WO2022134982A1 - 眼镜架及智能眼镜 - Google Patents

眼镜架及智能眼镜 Download PDF

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Publication number
WO2022134982A1
WO2022134982A1 PCT/CN2021/132106 CN2021132106W WO2022134982A1 WO 2022134982 A1 WO2022134982 A1 WO 2022134982A1 CN 2021132106 W CN2021132106 W CN 2021132106W WO 2022134982 A1 WO2022134982 A1 WO 2022134982A1
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WO
WIPO (PCT)
Prior art keywords
host device
connector
host
glasses
smart glasses
Prior art date
Application number
PCT/CN2021/132106
Other languages
English (en)
French (fr)
Inventor
范晓宇
吕程衎
Original Assignee
Oppo广东移动通信有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Oppo广东移动通信有限公司 filed Critical Oppo广东移动通信有限公司
Priority to EP21908981.0A priority Critical patent/EP4261595A1/en
Publication of WO2022134982A1 publication Critical patent/WO2022134982A1/zh

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Classifications

    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B27/00Optical systems or apparatus not provided for by any of the groups G02B1/00 - G02B26/00, G02B30/00
    • G02B27/01Head-up displays
    • G02B27/017Head mounted
    • G02B27/0176Head mounted characterised by mechanical features
    • 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
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B27/00Optical systems or apparatus not provided for by any of the groups G02B1/00 - G02B26/00, G02B30/00
    • G02B27/01Head-up displays
    • G02B27/0149Head-up displays characterised by mechanical features
    • G02B2027/0169Supporting or connecting means other than the external walls
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B27/00Optical systems or apparatus not provided for by any of the groups G02B1/00 - G02B26/00, G02B30/00
    • G02B27/01Head-up displays
    • G02B27/017Head mounted
    • G02B2027/0178Eyeglass type
    • GPHYSICS
    • G02OPTICS
    • G02CSPECTACLES; SUNGLASSES OR GOGGLES INSOFAR AS THEY HAVE THE SAME FEATURES AS SPECTACLES; CONTACT LENSES
    • G02C2200/00Generic mechanical aspects applicable to one or more of the groups G02C1/00 - G02C5/00 and G02C9/00 - G02C13/00 and their subgroups
    • G02C2200/02Magnetic means

Definitions

  • the present application relates to the field of smart wear, and in particular, to a spectacle frame and smart glasses provided with the spectacle frame.
  • Existing AR smart glasses generally include a glasses frame, a display device fixedly connected to the glasses frame, and a host, where hardware such as batteries and processing chips are provided, and the display device includes a display screen, a camera, and the like.
  • One type of AR smart glasses separates the host from the glasses frame and connects them through a data cable. This type of AR smart glasses has powerful computing power and good AR effect; the other type of AR smart glasses is fixedly connected to the display device and the host together. On the above-mentioned glasses frame, such AR smart glasses are easy to carry.
  • AR glasses are not friendly to users suffering from myopia, hyperopia or astigmatism, etc., and are inconvenient to use.
  • the purpose of the present application is to provide smart glasses that can adapt to users with different visions and a spectacle frame for the smart glasses.
  • the present application provides smart glasses for users to wear.
  • the smart glasses include a glasses frame, at least one host device and a connector, and the glasses frame is an empty glasses frame or one worn by the user himself.
  • the host device includes a host and a display device connected to the host; at least one of the host device is detachably connected to the empty eyeglass frame or the eyeglass frame worn by the user through the connector.
  • the present application further provides a spectacle frame for supporting a host device, the spectacle frame includes a frame body and a connecting piece, the frame body includes two temples, and each temple is provided with at least one of the connecting pieces, Each connector is detachably connected to one of the host devices.
  • the present application also provides smart glasses, including an eyeglass frame and at least one host device, the eyeglass frame includes a frame body and at least one connecting piece, the frame body includes two temples, and at least one temple is provided with the a connector; the host device is detachably connected to the connector.
  • FIG. 1 is a schematic three-dimensional structure diagram of smart glasses in a first embodiment of the present application
  • Fig. 2 is the three-dimensional structure exploded schematic diagram of the smart glasses in Fig. 1;
  • FIG. 3 is an enlarged view of one of the host devices and the connector in FIG. 2;
  • FIG. 4 is a schematic three-dimensional structural diagram of the host device and the connector in FIG. 3 from another perspective;
  • FIG. 5 is a schematic structural diagram of another connection method between the connector of the present application and the host device;
  • FIG. 6 is a schematic structural diagram of another connection method between the connector of the present application and the host device;
  • Figure 7 is a partial assembly view of the smart glasses in Figure 2;
  • FIG. 8 is an exploded schematic diagram of the three-dimensional structure of the smart glasses in the second embodiment of the present application.
  • FIG. 9 is a schematic three-dimensional structural diagram of one of the host devices in FIG. 8 from another perspective;
  • FIG. 10 is a schematic three-dimensional structure diagram of smart glasses in a third embodiment of the present application.
  • FIG. 11 is an exploded schematic diagram of the three-dimensional structure of the smart glasses in FIG. 10;
  • Fig. 12 is a perspective exploded schematic diagram of the smart glasses in Fig. 11 from another viewing angle;
  • Figure 13 is a perspective assembly view of the smart glasses in Figure 12;
  • FIG. 14 is a perspective view of another use state of the smart glasses in the third embodiment of the present application.
  • Fig. 15 is a perspective exploded schematic view of the smart glasses in Fig. 14;
  • FIG. 16 is a schematic three-dimensional structure diagram of the smart glasses in FIG. 15 from another viewing angle
  • 17 is a schematic three-dimensional structure diagram of smart glasses in the fourth embodiment of the present application.
  • FIG. 18 is a schematic three-dimensional structural diagram of a part of the host device and the connector of the smart glasses according to the fifth embodiment of the present application;
  • Figure 19 is a cross-sectional view of the host device and the connector in Figure 18 after assembly;
  • 20 is a schematic three-dimensional structural diagram of a part of the host device and the connector of the smart glasses according to the sixth embodiment of the present application;
  • 21 is a schematic three-dimensional structural diagram of a part of a host device and a connector of the smart glasses according to the seventh embodiment of the present application;
  • FIG. 22 is a schematic three-dimensional structural diagram of a part of the host device and the connector of the smart glasses according to the eighth embodiment of the present application;
  • FIG. 23 is a schematic three-dimensional structural diagram of a part of a host device and a connector of the smart glasses according to the ninth embodiment of the present application;
  • Figure 24 is a cross-sectional view of the host device and the connector in Figure 23 after being assembled;
  • 25 is a schematic three-dimensional structural diagram of a part of a host device and a connector of the smart glasses according to the tenth embodiment of the present application;
  • FIG. 26 is a cross-sectional view of the host device and the connector in FIG. 25 after assembling.
  • the smart glasses include a glasses frame, at least one host device, and a connecting piece, the glasses frame is an empty glasses frame or a glasses frame worn by the user;
  • the host device includes a host and a display device connected to the host; at least one of the host devices is detachably connected to the empty spectacle frame or the spectacle frame worn by the user through the connector.
  • the empty spectacle frame or the spectacle frame worn by the user includes temples, and the connector is connected between the temples and the host.
  • the connector is clamped to the temple, and the connector and the host are connected by magnetic attraction.
  • the connecting piece is provided with a first magnetic body, the main body is provided with a second magnetic body, and the first magnetic body and the second magnetic body are magnetically attracted to each other.
  • the connecting piece and the main body are of an integral structure, and the connecting piece is detachably connected with the temple.
  • the connecting piece is provided with a clamping groove, and the temple is detachably clamped in the clamping groove.
  • the connecting piece and the host can also be connected by a snap connection.
  • the connecting piece and the host can also be detachably connected through the cooperation of the sliding rail and the sliding groove.
  • a spectacle frame for supporting a host device comprises a frame body and a connecting piece, the frame body comprises two temples, each temple is provided with at least one of the connecting pieces, each connecting piece Removably connected to one of the host devices.
  • the spectacle frame also includes a wire arranged in the frame, each connecting piece is provided with a first electronic contact, and the opposite ends of the wire are respectively electrically connected to the second ends of the connecting pieces on the two temples.
  • an electronic contact the host device is provided with a second electronic contact corresponding to the first electronic contact, when the host device is connected to the connector, the first electronic contact is electrically connected to the the second electronic contact.
  • the connector is provided with a first magnetic element
  • the host device is provided with a second magnetic element corresponding to the first magnetic element
  • the first magnetic element and the second magnetic element are mutually connected.
  • the magnetic attraction enables the connector to be detachably connected to the host device.
  • the host device is provided with a positioning hole, the connecting piece is detachably clamped to the positioning hole, the first electrical contact is arranged on the outer surface of the connecting piece, and the second electrical contact is arranged on the outer surface of the connecting piece. the inner surface of the positioning hole.
  • the host device is provided with at least one positioning portion on the inner surface of the positioning hole, and the outer surface of the connecting piece is provided with a positioning groove corresponding to at least one of the positioning portions; or the host device is located at the position of the positioning hole.
  • the inner surface is provided with at least one positioning groove, and the outer surface of the connecting piece is provided with a positioning portion corresponding to at least one of the positioning grooves; when the host device is connected to the connecting piece, the positioning portion is clamped to the positioning slot.
  • the outer side of the connector is provided with a first magnetic body, and the inner surface of the positioning hole is provided with a second magnetic body. After the connector is snapped into the positioning hole, the first magnetic body and the The second magnetic bodies are magnetically attracted to each other.
  • the connector is provided with a blocking block
  • the host device is provided with a blocking hole corresponding to the blocking block
  • the first electronic contact is provided on the blocking block
  • the second electronic contact is provided on the card
  • the clamping block is clamped to the clamping hole, so that the host device is connected to the connecting member, and the first electronic contact is electrically connected to the second electronic contact.
  • the connector is provided with a hole
  • the host device is provided with a block corresponding to the hole
  • the first electrical contact is arranged on the inner surface of the hole
  • the second electrical contact is arranged on the inner surface of the hole.
  • the clamping block is clamped to the clamping hole, so that the host device is connected to the connector, and the first electronic contact is electrically connected to the second electronic contact.
  • the connector is provided with a first magnetic body
  • the host device is provided with a second magnetic body corresponding to the first magnetic body.
  • the attraction body and the second magnetic attraction body magnetically attract each other.
  • the connecting piece and the host device are connected by the cooperation of the slide rail and the guide slide rail.
  • One of the slide rail and the guide slide rail is arranged on the connecting piece, and the slide rail and the guide slide rail
  • the other one of the two is provided on the host device, and after the slide rail and the guide slide rail are connected in place, the first electrical contact is electrically connected to the second electrical contact.
  • the spectacle frame further includes a chip, the chip is electrically connected to the wire, and the chip has an encryption function.
  • the chip is also used for coordinating communication and power supply between the host devices on the two temples.
  • the smart glasses include an eyeglass frame and at least one host device, the eyeglass frame includes a frame body and at least one connecting piece, the frame body includes two temples, at least one temple is provided with the a connector; the host device is detachably connected to the connector.
  • the host device includes an AR glasses host, a VR glasses host, a headset, a flashlight, a speaker or a camera.
  • the terms “installed”, “connected”, “connected” and “disposed on” should be interpreted in a broad sense, for example, it may be
  • the fixed connection can also be a detachable connection or an integral connection; it can be a mechanical connection; it can be a direct connection or an indirect connection through an intermediate medium, and it can be the internal communication of the two components.
  • the specific meanings of the above terms in this application can be understood in specific situations.
  • FIG. 1 is a schematic diagram of a three-dimensional structure of the smart glasses 100 in the first embodiment of the present application
  • FIG. 2 is a schematic diagram of an exploded three-dimensional structure of the smart glasses 100 in FIG. 1
  • the smart glasses 100 according to the first embodiment of the present application are used for wearing by a user.
  • the smart glasses 100 include a glasses frame 20 , at least one host device 40 and a connector 60 .
  • the glasses frame 20 is an empty glasses frame or the user himself.
  • the host device 40 includes a host 42 and a display device 45 connected to the host 42 .
  • the host device 40 is detachably connected to the empty spectacle frame or the spectacle frame worn by the user through the connecting member 60, so that the display device 45 is located at the frame of the empty spectacle frame or the spectacle frame worn by the user himself. the front side.
  • the empty spectacle frame is suitable for users with normal vision who do not need to wear spectacles, and the spectacle frame worn by the user is the spectacle frame of ordinary glasses that the user usually wears, such as myopia glasses, hyperopia glasses or reading glasses.
  • the user When the smart glasses 100 of the present application need to be used, if the user has normal vision and does not wear glasses, after selecting a suitable empty glasses frame, the user first connects the host device 40 to the empty glasses frame through the connector 60 , so that the display device 45 is facing the frame of the empty spectacle frame, and then the host device 40 can be turned on for normal use. If the user himself has worn ordinary glasses, first connect the host device 40 to the glasses frame of the ordinary glasses worn by the user through the connector 60, so that the display device 45 is facing the frame of the ordinary glasses worn by the user himself. After the lens is turned on, the host device 40 can be used normally.
  • the smart glasses 100 may be, but not limited to, AR glasses, VR glasses, and the like.
  • the smart glasses 100 of the present application include a host device 40 and a connector 60 , and the host device 40 is detachably connected to the empty eyeglass frame or the eyeglass frame worn by the user through the connector 60 .
  • the host device 40 and the glasses frame of the smart glasses 100 of the present application are set as two independent parts, and the user can freely combine the host device 40 and the glasses frame according to their own needs; for example, when the user does not wear glasses himself Then, the user connects the host device 40 to the empty glasses frame through the connector 60, and turns on the host device 40 to use the smart glasses 100 normally; for example, when the user wears ordinary glasses In this case, the user can use the smart glasses 100 normally by connecting the host device 40 to the frame of ordinary glasses worn by the user through the connector 60 and turning on the host device 40 .
  • the smart glasses 100 are not only suitable for users suffering from myopia, hyperopia, astigmatism, etc., but also for users who wear ordinary glasses, that is, the smart glasses 100 can be adapted to users with different vision, which greatly improves the performance of the smart glasses.
  • the host device 40 is small and compact, not only beautiful and lightweight , and it is beneficial to popularize the smart glasses 100 to a large number of people. Let more ordinary consumers experience the convenience brought by AR technology; in addition, when the smart glasses 100 are not needed, the host device 40 can be separated from the empty glasses frame or the glasses frame worn by the user himself. , so that the smart glasses 100 are convenient to be stored and carried around without affecting the use of the user's ordinary glasses, which is convenient to use.
  • the spectacle frame 20 includes a spectacle frame 22 and temples 24 connected to opposite ends of the spectacle frame 22 , that is, the empty spectacle frame or the spectacle frame worn by the user includes the spectacle frame 22 and the temple 24 , no lens is installed on the frame 22 of the empty spectacle frame, and a lens suitable for the user is installed on the spectacle frame worn by the user.
  • the smart glasses 100 include two host devices 40 and two connectors 60 , and the two host devices 40 are detachably connected to the two temples 24 through the corresponding connectors 60 respectively. , and the display device 45 of each host device 40 faces the corresponding mirror frame; that is, each connector 60 is connected between a mirror pin 24 and the corresponding host 42 .
  • FIG. 3 is an enlarged view of one of the host device 40 and the connector 60 in FIG. 2 ;
  • FIG. 4 is a perspective view of the host device 40 and the connector 60 in FIG. 3 from another perspective.
  • the connecting member 60 is clamped to the temple 24 , and the connecting member 60 and the host device 40 are connected by magnetic attraction.
  • the host 42 and the connector 60 are connected by magnetic attraction.
  • the host 42 includes a substantially strip-shaped casing 420, the display device 45 is disposed at one end of the casing 420, and the casing 420 and the display device 45 form an L-shaped structure;
  • the The housing 420 includes an inner side wall 4201 facing the connecting member 60, an outer side wall 4202 facing away from the inner side wall 4201, and an upper side wall 4203 and a lower side wall 4204 on opposite sides of the inner side wall 4201;
  • the The inner side wall 4201, the outer side wall 4202, the upper side wall 4203 and the lower side wall 4204 enclose a receiving space.
  • the connecting member 60 is connected to the inner side wall 4201 by magnetic attraction.
  • the connecting member 60 is provided with a first magnetic body 61
  • the main body 42 is provided with a second magnetic body 423
  • the first magnetic body 61 and the second magnetic body 423 are magnetically connected to each other. suction, so that the host device 40 and the connecting member 60 are detachably connected.
  • the first magnetic body 61 and the second magnetic body 423 may be a pair of magnets, and the poles between the pair of magnets are opposite. In other embodiments, the first magnetic body 61 and the second magnetic body 423 may also be a magnet and a piece of iron.
  • the second magnetic body 423 is disposed on the inner side wall 4201 , and the first magnetic body 61 is disposed on the side of the connecting member 60 facing the inner side wall 4201 .
  • the second magnetic body 423 may be disposed on the inner surface or the outer surface of the inner side wall 4201 .
  • a positioning groove 4205 is formed on the outer surface of the inner side wall 4201 , and the second magnetic body 423 is positioned in the positioning groove 4205 .
  • the second magnetic body 423 is in the shape of a strip, and the positioning groove 4205 extends along the length direction of the inner side wall 423 .
  • the housing 420 is provided with electronic devices such as a main control board 43 and a rechargeable battery 46 electrically connected to the main control board 43 .
  • the main control board 43 is provided with a processor 432 , that is, the main control board 43 Electronic devices such as the rechargeable battery 46 and the like are accommodated in the accommodating space of the casing 420 .
  • the main control board 43 is electrically connected to the display device 45 .
  • the rechargeable battery 46 provides power to the main control board 43 , the processor 432 and the display device 45 .
  • the main control board 43 and the processor 432 The intelligent control of the smart glasses 100 is realized.
  • the host device 40 When the host device 40 is installed on the empty glasses frame or the glasses frame worn by the user through the connector 60 for use, the rechargeable battery 46 provides power, the processor 432 controls, and the display device is used for control. 45 Realize the AR or VR use function of smart glasses.
  • the second magnetic body 423 may also be disposed on the upper side wall 4203 or the lower side wall 4204 .
  • the host device 40 of the smart glasses 100 is provided with a charging connector 462 , the charging connector 462 is electrically connected to the rechargeable battery 46 through the main control board 43 , and the charging connector 462 exposes the outer surface of the housing 420 , The rechargeable battery 46 is charged through the charging connector 462 .
  • the charging connector 462 is disposed at one end of the lower side wall 4204 of the housing 420 away from the display device 45 , and the charging connector 462 is electrically connected to the rechargeable battery 46 through wires.
  • the charging connector 462 may be disposed on the inner side wall 4201 , the outer side wall 4202 , the upper side wall 4203 of the housing 420 or an end wall away from the display device 45 .
  • the connecting member 60 is a rectangular bar, and the connecting member 60 includes two opposite side surfaces 62 , a top side surface 63 , a bottom side surface 64 and opposite end surfaces 65 , and the first magnetic body 61 is disposed on one of the side surfaces 62 . superior.
  • the bottom side 64 of the connecting piece 60 is provided with a snap-fit slot 66 , the snap-fit slot 66 extends along the length of the link piece 60 , and opposite ends of the snap-fit slot 66 pass through the connecting piece 60 . Both end faces 65.
  • the connecting member 60 is clipped to the temple 24 through the clip slot 66 .
  • the connecting member 60 may be made of plastic material, one side surface 62 of the connecting member 60 is provided with a positioning groove, and the first magnetic body 61 is positioned in the positioning groove.
  • the first magnetic body 61 may be omitted, the connecting member 60 is made of iron, and the second magnetic body 423 is a magnet.
  • FIG. 5 is a schematic structural diagram of another connection manner of the connector 60 a and the host device 40 a of the present application.
  • the structures of the connector 60a and the host device 40a are similar to those of the connector 60 and the host device 40 in the first embodiment, the difference is that the connector 60a and the housing 420 of the host 42 They can also be connected by snap connection.
  • the side of the connector 60a facing the housing 420 is provided with a hook 622
  • the inner side wall 4201 of the housing 420 is provided with a clip hole 4206, and the hook 622 can be clipped in the clip hole 4206.
  • the opposite ends of the side of the connecting member 60a facing the housing 420 are provided with hooks 622 respectively, and the inner side wall 4201 of the housing 420 is provided with a hook 4206 corresponding to the hooks 622 .
  • the snap hooks 622 can be snapped into the corresponding snap holes 4206 .
  • the housing 420 is provided with a hook
  • the connector is provided with a hook corresponding to the hook
  • the hook is detachably clipped to the hook.
  • FIG. 6 is a schematic structural diagram of another connection manner of the connector 60b of the present application and the host device 40b.
  • the structures of the connector 60b and the host device 40b are similar to those of the connector 60 and the host device 40 in the first embodiment, the difference is that the connector 60b and the housing 420 of the host 42 They can also be detachably connected through the cooperation of the sliding rail and the sliding groove.
  • the inner side wall 4201 of the housing 420 is provided with a sliding slot 4207, and the sliding slot 4207 extends in a direction perpendicular to the length of the housing 420, and the connector 60b is slidably inserted into the The sliding rails 624 in the sliding grooves 4207 are removed, so that the connecting piece 60b and the housing 420 can be detachably plugged.
  • sliding rails 624 are respectively provided at opposite ends of the side of the connecting piece 60b facing the housing 420 , and sliding grooves 4207 are provided on the inner side wall 4201 of the housing 420 corresponding to the sliding rails 624 .
  • One end of the sliding groove 4207 penetrates through the lower side wall 4204 of the housing 420, and each sliding rail 624 can be inserted into the corresponding sliding groove 4207 from one side of the lower side wall 4204, so that the connecting piece 60b can be connected to the corresponding sliding groove 4207.
  • the housings 420 are removably plugged.
  • the side of the connector facing the housing 420 is provided with a chute, the chute extends perpendicular to the length of the connector, and the inner sidewall 4201 of the housing 420 Corresponding to the sliding slot, a sliding rail is provided, and the sliding rail is slidably inserted into the sliding slot 4207, so that the connecting piece and the housing are detachably inserted.
  • the chute on the housing 420 or the connecting piece 60b may also extend along the length direction of the housing 420 or the connecting piece 60b.
  • FIG. 7 is a partial assembly view of the smart glasses 100 in FIG. 2 .
  • the two connecting pieces 60 are respectively connected to the two temples 24 .
  • Each connecting piece 60 is fixed on the temple 24 , and the first magnetic body 61 of each connecting piece 60 is located outside the spectacle frame 20 .
  • the two magnetic bodies 423 are magnetically connected to the corresponding first magnetic bodies 61 of the connecting member 60 .
  • each host device 40 is fixedly connected to the spectacle frame 20 , and the display device 45 is located on the front side of the spectacle frame 22 .
  • the user can make an appropriate selection according to their own needs. Specifically, if the user's vision is normal, he needs to select a suitable pair of empty glasses frames, and then fix the two connectors 60 respectively.
  • the two host devices 40 are detachably connected to the two connecting members 60 respectively, and the smart glasses 100 can be worn and turned on. If the user wears ordinary glasses, the two connectors 60 need to be fixed on the temples of the ordinary glasses frame respectively, and the two host devices 40 are detachably connected to the two connectors 60 respectively. Then the smart glasses 100 can be worn and turned on; the smart glasses 100 can be adapted to each user with different vision.
  • FIG. 8 is a schematic three-dimensional structural diagram of the smart glasses 100b in the second embodiment of the present application
  • FIG. 9 is a three-dimensional structural schematic diagram of one of the host devices 40b in FIG. 8 from another viewing angle.
  • the structure of the smart glasses 100b in the second embodiment of the present application is similar to that of the first embodiment, except that the connecting member 60c and the host 42 are integrally formed, and the connecting member 60c and the temple 24 can be connected together. Removably connected.
  • the connector 60c is integrally formed with the housing of the host 42 .
  • the connecting member 60c is provided with a clip slot 66, and the temple 24 is detachably clipped into the clip slot 66, so that the host device 40b is detachably connected to the temple 24.
  • the usage method of the smart glasses 100b according to the second embodiment of the present application is the same as that of the first embodiment, and will not be repeated here.
  • FIG. 10 is a schematic three-dimensional structure diagram of the smart glasses 100c in the third embodiment of the present application
  • FIG. 11 is an exploded three-dimensional structure diagram of the smart glasses 100c in FIG. 10
  • FIG. 12 is a 11 is a schematic exploded perspective view of the smart glasses 100c from another perspective.
  • the smart glasses 100c according to the third embodiment of the present application has the glasses frame in the smart glasses 100c in the third embodiment fixedly connected with the connector, and the wires and the connecting pieces are added to the glasses frame.
  • the smart glasses 100c includes a glasses frame 20a and at least one host device 40c
  • the glasses frame 20a includes a frame body 21 and a connecting piece 25, and the glasses frame 20a can be but is not limited to an empty glasses frame , Myopia glasses frames, hyperopia glasses frames or light-proof glasses frames, etc.
  • the frame body 21a includes a mirror frame 210 and two temples 213 connected to opposite ends of the mirror frame 210.
  • Each temple 213 is provided with at least one connecting piece 25, and the connecting piece 25 can be clamped or screwed together. , adhesive bonding or integral molding, etc., are fixed on the temples 213 .
  • Each connector 25 is detachably connected to the host device 40c.
  • the host device 40c includes an AR glasses host, a VR glasses host, an earphone, a flashlight, a speaker or a camera, etc. These host devices 40c can be detachably connected to each connector 25, that is, each connector 25 can be connected separately. Different types of host devices.
  • the host device 40c is an AR glasses host.
  • the host device 40c includes a host 42 and a display device 45 connected to the host 42.
  • the host 42 is detachably connected to the connection 25 , so that the display device 45 is located on the front side of the mirror frame 210 .
  • the empty spectacle frame is suitable for users with normal vision who do not need to wear glasses, and the myopia spectacle frame, hyperopia spectacle frame or light-proof spectacle frame are respectively suitable for myopic, hyperopia or users who need light protection.
  • the smart glasses 100c of the present application need to be used, if the user has normal vision and does not wear glasses, after selecting a suitable empty glasses frame, the user selects a desired host device 40c such as an AR glasses host and a VR glasses host, and then selects the selected host device 40c.
  • the host device 40c is connected to the connecting member 25 so that the display device 45 faces the frame of the empty spectacle frame, and then the host device 40c is turned on for normal use.
  • the user If the user is short-sighted or far-sighted, first configure the lens frame 210 that suits him, and then select the desired host device 40c such as AR glasses host, VR glasses host, etc., and connect the selected host device 40c to the connection component 25, so that the selected host device 40c is connected to the spectacle frame 20a, and the host device 40c can be used normally after turning on the host device 40c. After the host device 40c is used, the host device 40c can be removed from the connector 25 .
  • the desired host device 40c such as AR glasses host, VR glasses host, etc.
  • the smart glasses 100c in this embodiment include a glasses frame 20a and a host device 40c.
  • a connecting member 25 is provided on the temple 213 of the glasses frame 20a, and the host device 40c is detachably connected to the host device 40c through the connecting member 25.
  • the spectacle frame 20a may be an empty spectacle frame or a spectacle frame worn by the user.
  • the host device 40c and the eyeglass frame 20a of the smart glasses 100c in this embodiment are set as two independent parts, and the user can freely combine the host device 40c and the eyeglass frame 20a according to their own needs; for example, if the user himself does not wear glasses In the case where the user connects the host device 40c to the empty glasses frame through the connector 25, and turns on the host device 40c, the smart glasses 100c can be used normally; if the user is short-sighted or far-sighted In other words, the glasses frame 20a needs to be fitted with myopia lenses or hyperopia lenses suitable for the user, and then the host device 40c is connected to the glasses frame 20a through the connector 25, and then the host device 40c is turned on. The smart glasses 100c can be used normally.
  • each connector 25 can be connected to different types of host devices 40c, the user can select different types of host devices such as AR glasses host, VR glasses host, headset, flashlight, speaker or camera as required to connect to the host device through the connector 25.
  • the host device 40c and the freedom of taking off the host device are easy to use; secondly, the host device 40c is detachably mounted on the temple 213 through the connecting member 25, and the host device 40c is small in size and precise in size.
  • the host device 40c is not required At the time, the host device 40c can be separated from the spectacle frame 20a, which will not affect the normal use of the spectacle frame 20a, and is convenient to use.
  • the smart glasses 100c include a host device 40c, the host device 40c can be detachably connected to one of the two connecting members 25, and the display device 45 of the host device 40c It faces the corresponding frame 210 .
  • the smart glasses 100c include two or more host devices 40c, and each connector 25 is respectively detachably connected to the host devices 40c.
  • the smart glasses 100c further include wires 26 disposed in the frame body 21, each connecting member 25 is provided with a first electronic contact 251, and opposite ends of the wires 26 are electrically connected to two of the The first electrical contacts 251 of the connecting pieces 25 on the temples 213 , that is, the first electrical contacts 251 on the two connecting pieces 25 are electrically connected through wires 26 .
  • the host device 400 is provided with a second electrical contact 422 corresponding to the first electrical contact 251. When the host device 40c is connected to the connector 25, the first electrical contact 251 is connected to the first electrical contact 251.
  • the second electrical contacts 422 are in contact and are electrically connected.
  • a wire slot (not shown in the figure) can be opened in the frame body 21, the opposite ends of the wire slot are respectively connected to the connecting piece 25, the wire 26 is accommodated in the wire groove, and the wire 26 The opposite ends are respectively electrically connected to the first electrical contacts 251 of the two connecting members 25 .
  • the frame body 21 is provided with a plurality of wires 26 , and opposite ends of the wires 26 are electrically connected to the first electronic contacts 251 of the two connecting members 25 respectively.
  • the wires 26 may also be embedded in the frame body 21 .
  • the opposite ends of the wires 26 are electrically connected to the first electrical contacts 251 of the two connecting pieces 25 respectively, so that the first electrical contacts 251 of the two connecting pieces 25 are electrically connected to each other.
  • each connecting member 25 is a rectangular strip fixed on the temple 213 , and the connecting member 25 includes an outer side surface 252 , an inner side surface disposed opposite to the outer side surface 252 , a top side surface, a bottom side surface, and an opposite side surface 252 .
  • the connecting piece 25 is provided with a fixing hole, the fixing hole extends along the length direction of the connecting piece 25 , and the opposite ends of the fixing hole respectively pass through the two opposite end faces 254 of the connecting piece 25 .
  • the temples 213 are clamped in the fixing holes.
  • a plurality of the first electrical contacts 251 are provided on the outer side surface 252 of the connecting piece 25 .
  • the first electrical contacts 251 are arranged at intervals along the length direction of the connecting piece 25 .
  • the connecting member 25 can be made of plastic material or rubber material.
  • the connecting member 25 and the host device 40c can be connected by magnetic attraction.
  • the host 42 and the connecting member 25 are connected by magnetic attraction.
  • the connector 25 further includes a first magnetic body 256 disposed on the connector 25 , the host 42 is provided with a second magnetic body 423 , and the first magnetic body 256 is connected to the The second magnetic bodies 423 are magnetically attracted to each other, so that the host device 40 is detachably connected to the connecting member 25 .
  • the first magnetic body 256 and the second magnetic body 423 may be a pair of magnets, and the poles between the pair of magnets are opposite. In other embodiments, the first magnetic body 256 and the second magnetic body 423 may also be a magnet and a piece of iron.
  • the host device 40c is provided with a positioning hole 421 , the connector 25 is detachably clamped to the positioning hole 421 , the first electronic contact 251 is provided on the outer surface of the connector 25 , The second electrical contact 422 is disposed on the inner surface of the positioning hole 421 .
  • the positioning hole 421 is provided on the side of the host 42 facing the display device 45 , and the positioning hole 421 includes a bottom surface 4211 and a side surface 4213 surrounding the bottom surface 4211 .
  • the electrical contacts 422 are arranged on the bottom surface 4211 of the positioning hole 421 ; a plurality of the second electrical contacts 422 are arranged on the outer side surface 252 of the connecting member 25 .
  • the positioning holes 421 are strip-shaped holes, and a plurality of the second electronic contacts 422 are arranged at intervals along the length direction of the positioning holes 421 .
  • the first magnetic body 256 is disposed on the connecting piece 25 near the outer side surface 252 , preferably, the first magnetic bodies 256 are respectively provided at opposite ends of the outer side surface 252 of the connecting piece 25 . ;
  • the second magnetic body 423 is positioned on the inner surface of the positioning hole 421 corresponding to the first magnetic body 256 .
  • the opposite ends of the bottom surface 4211 of the positioning hole 421 are respectively provided with the second magnetic bodies 423 ; when the outer side surface 252 of the connecting member 25 is snapped into the positioning hole 421
  • the first magnetic body 256 and the corresponding second magnetic body 423 are magnetically attracted to each other, so that the host device 40c is detachably positioned on the connecting member 25 .
  • the first magnetic body 256 may also be disposed near the top side and/or the bottom side of the connector 25 , and the second magnetic body 423 corresponds to the first magnetic body
  • the body 256 is provided at the side surface 4213 of the positioning hole 421 .
  • a plurality of the first electrical contacts 251 are arranged on the top side and/or the bottom side of the connecting member 25
  • a plurality of the second electrical contacts 422 are arranged on the positioning holes 421 of the host 42 .
  • the host 42 includes a substantially strip-shaped casing, the display device 45 is disposed at one end of the casing, and the casing and the display device 45 form an L-shaped structure.
  • the housing includes an inner sidewall 4214 facing the connecting piece 25, an outer sidewall 4215 facing away from the inner sidewall 4214, and an upper sidewall 4216 and a lower sidewall 4217 located on opposite sides of the inner sidewall 4214;
  • the inner side wall 4214, the outer side wall 4215, the upper side wall 4216 and the lower side wall 4217 enclose a receiving space.
  • the positioning hole 421 is formed on the outer surface of the inner side wall 4214
  • the second magnetic body 423 is positioned on the bottom surface 4211 of the positioning hole 421 .
  • the host device 40c may also have a rectangular structure, an arc-shaped structure, or the like.
  • a main control board 43 and electronic devices such as a rechargeable battery 46 electrically connected to the main control board 43 are arranged in the housing of the host 42 .
  • the main control board 43 is provided with a processor 432 , that is, the main control board.
  • Electronic devices such as 43 and rechargeable battery 46 are accommodated in the accommodating space of the casing.
  • the main control board 43 is electrically connected to the display device 45 and the second electronic contact 422 .
  • the rechargeable battery 46 provides power for the main control board 43 , the processor 432 and the display device 45 .
  • the control board 43 and the processor 432 realize intelligent control of the smart glasses 100c. When the host device 40c is installed on the glasses frame 20a through the connector 25 for use, the rechargeable battery 46 provides power, the processor 432 controls, and the display device 45 realizes the smart glasses Use function.
  • the host device 40c is provided with a charging connector 462, the charging connector 462 is electrically connected to the rechargeable battery 46 through the main control board 43, the charging connector 462 is exposed on the outer surface of the host 42, and the charging connector 462 is exposed through the charging connector. 462 charges the rechargeable battery 46 .
  • the charging connector 462 is disposed at an end of the upper side wall 4216 of the housing 421 away from the display device 45 , and the charging connector 462 is electrically connected to the rechargeable battery 46 through wires.
  • the charging connector 462 may be disposed on the inner side wall 4214 , the outer side wall 4215 , the lower side wall 4217 of the housing 421 or an end wall away from the display device 45 .
  • the first magnetic body 256 may be omitted, the connecting member 25 is made of iron, and the second magnetic body 423 is a magnet.
  • the user can make an appropriate selection according to his own needs. Specifically, if the user's vision is normal, he needs to select a suitable pair of glasses frames 210 first. , and the required host device 40c is detachably connected to the connector 25, and the user can wear the smart glasses 100c and turn on the host device 40c. If the user needs to wear myopia glasses, hyperopia glasses or light-proof glasses, etc., the user first assembles suitable myopia lenses, hyperopia lenses or light-proof glasses on the spectacle frame 210, and folds the required host device 40c.
  • the smart glasses 100c are detachably connected to the connector 25, and then the smart glasses 100c are put on and the host device 40c is turned on; the smart glasses 100c can be adapted to users with different eyesight and are easy to use.
  • the host device 40c can be removed from the connector 25, and the glasses frame 20a can continue to be used, and the operation is simple and convenient.
  • FIG. 14 to FIG. 16 another embodiment of the smart glasses 100c of the present application, when the user needs to use two different types of host devices 40c on the glasses frame 20a, such as two different types of hosts
  • One of the devices 40c may be an AR glasses host, and the other may be an earphone; the user can make an appropriate selection according to his own needs.
  • the two selected host devices 40c are respectively detachably connected to the two connecting members 25, so that the plurality of the second electrical contacts 422 of each host device 40c respectively contact the corresponding plurality of the first electrical contacts.
  • Point 251 is electrically connected, and the user can wear the smart glasses 100 and turn on the host device 40c.
  • the user If the user needs to wear myopia glasses, hyperopia glasses or light-proof glasses, the user first installs appropriate myopia lenses, hyperopia lenses or light-proof glasses on the spectacle frame 210, and then the two required host devices 40c can be respectively It is detachable and connected to the two connecting pieces 25, and then the smart glasses 100c can be put on and the host device 40c can be turned on; the smart glasses 100 can be adapted to users with different eyesight and are easy to use.
  • the host device 40c is removed from the connector 25, and the glasses frame 20a can be used continuously, with simple operation and convenient use.
  • each host device 40c since the second electrical contact 422 of each host device 40c is electrically connected to the corresponding first electrical contact 251, the two host devices 40c are electrically connected through the wire 26, so that the two The host devices 40c can communicate and share battery energy; specifically, information such as audio signals, video signals, sensor signals, processor signals, and stored data can be transmitted between the two host devices 40c to improve user experience;
  • the sharing of battery power means that the battery of one host device 40c can provide power to the other host device 40c.
  • FIG. 17 is a schematic three-dimensional structural diagram of the smart glasses according to the fourth embodiment of the present application.
  • the structure of the smart glasses 100d in the fourth embodiment of the present application is similar to the structure of the smart glasses 100c in the third embodiment, the difference is that the smart glasses 100d in the fourth embodiment is the same as the smart glasses in the third embodiment.
  • a chip 30 is added, the chip 30 is arranged in the spectacle frame 20a, and the chip 30 is electrically connected to the wire 26, that is, the chip 30 is electrically connected to the two wires through the wire 26.
  • the first electronic contact 251 of the connector 25, the chip 30 is an encryption chip, and the encryption chip has an encryption function to prevent pirated mirror frames.
  • the chip 30 is also used to manage the communication between the host devices 40c on the two temples 213 and the coordination between the power supplies. Specifically, the chip 30 controls the power sharing of the host devices 40c on the two mirror pins 213. When the power of one of the host devices 40c is insufficient, the chip 30 controls the power of the other host device 40c to supply the power to the host device 40c. One of the host devices 40c supplies power; if only one of the two host devices 40c on the temples 213 is working, the chip 30 can control the power of the host device 40c that is not working to supply power to one of the host devices 40c. The host device 40c supplies power. When both the host devices 40c on the two temples 213 are working, the chip 30 can control the audio signal, video signal, sensor signal, processor signal, stored data and other information between the two host devices 40c. passed for user convenience.
  • FIG. 18 is a schematic three-dimensional structural diagram of a part of the host device 40d and the connector 25a of the smart glasses according to the fifth embodiment of the present application;
  • FIG. 19 is the host device 40d and the connection in FIG. 18 .
  • the structure of the smart glasses in the fifth embodiment of the present application is similar to the structure of the smart glasses 100c in the third embodiment, and the difference lies in the connection between the connector 25a of the smart glasses in the third embodiment and the host device 40d Slightly different from the first embodiment, the connector 25a omits the first magnetic body 256 on the basis of the connector 25 in the first embodiment, and the host device 40d is the host device in the third embodiment On the basis of 40c, the second magnetic body 423 is omitted, the connecting member 25a is provided with at least one positioning portion 426 on the inner surface of the positioning hole 421, and the outer surface of the connecting member 25a is provided with at least one corresponding The positioning groove 257 of the positioning portion 426; when the connecting piece 25a is snapped into the positioning hole 421, the positioning portion 426 is snapped into the positioning slot 257 to prevent the connecting piece 25a from leaving the positioning hole 421.
  • the host device 40d is provided with one positioning portion 426 on two opposite inner sides of the positioning hole 421, and each positioning portion 426 is an elastic positioning strip; the upper side of the connecting member 25a and the The lower side is respectively provided with the positioning grooves 257; when the connecting piece 25a is snapped into the positioning hole 421, the two positioning bars are snapped into the two positioning slots 257 respectively, so that the connecting piece The connection between 25a and the host device 40a is firmer.
  • each positioning portion 426 includes a guide sliding surface 4261 facing the opening of the positioning hole 421 and a stop surface 4263 facing away from the opening of the positioning hole 421 . The connecting member 25 a is snapped into the positioning hole.
  • the connecting piece 25a slides against the sliding surface 4261, so that each positioning portion 426 elastically deforms until each positioning portion 426 is facing the corresponding positioning groove 257, the positioning portion 426 elastically resets and locks into the positioning groove 257 , so that the stop surface 4263 of the positioning portion 426 is stopped against the inner surface of the positioning groove 257 , so as to prevent the connecting piece 25 a from disengaging from the positioning hole 421 .
  • the connector 25a When assembling the host device 40d to the connector 25a, the connector 25a is directly inserted into the positioning hole 421 of the host device 40d until the two positioning portions 426 are respectively locked into the two positioning slots 257 In the process, the connector 25a is fixedly connected to the host device 40d; at this time, a plurality of first electronic contacts 251 of the connector 25a respectively contact a plurality of second electronic contacts 422 of the host device 40d, so as to electrically connected to each other.
  • the connecting piece 25a can be separated from the positioning hole 421; therefore, the assembly or disassembly of the host device 40d and the connecting piece 25a is simple and easy to use.
  • the positioning portion 426 may also be, but not limited to, a circular protrusion, a spring bead, and the like, and the positioning groove 257 may be, but not limited to, a circular hole.
  • the host device 40d is provided with at least one positioning groove on the inner surface of the positioning hole 421, and the outer surface of the connecting member 25a is provided with a positioning portion corresponding to at least one of the positioning grooves; when the connecting member When the 25a is inserted into the positioning hole 421, the positioning portion is snapped into the positioning groove, so that the connecting member 25a and the host device 40d are positioned relative to each other.
  • the host device 40d is provided with two opposite positioning grooves on the inner peripheral surface of the positioning hole 421, and the outer peripheral surface of the connecting member 25a corresponds to the two positioning portions of the two positioning grooves; when When the connecting member 25a is clamped to the positioning hole 421 of the host device 40d, the two positioning portions are respectively clamped to the two positioning grooves, so that the connecting member 25a is opposite to the host device 40d position.
  • FIG. 20 is a schematic three-dimensional structural diagram of a part of the host device 40e and the connector 25b of the smart glasses in the sixth embodiment of the present application; the structure of the smart glasses in the sixth embodiment of the present application is the same as that of the third embodiment.
  • the structure of the smart glasses 100c of the example is similar, the difference is that the connection between the connecting member 25b of the smart glasses and the host device 40e in the sixth embodiment is slightly different from that of the third embodiment, and the connecting member 25b is the same as that of the third embodiment.
  • the host device 40e is also connected through the matching connection between the positioning slot and the positioning part;
  • the positioning grooves 257 are respectively provided on the upper and lower sides of the 25b; when the connector 25b is snapped into the positioning holes 421, each first magnetic body 256 is magnetically attracted to the corresponding second magnetic body 423 , the two positioning portions 426 are respectively snapped into the two positioning grooves 257 , so that the connection between the connecting member 25 a and the host device 40 e is firmer, so as to prevent the connecting member 25 b from disengaging from the positioning holes 421 .
  • the plurality of first electrical contacts 251 of the connector 25b respectively contact the plurality of the second electrical contacts 422 of the corresponding host device 40e.
  • the host device 40e is provided with at least one positioning groove on the inner surface of the positioning hole 421, and the outer surface of the connecting member 25b is provided with a positioning portion corresponding to at least one of the positioning grooves; when the connecting member When the 25b is inserted into the positioning hole 421, the positioning portion is snapped into the positioning groove, so that the connecting member 25b and the host device 40e are positioned relative to each other.
  • the host device 40e is provided with two opposite positioning grooves on the inner peripheral surface of the positioning hole 421, and the outer peripheral surface of the connecting member 25b corresponds to the two positioning portions of the two positioning grooves; when When the connecting piece 25b is snapped into the positioning hole 421 of the host device 40e, the two positioning portions are snapped into the two positioning grooves respectively, so that the connecting piece 25b is opposite to the host device 40e Positioning; at this time, a plurality of the first electrical contacts 251 of the connector 25b respectively contact a plurality of the second electrical contacts 422 of the corresponding host device 40e.
  • FIG. 21 is a schematic three-dimensional structure diagram of a part of the attachment 40f and the connecting piece 25c of the smart glasses in the seventh embodiment of the present application; the structure of the smart glasses in the seventh embodiment of the present application is the same as that of the third embodiment.
  • the structure of the smart glasses 100c is similar to that of the third embodiment, the difference is that the connection between the connecting member 25c of the smart glasses and the host device 40f in the seventh embodiment is slightly different from that in the third embodiment.
  • the connecting piece 25c of the 250 is provided with a blocking block 258, the host device 40f is provided with a blocking hole 428 corresponding to the blocking block 258, the first electronic contact 251 is provided on the outer surface of the blocking block 258, and the first electronic contact 251 is provided on the outer surface of the blocking block 258.
  • Two electronic contacts 422 are disposed on the inner surface of the locking hole 428, and the locking block 258 is locked in the locking hole 428, so that the host device 40f is connected to the connecting member 25c; at this time, the The plurality of first electrical contacts 251 of the connector 25c respectively contact the plurality of second electrical contacts 422 of the host device 40f to be electrically connected to each other.
  • the block 258 is provided with at least one first magnetic body 256
  • the host device 40f is provided with a second magnetic body 423 corresponding to the first magnetic body 256 .
  • the first magnetic body 256 and the second magnetic body 423 are magnetically attracted to each other, so that the positioning of the host device 40f and the connecting member 25c is more stable.
  • the opposite ends of the locking block 258 are respectively provided with first magnetic bodies 256
  • the bottom surface of the locking hole 428 is provided with two second magnetic bodies corresponding to the two first magnetic members 256 . 423.
  • FIG. 22 is a schematic three-dimensional structure diagram of a part of the host device 40h and the connector 25d of the smart glasses in the eighth embodiment of the present application; the structure of the smart glasses in the eighth embodiment of the present application is the same as that of the seventh embodiment.
  • the structure of the smart glasses of the example is similar, the difference is that: the connector 25d is provided with a card hole 253, the host device 40h is provided with a card block 425 corresponding to the card hole 253, the first electronic contact 251
  • the second electrical contact 422 is disposed on the inner surface of the card hole 253, and the second electronic contact 422 is disposed on the outer surface of the card block 425.
  • the card block 425 is clamped to the card hole 253, so that the host device 40d is connected to the connecting piece 25d.
  • the host device 40h is provided with at least one first magnetic body 256 on the inner surface of the clamping hole 253
  • the clamping block 425 is provided with at least one second magnetic body 423 corresponding to at least one of the first magnetic bodies 423 .
  • the magnetic attraction body 423 when the clamping block 425 is clamped in the clamping hole 253, the first magnetic attraction body 256 and the second magnetic attraction body 423 are magnetically attracted to each other, so that the host device 40h and the The positioning of the connecting piece 25d is more stable.
  • the opposite ends of the blocking block 425 are respectively provided with second magnetic bodies 423
  • the bottom surface of the clamping hole 253 is provided with two first magnetic pieces corresponding to the two second magnetic bodies 423 . 256.
  • FIG. 23 is a schematic three-dimensional structure diagram of a part of the host device 40j and the connector 25e of the smart glasses according to the ninth embodiment of the present application
  • FIG. 24 is the host device 40j in FIG. 23 and the connection The sectional view after assembly of the component 25e;
  • the structure of the smart glasses in the ninth embodiment of the present application is similar to the structure of the smart glasses in the seventh embodiment, the difference is: the connector 25e of the smart glasses in the ninth embodiment is the same as
  • the connection method of the host device 40j is slightly different from the seventh embodiment.
  • the inner surface of the clamping hole 428 of the host device 40j is provided with at least one positioning portion 426, and the outer surface of the clamping block 258 of the connecting member 25e is provided with a corresponding At least one positioning slot 2582 of the positioning portion 426; when the locking block 258 is snapped into the locking hole 428, the positioning portion 426 is snapped into the positioning slot 2582 to prevent the connecting piece 25e from disengaging the card hole 428.
  • the host device 40j is provided with one positioning portion 426 on two opposite inner sides of the locking hole 428, and each positioning portion 426 is an elastic positioning strip; the upper side of the locking block 258 and The lower side is respectively provided with the positioning grooves 2852; when the locking block 258 is snapped into the locking hole 428, the two positioning bars are snapped into the two positioning slots 2852 respectively, so that the connecting piece The connection between 25e and the host device 40j is firmer, so as to prevent the connecting piece 25e from disengaging from the locking hole 428 .
  • the connector 25e When assembling the host device 40j to the connector 25e, directly snap the locking block 258 into the locking hole 428 of the host device 40j until the two positioning portions 426 are respectively locked into the two positioning grooves 2852
  • the connector 25e is fixedly connected to the host device 40j; at this time, a plurality of first electronic contacts 251 of the connector 25e respectively contact a plurality of second electronic contacts 422 of the host device 40j, so as to electrically connected to each other.
  • the host device 40j is removed from the connector 25e, the host device 40j is pulled to the side away from the connector 25e, so that the two positioning portions 426 are separated from the two positioning grooves 2582, respectively.
  • the connecting piece 25e can be separated from the locking hole 428; therefore, the assembling or disassembling operation of the host device 40j and the connecting piece 25e is simple and easy to use.
  • the host device 40j is provided with at least one positioning groove on the inner surface of the locking hole 428, and the outer surface of the connecting member 25e is provided with a positioning portion corresponding to the at least one positioning groove; When the 258 is inserted into the locking hole 428, the positioning portion is locked in the positioning groove, so that the connecting member 25a and the host device 40j are positioned relative to each other.
  • the host device 40j is provided with two opposite positioning grooves on the inner peripheral surface of the clamping hole 428, and the outer peripheral surface of the connecting member 25e corresponds to the two positioning portions of the two positioning grooves; when When the clamping block 258 is clamped to the positioning hole 421 of the host device 40j, the two positioning portions are respectively clamped to the two positioning grooves, so that the connecting member 25e is opposite to the host device 40e position.
  • FIG. 25 is a schematic three-dimensional structure diagram of a part of the host device 40k and the connector 25h of the smart glasses according to the tenth embodiment of the present application
  • FIG. 26 is the host device 40k and the connection in FIG. 25 .
  • Section 25h after assembly The structure of the smart glasses in the tenth embodiment of the present application is similar to the structure of the smart glasses 100c in the third embodiment, except that the connection structure between the connector 25h and the host device 40k in the tenth embodiment is the same as that of the smart glasses 100c of the third embodiment.
  • the connection structure between the connector 25 and the host device 40c in the third embodiment is different.
  • the connecting member 25h and the host device 40k are connected through the cooperation between the sliding rail 259 and the guiding rail 401, and the sliding rail 259 and the guiding rail 104 are one of the two One is provided on the connecting piece 25h, and the other one of the slide rail 259 and the guide slide rail 401 is set on the host device 40k.
  • the The first electrical contacts 251 are electrically connected to the second electrical contacts 422 , that is, a plurality of the first electrical contacts 251 are respectively in contact with a plurality of the second electrical contacts 422 to achieve electrical connection.
  • the guide rail 401 is provided on the inner side wall 4214 of the host device 40k, and the slide rail 259 is provided on the outer side 252 of the connecting member 25h.
  • the guide rail 401 has a guide groove 403 extending along its length direction, and the slide rail 259 includes a rail body 2593 slidably inserted into the guide groove 403 .
  • the inner side wall 4214 of the host device 40k is provided with two guide rails 401 that are spaced apart and parallel, and the space between the two guide rails 401 is used to accommodate the slide rails 259 .
  • the rail bodies 2593 are respectively protruded from opposite sides of the slide rail 259 , the two rail bodies 2593 are parallel to each other, and each rail body 2593 extends along the length direction of the guide groove 403 .
  • a plurality of the first electrical contacts 251 are arranged on the side of the slide rail 259 away from the outer side surface 252, and are located between the two rail bodies 2593; a plurality of the second electrical contacts 422 are arranged on the The inner side wall 4214 is between the two guide rails 401 .
  • the two rails 2593 face the two guide grooves 403 respectively, and are opposite to each other.
  • the two rails 2593 can be slidably inserted into the two guide grooves 403 respectively.
  • a plurality of the first electrical contacts 251 are in contact with a plurality of the second electrical contacts 422 respectively, so that each of the first electrical contacts 251 is electrically connected to the corresponding second electrical contact 422 .
  • the host device 40k When the host device 40k is removed from the connector 25h, the host device 40k is moved relative to the connector 25h, and the host device 40k slides relative to the connector 25h until the rail body 2593 is disengaged from the corresponding The guide groove 403 is sufficient; therefore, the assembly or disassembly of the host device 40k and the connector 25h is simple and easy to use.

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  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
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Abstract

一种智能眼镜(100),包括眼镜架(20)、至少一主机装置(40),以及连接件(60),眼镜架(20)为空眼镜架或用户自身佩戴的眼镜架;主机装置(40)包括主机(42)及连接于主机(42)的显示装置(45);至少一主机装置(40)通过连接件(60)可拆卸地连接于空眼镜架或用户自身佩戴的眼镜架。用户可以根据自身的需要对主机装置(40)与眼镜架(20)进行自由组合,通用性较强,大大提升了安装使用主机装置(40)及摘下主机装置(40)的自由度,操作简单,使用方便。还提供一种眼镜架(20)。

Description

眼镜架及智能眼镜
本申请主张申请日为2020年12月25日、申请号为202023205668.X、名称为“智能眼镜及其充电装置”的实用新型专利申请的优先权和申请日为2021年04月25日、申请号为202110451063.9、名称为“眼镜架及智能眼镜”的发明专利申请的优先权。
技术领域
本申请涉及智能穿戴领域,尤其涉及一种眼镜架及设有所述眼镜架的智能眼镜。
背景技术
现有AR智能眼镜一般包括眼镜架、固定连接于所述眼镜架的显示装置,以及主机,所述主机内设置有电池、处理芯片等硬件,所述显示装置包括显示屏、摄像头等。其中一类AR智能眼镜将主机与所述眼镜架分离并通过数据线连接,此类AR智能眼镜运算能力强大,AR效果好;另一类AR智能眼镜将显示装置和主机一并固定连接于所述眼镜架上,此类AR智能眼镜方便携带。
然而,AR眼镜对于患有近视眼、远视眼或散光等的用户而言不友好,使用不方便。
发明内容
本申请的目的在于提供一种能适配视力不同的各用户的智能眼镜及所述智能眼镜的眼镜架。
为了解决上述技术问题,本申请提供了一种智能眼镜,用于给用户佩戴,所述智能眼镜包括眼镜架、至少一主机装置及连接件,所述眼镜架为空眼镜架或用户自身佩戴的眼镜架;所述主机装置包括主机及连接于所述主机的显示装置;至少一所述主机装置通过所述连接件可拆卸地连接于所述空眼镜架或用户自身佩戴的眼镜架。
本申请还提供一种眼镜架,用于支撑主机装置,所述眼镜架包括架体及连接件,所述架体包括两个镜脚,每一镜脚上至少设有一个所述连接件,每一连接件可拆卸地连接于一个所述主机装置。
本申请还提供一种智能眼镜,包括眼镜架及至少一主机装置,所述眼镜架包括架体及至少一连接件,所述架体包括两个镜脚,至少一镜脚上设有所述连接件;所述主机装置可拆卸地连接所述连接件。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的明显变形方式。
图1是本申请的第一实施例中的智能眼镜的立体结构示意图;
图2是图1中的智能眼镜的立体结构分解示意图;
图3是图2中的其中一主机装置与连接件的放大图;
图4是图3中的主机装置与连接件的另一视角的立体结构示意图;
图5是本申请的连接件与主机装置的另一连接方式的结构示意图;
图6是本申请的连接件与主机装置的又一连接方式的结构示意图;
图7是图2中的智能眼镜的部分组装图;
图8是本申请的第二实施例中的智能眼镜的立体结构分解示意图;
图9是图8中的其中一主机装置的另一视角的立体结构示意图;
图10是本申请的第三实施例中的智能眼镜的立体结构示意图;
图11是图10中的智能眼镜的立体结构分解示意图;
图12是图11中的智能眼镜另一视角的立体分解示意图;
图13是图12中的智能眼镜的立体组装图;
图14是本申请的第三实施例中的智能眼镜的另一使用状态立体图;
图15是图14中的智能眼镜的立体分解示意图;
图16是图15中的智能眼镜的另一视角的立体结构示意图;
图17是本申请的第四实施例中的智能眼镜的立体结构示意图;
图18是本申请的第五实施例中的智能眼镜的部分主机装置与连接件的立体结构示意图;
图19是图18中的主机装置与连接件组装后的剖视图;
图20是本申请的第六实施例中的智能眼镜的部分主机装置与连接件的立体结构示意图;
图21是本申请的第七实施例中的智能眼镜的部分主机装置与连接件的立体结构示意图;
图22是本申请的第八实施例中的智能眼镜的部分主机装置与连接件的立体结构示意图;
图23是本申请的第九实施例中的智能眼镜的部分主机装置与连接件的立体结构示意图;
图24是图23中的主机装置与连接件组装后的剖视图;
图25是本申请的第十实施例中的智能眼镜的部分主机装置与连接件的立体结构示意图;
图26是图25中的主机装置与连接件组装后的剖视图。
具体实施方式
一种智能眼镜,用于给用户佩戴,所述智能眼镜包括眼镜架、至少一主机装置,以及连接件,所述眼镜架为空眼镜架或用户自身佩戴的眼镜架;所述主机装置包括主机及连接于所述主机的显示装置;至少一所述主机装置通过所述连接件可拆卸地连接于所述空眼镜架或用户自身佩戴的眼镜架。
所述空眼镜架或用户自身佩戴的眼镜架均包括镜脚,所述连接件连接于所述镜脚与所述主机之间。
所述连接件卡接于所述镜脚,所述连接件与所述主机之间通过磁吸连接。
所述连接件上设置有第一磁吸体,所述主机上设有第二磁吸体,所述第一磁吸体与所述第二磁吸体之间相互磁吸。
所述连接件与所述主机为一体结构,所述连接件与所述镜脚可拆卸地连接。
所述连接件设有卡接槽,所述镜脚可拆卸地卡接于所述卡接槽。
所述连接件与所述主机之间还可以通过卡接的方式连接。
所述连接件与所述主机之间还可以通过滑轨与滑槽的配合可拆卸地连接。
一种眼镜架,用于支撑主机装置,所述眼镜架包括架体及连接件,所述架体包括两个镜脚,每一镜脚上至少设有一个所述连接件,每一连接件可拆卸地连接于一个所述主机装置。
所述眼镜架还包括设于所述架体内的导线,每一连接件上设有第一电子触点,所述导线相对的两端分别电连接于两个所述镜脚上连接件的第一电子触点,所述主机装置设有对应所述第一电子触点的第二电子触点,当所述主机装置连接于所述连接件时,所述第一电子触点电连接于所述第二电子触点。
所述连接件设有第一磁吸件,所述主机装置设有对应所述第一磁吸件的第二磁吸件,所述第一磁吸件与所述第二磁吸件的相互磁吸使所述连接件与所述主机装置可拆卸地连接。
所述主机装置设有定位孔,所述连接件可拆卸地卡接于所述定位孔,所述第一电子触点设于所述连接件的外表面,所述第二电子触点设于所述定位孔的内表面。
所述主机装置在所述定位孔的内表面设有至少一定位部,所述连接件的外表面设有对应至少一所述定位部的定位槽;或者所述主机装置于所述定位孔的内表面设有至少一定位槽,所述连接件的外表面设有对应至少一所述定位槽的定位部;所述主机装置连接于所述连接件时,所述定位部卡接于所述定位槽。
所述连接件的外侧面设有第一磁吸体,所述定位孔的内表面设有第二磁吸体,所述连接件卡入所述定位孔后,所述第一磁吸体与所述第二磁吸体相互磁吸。
所述连接件设有卡块,所述主机装置设有对应所述卡块的卡孔,所述第一电子触点设于所述卡块,所述第二电子触点设于所述卡孔的内表面,所述卡块卡接于所述卡孔,以使所述主机装置连接于所述连接件,所述第一电子触点电连接于所述第二电子触点。
所述连接件设有卡孔,所述主机装置设有对应所述卡孔的卡块,所述第一电子触点设于所述卡孔的内表面,所述第二电子触点设于所述卡块,所述卡块卡接于所述卡孔,以使所述主机装置连接于所述连 接件,所述第一电子触点电连接于所述第二电子触点。
所述连接件设有第一磁吸体,所述主机装置设有对应所述第一磁吸体的第二磁吸体,所述卡块卡入所述卡孔后,所述第一磁吸体与所述第二磁吸体相互磁吸。
所述连接件与所述主机装置之间通过滑轨与导滑轨的配合连接,所述滑轨和导滑轨两者其中之一设于所述连接件,所述滑轨和导滑轨两者另外之一设于所述主机装置,所述滑轨与所述导滑轨连接到位后,所述第一电子触点电连接于所述第二电子触点。
所述眼镜架还包括芯片,所述芯片电连接于所述导线,所述芯片具有加密功能。
所述芯片还用于对两个所述镜脚上的主机装置之间的通信和电源进行配合。
一种智能眼镜,所述智能眼镜包括眼镜架及至少一主机装置,所述眼镜架包括架体及至少一连接件,所述架体包括两个镜脚,至少一镜脚上设有所述连接件;所述主机装置可拆卸地连接所述连接件。
所述主机装置包括AR眼镜主机、VR眼镜主机、耳机、手电筒、扬声器或摄像头。
下面将结合本申请实施例中的附图,对本申请实施例中的技术方案进行清楚、完整地描述,显然,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付出创造性劳动前提下所获得的所有其他实施例,都属于本申请保护的范围。
此外,以下各实施方式的说明是参考附加的图示,用以例示本申请可用以实施的特定实施方式。本申请中所提到的方向用语,例如,“上”、“下”、“前”、“后”、“左”、“右”、“内”、“外”、“侧面”等,仅是参考附加图式的方向,因此,使用的方向用语是为了更好、更清楚地说明及理解本申请,而不是指示或暗指所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本申请的限制。
在本申请的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”、“设置在……上”应做广义理解,例如,可以是固定连接,也可以是可拆卸地连接,或者一体地连接;可以是机械连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本申请中的具体含义。
请一并参阅图1及图2,图1是本申请的第一实施例中的智能眼镜100的立体结构示意图;图2是图1中的智能眼镜100的立体结构分解示意图。本申请的第一实施例的智能眼镜100,用于给用户佩戴,所述智能眼镜100包括眼镜架20、至少一主机装置40及连接件60,所述眼镜架20为空眼镜架或用户自身佩戴的眼镜架。所述主机装置40包括主机42及连接于所述主机42的显示装置45。所述主机装置40通过所述连接件60可拆卸地连接于所述空眼镜架或用户自身佩戴的眼镜架,使所述显示装置45位于所述空眼镜架或用户自身佩戴的眼镜架的镜框的前侧。所述空眼镜架适合视力正常无需佩带眼镜的用户,所述用户自身佩戴的眼镜架就是用户自己平时佩戴的普通眼镜如近视眼镜、远视眼镜或老花眼镜等的眼镜架。
当需要使用本申请的智能眼镜100时,若用户的视力正常且没有佩戴眼镜,用户选择合适的空眼镜架后,先将所述主机装置40通过所述连接件60连接于所述空眼镜架,使所述显示装置45正对所述空眼镜架的镜框,再开启所述主机装置40即可正常使用。若用户自己已经佩戴了普通眼镜,先将所述主机装置40通过所述连接件60连接于用户自己佩戴的普通眼镜的眼镜架上,使所述显示装置45正对用户自己佩戴的普通眼镜的镜片,再开启所述主机装置40即可正常使用。
本实施例中,所述智能眼镜100可以是但不限于AR眼镜、VR眼镜等。
本申请的智能眼镜100包括主机装置40及连接件60,所述主机装置40通过所述连接件60可拆卸地连接于所述空眼镜架或用户自身佩戴的眼镜架。具体地,本申请智能眼镜100的主机装置40与眼镜架设置成两个独立部分,用户可以根据自身的需要对所述主机装置40与眼镜架进行自由组合;如在用户自身没有佩戴眼镜的情况下,用户将所述主机装置40通过所述连接件60连接于所述空眼镜架上,并开启所述主机装置40即可正常使用所述智能眼镜100;如在用户自身佩戴了普通眼镜的情况下,用户将所述主机装置40通过所述连接件60连接于用户身佩戴的普通眼镜的眼镜架上,并开启所述主机装置40即可正常使用所述智能眼镜100。因此,所述智能眼镜100既适合患有近视眼、远视眼或散光等的用户, 又适合自身佩戴了普通眼镜的用户,即所述智能眼镜100能适配视力不同的各用户,大大提升了安装使用所述主机装置40及摘下所述主机装置的自由度;其次,在眼镜架上可拆卸地安装所述主机装置40,所述主机装置40的体积小且精筒,不仅美观、轻便,且有利于所述智能眼镜100普及给大量人群。让更多普通消费者体验到AR技术给自己带来的便利;另外,在不需使用所述智能眼镜100时,可以将所述主机装置40与空眼镜架或用户自身佩戴的眼镜架上分离,从而方便所述智能眼镜100的收纳并便于随身携带,且不影响用户的普通眼镜的使用,方便使用。
如图2所示,所述眼镜架20包括镜框22及连接于所述镜框22相对两端的镜脚24,也就是所述空眼镜架或用户自身佩戴的眼镜架均包括镜框22及镜脚24,所述空眼镜架的镜框22上没有安装镜片,用户自身佩戴的眼镜架上安装有适合用户的镜片。本实施例中,所述智能眼镜100包括两个主机装置40及两个连接件60,两个所述主机装置40分别通过对应的连接件60可拆卸地连接于两个所述镜脚24上,且每一主机装置40的显示装置45正对相应的镜框;即每一连接件60连接于一个镜脚24与对应的主机42之间。
请一并参阅图3及图4,图3是图2中的其中一主机装置40与连接件60的放大图;图4是图3中的主机装置40与连接件60的另一视角的立体结构示意图。本实施例中,所述连接件60卡接于所述镜脚24,所述连接件60与所述主机装置40之间通过磁吸连接。优选地,所述主机42与所述连接件60之间通过磁吸连接。具体地,所述主机42包括概呈条形的壳体420,所述显示装置45设于所述壳体420的一端,所述壳体420与所述显示装置45构成L形结构;所述壳体420包括面朝所述连接件60的内侧壁4201,背离所述内侧壁4201的外侧壁4202,以及位于所述内侧壁4201相对两侧的上侧壁4203及下侧壁4204;所述内侧壁4201、外侧壁4202、上侧壁4203及下侧壁4204围成收容空间。本实施例中,所述连接件60通过磁吸连接于所述内侧壁4201。
所述连接件60上设置有第一磁吸体61,所述主机42上设有第二磁吸体423,所述第一磁吸体61与所述第二磁吸体423之间相互磁吸,使得所述主机装置40与所述连接件60可拆卸地连接。所述第一磁吸体61及所述第二磁吸体423可以是一对磁铁,所述一对磁铁之间的极向相反。在其他实施例中,所述第一磁吸体61及所述第二磁吸体423也可以是一块磁铁和一块铁片。
所述第二磁吸体423设置于所述内侧壁4201,所述第一磁吸体61设置于所述连接件60面朝所述内侧壁4201的一侧。所述第二磁吸体423可以设置于所述内侧壁4201的内表面或外表面。本实施例中,所述内侧壁4201的外表面设有定位槽4205,所述第二磁吸体423定位于所述定位槽4205内。优选地,所述第二磁吸体423为条形片状,所述定位槽4205沿所述内侧壁423的长度方向延伸。
所述壳体420内设置有主控板43及电连接于所述主控板43的充电电池46等电子器件,所述主控板43上设有处理器432,即所述主控板43及充电电池46等电子器件收容于所述壳体420的收容空间内。所述主控板43电连接于所述显示装置45,所述充电电池46给所述主控板43、处理器432及显示装置45提供电量,所述主控板43及所述处理器432实现对所述智能眼镜100的智能控制。当所述主机装置40通过所述连接件60安装至空眼镜架或用户自身佩戴的眼镜架上使用时,所述充电电池46提供电量,所述处理器432进行控制,并通过所述显示装置45实现智能眼镜的AR或VR使用功能。
在其他实施例中,所述第二磁吸体423也可以设置于所述上侧壁4203或所述下侧壁4204。
所述智能眼镜100的主机装置40设有充电接头462,所述充电接头462通过主控板43电连接于所述充电电池46,所述充电接头462外露出所述壳体420的外表面,通过所述充电接头462给所述充电电池46进行充电。本实施例中,所述充电接头462设置于所述壳体420的下侧壁4204远离所述显示装置45的一端,所述充电接头462通过导线电连接于所述充电电池46。在其他实施例中,所述充电接头462可以设置于所述壳体420的内侧壁4201、外侧壁4202、上侧壁4203或远离所述显示装置45的端壁。
所述连接件60为矩形条,所述连接件60包括相对的两个侧面62、顶侧面63、底侧面64及相对的两端面65,所述第一磁吸体61设置于其中一侧面62上。所述连接件60的底侧面64设有卡接槽66,所述卡接槽66沿所述连接件60的长度延伸,且所述卡接槽66相对的两端穿通所述连接件60的两端面65。所述连接件60通过所述卡接槽66卡接于所述镜脚24。具体地,所述连接件60可以由塑胶材料制 成,所述连接件60的其中一侧面62设有定位槽,所述第一磁吸体61定位于所述定位槽中。
在其他实施例中,所述第一磁吸体61可以省略,所述连接件60由铁制成,所述第二磁吸体423为磁铁。
请参阅图5,图5是本申请的连接件60a与主机装置40a的另一连接方式的结构示意图。所述连接件60a及所述主机装置40a的结构与第一实施例中的连接件60及主机装置40的结构相似,不同之处在于:所述连接件60a与所述主机42的壳体420之间还可以通过卡接的方式连接。具体地,所述连接件60a面朝所述壳体420的一侧设有卡钩622,所述壳体420的内侧壁4201设有卡孔4206,所述卡钩622能卡接于卡孔4206内。优选地,所述连接件60a面朝所述壳体420的一侧相对的两端分别设有卡钩622,所述壳体420的内侧壁4201对应卡钩622设有卡孔4206,每一卡钩622能卡接于对应的卡孔4206内。
在其他实施例中,所述壳体420上设有卡钩,所述连接件设有对应所述卡钩的卡孔,所述卡钩可拆卸地卡接于所述卡孔。
请参阅图6,图6是本申请的连接件60b与主机装置40b的又一连接方式的结构示意图。所述连接件60b及所述主机装置40b的结构与第一实施例中的连接件60及主机装置40的结构相似,不同之处在于:所述连接件60b与所述主机42的壳体420之间还可以通过滑轨与滑槽的配合可拆卸地连接。具体地,所述壳体420的内侧壁4201设有滑槽4207,所述滑槽4207沿垂直于所述壳体420的长度方向延伸,所述连接件60b设有可滑动地插接于所述滑槽4207内的滑轨624,以使所述连接件60b与所述壳体420之间可拆卸地插接。优选地,所述连接件60b面朝所述壳体420的一侧相对的两端分别设有滑轨624,所述壳体420的内侧壁4201对应滑轨624设有滑槽4207,每一滑槽4207的一端穿通所述壳体420的下侧壁4204,每一滑轨624能自所述下侧壁4204的一侧插入对应的滑槽4207内,以使所述连接件60b与所述壳体420之间可拆卸地插接。
在其他实施例中,所述连接件面朝所述壳体420的一侧设有滑槽,所述滑槽沿垂直于所述连接件的长度方向延伸,所述壳体420的内侧壁4201对应所述滑槽设有滑轨,所述滑轨可滑动地插接于所述滑槽4207内,以使所述连接件与所述壳体之间可拆卸地插接。
在其他实施例中,所述壳体420或所述连接件60b上的滑槽也可以沿所述壳体420或所述连接件60b的长度方向延伸。
请一并参阅图1及图7所示,图7是图2中的智能眼镜100的部分组装图。组装所述智能眼镜100时,两个所述连接件60分别连接于两个镜脚24上,具体地,将两个镜脚24分别卡入两个连接件60的卡接槽66内,以使每一连接件60固定于镜脚24上,且每一连接件60的第一磁吸体61位于所述眼镜架20的外侧。将两个主机装置40分别连接于两个所述连接件60,具体地,将两个所述主机装置40分别置于所述眼镜架20相对的两侧,并使每一主机装置40的第二磁吸体423与对应的连接件60的第一磁吸体61磁吸连接。此时,每一主机装置40固定连接于眼镜架20,且所述显示装置45位于镜框22前侧。
当需要使用所述智能眼镜100时,用户根据自身的需要进行合适的选择,具体地,若用户的视力正常,则需先选择一副合适的空眼镜架,再将两个连接件60分别固定于所述空眼镜架的镜脚24上,并将两个主机装置40分别可拆卸地连接于两个所述连接件60,佩戴所述智能眼镜100并开启即可。若用户自身佩戴有普通眼镜,则需先将两个连接件60分别固定于普通眼镜架的镜脚上,并将两个主机装置40分别可折卸地连接于两个所述连接件60,再将所述智能眼镜100佩戴并开启即可;所述智能眼镜100能适配视力不同的各用户。
请一并参阅图8-图9,图8是本申请的第二实施例中的智能眼镜100b的立体结构示意图;图9是图8中的其中一主机装置40b的另一视角的立体结构示意图。本申请的第二实施例中的智能眼镜100b的结构与第一实施例相似,不同之处在于:所述连接件60c与所述主机42为一体结构,所述连接件60c与镜脚24可拆卸地连接。具体地,所述连接件60c与所述主机42的壳体一体成型制成。所述连接件60c设有卡接槽66,所述镜脚24可拆卸地卡接于所述卡接槽66内,以使所述主机装置40b可拆卸连接于镜脚24。本申请的第二实施例的智能眼镜100b的使用方法与第一实施例相同,在此不再赘述。
请一并参阅图10至图12,图10是本申请的第三实施例中的智能眼镜100c的立体结构示意图;图11是图10中的智能眼镜100c的立体结构分解示意图;图12是图11中的智能眼镜100c另一视角的立体分解示意图。本申请的第三实施例的智能眼镜100c相较于第一实施例的智能眼镜100,第三实施例中的智能眼镜100c中的眼镜架与连接件固定连接,且眼镜架上增设了导线及电子触点;具体地,所述智能眼镜100c包括眼镜架20a及至少一主机装置40c,所述眼镜架20a包括架体21及连接件25,所述眼镜架20a可以是但不限于空眼镜架、近视眼镜架、远视眼镜架或防光眼镜架等。所述架体21a包括镜框210及连接于所述镜框210相对两端的两个镜脚213,每一镜脚213上至少设有一个连接件25,所述连接件25可以通过卡接、螺接、胶接或一体成型等方式固定于所述镜脚213。每一连接件25可拆卸地连接于所述主机装置40c。所述主机装置40c包括AR眼镜主机、VR眼镜主机、耳机、手电筒、扬声器或摄像头等,这些主机装置40c能分别可拆卸地连接于每一连接件25上,即每一连接件25可以分别连接不同类型的主机装置。本实施例中,所述主机装置40c为AR眼镜主机,具体地,所述主机装置40c包括主机42及连接于所述主机42的显示装置45,所述主机42可拆卸地连接于所述连接件25,使所述显示装置45位于所述镜框210的前侧。所述空眼镜架适合视力正常无需佩带眼镜的用户,所述近视眼镜架、远视眼镜架或防光眼镜架分别适合近视者、远视者或需防光的用户。
当需要使用本申请的智能眼镜100c时,若用户的视力正常且没有佩戴眼镜时,用户选择合适的空眼镜架后,选择需要的主机装置40c如AR眼镜主机、VR眼镜主机,将所选的主机装置40c连接于连接件25,使所述显示装置45正对所述空眼镜架的镜框,再开启所述主机装置40c使其正常使用即可。若用户是近视者或远视者,则在所述镜框210上先配置适合自己的镜片,再选择需要的主机装置40c如AR眼镜主机、VR眼镜主机等,将所选的主机装置40c连接于连接件25,使所选的主机装置40c连接至所述眼镜架20a,再开启所述主机装置40c即可正常使用。当所述主机装置40c使用完成后,从所述连接件25上取下所述主机装置40c即可。
本实施例中的智能眼镜100c包括眼镜架20a及主机装置40c,所述眼镜架20a的镜脚213上设有连接件25,所述主机装置40c通过所述连接件25可拆卸地连接于所述眼镜架20a,所述眼镜架20a可以是空眼镜架或用户自身佩戴的眼镜架。本实施例中的智能眼镜100c的主机装置40c及眼镜架20a设置成两个独立部分,用户可以根据自身的需要对所述主机装置40c与眼镜架20a进行自由组合;如在用户自身没有佩戴眼镜的情况下,用户将所述主机装置40c通过所述连接件25连接于所述空眼镜架上,并开启所述主机装置40c即可正常使用所述智能眼镜100c;如用户是近视者或远视者,则需先在所述眼镜架20a上装配适合用户自身的近视镜片或远视镜片,再将所述主机装置40c通过所述连接件25连接于眼镜架20a上,再开启所述主机装置40c即可正常使用所述智能眼镜100c。由于每一连接件25可以连接不同的类型的主机装置40c,因此,用户可以根据需要选择AR眼镜主机、VR眼镜主机、耳机、手电筒、扬声器或摄像头等不同类型的主机装置通过连接件25连接于镜脚213,通用性较强。即所述智能眼镜100c既适合患有近视眼、远视眼或散光等的用户,又适合自身不需佩戴普通眼镜的用户,且还能与不同类型的主机装置40c一同使用,大大提升了安装使用所述主机装置40c及摘下所述主机装置的自由度,使用方便;其次,主机装置40c通过所述连接件25可拆卸地安装在镜脚213上,所述主机装置40c的体积小且精筒,不仅美观、轻便,且有利于所述智能眼镜100c普及给大量人群,让更多普通消费者体验到AR、VR技术给自己带来的便利;另外,在不需使用所述主机装置40c时,可以将所述主机装置40c从眼镜架20a上分离,不会影响所述眼镜架20a的正常使用,方便使用。
本实施例中,所述智能眼镜100c包括一个主机装置40c,所述主机装置40c能可拆卸地连接于两个所述连接件25的其中之一上,且所述主机装置40c的显示装置45正对相应的镜框210。
在一些实施例中,智能眼镜100c包括两个或两个以上的主机装置40c,每一连接件25分别可拆卸地连接于这些主机装置40c。
如图10至图14所示。所述智能眼镜100c还包括设于所述架体21内的导线26,每一连接件25上设有第一电子触点251,所述导线26相对的两端分别电连接于两个所述镜脚213上连接件25的第一电子触点251,即两个所述连接件25上的第一电子触点251通过导线26电连接。所述主机装置400设有 对应所述第一电子触点251的第二电子触点422,当所述主机装置40c连接于所述连接件25时,所述第一电子触点251与所述第二电子触点422接触而电连接。所述架体21内可以开设线槽(图中末示),所述线槽相对的两端分别连通所述连接件25,所述导线26收容于所述线槽内,且所述导线26相对的两端分别电连接于两个所述连接件25的第一电子触点251。本实施例中,所述架体21上设有若干条导线26,这些导线26相对的两端分别电连接于两个所述连接件25的第一电子触点251。
在一些实施例中,所述导线26也可以内嵌于所述架体21内。所述导线26相对的两端分别电连接于两个所述连接件25的第一电子触点251,使两个所述连接件25的第一电子触点251相互电连接。
本实施例中,每一连接件25为固定于镜脚213上的矩形条,所述连接件25包括外侧面252、与所述外侧面252相对设置的内侧面、顶侧面、底侧面及相对的两端面254。所述连接件25设有固定孔,所述固定孔沿所述连接件25的长度方向延伸,且所述固定孔相对的两端分别穿通所述连接件25相对的两个端面254,所述镜脚213卡接于所述固定孔。所述连接件25的外侧面252上设有若干所述第一电子触点251,优选地,这些第一电子触点251沿所述连接件25的长度方向间隔排列。所述连接件25可以采用塑胶材料、橡胶材料制成。
所述连接件25与所述主机装置40c之间可以通过磁吸连接。优选地,所述主机42与所述连接件25之间通过磁吸连接。具体地,所述连接件25还包括设于所述连接件25的第一磁吸体256,所述主机42上设有第二磁吸体423,所述第一磁吸体256与所述第二磁吸体423之间相互磁吸,使得所述主机装置40与所述连接件25可拆卸地连接。所述第一磁吸体256及所述第二磁吸体423可以是一对磁铁,所述一对磁铁之间的极向相反。在其他实施例中,所述第一磁吸体256及所述第二磁吸体423也可以是一块磁铁和一块铁片。
优选地,所述主机装置40c设有定位孔421,所述连接件25可拆卸地卡接于所述定位孔421,所述第一电子触点251设于所述连接件25的外表面,所述第二电子触点422设于所述定位孔421的内表面。具体地,所述定位孔421设于所述主机42面朝所述显示装置45的侧面,所述定位孔421包括底面4211及围设于所述底面4211四周的侧面4213,若干所述第二电子触点422设于所述定位孔421的底面4211;若干所述第二电子触点422设于所述连接件25的外侧面252。当所述连接件25的外侧卡入所述定位孔421内时,若干所述第一电子触点251与若干所述第二电子触点422分别接触而电连接。本实施例中,所述定位孔421为条形孔,若干所述第二电子触点422沿所述定位孔421的长度方向间隔排列。
所述第一磁吸体256设于所述连接件25靠近所述外侧面252处,优选地,所述连接件25的外侧面252相对的两端分别设有所述第一磁吸体256;所述第二磁吸体423对应所述第一磁吸体256定位于所述定位孔421的内表面。优选地,所述定位孔421的底面4211相对的两端分别设有所述第二磁吸体423;当所述连接件25的外侧面252卡入所述定位孔421中时,每一所述第一磁吸体256与对应的第二磁吸体423相互磁吸,使所述主机装置40c可拆卸地定位于所述连接件25。
在其他实施例中,所述第一磁吸体256也可以设置于所述连接件25靠近所述顶侧面和/或底侧面处,所述第二磁吸体423对应所述第一磁吸体256设于所述定位孔421的侧面4213处。
在其他实施例中,若干所述第一电子触点251设于所述连接件25的顶侧面和/或底侧面,若干所述第二电子触点422设于所述主机42的定位孔421的侧面4213;当所述连接件25卡接入所述定位孔421中时,若干所述第一电子触点251与若干所述第二电子触点422分别接触而电连接。
所述主机42包括概呈条形的壳体,所述显示装置45设于所述壳体的一端,所述壳体与所述显示装置45构成L形结构。所述壳体包括面朝所述连接件25的内侧壁4214,背离所述内侧壁4214的外侧壁4215,以及位于所述内侧壁4214相对两侧的上侧壁4216及下侧壁4217;所述内侧壁4214、外侧壁4215、上侧壁4216及下侧壁4217围成收容空间。本实施例中,所述定位孔421设于所述内侧壁4214的外表面,所述第二磁吸体423定位于所述定位孔421的底面4211。
在其他实施例中,主机装置40c也可以是矩形结构、弧形结构等。
所述主机42的壳体内设置有主控板43及电连接于所述主控板43的充电电池46等电子器件,所述主控板43上设有处理器432,即所述主控板43及充电电池46等电子器件收容于所述壳体的收容空间内。 所述主控板43电连接于所述显示装置45及所述第二电子触点422,所述充电电池46给所述主控板43、处理器432及显示装置45提供电量,所述主控板43及所述处理器432实现对所述智能眼镜100c的智能控制。当所述主机装置40c通过所述连接件25安装至所述眼镜架20a上使用时,所述充电电池46提供电量,所述处理器432进行控制,并通过所述显示装置45实现智能眼镜的使用功能。
所述主机装置40c设有充电接头462,所述充电接头462通过主控板43电连接于所述充电电池46,所述充电接头462外露出所述主机42的外表面,通过所述充电接头462给所述充电电池46进行充电。本实施例中,所述充电接头462设置于所述壳体421的上侧壁4216远离所述显示装置45的一端,所述充电接头462通过导线电连接于所述充电电池46。在其他实施例中,所述充电接头462可以设置于所述壳体421的内侧壁4214、外侧壁4215、下侧壁4217或远离所述显示装置45的端壁。
在其他实施例中,所述第一磁吸体256可以省略,所述连接件25由铁制成,所述第二磁吸体423为磁铁。
请一并参阅图10至图13,当需要使用所述智能眼镜100c时,用户根据自身的需要进行合适的选择,具体地,若用户的视力正常,则需先选择一副合适的眼镜架210,并将所需的主机装置40c可拆卸地连接于所述连接件25,用户佩戴所述智能眼镜100c并开启主机装置40c即可。若用户自身需要佩戴近视眼镜、远视眼镜或防光眼镜等,则用户先在所述眼镜架210上装配合适的近视镜片、远视镜片或防光镜片等,并将所需的主机装置40c可折卸地连接于所述连接件25,再将所述智能眼镜100c佩戴并开启主机装置40c即可;所述智能眼镜100c能适配视力不同的各用户,使用方便。当智能眼镜100c使用完成需要拆下所述主机装置40c时,从所述连接件25上取下所述主机装置40c即可,所述眼镜架20a可以继续使用,操作简单,使用方便。
请一并参阅图14至图16,本申请的智能眼镜100c的另一实施方式,当用户需要在所述眼镜架20a上使用两个不同类型的主机装置40c时,如两个不同类型的主机装置40c的其中之一可以是AR眼镜主机,另外一个可以是耳机;用户根据自身的需要进行合适的选择,具体地,若用户的视力正常,则需先选择一副合适的眼镜架210,并将所选的两个主机装置40c分别可拆卸地连接于两个所述连接件25,使每一主机装置40c的若干所述第二电子触点422分别接触对应的若干所述第一电子触点251而电连接,用户佩戴所述智能眼镜100并开启主机装置40c即可。若用户自身需要佩戴近视眼镜、远视眼镜或防光眼镜,则用户先在所述眼镜架210上安装合适的近视镜片、远视镜片或防光镜片,并将所需的两个主机装置40c分别可折卸地连接于两个所述连接件25,再将所述智能眼镜100c佩戴并开启主机装置40c即可;所述智能眼镜100能适配视力不同的各用户,使用方便。当智能眼镜100c使用完成需要拆下所述主机装置40c时,从所述连接件25上取下所述主机装置40c,所述眼镜架20a可以继续使用,操作简单,使用方便。
此时,由于每一主机装置40c的第二电子触点422电连接于对应的第一电子触点251,因此,两个所述主机装置40c之间通过导线26电连接,使得两个所述主机装置40c之间可以通信及共享电池能量;具体地,两个所述主机装置40c之间可以进行音频信号、视频信号、传感器信号、处理器信号及存储数据等信息传递,提升用户体验;所述共享电池能量指其中一主机装置40c的电池能使另一主机装置40c提供电量。
请参阅图17,图17是本申请的第四实施例中的智能眼镜的立体结构示意图。本申请的第四实施例中的智能眼镜100d的结构与第三实施例的智能眼镜100c的结构相似,不同之处在于:第四实施例中的智能眼镜100d在第三实施例中的智能眼镜100c的基础上增加了芯片30,所述芯片30设于所述眼镜架20a内,所述芯片30电连接于所述导线26,即所述芯片30通过所述导线26电连接于两个所述连接件25的第一电子触点251,所述芯片30为加密芯片,所述加密芯片具有加密功能,以防止盗版镜架。
优选地,所述芯片30还用于管理两个所述镜脚213上的主机装置40c之间的通信和电源之间的配合。具体地,所述芯片30控制两个镜脚213上的主机装置40c的电源共享,当其中一个主机装置40c的电源的电量不足时,所述芯片30控制另一个主机装置40c的电源给所述其中一主机装置40c进行供电;若两个所述镜脚213上的主机装置40c仅其中之一工作时,则所述芯片30可以控制没有工作的主 机装置40c的电源给所述其中之一的主机装置40c提供电量。当两个所述镜脚213上的主机装置40c均工作时,所述芯片30能控制两个所述主机装置40c之间进行音频信号、视频信号、传感器信号、处理器信号及存储数据等信息传递,以方便用户使用。
请一并参阅图18及图19,图18是本申请的第五实施例中的智能眼镜的部分主机装置40d与连接件25a的立体结构示意图;图19是图18中的主机装置40d与连接件25a组装后的剖视图。本申请的第五实施例中的智能眼镜的结构与第三实施例的智能眼镜100c的结构相似,不同之处在于:第三实施例中的智能眼镜的连接件25a与主机装置40d的连接方式与第一实施例略有不同,所述连接件25a在第一实施例中的连接件25的基础上省略了第一磁吸体256,所述主机装置40d在第三实施例中的主机装置40c的基础上省略了第二磁吸体423,所述连接件25a在所述定位孔421的内表面设有至少一定位部426,所述连接件25a的外表面设有对应至少一所述定位部426的定位槽257;当所述连接件25a卡入所述定位孔421中时,所述定位部426卡入所述定位槽257内,以防止所述连接件25a脱离所述定位孔421。
优选地,所述主机装置40d于所述定位孔421相对的两个内侧面分别设有一个所述定位部426,每一定位部426为弹性的定位条;所述连接件25a的上侧面及下侧面分别设有所述定位槽257;当所述连接件25a卡入所述定位孔421中时,两个所述定位条分别卡入两个所述定位槽257内,使所述连接件25a与所述主机装置40a的连接更牢固。具体地,每一定位部426包括面朝所述定位孔421的开口的导滑面4261及背离所述定位孔421的开口的止挡面4263,在所述连接件25a卡入所述定位孔421的过程中,所述连接件25a滑动地抵推导滑面4261,使每一定位部426弹性变形,直至每一定位部426正对相应的定位槽257,所述定位部426弹性复位而卡入定位槽257中,使所述定位部426的止挡面4263止接于所述定位槽257的内表面,以防止连接件25a脱离所述定位孔421。
组装所述主机装置40d至所述连接件25a时,将所述连接件25a直接卡入所述主机装置40d的定位孔421内,直至两个定位部426分别卡入两个所述定位槽257中,使所述连接件25a与所述主机装置40d固定连接;此时,所述连接件25a的若干第一电子触点251分别接触所述主机装置40d的若干第二电子触点422,以相互电连接。从所述连接件25a取下所述主机装置40d时,向远离所述连接件25a的一侧拉所述主机装置40d,使两个所述定位部426分别脱离两个所述定位槽257后,让所述连接件25a脱离所述定位孔421即可;因此,所述主机装置40d与所述连接件25a的组装或拆卸操作简单,使用方便。
在其他实施例中,所述定位部426还可以是但不限于圆形凸起、弹簧珠等,所述定位槽257可以是但不限于圆形孔。
在其他实施例中,所述主机装置40d于所述定位孔421的内表面设有至少一定位槽,所述连接件25a的外表面对应至少一所述定位槽设有定位部;当连接件25a插入定位孔421内时,所述定位部卡接于所述定位槽,以使所述连接件25a与所述主机装置40d相对定位。优选地,所述主机装置40d于所述定位孔421的内周面设有相对的两个定位槽,所述连接件25a的外周面对应两个所述定位槽的两个定位部;当所述连接件25a卡接于所述主机装置40d的定位孔421时,两个所述定位部分别卡接于两个所述定位槽,以使所述连接件25a与所述主机装置40d相对定位。
请参阅图20,图20是本申请的第六实施例中的智能眼镜的部分主机装置40e与连接件25b的立体结构示意图;本申请的第六实施例中的智能眼镜的结构与第三实施例的智能眼镜100c的结构相似,不同之处在于:第六实施例中的智能眼镜的连接件25b与主机装置40e的连接方式与第三实施例略有不同,所述连接件25b与所述主机装置40e之间还通过定位槽与定位部的配合连接;具体地,所述主机装置40e于所述定位孔421相对的两个内侧面分别设有一个所述定位部426,所述连接件25b的上侧面及下侧面分别设有所述定位槽257;当所述连接件25b卡入所述定位孔421中时,每一第一磁吸体256磁吸于对应的第二磁吸体423,两个所述定位部426分别卡入两个所述定位槽257内,使所述连接件25a与所述主机装置40e的连接更牢固,以防止连接件25b脱离所述定位孔421。此时,所述连接件25b的若干第一电子触点251分别接触对应的主机装置40e的若干所述第二电子触点422。
在其他实施例中,所述主机装置40e于所述定位孔421的内表面设有至少一定位槽,所述连接件25b的外表面对应至少一所述定位槽设有定位部;当连接件25b入定位孔421内时,所述定位部卡接于所述 定位槽,以使所述连接件25b与所述主机装置40e相对定位。优选地,所述主机装置40e于所述定位孔421的内周面设有相对的两个定位槽,所述连接件25b的外周面对应两个所述定位槽的两个定位部;当所述连接件25b卡接于所述主机装置40e的定位孔421时,两个所述定位部分别卡接于两个所述定位槽,以使所述连接件25b与所述主机装置40e相对定位;此时,所述连接件25b的若干第一电子触点251分别接触对应的主机装置40e的若干所述第二电子触点422。
请参阅图21,图21是本申请的第七实施例中的智能眼镜的部分附加40f与连接件25c的立体结构示意图;本申请的第七实施例中的智能眼镜的结构与第三实施例的智能眼镜100c的结构相似,不同之处在于:第七实施例中的智能眼镜的连接件25c与主机装置40f的连接方式与第三实施例略有不同,具体地,在第七实施例中的连接件25c设有卡块258,所述主机装置40f设有对应所述卡块258的卡孔428,所述第一电子触点251设于所述卡块258的外表面,所述第二电子触点422设于所述卡孔428的内表面,所述卡块258卡接于所述卡孔428,以使所述主机装置40f连接于所述连接件25c;此时,所述连接件25c的若干第一电子触点251分别接触所述主机装置40f的若干第二电子触点422而相互电连接。
优选地,所述卡块258设有至少一第一磁吸体256,所述主机装置40f设有对应所述第一磁吸体256的第二磁吸体423,当所述卡块258卡接于所述卡孔428中时,所述第一磁吸体256与所述第二磁吸体423相互磁吸,使主机装置40f与所述连接件25c的定位更稳定。进一步地,所述卡块258相对的两端分别设有第一磁吸体256,所述卡孔428的底面设有对应两个所述第一磁吸件256的两个第二磁吸体423。
请参阅图22,图22是本申请的第八实施例中的智能眼镜的部分主机装置40h与连接件25d的立体结构示意图;本申请的第八实施例中的智能眼镜的结构与第七实施例的智能眼镜的结构相似,不同之处在于:所述连接件25d设有卡孔253,所述主机装置40h设有对应所述卡孔253的卡块425,所述第一电子触点251设于所述卡孔253的内表面,所述第二电子触点422设于所述卡块425的外表面,所述卡块425卡接于所述卡孔253,以使所述主机装置40d连接于所述连接件25d。
优选地,所述主机装置40h在所述卡孔253的内表面设有至少一第一磁吸体256,所述卡块425对应至少一所述第一磁吸体423设有至少一第二磁吸体423,当所述卡块425卡接于所述卡孔253中时,所述第一磁吸体256与所述第二磁吸体423相互磁吸,使所述主机装置40h与所述连接件25d的定位更稳定。进一步地,所述卡块425相对的两端分别设有第二磁吸体423,所述卡孔253的底面设有对应两个所述第二磁吸体423的两个第一磁吸件256。
请一并参阅图23及图24,图23是本申请的第九实施例中的智能眼镜的部分主机装置40j与连接件25e的立体结构示意图;图24是图23中的主机装置40j与连接件25e组装后的剖视图;本申请的第九实施例中的智能眼镜的结构与第七实施例的智能眼镜的结构相似,不同之处在于:第九实施例中的智能眼镜的连接件25e与主机装置40j的连接方式与第七实施例略有不同,所述主机装置40j的卡孔428的内表面设有至少一定位部426,所述连接件25e的卡块258的外表面设有对应至少一所述定位部426的定位槽2582;当所述卡块258卡入所述卡孔428中时,所述定位部426卡入所述定位槽2582内,以防止所述连接件25e脱离所述卡孔428。
优选地,所述主机装置40j于所述卡孔428相对的两个内侧面分别设有一个所述定位部426,每一定位部426为弹性的定位条;所述卡块258的上侧面及下侧面分别设有所述定位槽2852;当所述卡块258卡入所述卡孔428中时,两个所述定位条分别卡入两个所述定位槽2852内,使所述连接件25e与所述主机装置40j的连接更牢固,以防止连接件25e脱离所述卡孔428。
组装所述主机装置40j至所述连接件25e时,将所述卡块258直接卡入所述主机装置40j的卡孔428内,直至两个定位部426分别卡入两个所述定位槽2852中,使所述连接件25e与所述主机装置40j固定连接;此时,所述连接件25e的若干第一电子触点251分别接触所述主机装置40j的若干第二电子触点422,以相互电连接。从所述连接件25e取下所述主机装置40j时,向远离所述连接件25e的一侧拉所述主机装置40j,使两个所述定位部426分别脱离两个所述定位槽2582后,让所述连接件25e脱离所述卡孔428即可;因此,所述主机装置40j与所述连接件25e的组装或拆卸操作简单,使用方便。
在其他实施例中,所述主机装置40j于所述卡孔428的内表面设有至少一定位槽,所述连接件25e 的外表面对应至少一所述定位槽设有定位部;当卡块258插入卡孔428内时,所述定位部卡接于所述定位槽,以使所述连接件25a与所述主机装置40j相对定位。优选地,所述主机装置40j于所述卡孔428的内周面设有相对的两个定位槽,所述连接件25e的外周面对应两个所述定位槽的两个定位部;当所述卡块258卡接于所述主机装置40j的定位孔421时,两个所述定位部分别卡接于两个所述定位槽,以使所述连接件25e与所述主机装置40e相对定位。
请一并参阅图25-图26,图25是本申请的第十实施例中的智能眼镜的部分主机装置40k与连接件25h的立体结构示意图;图26是图25中的主机装置40k与连接件25h组装后的剖视图。本申请的第十实施例中的智能眼镜的结构与第三实施例的智能眼镜100c的结构相似,不同之处在于:第十实施例中的连接件25h与主机装置40k之间的连接结构与第三实施例中的连接件25与主机装置40c之间的连接结构不同。具体地,在第十实施例中,所述连接件25h与所述主机装置40k之间通过滑轨259与导滑轨401的配合连接,所述滑轨259和导滑轨104两者其中之一设于所述连接件25h,所述滑轨259和导滑轨401两者另外之一设于所述主机装置40k,所述滑轨401与所述导滑轨259连接到位后,所述第一电子触点251电连接于所述第二电子触点422,即若干所述第一电子触点251分别与若干所述第二电子触点422接触而实现电连接。
本实施例中,所述导滑轨401设于所述主机装置40k的内侧壁4214,所述滑轨259设于所述连接件25h的外侧面252。所述导滑轨401具有沿其长度方向延伸的导槽403,所述滑轨259包括滑动地插设于所述导槽403内的轨体2593。优选地,所述主机装置40k的内侧壁4214上设有间隔平行的两个导滑轨401,两个导滑轨401之间的间隔用于收容所述滑轨259。所述滑轨259相对的两侧分别凸设所述轨体2593,两个所述轨体2593相互平行,每一轨体2593沿导槽403的长度方向延伸。若干所述第一电子触点251设于所述滑轨259背离所述外侧面252的侧面,且位于两个所述轨体2593之间;若干所述第二电子触点422设于所述内侧壁4214于两个所述导滑轨401之间。
组装所述主机装置40k至所述连接件25h时,将所述主机装置40k置于所述连接件25h的一端,使两个所述轨体2593分别正对两个所述导槽403,相对于所述连接件25h移动所述主机装置40k,两个所述轨体2593分别滑动地插入两个所述导槽403中即可。此时,若干所述第一电子触点251分别接触若干所述第二电子触点422,使每一第一电子触点251电连接于对应的第二电子触点422。从所述连接件25h取下所述主机装置40k时,相对于所述连接件25h移动所述主机装置40k,所述主机装置40k相对于所述连接件25h滑动,直至轨体2593脱离对应的导槽403即可;因此,所述主机装置40k与所述连接件25h的组装或拆卸操作简单,使用方便。
以上是本申请实施例的实施方式,应当指出,对于本技术领域的普通技术人员来说,在不脱离本申请实施例原理的前提下,还可以做出若干改进和润饰,这些改进和润饰也视为本申请的保护范围。

Claims (20)

  1. 一种智能眼镜,用于给用户佩戴,其特征在于,所述智能眼镜包括:
    眼镜架,所述眼镜架为空眼镜架或用户自身佩戴的眼镜架;
    至少一主机装置,所述主机装置包括主机及连接于所述主机的显示装置;以及,
    连接件,至少一所述主机装置通过所述连接件可拆卸地连接于所述空眼镜架或用户自身佩戴的眼镜架。
  2. 根据权利要求1所述的智能眼镜,其特征在于,所述空眼镜架或用户自身佩戴的眼镜架均包括镜脚,所述连接件连接于所述镜脚与所述主机之间。
  3. 根据权利要求2所述的智能眼镜,其特征在于,所述连接件卡接于所述镜脚,所述连接件与所述主机之间通过磁吸连接。
  4. 根据权利要求2所述的智能眼镜,其特征在于,所述连接件与所述主机为一体结构,所述连接件与所述镜脚可拆卸地连接。
  5. 根据权利要求2所述的智能眼镜,其特征在于,所述连接件设有卡接槽,所述镜脚可拆卸地卡接于所述卡接槽。
  6. 根据权利要求1所述的智能眼镜,其特征在于,所述连接件与所述主机之间还可以通过滑轨与滑槽的配合可拆卸地连接。
  7. 一种眼镜架,用于支撑主机装置,其特征在于,所述眼镜架包括架体及连接件,所述架体包括两个镜脚,每一镜脚上至少设有一个所述连接件,每一连接件可拆卸地连接于一个所述主机装置。
  8. 根据权利要求7所述的眼镜架,其特征在于,还包括设于所述架体内的导线,每一连接件上设有第一电子触点,所述导线相对的两端分别电连接于两个所述镜脚上连接件的第一电子触点,所述主机装置设有对应所述第一电子触点的第二电子触点,当所述主机装置连接于所述连接件时,所述第一电子触点电连接于所述第二电子触点。
  9. 根据权利要求8所述的眼镜架,其特征在于,所述连接件设有第一磁吸件,所述主机装置设有对应所述第一磁吸件的第二磁吸件,所述第一磁吸件与所述第二磁吸件的相互磁吸使所述连接件与所述主机装置可拆卸地连接。
  10. 根据权利要求8所述的眼镜架,其特征在于,所述主机装置设有定位孔,所述连接件可拆卸地卡接于所述定位孔,所述第一电子触点设于所述连接件的外表面,所述第二电子触点设于所述定位孔的内表面。
  11. 根据权利要求10所述的眼镜架,其特征在于,所述主机装置在所述定位孔的内表面设有至少一定位部,所述连接件的外表面设有对应至少一所述定位部的定位槽;或者所述主机装置于所述定位孔的内表面设有至少一定位槽,所述连接件的外表面设有对应至少一所述定位槽的定位部;所述主机装置连接于所述连接件时,所述定位部卡接于所述定位槽。
  12. 根据权利要求10所述的眼镜架,其特征在于,所述连接件的外侧面设有第一磁吸体,所述定位孔的内表面设有第二磁吸体,所述连接件卡入所述定位孔后,所述第一磁吸体与所述第二磁吸体相互磁吸。
  13. 根据权利要求10所述的眼镜架,其特征在于,所述连接件设有卡块,所述主机装置设有对应所述卡块的卡孔,所述第一电子触点设于所述卡块,所述第二电子触点设于所述卡孔的内表面,所述卡块卡接于所述卡孔,以使所述主机装置连接于所述连接件,所述第一电子触点电连接于所述第二电子触点。
  14. 根据权利要求10所述的眼镜架,其特征在于,所述连接件设有卡孔,所述主机装置设有对应所述卡孔的卡块,所述第一电子触点设于所述卡孔的内表面,所述第二电子触点设于所述卡块,所述卡块卡接于所述卡孔,以使所述主机装置连接于所述连接件,所述第一电子触点电连接于所述第二电子触点。
  15. 根据权利要求13或14所述的眼镜架,其特征在于,所述连接件设有第一磁吸体,所述主机装置设有对应所述第一磁吸体的第二磁吸体,所述卡块卡入所述卡孔后,所述第一磁吸体与所述第二磁吸体相互磁吸。
  16. 根据权利要求10所述的眼镜架,其特征在于,所述连接件与所述主机装置之间通过滑轨与导滑轨的配合连接,所述滑轨和导滑轨两者其中之一设于所述连接件,所述滑轨和导滑轨两者另外之一设于所述主机装置,所述滑轨与所述导滑轨连接到位后,所述第一电子触点电连接于所述第二电子触点。
  17. 根据权利要求10所述的眼镜架,其特征在于,还包括芯片,所述芯片电连接于所述导线,所述芯片具有加密功能。
  18. 根据权利要求17所述的眼镜架,其特征在于,所述芯片还用于对两个所述镜脚上的主机装置之间的通信和电源进行配合。
  19. 一种智能眼镜,其特征在于,所述智能眼镜包括如权利要求7-18任意一项所述眼镜架及至少一主机装置,所述眼镜架包括架体及至少一连接件,所述架体包括两个镜脚,至少一镜脚上设有所述连接件;所述主机装置可拆卸地连接所述连接件。
  20. 根据权利要求19所述的智能眼镜,其特征在于,所述主机装置包括AR眼镜主机、VR眼镜主机、耳机、手电筒、扬声器或摄像头。
PCT/CN2021/132106 2020-12-25 2021-11-22 眼镜架及智能眼镜 WO2022134982A1 (zh)

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