is exemplarily shown;

[0055] Figure 8 The structure diagram of the first hinge base in the smart glasses according to some embodiments is exemplarily shown;

[0056] Fig. 9 A schematic diagram of the structure of a second hinge base in smart glasses according to some embodiments is exemplified.

[0057] Description of reference numerals:

[0058] Mirror body 1, front shell 11, rear shell 12, covering portion 13, protrusion 131, first accommodating space 14, temple 2, second accommodating space 21, avoidance opening 22, connecting component 3, first hinge base 31, first seat body 311, first side plate 312, first positioning hole 313, first screw 314, first limiting portion 315, accommodating groove 316, second hinge base 32, second seat body 321, second side plate 322, second positioning hole 323, second screw 324, second limiting portion 325, rotating shaft 33, avoidance space 34, cable 4, spring piece 5. DETAILED DESCRIPTION

[0059] In order to make the purpose and implementation method of the present application clearer, the exemplary implementation method of the present application will be clearly and completely described below in conjunction with the drawings in the exemplary embodiments of the present application. Obviously, the described exemplary embodiments are only part of the embodiments of the present application, rather than all the embodiments.

[0060] It should be noted that the brief description of terms in this application is only for the convenience of understanding the embodiments described below, and is not intended to limit the embodiments of this application. Unless otherwise specified, these terms should be understood according to their common and usual meanings.

[0061] The terms "first", "second", "third", etc. in the specification and claims of this application and the above drawings are used to distinguish similar or similar objects or entities, and do not necessarily mean to limit a specific order or sequence, unless otherwise noted. It should be understood that the terms used in this way can be interchangeable under appropriate circumstances.

[0062] The terms "including" and "having" and any variations thereof are intended to cover but not exclude inclusion, for example, a product or device comprising a list of components is not necessarily limited to all the components expressly listed but may include other components not expressly listed or inherent to such product or device.

[0063] The overall structure of smart glasses is similar to that of traditional glasses, and can generally include a body and temples rotatably connected to the body, and various electronic components are placed on both the body and the temples. In consideration of product lightweight and weight uniformity, more electronic components can be placed on the temples, so that more data transmission requirements and greater stability requirements need to be met between the electronic components of the body and the temples. Therefore, flat cables are required to ensure stable and large-scale data transmission of the electronic components between the body and the temples. However, existing smart glasses lack corresponding structural designs for installing flat cables so that they can smoothly pass through the body and into the temples. To solve this problem, the present application provides a kind of smart glasses.

[0064] For ease of description and understanding, the state of the smart glasses when worn is used as a reference, the direction of the smart glasses toward the human eye is the back, the direction away from the human eye is the front, and the width direction is the left and right direction.

[0065] See also Figures 1 to 4 A kind of smart glasses may include a lens body 1. The lens body 1 is the main structure of the smart glasses. The lens body 1 may be provided with two lens mounting positions along the left and right directions, and waveguide lenses may be respectively mounted on the two lens mounting positions, and the two waveguide lenses may be respectively located in front of the left eye and the right eye of the wearer for projecting a virtual image. It can be understood that, for ease of wearing, the two waveguide lenses are symmetrical about the center of the lens body 1, and a nose pad structure may be provided between the two waveguide lenses on the lens body 1 to support the smart glasses and make them more comfortable to wear.

[0066] In some embodiments, the smart glasses may include temples 2. The temples 2 may be arranged on one side of the lens body 1. Two temples 2 may be arranged, respectively located on the left and right sides of the lens body 1. The temples 2 are connected to the lens body 1 to form the basic structure of the smart glasses. When worn, the two temples 2 may be hung on the left ear or the right ear of the wearer. The temples 2 may be rotatably connected to the lens body 1 so that the temples 2 may be in an unfolded state or a folded state. When in the unfolded state, the angle between the temples 2 and the lens body 1 is the largest, so that the user can wear the glasses conveniently. When in the folded state, the temples 2 are folded at the rear side of the lens body 1, and the angle between the temples 2 and the lens body 1 is the smallest, so that the smart glasses can be stored conveniently when not worn.

[0067] In some embodiments, a first accommodating space 14 may be formed in the lens body 1 , and the first accommodating space 14 may extend to an end of the lens body 1 .

[0068] In some embodiments, a second accommodating space 21 may be formed in the temple 2, and the second accommodating space 21 may extend to the end of the temple 2. The second accommodating space 21 and the first accommodating space 14 are arranged opposite to each other, and the second accommodating space 21 and the first accommodating space 14 are open toward each other to facilitate the passage of the cable 4.

[0069] In some embodiments, the smart glasses may include a connection component 3. The connection component 3 may include a first hinge base 31. The first hinge base 31 is fixedly connected to the lens body 1, and the first hinge base 31 is at least partially accommodated in the first accommodating space 14. It can be fully accommodated in the first accommodating space 14, or partially accommodated in the first accommodating space 14 and partially extended from the first accommodating space 14. In this embodiment, the first hinge base 31 partially extends from the first accommodating space 14.

[0070] In some embodiments, the connecting assembly 3 may include a second hinge base 32. The second hinge base 32 is fixedly connected to the temple 2, and the second hinge base 32 is at least partially accommodated in the second accommodating space 21. It can be fully accommodated in the second accommodating space 21, or partially accommodated in the second accommodating space 21 and partially extended out of the second accommodating space 21. In this embodiment, the second hinge base 32 is fully accommodated in the second accommodating space 21, and the part of the first hinge base 31 extending out of the first accommodating space 14 extends into the second accommodating space 21 to cooperate with the second hinge base 32.

[0071] In some embodiments, the first hinge base 31 and the second hinge base 32 can be rotatably connected via two rotating shafts 33 , so that the temple 2 can be rotated relative to the lens body 1 along the axial direction of the rotating shaft 33 to be in an unfolded state or a folded state.

[0072] In some embodiments, the two rotating shafts 33 can be coaxially arranged, and there is a gap between the two rotating shafts 33 to form an escape space 34. By setting the gap between the two rotating shafts 33, the escape space 34 can be used to escape the cable 4 so that it can pass through it, so that the cable 4 can extend from the first accommodating space 14 to the second accommodating space 21 through the escape space 34, and the two ends of the cable 4 can be connected to the electronic components located in the mirror body 1 and the temple 2 respectively. For example, one end of the cable 4 can be electrically connected to the waveguide lens, and the other end can be electrically connected to the optical machine located in the temple 2, and the optical machine transmits data to the waveguide lens through the cable 4.

[0073] In some embodiments, by setting the first accommodating space 14 and the second accommodating space 21, the cable 4 can be partially accommodated therein, and by setting the first accommodating space 14, the second accommodating space 21 and the spacing between the two rotating shafts 33, there can be a larger space for the cable 4 to pass from the lens body 1 to the lens leg 2, so that the cable 4 can be flat to stabilize the transmission of a large amount of data.

[0074] In some embodiments, one end of the first hinge base 31 close to the temple 2 extends from the open side of the second accommodating space 21 into the second accommodating space 21, so that the hinged part of the first hinge base 31 and the second hinge base 32 is located in the second accommodating space 21, and the hinge part is shielded by the second accommodating space 21 to avoid being exposed and affecting the appearance.

[0075] In some embodiments, a clearance opening 22 may be provided at one end of the inner side of the temple 2 close to the mirror body 1. The clearance opening 22 is used to avoid the portion of the first hinge base 31 extending into the second accommodating space in the rotation direction of the temple 2. The size of the clearance opening 22 matches the portion of the first hinge base 31 extending into the second accommodating space 21. When the temple 2 rotates from the unfolded state to the folded state, the temple 2 does not interfere with the rotation of the first hinge base 31.

[0076] In some embodiments, a clearance opening 22 may be provided on the inner side surface of the lens body 1 near one end of the lens leg 2, and the second hinge base 32 extends into the first accommodating space 14 from the open side of the first accommodating space 14, so that the hinged portion of the first hinge base 31 and the second hinge base 32 is located in the first accommodating space 14, and the clearance opening 22 is used to avoid the rotation of the second hinge base 32.

[0077] In some embodiments, the end of the inner side surface of the lens body 1 can extend toward the direction of the temple 2 to form a covering portion 13, and the covering portion 13 extends into the avoidance opening 22 to cover the avoidance opening 22 to prevent the structure of the second accommodating space 21 from being exposed to the outside and affecting the appearance.

[0078] In some embodiments, the cover portion 13 may protrude toward the direction of the avoidance space 34 to form a raised portion 131, which together with the portion of the first hinge base 31 extending into the second accommodating space 21 defines an avoidance groove for the cable 4 to pass through. The cable 4 may extend from the first accommodating space 14 to the second accommodating space 21 through the avoidance groove. By forming the raised portion 131 between the two rotating shafts 33, the cable 4 may be confined in the avoidance groove when passing through the avoidance space 34, and the cable 4 may be limited to a certain position to prevent it from shaking. At the same time, the cable 4 may first pass through the avoidance space 34, and then the avoidance opening 22 may be blocked by the cover portion 13 to form an avoidance groove, and the avoidance groove does not affect the passage of the cable 4. Among them, the raised portion 131 may be a nearly hemispherical structure, which is smoother when in contact with the cable 4 and is not easy to damage the cable 4.

[0079] See also Figure 5 and Figure 6 In some embodiments, the mirror body 1 may include a front shell 11. Two lens mounting positions are arranged on the front shell 11. The mirror body 1 may also include a rear shell 12, which is covered on the front shell 11 to form the above-mentioned first accommodating space 14 at the end of the mirror body 1. Among them, the end side of the front shell 11 can be bent toward the direction of the temple 2 to facilitate connection with the temple 2. The first accommodating space 14 is formed at the end of the mirror body 1, so that the cable 4 can extend from the first accommodating space 14 to the direction of the temple 2, so as to extend to the second accommodating space 21 and connect with the electronic components on the temple 2. It can be understood that the front shell 11 can be a semi-enclosed structure with one end open, and its open end faces the rear shell 12 and is closed by the rear shell 12. The rear shell 12 and the front shell 11 can be connected by welding, clamping or bonding.

[0080] In some embodiments, the rear shell 12 extends toward the direction of the temple 2 to form the above-mentioned covering portion 13. The shading portion is formed by the rear shell 12, so that when rotating, it will not interfere with the temple 2, and can also well block the avoidance opening 22, thereby improving the beauty of the connection between the temple 2 and the lens body 1.

[0081] In some embodiments, the first hinge base 31 may be fixedly connected to the front housing 11 , and the first hinge base 31 may extend along the length direction of the front housing 11 .

[0082] Continue to see Figure 7 and Figure 8 In some embodiments, the first hinge base 31 may include a first base body 311. The first base body 311 is a portion where the first hinge base 31 and the front shell 11 are fixedly connected. The first base body 311 may be a columnar structure. When fixedly connected to the front shell 11, the first base body 311 may be fixed to the front shell 11 by a first screw 314, so that the first base body 311 and the front shell 11 are detachably connected, which is convenient for the rear installation of the first hinge base 31. The first screw 314 is provided through the corresponding positions of the first base body 311 and the front shell 11 to fix the two by screw connection.

[0083] In some embodiments, the first hinge base 31 may include a first side panel 312 disposed on opposite sides of the first base body 311. The first side panel 312 may extend along the length direction of the temple 2. It is to be understood that, here, along the length direction of the temple 2 refers to the length direction of the temple 2 when in the unfolded state. The first side panel 312 may be attached to two opposite side walls of the first accommodating space 14 to make the distance between the two larger, so as to facilitate the wider cable 4 to pass therethrough. Among them, the area between the two first side panels 312 forms a receiving groove 316, and the cable 4 is partially accommodated in the receiving groove 316, so that the cable 4 can be stored in the receiving groove 316, meeting the passage requirements of the flat cable 4.

[0084] In some embodiments, a first positioning hole 313 may be provided at one end of the first side plate 312 close to the temple 2 , and the first positioning hole 313 may be used to connect with the rotating shaft 33 so that the rotating shaft 33 is rotatably connected to the first side plate 312 .

[0085] Continue to see Fig. 9 In some embodiments, the second hinge base 32 may include a second seat body 321. The second seat body 321 is a portion where the second hinge base 32 and the temple 2 are fixedly connected, and the second seat body 321 may be a columnar structure. When fixedly connected to the temple 2, the second seat body 321 may be fixed to the bottom wall of the second accommodating space 21. The second seat body 321 may be fixed to the second accommodating space by a second screw 324, so that the second seat body 321 and the temple 2 are detachably connected, so as to facilitate the subsequent installation of the second hinge base 32. The second screw 324 is provided through the corresponding positions of the second seat body 321 and the bottom wall of the second accommodating space, so as to fix the two by screwing.

[0086] In some embodiments, the second hinge base 32 may include second side panels 322 disposed on opposite sides of the second base body 321. The second side panels 322 may extend along the length direction of the temple 2. The second side panels 322 may be attached to two opposite side walls of the second accommodating space 21 to increase the distance between the two, so as to facilitate the passage of a wider cable 4 therethrough.

[0087] In some embodiments, a second positioning hole 323 may be provided at one end of the second side plate 322 close to the lens body 1 , and the second positioning hole 323 may be used to connect with the rotating shaft 33 so that the rotating shaft 33 is rotatably connected to the second side plate 322 .

[0088] In some embodiments, the portion of the first side plate 312 in which the first positioning hole 313 is provided and the portion of the second side plate 322 in which the positioning hole is provided are arranged relative to each other, so that the first positioning hole 313 and the second positioning hole 323 can be aligned. The rotating shaft 33 is rotatably connected to the first positioning hole 313 and the second positioning hole 323, so that the first hinge base 31 and the second hinge base 32 are hinged. It can be understood that the two first side plates 312 and the two second side plates 322 can be nested, that is, the two first side plates 312 are located between the two second side plates 322, or the two second side plates 322 are located between the two first side plates 312, so that the first positioning hole 313 can be relatively aligned with the second positioning hole 323. The rotating shaft 33 can be a pin structure, which rivets the first side plate 312 and the second side plate 322, and when the two are fixedly connected, the two can be relatively rotated.

[0089] In some embodiments, the wall thickness of the first side plate 312 and the second side plate 322 can be made as thin as possible. For example, the first side plate 312 and the second side plate 322 can be made of titanium alloy with a wall thickness of no more than 0.5 mm, thereby reserving a larger avoidance space 34 so that a wider cable 4 can pass through.

[0090] In some embodiments, the first hinge base 31 may include a first limit portion 315 connected to the two first side plates 312, and the first limit portion 315 is located in the second accommodation space. The second hinge base 32 may also include a second limit portion 325 connected to the two second side plates 322, and when the temple 2 rotates to the unfolded state, the first limit portion 315 abuts against the second limit portion 325 to limit the temple 2 from rotating outward relative to the mirror body 1, so that the temple 2 remains in the unfolded state.

[0091] In some embodiments, the first limiting portion 315 can be away from the mirror body 1 relative to the second limiting portion 325, and the second limiting portion 325 can be arranged at the opening of the second accommodating space 21. The first limiting portion 315 can be an arc-shaped plate body bent toward the inner side of the temple 2, the bottom end of the first limiting portion 315 can be connected to the inner bottom wall of the second accommodating space 21, and the edge of the first limiting portion 315 can be in contact with the second limiting portion 325. The first limiting portion 315 can define the above-mentioned avoidance groove with the protrusion 131, and the cable 4 passes through the inner side surface of the first limiting portion 315 into the second accommodating space 21.

[0092] See also Figure 4 In some embodiments, the smart glasses may include a spring sheet 5. One end of the spring sheet 5 may be fixed in the first accommodating space 14, and the other end of the spring sheet 5 is a movable end, which can extend into the second accommodating space 21, and abut against the inner bottom wall of the second accommodating space 21 when the temple 2 is in the unfolded state, so as to apply a force to the temple 2 to rotate it to the folded state. After the user puts on the smart glasses, the force applied by the spring sheet 5 can clamp the two temples 2 on the left and right sides of the user's head to prevent the smart glasses from falling and improve the wearing comfort. Among them, the movable end of the spring sheet 5 can abut against the second limiting portion 325 when the temple 2 is in the unfolded state, so that a force can be applied to the temple 2 without extending too much into the second accommodating space.

[0093] In some embodiments, by arranging the spring piece 5 so that the spring piece 5 is located on the outside of the cable 4, the cable 4 can be shielded at the connection between the temple 2 and the body 1 to avoid exposure of the cable 4, thereby improving the aesthetics of the smart glasses.

[0094] In some embodiments, one end of the spring sheet 5 can be fixed to the first seat body 311 by a first screw 314, so that one end of the spring sheet 5 is fixedly connected to the front shell 11. The first screw 314 and the first seat body 311 can be used to fix the spring sheet 5, thereby improving the utilization rate of the first screw 314.

[0095] In some embodiments, one end of the elastic sheet 5 may be attached to the surface of the first base body 311 , so that the first screw 314 may be connected to the one end of the elastic sheet 5 when being connected to the first base body 311 .

[0096] In some embodiments, the portion of the spring sheet 5 located in the first accommodating space 14 may contact the inner bottom plate of the first accommodating space 14 to support the spring sheet 5 so that the end thereof extending into the second accommodating space 21 can exert force on the temple 2 .

[0097] In addition, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include one or more of the features. In the description of this application, "plurality" means two or more, unless otherwise clearly and specifically defined.

[0098] In this application, unless otherwise clearly specified and limited, the terms "assembly", "connection" and the like should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral body; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, it can be the internal connection of two elements or the interaction relationship between two elements. For ordinary technicians in this field, the specific meanings of the above terms in this application can be understood according to the specific circumstances. In the description of this specification, the description of the reference terms "some embodiments", "exemplarily", etc. means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. In this specification, the schematic representation of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, in the absence of contradiction, the technicians in this field can combine and combine the different embodiments or examples described in this specification and the features of the different embodiments or examples.

[0099] Although the embodiments of the present application have been shown and described above, it can be understood that the above embodiments are exemplary and cannot be understood as limitations on the present application. Ordinary technicians in this field can change, modify, replace and modify the above embodiments within the scope of the present application. Therefore, any changes or modifications made in accordance with the claims and description of the present application should fall within the scope of the patent of this application.

Claims

1. A pair of smart glasses, characterized in that: include: A mirror body, wherein a first accommodation space is formed in the mirror body; A temple, arranged at one side of the mirror body, wherein a second accommodation space is formed in the temple, the second accommodation space is arranged opposite to the first accommodation space, and the second accommodation space and the first accommodation space are open toward each other; A connecting assembly, comprising a first hinge base fixedly connected to the mirror body and a second hinge base fixedly connected to the temple, wherein the first hinge base is at least partially accommodated in the first accommodation space, and the second hinge base is at least partially accommodated in the second accommodation space; the first hinge base and the second hinge base are rotatably connected via two rotating shafts, so that the temple can rotate relative to the mirror body along the axis direction of the rotating shaft to be in an unfolded state or a folded state; The two rotating shafts are coaxially arranged with a gap between them to form an escape space for allowing the cable to pass through, and the cable extends from the first accommodating space through the escape space to the second accommodating space.

2. The smart glasses according to claim 1, characterized in that: One end of the first hinge base close to the temple extends into the second accommodating space from the open side of the second accommodating space, and an escape opening is provided on the inner side surface of the temple close to the end of the mirror body, and the escape opening is used to avoid the part of the first hinge base extending into the second accommodating space in the rotation direction of the temple.

3. The smart glasses according to claim 2, characterized in that: The end of the inner side surface of the mirror body extends toward the direction of the temple to form a covering portion extending into the avoidance opening, and the covering portion protrudes toward the direction of the avoidance space to define an avoidance groove for the cable to pass through together with the portion of the first hinge base extending into the second accommodating space, and the cable extends from the first accommodating space through the avoidance groove to the second accommodating space.

4. The smart glasses according to claim 3, characterized in that: The mirror body includes a front shell and a rear shell, the rear shell is covered on the front shell to form the first accommodating space at the end of the mirror body, the first hinge base is fixedly connected to the front shell, and the rear shell extends toward the direction of the temple to form the covering part.

5. The smart glasses according to claim 4, characterized in that: The first hinge base comprises a first base body and first side plates arranged on opposite sides of the first base body, the first base body is fixedly connected to the front shell, the first side plate extends along the length direction of the temple, and a first positioning hole is provided at one end of the first side plate close to the temple; The second hinge base includes a second base body and second side plates arranged on opposite sides of the second base body, the second base body is fixedly connected to the bottom wall of the second accommodating space, the second side plate extends along the length direction of the temple, and a second positioning hole is provided at one end of the second side plate close to the mirror body; The portion of the first side plate where the first positioning hole is formed and the portion of the second side plate where the second positioning hole is formed are arranged opposite to each other, and the rotating shaft is rotatably connected to the first positioning hole and the second positioning hole so that the first hinge base is hinged to the second hinge base.

6. The smart glasses according to claim 5, characterized in that: The area between the two first side plates forms a receiving groove, and the cable portion is received in the receiving groove.

7. The smart glasses according to claim 5, characterized in that: It also includes a spring sheet, one end of which is fixed in the first accommodating space, and the other end of which can abut against the bottom wall of the second accommodating space when the temple is in the unfolded state, so as to apply a force to the temple to rotate it toward the folded state.

8. The smart glasses according to claim 7, characterized in that: The first seat body is fixed to the front shell by a first screw, and one end of the elastic sheet is fixed to the first seat body by the first screw.

9. The smart glasses according to claim 5, characterized in that: The second seat body is fixed in the second accommodation space by a second screw.

10. The smart glasses according to claim 7, characterized in that: The first hinge base also includes a first limiting portion connecting the two first side panels, and the first limiting portion is located in the second accommodating space; the second hinge base includes a second limiting portion connecting the two second side panels, and when the temple is rotated to the unfolded state, the first limiting portion abuts against the second limiting portion to limit the temple from rotating outward relative to the temple body.