Smart glasses

CN224720456UActive Publication Date: 2026-09-04LENS TECHNOLOGY XIANGTAN CO LTD
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Patent Information

Application Number
CN202522023068.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-19
Publication Date
2026-09-04
Estimated Expiration
2035-09-19

AI Technical Summary

Technical Problem

[0003]针对上述的缺陷或不足,本实用新型提供了一种智能眼镜,旨在解决现有的智能眼镜使用便捷性低、功能少的技术问题

Benefits of technology

在本实用新型的技术方案中,眼镜本体内设有显示组件,显示组件能够在眼镜本体上显示图像信息,以使穿戴用户查看图像信息,眼镜本体上设有触控按键和激光投射模块,触控按键用于供穿戴用户通过触摸操作输入触控信息,进而与眼镜本体上显示的图像信息进行交互,且还能通过输入触控信息使得激光投射模块投射激光键盘,进而使得穿戴用户能使用激光键盘输入文字、数据以及控制指令,本实用新型的智能眼镜通过设置显示组件、触控按键和激光投射模块,以将显示功能、触控输入功能和键盘输入功能集成于一体,使得穿戴用户不仅能使用智能眼镜查看图像信息,还能进行图像信息交互以及使用激光键盘发送消息、编撰文档等,无需依赖手机、电脑等外部电子设备输入文字、数据以及控制指令,功能集成度高,大幅提高了智能眼镜的可操作性和使用便捷性,提升了用户使用体验感。

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Abstract

The utility model discloses an intelligent glasses, intelligent glasses include glasses body, display component and input component, and display component is located in glasses body and can show image information, and input component includes touch button and laser projection module, and touch button and laser projection module all are located on glasses body, and touch button is connected with display component and laser projection module communication respectively, and touch button can supply touch information input, to make laser projection module project laser keyboard, and with the image information of display component display is interactive. Intelligent glasses set up display component, touch button and laser projection module to integrate display function, touch input function and keyboard input function in one, so that the user can not only use intelligent glasses to check image information, but also can carry out image information interaction and use laser keyboard to input character, data and control instruction, and the degree of functional integration is high, which greatly improves the operability and use convenience of intelligent glasses.
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Description

Technical Field

[0001] This utility model belongs to the field of smart wearable device technology, specifically relating to a smart pair of glasses. Background Technology

[0002] Currently, smart glasses on the market only have display functions. When users receive message reminders or need to view documents, existing smart glasses can only display information and cannot reply to messages or edit documents. This means that users still need to rely on electronic devices such as mobile phones and computers to input text when processing information, resulting in low convenience and limited functions of smart glasses, which cannot meet users' needs for convenience and efficiency in smart glasses. Utility Model Content

[0003] In view of the above-mentioned defects or deficiencies, this utility model provides a smart glasses, which aims to solve the technical problems of low ease of use and limited functionality of existing smart glasses.

[0004] To achieve the above objectives, this utility model provides smart glasses, which include: The glasses themselves; The display component is located inside the glasses and is capable of displaying image information; The input components include touch buttons and a laser projection module, both of which are located on the glasses body. The touch buttons are communicatively connected to the display component and the laser projection module, respectively. The touch buttons can provide touch information input so that the laser projection module can project a laser keyboard and interact with the image information displayed by the display component.

[0005] In this embodiment of the invention, the smart glasses also include a control motherboard, which is located inside the glasses body and is electrically connected to the touch buttons, the display component, and the laser projection module.

[0006] In this embodiment of the utility model, the eyeglasses body includes a frame, a first temple and a second temple, which are respectively hinged to the frame. The frame has a mounting cavity that connects the first temple and the second temple. The frame has a projection port that communicates with the mounting cavity. A laser projection module is located in the mounting cavity and is set corresponding to the projection port. Touch buttons are located on the first temple or the second temple, and a control motherboard is located in the first temple or the second temple.

[0007] In this embodiment of the present invention, the display component includes an optical engine module and an optical waveguide sheet. The optical engine module is disposed in the mounting cavity and is electrically connected to the control motherboard and the optical waveguide sheet respectively. The glasses body also includes a lens disposed on the frame, and the optical waveguide sheet is disposed on the lens and can display image information on the lens.

[0008] In this embodiment of the utility model, the control motherboard includes a substrate, an MCU, and a control chip. The MCU and the control chip are both disposed on the substrate. The MCU is electrically connected to the control chip and the touch button, respectively. The control chip is electrically connected to the optomechanical module and the laser projection module, respectively.

[0009] In this embodiment of the invention, the smart glasses further include a wireless communication component, which includes a Bluetooth module and a WiFi module. The Bluetooth module is electrically connected to the MCU, and the WiFi module is electrically connected to the control chip.

[0010] In this embodiment of the invention, the smart glasses also include a data acquisition component, which includes a camera mounted on the frame and electrically connected to the control motherboard. The camera is capable of acquiring environmental images.

[0011] In this embodiment of the invention, the smart glasses further include a detection component, which includes a distance sensor and a Hall sensor. The distance sensor is disposed inside the first temple or the second temple and is electrically connected to the control motherboard. The distance sensor can detect the distance information between the first temple and the second temple. The Hall sensor is disposed inside the mounting cavity and is electrically connected to the control motherboard. The Hall sensor can detect the folding state of the first temple and / or the second temple.

[0012] In this embodiment of the invention, the detection component further includes an ambient light sensor, which is disposed in the mounting cavity and electrically connected to the control motherboard. The ambient light sensor can detect ambient light information so that the control motherboard can adjust the output brightness of the display component.

[0013] In this embodiment of the invention, the smart glasses also include an audio component, which includes a microphone and a speaker. Both the microphone and the speaker are located on the glasses body. The microphone can provide voice information input, and the speaker can output voice information.

[0014] Through the above technical solution, the smart glasses provided by this utility model embodiment have the following beneficial effects: In the technical solution of this utility model, the glasses body is equipped with a display component, which can display image information on the glasses body so that the wearer can view the image information. The glasses body is equipped with touch buttons and a laser projection module. The touch buttons are used for the wearer to input touch information through touch operation, thereby interacting with the image information displayed on the glasses body. The touch input can also cause the laser projection module to project a laser keyboard, so that the wearer can use the laser keyboard to input text, data and control commands. The smart glasses of this utility model integrate display function, touch input function and keyboard input function into one by setting up a display component, touch buttons and laser projection module. This allows the wearer to not only use the smart glasses to view image information, but also to interact with image information and use the laser keyboard to send messages, compile documents, etc., without relying on external electronic devices such as mobile phones and computers to input text, data and control commands. The high degree of functional integration greatly improves the operability and ease of use of the smart glasses and enhances the user experience.

[0015] Other features and advantages of this invention will be described in detail in the following detailed description section. Attached Figure Description

[0016] The accompanying drawings are provided to further illustrate the embodiments of the present invention and form part of the specification. They are used together with the following detailed description to explain the embodiments of the present invention, but do not constitute a limitation thereof. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without any inventive effort. In the drawings: Figure 1 This is a structural block diagram of smart glasses according to an embodiment of the present invention; Figure 2 This is a schematic diagram of the structure of smart glasses according to an embodiment of the present invention; Figure 3 This is a front view schematic diagram of a laser projection module projecting a laser keyboard onto smart glasses according to an embodiment of the present invention; Figure 4 This is a side view of a laser keyboard projected by a laser projection module in smart glasses according to an embodiment of the present invention.

[0017] Explanation of reference numerals in the attached figures Detailed Implementation

[0018] 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.

[0019] The smart glasses of this utility model are described below with reference to the accompanying drawings.

[0020] like Figures 1 to 4 As shown, this utility model provides a smart glasses, which includes a glasses body 10, a display component 20, and an input component 30. The display component 20 is located inside the glasses body 10 and can display image information. The input component 30 includes a touch button 31 and a laser projection module 32. Both the touch button 31 and the laser projection module 32 are located on the glasses body 10. The touch button 31 is communicatively connected to the display component 20 and the laser projection module 32, respectively. The touch button 31 can provide touch information input so that the laser projection module 32 can project a laser keyboard and interact with the image information displayed by the display component 20.

[0021] Specifically, the glasses body 10 is equipped with a display component 20, which can display image information on the glasses body 10 so that the wearer can view the image information. The glasses body 10 is equipped with a touch button 31 and a laser projection module 32. The touch button 31 is used for the wearer to input touch information through touch operation, thereby interacting with the image information displayed on the glasses body 10. It can also cause the laser projection module 32 to project a laser keyboard by inputting touch information, so that the wearer can use the laser keyboard to input text, data and control commands. The smart glasses of this utility model embodiment integrate display function, touch input function and keyboard input function by setting display component 20, touch button 31 and laser projection module 32. This allows the wearer to not only use the smart glasses to view image information, but also to interact with image information and use the laser keyboard to send messages, compile documents, etc., without relying on external electronic devices such as mobile phones and computers to input text, data and control commands. The high degree of functional integration greatly improves the operability and ease of use of the smart glasses and enhances the user experience.

[0022] It should be noted that both the touch button 31 and the laser projection module 32 can adopt existing technologies. The touch button 31 can adopt pressure sensing and haptic feedback technology, and simulate the input function of a mouse by flexibly setting the number of presses, the pressure, the duration of the press, and the sliding touch operation. The laser projection module 32 can use light projection technology to project a virtual keyboard, so that the wearer can type text, data and control commands. The existing technologies adopted by the touch button 31 and the laser projection module 32 are well known to those skilled in the art and are not part of the core improvement of this application, so they will not be described in detail here.

[0023] In this embodiment of the invention, the smart glasses also include a control motherboard 40, which is disposed within the glasses body 10. The control motherboard 40 is electrically connected to the touch button 31, the display component 20, and the laser projection module 32. Figure 1 As shown, the control motherboard 40 is electrically connected to the display component 20, enabling the control motherboard 40 to control the display component 20 to display image information on the glasses body 10, facilitating the wearer's viewing of the image information. The control motherboard 40 is also electrically connected to the touch button 31, allowing the wearer to input touch information by touching the touch button 31. The control motherboard 40 receives the touch information and controls the display component 20 to display the corresponding image information based on the touch information, enabling interaction with image information via the touch button 31. Furthermore, the control motherboard 40 is electrically connected to the laser projection module 32, allowing the wearer to input touch information to activate the laser projection module 32 via the touch button 31. This enables the control motherboard 40 to control the laser projection module 32 to project a laser keyboard, facilitating the wearer's input of text, data, and control commands using the laser keyboard. The smart glasses feature high integration and are convenient and quick to use.

[0024] In this embodiment of the utility model, the eyeglass body 10 includes a frame 12, a first temple 13 and a second temple 14. The first temple 13 and the second temple 14 are respectively hinged to the frame 12. The frame 12 has a mounting cavity that communicates with the first temple 13 and the second temple 14. The frame 12 has a projection port 11 that communicates with the mounting cavity. The laser projection module 32 is disposed in the mounting cavity and is disposed corresponding to the projection port 11. The touch button 31 is disposed on the first temple 13 or the second temple 14. The control motherboard 40 is disposed in the first temple 13 or the second temple 14.

[0025] like Figures 1 to 4 As shown, the first temple 13 is hinged to one end of the frame 12, and the second temple 14 is hinged to the other end of the frame 12. Both the first temple 13 and the second temple 14 have accommodating cavities, and the frame 12 has a mounting cavity. The two ends of the mounting cavity are respectively connected to the first temple 13 and the second temple 14. The control motherboard 40 is located in the first temple 13 or the second temple 14, the touch button 31 is located on the first temple 13 or the second temple 14, and the laser projection module 32 is located in the mounting cavity. This allows the control motherboard 40 to be electrically connected to the touch button 31 and the laser projection module 32 respectively. The structure is reasonably designed. Furthermore, the frame 12 has a projection port 11, which is connected to the mounting cavity, so that the laser projection module 32 can project a laser keyboard from the projection port 11. The laser projection module 32 is housed in the mounting cavity, which improves the aesthetic appearance of the smart glasses.

[0026] In this embodiment of the present invention, the display component 20 includes an optical engine module 21 and an optical waveguide 22. The optical engine module 21 is disposed in the mounting cavity and is electrically connected to the control motherboard 40 and the optical waveguide 22 respectively. The glasses body 10 also includes a lens 15 disposed on the frame 12. The optical waveguide 22 is disposed on the lens 15 and can display image information on the lens 15.

[0027] like Figure 1 and Figure 3 As shown, the control motherboard 40 is electrically connected to the optical engine module 21. The control motherboard 40 can control the optical engine module 21 to generate image information. The optical engine module 21 is electrically connected to the optical waveguide 22. The optical engine module 21 transmits the image information to the optical waveguide 22, so that the optical waveguide 22 outputs the image information and displays it on the lens 15, so that the wearer can view the image information on the lens 15 and interact with the image information, thereby improving the user experience.

[0028] It should be noted that both the optomechanical module 21 and the optical waveguide 22 can adopt existing technologies. The existing technology used by the optomechanical module 21 to convert electrical signals into image information and output them to the lens 15 through the optical waveguide 22 is well known to those skilled in the art and is not part of the core improvement of this application, so it will not be described in detail here.

[0029] Furthermore, the number of lenses 15 is set to two, and the two lenses 15 are arranged alternately on the frame 12. The number of optical engine modules 21 and the number of optical waveguide sheets 22 are consistent with the number of lenses 15 and are set one-to-one, so that image information can be displayed on the two lenses 15 respectively, thereby improving the user experience.

[0030] In this embodiment of the utility model, the control motherboard 40 includes a substrate, an MCU 41 and a control chip 42. The MCU 41 and the control chip 42 are both disposed on the substrate. The MCU 41 is electrically connected to the control chip 42 and the touch button 31 respectively. The control chip 42 is electrically connected to the optomechanical module 21 and the laser projection module 32 respectively.

[0031] like Figure 1 As shown, the substrate integrates an MCU41 (Micro Control Unit) and a control chip 42. The MCU41 is electrically connected to the control chip 42, and the MCU41 is also electrically connected to the touch button 31 to receive touch information and control the display component 20 and the laser projection module 32 according to the touch information. The MCU41 has the advantages of high energy efficiency and low power consumption, which reduces the power consumption of the smart glasses. The optical engine module 21 and the laser projection module 32 are both electrically connected to the control chip 42, so that the control chip 42 can control the optical engine module 21 to generate and transmit image information, and control the laser projection module 32 to project the laser keyboard. This realizes the integration of display function, touch input function and keyboard input function into one, which greatly improves the ease of operation of the smart glasses.

[0032] In this embodiment of the invention, the smart glasses further include a wireless communication component 50, which includes a Bluetooth module 51 and a WiFi module 52. The Bluetooth module 51 is electrically connected to the MCU 41, and the WiFi module 52 is electrically connected to the control chip 42. Figure 1 As shown, the Bluetooth module 51 is used to communicate with external devices such as mobile phones and computers to achieve short-range wireless communication, and the WiFi module 52 is used to communicate with external devices to achieve wireless network communication. This allows the smart glasses to further integrate Bluetooth and WiFi functions, improving the operability of the smart glasses and enhancing the user experience.

[0033] In this embodiment of the invention, the smart glasses further include a data acquisition component 60, which includes a camera 61. The camera 61 is mounted on the frame 12 and electrically connected to the control motherboard 40. The camera 61 is capable of acquiring environmental images. Figures 1 to 3 As shown, the camera 61 is mounted on the frame 12. The control motherboard 40 is electrically connected to the camera 61 and can control the camera 61 to capture environmental images, so that the smart glasses integrate photo and video functions. Furthermore, the wearer can input touch information to turn on the camera 61 through the touch button 31, so that the control motherboard 40 controls the camera 61 to take photos or videos, further improving the ease of use.

[0034] Furthermore, such as Figures 1 to 3 As shown, the acquisition component 60 also includes an indicator light 62, which is mounted on the frame 12 and electrically connected to the control motherboard 40. The control motherboard 40 can control the indicator light 62 to turn on or off according to the acquisition status of the camera 61. Specifically, when the camera 61 is in the off state, the control motherboard 40 controls the indicator light 62 to turn off; and when the camera 61 is in the acquisition state, the camera 61 is turned on and takes a picture or video, and the control motherboard 40 controls the indicator light 62 to turn on to indicate that the camera 61 is in the acquisition state, making it easier to confirm whether the camera 61 is in the acquisition state and improving the flexibility of use.

[0035] In this embodiment of the invention, the smart glasses further include a detection component 70, which includes a distance sensor 71 and a Hall sensor 72. The distance sensor 71 is disposed in the first temple 13 or the second temple 14 and is electrically connected to the control motherboard 40. The distance sensor 71 can detect the distance information between the first temple 13 and the second temple 14. The Hall sensor 72 is disposed in the mounting cavity and is electrically connected to the control motherboard 40. The Hall sensor 72 can detect the folding state of the first temple 13 and / or the second temple 14.

[0036] like Figure 1As shown, the control motherboard 40 is electrically connected to a distance sensor 71 located in the first temple 13 or the second temple 14. The distance sensor 71 detects the distance information between the first temple 13 and the second temple 14 and sends it to the controller. The control motherboard 40 controls the display component 20 to turn on or off based on the distance information between the first temple 13 and the second temple 14. That is, the control motherboard 40 can determine whether the wearer is wearing smart glasses based on the distance information between the first temple 13 and the second temple 14. When the distance sensor 71 cannot detect the distance information between the first temple 13 and the second temple 14, it determines that the wearer is wearing smart glasses. The control motherboard 40 then controls the display component 20 to display image information for the wearer to view, and the distance sensor 71... When the distance information between the first temple 13 and the second temple 14 is detected, it is determined that the user has removed the smart glasses. The control motherboard 40 controls the display component 20 to turn off to reduce power consumption. Furthermore, the control motherboard 40 is electrically connected to the Hall sensor 72 located in the mounting cavity. The electrical connection is used to detect the folding state of the first temple 13 and / or the second temple 14 and send it to the controller. When the control motherboard 40 determines that the first temple 13 and / or the second temple 14 are in the folded state, it controls the smart glasses to turn off. When it determines that the first temple 13 and the second temple 14 are in the unfolded state, it controls the smart glasses to turn on. This enables the smart glasses to integrate the functions of automatic screen off and automatic power on / off, further improving ease of use and enhancing the user experience.

[0037] Furthermore, the smart glasses also include a power supply battery disposed within the glasses body 10. The power supply battery is electrically connected to the control motherboard 40 and the display component 20 respectively, so as to supply power to the control motherboard 40 and the display component 20 respectively. Understandably, when the distance sensor 71 detects the distance information between the first temple 13 and the second temple 14, it is determined that the wearer has removed the smart glasses. The control motherboard 40 controls the power supply battery to stop supplying power to the display component 20 to turn off the display component 20, thereby reducing power consumption and extending standby time. In addition, when the control motherboard 40 determines that the first temple 13 and / or the second temple 14 are in a folded state, it controls the power supply battery to stop supplying power to the control motherboard 40 to turn off the smart glasses, thereby improving the intelligence level of the smart glasses.

[0038] In this embodiment of the present invention, the detection component 70 further includes an ambient light sensor 73, which is disposed in the mounting cavity and electrically connected to the control motherboard 40. The ambient light sensor 73 can detect ambient light information so that the control motherboard 40 can adjust the output brightness of the display component 20 according to the ambient light information detected by the ambient light sensor 73.

[0039] like Figure 1As shown, the ambient light sensor 73 sends the detected ambient light information to the control motherboard 40, enabling the control motherboard 40 to automatically adjust the output brightness of the display component 20 according to the ambient light information, thereby automatically adjusting the brightness of the image information displayed on the lens 15 and further improving the user experience.

[0040] It should be noted that the control components can use existing technologies to control the indicator light 62 to turn on or off according to the acquisition status of the camera 61, control the display component 20 to turn on or off according to the distance information detected by the distance sensor 71, control the smart glasses to turn on or off according to the folding status detected by the Hall sensor 72, and adjust the output brightness of the display component 20 according to the ambient light information detected by the ambient light sensor 73. These are not core improvements of this application and will not be described in detail here.

[0041] In the embodiments of this utility model, such as Figure 1 As shown, the smart glasses also include an audio component 80, which includes a microphone 81 and a speaker 82. Both the microphone 81 and the speaker 82 are located on the glasses body 10. The microphone 81 provides voice input, and the speaker 82 outputs voice information. Specifically, the wearer can use the microphone 81 to input voice information and the speaker 82 to output voice information, enabling the smart glasses to integrate audio input and output functions such as voice calls, voice broadcasts, and voice message replies, further improving the functional integration and ease of use.

[0042] In the description of this utility model, it should be understood that the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of indicated technical features. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this utility model, "multiple" means at least two, such as two, three, etc., unless otherwise explicitly specified.

[0043] In this utility model, unless otherwise explicitly specified and limited, the terms "installation," "connection," "joining," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection, an electrical connection, or a connection that allows communication between them; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components, unless otherwise explicitly limited. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0044] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of different embodiments or examples.

[0045] Although embodiments of the present invention have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting the present invention. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of the present invention.

Claims

1. A type of smart glasses, characterized in that, The smart glasses include: The glasses themselves (10); A display component (20) is disposed within the glasses body (10) and is capable of displaying image information; The input component (30) includes a touch button (31) and a laser projection module (32). The touch button (31) and the laser projection module (32) are both located on the glasses body (10). The touch button (31) is communicatively connected to the display component (20) and the laser projection module (32) respectively. The touch button (31) can provide touch information input so that the laser projection module (32) can project a laser keyboard and interact with the image information displayed by the display component (20).

2. The smart glasses according to claim 1, characterized in that, The smart glasses also include a control motherboard (40), which is located inside the glasses body (10). The control motherboard (40) is electrically connected to the touch button (31), the display component (20), and the laser projection module (32).

3. The smart glasses according to claim 2, characterized in that, The eyeglasses body (10) includes a frame (12), a first temple (13) and a second temple (14). The first temple (13) and the second temple (14) are respectively hinged to the frame (12). The frame (12) has a mounting cavity that connects the first temple (13) and the second temple (14). The frame (12) has a projection port (11) that communicates with the mounting cavity. The laser projection module (32) is located in the mounting cavity and is set corresponding to the projection port (11). The touch button (31) is located on the first temple (13) or the second temple (14). The control motherboard (40) is located in the first temple (13) or the second temple (14).

4. The smart glasses according to claim 3, characterized in that, The display component (20) includes an optical engine module (21) and an optical waveguide (22). The optical engine module (21) is disposed in the mounting cavity. The optical engine module (21) is electrically connected to the control motherboard (40) and the optical waveguide (22). The eyeglass body (10) also includes a lens (15) disposed on the frame (12). The optical waveguide (22) is disposed on the lens (15) and can display image information on the lens (15).

5. The smart glasses according to claim 4, characterized in that, The control motherboard (40) includes a substrate, an MCU (41) and a control chip (42). The MCU (41) and the control chip (42) are both disposed on the substrate. The MCU (41) is electrically connected to the control chip (42) and the touch button (31) respectively. The control chip (42) is electrically connected to the optomechanical module (21) and the laser projection module (32) respectively.

6. The smart glasses according to claim 5, characterized in that, The smart glasses also include a wireless communication component (50), which includes a Bluetooth module (51) and a WiFi module (52). The Bluetooth module (51) is electrically connected to the MCU (41), and the WiFi module (52) is electrically connected to the control chip (42).

7. The smart glasses according to claim 3, characterized in that, The smart glasses also include a data acquisition component (60), which includes a camera (61). The camera (61) is mounted on the frame (12) and electrically connected to the control motherboard (40). The camera (61) is capable of acquiring environmental images.

8. The smart glasses according to claim 3, characterized in that, The smart glasses also include a detection component (70), which includes a distance sensor (71) and a Hall sensor (72). The distance sensor (71) is located inside the first temple (13) or the second temple (14). The distance sensor (71) is electrically connected to the control motherboard (40). The distance sensor (71) can detect the distance information between the first temple (13) and the second temple (14). The Hall sensor (72) is located inside the mounting cavity and is electrically connected to the control motherboard (40). The Hall sensor (72) can detect the folding state of the first temple (13) and / or the second temple (14).

9. The smart glasses according to claim 8, characterized in that, The detection component (70) also includes an ambient light sensor (73), which is located in the mounting cavity and electrically connected to the control motherboard (40). The ambient light sensor (73) detects ambient light information, and the control motherboard (40) adjusts the output brightness of the display component (20) according to the ambient light information detected by the ambient light sensor (73).

10. The smart glasses according to any one of claims 1 to 9, characterized in that, The smart glasses also include an audio component (80), which includes a microphone (81) and a speaker (82). The microphone (81) and the speaker (82) are both located on the glasses body (10). The microphone (81) can provide voice information input, and the speaker (82) can output voice information.