TEMPLE-BENDING STRUCTURE AND SMART GLASSES INCLUDING THE SAME
20210215952 ยท 2021-07-15
Inventors
Cpc classification
International classification
Abstract
The present application relates to a temple-bending structure and smart glasses including the temple-bending structure. The temple-bending structure includes a rotating shaft structure. One end of the rotating shaft structure is connected to a lens body, and the other end of the rotating shaft structure is connected to a temple. A flexible printed circuit (FPC) penetrates through the rotating shaft structure from the inside of the temple and is connected to a main board inside the lens body. The rotating shaft structure is rotated to control the temple to bend relative to the lens body. The rotating shaft structure includes a rotating shaft housing. One end of the rotating shaft housing is fixed to the temple, and the other end of the rotating shaft housing extends to the inside of the lens body. The rotating shaft housing rotates with the temple.
Claims
1. A temple-bending structure, comprising a rotating shaft structure, wherein one end of the rotating shaft structure is connected to a lens body, the other end of the rotating shaft structure is connected to a temple, a flexible printed circuit (FPC) penetrates through the rotating shaft structure from the inside of the temple and is connected to a main board inside the lens body, and the rotating shaft structure is rotated to control the temple to bend relative to the lens body; and the rotating shaft structure comprises a rotating shaft housing, one end of the rotating shaft housing is fixed to the temple, the other end of the rotating shaft housing extends to the inside of the lens body, the rotating shaft housing rotates with the temple, and when the rotating shaft structure is in either stationary or rotational state, the other end of the rotating shaft housing is always located inside the lens body and always covers the FPC.
2. The temple-bending structure according to claim 1, wherein the rotating shaft structure further comprises a rotating shaft bracket fixedly connected to the lens body and a rotating shaft portion mounted on the rotating shaft bracket, wherein the rotating shaft portion comprises a rotating shaft axis mounted on the rotating shaft bracket, and a first cam, a second cam, a spring, and a nut that are successively sleeved on the rotating shaft axis, when the temple is subjected to an external force, the first cam and the second cam generate a height drop, and a compression amount of the spring is changed, so that the rotating shaft portion rotates.
3. The temple-bending structure according to claim 2, wherein the rotating shaft bracket comprises a first axis stopping bracket and a second axis stopping bracket, wherein the first axis stopping bracket and the second axis stopping bracket are both L-shaped plate structures, one end of the first axis stopping bracket is fixedly connected to one end of the second axis stopping bracket, the other end of the first axis stopping bracket and the other end of the second axis stopping bracket form a mounting space, and the rotating shaft portion is mounted in the mounting space.
4. The temple-bending structure according to claim 3, wherein a mounting hole is provided on the second axis stopping bracket, one end of the rotating shaft axis passes through the mounting hole, and the other end of the rotating shaft axis rotatably connects the rotating shaft axis to the first axis stopping bracket through the nut.
5. The temple-bending structure according to claim 2, wherein the rotating shaft axis comprises a local tapping structure.
6. The temple-bending structure according to claim 1, wherein the rotating shaft housing comprises a cylindrical structure, and the rotating shaft portion is located at the center of the cylindrical structure.
7.-8. (canceled)
Description
BRIEF DESCRIPTION OF DRAWINGS
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
TABLE-US-00001 [Reference numerals] 1: lens body 2: rotating shaft structure 3: temple 4: FPC 5: rotating shaft housing 6: first connecting portion 7: second connecting portion 21: rotating shaft bracket 22: rotating shaft portion 221: rotating shaft axis 222: first cam 223: second cam 224: spring 225: nut 211: first axis stopping bracket 212: second axis stopping bracket
DESCRIPTION OF EMBODIMENTS
[0026] To further describe the technical means used in the present application to achieve the intended objectives of the present application and the effects thereof, the following describes in detail the specific implementations and effects of a temple-bending structure and smart glasses including the temple-bending structure provided in the present application with reference to the accompanying drawings and example embodiments.
[0027] The present application provides a temple-bending structure. As shown in
[0028] As shown in
[0029] In the examples shown in
[0030] In an example shown in
[0031] As an example, the rotating shaft housing 5 includes a cylindrical structure, and the rotating shaft portion 22 is located at the center of the cylindrical structure. However, it can be understood that, the rotating shaft housing 5 is not limited to the cylindrical structure, and other shape designs are applicable to the present application, provided that in the shape designs, the other end of the rotating shaft housing 5 is always located inside the lens body 1 when the rotating shaft structure 2 is in either stationary or rotational state.
[0032] An embodiment of the present application further provides smart glasses, including the temple-bending structure described in the embodiment of the present application. The smart glasses are AR glasses, VR glasses, or the like.
[0033] According to the temple-bending structure and the smart glasses including the temple-bending structure in the present application, the rotating shaft structure 2 is disposed in the smart glasses, so that the temple 3 can bend relative to the lens body 1, and the smart glasses are easy to fold, store, and carry. In addition, the rotating shaft housing 5 is used, so that the FPC 4 in the smart glasses is not exposed in either state, thereby fully protecting the FPC 4 in the smart glasses, prolonging a service life of the smart glasses, and further meeting requirements on reliability and portability of the smart glasses.
[0034] The foregoing descriptions are merely example embodiments of the present application, and are not intended to limit the present application in either form. Although the present application has been disclosed in the example embodiments above, the example embodiments are not intended to limit the present application. Without departing from the scope of the technical solutions of the present application, any person skilled in the art can use the technical content disclosed above to make some changes or improvements to produce equivalent embodiments with equivalent changes. Any modification, equivalent change, or improvement made based on the technical nature of the present application without departing from the content of the technical solutions of the present application shall fall within the protection scope of the technical solutions of the present application.