Intelligent frame hinge structure and intelligent glasses

By using the intelligent frame hinge structure design, the data cable is hidden inside the wiring channel, solving the problem of exposed cables in existing technologies and achieving both cable protection and improved aesthetics.

CN224052513UActive Publication Date: 2026-03-27SHENZHEN XINGJINGFENG GLASSES CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-26
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

The existing hinge structure of smart glasses fails to effectively hide or protect the data cable, resulting in the cable being exposed during the opening and closing of the temples. This affects the appearance and makes the glasses susceptible to corrosion from external contaminants, thus reducing their lifespan.

Method used

Design an intelligent frame hinge structure. Through the cooperation of the frame head, temples and slingshot assembly, the data cable is completely hidden in the wiring channel and is not exposed when the temples are opened or closed. The slingshot assembly covers the wiring channel port to ensure that the cable is not contaminated by the outside.

Benefits of technology

It achieves complete concealment of the data cable during the opening and closing of the temples, protecting the cable from external contamination, extending its service life and improving its aesthetics.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an intelligent frame hinge structure and glasses, and the intelligent frame hinge structure comprises an end piece with two through ends; the bottom of one end of each glasses leg extends inwards and is provided with a wiring channel; the slingshot assembly is arranged at the bottom of the end of the glasses leg, the port of the wiring channel is covered by the slingshot assembly, one end of the slingshot assembly is open, and the open end of the slingshot assembly is partially sleeved with and rotationally connected with the end part of the end piece; and one end of the data flat cable extends into the end piece, and the other end of the data flat cable extends into the wiring channel through the end part of the end piece and the slingshot assembly. The intelligent frame hinge structure can completely hide the data flat cable, the data flat cable cannot be exposed when the glasses legs are opened, closed and rotated, and the data flat cable is prevented from being polluted by the outside.
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Description

Technical Field

[0001] This utility model relates to the field of eyeglasses technology, and in particular to a smart frame hinge structure and smart eyeglasses. Background Technology

[0002] With the rapid development of smart wearable devices, smart glasses, as a new generation of smart terminals, integrate various sensors, display modules, communication modules, and power supply units, and are widely used in navigation assistance, health monitoring, information display, augmented reality (AR) and other fields. The overall structure of smart glasses typically includes a frame, left and right temples, lens modules, and various electronic components distributed inside the frame and temples.

[0003] To achieve data and power connections between electronic components (such as cameras, microphones, and processing chips) within the frame and electronic components (such as batteries, power management modules, and communication modules) within the temples, flexible printed circuit boards (FPCs) or data cables are typically used to connect them. The hinged structure between the temples and the frame allows the temples to fold and unfold relative to the frame, which places high demands on the cable routing in the structural design.

[0004] Currently, most common smart glasses hinge structures do not effectively conceal or protect the wiring. The wiring needs to cross the frame and temple along the temple pivot point, leaving it exposed during temple opening and closing. This structure not only affects aesthetics but also makes the wiring susceptible to corrosion from external contaminants such as dust, moisture, and oil, reducing its lifespan. Utility Model Content

[0005] Therefore, it is necessary to address the issue of exposed wiring during the opening and closing of the temples, which can easily lead to damage to the wiring. A solution should be provided that completely conceals the data wiring, ensuring it remains unexposed during temple opening and closing, and protecting it from external contamination.

[0006] A smart frame hinge structure, comprising:

[0007] Zhuangtou, running through both ends;

[0008] The temple has a wiring channel extending inwards at one end of the bottom.

[0009] A slingshot assembly is disposed at the bottom of this end of the temple, and the slingshot assembly covers the port of the wiring channel. One end of the slingshot assembly is open, and the open end of the slingshot assembly is fitted onto the end portion of the temple head and rotatably connected.

[0010] The data cable extends from one end into the headstock and from the other end through the headstock end and the slingshot assembly into the wiring channel.

[0011] The above-mentioned intelligent frame hinge structure can extend the data cable from the front end of the temple to the corresponding electronic components in the frame, extend the data cable from the rear end of the temple to the elastic bow assembly, and then extend the data cable from the wire channel at the bottom of the temple to the corresponding electronic components or power supply in the temple. Since the rear end of the temple extends into the elastic bow assembly, and the elastic bow assembly covers the port of the wire channel, the route of the data cable is hidden throughout the process, and the data cable will not be exposed when the temple is opened and closed, thereby protecting the data cable from external pollution.

[0012] In one embodiment, the end of the temple is provided with a flange, and when the elastic bow assembly is horizontally rotated with the temple, the flange covers the temple.

[0013] In one embodiment, the wire channel includes a first channel and a second channel, the first channel extends vertically, one end of the first channel extends to the bottom of the temple and communicates with the inside of the elastic bow assembly, and the other end of the first channel communicates with the second channel, and the second channel extends horizontally to the inside of the temple.

[0014] In one embodiment, one end of the temple is a circular arc end, and the inside bottom wall of the opening end of the elastic bow assembly is recessed to form an arc-shaped seat, and the end of the temple is rotationally connected with the arc-shaped seat.

[0015] In one embodiment, the elastic bow assembly includes an elastic bow box and an elastic bow core, the elastic bow box is hollow and open at the top, one end of the elastic bow box is provided with a slot in communication with the inside, the elastic bow box covers the bottom of the temple and covers the port of the wire channel, the elastic bow core is fixedly arranged in the elastic bow box, and one end of the temple is inserted into the elastic bow box through the slot and rotationally connected with the elastic bow core.

[0016] In one embodiment, the elastic bow assembly includes a hinge screw, the elastic bow core has a first connecting arm and a second connecting arm arranged at intervals, the first connecting arm and the second connecting arm are located on both sides of the end of the temple and are rotationally connected through the hinge screw.

[0017] In one embodiment, the elastic bow assembly further includes an elastic member, the elastic member is in the form of a sleeve, the elastic bow core includes a first core body and a second core body connected with each other, the first core body is rotationally connected with the temple, and the second core body is inserted into the elastic member.

[0018] In one of the embodiments, the slingshot assembly further comprises a fixed baffle, the bottom of the fixed baffle is concave and provided with a notch, the slingshot box body is provided with a sliding groove along the thickness direction, the fixed baffle is connected with the sliding groove, and the notch is sleeved on the slingshot core.

[0019] In one of the embodiments, the top of the slingshot box body is provided with a plurality of spaced buckles, the temple is provided with a plurality of clamping grooves, and the buckles are connected with the clamping grooves correspondingly so that the slingshot box body is arranged on the temple.

[0020] The utility model also provides an intelligent glasses, include: glasses frame and two sets of intelligent frame hinge structure as above described, the opposite sides of glasses frame are equipped with the temple respectively. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 It is structural schematic diagram of the utility model intelligent glasses embodiment one;

[0022] Figure 2 It is structural schematic diagram of the utility model intelligent glasses embodiment two;

[0023] Figure 3 It is structural schematic diagram of the utility model intelligent glasses embodiment three;

[0024] Figure 4 It is structural schematic diagram of the utility model intelligent frame hinge structure embodiment one;

[0025] Figure 5 It is structural schematic diagram of the utility model intelligent frame hinge structure embodiment two.

[0026] In the drawings, the components represented by each reference numeral are listed as follows:

[0027] 100, intelligent glasses;1, glasses frame;2, intelligent frame hinge structure;21, temple;211, arc end;22, temple;221, flange;23, slingshot assembly;231, slingshot box body;2311, sliding groove;232, slingshot core;2321, first core;2322, second core;2323, first connecting arm;2324, second connecting arm;233, elastic element;234, arc-shaped seat;235, fixed baffle;236, notch;237, buckle;24, data wire;25, hinge screw. DETAILED DESCRIPTION

[0028] For the above purposes, features and advantages of the present application to be more apparent and understandable, the specific embodiments of the present application will be described below in detail with reference to the accompanying drawings. Obviously, the specific details described below are only part of the embodiments of the present application, and the present application can be implemented in many other embodiments different from those described herein. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0029] It should be noted that when an element is referred to as being "fixed" to another element, it can be directly on the other element or there can be an intervening element. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements can be present. The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only and are not intended to be limiting.

[0030] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which the present application belongs. The terminology used in the description of the present application herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the present application.

[0031] Please refer to Figure 1 In an embodiment, an intelligent glasses 100 comprises a frame 1 and two sets of intelligent frame hinge structure 2, and one set of intelligent frame hinge structure 2 is respectively arranged on the opposite sides of the frame 1.

[0032] Please refer to Figures 1 to 5 In another embodiment, an intelligent frame hinge structure 2 comprises a temple 21, a temple 22, a bow assembly 23 and a data cable 24. The temple 21 is throughly communicated at both ends, and the front end of the temple 21 is clamped on the frame 1. The frame 1 is internally provided with a cavity for mounting electronic components, and the front end port of the temple 21 is in communication with the cavity. The front end bottom of the temple 22 extends inwardly to provide a wiring channel. The bow assembly 23 is arranged at the front end bottom of the temple 22, and the bow assembly 23 covers the port of the wiring channel. One end of the bow assembly 23 is open, and the open end of the bow assembly 23 is partially sleeved with the rear end of the temple 21 and is rotationally connected. One end of the data cable 24 extends into the temple 21, and the other end extends into the wiring channel through the end of the temple 21 and the bow assembly 23.

[0033] The data cable 24 can extend from the front end of the temple 21 to the cavity of the frame 1 through the front end port of the temple 21, and then extend into the elastic arch assembly 23 through the rear end port of the temple 21 and the opening of the elastic arch assembly 23, and then extend into the temple 22 through the wiring channel at the bottom of the temple 22, and then connect to the corresponding electronic components or power supply. Since the rear end of the temple 21 extends into the elastic arch assembly 23, and the elastic arch assembly 23 covers the port of the wiring channel, the route of the data cable 24 is hidden all the way, and the data cable 24 will not be exposed when the temple 22 is opened or closed, thereby protecting the data cable 24 from external pollution.

[0034] The front end of the temple 22 extends a flange 221, which can cover the temple 21 when the elastic arch assembly 23 is horizontally rotated relative to the temple 21 (i.e., when the temple 22 is unfolded).

[0035] In one embodiment of the wiring channel, the wiring channel includes a first channel and a second channel. The first channel extends vertically, and one end of the first channel extends to the bottom surface of the temple 22 and communicates with the inside of the elastic arch assembly 23. The other end of the first channel communicates with the second channel. The second channel extends horizontally to the inside of the temple 22.

[0036] In another embodiment, the elastic arch assembly 23 includes an elastic arch box 231, an elastic arch core 232, and an elastic member 233. The elastic arch box 231 is hollow inside and open at the top. One end of the elastic arch box 231 is provided with a slot that communicates with the inside. The inside bottom wall of the one end of the elastic arch box 231 is recessed to form an arc-shaped seat 234. The elastic arch box 231 covers the bottom of the temple 22 and covers the port of the first channel.

[0037] The elastic arch core 232 is fixedly arranged in the elastic arch box 231. The rear end of the temple 21 is a circular arc end 211. The circular arc end 211 is inserted into the elastic arch box 231 through the slot and is rotationally connected with the elastic arch core 232. The circular arc end 211 is rotationally matched with the arc-shaped seat 234 of the elastic arch box 231. This structure can make the hinge structure rotate more smoothly.

[0038] The elastic arch core 232 includes a first core body 2321 and a second core body 2322 connected with each other. The first core body 2321 is rotationally connected with the rear end of the temple 21 through a hinge screw 25. The elastic member 233 is sleeve-shaped and can be a spring. The second core body 2322 is column-shaped and is inserted into the elastic member 233. When the temple 22 is flipped outward relative to the temple 21, the second core body 2322 can press downward on the elastic member 233 to form elastic buffering, thereby avoiding the temple 22 directly pressing against the temple 21 and damaging the temple 22.

[0039] In an embodiment, the first core 2321 has a first connecting arm 2323 and a second connecting arm 2324 arranged at intervals, the first connecting arm 2323 and the second connecting arm 2324 are located at both sides of the rear end of the temple 21, and are rotationally connected through the hinge screw 25.

[0040] Further, on the basis of the above-mentioned embodiments, the elastic bow assembly 23 further comprises a fixed baffle 235, the bottom of the fixed baffle 235 is inwardly recessed and provided with a notch 236. The elastic bow box body 231 is provided with a sliding groove 2311 along the thickness direction. The fixed baffle 235 is slidingly inserted into the sliding groove 2311, and the notch 236 is sleeved on the elastic bow core 232. When the elastic bow box body 231 is installed at the bottom of the temple 22, the fixed baffle 235 is abutted and fixed with the bottom surface of the temple 22, and the elastic bow core 232 can be effectively positioned through the elastic bow box body 231, so that the elastic bow core 232 is prevented from being excessively deviated when the temple 22 rotates.

[0041] In an embodiment, the top of the elastic bow box body 231 is protrudingly provided with a plurality of spaced buckles 237, the temple 22 is provided with a plurality of clamping grooves, and the buckles 237 are clamped with the clamping grooves to enable the elastic bow box body 231 to be arranged on the temple 22.

[0042] The technical features of the above-mentioned embodiments can be combined arbitrarily, and in order to make the description simple, all possible combinations of the technical features in the above-mentioned embodiments are not described, however, as long as the combinations of the technical features do not exist contradictory, it should be considered that the combinations are within the scope of the present application.

[0043] The above-mentioned embodiments only express several embodiments of the present application, the description is more specific and detailed, but it cannot be understood as the limitation of the scope of the present application. It should be pointed out that for ordinary skilled in the art, without departing from the concept of the present application, a number of modifications, substitutions and improvements can be made, which should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the claims.

Claims

1. An intelligent shelf hinge structure, characterized by, The utility model relates to a smart frame hinge structure, which comprises: a temple, both ends of which are penetrated; a temple leg, one end of which extends inwardly at the bottom and is provided with a wiring channel; a bow assembly, which is arranged at the bottom of the end of the temple leg, and covers the port cover of the wiring channel, one end of the bow assembly is open, and the open end of the bow assembly is partially sleeved with the end of the temple and is rotationally connected; and a data flat cable, one end of which extends into the temple, and the other end of which extends into the wiring channel through the end of the temple and the bow assembly.

2. The intelligent shelf hinge structure according to claim 1, wherein, The end of the temple leg extends and is provided with a flange, when the bow assembly and the temple are rotationally horizontal, the flange covers the temple.

3. The intelligent shelf hinge structure according to claim 1, wherein, The wiring channel comprises a first channel and a second channel, the first channel extends vertically, one end of the first channel extends to the bottom of the temple leg and is in communication with the inside of the bow assembly, the other end of the first channel is in communication with the second channel, and the second channel extends horizontally to the inside of the temple leg.

4. The intelligent shelf hinge structure according to claim 1, wherein, One end of the temple is a circular arc end, the inside bottom wall of the open end of the bow assembly is recessed and provided with an arc-shaped seat, and the end of the temple is rotationally matched with the arc-shaped seat.

5. The intelligent shelf hinge structure according to claim 1, wherein, The bow assembly comprises a bow box and a bow core, the inside of the bow box is hollow and the top is open, one end of the bow box is provided with a slot in communication with the inside, the bow box is arranged at the bottom of the temple leg and covers the port cover of the wiring channel, the bow core is fixedly arranged in the bow box, and one end of the temple is inserted into the bow box from the slot and is rotationally connected with the bow core.

6. The intelligent shelf hinge structure according to claim 5, wherein, The bow assembly comprises a hinge screw, the bow core is provided with a first connecting arm and a second connecting arm which are spaced apart, the first connecting arm and the second connecting arm are located on both sides of the end of the temple and are rotationally connected through the hinge screw.

7. The intelligent shelf hinge structure according to claim 5, wherein, The bow assembly further comprises an elastic member, the elastic member is sleeve-shaped, the bow core comprises a first core body and a second core body which are connected, the first core body is rotationally connected with the temple, and the second core body is inserted into the elastic member.

8. The intelligent shelf hinge structure according to claim 7, wherein, The bow assembly further comprises a fixed baffle, the bottom surface of the fixed baffle is recessed inwardly and provided with a notch, the bow box is provided with a sliding groove along the thickness direction, the fixed baffle is clamped with the sliding groove, and the notch is sleeved on the bow core.

9. The intelligent shelf hinge structure according to claim 5, wherein, The top of the bow box is protrudingly provided with a plurality of spaced buckles, the temple leg is provided with a plurality of clamping grooves, and the buckles are clamped with the clamping grooves correspondingly so that the bow box is arranged on the temple leg.

10. An intelligent eyeglass, characterized by, The utility model relates to a smart frame hinge structure, which comprises: a temple, both ends of which are penetrated; a temple leg, one end of which extends inwardly at the bottom and is provided with a wiring channel; a bow assembly, which is arranged at the bottom of the end of the temple leg, and covers the port cover of the wiring channel, one end of the bow assembly is open, and the open end of the bow assembly is partially sleeved with the end of the temple and is rotationally connected; and a data flat cable, one end of which extends into the temple, and the other end of which extends into the wiring channel through the end of the temple and the bow assembly.