Smart glasses and glasses case

CN224789029UActive Publication Date: 2026-09-22RISUNTEK INC
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Patent Information

Application Number
CN202521892638.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Priority Date
2025-04-27
Filing Date
2025-09-03
Publication Date
2026-09-22
Estimated Expiration
2035-09-03

AI Technical Summary

Technical Problem

[0007]本实用新型提出一种智能眼镜及其眼镜盒,以解决现有的智能眼镜存在镜腿结构粗大导致笨重、以及续航能力差和音质效果差的问题

Benefits of technology

[0018]本实用新型的有益效果是:本申请中,眼镜本体和耳夹式耳机分体设计,在使用时,智能眼镜负责拍照、耳夹式耳机夹持在耳朵处负责播放音频,以此将智能眼镜和耳夹式耳机组合使用,确保音频播放和摄像功能,同时,本申请中,智能眼镜本体上仅保留拍摄功能,可相应减少现有技术中智能眼镜内与其它功能相关的电子元件,如与音频播放相关的各个电子元件,从而减少智能眼镜内部的电子元器件,使智能眼镜在确保拍摄功能的同时,优化镜腿的结构设置,使其小型化设计,解决目前智能眼镜集成功能多导致结构大、重量高的问题,即去掉其目前存在的“笨重”情况。且在减少了多个电子元件之后,智能眼镜只保留拍摄功能,会让智能眼镜的功耗大幅度下降,因此可相应提高续航能力;此外,配备OWS耳夹式耳机实现音频功能,而耳夹式耳机的通话、音频及防漏音等方面相比智能眼镜则更加优秀,会更好地提高音质效果,且对佩戴眼镜的人较为友好,可相应提高使用体验。

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Abstract

The application provides an intelligent glasses and a glasses box thereof, the intelligent glasses comprising a glasses body for shooting and ear clip earphones for playing audio; the glasses body and the ear clip earphones can transmit data and control each other; in the application, the intelligent glasses body only retains the shooting function, and the electronic elements related to other functions in the prior art intelligent glasses can be correspondingly reduced, so that the electronic elements in the intelligent glasses are reduced, the shooting function of the intelligent glasses is ensured, the structure of the glasses legs is optimized, the intelligent glasses are miniaturized, and the problem that the current intelligent glasses with integrated functions are large in structure and high in weight is solved. After the plurality of electronic elements are reduced, the intelligent glasses only retain the shooting function, so that the power consumption of the intelligent glasses is greatly reduced, and the endurance is correspondingly improved. In addition, the OWS ear clip earphones are provided to realize the audio function, the sound quality effect is improved, the intelligent glasses are friendly to people wearing glasses, and the use experience is correspondingly improved.
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Description

Technical Field

[0001] This utility model relates to the field of smart glasses technology, and in particular to a smart pair of glasses and its case. Background Technology

[0002] Compared to traditional glasses, smart glasses offer more diverse functions, such as adding schedules, map navigation, interacting with friends, taking photos and videos, and making video calls with friends, all controlled by voice or gestures.

[0003] Most current smart glasses integrate audio playback functionality into the temples, essentially integrating headphone-like components onto the temples. However, this design leads to the following common problems with smart glasses: 1. Corresponding audio playback components, such as speakers, microphones, batteries, and chips, need to be installed in the temples of the glasses. However, after installing multiple components in the temples of the glasses, the temple structure will be relatively thick and heavy, making the overall structure bulky and unsightly, which will seriously reduce the user experience of the glasses.

[0004] 2. The various components on the glasses basically share the battery on the temples. However, due to the limitations of the temple structure, it is difficult to install large-scale, high-capacity batteries. Furthermore, the power consumption of the numerous electronic components inside the temples results in a significant problem with the current smart glasses having low battery life.

[0005] 3. Current smart glasses integrate audio playback functions on the temples, which are equipped with sound holes to transmit sound to the ears. However, since the temples are not in a close fit to the ears when the glasses are worn, there is a certain distance between the sound holes and the ear canal. Therefore, sound leakage is likely to occur, which seriously reduces the sound quality.

[0006] Therefore, it is necessary to provide a technical solution that can solve the above problems. Utility Model Content

[0007] This invention proposes a smart glasses and its case to solve the problems of existing smart glasses, such as bulky temples, poor battery life, and poor sound quality.

[0008] The technical solution adopted by this utility model is as follows: a smart glasses, including a glasses body for taking pictures and an ear clip-on headphone for playing audio; The glasses body is equipped with a camera and a first MCU module, and the camera is connected to the first MCU module; The ear clip-on headphones are equipped with control buttons and a second MCU module, and the control buttons are connected to the second MCU module. The second MCU module is connected to the first MCU module; The first MCU module is used to receive data instructions transmitted from the second MCU module, and to transmit images captured by the camera to the second MCU module or generate data instructions based on the images captured by the camera and transmit them to the second MCU module to control the ear clip-on headphones; The second MCU module is used to receive image and data instructions transmitted from the first MCU module, and to transmit data instructions generated by the control buttons to the first MCU module to control the glasses body.

[0009] In one embodiment, the glasses body is provided with a first BLE module connected to the first MCU module, and the ear clip-on headphones are provided with a second BLE module connected to the second MCU module. The first BLE module and the second BLE module are connected to realize the wireless connection between the glasses body and the ear clip-on headphones, thereby realizing the interactive transmission of data commands.

[0010] In one embodiment, the glasses body is provided with a Bluetooth dongle module connected to the first MCU module, and the ear clip-on headphones are provided with a Bluetooth module connected to the second MCU module. The Bluetooth dongle module is connected to the Bluetooth module to realize the connection between the glasses body and the ear clip-on headphones, and enable the glasses body to transmit audio data to the ear clip-on headphones.

[0011] In one embodiment, the glasses body is provided with a Wi-Fi module connected to the first MCU module, and the ear clip-on headphones are provided with a Bluetooth module connected to the second MCU module. The Wi-Fi module and the Bluetooth module can be connected to the same mobile terminal or different mobile terminals.

[0012] In one embodiment, the glasses body is provided with a microphone connected to the first MCU module. The microphone is used to pick up audio around the smart glasses. The first MCU module is used to transmit the audio picked up by the microphone to the second MCU module, or to generate data instructions based on the audio picked up by the microphone and transmit them to the second MCU module to control the ear clip headphones.

[0013] In one embodiment, a battery for power supply is provided at the end of the temple of the eyeglasses body, and the battery is detachably mounted on the temple.

[0014] An eyeglass case for storing the aforementioned smart eyeglasses.

[0015] In one embodiment, the glasses case includes a case body; the case body is provided with a plurality of receiving slots, the receiving slots being used to respectively store the glasses body and the clip-on earphones, and to charge the glasses body and the clip-on earphones.

[0016] In one embodiment, the glasses case is provided with a display screen.

[0017] In one embodiment, a wireless module is provided inside the glasses case; the display screen is wirelessly connected to the first MCU module and the second MCU module respectively through the wireless module.

[0018] The beneficial effects of this utility model are as follows: In this application, the glasses body and the ear clip-on headphones are designed separately. When in use, the smart glasses are responsible for taking pictures, and the ear clip-on headphones are held in the ears to play audio. This combination of smart glasses and ear clip-on headphones ensures both audio playback and video recording functions. At the same time, in this application, only the shooting function is retained on the smart glasses body, which can correspondingly reduce the number of electronic components related to other functions in existing smart glasses, such as various electronic components related to audio playback. This reduces the number of electronic components inside the smart glasses, allowing the smart glasses to optimize the structure of the temples while ensuring the shooting function, making them more miniaturized. This solves the problem of large structure and heavy weight caused by the integration of multiple functions in current smart glasses, thus eliminating their current "bulky" situation. Furthermore, by reducing the number of electronic components, the smart glasses retain only the shooting function, which significantly reduces the power consumption of the smart glasses and thus improves the battery life. In addition, the audio function is achieved by equipping them with OWS clip-on earphones, which are superior to smart glasses in terms of call quality, audio quality, and sound leakage prevention, thus improving the sound quality and being more user-friendly for people who wear glasses, thereby improving the user experience. Attached Figure Description

[0019] The accompanying drawings are provided to further illustrate the present invention and form part of the specification. They are used together with the following embodiments to explain the present invention, but should not be construed as limiting the present invention. In the drawings: Figure 1 This is a schematic diagram of the smart glasses structure in one embodiment of the present invention; Figure 2 This is an exploded view of the glasses body and battery in one embodiment of the present invention; Figure 3 This is a schematic diagram of the eyeglass case structure in one embodiment of the present invention; Figure 4 This is a schematic diagram of the box structure in one embodiment of the present invention; Figure 5 This is a general control principle block diagram in one embodiment of the present invention.

[0020] Figure labeling: 10. Glasses body; 11. Camera; 12. First MCU module; 13. ISP module; 14. Microphone; 15. Storage module; 16. First BLE module; 17. Bluetooth dongle module; 18. Wi-Fi module; 19. Battery; 20. Clip-on earphone; 21. Second MCU module; 22. Second BLE module; 23. Speaker; 24. Control buttons; 25. Bluetooth module; 30. Housing; 31. First receiving slot; 32. Second receiving slot; 33. Third receiving slot; 34. Display screen; 35. Wireless module; 40. Mobile terminal. Detailed Implementation

[0021] The specific embodiments of this utility model will be described in detail below with reference to the accompanying drawings. It should be understood that the specific embodiments described herein are for illustration and explanation only and are not intended to limit the scope of this utility model.

[0022] To facilitate understanding by those skilled in the art, the following embodiments illustrate the specific implementation process of the technical solutions in this application.

[0023] Please see Figure 1 , Figure 5 The smart glasses of this embodiment include a glasses body 10 and an ear clip-on earphone 20; The glasses body 10 is equipped with a camera 11 and a first MCU module 12, and the camera 11 is connected to the first MCU module 12. The glasses body 10 realizes the shooting function through the camera 11, and the captured image is transmitted to the first MCU module 12 for processing. The first MCU module 12 transmits the image to a designated location or generates data instructions based on the image to control the clip-on headphones. The ear-clip headphones 20 are equipped with a control button 24 and a second MCU module 21. The control button 24 is connected to the second MCU module 21. The user can send a control signal through the control button 24, and the control signal will be transmitted to the second MCU module 21. The second MCU module 21 generates data instructions based on the control signal to control the operation of the glasses or the ear-clip headphones 20.

[0024] In this application, the second MCU module 21 is connected to the first MCU module 12 to achieve the connection between the glasses body 10 and the ear-clip headphones 20. After receiving the image (picture, video) from the camera 11, the first MCU module 12 can transmit the image to the ear-clip headphones, thereby realizing information transmission between the glasses and the headphones. Alternatively, the first MCU module 12 can generate data instructions based on the image from the camera 11. These data instructions are control signals, which are then transmitted to the second MCU module 21. The second MCU module 21 obtains the corresponding control information based on the data instructions, thereby controlling the ear-clip headphones 20 to perform corresponding operations. The first MCU module 12 can control the operation of the earbuds 20, such as controlling the headphone switch, switching songs / audio, and adjusting the volume. In the ear-clip earphone 20, in addition to receiving the image and data instructions from the first MCU module 12, the second MCU module 21 also receives the control information from the control button 24. The second MCU module 21 can directly control the operation of the ear-clip earphone 20 according to the control information, such as controlling the headphone switch, switching songs / audio, and adjusting the volume. Alternatively, the second MCU module 21 can generate data instructions according to the control information and transmit them to the first MCU module 12. Then, the first MCU module 12 can control the operation of the glasses body according to the data instructions, such as controlling the shooting operation.

[0025] Therefore, in this application, the glasses and earphones are designed separately. When in use, the smart glasses are responsible for taking pictures, and the ear-clip earphones 20 are clipped to the ears to play audio. This allows the smart glasses and ear-clip earphones 20 to be used together, ensuring both audio playback and video recording functions. At the same time, in this application, only the shooting function is retained on the smart glasses body 10, which can correspondingly reduce the number of electronic components related to other functions in the existing smart glasses, such as various electronic components related to audio playback. This reduces the number of electronic components inside the smart glasses, allowing the smart glasses to optimize the structure of the temples while ensuring the shooting function, making them more miniaturized. This solves the problem of large structure and heavy weight caused by the integration of many functions in current smart glasses, thus eliminating their current "bulky" situation. Furthermore, by reducing the number of electronic components, the smart glasses retain only the shooting function, which significantly reduces the power consumption of the smart glasses and thus improves the battery life. In addition, the OWS ear-clip headphones 20 are equipped to realize audio functions. The ear-clip headphones 20 are superior to the smart glasses in terms of call quality, audio quality and sound leakage prevention, which will improve the sound quality and is more friendly to people who wear glasses, thus improving the user experience.

[0026] Therefore, this application can minimize the size of the temple structure of smart glasses while ensuring shooting and audio functions, thus optimizing the overall structure of smart glasses.

[0027] Furthermore, the glasses body 10 is also equipped with an ISP module 13, which is connected to the camera 11 and the first MCU module 12 respectively. The glasses body 10 takes pictures through the camera 11, and then transmits the captured data to the ISP module 13 (which is also an image signal processor) for processing to improve the image quality, and then sends it to the first MCU module 12.

[0028] Furthermore, the glasses body 10 is also provided with a storage module 15, which can store data from the first MCU module 12.

[0029] Furthermore, the control button 24 is a touch button, which can be operated by the user through touch, tap, etc. The operation signal will then be transmitted to the second MCU module 21. Then, the second MCU module 21 will control the operation of the ear clip-on headphones 20 according to the operation signal, or generate data instructions and transmit them to the first MCU module 12 to control the operation of the glasses body 10.

[0030] Furthermore, the ear clip-on headphones 20 are equipped with a speaker 23, which is used to play audio and is connected to the second MCU module 21 and controlled by the signal of the second MCU module 21.

[0031] The following details the connection method between the glasses body 10 and the ear clip-on headphones 20: In one embodiment, the glasses body 10 is equipped with a first BLE module 16 connected to the first MCU module 12, and the ear-clip earphone 20 is equipped with a second BLE module 22 connected to the second MCU module 21. The first BLE module 16 and the second BLE module 22 are connected to achieve a wireless connection between the glasses body 10 and the ear-clip earphone 20, thereby enabling the interactive transmission of data commands. It is worth noting that this connection method is mainly used for the interaction of small data, such as data commands, control signals, or small pictures.

[0032] In one embodiment, the glasses body 10 is provided with a Bluetooth dongle module 17 connected to the first MCU module 12, and the ear clip-on earphone 20 is provided with a Bluetooth module 25 connected to the second MCU module 21. The Bluetooth dongle module 17 is connected to the Bluetooth module 25 through an interface, thereby realizing the connection between the glasses body 10 and the ear clip-on earphone 20. The interface is a TYPE_C interface provided on the temple. In this connection method, the glasses body 10 can transmit the audio captured by the camera 11 and the audio picked up by the microphone 14 to the ear clip-on earphone 20. That is, this connection method is mainly used for audio data transmission.

[0033] In one embodiment, the glasses body 10 is equipped with a Wi-Fi module 18 connected to the first MCU module 12, and the ear-clip earphone 20 is equipped with a Bluetooth module 25 connected to the second MCU module 21. The Wi-Fi module and the Bluetooth module can be connected to the same mobile terminal 40 or different mobile terminals 40. Data from the glasses body 10 and the ear-clip earphone 20 can be uploaded to the mobile terminal 40, and the operation of the glasses body 10 and the ear-clip earphone 20 can be controlled separately through the mobile terminal 40. Furthermore, interactive information between the glasses body 10 and the ear-clip earphone 20 can be transmitted through the mobile terminal 40, thereby realizing interactive control between the glasses body 10 and the ear-clip earphone 20. It is worth noting that this connection method is mainly used for the transmission of large amounts of data, such as images and videos from the glasses body 10, which can be uploaded to the mobile terminal 40. The mobile terminal 40 can be an electronic device such as a mobile phone, tablet, computer, or display screen.

[0034] Therefore, in this application, three connection methods are provided between the glasses body 10 and the ear clip-on headphones 20, which can be used for the dedicated transmission of small data, big data and audio data respectively, to adapt to different usage situations.

[0035] Furthermore, the glasses body 10 is equipped with a microphone 14 connected to the first MCU module 12. The microphone 14 is used to pick up the audio around the smart glasses and transmit it to the first MCU module 12. The first MCU module 12 can directly transmit the audio picked up by the microphone 14 to the second MCU module 21, or the first MCU module 12 can generate data instructions based on the audio picked up by the microphone 14 and transmit them to the second MCU module 21. Subsequently, the second MCU module 21 controls the ear clip headphones 20 to perform corresponding operations based on the data instructions, thereby realizing the operation of the ear clip headphones 20.

[0036] It is worth noting that the audio data picked up by the microphone 14 can be transmitted in the three ways mentioned above. Specifically, if the audio data picked up by the microphone 14 is used to generate data instructions by the first MCU module 12, it is transmitted through BLE technology (Bluetooth Low Energy technology); if it is to transmit audio data directly, it is transmitted through Bluetooth dongle module 17-Bluetooth module 25; if it needs to be uploaded to the terminal, it is transmitted through Wi-Fi module 18.

[0037] For further details, please refer to Figure 2 A battery 19 is provided at the end of the temple of the glasses body 10. The battery 19 is used to power the various components inside the glasses. The smart glasses of this application only include the shooting function. Therefore, the battery 19 mainly provides power to the camera 11. Compared with the prior art, this application reduces the power consumption of the smart glasses by reducing other electronic components, thus improving the battery life accordingly.

[0038] Meanwhile, the battery 19 is detachably connected to the glasses body 10. The battery 19 can be installed at the end of the temple by means of magnetic attraction or snap-fit. The detachable battery 19 makes it easy to replace and can further improve the battery life of the glasses body 10.

[0039] It is worth noting that the earphone in this application is mainly an ear clip earphone 20, but in other embodiments, in-ear earphones or semi-in-ear earphones can also be used, as long as they can achieve the corresponding functions of this application.

[0040] The following details some of the working processes involved in this application: Shooting operation: The glasses body 10 takes pictures through the camera 11, and then transmits the image to the ISP module 13 (image signal processor) for processing to improve the image quality. Then the image is sent to the first MCU module 12, and the first MCU module 12 transmits the image to the storage module 15 for storage. When it is necessary to send the file to the outside of the glasses, the following methods can be used: (1) The first MCU module 12 sends the small data file to the ear clip-on headphones 20 through the BLE module; (2) The first MCU module 12 sends the captured audio file to the ear clip-on headphones 20 through the Bluetooth dongle module; (3) The first MCU module 12 uploads large data files such as pictures and videos to the mobile terminal 40 through the wifi module 18.

[0041] In the clip-on earphone 20, the second MCU module 21 can send small data files to the glasses body 10 through the BLE module, and at the same time, it can upload data to the mobile terminal 40 through the Bluetooth module 25.

[0042] Interaction between the glasses body 10 and the ear clip-on headphones 20: (1) Control via shooting: The glasses body 10 takes a picture through the camera 11, and then transmits the image to the ISP module 13 (image signal processor) for processing, and then sends it to the first MCU module 12. The first MCU module 12 processes and analyzes the image and can generate corresponding data instructions. For example, the camera 11 takes a picture of the user's gesture and transmits the gesture image to the first MCU module 12 for analysis and calculation. Specifically, the first MCU module 12 compares the captured picture with the image stored in the internal memory. If the gestures are consistent, the corresponding data instruction, i.e., the control signal, can be obtained. Then, it is sent to the ear clip headphones 20 through the corresponding BLE module to realize the control of the ear clip headphones 20, such as controlling the volume, power on / off, and switching songs or audio.

[0043] (2) Voice control: The microphone 14 is used to pick up the audio around the smart glasses and transmit it to the first MCU module 12. The first MCU module 12 analyzes and calculates the audio picked up by the microphone 14 to obtain the corresponding instructions in the audio, such as "lower volume" or "switch songs". Then, it can generate data instructions, i.e. control signals, and then send them to the ear clip headphones 20 through the corresponding BLE module or Bluetooth dongle module 17 to realize the control of the ear clip headphones 20.

[0044] (3) Touch control: Users can operate the control button 24 on the ear clip-on headphones 20 by touching, tapping, etc. Then the operation signal will be transmitted to the second MCU module 21. Then, the second MCU module 21 will control the operation of the ear clip-on headphones 20 according to the operation signal. At the same time, when it is necessary to operate the glasses body 10, the second MCU module 21 will generate data instructions according to the operation signal and transmit them to the first MCU module 12. The first MCU module 12 will control the glasses body 10 to perform corresponding work according to the data instructions, thereby realizing the control of the operation of the glasses body 10.

[0045] Since the control button 24 can control both the ear-clip headphones 20 and the glasses body 10, the control signals can be categorized to accurately control either the ear-clip headphones 20 or the glasses body 10. For example, when the control button 24 is tapped, it controls the operation of the ear-clip headphones 20; when the control button 24 is slid-touched, it controls the operation of the glasses body 10. Alternatively, the number of slids or touches can be used to control the glasses body 10 and the ear-clip headphones 20 respectively. Please see Figures 3-5 This application also provides an eyeglass case for storing the aforementioned smart glasses.

[0046] Furthermore, the glasses case includes a case body 30; the case body 30 has multiple receiving slots for storing the glasses body 10, the ear-clip headphones 20, and the battery 19, and for charging the glasses body 10, the ear-clip headphones 20, and the battery 19. Specifically, the multiple receiving slots include a first receiving slot 31, a second receiving slot 32, and a third receiving slot 33, wherein the first receiving slot 31 is used to store and charge the glasses body 10, the second receiving slot 32 is used to store and charge the ear-clip headphones 20, and the third receiving slot 33 is used to store and charge the battery 19.

[0047] In this embodiment, there is one eyeglass body 10, two clip-on earphones 20, and two batteries 19. Each temple of the eyeglass body 10 has a battery 19 at its end. Furthermore, the two clip-on earphones 20 have the same structure, and the two batteries 19 have the same structure and are symmetrically arranged at the ends of the temples on both sides of the eyeglass body 10, which is not a limitation.

[0048] Accordingly, there is one first receiving groove 31, and two second receiving grooves 32 and two third receiving grooves 33. The first receiving groove 31 is centrally located, the two second receiving grooves 32 are identical in structure and symmetrically arranged on both sides of the first receiving groove 31, and the two third receiving grooves 33 are identical in structure and symmetrically arranged on both sides of the first receiving groove 31. Each third receiving groove 33 is located in front of each second receiving groove 32.

[0049] Furthermore, the glasses case is equipped with a display screen 34, which is located on the outside of the case body 30 and can be directly observed. Of course, in other embodiments, the display screen 34 can be located inside the case body 30 and can be seen when the case body 30 is opened. The display screen 34 is used to display the status of one or more of the following devices: the glasses case, the glasses body 10, the ear-clip headphones 20, and the battery 19, such as battery level, music playback, and operating status. The display screen 34 can also be used to control the operation of the glasses body 10 and the ear-clip headphones 20.

[0050] Furthermore, a wireless module 35 is provided inside the glasses case; the display screen 34 is wirelessly connected to the first MCU module 12 and the second MCU module 21 via the wireless module 35. Specifically, the wireless module 35 of the display screen 34 is connected to the second MCU module 21 of the earphone via a Bluetooth module 25; simultaneously, the wireless module 35 of the display screen 34 is connected to the first MCU module 12 of the glasses via a Wi-Fi module 18; in this embodiment, the glasses case can act as a mobile terminal, and data from the glasses body 10 and the ear-clip earphone 20 can be uploaded to the glasses case and displayed on the display screen 34. Meanwhile, the display screen 34 has a corresponding control panel, which allows control of the operation of the glasses body 10 and the ear-clip earphone 20 by operating the page on the display screen 34, and enables interactive control between the glasses body 10 and the ear-clip earphone 20.

[0051] In addition, in some embodiments, the charging connection can be operated via the display screen 34, such as charging the ear clip-on earphone 20 or the battery 19 separately, or charging the ear clip-on earphone 20 and the battery 19 simultaneously.

[0052] Compared with the prior art: In this application, the glasses and earphones are designed separately. When in use, the smart glasses are responsible for taking pictures, and the ear-clip earphones 20 are clipped to the ears to play audio. This combination of smart glasses and ear-clip earphones 20 ensures both audio playback and video recording functions. At the same time, in this application, only the shooting function is retained on the smart glasses body 10, which can correspondingly reduce the electronic components related to other functions in the smart glasses in the prior art, such as various electronic components related to audio playback. This reduces the number of electronic components inside the smart glasses, allowing the smart glasses to optimize the structure of the temples while ensuring the shooting function, making them more miniaturized. This solves the problem of large structure and heavy weight caused by the integration of multiple functions in current smart glasses, thus eliminating their current "bulky" situation. Furthermore, by reducing the number of electronic components, the smart glasses retain only the shooting function, which significantly reduces the power consumption of the smart glasses and thus improves the battery life. In addition, the OWS ear-clip headphones 20 are equipped to realize audio functions. The ear-clip headphones 20 are superior to the smart glasses in terms of call quality, audio quality and sound leakage prevention, which will improve the sound quality and is more friendly to people who wear glasses, thus improving the user experience.

[0053] Any combination of different embodiments of this utility model, provided it does not violate the inventive concept of this utility model, shall be considered as the disclosure of this utility model; any simple modifications to the technical solution and any combination of different embodiments within the scope of the inventive concept of this utility model, without violating the inventive concept of this utility model, shall be within the protection scope of this utility model.

Claims

1. A type of smart glasses, characterized in that: This includes the glasses themselves for taking pictures and the clip-on headphones for playing audio. The glasses body is equipped with a camera and a first MCU module, and the camera is connected to the first MCU module; The ear clip-on headphones are equipped with control buttons and a second MCU module, and the control buttons are connected to the second MCU module. The second MCU module is connected to the first MCU module; The first MCU module is used to receive data instructions transmitted from the second MCU module, and to transmit images captured by the camera to the second MCU module or generate data instructions based on the images captured by the camera and transmit them to the second MCU module to control the ear clip-on headphones; The second MCU module is used to receive image and data instructions transmitted from the first MCU module, and to transmit data instructions generated by the control buttons to the first MCU module to control the glasses body.

2. The smart glasses according to claim 1, characterized in that: The glasses body is provided with a first BLE module connected to the first MCU module, and the ear clip-on headphones are provided with a second BLE module connected to the second MCU module. The first BLE module and the second BLE module are connected to realize the wireless connection between the glasses body and the ear clip-on headphones, thereby realizing the interactive transmission of data commands.

3. The smart glasses according to claim 1, characterized in that: The glasses body is provided with a Bluetooth dongle module connected to the first MCU module, and the ear clip-on headphones are provided with a Bluetooth module connected to the second MCU module. The Bluetooth dongle module is connected to the Bluetooth module to realize the connection between the glasses body and the ear clip-on headphones, and enable the glasses body to transmit audio data to the ear clip-on headphones.

4. The smart glasses according to claim 1, characterized in that: The glasses body is provided with a Wi-Fi module connected to the first MCU module, and the ear clip-on headphones are provided with a Bluetooth module connected to the second MCU module. The Wi-Fi module and the Bluetooth module can be connected to the same mobile terminal or different mobile terminals.

5. The smart glasses according to any one of claims 1-4, characterized in that: The glasses body is equipped with a microphone connected to the first MCU module. The microphone is used to pick up audio around the smart glasses. The first MCU module is used to transmit the audio picked up by the microphone to the second MCU module, or to generate data instructions based on the audio picked up by the microphone and transmit them to the second MCU module to control the ear clip headphones.

6. The smart glasses according to claim 1, characterized in that: The temple of the eyeglasses is equipped with a battery for power supply, which is detachably mounted on the temple.

7. An eyeglass case, characterized in that: The glasses case is used to store the smart glasses as described in any one of claims 1 to 6.

8. The eyeglass case according to claim 7, characterized in that: The glasses case includes a case body; the case body is provided with a plurality of receiving slots, which are used to respectively store the glasses body and the ear clip-on headphones, and to charge the glasses body and the ear clip-on headphones.

9. The eyeglass case according to claim 7, characterized in that: The glasses case is equipped with a display screen.

10. The eyeglass case according to claim 9, characterized in that: The glasses case is equipped with a wireless module; the display screen is wirelessly connected to the first MCU module and the second MCU module respectively through the wireless module.