Glasses set system and glasses case with battery replacement function
By incorporating a battery swapping component into the glasses case, the smart glasses can quickly replace their batteries, solving the problem of time-consuming charging methods and improving the user experience.
Patent Information
- Application Number
- CN202423315524.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-31
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-31
AI Technical Summary
Existing smart glasses charging methods require a long waiting time, which cannot meet users' needs for fast battery life and reduces the user experience.
A battery swapping component is installed on the glasses case to swap the battery of the smart glasses placed inside, thus achieving rapid battery life.
The rapid battery replacement via the battery swapping component extends the usage time of smart glasses and improves the user experience.
Smart Images

Figure CN223600987U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to glasses storage technical field especially, relate to a glasses set system and glasses box with battery replacement function. BACKGROUND
[0002] Glasses are composed of lenses and frames, traditional glasses can include glasses for improving vision (such as myopia glasses, hyperopia glasses) and glasses for protecting eyes (such as sunglasses, goggles) and glasses for decorative purposes, with the development of portable smart devices, there are also smart glasses with communication (such as WiFi communication, Bluetooth communication, etc.), audio playback, projection and display (such as virtual reality VR, augmented reality AR, etc.), AI recognition (such as image recognition, voice recognition, gesture recognition, etc.), gaze tracking (or eye movement tracking) and / or various automatic adjustment functions on the market. As a kind of wearable device, smart glasses combine IT (Information Technology, information technology) technology and / or automatic control technology with the functions of traditional glasses, and they are becoming more and more popular in the market. In order to realize the IT function and / or automatic control adjustment function of glasses, relevant electronic components will be installed on smart glasses, and power supply (such as battery) will be set to power various electronic components. As an example, taking smart glasses with gaze tracking function as an example, the inside of the smart glasses can be built-in light source (such as LED lamp) and camera, the light source illuminates the user's eyes and captures the position of the pupil, and the camera tracks its dynamic to realize accurate gaze tracking function, and the gaze tracking data can also be recorded in the recording unit (memory) connected with the smart glasses.
[0003] Considering the aesthetics, comfort and safety of glasses wearing, the design space of the battery for smart glasses is very limited, and the battery capacity of the current smart glasses can only meet the several hours of endurance of the smart glasses, resulting in poor endurance of the smart glasses.
[0004] Accordingly, the prior art also provides various charging and endurance schemes for smart glasses. At present, the charging of smart glasses can be realized by wired charging and wireless charging: when adopting wired charging scheme, a charging port is usually set on the smart glasses, and the user can connect the charging port and power supply through charging wire to charge the smart glasses, which requires the user to manually and accurately align the charging; when adopting wireless charging scheme, electromagnetic coupling charging is usually carried out through the transmitting coil connected with external power supply and the receiving coil on the smart glasses, without the need for user to accurately align.
[0005] However, no matter wireless charging or wired charging mode, due to the limitation of charging speed, the user often needs to wait for a long time to continue using the smart glasses, the power supply efficiency is low, and the user experience is reduced. Utility model content
[0006] The utility model discloses to overcome the insufficient of prior art, provide a kind of glasses set system and glasses box with battery replacement function.The glasses storage scheme provided by the utility model is set on the glasses box replacement component, the battery of the smart glasses put into glasses box is replaced by replacement component, can be stored and replaced to the smart glasses, meet the quick endurance demand of smart glasses of user, prolong the use time of smart glasses, improve the use efficiency of smart glasses, improve the user experience.
[0007] To achieve the above object, the utility model provides the following technical scheme:
[0008] A kind of glasses set system, including smart glasses and the glasses box for storing the smart glasses;
[0009] The battery is installed on the smart glasses;
[0010] Replacement component is provided on the glasses box, and the replacement component is used to replace the battery of the smart glasses put into glasses box.
[0011] Further, the smart glasses are provided with a position adjusting module, and the position adjusting module is used to drive the nose pad, the temple, the frame and / or the lens of the smart glasses to act to adjust the relative position of the eye of the glasses wearer and the glasses lens.
[0012] Further, the lens of the smart glasses is a defocus lens, and the defocus lens at least includes a clear zone of central region and a defocus zone arranged around the clear zone, the clear zone has refractive power, and the defocus zone is provided with a microlens array.
[0013] The relative position of the eye of the glasses wearer and the glasses lens is adjusted by the aforementioned position adjusting module to make the clear zone correspond to the position of the eye of the glasses wearer.
[0014] Further, the glasses box includes a glasses box body with a glasses containing cavity, and the aforementioned replacement component is arranged in the glasses box body.
[0015] The replacement mode of the replacement component is:
[0016] During the process of putting the smart glasses into the glasses containing cavity, the battery of the smart glasses is replaced by the replacement component.
[0017] Further, the battery module is capable of protruding out of the glasses accommodating cavity, and the position and size of the battery module correspond to the position and size of the battery mounting cavity on the smart glasses.
[0018] During the process of placing the smart glasses into the glasses accommodating cavity, the battery module is capable of extending into the battery mounting cavity of the smart glasses, pushing the battery module to be replaced in the battery mounting cavity out and entering the battery mounting cavity at the same time; and when the smart glasses are placed into the glasses accommodating cavity in place, the battery module is installed in the battery mounting cavity.
[0019] Further, the battery module is installed in the glasses accommodating cavity through a movable connecting piece, and in the initial state, the battery module is accommodated in the glasses accommodating cavity.
[0020] When the battery needs to be replaced, the battery module is adjusted to protrude out of the glasses accommodating cavity through the movable connecting piece, and the movable connecting piece is in a telescopic structure, a turnover structure or a foldable structure.
[0021] Further, when the battery module is installed in the battery mounting cavity, the battery module pushed out is separated from the smart glasses.
[0022] The glasses box body is further provided with a charging compartment, and the charging compartment is used for placing the battery module pushed out and charging the placed battery module.
[0023] Further, the glasses box further comprises an electric quantity detection structure for detecting the electric quantity of the battery of the smart glasses in the glasses box, and the electric quantity detection result is displayed and output through a display structure or the electric quantity detection result is sent to the battery replacing assembly.
[0024] Further, the battery of the smart glasses is arranged on the temple or the frame of the glasses,
[0025] The temple or the frame is provided with a battery mounting cavity, and the battery is detachably accommodated in the battery mounting cavity.
[0026] Further, the battery is detachably connected to the temple and serves as a part of the temple.
[0027] Further, the glasses box is provided with a disinfection assembly for disinfecting the smart glasses in the glasses box.
[0028] And / or, the glasses box is provided with a charging assembly for charging the battery of the smart glasses in the glasses box.
[0029] The utility model also provides a glasses box with battery replacing function for accommodating smart glasses, and the glasses box is provided with a battery replacing assembly.
[0030] The battery replacing assembly is used for replacing the battery of the smart glasses placed in the glasses box.
[0031] Compared with the prior art, the above technical scheme has the following advantages and positive effects: the battery replacing assembly is arranged on the glasses box, the battery of the smart glasses placed in the glasses box is replaced by the battery replacing assembly, the smart glasses can be stored and replaced, the quick endurance requirement of the user for the smart glasses is met, the use time of the smart glasses is prolonged, the use efficiency of the smart glasses is improved, and the user experience is improved. BRIEF DESCRIPTION OF DRAWINGS
[0032] Figure 1 A structure schematic diagram of a glasses set system provided by the embodiment of the utility model.
[0033] Figure 2 A structure schematic diagram of smart glasses provided by the embodiment of the utility model.
[0034] Figure 3 A structure schematic diagram of a nose pad automatic adjustment provided by the embodiment of the utility model.
[0035] Figure 4 A structure schematic diagram of a defocus lens provided by the embodiment of the utility model.
[0036] Figure 5 A structure schematic diagram of a glasses box provided by the embodiment of the utility model.
[0037] Figure 6 A structure schematic diagram of a battery installation cavity provided by the embodiment of the utility model.
[0038] Figure 7 A structure schematic diagram of a battery installation cavity of a glasses leg provided by the embodiment of the utility model.
[0039] Figure 8 A structure schematic diagram of a battery module as a part of a glasses leg provided by the embodiment of the utility model.
[0040] BRIEF DESCRIPTION OF DRAWINGS
[0041] A glasses set system 10;
[0042] Smart glasses 100; a glasses frame 110, a glasses frame assembly 111, a glasses leg assembly 112, a glasses leg bending part 1121, a nose pad assembly 113, a nose pad gasket 1130, a nose pad 1131, a lifting structure 1132; a lens 120, a clear area 121, a defocus area 122, a lens peripheral area 123; an electronic element 130; a battery 140; a battery installation cavity 150, a sealing cover 151;
[0043] Eyeglass case 200; eyeglass accommodating cavity 210, base 211, nose pad support frame 212, battery module 213; case cover 220. DETAILED DESCRIPTION
[0044] The eyeglass set system and the eyeglass case with battery replacement function disclosed by the utility model will be further described in detail in combination with the drawings and specific embodiments. It should be noted that the technical features or combinations of technical features described in the following embodiments should not be considered in isolation, and they can be combined with each other to achieve better technical effects. In the drawings of the following embodiments, the same reference numerals appearing in each drawing represent the same features or components and can be applied to different embodiments. Therefore, once an item is defined in one drawing, it does not need to be further discussed in subsequent drawings.
[0045] It should be noted that the structures, proportions, sizes, etc. shown in the drawings attached to the present specification are only used to cooperate with the content disclosed in the specification for understanding and reading by those skilled in the art, and are not used to limit the limiting conditions of the implementation of the utility model. Any modification of structure, change of proportion relationship or adjustment of size, which does not affect the effects and purposes that the utility model can produce, should fall within the scope of the technical content disclosed by the utility model. The scope of the preferred embodiments of the utility model includes additional implementations, in which the functions can be performed in a substantially simultaneous manner or in reverse order according to the functions involved, which should be understood by those skilled in the art to which the embodiments of the utility model belong.
[0046] Techniques, methods, and equipment known to those of ordinary skill in the relevant art can not be discussed in detail, but should be considered part of the specification where appropriate. In all examples shown and discussed here, any specific value should be interpreted as merely exemplary, not as a limitation. Therefore, other examples of exemplary embodiments can have different values.
[0047] In the description of the embodiments of the present application, " / " means or, and "and / or" is used to describe the association relationship of the associated objects, which means that there can be three relationships, such as "A and / or B" means that A and B exist alone, B exists alone, and A and B exist simultaneously. In the description of the embodiments of the present application, "multiple" means two or more.
[0048] In the description of the embodiments of the present application, the smart glasses refer to glasses installed with relevant electronic elements (to realize the relevant functions of the glasses), including but not limited to various smart glasses with functions of communication, audio playing, projection and display, AI recognition, line-of-sight tracking and / or various automatic control adjustment, etc. Preferably, the smart glasses can combine the functions of traditional glasses (such as improving vision) and the relevant IT functions / automatic control adjustment functions. According to needs, the smart glasses can also have an independent operating system, can realize wireless network access to the Internet / Internet of Things, and programs provided by software service providers such as user-installed software and games. Embodiments
[0049] Referring to Figure 1 As shown in the figure, the glasses set system 10 provided by the utility model, the glasses set system includes smart glasses 100 and glasses box 200 for accommodating the smart glasses.
[0050] The smart glasses 100 can include a frame 110, a lens 120, an electronic element 130, and a battery 140 capable of powering the electronic element.
[0051] The frame 110 can specifically include a lens mounting structure (which can be in a framed form or a frameless form), a temple, and a nose pad. Referring to Figure 2 As an example of framed glasses, the frame 110 of the smart glasses 100 can specifically include a frame assembly 111, a temple assembly 112, and a nose pad assembly 113, and the lens 120 is mounted in the frame.
[0052] The electronic element 130 is used to realize the relevant functions of the smart glasses. As an example but not limitation, when the smart glasses 100 are smart glasses with line-of-sight tracking function, the electronic element 130 on the smart glasses 100 can include a built-in light source, a camera, and a memory arranged on the inner side of the glasses, the built-in light source is used to illuminate the user's eyes and capture the position of the pupil, and the camera is used to track its dynamic to realize accurate line-of-sight tracking function, and the line-of-sight tracking data can also be recorded in the memory (recording unit) connected with the smart glasses.
[0053] In a preferred embodiment, a position adjustment module can also be provided on the smart glasses 100, which is used to drive the nose pad, temple, frame, and / or lens of the smart glasses to act to adjust the relative position of the eye of the glasses wearer and the lens of the glasses.
[0054] Taking driving the nose pad as an example, at this time, the position adjustment module can specifically include a nose pad moving assembly arranged corresponding to the nose pad.
[0055] In one embodiment, the control unit can control the nose pad moving assembly to move the nose pad relative to the lens to adjust the relative position between the eye of the eyeglasses wearer and the lens of the eyeglasses. Preferably, the position of the nose pad on the nose of the user is kept unchanged, and the lens is moved up and down by the lifting structure on the nose pad, so that the position of the lens is adjusted to make the line of sight of the user re-enter the central area of the lens. As an example in a typical manner but not limited, see Figure 3 As shown, the nose pad assembly 113 can include a nose pad 1131 and a lifting structure 1132, and the two sides of the nose pad 1131 are provided with nose pad pads 1130 which are symmetrically arranged and connected by a connecting part (usually a nose pad bridge). The middle part of the connecting part is movably mounted with the lifting structure 1132, and the upper end of the lifting structure 1132 is fixedly connected with the frame. The lifting structure 1132 can move up and down relative to the connecting part of the nose pad 1131 to adjust the distance between the nose pad 1131 and the frame, and when the frame moves, the lens on it also moves, so as to realize the relative movement between the nose pad and the lens. The lifting structure 1132 can also be limited (or locked) after moving to a position to keep the position fixed.
[0056] In another embodiment, the control unit can control the nose pad moving assembly to drive the nose pad to move relative to the nose of the user to move the lens, so that the line of sight of the user falls into the central area of the lens, and at this time, when the nose pad moves relative to the nose, the nose pad moves the frame together to adjust the relative position between the eye of the eyeglasses wearer and the lens of the eyeglasses.
[0057] In this embodiment, the way of driving the nose pad to move by the nose pad moving assembly is rolling, sliding or step-by-step moving. The driving structure of the nose pad moving assembly is preferably a micro motor. It should be noted that the scheme of driving an object to roll, slide or step-by-step move relative to a surface by a motor can be used in the nose pad moving of the present application, and various relative motion control schemes in the prior art can be referred to, which will not be described here.
[0058] Preferably, the nose pad may include a nose pad base and a nose pad upper part. The nose pad base is worn on the user's nose, and the nose pad upper part is connected to the eyeglass frame. A nose pad track is installed on the nose pad base, and the nose pad upper part is movably mounted on the nose pad track via a slider / pulley and can move along the track direction, while movement in other directions is restricted. A nose pad moving component—such as a drive motor—can be used to drive the nose pad upper part to move along the nose pad track, causing the eyeglass frame and lenses to move together to adjust the lens position, while the relative position of the nose pad base and the user's nose remains unchanged. After the nose pad upper part moves into position on the nose pad track, the control unit can also control a locking structure to act on the nose pad upper part to limit its position (the locking structure enters a locked state), allowing the nose pad upper part to maintain that position.
[0059] In this way, by setting the nose pads separately and installing the upper part of the nose pads through the nose pad track, the base of the nose pads worn on the nose does not move when the upper part of the nose pads moves, reducing the user's discomfort when adjusting the position of the nose pads.
[0060] In this embodiment, the lens 120 of the smart glasses 100 is preferably a defocus lens. See also Figure 4 As shown, the defocus lens includes at least a clear area 121 in the central region and a defocus area 122 surrounding the clear area 121. The clear area 121 has refractive power, and the defocus area 122 is provided with a microlens array. The defocus structure design and defocus principle of the defocus glasses are existing technologies and will not be described in detail here.
[0061] At this time, the relative position of the wearer's eyes and the glasses lenses can be adjusted by the aforementioned position adjustment module so that the clear area 121 corresponds to the position of the wearer's eyes.
[0062] The glasses case 200 is equipped with a battery swapping component, which is used to swap the battery of the smart glasses placed in the glasses case.
[0063] For details, see Figure 5 As shown, the eyeglass case 200 may include an eyeglass case body with an eyeglass receiving cavity 210. The lower part of the eyeglass case body is a base 211, and the upper part is connected to a case lid 220. The case lid 220 is movably connected to the upper part of the eyeglass case body and can rotate relative to the upper part of the eyeglass case body, thereby opening or closing the eyeglass receiving cavity 210. Preferably, the eyeglass case body is provided with a first magnetic attraction member, and the case lid 220 is provided with a second magnetic attraction member. The first magnetic attraction member and the second magnetic attraction member attract each other to close the case lid 220.
[0064] In further embodiments, the glasses box body and the box cover can also be provided with a plug-in structure, such as can include a female fastener provided on one side of the glasses box body and a male fastener provided on one side of the box cover, which can be plugged and fastened.
[0065] The base 211 can adopt a hollow shell, and relevant electronic components such as a control circuit board, a battery, a wireless communication module, and various sensors can be arranged in the shell. The base 211 can be provided with a charging port, and a through hole is arranged at the bottom of the shell, the size of the through hole is slightly larger than the size of the charging port, and the through hole corresponds to the position of the charging port. The plug of the charging cord can be inserted into the charging port through the through hole to charge the battery in the glasses box base and / or power the electronic components of the glasses box. In specific implementation, the charging port can adopt one of USB, USB-A, and Type-C interfaces.
[0066] The base 211 can also be provided with operation buttons, indicator lights, and the like for human-computer interaction.
[0067] The glasses accommodating cavity 210 is also provided with a nose pad support frame 212 to support the nose pad bridge of the smart glasses. The shape of the glasses accommodating cavity 210 matches the shape of the smart glasses.
[0068] The glasses box body is provided with the aforementioned battery replacement assembly. In this embodiment, the battery replacement mode of the battery replacement assembly is that the smart glasses are placed into the glasses accommodating cavity, and the battery replacement assembly replaces the battery of the smart glasses.
[0069] Preferably, the battery replacement assembly can include a battery module 213 that can protrude relative to the glasses accommodating cavity, as shown in Figure 5 The position and size of the battery module 213 correspond to the position and size of the battery mounting cavity on the smart glasses.
[0070] During the process of placing the smart glasses into the glasses accommodating cavity, the battery module can extend into the battery mounting cavity of the smart glasses, push out the battery module to be replaced in the battery mounting cavity, and enter the battery mounting cavity at the same time. When the smart glasses are placed into the glasses accommodating cavity in place, the battery module is installed in the battery mounting cavity.
[0071] As a typical example, see Figure 6As shown, the first battery mounting cavity and the second battery mounting cavity are respectively arranged on both sides of the frame of the smart glasses 100. Correspondingly, the battery replacement assembly in the glasses accommodating cavity can include two battery modules 213 protruding from the glasses accommodating cavity, which are respectively the first battery module and the second battery module. During the process of placing the smart glasses 100 into the glasses accommodating cavity, the battery mounting cavities on both sides of the frame of the smart glasses 100 are opened, and the battery modules 213 on both sides of the glasses box are aligned, and then the user presses down the glasses frame, so that the battery modules 213 on both sides are respectively inserted into the battery mounting cavities on both sides of the frame of the smart glasses 100. As the battery modules 213 enter the battery mounting cavities, the battery modules to be replaced in the battery mounting cavities are pushed out. When the smart glasses are placed into the glasses accommodating cavity in place, the battery modules 230 are also installed in the battery mounting cavities.
[0072] Preferably, the battery modules 230 can be installed in the glasses accommodating cavity through the movable connecting pieces. In the initial state, the battery modules 230 can be accommodated in the glasses accommodating cavity, for example, the battery modules 230 can be folded in the glasses accommodating cavity through the movable connecting pieces. According to the needs, the movable connecting pieces can also adopt a telescopic structure, a turnover structure, etc., which are not limited here, as long as the accommodation of the battery modules 230 can be achieved.
[0073] When the battery needs to be replaced, the user can make the battery modules 230 turn over or extend through the movable connecting pieces, so that the battery modules 230 protrude relative to the glasses accommodating cavity. In this way, in the case where the battery does not need to be replaced, the battery modules 230 can be accommodated in the glasses accommodating cavity without affecting the placement of the glasses.
[0074] More suitably, when the battery modules are installed in the battery mounting cavities, the battery modules pushed out are separated from the smart glasses. At this time, the user can manually take out the separated old battery modules.
[0075] Further, the glasses box body is also provided with a charging compartment for placing the aforementioned battery modules pushed out and charging the placed battery modules. The way of placing the battery modules pushed out can be manually placed by the user, or the automatic grabbing and automatic placing of the battery can be realized through the intelligent mechanical arm.
[0076] In the embodiment, the glasses box can also include a power detection structure for performing power detection operation on the battery of the smart glasses in the glasses box, and outputting the power detection result through the display structure or sending the power detection result to the aforementioned battery replacement assembly.
[0077] In one embodiment of the present embodiment, the battery of the smart glasses can be arranged on the temple or the frame of the glasses. The temple or the frame is provided with a battery mounting cavity, and the battery is detachably arranged in the battery mounting cavity.
[0078] As an example of a typical manner, see Figure 7 As shown, a typical structure of arranging the battery mounting cavity in the temple is illustrated. The temple bending part 1121 of the temple 112 is provided with a battery mounting cavity 150, and the glasses battery 140 is detachably arranged in the battery mounting cavity 150. The battery 140 can provide power for the normal operation of each functional module of the glasses as a power supply. It can be understood that when the temple of the smart glasses is two, the above-mentioned functional modules and the battery can be arranged in the two temples, and at this time, one battery mounting cavity 150 is arranged in each of the two temples.
[0079] A sealing cover 151 covering the battery mounting cavity 150 can also be included. The sealing cover 151 is arranged as a battery cover in a openable and closable manner, so that the user can open the sealing cover 151 and take out the battery when it is necessary to replace the battery, as shown in Figure 7 , or close the sealing cover 151 after replacing the battery to protect the battery and the internal functional modules of the temple.
[0080] In addition, the sealing cover 151 can be made to abut against the battery after being closed, so as to fix the battery.
[0081] In addition, the sealing cover 151 is also beneficial to realize the dustproof and waterproof of the battery and the internal structure of the temple.
[0082] In another embodiment of the present embodiment, the battery is detachably connected to the temple and is part of the temple. As an example of a typical manner, see Figure 8 As shown, the temple bending part 1121 of the temple 112 is arranged as a battery, and at this time, the temple bending part 1121 is a temple battery, that is, it is both a battery module and part of the temple.
[0083] It should be noted that the above-mentioned manner is an example and not a limitation. When arranging the battery mounting cavity or the temple battery, the battery mounting cavity or the temple battery can be arranged at any position of the temple, for example, in the middle of the temple.
[0084] In the present embodiment, the smart glasses case can also be provided with a disinfection assembly for disinfecting the smart glasses in the smart glasses case.
[0085] Specifically, the disinfection manner of the disinfection assembly can be one or more of heating disinfection, ultraviolet disinfection, and ozone disinfection.
[0086] Further, the glasses box can be further provided with a charging assembly for charging the battery of the smart glasses in the glasses box.
[0087] At this time, preferably, the user can select to charge or replace the battery of the smart glasses according to the needs, such as setting a man-machine interaction area on the glasses box to collect the selection operation of the user, when the user selects to charge, such as the user presses the charging button on the touch screen of the man-machine interaction area, the charging assembly is triggered to work to charge the battery of the smart glasses.
[0088] In particular, the charging assembly can include a first charging contact, a charging battery and a charging circuit board, the first charging contact is arranged in the glasses accommodating cavity and can be extended and retracted relative to the glasses accommodating cavity; the charging battery is electrically connected with the charging circuit board to supply power to the charging circuit board, and the charging battery is also electrically connected with the first charging contact through a wire. When the smart glasses are placed in the glasses accommodating cavity, after the user selects the charging button, the charging circuit board can control the first charging contact in the glasses accommodating cavity to extend, so that the first charging contact in the glasses accommodating cavity is connected with the second charging contact on the smart glasses to conduct, and the charging battery charges the battery of the smart glasses through the wire.
[0089] It should be noted that the extension and retraction control of the first charging contact relative to the glasses accommodating cavity can be based on various extension and retraction control structures in the prior art, such as commonly used electric push rod drive, linear motor drive, etc. The technology capable of realizing the extension and retraction of one object relative to another object can be applied to the present scheme to realize the extension and retraction control of the first charging contact relative to the glasses accommodating cavity, which will not be described here.
[0090] Another embodiment of the utility model also provides a glasses box with battery replacement function, the glasses box is used for accommodating smart glasses.
[0091] The glasses box is provided with a battery replacement assembly, and the battery replacement assembly is used for replacing the battery of the smart glasses placed in the glasses box.
[0092] In particular, the glasses box can include a glasses box body with a glasses accommodating cavity, and the glasses box body is provided with the aforementioned battery replacement assembly.
[0093] The battery replacement mode of the battery replacement assembly is to replace the battery of the smart glasses through the battery replacement assembly during the process of placing the smart glasses into the glasses accommodating cavity.
[0094] As an example of a typical mode, at this time, the battery replacement assembly can include a battery module that can protrude relative to the glasses accommodating cavity, and the position and size of the battery module correspond to the position and size of the battery mounting cavity on the smart glasses.
[0095] In the process of putting the smart glasses into the glasses accommodating cavity, the battery module can extend into the battery mounting cavity of the smart glasses, push out the battery module to be replaced in the battery mounting cavity and enter the battery mounting cavity at the same time; when the smart glasses are put into the glasses accommodating cavity in place, the battery module is installed in the battery mounting cavity.
[0096] The battery mounting cavity of the smart glasses can be arranged on one side, both sides and / or the middle of the glasses as needed, which is not limited here. Correspondingly, the battery module of the battery replacement assembly can be arranged on one side, both sides and / or the middle of the glasses accommodating cavity. The arrangement position of the battery module should match the position of the battery mounting cavity of the smart glasses, so that the user can align the battery module with the battery mounting cavity of the smart glasses when putting in the smart glasses, push out the battery module to be replaced in the battery mounting cavity, and at the same time, the battery module also enters the battery mounting cavity.
[0097] In the embodiment, the glasses box further comprises a power detection structure for performing power detection operation on the battery of the smart glasses in the glasses box, and outputting the power detection result through the display structure or sending the power detection result to the aforementioned battery replacement assembly. When the control circuit board of the battery replacement assembly receives the aforementioned power detection result and determines that the glasses power is insufficient (for example, the received power detection result is low power or the power is lower than the preset power threshold), the battery replacement operation can be triggered, the battery taking structure and the battery placing structure are controlled to act to take out the battery to be replaced from the smart glasses, so that the battery to be replaced is separated from the smart glasses, and the battery in the battery compartment is installed on the smart glasses.
[0098] In another embodiment of the embodiment, a disinfection assembly is arranged on the glasses box for disinfecting the smart glasses in the glasses box. In addition, a charging assembly is arranged on the glasses box, and the charging assembly is used for charging the battery of the smart glasses in the glasses box.
[0099] Other technical features are described in the foregoing embodiments, which will not be repeated here.
[0100] In the above description, the disclosure of the utility model is not intended to limit itself to these aspects. Instead, within the scope of the target protection of the disclosure, the components can be selectively and operatively combined in any number.
Claims
1. An eyeglasses set system comprising smart glasses and an eyeglasses case for storing the smart glasses; the smart glasses are provided with a battery, characterized in that: the eyeglasses case is provided with a battery replacement assembly for performing a battery replacement operation on the battery of the smart glasses placed in the eyeglasses case; wherein the eyeglasses case comprises an eyeglasses case body having an eyeglasses accommodating cavity, and the battery replacement assembly is arranged in the eyeglasses case body; the battery replacement mode of the battery replacement assembly is that, during the process of placing the smart glasses into the eyeglasses accommodating cavity, the battery replacement assembly replaces the battery of the smart glasses. The smart glasses are provided with a position adjusting module for driving the nose pad, the temple, the frame and / or the lens of the smart glasses to act to adjust the relative position between the eyes of the eyeglasses wearer and the eyeglasses lens. The lens of the smart glasses is an afocal lens, which at least comprises a clear zone of a central region and an afocal zone arranged around the clear zone, the clear zone has a refractive power, and the afocal zone is provided with a microlens array; The relative position between the eyes of the eyeglasses wearer and the eyeglasses lens is adjusted by the position adjusting module to make the clear zone correspond to the position of the eyes of the eyeglasses wearer.
2. The eyewear system of claim 1, wherein: The lower part of the eyeglasses case body is a base, and the upper part is connected with a case cover, the case cover is movably connected with the upper part of the eyeglasses case body and can rotate relative to the upper part of the eyeglasses case body, so as to open or close the eyeglasses accommodating cavity; 3. The eyewear system of claim 2, wherein: The eyeglasses case body is provided with a first magnetic attraction member, and the case cover is provided with a second magnetic attraction member, the first magnetic attraction member and the second magnetic attraction member attract each other to close the case cover. The eyeglasses accommodating cavity is also provided with a nose pad support frame to support the nose pad center beam of the smart glasses, and the shape of the eyeglasses accommodating cavity matches the shape of the smart glasses.
4. The eyewear system of any one of claims 1-3, wherein: The battery replacement assembly comprises a battery module that can protrude relative to the eyeglasses accommodating cavity, and the position and size of the battery module correspond to the position and size of the battery mounting cavity on the smart glasses; During the process of placing the smart glasses into the eyeglasses accommodating cavity, the battery module can extend into the battery mounting cavity of the smart glasses, push out the battery module to be replaced in the battery mounting cavity, and at the same time, the battery module enters the battery mounting cavity; when the smart glasses are placed in the eyeglasses accommodating cavity in place, the battery module is installed in the battery mounting cavity.
5. The eyewear system of claim 4, wherein: The battery module is installed in the eyeglasses accommodating cavity through a movable connecting member, and in the initial state, the battery module is stored in the eyeglasses accommodating cavity; 6. The eyewear system of claim 1, wherein: When the battery needs to be replaced, the battery module is adjusted to protrude relative to the eyeglasses accommodating cavity through the movable connecting member, and the movable connecting member is of a telescopic structure, a turnover structure or a foldable structure. When the battery module is installed in the battery mounting cavity, the battery module that is pushed out is separated from the smart glasses; 7. The eyewear system of claim 6, wherein: The eyeglasses case body is also provided with a charging compartment for placing the battery module that is pushed out and performing a charging operation on the placed battery module. The eyeglasses case further comprises a power detection structure for performing a power detection operation on the battery of the smart glasses in the eyeglasses case, and the power detection result is displayed and output through a display structure or sent to the battery replacement assembly.
8. The eyewear system of claim 6, wherein: The battery of the smart glasses is arranged on the temple or the frame of the eyeglasses, 9. The eyewear system of any one of claims 1-3, wherein: 10. The eyewear system of any one of claims 1-3, wherein: The temple or the frame is provided with a battery mounting cavity, and the battery is detachably accommodated in the battery mounting cavity.
11. The eyewear system of any one of claims 1-3, wherein: The battery is detachably connected to the temple and serves as a part of the temple.
12. The eyewear system of any one of claims 1-3, wherein: The eyeglass case is provided with a sterilization assembly for sterilizing the smart eyeglasses in the eyeglass case. And / or, the eyeglass case is provided with a charging assembly for charging the battery of the smart eyeglasses in the eyeglass case.
13. A glasses case with battery replacement function for storing smart glasses, characterized in that: The eyeglass case is provided with a battery replacement assembly. The battery replacement assembly is used for battery replacement operation of the smart eyeglasses put into the eyeglass case. The eyeglass case comprises an eyeglass case body with an eyeglass accommodating cavity, and the battery replacement assembly is arranged in the eyeglass case body. The battery replacement assembly is used for battery replacement of the smart eyeglasses in the process of putting the smart eyeglasses into the eyeglass accommodating cavity.