WO2021077824A1 - 一种用电眼镜及用电眼镜系统 - Google Patents

一种用电眼镜及用电眼镜系统 Download PDF

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Publication number
WO2021077824A1
WO2021077824A1 PCT/CN2020/103511 CN2020103511W WO2021077824A1 WO 2021077824 A1 WO2021077824 A1 WO 2021077824A1 CN 2020103511 W CN2020103511 W CN 2020103511W WO 2021077824 A1 WO2021077824 A1 WO 2021077824A1
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WIPO (PCT)
Prior art keywords
power generation
electric
solar power
lens
generation layer
Prior art date
Application number
PCT/CN2020/103511
Other languages
English (en)
French (fr)
Inventor
张文铿
彭睿
朱欣
徐灏文
王海洋
范茂斌
Original Assignee
华为技术有限公司
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Application filed by 华为技术有限公司 filed Critical 华为技术有限公司
Publication of WO2021077824A1 publication Critical patent/WO2021077824A1/zh

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    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C11/00Non-optical adjuncts; Attachment thereof
    • G02C11/10Electronic devices other than hearing aids
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C11/00Non-optical adjuncts; Attachment thereof
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C5/00Constructions of non-optical parts
    • G02C5/14Side-members
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C5/00Constructions of non-optical parts
    • G02C5/22Hinges
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C7/00Optical parts
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C9/00Attaching auxiliary optical parts
    • G02C9/02Attaching auxiliary optical parts by hinging

Definitions

  • This application relates to the technical field of electric equipment, and in particular to an electric glasses and an electric glasses system.
  • Smart glasses usually include lenses, frames, temples, and various electrical components, such as acquisition modules, microprocessors, and action modules.
  • the collection module can collect information about the eyeball and/or around the eyeball, and transfer the collected information to the microprocessor, which controls the action module to perform corresponding actions based on the collected information .
  • the power supply module is a rechargeable battery.
  • the battery life of the smart glasses is usually short.
  • This application provides an electric glasses and an electric glasses system.
  • the electric glasses have a longer battery life.
  • the first aspect of the present application provides an electric glasses, the electric glasses including:
  • the lenses are mounted on the spectacle frame;
  • a solar power generation layer the solar power generation layer is used to convert solar energy into electric energy, and the solar power generation layer is connected with the electrical components of the power glasses;
  • the solar power generation layer is disposed on the lens.
  • the component with the largest area is the lens. Therefore, when the solar power generation layer is installed on the lens, the installation area of the solar power generation layer can be increased, thereby increasing the power generation amount, so as to increase The battery life of the electric glasses.
  • the lenses are usually flat or curved surfaces, the solar power generation layer can be easily installed and the difficulty of setting the solar power generation layer can be reduced. Compared with other positions of the power glasses, the lens is more convenient to absorb light energy, thereby further improving Conversion rate of electrical energy.
  • the area of the solar power generation layer is equal to the area of the lens, so that the area of the solar power generation layer can be increased as much as possible, and the conversion rate of solar energy into electric energy can be improved.
  • the lens along the thickness direction of the lens, the lens includes an inner surface and an outer surface that are opposed to each other;
  • the lens includes separate lens monomers
  • the solar power generation layer is provided between the adjacent lens monomers, any one of the inner surface and the outer surface, or any combination thereof.
  • two lenses are included, and the two lenses are connected by a first connecting portion, or the two lenses are arranged at intervals.
  • the electric glasses include a power generation module, the power generation module includes a support and the solar power generation layer, the solar power generation layer is arranged on the support; the power generation module and the The frame can be detachably connected.
  • the solar power generation layer is modularized and detachably connected to the frame, the replacement of the solar power generation layer can be facilitated, and when the power generation module is removed, the power glasses can also be used as ordinary glasses, thereby improving Applicability of electric glasses.
  • the bracket is provided with a first magnetic member
  • the mirror frame is provided with a second magnetic member
  • the first magnetic member and the second magnetic member, the end of the two close to each other is magnetic
  • the bracket and the mirror frame can be detachably connected through the first magnetic member and the second magnetic member.
  • the lens frame includes a lens mounting part and a temple connecting part, and the lens mounting part is used for mounting the lens;
  • the temple connecting parts are located at both ends of the lens mounting part, and the temple connecting parts are used to connect with the temples of the electric glasses;
  • the bracket includes a first body part and an extension part.
  • the extension part is located at both ends of the first body part and corresponds to the temple connecting part along the width direction; the first magnetic member is arranged on the The extension part, the second magnetic member is arranged at the temple connecting part.
  • the first magnetic member is disposed on the two extension parts, so that the reliability of the connection between the bracket and the mirror frame can be improved.
  • the bracket has first hooks arranged oppositely; along the height direction, the spectacle frame has oppositely arranged grooves, and the first hooks Correspondingly snap to the card slot.
  • the power generation module and the mirror frame are connected by a snap connection, and after the two are snapped, the snap connection structure can restrict the movement of the power generation module in the thickness direction, width direction, and height direction relative to the mirror frame. Thereby, the reliability of the connection between the power generation module and the mirror frame is improved.
  • the first hook includes a first extension section and a first clamping section, and along the thickness direction, the first extension section is located between the first clamping section and the bracket , And a first step surface is formed between the first extension section and the first clamping section;
  • the card slot includes a first bottom wall and a second bottom wall, the first bottom wall and the second bottom wall are arranged along a thickness direction, and a second step surface is formed between the two;
  • the first step surface abuts the second step surface.
  • the bracket has a second hook arranged opposite to each other, and the bracket is also provided with a third hook, and the second hook is connected to the second hook.
  • the frame is clamped, and the third hook is clamped with the frame; at least one of the third hooks and the second hook are arranged opposite to each other in the height direction, and/or, at least two of the third hooks
  • the hooks are arranged oppositely along the height direction.
  • the bracket has two second hooks arranged opposite to each other in the width direction, and at the same time, it also has two fourth hooks, and the two fourth hooks are respectively aligned with the two second hooks along the height direction. Relatively arranged, when the bracket is clamped with the mirror frame, the four hooks can restrict the relative movement of the bracket and the mirror frame in the thickness direction, width direction, and height direction.
  • the second hook includes a second clamping section and a second extension section.
  • the second clamping section and the bracket are respectively located on the side of the second extension section.
  • Two ends, and a third step surface is formed between the second clamping section and the second extension section;
  • the third hook includes a third clamping section and a third extension section. Along the thickness direction, the third clamping section and the bracket are located at both ends of the third extension section, and the third hook A fourth step surface is formed between the connecting section and the third extension section;
  • the third stepped surface abuts against the mirror frame, and the fourth stepped surface abuts against the mirror frame.
  • the light transmittance of the solar power generation layer is 3% to 90%.
  • the liquid solar power generation material is coated on the lens to form the solar power generation layer, or a solar power film is applied to the lens to form the solar power generation layer.
  • the electric glasses further include a battery, and the battery and the solar power generation layer are connected through a connecting component; the electric glasses further include temples, and the temples include second The body part, the second body part has a cavity, and the battery is located in the cavity.
  • the electric energy generated by the solar power generation layer can be stored in the battery.
  • the electric energy stored in the battery can supply power to the electric components, so that the The electric glasses can still work normally in a non-light environment, which further improves the battery life of the electric glasses and improves the energy utilization rate.
  • the connecting component includes a wire, and the battery and the solar power generation layer are connected through the wire to form a loop.
  • the connecting component includes a circuit board, and the battery and the solar power generation layer are connected through the circuit board.
  • the spectacle frame is provided with a first hinge part
  • the second body part is provided with a second hinge part
  • the spectacle frame and the temple pass through the first hinge part and the second hinge part.
  • the two hinge parts are rotatably connected; the second body part is provided with a first through hole, the first hinge part is provided with a second through hole, and the connecting component can pass through the first through hole and the second through hole.
  • the connecting component extends from the inside of the electric glasses and will not be exposed to the outside, thereby improving the safety of the electric glasses and improving the appearance performance.
  • the spectacle frame is provided with a first hinge part
  • the second body part is provided with a second hinge part
  • the spectacle frame and the temple pass through the first hinge part and the second hinge part.
  • the two hinge parts are rotatably connected;
  • the first hinge part includes a fourth conductive part, and the fourth conductive part is connected to the solar power generation layer;
  • the second hinge part includes a fifth conductive part, the fifth conductive part Connected with the battery;
  • the fourth conductive portion is connected with the fifth conductive portion, and the connecting assembly includes the fourth conductive portion and the fifth conductive portion.
  • the electrical connection between the battery and the solar power generation layer is achieved through the first hinge part and the second hinge part, that is, the electrical connection between the two can be achieved through the original structure of the electric glasses, and no additional components are required, thereby
  • the structure of the electric glasses is simplified, the weight of the electric glasses is reduced, and the wearing comfort is improved.
  • the connecting assembly includes a first conductive contact and a second conductive contact, and the first conductive contact is disposed on the mirror frame and connected to the solar power generation layer, the The second conductive contact is arranged on the second body part and is connected to the battery; the first conductive contact and the second conductive contact can be in contact with each other.
  • the solar power generation layer and the battery are not directly contacted to achieve electrical connection, but electrical connection is achieved through the contact of two contacts. Therefore, the amount of wire used can be reduced, and the number of wires provided for the passage of the wire can be reduced. The number of holes.
  • the end of the second body portion close to the mirror frame has an abutting surface;
  • the mirror frame includes a temple connecting portion for connecting with the temple, and the abutting surface can Abutting with the temple connecting part;
  • the first conductive contact is arranged at the temple connecting part, and the second conductive contact is arranged at the abutting end.
  • the electrical connection between the battery and the solar power generation layer can be realized only by the relative rotation between the temples and the mirror frame, and no other switch components are required, so that the number of components and the structure of the electric glasses can be reduced. Complexity and weight.
  • the battery and the solar power generation layer are in a conductive state only when the power glasses are in working state, and they are not conducted when the power glasses are not working, thereby reducing the loss of electric energy in the battery and improving the energy utilization rate.
  • one of the temple connecting portion and the abutting surface is provided with a first protrusion, the other is provided with a recess, and the outer contour of the first protrusion is Can conduct electricity, and the inner wall of the recess can be electrically conductive;
  • At least part of the first protrusion can be located in the recess.
  • a first conductive portion is provided on the outer circumference of the first protrusion, and a first insulating portion is provided between the first protrusion and the first conductive portion;
  • a second conductive portion is provided on the outer periphery of the recessed portion, and a second insulating portion is provided between the recessed portion and the second conductive portion, and the first conductive portion can be in contact with the second conductive portion.
  • the first conductive contact includes a first metal plate, and the second conductive contact includes a second protrusion and an elastic member;
  • the second body portion is provided with a mounting groove, the elastic member is located in the mounting groove, at least part of the second protrusion is located in the second mounting groove, and two ends of the elastic member are respectively connected to the mounting groove.
  • the bottom wall of the installation groove abuts the second protrusion;
  • the second protrusion can be in contact with the first metal disk.
  • one of the second body portion and the temple connecting portion is provided with an elastic sheet, and the other is provided with a second metal disc, and the elastic sheet and the second metal disc can be contact.
  • the connecting assembly includes a transmitting coil and a receiving coil, the transmitting coil is disposed on the mirror frame and connected to the solar power generation layer, and the receiving coil is disposed on the second body part , And connect with the battery.
  • a second aspect of the embodiments of the present application provides an electric glasses system, and the electric glasses system includes:
  • Electric glasses are the above-mentioned electric glasses
  • a charger the charger can be installed on the power glasses, and the charger can be connected to the battery of the power glasses.
  • the charger can charge the battery of the electric glasses, thereby further improving the function of the electric glasses.
  • the charger includes a third body part and a plurality of claws, and the claws are connected to the third body part;
  • the frame of the glasses is connected.
  • the spectacle frame has a first hinge part for connecting with the temple, the first hinge part is provided with a third conductive part, and the battery is connected to the third conductive part;
  • the claw is provided with a third conductive contact, and the third conductive portion can be in electrical contact with the third conductive contact.
  • FIG. 1 is a schematic diagram of the structure of the electric glasses provided in the application in the first specific embodiment
  • Fig. 2 is an exploded view of the electric glasses in Fig. 1 in a specific embodiment
  • FIG. 3 is a schematic structural diagram of the lens module in FIG. 2 in a first specific embodiment
  • FIG. 4 is a schematic diagram of the structure of the lens module in FIG. 2 in a second specific embodiment
  • FIG. 5 is a schematic structural diagram of the lens module in FIG. 2 in a third specific embodiment
  • Fig. 6 is an exploded view of the electric glasses in Fig. 1 in another specific embodiment
  • FIG. 7 is a schematic structural diagram of the lens module in FIG. 6 in a first specific embodiment
  • FIG. 8 is a schematic structural diagram of the lens module in FIG. 6 in a second specific embodiment
  • FIG. 9 is a schematic structural diagram of the lens module in FIG. 6 in a third specific embodiment.
  • FIG. 10 is a schematic diagram of the structure of the electric glasses provided in the application in the second specific embodiment.
  • Figure 11 is an exploded view of Figure 10
  • FIG. 12 is a schematic diagram of the structure of the power generation module in FIG. 11;
  • FIG. 13 is a schematic diagram of the structure of the mirror frame in FIG. 11;
  • FIG. 14 is a schematic diagram of the structure of the electric glasses provided by this application in a third specific embodiment
  • Figure 15 is a partial enlarged view of part I in Figure 14;
  • FIG. 16 is a schematic diagram of the structure of the power generation module in FIG. 14;
  • Figure 17 is a partial enlarged view of part II in Figure 16;
  • FIG. 18 is a schematic diagram of the structure of the mirror frame in FIG. 14;
  • Figure 19 is a partial enlarged view of part III in Figure 18;
  • FIG. 20 is a schematic diagram of the structure of providing electric glasses in a fourth specific embodiment according to this application.
  • Figure 21 is a partial enlarged view of part IV in Figure 20;
  • FIG. 22 is a schematic diagram of the structure of the power generation module in FIG. 20;
  • Figure 23 is a partial enlarged view of part V in Figure 22;
  • 24 is a schematic diagram of the structure of the electric glasses provided by an embodiment of the application with one temple removed;
  • 25 is a schematic diagram of the structure of the connection between the power generation module and the battery in FIG. 24;
  • FIG. 26 is a schematic diagram of the structure of the electric glasses provided by an embodiment of the application with one temple removed;
  • FIG. 27 is a schematic diagram of the structure of the electric glasses provided by an embodiment of the application with one of the temples removed; FIG.
  • FIG. 28 is a schematic diagram of the structure of providing electric glasses with one of the temples removed according to the application, in which the battery and the power generation module are connected through a circuit board;
  • FIG. 29 is a schematic diagram of the connection between the power generation module and the battery in FIG. 28;
  • FIG. 30 is an exploded view of electric glasses provided by an embodiment of the application.
  • Figure 31 is a partial enlarged view of part VI in Figure 30;
  • FIG. 32 is an exploded view of electric glasses provided by an embodiment of the application.
  • Figure 33 is a partial enlarged view of part VII in Figure 32;
  • FIG. 34 is a schematic structural diagram of the electric glasses provided by an embodiment of the application in a stored state, in which the battery and the power generation module are connected through a connecting terminal;
  • Figure 35 is a partial enlarged view of part VIII in Figure 34;
  • 36 is a schematic structural diagram of the electric glasses provided by an embodiment of the application in a stored state, in which the battery and the power generation module are connected through contacts;
  • Figure 37 is a partial enlarged view of part IX in Figure 36;
  • FIG. 38 is a schematic structural diagram of the electric glasses provided by an embodiment of the application in a stored state, in which the battery and the power generation module are connected by elastic sheets;
  • Figure 39 is a partial enlarged view of part X in Figure 38;
  • FIG. 40 is a schematic structural diagram of the electric glasses provided in an embodiment of the application in a stored state, in which the battery and the power generation module are connected through a coil;
  • Figure 41 is a partial enlarged view of part XI in Figure 40;
  • FIG. 42 is a schematic diagram of the connection between the electric glasses and the charger provided by this application.
  • FIG. 43 is a schematic diagram of the structure of the electric glasses in FIG. 42 with one temple removed;
  • Figure 44 is a partial enlarged view of part XII in Figure 43;
  • FIG. 45 is a schematic diagram of the structure of the charger in FIG. 42.
  • the embodiment of the present application provides an electric glasses, wherein the electric glasses include a lens 11, a frame 2, a temple 3, and also include electric parts, such as a collection module (such as a camera), a microprocessor (such as a chip or a circuit). Board) or action module.
  • a collection module such as a camera
  • a microprocessor such as a chip or a circuit
  • Board or action module.
  • the collection module can collect information about the eyeball and/or around the eyeball, and transfer the collected information to the microprocessor, and the microprocessor controls the action module to perform corresponding actions based on the collected information. action.
  • the power glasses can have different functions.
  • the power glasses also include a power supply module for powering the power components.
  • a power supply module for powering the power components.
  • the battery can be more
  • the power supply module is realized by a battery, it is necessary to charge the power glasses.
  • the embodiment of the present application mainly uses a solar power generation layer in the power supply module to increase the battery life of the electric glasses, and can omit the step of charging the electric glasses, thereby improving the convenience of use.
  • the "thickness direction X", "width direction Y” and “height direction Z” mentioned in this article are defined on the basis of the arrangement and structure of the lens 11 in the electric glasses, where “thickness direction X” “Refers to the direction in which the thickness of the lens 11 is located, “width direction Y” refers to the direction in which the two lenses 11 are arranged, and “height direction Z” is the same as the above-mentioned "thickness direction X” and "width direction Y”.
  • the vertical direction It can be understood that when the defined basis is different, the meanings of the above-mentioned position words are different. Therefore, the above-mentioned position words should not be regarded as an absolute limit to the protection scope of this application.
  • the electric glasses include a lens module 1, wherein the lens module 1 includes a lens 11, which may include a lens 11, and a lens 11 is installed in the mounting hole of the lens frame 2. It may also include two lenses 11, and the two lenses 11 are arranged along the width direction Y, and the two lenses 11 are respectively installed in the two mounting holes of the lens frame 2.
  • the power glasses also include a solar power generation layer 42 for converting solar energy into electrical energy.
  • the solar power generation layer 42 may specifically include perovskite solar cells or dye-sensitized solar cells that can realize light energy. The material that is converted into electric energy, and the light transmittance of the above two materials can be adjusted while converting light energy into electric energy, so that the light transmittance of the solar power generation layer 42 can be increased.
  • the solar power generation layer 42 is connected to the power-consuming components of the power-consuming glasses to supply power to the power-consuming components.
  • electricity can be generated, that is, the user is outdoors or outdoors with sunlight.
  • electricity can be generated through the solar power generation layer 42 so that the electric glasses can be used normally without being limited by the capacity of the rechargeable battery, and the battery life of the electric glasses is improved.
  • the solar power generation layer 42 corresponds to the lens 11, wherein the solar power generation layer 42 may correspond to one lens 11, or may correspond to both lenses 11, that is, the solar power generation The layer 42 corresponds to at least one lens 11.
  • the solar power generation layer 42 corresponding to the lens 11 means that the solar power generation layer 42 is disposed on (or fixed to) the lens 11, or the solar power generation layer 42 is attached to the lens 11, or, along the thickness direction X , There is a gap between the solar power generation layer 42 and the lens 11. In each of the above methods, the installation of the solar power generation layer 42 can utilize the space of the lens 11.
  • the component with the largest area is the lens 11. Therefore, when the solar power generation layer 42 corresponds to the lens 11, the solar power generation can be increased compared to components with a small area such as the temple 3.
  • the setting area of the layer 42 increases the amount of power generation, so as to further increase the battery life of the electric glasses.
  • the lens 11 is usually a relatively flat surface or curved surface, the solar power generation layer 42 can be easily installed, which reduces the difficulty of installing the solar power generation layer 42.
  • the lens 11 is more convenient for absorbing light energy compared with other positions of the electric glasses. , Thereby further improving the conversion rate of electric energy.
  • the electric glasses described in the embodiments of the present application are all glasses including electric components, and the type and structure of the electric components are not limited.
  • the area of the solar power generation layer 42 is equal to the area of the lens 11, so that the area of the solar power generation layer 42 can be increased as much as possible, and the conversion rate of solar energy into electric energy can be improved. It should be noted that the equal area mentioned here does not mean that the areas of the two are strictly equal, as long as the area of the solar power generation layer 42 and the area of the lens 11 are approximately equal.
  • the area of the solar power generation layer 42 can also be smaller than the area of the lens 11, for example, the area of the solar power generation layer 42 is greater than 50% of the area of the lens 11, or greater than 60%, 70%, etc., as long as it can meet the requirements for power generation. .
  • the solar power generation layer 42 may have a structure similar to that of the lens 11, for example, it may be a film-like structure with the same size and shape as the lens 11, or may be a film-like structure slightly smaller than the lens 11.
  • the lens 11 in the embodiments shown in FIGS. 3, 4, 8 and 9, along the thickness direction X of the lens 11, the lens 11 includes an inner surface and an outer surface that are opposed to each other, wherein, The inner surface means: when the user wears the electric glasses, the surface close to the user’s eyes, and the outer surface means the surface away from the user’s eyes. Normally, the inner surface and the outer surface have the same area. Of course, the two may not be used. equal.
  • the solar power generation layer 42 is disposed corresponding to the inner surface and/or the outer surface, that is, the solar power generation layer 42 can be directly attached to the inner surface and/or the outer surface, and the solar power generation layer 42 is provided with a protective layer outside.
  • the two lenses 11 of the electric glasses can be provided with the solar power generation layer 42, and the installation position and the number of the solar power generation layers 42 in the two lenses 11 can be the same or different.
  • the light transmittance of the latter two lenses 11 is the same, so that the positions and numbers of the solar power generation layers 42 of the two lenses 11 are the same.
  • the outer surfaces of the two lenses 11 are provided with a solar power generation layer 42, as shown in FIG.
  • the inner surfaces of the two lenses 11 are both provided with a solar power generation layer 42.
  • the lens 11 may include two or more separate lens monomers 111, and each lens monomer 111 is fixedly connected along the thickness direction X to A complete lens 11 is formed, and at the same time, the thickness of each lens unit 11 may be the same or different.
  • the above-mentioned solar power generation layer 42 may be disposed between adjacent lens units 111, any one of the inner surface and the outer surface of the lens 11, or any combination of the three.
  • the lens 11 includes two lens monomers 111 arranged along the thickness direction X.
  • the solar power generation layer 42 can be provided, that is, three solar power generation layers 42 are provided, which can further improve the conversion rate of electric energy.
  • the solar power generation layer 42 can only be disposed between the two lens units 111. At this time, not only can the solar energy be converted into electric energy, but also the solar power generation layer 42 can be protected by the two lens units 111. The service life of the solar power generation layer 42 is improved.
  • the above-mentioned lens module 1 may be an integrated structure, that is, two lenses 11 arranged along the width direction Y are connected by a first connecting portion 12, thereby increasing the two lenses 11 Symmetry when installed in the lens frame 2.
  • the lens module 1 can also be a split structure, that is, the lens module 1 includes two separate lenses 11, which can The two lenses 11 can be installed and disassembled independently. When one lens 11 is damaged, it is not necessary to replace all the lenses 11, which improves the utilization rate of the lenses 11.
  • the solar power generation layer 42 can be formed by coating the liquid solar power generation material on the corresponding position of the lens 11, or the solar power generation material can be first made into a solar power generation film, and then the solar power generation film can be applied. In the corresponding position of the lens 11.
  • the electric glasses include a power generation module 4, the power generation module 4 includes a bracket 41 and the above-mentioned solar power generation layer 42, and the solar power generation layer 42 is disposed on Bracket 41, and a protective layer 43 is provided outside the solar power generation layer 42 to protect the solar power generation layer 42. Therefore, the bracket 41, the solar power generation layer 42 and the protective layer 43 form the power generation module 4 of the electric glasses, that is, solar power generation
  • the layer 42 is modularized, and the power generation module 4 is detachably connected to the lens frame 2 and/or the lens 11 so that the solar power generation layer 42 corresponds to the lens 11.
  • the power generation module 4 may include a solar power generation layer 42 corresponding to the two lenses 11, or may include a solar power generation layer 42 corresponding to only one of the lenses 11.
  • the corresponding solar power generation layer 42 and the lens 11 in this embodiment may be: after the power generation module 4 is connected to the lens frame 2 and/or the lens 11, the solar power generation layer 42 and the lens 11 are arranged along the thickness direction X , And the two can be attached or not attached.
  • the solar power generation layer 42 can be attached to the lens 11, so that the solar power generation is generated by the lens 11
  • the layer 42 provides support along the thickness direction X.
  • the solar power generation layer 42 when the solar power generation layer 42 is modularized and detachably connected to the lens frame 2 and/or the lens 11, the replacement of the solar power generation layer 42 can be facilitated, and when the power generation module 4 is removed, the electric glasses It can also be used as ordinary glasses, thereby improving the applicability of electric glasses.
  • the frame 2 includes a lens mounting portion 22 and a temple connecting portion 24, wherein the lens mounting portion 22 is provided with two first mounting holes, and the lens 11 is correspondingly mounted on the first mounting hole along the In the width direction Y, there is a second connecting portion 23 between the two first mounting holes, and the second connecting portion 23 is located between the two lenses 11, that is, in the middle of the electric glasses along the width direction Y.
  • the temple connecting portion 24 is located at the two ends of the lens mounting portion 22 in the width direction Y, and the temple connecting portion 24 is connected with a first hinge portion 21, and the temple 3 is provided with a second hinge portion 31 so as to pass through the first hinge.
  • the cooperation of the part 21 and the second hinge part 31 realizes the rotational connection between the temple 3 and the spectacle frame 2.
  • the power generation module 4 can be detachably connected to the lens frame 2 without being detachably connected to the lens 11, so that the integrity of the lens 11 can be ensured.
  • the power generation module 4 can be detachably connected to any one or any combination of the lens mounting portion 22, the second connecting portion 23, and the temple connecting portion 24.
  • the bracket 41 may have a structure similar to the mirror frame 2. As shown in FIG. 12, the bracket 41 may include a first body portion 415 and an extension portion 411. Along the width direction Y, the extension portion 411 is located at the first Both ends of the body portion 415. Wherein, the first body portion 415 is provided corresponding to the lens mounting portion 22, and the first body portion 415 is provided with two second mounting holes, and the second mounting holes can be of the same size and shape as the first mounting holes.
  • the solar power generation layer 42 is disposed in the second mounting hole, and the power generation module 4 is connected to the lens frame 2 and/or the lens 11, the solar power generation layer 42 is connected to the lens 11, and at the same time, the extension 411 is connected to the temples of the lens frame 2.
  • the connection part 24 corresponds.
  • the temple connecting portion 24 and the extension portion 411 are detachably connected, and the lens mounting portion 22 is detachably connected to the first
  • the main body part 415 is detachably connected
  • the second connection part 23 is detachably connected to the first body part 415.
  • any connection mode or a combination of any connection modes can be used.
  • the specific detachable connection mode and connection position between the two are not limited.
  • the bracket 41 is provided with a first magnetic member 411a
  • the mirror frame 2 is provided with a second magnetic member 241
  • the first magnetic member 411a and the second magnetic member 241 are The ends of the two close to each other have opposite magnetic properties, and the ends of the two far away from each other have the same magnetic properties. Therefore, the bracket 41 and the mirror frame 2 can be detachably connected by the magnetic attraction between the first magnetic member 411a and the second magnetic member 241.
  • the detachable connection between the bracket 41 and the lens frame 2 is realized by two magnetic attracting members, it has the advantage of simple structure, and is easy to install and disassemble.
  • the above-mentioned first magnetic member 411a can be arranged at any position of the bracket 41, as long as the positions of the first magnetic member 411a and the second magnetic member 241 correspond to each other, so that when the two are connected, the mirror frame 2 and the power generation The position of module 4 is corresponding to ensure that the electric glasses can work normally.
  • the first magnetic member 411a may be disposed on the bracket 41, the extension portion 411, and the extension portion 411 corresponds to the temple connecting portion 24 of the spectacle frame 2. Therefore, the second The magnetic member 241 is disposed on the temple connecting portion 24 of the spectacle frame 2.
  • the two extension portions 411 of the bracket 41 are both provided with a first magnetic member 411a, and the two temple connecting portions 24 of the mirror frame 2 are both provided with a second magnetic member.
  • first magnetic member 411a and the second magnetic member 241 may specifically be permanent magnets, or may also be electromagnets.
  • the power generation module 4 and the lens frame 2 can also be connected by a snap connection, and after the two are snapped together, the snap connection structure can limit the thickness of the power generation module 4 relative to the lens frame 2
  • the movement in the direction X, the width direction Y and the height direction Z improves the reliability of the connection between the power generation module 4 and the mirror frame 2.
  • the bracket 41 has a first hook 412 disposed oppositely, and correspondingly, the frame 2 has a catching groove 231 disposed oppositely. , And the first hook 412 is correspondingly locked with the slot 231, so as to achieve the snap connection between the bracket 41 and the lens frame 2.
  • the first hook 412 when the first hook 412 is clamped in the groove 231, it can limit the relative movement between the bracket 41 and the lens frame 2 in the thickness direction X and the width direction Y, and at the same time, there are relatively disposed positions along the height direction Z.
  • the two sets of clamping structures can limit the relative movement between the bracket 41 and the mirror frame 2 in the height direction Z, and realize a reliable connection between the two.
  • the first hook 412 includes a first extension section 412a and a first engagement section 412b.
  • the first extension section 412a is located between the first engagement section 412b and the bracket 41.
  • a first step surface 412c is formed between the first extension section 412a and the first clamping section 412b.
  • the card slot 231 includes a first bottom wall 231a and a second bottom wall 231b.
  • the first bottom wall 231a and the second bottom wall 231b are arranged along the thickness direction X, and both of them are cards.
  • the bottom wall of the groove 231, meanwhile, along the thickness direction X, a second step surface 231c is formed between the first bottom wall 231a and the second bottom wall 231b.
  • the first hook 412 when the first hook 412 is engaged with the groove 231, the first extension 412a is engaged with the first bottom wall 231a (the two can abut against each other along the height direction Z),
  • the first clamping section 412b cooperates with the second bottom wall 231b (the two can abut against each other along the height direction Z), and at the same time, along the thickness direction X, the first step surface 412c and the second step surface 231c abut.
  • the first step surface 412c and the second step surface 231c that abut along the thickness direction X can restrict the relative movement of the bracket 41 and the mirror frame 2 in the thickness direction X;
  • the wall restricts the relative movement of the first hook 412 and the groove 231 along the width direction Y, thereby restricting the relative movement of the bracket 41 and the mirror frame 2 along the width direction Y; at the same time, through two first hooks arranged oppositely along the height direction Z
  • the cooperation of the 412 and the slot 213 can limit the relative movement of the bracket 41 and the lens frame 2 in the height direction Z. Therefore, in this embodiment, the clamping structure of the bracket 41 and the spectacle frame 2 makes the relative movement tendency of the two smaller and improves the reliability of the connection between the two.
  • the above-mentioned card slot 231 can be provided in the second connecting part 23 of the lens frame 2, and both ends of the second connecting part 23 along the height direction Z can be provided with the above-mentioned card slot 231.
  • the second connecting portion 23 is located in the middle of the frame 2 in the width direction Y. Therefore, as shown in FIG. 16, the first hook 412 can be arranged in the middle of the body portion 415 of the bracket 41 in the width direction Y, and the middle portion of the body portion 415 Both ends along the height direction Z may be provided with the first hooks 412 described above, so that the first hooks 412 and the grooves 231 are arranged correspondingly.
  • the card slot 231 provided in the spectacle frame 2 can be omitted.
  • the relative movement of the bracket 41 and the spectacle frame 2 in the width direction Y cannot be restricted by the side wall of the card slot 231, and other restriction widths need to be set The structure of the relative movement in the Y direction.
  • the first body portion 415 of the bracket 41 is further provided with two or more second hooks 413, of which at least two second hooks 413 are provided At both ends of the first body portion 415 in the width direction Y and the second hooks 413 are engaged with the lens frame 2, the second hooks 413 disposed oppositely can restrict the relative movement of the bracket 41 and the lens frame 2 in the width direction Y.
  • the bracket 4 is also provided with two or more third hooks 414, wherein at least one third hook 414 and the second hook 413 are arranged opposite to each other along the height direction Z, or at least two third hooks 414 is arranged at both ends of the first body portion 415 along the height direction Z, so that when the third hook 414 is engaged with the frame 2, at least two third hooks 414 are arranged oppositely, or third hooks are arranged oppositely
  • the 414 and the second hook 413 can restrict the relative movement of the bracket 41 and the lens frame 2 in the height direction Z.
  • the bracket 41 has two second hooks 413 arranged opposite to each other along the width direction Y, and at the same time, it also has two fourth hooks 414, and the two fourth hooks 414 are respectively It is arranged opposite to the two second hooks 413 along the height direction Z.
  • the four hooks can restrict the bracket 41 and the frame 2 along the thickness direction X, the width direction Y, and the height direction. The relative movement of Z.
  • the two third hooks 414 can be provided on the extension portion 411 of the bracket 41, and the two second hooks 413 can both be provided on the first body portion 415 of the bracket 41.
  • the location of the above-mentioned hooks is not limited.
  • the second hook 413 includes a second clamping section 413b and a second extension section 413a, wherein, along the thickness direction X, the second clamping section 413b and the first body portion 415 They are respectively located at both ends of the second extension section 413a, and a third step surface 413c is formed between the second clamping section 413b and the second extension section 413a.
  • the size of the second clamping section 413b along the thickness direction X is the same as that of the mirror frame 2.
  • the thickness dimensions are approximately the same, so that when the second hook 413 is engaged with the lens frame 2, along the thickness direction X, the third stepped surface 413c and the first body portion 415 abut the two end surfaces of the lens frame 2 respectively, thereby realizing the lens frame 2 is connected to the bracket 41.
  • the third hook 414 may include a third extension section 414a and a third clamping section 414b, wherein, along the thickness direction X, the third clamping section 414b and the first body portion 415 are respectively Located at both ends of the third extension section 414a, and a fourth step surface 414c is formed between the third clamping section 414b and the third extension section 414a.
  • the size of the third clamping section 414b in the thickness direction X is the same as the thickness of the mirror frame 2.
  • the dimensions are approximately the same, so that when the third hook 414 is engaged with the lens frame 2, along the thickness direction X, the fourth step surface 414c and the first body portion 415 abut against the two end surfaces of the lens frame 2, thereby realizing the lens frame 2. Snap connection with the bracket 41.
  • the second hook 413 and the third hook 414 can restrict the relative movement of the bracket 41 and the lens frame 2 in the thickness direction X.
  • the light transmittance of the solar power generation layer 42 provided on the power glasses is 3% to 90%.
  • the light transmittance may specifically be 60%, 80%, 90%, and so on.
  • the light transmittance of the solar power generation layer 42 The lower the light transmittance of the solar power generation layer 42 is, the higher the efficiency of converting solar energy into electric energy.
  • the solar power generation layer 42 is disposed on the lens 11, when its light transmittance is too low, it will affect the normal use of the electric glasses Therefore, the light transmittance of the solar power generation layer 42 needs to be reasonably selected by comprehensively considering the two factors of light transmittance and energy conversion rate.
  • the electric glasses may further include a battery 5, wherein the battery 5 is a rechargeable secondary battery, and the battery 5 and the solar power generation layer 42 They are connected through the connecting component 6, that is, the solar power generation layer 42 and the rechargeable battery 5 are electrically connected through the connection component 6, so that the electric energy generated by the solar power generation layer 42 can be stored in the battery 5.
  • the electric energy stored in the battery 5 can supply power to the electric components, so that the electric glasses can still work normally in a non-light environment, further improve the battery life of the electric glasses, and increase the energy utilization rate.
  • the temple 3 includes a second body portion 32
  • the electric glasses further includes a temple 3
  • the temple 3 includes a second body portion 32
  • the second body portion 32 is a structure with a certain rigidity
  • the battery 5 is located in the cavity. Since the second body portion 32 has a certain hardness, it is not easily deformed after being stressed, thereby reducing the risk of squeezing the battery 5 inside the second body portion 32 under the action of external force, and improving the safety of the battery 5.
  • the space in the temple 3 can be reasonably used, and the battery 5 can avoid occupying the space of the mirror frame 2, thereby avoiding the excessive weight of the mirror frame 2 caused by the battery 5 being installed. , In order to improve the user experience of power glasses.
  • the temple 3 does not have to be the structure shown in the drawings, and the temple 3 may have a different structure, for example, it may all be a rigid structure (as shown in FIG. 1 ), and when the temples 3 are all hard structures, the electric spectacles may include two separate temples 3, and the two temples 3 are connected to the frame 2 respectively; the temples 3 may also include a flexible belt Shaped structure, that is, the temple 3 includes a second body portion 32 of a hard structure and a flexible belt. At this time, the electronic glasses may include a flexible belt, and the two ends of the flexible belt are connected with the two temples 3 respectively. The second body portion 32 is connected. Therefore, in this application, the specific structure of the temple 3 is not limited.
  • the connecting assembly 6 includes wires, and the battery 5 and the solar power generation layer 42 are connected by wires to form a loop.
  • the second body portion 32 of the temple 3 may include one or more batteries 5.
  • a battery 5 When a battery 5 is included, the position of the battery 5 in the second body portion 32 is not limited, that is, the length of the wire is not limited. limited.
  • the second body portion 32 of the temple 3 includes two batteries 5, as shown in FIG. 27, one battery 5 and the solar power generation layer 42 are connected by a first wire 611, and the two batteries 5 are connected by a first wire 611.
  • the two wires 612 are connected (may be in parallel), so that the electric energy generated by the solar power generation layer 42 can be stored in the battery 5.
  • the connecting assembly 6 includes a circuit board 62, and the battery 5 and the solar power generation layer 42 are connected through the circuit board 62, wherein the circuit board 62 is specifically It may be a flexible printed circuit (FPC), which can be bent, so that the electrical connection between the battery 5 and the solar power generation layer 42 can be conveniently realized.
  • the circuit board 62 also facilitates the installation of electrical components such as transformer components and circuit protection components, thereby further improving the safety of the electric glasses.
  • the solar power generation layer 42 and the battery 5 are connected through direct contact with the wire or the circuit board 62, that is, it is necessary to ensure that the wire or the circuit board 62 can contact the solar power generation layer 42 and the battery 5, and the solar power generation layer 42 It is installed in the lens 11 (or connected to the lens 11). Therefore, the above-mentioned wire or circuit board 62 needs to extend from the inside of the second body portion 32 of the temple 3 to the position of the lens 11, and the wire or circuit board 62 should be from the inside of the electric glasses Extend, not out of the glasses.
  • the wire or circuit board 62 can extend from the position where the temple 3 and the mirror frame 2 are rotatably connected.
  • the temple connecting portion 24 of the mirror frame 2 is connected with a first hinge part 21.
  • the temple 3 is provided with a second hinge portion 31, so that the rotation connection between the temple 3 and the mirror frame 2 is realized through the cooperation of the first hinge portion 21 and the second hinge portion 31.
  • the second body portion 32 of the temple 3 is provided with a first through hole 322, correspondingly ,
  • the first hinge part 21 of the mirror frame 2 is provided with a second through hole 211, and the connecting assembly 6 can extend from the cavity of the second body part 32 to the second through hole 211 through the first through hole 322 and the second through hole 211.
  • the solar power generation layer 42 realizes the electrical connection between the battery 5 and the solar power generation layer 42.
  • the connecting assembly 6 extends from the inside of the electric glasses and will not be exposed to the outside, thereby improving the safety of the electric glasses and improving the appearance performance.
  • the first hinge portion 21 of the mirror frame 2 includes a fourth conductive portion 213, and the fourth conductive portion 213 is electrically connected to the solar power generation layer 42 installed on the mirror frame 2.
  • the aforementioned temples The second body portion 32 of 3 is provided with a first through hole 322 through which the connecting component 6 extends from the cavity of the second body portion 32 and is connected to the fourth conductive portion 213 of the first hinge portion 21 The contact realizes the electrical connection between the battery 5 and the fourth conductive portion 213, thereby realizing the electrical connection between the battery 5 and the solar power generation layer 42.
  • the first hinge portion 21 of the mirror frame 2 is provided with a second through hole 211, and the connecting component 6 is electrically connected to the solar power generation layer 42 and can extend through the second through hole 211.
  • the temple 2 The second hinge portion 31 is provided with a fifth conductive portion 311 which is electrically connected to the battery 5, and the fifth conductive portion 311 is electrically connected to the connection assembly 6 extending from the second through hole 211, thereby realizing solar energy.
  • the first hinge portion 21 of the mirror frame 2 includes a fourth conductive portion 213, and the fourth conductive portion 213 is electrically connected to the solar power generation layer 42 mounted on the mirror frame 2.
  • the mirror The second hinge portion 31 of the leg 3 is provided with a fifth conductive portion 311, and the fifth conductive portion 311 is connected to the battery 5 installed in the second body portion 32 of the temple 3, and the connection assembly 6 includes the fourth conductive portion 213 and the fifth conductive portion 3211 realize electrical connection between the battery 5 and the solar power generation layer 42.
  • the electrical connection between the battery 5 and the solar power generation layer 42 is achieved through the first hinge portion 21 and the second hinge portion 31, that is, the electrical connection between the two can be achieved through the original structure of the electric glasses, and there is no need to add Other components, thereby simplifying the structure of the electric glasses, reducing the weight of the electric glasses, and improving the wearing comfort.
  • the fourth conductive portion 213 and the solar power generation layer 42 can be connected by a wire or a circuit board, or the two can also be directly contacted to achieve electrical connection.
  • the fifth conductive portion 311 and the battery 5 can be connected by a wire Or the circuit board is electrically connected, or the two can also be directly contacted to achieve electrical connection.
  • the connecting assembly 6 includes a first conductive contact and a second conductive contact, wherein the first conductive contact is disposed on the mirror frame 2 and connected to the solar power generation layer 42, and the second conductive contact The point is arranged on the second body portion 32 of the temple 3 and is connected to the battery 5. At the same time, when the first conductive contact is in contact with the second conductive contact, the solar power generation layer 42 is electrically connected to the battery 5.
  • the solar power layer 42 and the battery 5 are not directly contacted to achieve electrical connection, but are electrically connected through the contact of two contacts. Therefore, the amount of wire used can be reduced, and the amount of wire passing through can be reduced. Set the number of through holes.
  • the end of the second body portion 32 close to the spectacle frame 2 has an abutting surface 321.
  • the abutting surface 321 abuts against the temple connecting portion 24 of the spectacle frame 2. Then, the temple 3 is restricted from continuing to rotate.
  • the first conductive contact is provided on the temple connecting portion 24 of the lens frame 2
  • the second conductive contact is provided on the end of the second body portion 32 close to the lens frame 2, that is, on the abutment. Connect the surface 321 and avoid the second hinge portion 31.
  • the first conductive contact contacts the second conductive contact to realize the battery 5 and solar power generation. Electrical connection between layers 42.
  • the electric glasses are in the storage state (non-operating state) as shown in FIGS. 34 to 39, the abutting surface 321 is far away from the temple connecting portion 24 of the lens frame 2, and the first conductive contact is disconnected from the second conductive contact. Thus, the electrical connection between the battery 5 and the solar power generation layer 42 is disconnected.
  • the electrical connection between the battery 5 and the solar power generation layer 42 can be realized only by the relative rotation between the temple 3 and the frame 2, without other switch components, which can reduce the number of components of the electric glasses , Reduce its structural complexity and weight.
  • the battery 5 and the solar power generation layer 42 are in a conductive state only when the power glasses are in working state, and they are not conducted when the power glasses are not working, thereby reducing the loss of electric energy in the battery 5 and improving energy utilization.
  • one of the temple connecting portions 24 and the abutting surface 321 of the spectacle frame 2 is provided with a first protrusion 631, and the other is provided with a recessed portion 632, the contours of the first convex portion 631 and the concave portion 632 are both conductive, wherein at least part of the first convex portion 631 can be located in the concave portion 632 and abuts against the wall surface of the concave portion 632, thereby realizing the first convex portion.
  • the outer circumference of the first protrusion 631 is provided with a first conductive part 633, and the first protrusion 631 and the first conductive part 633
  • a first insulating portion 636 is provided to achieve insulation between the two
  • a second conductive portion 634 is provided on the outer periphery of the recessed portion 632
  • a second insulating portion 635 is provided between the recessed portion 632 and the second conductive portion 634, To achieve insulation between the two.
  • the outer contour of the first convex portion 642 and the first conductive portion 633 may be two positive contacts, and at the same time, the wall surface of the recess 632 and the second conductive portion 634 may be two negative contacts. Therefore, when the first protruding portion 631 abuts against the wall surface of the recessed portion 632, and the first conductive portion 633 abuts against the second conductive portion 634, electrical connection between the battery 5 and the solar power generation layer 42 can be achieved, and Form a loop.
  • the temple 3 when the temple 3 is in the open state as shown in FIG. 1, by providing the concave portion 632, and the first protrusion 631 is located in the concave portion 632, it is possible to realize the contact surface 321 and the temple connecting portion 24. Therefore, the temple 3 can be fully opened to ensure that the user can wear the electric glasses normally.
  • the inner wall of the recess 632 and the battery 5 can be electrically connected by wires or circuit boards, and at the same time, the temple connecting portion 24 of the temple 2 Inside, the first protrusion 631 and the solar power generation layer 42 can be electrically connected by a wire or a circuit board.
  • the second body portion 32 and the temple connecting portion 24 may not be provided with recesses, in order to ensure that the mirror frame 2 can abut the abutting surface of the second body portion 32 when the temple 3 is in the open state. Then, the above-mentioned protrusion can be a structure that can be retracted. When the temple 3 is in an open state, the protrusion can be retracted into the temple 2 or the temple 3 under the action of the temple 3 and the spectacle frame 2.
  • the connecting assembly 6 may include a second protrusion 642, a first metal plate 643, and an elastic member 641, and the second protrusion 642 may be specifically disposed on the second body part. 32.
  • the second body portion 32 is provided with a mounting groove facing the end of the lens frame 2, the elastic member 641 is located in the mounting groove, and at least part of the second protrusion 642 is located in the mounting groove, and the elastic member 641 is located along the mounting groove.
  • One end in the axial direction abuts against the bottom wall of the installation groove, and the other end abuts against the second protrusion 642.
  • the elastic member 641 can be compressed, and the second protrusion 642 is driven to be all located in the mounting groove, that is, when the temple 3 is in the open state, the abutting surface 321 can still be in contact with the mirror frame. 3 abuts, so that the temple 3 can be fully opened.
  • the second protrusion 642 can protrude from the contact surface 321 under the action of the resilience of the elastic member 641.
  • the second protrusion 642 can be electrically connected to the battery 5 by means of wires or circuit boards.
  • the temple connection part of the temple 2 In 24, the first metal plate 643 and the solar power generation layer 42 can be electrically connected by a wire or a circuit board.
  • the second body portion 32 is provided with two second protrusions 642, and the two second protrusions 642 are respectively positive terminals.
  • the mirror frame 2 is provided with two second protrusions.
  • a metal plate 643 and the two first metal plates 643 are respectively negative terminals.
  • both of the above-mentioned two second protrusions 642 can be disposed on the lens frame 2. Accordingly, both of the two first metal discs 643 can be disposed on the second body portion 32, or the two second protrusions
  • the raised portion 642 is respectively disposed on the mirror frame 2 and the second body portion 32, and the two first metal discs 643 are also disposed on the mirror frame 2 and the second body portion 32, respectively.
  • the connecting assembly 6 includes a metal elastic piece 651 and a second metal plate 652.
  • the metal elastic piece 651 can be compressed. And drive the metal elastic piece 651 to expand into an approximately planar structure, and the metal elastic piece 651 abuts against the second metal plate 652, so as to realize the electrical connection between the metal elastic piece 651 and the second metal plate 652, while enabling the contact surface 321 Abutting or close abutting with the spectacle frame 2 enables the spectacle leg 3 to be fully opened.
  • the metal elastic piece 651 can protrude from the contact surface 321 under the action of the resilience force.
  • the second body portion 32 is provided with two metal springs 651, and the two metal springs 651 are respectively positive terminals.
  • the mirror frame 2 is provided with two second metal plates 652, and The two second metal plates 652 are respectively negative terminals.
  • the above-mentioned two metal elastic pieces 651 can both be arranged on the lens frame 2. Accordingly, both of the two second metal plates 652 can be arranged on the second body portion 32, or the two metal elastic pieces 651 can be arranged on The mirror frame 2 and the second body portion 32, and two second metal discs 652 are also disposed on the mirror frame 2 and the second body portion 32, respectively.
  • the metal spring 651 and the battery 5 can be electrically connected by wires or circuit boards, and at the same time, in the temple connection portion 24 of the temple 2, Specifically, the second metal plate 652 and the solar power generation layer 42 may be electrically connected by a wire or a circuit board or the like.
  • the connecting assembly 6 includes a transmitting coil 662 and a receiving coil 661, wherein the transmitting coil 662 is disposed on the temple connecting portion 24 of the mirror frame 2, and is connected to The solar power generation layer 42 is connected, and the receiving coil 661 is disposed on the second body portion 32 of the temple 3 and connected to the battery 5.
  • the transmitting coil 662 When the electric energy generated by the solar power generation layer 42 is transferred to the transmitting coil 662, the transmitting coil 662 generates an induced magnetic field. Under the action of the induced magnetic field, an induced current can be generated in the receiving coil 661, and the induced current can be transmitted to the battery 5. The battery 5 is charged.
  • the power glasses in order to further improve the function of the power glasses, can also be equipped with a charger 7 which is connected to an external power source and the battery 5 so as to be able to charge the battery 5. Therefore, an embodiment of the present application also provides an electric glasses system, as shown in Figs. 42 to 45, the electric glasses system includes the electric glasses and the charger 7 described in the above embodiments.
  • the charger 7 includes a third body portion 71, a pawl 72, and a charging cable 73, wherein, along the height direction Z of the electric glasses, the third body portion 71 is connected with a card that is disposed oppositely.
  • the claws 72 are along the width direction Y of the electric glasses, and the third body portion 71 is connected with oppositely arranged claws 72, and each claw 72 extends along the width direction Y of the electric glasses.
  • the electric glasses can be clamped by each claw 72 to realize the connection between the electric glasses and the charger 7.
  • the claw 72 is provided with a third conductive contact
  • the electric glasses are provided with a third conductive portion 212 capable of contacting the third conductive contact 721, and the third conductive contact
  • the tri-conductive portion 212 is electrically connected to the battery 5.
  • the first hinge part 21 of the spectacle frame 2 is located on the outside. Therefore, the third conductive part 212 can be provided on the first hinge part 21, and at the same time, inside the eyeglasses ,
  • the battery 5 is connected to the first wire 611, and the second body portion 32 of the temple 3 is provided with a first through hole 322.
  • the first wire 611 can extend out of the second body portion 32 through the first through hole 322, and is connected with
  • the third conductive portion 212 of the first hinge portion 21 is in contact, thereby achieving electrical connection between the third conductive portion 212 and the battery 5.
  • the temple 3 may not be provided with the first through hole 222, and the second hinge portion 31 of the temple 3 is provided with a fifth conductive portion 311, and the fifth conductive portion 311 is electrically connected to the battery 5 located in the temple 3.
  • the fifth conductive portion 311 can be in contact with the third conductive portion 212, thereby realizing the connection between the battery 5 and the third conductive portion 212
  • the electrical connection between the charger 7 and the battery 5 is further realized, and the battery 5 can be charged by the charger 7.
  • the lens 11 in the electric glasses provided by the embodiments of the present application is provided with a solar power generation layer 42 so as to improve the battery life of the electric glasses.

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  • Physics & Mathematics (AREA)
  • Health & Medical Sciences (AREA)
  • Ophthalmology & Optometry (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • General Health & Medical Sciences (AREA)
  • Acoustics & Sound (AREA)
  • Otolaryngology (AREA)
  • Eyeglasses (AREA)

Abstract

一种用电眼镜包括:镜框(2);镜片(11)和太阳能发电层(42),镜片(11)安装于镜框(2),太阳能发电层(42)用于将太阳能转变为电能,且太阳能发电层(42)与用电眼镜的用电部件连接;其中,太阳能发电层(42)设置于镜片(11),这种用电眼镜的续航时间较长。还公开了一种用电眼镜系统。

Description

一种用电眼镜及用电眼镜系统
本申请要求于2019年10月25日提交中国专利局、申请号为201911025259.0、发明名称为“一种用电眼镜及用电眼镜系统”的中国专利申请的优先权,其全部内容通过引用结合在本申请中。
技术领域
本申请涉及用电设备技术领域,尤其涉及一种用电眼镜及用电眼镜系统。
背景技术
智能眼镜通常包括镜片、镜框、镜腿以及各用电部件,例如采集模块、微处理器和动作模块等部件。该智能眼镜的用电部件通电后,采集模块能够采集眼球和/或眼球周边的信息,并将采集到的信息传递至微处理器,微处理器根据采集到的信息控制动作模块进行相应的动作。同时,为了使得智能眼镜能够正常工作,还包括为用电部件供电的供电模块,该供电模块为充电电池。但是,受限于充电电池的容量,该智能眼镜的续航时间通常较少。
申请内容
本申请提供了一种用电眼镜及用电眼镜系统,该用电眼镜的续航时间较长。
本申请第一方面提供一种用电眼镜,所述用电眼镜包括:
镜框;
镜片,所述镜片安装于所述镜框;
太阳能发电层,所述太阳能发电层用于将太阳能转变为电能,且所述太阳能发电层与所述用电眼镜的用电部件连接;
其中,所述太阳能发电层设置于所述镜片。
本实施例中,对于用电眼镜来说,其面积最大的部件为镜片,因此,将太阳能发电层设置于镜片时,能够增大该太阳能发电层的设置面积,从而增大发电量,以便提高用电眼镜的续航时间。另外,由于镜片通常为比较平整的平面或弧面,能够便于设置太阳能发电层,降低设置太阳能发电层的难度,且镜片与用电眼镜的其他位置相比,更加便于吸收光能,从而进一步提高电能的转化率。
在一种可能的设计中,所述太阳能发电层的面积与所述镜片的面积相等,从而能够尽量增大太阳能发电层的面积,提高太阳能转变为电能的转化率。
在一种可能的设计中,沿所述镜片的厚度方向,所述镜片包括相对设置的内表面和外表面;
沿所述镜片的厚度方向,所述镜片包括分体设置的镜片单体;
相邻所述镜片单体之间、所述内表面、所述外表面三者中的任一者或任意组合设置有所述太阳能发电层。
在一种可能的设计中,沿所述用电眼镜的宽度方向,包括两个所述镜片,且两个所述镜片之间通过第一连接部连接,或者,两个所述镜片间隔设置。
在一种可能的设计中,所述用电眼镜包括发电模组,所述发电模组包括支架和所述太阳能发电层,所述太阳能发电层设置于所述支架;所述发电模组与所述镜框可拆卸连接。本实施例中,将太阳能发电层模块化,并与镜框可拆卸连接时,能够便于实现太阳能发电层的更换,且发电模块拆下时,使得该用电眼镜还能够作为普通眼镜使用,从而提高用电眼镜的适用性。
在一种可能的设计中,所述支架设置有第一磁性件,所述镜框设置有第二磁性件,所述第一磁性件与所述第二磁性件中,二者相互靠近的一端磁性相反,以使所述支架与所述镜框之间能够通过所述第一磁性件与所述第二磁性件可拆卸连接。本实施例中,通过两磁吸件实现支架与镜框之间的可拆卸连接时,具有结构简单的优点,且便于安装和拆卸。
在一种可能的设计中,所述镜框包括镜片安装部和镜腿连接部,所述镜 片安装部用于安装所述镜片;
沿宽度方向,所述镜腿连接部位于所述镜片安装部的两端,且所述镜腿连接部用于与所述用电眼镜的镜腿连接;
所述支架包括第一本体部和延伸部,沿宽度方向,所述延伸部位于所述第一本体部的两端,并与所述镜腿连接部对应;所述第一磁性件设置于所述延伸部,所述第二磁性件设置于所述镜腿连接部。本实施例中,该第一磁性件设置于两个延伸部,从而能够提高支架与镜框之间的连接可靠性。
在一种可能的设计中,沿所述用电眼镜的高度方向,所述支架具有相对设置的第一卡钩;沿高度方向,所述镜框具有相对设置的卡槽,所述第一卡钩与所述卡槽对应卡接。本实施例中,发电模组与镜框之间通过卡接的方式连接,且二者卡接后,该卡接结构能够限制发电模组相对于镜框沿厚度方向、宽度方向和高度方向的运动,从而提高发电模组与镜框之间连接的可靠性。
在一种可能的设计中,所述第一卡钩包括第一延伸段和第一卡接段,沿厚度方向,所述第一延伸段位于所述第一卡接段与所述支架之间,且所述第一延伸段与所述第一卡接段之间形成第一台阶面;
所述卡槽包括第一底壁和第二底壁,所述第一底壁与所述第二底壁沿厚度方向布置,且二者之间形成第二台阶面;
所述第一台阶面与所述第二台阶面抵接。
在一种可能的设计中,沿所述用电眼镜的宽度方向,所述支架具有相对设置的第二卡钩,所述支架还设置有第三卡钩,所述第二卡钩与所述镜框卡接,所述第三卡钩与所述镜框卡接;至少一个所述第三卡钩与所述第二卡钩沿高度方向相对设置,和/或,至少两个所述第三卡钩沿高度方向相对设置。本实施例中,该支架具有沿宽度方向相对设置的两个第二卡钩,同时,还具有两个第四卡钩,且两个第四卡钩分别与两个第二卡钩沿高度方向相对设置,当支架与镜框卡接时,能够通过上述四个卡钩能够限制支架与镜框沿厚度方向、宽度方向和高度方向的相对运动。
在一种可能的设计中,所述第二卡钩包括第二卡接段和第二延伸段,沿厚度方向,所述第二卡接段与所述支架分别位于所述第二延伸段的两端,且所述第二卡接段与所述第二延伸段之间形成第三台阶面;
所述第三卡钩包括第三卡接段和第三延伸段,沿厚度方向,所述第三卡接段与所述支架位于所述第三延伸段的两端,且所述第三卡接段与所述第三延伸段之间形成第四台阶面;
沿厚度方向,所述第三台阶面与所述镜框抵接,所述第四台阶面与所述镜框抵接。
在一种可能的设计中,所述太阳能发电层的透光率为3%~90%。
在一种可能的设计中,液态太阳能发电材料涂覆于镜片,以便形成所述太阳能发电层,或者,将太阳能发电膜贴敷于所述镜片,以形成所述太阳能发电层。
在一种可能的设计中,所述用电眼镜还包括电池,所述电池与所述太阳能发电层之间通过连接组件连接;所述用电眼镜还包括镜腿,所述镜腿包括第二本体部,所述第二本体部具有腔体,所述电池位于所述腔体。本实施例中,设置电池后,能够将太阳能发电层产生的电能储存于电池,当用户在没有光照的环境中使用用电眼镜时,电池中储存的电能能够为用电部件供电,从而使得该用电眼镜在无光照的环境中仍然能够正常工作,进一步提高用电眼镜的续航时间,并提高能量的利用率。
在一种可能的设计中,所述连接组件包括导线,所述电池与所述太阳能发电层之间通过所述导线连接,并形成回路。
在一种可能的设计中,所述连接组件包括电路板,所述电池与所述太阳能发电层之间通过所述电路板连接。
在一种可能的设计中,所述镜框设置有第一铰链部,所述第二本体部设置有第二铰链部,所述镜框与所述镜腿通过所述第一铰链部和所述第二铰链部转动连接;所述第二本体部开设有第一通孔,所述第一铰链部开设有第二 通孔,所述连接组件能够穿过所述第一通孔与所述第二通孔。本实施例中,连接组件从用电眼镜的内部延伸,不会裸露于外界,从而提高用电眼镜的安全性,并改善外观性能。
在一种可能的设计中,所述镜框设置有第一铰链部,所述第二本体部设置有第二铰链部,所述镜框与所述镜腿通过所述第一铰链部和所述第二铰链部转动连接;所述第一铰链部包括第四导电部,所述第四导电部与所述太阳能发电层连接;所述第二铰链部包括第五导电部,所述第五导电部与所述电池连接;所述第四导电部与所述第五导电部连接,所述连接组件包括所述第四导电部与所述第五导电部。本实施例中,电池与太阳能发电层之间的电连接通过第一铰链部与第二铰链部实现,即通过用电眼镜原本的结构即可实现二者的电连接,无需增设其他部件,从而简化用电眼镜的结构,并降低用电眼镜的重量,提高佩戴的舒适性。
在一种可能的设计中,所述连接组件包括第一导电触点和第二导电触点,且所述第一导电触点设置于所述镜框,并与所述太阳能发电层连接,所述第二导电触点设置于所述第二本体部,并与所述电池连接;所述第一导电触点与所述第二导电触点能够接触。本实施例中,太阳能发电层与电池之间并非直接接触实现电连接,而是通过两触点的接触实现电连接,因此,能够减少导线的使用量,并能够减少为了导线穿过而设置通孔的数量。
在一种可能的设计中,所述第二本体部靠近所述镜框的端部具有抵接面;所述镜框包括用于与所述镜腿连接的镜腿连接部,所述抵接面能够与所述镜腿连接部抵接;所述第一导电触点设置于所述镜腿连接部,所述第二导电触点设置于所述抵接端。本实施例中,仅需通过镜腿与镜框之间的相对转动即可实现电池与太阳能发电层之间的电连接,无需设置其他开关部件,从而能够减少用电眼镜的部件数量,降低其结构复杂性和重量。且电池与太阳能发电层之间只有在用电眼镜处于工作状态时才处于导电状态,用电眼镜不工作时二者不导通,从而降低电池中电能的流失,提高能量利用率。
在一种可能的设计中,所述镜腿连接部与所述抵接面中,一者设置有第一凸起部,另一者设置有凹陷部,所述第一凸起部的外轮廓能够导电,所述凹陷部的内壁能够导电;
所述第一凸起部的至少部分能够位于所述凹陷部。
在一种可能的设计中,所述第一凸起部的外周设置有第一导电部,且所述第一凸起部与所述第一导电部之间设置有第一绝缘部;
所述凹陷部的外周设置有第二导电部,且所述凹陷部与所述第二导电部之间设置有第二绝缘部,所述第一导电部能够与所述第二导电部接触。
在一种可能的设计中,所述第一导电触点包括第一金属盘,所述第二导电触点包括第二凸起部和弹性件;
所述第二本体部设置有安装槽,所述弹性件位于所述安装槽,所述第二凸起部的至少部分位于所述第二安装槽,且所述弹性件的两端分别与所述安装槽的底壁和所述第二凸起部抵接;
所述第二凸起部与所述第一金属盘能够接触。
在一种可能的设计中,所述第二本体部与所述镜腿连接部中,一者设置有弹片,另一者设置有第二金属盘,所述弹片与所述第二金属盘能够接触。
在一种可能的设计中,所述连接组件包括发射线圈和接收线圈,所述发射线圈设置于所述镜框,并与所述太阳能发电层连接,所述接收线圈设置于所述第二本体部,并与所述电池连接。
本申请实施例的第二方面提供一种用电眼镜系统,所述用电眼镜系统包括:
用电眼镜,为以上所述的用电眼镜;
充电器,所述充电器能够安装于所述用电眼镜,且所述充电器能够与所述用电眼镜的电池连接。本实施例中,该充电器能够为用电眼镜的电池充电,从而进一步改善用电眼镜的功能。
在一种可能的设计中,所述充电器包括第三本体部和多个卡爪,所述卡 爪与所述第三本体部连接;所述充电器通过所述卡爪与所述用电眼镜的镜框连接。
在一种可能的设计中,所述镜框具有用于与镜腿连接的第一铰链部,所述第一铰链部设置有第三导电部,所述电池与所述第三导电部连接;
所述卡爪设置有第三导电触点,所述第三导电部能够与所述第三导电触电接触。
应当理解的是,以上的一般描述和后文的细节描述仅是示例性的,并不能限制本申请。
附图说明
图1为本申请所提供用电眼镜在第一种具体实施例中的结构示意图;
图2为图1中的用电眼镜在一种具体实施例中的爆炸图;
图3为图2中的镜片模组在第一种具体实施例中的结构示意图;
图4为图2中的镜片模组在第二种具体实施例中的结构示意图;
图5为图2中的镜片模组在第三种具体实施例中的结构示意图;
图6为图1中的用电眼镜在另一种具体实施例中的爆炸图;
图7为图6中的镜片模组在第一种具体实施例中的结构示意图;
图8为图6中的镜片模组在第二种具体实施例中的结构示意图;
图9为图6中的镜片模组在第三种具体实施例中的结构示意图;
图10为本申请所提供的用电眼镜在第二种具体实施例中的结构示意图;
图11为图10的爆炸图;
图12为图11中发电模组的结构示意图;
图13为图11中镜框的结构示意图;
图14为本申请所提供的用电眼镜在第三种具体实施例中的结构示意图;
图15为图14中Ⅰ部分的局部放大图;
图16为图14中发电模组的结构示意图;
图17为图16中Ⅱ部分的局部放大图;
图18为图14中镜框的结构示意图;
图19为图18中Ⅲ部分的局部放大图;
图20为本申请所述提供用电眼镜在第四种具体实施例中的结构示意图;
图21为图20中Ⅳ部分的局部放大图;
图22为图20中发电模组的结构示意图;
图23为图22中Ⅴ部分的局部放大图;
图24为本申请实施例所提供用电眼镜去掉一条镜腿的结构示意图;
图25为图24中发电模组与电池连接的结构示意图;
图26为本申请实施例所提供用电眼镜去掉一条镜腿的结构示意图;
图27为本申请实施例所提供用电眼镜去掉一条镜腿的结构示意图;
图28为本申请所述提供用电眼镜去掉一条镜腿的结构示意图,其中,电池与发电模组通过电路板连接;
图29为图28中发电模组与电池连接的结构示意图;
图30为本申请实施例所提供用电眼镜的爆炸图;
图31为图30中Ⅵ部分的局部放大图;
图32为本申请实施例所提供用电眼镜的爆炸图;
图33为图32中Ⅶ部分的局部放大图;
图34为本申请实施例所提供用电眼镜处于收纳状态的结构示意图,其中,电池与发电模组通过连接端子连接;
图35为图34中Ⅷ部分的局部放大图;
图36为本申请实施例所提供用电眼镜处于收纳状态的结构示意图,其中,电池与发电模组通过触点连接;
图37为图36中Ⅸ部分的局部放大图;
图38为本申请实施例所提供用电眼镜处于收纳状态的结构示意图,其中,电池与发电模组通过弹片连接;
图39为图38中Ⅹ部分的局部放大图;
图40为本申请实施例所提供用电眼镜处于收纳状态的结构示意图,其中,电池与发电模组通过线圈连接;
图41为图40中Ⅺ部分的局部放大图;
图42为本申请所提供用电眼镜与充电器连接的结构示意图;
图43为图42中的用电眼镜去掉一条镜腿的结构示意图;
图44为图43中Ⅻ部分的局部放大图;
图45为图42中充电器的结构示意图。
附图标记:
1-镜片模组;
11-镜片;
111-镜片单体;
12-第一连接部;
2-镜框;
21-第一铰链部;
211-第二通孔;
212-第三导电部;
213-第四导电部;
22-镜片安装部;
23-第二连接部;
231-卡槽;
231a-第一底壁;
231b-第二底壁;
231c-第二台阶面;
24-镜腿连接部;
241-第二磁性件;
3-镜腿;
31-第二铰链部;
311-第五导电部;
32-第二本体部;
321-抵接面;
322-第一通孔;
4-发电模组;
41-支架;
411-延伸部;
411a-第一磁性件;
412-第一卡钩;
412a-第一延伸段;
412b-第一卡接段;
412c-第一台阶面;
413-第二卡钩;
413a-第二延伸段;
413b-第二卡接段;
413c-第三台阶面;
414-第三卡钩;
414a-第三延伸段;
414b-第三卡接段;
414c-第四台阶面;
415-第一本体部;
42-太阳能发电层;
43-保护层;
5-电池;
6-连接组件;
611-第一导线;
612-第二导线;
62-电路板;
631-第一凸起部;
632-凹陷部;
633-第一导电部;
634-第二导电部;
635-第一绝缘部;
636-第二绝缘部;
641-弹性件;
642-第二凸起部;
643-第一金属盘;
651-弹片;
652-第二金属盘;
661-接收线圈;
662-发射线圈;
7-充电器;
71-第三本体部;
72-卡爪;
721-第三导电触点;
73-充电线。
此处的附图被并入说明书中并构成本说明书的一部分,示出了符合本申请的实施例,并与说明书一起用于解释本申请的原理。
具体实施方式
为了更好的理解本申请的技术方案,下面结合附图对本申请实施例进行详细描述。
应当明确,所描述的实施例仅仅是本申请一部分实施例,而不是全部的实施例。基于本申请中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其它实施例,都属于本申请保护的范围。
在本申请实施例中使用的术语是仅仅出于描述特定实施例的目的,而非旨在限制本申请。在本申请实施例和所附权利要求书中所使用的单数形式的“一种”、“所述”和“该”也旨在包括多数形式,除非上下文清楚地表示其他含义。
应当理解,本文中使用的术语“和/或”仅仅是一种描述关联对象的关联关系,表示可以存在三种关系,例如,A和/或B,可以表示:单独存在A,同时存在A和B,单独存在B这三种情况。另外,本文中字符“/”,一般表示前后关联对象是一种“或”的关系。
需要注意的是,本申请实施例所描述的“上”、“下”、“左”、“右”等方位词是以附图所示的角度来进行描述的,不应理解为对本申请实施例的限定。此外,在上下文中,还需要理解的是,当提到一个元件连接在另一个元件“上”或者“下”时,其不仅能够直接连接在另一个元件“上”或者“下”,也可以通过中间元件间接连接在另一个元件“上”或者“下”。
本申请实施例提供一种用电眼镜,其中,该用电眼镜包括镜片11、镜框2、镜腿3,还包括用电部件,例如采集模块(例如摄像头)、微处理器(例如芯片或电路板)或动作模块等部件。该用电眼镜的用电部件通电后,采集模块能够采集眼球和/或眼球周边的信息,并将采集到的信息传递至微处理器,微处理器根据采集到的信息控制动作模块进行相应的动作。同时,根据用电部件的不同,该用电眼镜可具有不同的功能。
同时,为了保证该用电眼镜能够正常工作,该用电眼镜还包括为用电部件供电的供电模块,具体地,可通过在用电眼镜中增设电池来实现,其中,该电池可为能够多次充电的二次电池,但是,该供电模块通过电池实现时,需要为用电眼镜充电,同时,由于电池的容量限制,无法实现无限续航,使得该用电眼镜的使用时间较短。基于此,本申请实施例主要通过在供电模块中设置太阳能发电层来提高用电眼镜的续航时间,并能够省去为用电眼镜充电的步骤,提高使用的便利性。
需要说明的是,本文中提到的“厚度方向X”、“宽度方向Y”和“高度方向Z”是以用电眼镜中镜片11的布置和结构为基准定义的,其中,“厚度方向X”指的是镜片11的厚度所在的方向,“宽度方向Y”指的是两镜片11的布置方向所在的方向,“高度方向Z”为与上述“厚度方向X”和“宽度方向Y”均垂直的方向。可以理解,当定义的基准不同时,上述各方位词所指代的含义不同,因此,上述方位词不应视为对本申请保护范围的绝对限定。
具体地,如图1~5所示,该用电眼镜包括镜片模组1,其中,该镜片模组1包括镜片11,可以包括一个镜片11,一个镜片11安装于镜框2的安装孔内,也可以包括两个镜片11,且两个镜片11沿宽度方向Y布置,两镜片11分别安装于镜框2的两个安装孔内。同时,该用电眼镜还包括太阳能发电层42,该太阳能发电层42用于将太阳能转变为电能,该太阳能发电层42具体可包括钙钛矿太阳能电池或染料敏化太阳能电池等能够实现光能转变为电能的材质,且上述两种材质在将光能转变为电能的同时,其透光率能够调整,从而能够增大该太阳能发电层42的透光率。
同时,该太阳能发电层42与用电眼镜的用电部件连接,从而为用电部件供电,且只要存在光能照射到太阳能发电层42,就能够产生电能,即用户在具有太阳光的户外或者具有灯光的室内使用用电眼镜时,均能够通过太阳能发电层42产生电能,从而使得用电眼镜能够正常使用,而不受充电电池容量的限制,提高用电眼镜的续航时间。
更具体地,如图3~5所示,该太阳能发电层42与镜片11对应,其中,该太阳能发电层42可以与一个镜片11对应,也可以与两个镜片11均对应,即该太阳能发电层42与至少一个镜片11对应。需要说明的是,太阳能发电层42与镜片11对应指的是:太阳能发电层42设置于(或固定于)镜片11,或者,太阳能发电层42与镜片11贴合,又或者,沿厚度方向X,太阳能发电层42与镜片11之间具有间隙。上述各方式中,太阳能发电层42的设置均能够利用镜片11的空间。
对于用电眼镜来说,其面积最大的部件为镜片11,因此,与设置于镜腿3等面积较小的部件相比,将太阳能发电层42与镜片11对应时,能够增大该太阳能发电层42的设置面积,从而增大发电量,以便进一步提高用电眼镜的续航时间。另外,由于镜片11通常为比较平整的平面或弧面,能够便于设置太阳能发电层42,降低设置太阳能发电层42的难度,且镜片11与用电眼镜的其他位置相比,更加便于吸收光能,从而进一步提高电能的转化率。
需要说明的是,本申请实施例所述的用电眼镜为包括用电部件的所有眼镜,且对用电部件的种类和结构不作限定。
更具体地,该太阳能发电层42的面积与镜片11的面积相等,从而能够尽量增大太阳能发电层42的面积,提高太阳能转变为电能的转化率。需要说明的是,此处所述的面积相等并非指二者面积的严格相等,只要使得太阳能发电层42的面积与镜片11的面积大致相等即可。
或者,太阳能发电层42的面积也可小于镜片11的面积,例如,太阳能发电层42的面积大于镜片11面积的50%,或者大于60%、70%等,只要能够满足发电量的要求即可。
因此,太阳能发电层42可以为与镜片11的结构相近的结构,例如,可以与镜片11大小形状相同的膜状结构,或者,也可为稍小于镜片11的膜状结构。
在一种可能的设计中,如图3、图4、图8和图9所示的实施例中,沿镜片11的厚度方向X,该镜片11包括相对设置的内表面和外表面,其中,内表面表 示:用户佩戴用电眼镜时,靠近用户眼睛的一侧表面,外表面表示远离用户眼睛的一侧表面,通常情况下,该内表面与外表面的面积相等,当然,二者也可不相等。
该实施例中,太阳能发电层42与该内表面和/或外表面对应设置,即太阳能发电层42可直接贴敷于内表面和/或外表面,且太阳能发电层42外部设置保护层。另外,该用电眼镜的两个镜片11均可以设置该太阳能发电层42,且两镜片11中太阳能发电层42的设置位置和设置数量可以相同也可以不同,但是,为了使得设置太阳能发电层42后两镜片11的透光率相同,可使得两镜片11的太阳能发电层42的位置和数量相同,例如:如图4所示,两镜片11的外表面均设置有太阳能发电层42,如图5所示,两镜片11的内表面均设置有太阳能发电层42。
具体地,如图3和图7所示,沿厚度方向X,镜片11可以包括两个或两个以上分体设置的镜片单体111,且各镜片单体111沿厚度方向X固定连接,以形成完整的镜片11,同时,各镜片单体11的厚度可以相同也可以不同。此时,上述太阳能发电层42可设置于:相邻镜片单体111之间、镜片11的内表面、外表面三者中的任一者,或者三者中的任意组合。
以图3和图7所示的实施例为例,即镜片11包括两个沿厚度方向X布置的镜片单体111,此时,镜片11的内表面、外表面以及两镜片单体111之间均可设置太阳能发电层42,即设置三层太阳能发电层42,能够进一步提高电能的转化率,但同时,太阳能发电层42的层数过多时会降低镜片11的透光率,影响使用感受。因此,本实施例中,太阳能发电层42可仅设置于两镜片单体111之间,此时,不仅能够实现太阳能转变为电能,还能够通过两镜片单体111对太阳能发电层42提供保护,提高太阳能发电层42的使用寿命。
更具体地,如图2~5所示的实施例,上述镜片模组1可为一体式结构,即沿宽度方向Y布置的两个镜片11通过第一连接部12连接,从而提高两镜片11安装于镜框2时的对称性;如图6~9所示的实施例,上述镜片模组1也可为分体 式结构,即该镜片模组1包括两个分体设置的镜片11,从而能够使得两镜片11能够独立安装和拆卸,一个镜片11损坏时,无需更换全部镜片11,提高镜片11的利用率。
以上各实施例中,可通过将液态太阳能发电材料涂覆于镜片11的对应位置从而形成太阳能发电层42,或者,也可首先将太阳能发电材料制成太阳能发电膜,然后将太阳能发电膜贴敷于镜片11的对应位置。
在另一种可能的设计中,如图10~23所示,该用电眼镜包括发电模组4,该发电模组4包括支架41和上述太阳能发电层42,且该太阳能发电层42设置于支架41,并在太阳能发电层42外侧设置保护层43,从而对太阳能发电层42提供保护,因此,支架41、太阳能发电层42和保护层43形成用电眼镜的发电模组4,即将太阳能发电层42模块化,且该发电模组4与镜框2和/或镜片11可拆卸连接,从而使得太阳能发电层42与镜片11对应。
其中,该发电模组4可以包括与两个镜片11对应的太阳能发电层42,也可包括仅与其中一个镜片11对应的太阳能发电层42。
需要说明的是,本实施例中所述的太阳能发电层42与镜片11对应可以为:发电模组4与镜框2和/或镜片11连接后,太阳能发电层42与镜片11沿厚度方向X布置,且二者可以贴合,也可以不贴合,当然,为了提高太阳能发电层42与用电眼镜的连接可靠性,该太阳能发电层42与镜片11可以贴合,从而通过镜片11对太阳能发电层42提供沿厚度方向X的支撑。
本实施例中,将太阳能发电层42模块化,并与镜框2和/或镜片11可拆卸连接时,能够便于实现太阳能发电层42的更换,且发电模块4拆下时,使得该用电眼镜还能够作为普通眼镜使用,从而提高用电眼镜的适用性。
具体地,如图13所示,镜框2包括镜片安装部22和镜腿连接部24,其中,镜片安装部22开设有两个第一安装孔,镜片11对应安装于该第一安装孔,沿宽度方向Y,两个第一安装孔之间具有第二连接部23,该第二连接部23位于两镜片11之间,即位于该用电眼镜沿宽度方向Y的中部。
同时,镜腿连接部24位于镜片安装部22沿宽度方向Y的两端,且镜腿连接部24连接有第一铰链部21,镜腿3设置有第二铰链部31,从而通过第一铰链部21与第二铰链部31的配合实现镜腿3与镜框2之间的转动连接。
本实施例中,发电模组4可以与镜框2可拆卸连接,而无需与镜片11可拆卸连接,从而能够保证镜片11的完整性。其中,该发电模组4可以与镜片安装部22、第二连接部23以及镜腿连接部24中的任一者或者任意组合可拆卸连接。
该发电模组4中,支架41可以为与镜框2相近的结构,如图12所示,该支架41可以包括第一本体部415和延伸部411,沿宽度方向Y,延伸部411位于第一本体部415的两端。其中,第一本体部415与镜片安装部22对应设置,且该第一本体部415开设有两个第二安装孔,该第二安装孔可为与第一安装孔大小和形状均相同的结构,上述太阳能发电层42设置于该第二安装孔,且该发电模组4与镜框2和/或镜片11连接时,太阳能发电层42与镜片11,同时,延伸部411与镜框2的镜腿连接部24对应。
基于支架41与镜框2的具体结构,发电模组4与镜框2可拆卸连接时,具体可通过下述方式实现:镜腿连接部24与延伸部411可拆卸连接、镜片安装部22与第一本体部415可拆卸连接、第二连接部23与第一本体部415可拆卸连接,上述三种连接方式中,可以为任意一种连接方式,也可以为任意连接方式的组合。
因此,本实施例中,只要能够实现镜框2与发电模组4的可拆卸连接即可,对二者之间具体的可拆卸连接方式以及连接位置不作限定。
具体地,如图10~13所示的实施例中,该支架41设置有第一磁性件411a,镜框2设置有第二磁性件241,且该第一磁性件411a与第二磁性件241中,二者相互靠近的一端磁性相反,二者相互远离的一端磁性相同,因此,支架41与镜框2之间能够通过第一磁性件411a和第二磁性件241之间的磁吸力可拆卸连接。本实施例中,通过两磁吸件实现支架41与镜框2之间的可拆卸连接时,具有结构简单的优点,且便于安装和拆卸。
本实施例中,上述第一磁性件411a可设置于支架41的任意位置,只要第一磁性件411a与第二磁性件241的设置位置相互对应即可,以便二者连接时,镜框2与发电模组4位置对应,保证用电眼镜能够正常工作。
更具体地,如图12所示的实施例中,该第一磁性件411a可以设置于支架41,延伸部411,该延伸部411与镜框2的镜腿连接部24对应,因此,上述第二磁性件241设置于镜框2的镜腿连接部24。同时,为了进一步提高支架41与镜框2之间的连接可靠性,支架41的两个延伸部411均设置有第一磁性件411a,镜框2的两个镜腿连接部24均设置有第二磁性件241。
其中,该第一磁性件411a与第二磁性件241具体可为永磁体,或者,也可为电磁体。
在另一种可能的设计中,发电模组4与镜框2之间还可以通过卡接的方式连接,且二者卡接后,该卡接结构能够限制发电模组4相对于镜框2沿厚度方向X、宽度方向Y和高度方向Z的运动,从而提高发电模组4与镜框2之间连接的可靠性。
在一种具体实施例中,如图14~19所示,沿用电眼镜的高度方向Z,该支架41具有相对设置的第一卡钩412,相应地,该镜框2具有相对设置的卡槽231,且第一卡钩412与卡槽231对应卡接,从而实现支架41与镜框2之间的卡接连接。
本实施例中,第一卡钩412卡接于卡槽231时,能够限制支架41与镜框2之间沿厚度方向X和宽度方向Y的相对运动,同时,沿高度方向Z,具有相对设置的两组卡接结构,从而能够限制支架41与镜框2之间沿高度方向Z的相对运动,实现二者之间的可靠连接。
具体地,如图17所示,该第一卡钩412包括第一延伸段412a和第一卡接段412b,沿厚度方向X,该第一延伸段412a位于第一卡接段412b与支架41之间,即第一延伸段412a沿厚度方向X、朝向镜框2延伸,且该第一延伸段412a与第一卡接段412b之间形成第一台阶面412c。相应地,如图19所示,该卡槽231 包括第一底壁231a和第二底壁231b,该第一底壁231a与第二底壁231b沿厚度方向X布置,且二者均为卡槽231的底壁,同时,沿厚度方向X,第一底壁231a与第二底壁231b之间形成第二台阶面231c。
结合图15、图17和图19可知,第一卡钩412与卡槽231卡接时,第一延伸段412a与第一底壁231a配合(沿高度方向Z,二者可以相互抵接),第一卡接段412b与第二底壁231b配合(沿高度方向Z,二者可以相互抵接),同时,沿厚度方向X,该第一台阶面412c与第二台阶面231c抵接。
本实施例中,通过沿厚度方向X抵接的第一台阶面412c与第二台阶面231c能够限制支架41与镜框2沿厚度方向X的相对运动;通过卡槽231沿宽度方向Y的两侧壁限制第一卡钩412与卡槽231沿宽度方向Y的相对运动,从而限制支架41与镜框2沿宽度方向Y的相对运动;同时,通过沿高度方向Z相对设置的两个第一卡钩412与卡槽213的配合能够限制支架41与镜框2沿高度方向Z的相对运动。因此,本实施例中,支架41与镜框2的卡接结构使得二者相对运动的趋势较小,提高二者的连接可靠性。
更具体地,如图18所示,上述卡槽231可以设置于镜框2的第二连接部23,且第二连接部23沿高度方向Z的两端均可设置有上述卡槽231,由于第二连接部23位于镜框2沿宽度方向Y的中部,因此,如图16所示,上述第一卡钩412可设置于支架41的本体部415沿宽度方向Y的中部,且该本体部415中部沿高度方向Z的两端均可设置有上述第一卡钩412,从而使得第一卡钩412与卡槽231对应设置。
可以理解,该第二卡钩412与卡槽231的设置位置并非仅限于此,只要满足二者相互对应即可。
为了提高镜框2的完整性,可省去设置于镜框2的卡槽231,此时,无法通过卡槽231的侧壁限制支架41与镜框2沿宽度方向Y的相对运动,需要设置其他限制宽度方向Y相对运动的结构。
在一种具体实施例中,如图20~22所示,该支架41的第一本体部415还设 置有两个或多个第二卡钩413,其中,至少两个第二卡钩413设置于第一本体部415沿宽度方向Y的两端,且第二卡钩413与镜框2卡接时,相对设置的第二卡钩413能够限制支架41与镜框2沿宽度方向Y的相对运动。同时,该支架4还设置有两个或多个第三卡钩414,其中,至少一个第三卡钩414与第二卡钩413沿高度方向Z相对布置,或者,至少两个第三卡钩414设置于第一本体部415沿高度方向Z的两端,从而使得第三卡钩414与镜框2卡接时,相对设置的至少两个第三卡钩414,或者相对设置的第三卡钩414与第二卡钩413能够限制支架41与镜框2沿高度方向Z的相对运动。
如图22所示的实施例中,该支架41具有沿宽度方向Y相对设置的两个第二卡钩413,同时,还具有两个第四卡钩414,且两个第四卡钩414分别与两个第二卡钩413沿高度方向Z相对设置,当支架41与镜框2卡接时,能够通过上述四个卡钩能够限制支架41与镜框2沿厚度方向X、宽度方向Y和高度方向Z的相对运动。
具体地,如图22所示,上述两个第三卡钩414均可以设置于支架41的延伸部411,上述两个第二卡钩413均可以设置于支架41的第一本体部415,显然,上述各卡钩的设置位置不作限定。
更具体地,如图23所示,该第二卡钩413包括第二卡接段413b和第二延伸段413a,其中,沿厚度方向X,该第二卡接段413b与第一本体部415分别位于第二延伸段413a的两端,且该第二卡接段413b和第二延伸段413a之间形成第三台阶面413c,第二卡接段413b沿厚度方向X的尺寸与镜框2的厚度尺寸大致相同,从而当第二卡钩413与镜框2卡接时,沿厚度方向X,该第三台阶面413c与第一本体部415分别与镜框2的两个端面抵接,从而实现镜框2与支架41的卡接。
另外,如图23所示,该第三卡钩414可以包括第三延伸段414a和第三卡接段414b,其中,沿厚度方向X,该第三卡接段414b与第一本体部415分别位于第三延伸段414a的两端,且该第三卡接段414b与第三延伸段414a之间形成第 四台阶面414c,第三卡接段414b沿厚度方向X的尺寸与镜框2的厚度尺寸大致相同,从而当第三卡钩414与镜框2卡接时,沿厚度方向X,该第四台阶面414c与第一本体部415分别与镜框2的两个端面抵接,从而实现镜框2与支架41的卡接。
因此,本实施例中,该第二卡钩413与第三卡钩414能够限制支架41与镜框2沿厚度方向X的相对运动。
以上各实施例中,设置于用电眼镜的太阳能发电层42的透光率为3%~90%,例如,该透光率具体可为60%、80%、90%等。
太阳能发电层42的透光率越小,将太阳能转变为电能的效率越高,但是,由于太阳能发电层42设置于镜片11,当其透光率过低时,影响该用电眼镜的正常使用,因此,需综合考虑透光率与能量转化率两方面的因素合理选择太阳能发电层42的透光率。
以上各实施例中,如图24~29所示,该用电眼镜还可以包括电池5,其中,该电池5为可多次充电的二次电池,且该电池5与所述太阳能发电层42之间通过连接组件6连接,即太阳能发电层42与可充电电池5通过连接组件6电连接,从而能够将太阳能发电层42产生的电能储存于电池5,当用户在没有光照的环境中使用用电眼镜时,电池5中储存的电能能够为用电部件供电,从而使得该用电眼镜在无光照的环境中仍然能够正常工作,进一步提高用电眼镜的续航时间,并提高能量的利用率。
具体地,该镜腿3包括第二本体部32,该所述用电眼镜还包括镜腿3,所述镜腿3包括第二本体部32,该第二本体部32为具有一定硬度的结构,且其内部具有腔体,电池5位于该腔体内。由于第二本体部32具有一定的硬度,因此,受力后不易变形,从而降低在外力作用下挤压第二本体部32内部的电池5的风险,提高电池5的安全性。
本实施例中,将电池5设置于镜腿3的内部时,能够合理利用镜腿3内的空间,避免电池5占用镜框2的空间,从而避免因设置电池5而导致的镜框2重量 过大,以便提高用电眼镜的用户体验。
需要说明的是,本申请各实施例中,镜腿3并非必须为各附图所示的结构,该镜腿3可为不同的结构,例如,可以全部为硬质结构(如图1所示),且当镜腿3全部为硬质结构时,该用电眼镜可包括两个分体设置的镜腿3,且两镜腿3分别与镜框2相连;该镜腿3还可包括柔性带状结构,即镜腿3包括硬质结构的第二本体部32和柔性带,此时,该用电眼镜可包括一个柔性带,且该柔性带的两端分别与两镜腿3的两个第二本体部32相连。因此,本申请中,对镜腿3的具体结构不作限定。
在第一种具体实施例中,如图24~27所示,该连接组件6包括导线,电池5与太阳能发电层42之间通过导线连接,并形成回路。
具体地,该镜腿3的第二本体部32内部可包括一个或多个电池5,当包括一个电池5时,该电池5在第二本体部32内的位置不作限定,即导线的长度不作限定。当镜腿3的第二本体部32内部包括两个电池5时,如图27所示,一个电池5与太阳能发电层42之间通过第一导线611连接,且两个电池5之间通过第二导线612连接(可为并联),从而使得太阳能发电层42产生的电能能够储存于电池5。
在第二种具体实施例中,如图28和图29所示,该连接组件6包括电路板62,电池5与太阳能发电层42之间通过该电路板62连接,其中,该电路板62具体可为柔性电路板(Flexible Printed Circuit,FPC),该柔性电路板能够弯折,从而能够方便地实现电池5与太阳能发电层42之间的电连接。另外,该电路板62还便于设置变压部件、电路保护部件等电气元件,从而进一步提高用电眼镜的安全性。
以上两实施例中,太阳能发电层42与电池5之间通过导线或电路板62直接接触实现连接,即需要保证导线或电路板62能够与太阳能发电层42和电池5接触,而太阳能发电层42设置于镜片11(或与镜片11连接),因此,上述导线或电路板62需从镜腿3的第二本体部32内部延伸至镜片11的位置,且导线或 电路板62应从用电眼镜内部延伸,而不宜伸出眼镜外。
为了实现上述目的,在一种可能的设计中,导线或电路板62可从镜腿3与镜框2转动连接的位置延伸,如上所述,镜框2的镜腿连接部24连接有第一铰链部21,镜腿3设置有第二铰链部31,从而通过第一铰链部21与第二铰链部31的配合实现镜腿3与镜框2之间的转动连接。
在一种具体实施例中,如图30和图31所示,为了实现连接组件6朝向太阳能发电层42的延伸,该镜腿3的第二本体部32设置有第一通孔322,相应地,镜框2的第一铰链部21设置有第二通孔211,连接组件6能够经该第一通孔322和第二通孔211从第二本体部32的腔体延伸至安装于镜框2的太阳能发电层42,实现电池5与太阳能发电层42的电连接。同时,本实施例中,连接组件6从用电眼镜的内部延伸,不会裸露于外界,从而提高用电眼镜的安全性,并改善外观性能。
在另一种具体实施例中,该镜框2的第一铰链部21包括第四导电部213,且该第四导电部213与安装于镜框2的太阳能发电层42电连接,同时,上述镜腿3的第二本体部32开设有第一通孔322,连接组件6经该第一通孔322从第二本体部32的腔体内伸出,并与第一铰链部21的第四导电部213接触,实现电池5与第四导电部213之间的电连接,从而实现电池5与太阳能发电层42之间的电连接。或者,该镜框2的第一铰链部21设置有第二通孔211,连接组件6与太阳能发电层42之间电连接,并能够经该第二通孔211伸出,同时,镜腿2的第二铰链部31设置有第五导电部311,该第五导电部311与电池5电连接,该第五导电部311与从第二通孔211伸出的连接组件6电连接,从而实现太阳能导电层42与电池5之间的电连接。
或者,如图32和图33所示,该镜框2的第一铰链部21包括第四导电部213,且该第四导电部213与安装于镜框2的太阳能发电层42电连接,同时,镜腿3的第二铰链部31设置有第五导电部311,且该第五导电部311与安装于镜腿3的第二本体部32内的电池5连接,连接组件6包括该第四导电部213和第五导电 部3211,实现电池5与太阳能发电层42之间的电连接。
本实施例中,电池5与太阳能发电层42之间的电连接通过第一铰链部21与第二铰链部31实现,即通过用电眼镜原本的结构即可实现二者的电连接,无需增设其他部件,从而简化用电眼镜的结构,并降低用电眼镜的重量,提高佩戴的舒适性。
其中,第四导电部213与太阳能发电层42之间可通过导线或电路板连接,或者,二者也可直接接触实现电连接,相应地,第五导电部311与电池5之间可通过导线或电路板电连接,或者,二者也可直接接触实现电连接。
在一种可能的设计中,该连接组件6包括第一导电触点和第二导电触点,其中,该第一导电触点设置于镜框2,并与太阳能发电层42连接,第二导电触点设置于镜腿3的第二本体部32,并与电池5连接,同时,该第一导电触电与第二导电触点接触时,太阳能发电层42与电池5电连接。
本实施例中,太阳能发电层42与电池5之间并非直接接触实现电连接,而是通过两触点的接触实现电连接,因此,能够减少导线的使用量,并能够减少为了导线穿过而设置通孔的数量。
具体地,第二本体部32靠近镜框2的端部具有抵接面321,当镜腿3处于如图1所示的打开状态时,该抵接面321与镜框2的镜腿连接部24抵接,从而限制镜腿3继续转动。如图34~图39所示,该第一导电触点设置于镜框2的镜腿连接部24,第二导电触点设置于第二本体部32靠近镜框2的端部,即设置于该抵接面321,并避开第二铰链部31。
因此,当镜腿3处于如图1所示的打开状态(用户可佩戴状态,即用电眼镜处于工作状态)时,第一导电触点与第二导电触点接触,实现电池5与太阳能发电层42之间的电连接。当用电眼镜处于如图34~39所示的收纳状态(非工作状态)时,抵接面321远离镜框2的镜腿连接部24,第一导电触点与第二导电触点断开,从而断开电池5与太阳能发电层42之间的电连接。
本实施例中,仅需通过镜腿3与镜框2之间的相对转动即可实现电池5与太 阳能发电层42之间的电连接,无需设置其他开关部件,从而能够减少用电眼镜的部件数量,降低其结构复杂性和重量。且电池5与太阳能发电层42之间只有在用电眼镜处于工作状态时才处于导电状态,用电眼镜不工作时二者不导通,从而降低电池5中电能的流失,提高能量利用率。
具体地,如图34和图35所示的实施例中,该镜框2的镜腿连接部24与抵接面321中,一者设置有第一凸起部631,另一者设置有凹陷部632,该第一凸起部631与凹陷部632的轮廓均导电,其中,第一凸起部631的至少部分能够位于凹陷部632,并与凹陷部632的壁面抵接,从而实现第一凸起部631与凹陷部632之间的电连接。
同时,为了在太阳能发电层42与电池5之间形成闭合回路,该第一凸起部631的外周设置有第一导电部633,且该第一凸起部631与第一导电部633之间设置有第一绝缘部636,实现二者之间的绝缘,凹陷部632的外周设置有第二导电部634,且该凹陷部632与第二导电部634之间设置有第二绝缘部635,实现二者之间的绝缘。
本实施例中,该第一凸起部642的外轮廓与第一导电部633可分别为两个正极触点,同时,凹陷部632的壁面和第二导电部634可以分别为两个负极触点,因此,第一凸起部631与凹陷部632的壁面抵接、第一导电部633与第二导电部634抵接时,能够实现电池5与太阳能发电层42之间的电连接,并形成回路。
另外,当镜腿3处于如图1所示的打开状态时,通过设置凹陷部632,并使得第一凸起部631位于凹陷部632,能够实现抵接面321与镜腿连接部24之间的抵接,从而能够实现镜腿3的完全开启,保证用户能够正常佩戴用电眼镜。
本实施例中,在镜腿3的第二本体部32内,凹陷部632的内壁与电池5之间具体可通过导线或电路板等方式电连接,同时,在镜框2的镜腿连接部24内,第一凸起部631与太阳能发电层42之间具体可通过导线或电路板等方式电连接。
在另一种具体实施例中,该第二本体部32与镜腿连接部24均可不设置凹陷部,为了保证镜腿3处于打开状态时镜框2能够与第二本体部32的抵接面抵接,上述凸起部可为能够伸缩的结构,当镜腿3处于打开状态时,在镜腿3与镜框2的作用下,凸起部能够缩回至镜框2或镜腿3内。
具体地,如图36和图37所示,连接组件6可以包括第二凸起部642、第一金属盘643和弹性件641,且该第二凸起部642具体可设置于第二本体部32,该第二本体部32朝向镜框2的端部设置有安装槽,弹性件641位于该安装槽内,且第二凸起部642的至少部分位于该安装槽内,该弹性件641沿其轴向的一端与安装槽的底壁抵接,另一端与第二凸起部642抵接。因此,当第二凸起部642受压时,能够压缩弹性件641,并驱动第二凸起部642全部位于安装槽内,即镜腿3处于打开状态时,抵接面321仍然能够与镜框3抵接,使得镜腿3能够完全打开。镜腿3相对于镜框2转动至收回状态时,在弹性件641回弹力的作用下,该第二凸起部642能够凸出于抵接面321。
本实施例中,在镜腿3的第二本体部32内,第二凸起部642与电池5之间具体可通过导线或电路板等方式电连接,同时,在镜框2的镜腿连接部24内,第一金属盘643与太阳能发电层42之间具体可通过导线或电路板等方式电连接。
具体地,如图37所示,该第二本体部32设置有两个第二凸起部642,且两个第二凸起部642分别为正极端子,相应地,镜框2设置有两个第一金属盘643,且两个第一金属盘643分别为负极端子,当第二凸起部642与第一金属盘643对应抵接时,能够将电池5与太阳能发电层42通过回路连通。
另外,本实施例中,上述两个第二凸起部642均可设置于镜框2,相应地,两个第一金属盘643均可设置于第二本体部32,或者,两个第二凸起部642分别设置于镜框2和第二本体部32,两个第一金属盘643也分别设置于镜框2和第二本体部32。
在如图38和图39所示的实施例中,该连接组件6包括金属弹片651和第二金属盘652,当镜腿3处于打开状态并相对于镜框2转动时,能够压缩金属弹片 651,并驱动金属弹片651展开为近似平面的结构,且该金属弹片651与第二金属盘652抵接,从而实现金属弹片651与第二金属盘652之间电连接的同时,能够使得抵接面321与镜框2抵接或接近抵接,使得镜腿3能够完全打开。镜腿3相对于镜框2转动至收回状态时,在回弹力的作用下,该金属弹片651能够凸出于抵接面321。
具体地,如图39所示,该第二本体部32设置有两个金属弹片651,且两个金属弹片651分别为正极端子,相应地,镜框2设置有两个第二金属盘652,且两个第二金属盘652分别为负极端子,当金属弹片651与第二金属盘652对应抵接时,能够将电池5与太阳能发电层42通过回路连通。
另外,本实施例中,上述两个金属弹片651均可设置于镜框2,相应地,两个第二金属盘652均可设置于第二本体部32,或者,两个金属弹片651分别设置于镜框2和第二本体部32,两个第二金属盘652也分别设置于镜框2和第二本体部32。
本实施例中,在镜腿3的第二本体部32内,金属弹片651与电池5之间具体可通过导线或电路板等方式电连接,同时,在镜框2的镜腿连接部24内,第二金属盘652与太阳能发电层42之间具体可通过导线或电路板等方式电连接。
在另一种可能的设计中,如图40和图41所示,该连接组件6包括发射线圈662和接收线圈661,其中,该发射线圈662设置于镜框2的镜腿连接部24,并与太阳能发电层42连接,接收线圈661设置于镜腿3的第二本体部32,并与电池5连接。当太阳能发电层42产生的电能传递至发射线圈662时,发射线圈662产生感应磁场,在该感应磁场的作用下,能够在接收线圈661内产生感应电流,且该感应电流能够传递至电池5,实现电池5的充电。
同时,当该发射线圈662与接收线圈661相互接近时,二者之间能够产生感应电流。
以上各实施例中,为了进一步改善用电眼镜的功能,该用电眼镜还可配置充电器7,该充电器7与外接电源和电池5连接,从而能够为电池5充电。因 此,本申请实施例还提供一种用电眼镜系统,如图42~45所示,该用电眼镜系统包括以上各实施例中所述的用电眼镜和充电器7。
具体地,如图45所示,该充电器7包括第三本体部71、卡爪72和充电线73,其中,沿用电眼镜的高度方向Z,该第三本体部71连接有相对设置的卡爪72,同时,沿用电眼镜的宽度方向Y,该第三本体部71连接有相对设置的卡爪72,且各卡爪72均沿用电眼镜的宽度方向Y延伸。充电时,用电眼镜能够通过各卡爪72卡接,实现用电眼镜与充电器7的连接。
其中,如图44所示,该充电器7中,卡爪72设置有第三导电触点,且用电眼镜设置有能够与该第三导电触电721接触的第三导电部212,且该第三导电部212与电池5电连接。
更具体地,如图44所示的实施例中,镜框2的第一铰链部21位于外侧,因此,上述第三导电部212可设置于该第一铰链部21,同时,在用电眼镜内部,电池5连接第一导线611,且镜腿3的第二本体部32设置有第一通孔322,该第一导线611能够经该第一通孔322伸出第二本体部32,并与第一铰链部21的第三导电部212接触,从而实现第三导电部212与电池5之间的电连接。
或者,该镜腿3也可不设置该第一通孔222,该镜腿3的第二铰链部31设置有第五导电部311,该第五导电部311与位于镜腿3内的电池5电连接,该镜腿3的第二铰链部31与镜框2的第一铰链部21配合时,该第五导电部311能够与第三导电部212接触,从而实现电池5与第三导电部212之间的电连接,进而实现充电器7与电池5之间的电连接,能够通过该充电器7为电池5充电。
综上所述,本申请实施例提供的用电眼镜中的镜片11设置有太阳能发电层42,从而能够提高用电眼镜的续航时间。
以上所述仅为本申请的优选实施例而已,并不用于限制本申请,对于本领域的技术人员来说,本申请可以有各种更改和变化。凡在本申请的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本申请的保护范围之内。

Claims (14)

  1. 一种用电眼镜,其特征在于,所述用电眼镜包括:
    镜框;
    一片或两片镜片,所述一片或两片镜片安装于所述镜框;
    太阳能发电层,所述太阳能发电层用于将太阳能转变为电能,且所述太阳能发电层与所述用电眼镜的用电部件连接;
    其中,所述太阳能发电层对应于所述一片或两片镜片中的至少一片镜片。
  2. 根据权利要求1所述的用电眼镜,其特征在于,所述太阳能发电层的面积与所述至少一片镜片的面积相等。
  3. 根据权利要求1所述的用电眼镜,其特征在于,沿所述镜片的厚度方向,所述镜片包括相对设置的内表面和外表面;
    沿所述镜片的厚度方向,所述镜片包括分体设置的镜片单体;
    相邻所述镜片单体之间、所述内表面、所述外表面三者中的任一者或任意组合设置有所述太阳能发电层。
  4. 根据权利要求1所述的用电眼镜,其特征在于,所述用电眼镜包括发电模组,所述发电模组包括支架和所述太阳能发电层,所述太阳能发电层设置于所述支架;
    所述发电模组与所述镜框可拆卸连接,以使所述太阳能发电层与至少一片镜片对应。
  5. 根据权利要求1~4中任一项所述的用电眼镜,其特征在于,所述太阳能发电层的透光率为3%~90%。
  6. 根据权利要求1~4中任一项所述的用电眼镜,其特征在于,所述用电眼镜还包括电池,所述电池与所述太阳能发电层之间通过连接组件连接;
    所述用电眼镜还包括镜腿,所述镜腿包括第二本体部,所述第二本体部 具有腔体,所述电池位于所述腔体。
  7. 根据权利要求6所述的用电眼镜,其特征在于,所述镜框设置有第一铰链部,所述第二本体部设置有第二铰链部,所述镜框与所述镜腿通过所述第一铰链部和所述第二铰链部转动连接;
    所述第二本体部开设有第一通孔,所述第一铰链部开设有第二通孔,所述连接组件能够穿过所述第一通孔与所述第二通孔。
  8. 根据权利要求6所述的用电眼镜,其特征在于,所述镜框设置有第一铰链部,所述第二本体部设置有第二铰链部,所述镜框与所述镜腿通过所述第一铰链部和所述第二铰链部转动连接;
    所述第一铰链部包括第四导电部,所述第四导电部与所述太阳能发电层连接;
    所述第二铰链部包括第五导电部,所述第五导电部与所述电池连接;
    所述连接组件包括所述第四导电部与所述第五导电部。
  9. 根据权利要求6所述的用电眼镜,其特征在于,所述连接组件包括第一导电触点和第二导电触点,且所述第一导电触点设置于所述镜框,并与所述太阳能发电层连接,所述第二导电触点设置于所述第二本体部,并与所述电池连接;
    所述第一导电触点与所述第二导电触点能够接触。
  10. 根据权利要求9所述的用电眼镜,其特征在于,所述镜框与所述第二本体部中,一者设置有第一凸起部,另一者设置有凹陷部,所述第一凸起部的外轮廓能够导电,所述凹陷部的内壁能够导电;
    所述第一凸起部的至少部分能够位于所述凹陷部。
  11. 根据权利要求10所述的用电眼镜,其特征在于,所述第一凸起部的外周设置有第一导电部,且所述第一凸起部与所述第一导电部之间设置有第一绝缘部;
    所述凹陷部的外周设置有第二导电部,且所述凹陷部与所述第二导电部 之间设置有第二绝缘部,所述第一导电部能够与所述第二导电部接触。
  12. 根据权利要求6所述的用电眼镜,其特征在于,所述连接组件包括发射线圈和接收线圈,所述发射线圈设置于所述镜框,并与所述太阳能发电层连接,所述接收线圈设置于所述第二本体部,并与所述电池连接。
  13. 一种用电眼镜系统,其特征在于,所述用电眼镜系统包括:
    用电眼镜,为权利要求1~12中任一项所述的用电眼镜;
    充电器,所述充电器能够安装于所述用电眼镜,且所述充电器能够与所述用电眼镜的电池连接。
  14. 根据权利要求13所述的用电眼镜系统,其特征在于,所述充电器包括第三本体部和多个卡爪,所述卡爪与所述第三本体部连接;
    所述充电器通过所述卡爪与所述用电眼镜的镜框连接;
    所述镜框具有用于与镜腿连接的第一铰链部,所述第一铰链部设置有第三导电部,所述电池与所述第三导电部连接;
    所述卡爪设置有第三导电触点,所述第三导电部能够与所述第三导电触电接触。
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