WO2022037302A1 - 穿戴式设备、眼镜、放置盒及穿戴式设备组件 - Google Patents

穿戴式设备、眼镜、放置盒及穿戴式设备组件 Download PDF

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Publication number
WO2022037302A1
WO2022037302A1 PCT/CN2021/105053 CN2021105053W WO2022037302A1 WO 2022037302 A1 WO2022037302 A1 WO 2022037302A1 CN 2021105053 W CN2021105053 W CN 2021105053W WO 2022037302 A1 WO2022037302 A1 WO 2022037302A1
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WO
WIPO (PCT)
Prior art keywords
opening
lever
wearable device
connection port
gear
Prior art date
Application number
PCT/CN2021/105053
Other languages
English (en)
French (fr)
Inventor
刘幕俊
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
Publication of WO2022037302A1 publication Critical patent/WO2022037302A1/zh

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    • 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
    • AHUMAN NECESSITIES
    • A45HAND OR TRAVELLING ARTICLES
    • A45CPURSES; LUGGAGE; HAND CARRIED BAGS
    • A45C11/00Receptacles for purposes not provided for in groups A45C1/00-A45C9/00
    • A45C11/04Spectacle cases; Pince-nez cases
    • 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

Definitions

  • the present application relates to the field of electronic technology, and in particular, to a wearable device, glasses, a placing box and a wearable device component.
  • Embodiments of the present application provide a wearable device, glasses, a placing box, and a wearable device assembly, which can improve the problem of poor contact of a connection port of the wearable device.
  • Embodiments of the present application provide a wearable device, which includes:
  • a casing which is provided with a first opening and a second opening;
  • the lever includes a main body and a protruding part, the protruding part is arranged on the main body, the main body is arranged in the casing, the protruding part is located in the first opening, and protrudes from the casing; shielding a plate, disposed in the casing, the shielding plate is connected to the lever, and the shielding plate shields the second opening; and
  • connection port which is arranged in the casing and is arranged opposite to the second opening, and the connection port is used for electrical connection with an external device
  • the lever drives the shutter to move, so as to expose the connection port through the second opening.
  • the embodiment of the present application also provides a kind of glasses, which includes:
  • a casing which is provided with a first opening and a second opening;
  • a lever comprising a main body and a protruding part, the protruding part is disposed on the main body, the main body is disposed in the casing, the protruding part is located in the first opening and protrudes from the casing;
  • a shielding plate arranged in the casing, the shielding plate is connected with the lever, and the shielding plate shields the second opening;
  • connection port which is arranged in the casing and is arranged opposite to the second opening, and the connection port is used for electrical connection with an external device
  • the lever drives the shutter to move, so as to expose the connection port through the second opening.
  • An embodiment of the present application further provides a placement box, where the placement box is used to place a wearable device, the wearable device is the above-mentioned wearable device, and the placement box includes:
  • the protrusion abuts the protruding part of the wearable device, and makes the protruding part move in the first opening and drives the lever and the shutter to move, so as to pass the first opening.
  • the interface is electrically connected to the connection port through the second opening.
  • An embodiment of the present application further provides a placement box, where the placement box is used to place glasses, the glasses are the aforementioned glasses, and the placement box includes:
  • the protrusion abuts the protruding part of the wearable device, and makes the protruding part move in the first opening and drives the lever and the shutter to move, so as to pass the first opening.
  • the interface is electrically connected to the connection port through the second opening.
  • Embodiments of the present application also provide a wearable device assembly, which includes:
  • the wearable device being the above-mentioned wearable device
  • a placement box which is as described above.
  • Embodiments of the present application also provide a wearable device assembly, which includes:
  • Spectacles equipment the spectacles being the spectacles described above;
  • a placement box which is as described above.
  • FIG. 1 is a schematic structural diagram of a wearable device provided by an embodiment of the present application.
  • FIG. 2 is a schematic diagram of a first internal structure of the wearable device shown in FIG. 1 .
  • FIG. 3 is a schematic diagram of a second internal structure of the wearable device shown in FIG. 1 .
  • FIG. 4 is a schematic diagram of a third internal structure of the wearable device shown in FIG. 1 .
  • FIG. 5 is a schematic diagram of a fourth internal structure of the wearable device shown in FIG. 1 .
  • FIG. 6 is a schematic diagram of a fifth internal structure of the wearable device shown in FIG. 1 .
  • FIG. 7 is a schematic structural diagram of the wearable device and the placement box in the wearable device shown in FIG. 1 .
  • FIG. 8 is another schematic structural diagram of the wearable device and the placing box in the wearable device shown in FIG. 1 .
  • FIG. 9 is a schematic structural diagram of a placement box provided by an embodiment of the present application.
  • FIG. 10 is a partial structural schematic diagram of the inside of the placing box shown in FIG. 9 .
  • FIG. 11 is a schematic structural diagram of a placement box and a wearable device provided by an embodiment of the present application.
  • FIG. 12 is another schematic structural diagram of a placing box and a wearable device provided by an embodiment of the present application.
  • FIG. 13 is a schematic structural diagram of a wearable device component provided by an embodiment of the present application.
  • FIG. 14 is another schematic structural diagram of a wearable device assembly provided by an embodiment of the present application.
  • Embodiments of the present application provide a wearable device, which includes:
  • a casing which is provided with a first opening and a second opening;
  • a lever comprising a main body and a protruding part, the protruding part is disposed on the main body, the main body is disposed in the casing, the protruding part is located in the first opening and protrudes from the casing;
  • a shielding plate disposed in the casing, the shielding plate is connected with the lever, and the shielding plate shields the second opening;
  • connection port which is arranged in the casing and is arranged opposite to the second opening, and the connection port is used for electrical connection with an external device
  • the lever drives the shutter to move, so as to expose the connection port through the second opening.
  • the first opening is opened on the first side of the casing
  • the second opening is opened on the second side of the casing
  • the first side and the second side are adjacent to each other .
  • the lever is connected to the shielding plate through a gear group, and the lever drives the shielding plate to move through the gear group.
  • the gear set includes a first gear and a second gear, the first gear and the second gear are engaged, the lever drives the first gear to rotate, and the first gear drives the second gear The gear rotates, and the second gear drives the shutter to move.
  • the wearable device further comprises an elastic member, the elastic member is arranged in the casing, and one end is fixedly connected to the inner wall of the casing, and the other end is fixedly connected to the lever;
  • the elastic member drives the lever to move, and drives the shielding plate to move, so as to shield the second opening.
  • the embodiment of the present application also provides a kind of glasses, which includes:
  • a casing which is provided with a first opening and a second opening;
  • a lever comprising a main body and a protruding part, the protruding part is disposed on the main body, the main body is disposed in the casing, the protruding part is located in the first opening and protrudes from the casing;
  • a shielding plate disposed in the casing, the shielding plate is connected with the lever, and the shielding plate shields the second opening;
  • connection port which is arranged in the casing and is arranged opposite to the second opening, and the connection port is used for electrical connection with an external device
  • the lever drives the shutter to move, so as to expose the connection port through the second opening.
  • the first opening is opened on the first side of the casing
  • the second opening is opened on the second side of the casing
  • the first side and the second side are adjacent to each other .
  • the lever is connected to the shielding plate through a gear group, and the lever drives the shielding plate to move through the gear group.
  • the gear set includes a first gear and a second gear, the first gear and the second gear are engaged, the lever drives the first gear to rotate, and the first gear drives the second gear The gear rotates, and the second gear drives the shutter to move.
  • the glasses further include an elastic member, the elastic member is arranged in the casing, one end is fixedly connected with the inner wall of the casing, and the other end is fixedly connected with the lever;
  • the elastic member drives the lever to move, and drives the shielding plate to move, so as to shield the second opening.
  • the glasses include a frame and temples, and the lever, the shielding plate and the connection port are all arranged on the temples.
  • connection port includes a metal contact and a first magnet
  • the metal contact is used for electrical connection with an interface of an external device
  • the first magnet is magnetically attracted to the interface of the external device
  • the protruding part when the glasses are set in the placing box, the protruding part is in contact with the protrusion of the placing box, and the protrusion moves the protruding part in the first opening and drives the protruding part through the protrusion. the lever and the shutter move to expose the connection port through the second opening;
  • connection port is electrically connected with an interface of the external device passing through the second opening, and the interface includes a raised contact metal post.
  • An embodiment of the present application further provides a placement box, wherein the placement box is used to place a wearable device, and the wearable device is the wearable device described in any one of the foregoing embodiments, and the placement box includes:
  • the protrusion abuts the protruding part of the wearable device, and makes the protruding part move in the first opening and drives the lever and the shutter to move, so as to pass the first opening.
  • the interface is electrically connected to the connection port through the second opening.
  • the interface includes a second magnet and a raised contact metal column, the contact metal column is electrically connected to the metal contact of the connection port through the second opening, and the second magnet is connected to the metal contact of the connection port.
  • the connection port of the wearable device is magnetically attracted.
  • An embodiment of the present application further provides a placing box, wherein the placing box is used for placing glasses, the glasses are the glasses described in any one of the above embodiments, and the placing box includes:
  • the protrusion abuts the protruding part of the glasses, and makes the protruding part move in the first opening and drives the lever and the shielding plate to move so as to pass through the second opening exposing the connection port;
  • the interface is electrically connected to the connection port through the second opening.
  • the storage box further includes a first battery, and the first battery charges the second battery of the glasses through the interface and the connection port.
  • the interface includes a second magnet and a raised contact metal column, the contact metal column is electrically connected to the metal contact of the connection port through the second opening, and the second magnet is connected to the metal contact of the connection port.
  • the connection port of the glasses is magnetically attracted.
  • Embodiments of the present application also provide a wearable device assembly, which includes:
  • a wearable device is the wearable device described in any one of the foregoing embodiments.
  • a placement box is the placement box described in any one of the above embodiments.
  • Embodiments of the present application also provide a wearable device component, which includes:
  • the glasses are the glasses according to any one of the above embodiments.
  • a placement box is the placement box described in any one of the above embodiments.
  • FIG. 1 is a schematic structural diagram of a wearable device provided by an embodiment of the application
  • FIG. 2 is a schematic diagram of a first internal structure of the wearable device shown in FIG. 1
  • FIG. 3 is shown in FIG. 1 .
  • the wearable device 100 includes a housing 120 , a lever 140 , a shielding plate 160 and a connection port 180 .
  • the housing 120 is provided with a first opening 122 and a second opening 124 , the housing 120 has a accommodating space, and both the first opening 122 and the second opening 124 can connect the accommodating space inside the housing 120 with the outside of the housing 120 . connected to the external environment.
  • the lever 140 includes a main body 144 and a protruding portion 142 .
  • the protruding portion 142 is disposed on the main body 144 , and the main body 144 is disposed in the housing 120 .
  • the protruding portion 142 is located in the first opening 122 and protrudes from the housing 120 .
  • the shielding plate 160 is disposed in the casing 120 , the shielding plate 160 is connected with the lever 140 , and the shielding plate 160 shields the second opening 124 .
  • connection port 180 is disposed in the casing 120 and is disposed opposite to the second opening 124 , and the connection port 180 is used for electrical connection with an external device.
  • the lever 140 drives the shutter 160 to move, so as to expose the connection port 180 through the second opening 124 .
  • the wearable device can realize many functions through its internal function modules, such as recording operation information, monitoring body information, and providing voice services.
  • Wearable devices need to be equipped with connection ports for functions such as charging or data transmission. If one of the connection ports of the wearable device is exposed to the external environment, the damage of static electricity to the wearable device needs to be considered, and the corresponding internal circuit needs to be strengthened with anti-static design to prevent the wearable device from being directly damaged by static electricity.
  • water or other conductors in the external environment may connect the connection ports, resulting in short-circuit damage.
  • the connection port is exposed to the external environment for a long time, and it is easily corroded by liquids such as water vapor and sweat. Over time, it is easy to oxidize and cause poor contact.
  • connection port 180 of the wearable device 100 is disposed in the housing 120 .
  • the shielding plate 160 does not block the second opening 124 , and the connection port 180 can pass through the second opening 124 .
  • the opening 124 is electrically connected with the external equipment.
  • the shielding plate 160 shields the second opening 124, and the connection port 180 is isolated from the outside by the shielding plate 160, which can well protect the connection port 180 and make the connection port 180 Abnormalities are not easy to occur, for example, the connection port 180 is not easy to be damaged by collision with external objects, and it is not easy to be short-circuited by water or other conductors in the external environment, and it is not easy to be corroded and oxidized by external liquids, resulting in poor contact.
  • the shielding plate 160 isolates the connection port 180 from the outside world, and the connection port 180 is not easily affected by the static electricity of the outside world. It is not necessary to set a complex anti-static circuit corresponding to the connection port 180 inside the housing 120, which can optimize the circuit design and reduce the cost. At the same time, it does not affect the anti-static performance.
  • the first opening 122 and the second opening 124 may be disposed on different sides of the casing 120 .
  • the first opening 122 is opened at the first side 126 of the casing 120
  • the second opening 124 is opened at the second side 128 of the casing 120
  • the first side 126 and the second side 128 are adjacent.
  • the first opening 122 and the second opening 124 are arranged on different sides, so that the protruding part 142 of the lever 140 and the shielding plate 160 are located in different directions, and the protruding part 142 and the shielding plate 160 will not interfere with each other, which is convenient for connecting ports After the 180 is exposed, it is electrically connected to an external device.
  • first opening and the second opening can also be provided on the same side of the housing, and the user can manually toggle the protrusion of the lever to move the lever and the shutter to expose the connection port.
  • the lever 140 and the shielding plate 160 are located in different directions.
  • the lever 140 needs to be connected with the shielding plate 160 through a driving mechanism, so that the movement of the lever 140 drives the shielding plate 160 to move.
  • the driving structure may be a gear set 150 .
  • the shift rod 140 is connected to the shielding plate 160 through the gear set 150 , and the shifting rod 140 drives the shielding plate 160 to move through the gear set 150 .
  • the gear set 150 may include a first gear 152 and a second gear 154, so the first gear 152 and the second gear 154 are engaged, the lever 140 drives the first gear 152 to rotate, the first gear 152 drives the second gear 154 to rotate, and the second gear 154 rotates.
  • the gear 154 drives the shielding plate 160 to move.
  • the protruding portion 142 drives the lever 140 to move upward, it drives the first gear 152 to rotate in the first direction, the first gear 152 drives the second gear 154 to rotate in the second direction, and the second gear 154 drives the shielding plate 160 to rotate.
  • the lever 140 may be provided with a first rack structure, and the first rack structure may mesh with the first gear 152 and drive the first gear 152 to rotate.
  • a second rack structure can also be provided on the shielding plate 160 , and the second rack structure can be engaged with the second gear 154 , so that the shielding plate 160 is driven by the second gear 154 .
  • a third opening may be provided on the shielding plate 160 , and the second gear 154 drives the shielding plate 160 to move, so that the third opening and the second opening 124 are disposed opposite to each other, thereby exposing the connection port 180 .
  • the lever 140 in order to better allow the lever 140 and the shielding plate 160 to move and limit the moving direction of the lever 140 and the shielding plate 160, the lever 140 can be set on the first track, and the shielding plate 160 can be set on the second track, so that the The lever 140 moves along the first track, and the shielding plate 160 moves along the second track.
  • the gear set may also be a gear.
  • the protrusion drives the lever to move upward, it drives the gear to rotate in the first direction, and the gear drives the shielding plate to move to the left, so that the shielding plate no longer blocks the second opening.
  • the connection port is exposed through the second opening.
  • a first rack structure can be arranged on the lever, and the first rack structure can mesh with the gear and drive the first gear to rotate.
  • a second rack structure can also be arranged on the shielding plate, and the second rack structure can be engaged with the gear, so that the shielding plate is driven by the gear.
  • the gear set can also be 3 gears or more, and the shift lever drives the shutter to move through the gear meshing of the multiple gears.
  • each gear in the embodiments of the present application may be fixed in the housing through a fixed shaft in the middle of the gear.
  • the driving structure may be a flexible connecting rope.
  • the lever is connected to the shielding plate through the flexible connecting rope, and the moving lever drives the shielding plate to move through the flexible connecting rope.
  • the lever is arranged on the first track, and the shielding plate is arranged on the second track.
  • the flexible connecting rope drives the shielding plate to move along the second track, so that the shielding plate no longer blocks the second opening. For example, the shielding plate moves from above the second opening to the side, and no longer shields the second opening.
  • the third opening of the shielding plate is staggered from the second opening, and when the lever moves, the third opening of the shielding plate is driven to move above the second opening, so that the third opening and the second opening are arranged opposite to each other, thereby exposing the connection. port.
  • the wearable device 100 further includes an elastic member 170 .
  • the elastic member 170 is disposed in the casing 120 , one end is fixedly connected to the inner wall of the casing 120 , and the other end is fixedly connected to the lever 140 .
  • the lever 140 drives the shutter 160 to move to expose the connection port 180 through the second opening 124 , the elastic member 170 is elastically deformed.
  • the elastic member 170 is elastically deformed to generate an elastic restoring force, so that the elastic member 170 can restore the lever 140 and the shielding plate 160 to their previous positions, that is, the elastic member 170 drives the lever 140 to move, and drives the shielding plate 160 to move, so as to shield the second opening 124 and isolate the connection port 180 from the external environment outside the casing 120 .
  • the elastic member 170 may be disposed at a position away from the gear set 150 , or may be disposed at a position adjacent to the gear set 150 , as shown in FIGS. 4 and 5 .
  • the wearable device 100 may be glasses, and the structure of the glasses may refer to the wearable device in any one of the above-mentioned embodiments, which will not be repeated here.
  • the glasses may include a frame 110 and temples 130 , and the lever 140 , the shielding plate 160 and the connection port 180 are all disposed on the temples 130 .
  • connection port 180 is disposed on the temple 130 to facilitate electrical connection with external devices. Moreover, the setting of the lever 140 , the shielding plate 160 and the connection port 180 on the temple 130 will not affect the use of the frame 110 . For example, the thickness and weight of the spectacle frame 110 will not increase significantly, which has little effect on the user's wearing. If the spectacle frame 110 is too heavy, it will cause excessive pressure and burden on the bridge of the user's nose.
  • FIG. 6 is a schematic diagram of a fifth internal structure of the wearable device shown in FIG. 1 .
  • the connection port 180 includes a metal contact 182 and a first magnet 184.
  • the metal contact 182 is electrically connected to the interface of the external device, and the first magnet 184 is magnetically attracted to the interface of the external device.
  • the first magnet 184 of the connection port 180 is magnetically attracted to the interface of the external device, so that the metal contact 182 is conveniently connected to the interface of the external device.
  • FIG. 7 is a schematic structural diagram of the wearable device and the placing box in the wearable device shown in FIG. 1
  • FIG. 8 is another view of the wearable device and the placing box in the wearable device shown in FIG. 1
  • a schematic diagram of the structure When the glasses are set in the storage box 200, the protrusion 142 abuts against the protrusion 220 of the storage box 200, and the protrusion 142 moves in the first opening 122 through the protrusion 220 and drives the lever 140 and the shutter 160 to move,
  • the connection port 180 is exposed through the second opening 124 .
  • the connection port 180 is electrically connected to the interface of the external device passing through the second opening 124 , and the interface includes the contact metal post 240 of the protrusion 220 .
  • the metal contacts 182 of the connection port 180 are designed under the temples 130 , and the contact metal posts 240 are provided at the positions of the placement box 200 corresponding to the metal contacts 182 of the temples 130 .
  • the metal contacts 182 of the glasses and the contact metal posts 240 of the placing box 200 can be automatically connected by using a magnetic attraction function.
  • the interface also includes a second magnet that mates with the contact metal post 240 .
  • the contact metal posts 240 in the placement box 200 should be higher than the periphery by a certain size.
  • the inside of the placing box 200 is also provided with a protrusion 220.
  • the protrusion 220 is just caught on the protruding part 142 on the side of the temple 130, so that the protruding part 142 moves in the first opening 122, Therefore, the protruding portion 142 drives the lever 140 to move upward.
  • An elastic member and a gear set 150 are designed inside the temple 130 , and the movement of the shielding plate 160 can be realized by the lever 140 on the side of the temple 130 .
  • the toggle lever 140 can move the shutter 160 to expose the metal contacts 182 , and the contact metal posts 240 can extend into the housing through the second opening 124 into the body 120 and then contact the metal contacts 182 inside.
  • the shielding plate 160 shields the second opening 124, and the metal contacts 182 inside cannot be contacted from the outside, thereby protecting the metal contacts 182 of the glasses.
  • the shielding plate 160 exposes the metal contacts 182, so when the glasses are placed in the placing box 200, the protrusion 220 of the placing box 200 just touches the protruding portion 142 of the lever 140, so that the protruding portion 142 drives the The lever 140 moves, and the lever 140 drives the shielding plate 160 to move, so that the shielding plate 160 does not block the second opening 124 and exposes the metal contacts 182 .
  • Metal contacts 182 inside the legs 130 make contact. Under the action of magnetic attraction, the metal contact 182 and the contact metal post 240 can be conveniently connected together and achieve electrical communication.
  • the protrusion 142 of the lever 140 is no longer affected by the protrusion 220 in the storage box 200.
  • the lever 140 Under the action of the elastic restoring force of the elastic member, the lever 140 returns to the original position, driving the The shielding plate 160 returns to the original position, and the shielding plate 160 shields the second opening 124 again to isolate the metal contacts 182 from the external environment, so as to protect the metal contacts 182 in the housing 120 .
  • a first battery may be included in the placement box
  • a second battery may be included in the glasses
  • the first battery of the placement box may charge the second battery in the glasses through the contact metal posts and the metal contacts.
  • the placement box can communicate with the functional modules in the glasses through the contact metal posts and metal contacts, such as installing new software, updating the software of the functional modules, updating the account and password of the wireless network, and the like.
  • Glasses can be used as visual intelligent auxiliary equipment for mobile terminals.
  • glasses can display information such as time, weather, and exercise steps to users. Specifically, they can be displayed and displayed to users through the lenses of glasses.
  • the glasses can also provide functions such as arrival reminders, timed alarm clocks, voice calls, to-do reminders, etc. Users can obtain instant messages, answer voice calls, etc. through the glasses without holding the mobile terminal.
  • the mobile terminal can always be placed in a pocket or bag. In the bag, no need to take it out to operate.
  • the display interface of the mobile terminal such as the main interface, notification bar, application program interface, etc. of the mobile terminal, can also be obtained through the glasses.
  • a voice module can be integrated on the glasses, and the voice module can realize voice recognition and voice control functions, such as controlling the display of the glasses according to the voice, obtaining voice and implementing the translation function (convenient for users to communicate with foreigners), and can also play audio (such as music, radio Wait).
  • voice recognition and voice control functions such as controlling the display of the glasses according to the voice, obtaining voice and implementing the translation function (convenient for users to communicate with foreigners), and can also play audio (such as music, radio Wait).
  • a positioning module can also be integrated on the glasses, and the glasses can realize the navigation function according to the positioning module, and display the navigation information such as maps or road directions on the lens, and can also be superimposed with the real image to realize the increase of the real display function.
  • the user does not need to look down at the mobile terminal, and can travel according to the navigation information displayed by the lens.
  • you can also play the navigation voice through the voice dial to assist the navigation.
  • a touch module can also be integrated on the glasses, and the functional modules of the glasses can be controlled through the touch module. Such as answering voice calls, turning off the alarm clock, adjusting the volume, etc.
  • the lenses of the glasses can be sunglasses lenses, and the glasses not only have strong intelligent functions, but also have better appearance and practicability. It can be understood that when the lens can realize the display function, the lens can be a special lens, such as superimposing an ultra-thin and high-transmittance flexible display screen.
  • FIG. 9 is a schematic structural diagram of the placement box provided by an embodiment of the present application
  • FIG. 10 is a partial structural schematic diagram of the interior of the placement box shown in FIG. 9
  • the placing box 200 is used for placing the wearable device 100 , and the wearable device 100 may be the wearable device 100 in any one of the foregoing embodiments, and the structure of the wearable device 100 will not be repeated here.
  • the wearable device may be glasses, and the specific structure of the glasses may be the glasses structure in any one of the above embodiments, which will not be repeated here.
  • the placement box 200 includes a protrusion 220 and an interface 210 .
  • the protrusion 220 abuts against the protruding portion 142 of the wearable device 100 and moves the protruding portion 142 in the first opening 122 and drives the lever 140 and the shutter 160 to move, so as to expose the connection port 180 through the second opening 124 .
  • the interface 210 of the placing box 200 is electrically connected to the connection port 180 through the second opening 124 .
  • FIG. 11 is a schematic structural diagram of a placing box and a wearable device according to an embodiment of the present application.
  • the placing box 200 further includes a first battery 260 , and the first battery 260 charges the second battery 190 of the wearable device 100 through the interface 210 and the connection port 180 .
  • the placing case 200 can charge the wearable device 100 .
  • the placing box 200 can be connected to the commercial power, and the commercial power can be converted into a voltage and current for charging the wearable device 100 through an internal voltage conversion circuit, or the first battery 260 can be charged by using the commercial power.
  • FIG. 12 is another schematic structural diagram of a placing box and a wearable device provided by an embodiment of the present application.
  • the interface 210 includes a second magnet 280 and a contact metal post 240 of the protrusion 220 , the contact metal post 240 is electrically connected to the metal contact 182 of the connection port 180 through the second opening 124 , and the second magnet 280 is connected to the wearable
  • the connection port 180 of the device 100 is magnetically attracted.
  • the placing box 200 can be used to place wearable devices 100 such as glasses, bracelets, and helmets, and be electrically connected to the wearable device 100 to charge or transmit data to the wearable device 100 .
  • the following description takes the placement box as the placement box as an example.
  • the placement box 200 is provided with contact metal posts 240 and protrusions 220 , and both the contact metal posts 240 and the protrusions 220 protrude from the bottom of the placement box 200 .
  • the metal contacts 182 of the glasses are designed under the temples 130, and the contact metal posts 240 of the placement box 200 and the metal contacts 182 of the glasses can be automatically connected by a magnetic attraction function.
  • the interface 210 of the placement box 200 further includes: The second magnet 280 , which cooperates with the contact metal post 240 , and/or the glasses also includes a first magnet 184 , which cooperates with the metal contact 182 .
  • the protrusion 220 of the placing box 200 is just caught on the protrusion 142 on the side of the temple 130 when the glasses are placed in the placing case 200, so that the protrusion 142 moves in the first opening 122, so that the protrusion 142 drives the lever 140. Move up.
  • the inside of the temple 130 is provided with an elastic member and a gear set 150 , and the movement of the shielding plate 160 can be realized by the lever 140 on the side of the temple 130 .
  • the toggle lever 140 can move the shutter 160 to expose the metal contacts 182 , and the contact metal posts 240 can extend into the housing through the second opening 124 into the body 120 and then contact the metal contacts 182 inside.
  • the shielding plate 160 shields the second opening 124, and the metal contacts 182 inside cannot be contacted from the outside, thereby protecting the metal contacts 182 of the glasses.
  • the shielding plate 160 exposes the metal contacts 182, so when the glasses are placed in the placing box 200, the protrusion 220 of the placing box 200 just touches the protruding portion 142 of the lever 140, so that the protruding portion 142 drives the The lever 140 moves, and the lever 140 drives the shielding plate 160 to move, so that the shielding plate 160 does not block the second opening 124 and exposes the metal contacts 182 .
  • Metal contacts 182 inside the legs 130 make contact. Under the action of magnetic attraction, the metal contact 182 and the contact metal post 240 can be conveniently connected together and achieve electrical communication.
  • the protrusion 142 of the lever 140 is no longer affected by the protrusion 220 in the storage box 200.
  • the lever 140 Under the action of the elastic restoring force of the elastic member, the lever 140 returns to the original position, driving the The shielding plate 160 returns to the original position, and the shielding plate 160 shields the second opening 124 again to isolate the metal contacts 182 from the external environment, so as to protect the metal contacts 182 in the housing 120 .
  • FIG. 13 is a schematic structural diagram of a wearable device assembly provided by an embodiment of the present application
  • FIG. 14 is a wearable device provided by an embodiment of the present application.
  • the wearable device assembly 10 includes a wearable device 100 and a placement box 200.
  • the wearable device 100 may be the wearable device in any of the above embodiments, and the wearable device will not be repeated here
  • the placement box 200 may be any of the above-mentioned wearable devices.
  • the placement box in one embodiment, the placement box will not be repeated here.
  • the wearable device in this embodiment may be glasses, and the specific structure of the glasses may be the glasses structure in any one of the above embodiments, which will not be repeated here.
  • Wearable device components can be set as desired, such as glasses and glasses cases, wristbands and wristbands or helmets and helmet cases, earphones and earphone cases, etc.
  • first and second are only used for descriptive purposes, and cannot be understood as indicating or implying relative importance or implying the number of indicated technical features. Thus, features defined as “first”, “second” may expressly or implicitly include one or more features. In the description of the present application, “plurality” means two or more, unless otherwise expressly and specifically defined.

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

Abstract

一种穿戴式设备(100)、眼镜(100)、放置盒(200)及穿戴式设备组件(10),穿戴式设备(100)包括:壳体(120),设有第一开口(122)和第二开口(124);拨杆(140),包括主体(144)和突出部(142),主体(144)设置于壳体(120)内,突出部(142)位于第一开口(122);遮挡板(160),遮挡第二开口(124);以及连接端口(180),设置于壳体(120)内;当突出部(142)带动拨杆(140)移动时,拨杆(140)驱动遮挡板(160)移动,以通过第二开口(124)露出连接端口(180)。

Description

穿戴式设备、眼镜、放置盒及穿戴式设备组件
本申请要求于2020年08月20日提交中国专利局、申请号为202010844646.3、申请名称为“穿戴式设备、眼镜、放置盒及穿戴式设备组件”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
本申请涉及电子技术领域,特别涉及一种穿戴式设备、眼镜、放置盒及穿戴式设备组件。
背景技术
随着智能技术的发展,能够实现更多功能的穿戴式设备所应用的领域越来越多,穿戴式设备也越来越受用户欢迎,为用户的生活、工作带来了极大的便利。但是相关技术中的穿戴式设备的连接端口容易出现异常。
发明内容
本申请实施例提供一种穿戴式设备、眼镜、放置盒及穿戴式设备组件,能够改善穿戴式设备的连接端口接触不良的问题。
本申请实施例提供一种穿戴式设备,其包括:
壳体,设有第一开口和第二开口;
拨杆,包括主体和突出部,所述突出部设置于所述主体上,所述主体设置于所述壳体内,所述突出部位于所述第一开口,且突出于所述壳体;遮挡板,设置于所述壳体内,所述遮挡板与所述拨杆连接,所述遮挡板遮挡所述第二开口;以及
连接端口,设置于所述壳体内,并相对所述第二开口设置,所述连接端口用于与外部设备电性连接;
其中,当所述突出部在所述第一开口内移动并带动所述拨杆移动时,所述拨杆驱动所述遮挡板移动,以通过所述第二开口露出所述连接端口。
本申请实施例还提供一种眼镜,其包括:
壳体,设有第一开口和第二开口;
拨杆,包括主体和突出部,所述突出部设置于所述主体上,所述主体设置于所述壳体内,所述突出部位于所述第一开口,且突出于所述壳体;
遮挡板,设置于所述壳体内,所述遮挡板与所述拨杆连接,所述遮挡板遮挡所述第二 开口;以及
连接端口,设置于所述壳体内,并相对所述第二开口设置,所述连接端口用于与外部设备电性连接;
其中,当所述突出部在所述第一开口内移动并带动所述拨杆移动时,所述拨杆驱动所述遮挡板移动,以通过所述第二开口露出所述连接端口。
本申请实施例还提供一种放置盒,所述放置盒用于放置穿戴式设备,所述穿戴式设备如上述所述的穿戴式设备,所述放置盒包括:
凸起,所述凸起抵接所述穿戴式设备的突出部,并使所述突出部在所述第一开口内移动并带动所述拨杆和所述遮挡板移动,以通过所述第二开口露出所述连接端口;以及
接口,经过所述第二开口与所述连接端口电性连接。
本申请实施例还提供一种放置盒,所述放置盒用于放置眼镜,所述眼镜如上述所述的眼镜,所述放置盒包括:
凸起,所述凸起抵接所述穿戴式设备的突出部,并使所述突出部在所述第一开口内移动并带动所述拨杆和所述遮挡板移动,以通过所述第二开口露出所述连接端口;以及
接口,经过所述第二开口与所述连接端口电性连接。
本申请实施例还提供一种穿戴式设备组件,其包括:
穿戴式设备,所述穿戴式设备如上述所述的穿戴式设备;以及
放置盒,所述放置盒如上述所述的放置盒。
本申请实施例还提供一种穿戴式设备组件,其包括:
眼镜备,所述眼镜如上述所述的眼镜;以及
放置盒,所述放置盒如上述所述的放置盒。
附图说明
为了更清楚地说明本申请实施例中的技术方案,下面将对实施例描述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附图。
图1为本申请实施例提供的穿戴式设备的结构示意图。
图2为图1所示穿戴式设备中的第一种内部结构示意图。
图3为图1所示穿戴式设备中的第二种内部结构示意图。
图4为图1所示穿戴式设备中的第三种内部结构示意图。
图5为图1所示穿戴式设备中的第四种内部结构示意图。
图6为图1所示穿戴式设备中的第五种内部结构示意图。
图7为图1所示穿戴式设备中的穿戴式设备和放置盒的结构示意图。
图8为图1所示穿戴式设备中的穿戴式设备和放置盒的另一结构示意图。
图9为本申请实施例提供的放置盒的结构示意图。
图10为图9所示放置盒内部的部分结构示意图。
图11为本申请实施例提供的放置盒和穿戴式设备的结构示意图。
图12为本申请实施例提供的放置盒和穿戴式设备的另一结构示意图。
图13为本申请实施例提供的穿戴式设备组件的结构示意图。
图14为本申请实施例提供的穿戴式设备组件的另一结构示意图。
具体实施方式
本申请实施例提供一种穿戴式设备,其包括:
壳体,设有第一开口和第二开口;
拨杆,包括主体和突出部,所述突出部设置于所述主体上,所述主体设置于所述壳体内,所述突出部位于所述第一开口,且突出于所述壳体;
遮挡板,设置于所述壳体内,所述遮挡板与所述拨杆连接,所述遮挡板遮挡所述第二开口;以及
连接端口,设置于所述壳体内,并相对所述第二开口设置,所述连接端口用于与外部设备电性连接;
其中,当所述突出部在所述第一开口内移动并带动所述拨杆移动时,所述拨杆驱动所述遮挡板移动,以通过所述第二开口露出所述连接端口。
其中,所述第一开口开设于所述壳体的第一侧边,所述第二开口开设于所述壳体的第二侧边,所述第一侧边和所述第二侧边邻接。
其中,所述拨杆通过齿轮组连接所述遮挡板,所述拨杆通过所述齿轮组带动所述遮挡板移动。
其中,所述齿轮组包括第一齿轮和第二齿轮,所述第一齿轮和所述第二齿轮啮合,所述拨杆带动所述第一齿轮转动,所述第一齿轮带动所述第二齿轮转动,所述第二齿轮带动所述遮挡板移动。
其中,所述穿戴式设备还包括弹性部件,所述弹性部件设置于所述壳体内,且一端与 所述壳体内壁固定连接,另一端与所述拨杆固定连接;
当所述遮挡板通过所述第二开口露出所述连接端口后,所述弹性部件带动所述拨杆移动,并驱动所述遮挡板移动,以遮挡所述第二开口。
本申请实施例还提供一种眼镜,其包括:
壳体,设有第一开口和第二开口;
拨杆,包括主体和突出部,所述突出部设置于所述主体上,所述主体设置于所述壳体内,所述突出部位于所述第一开口,且突出于所述壳体;
遮挡板,设置于所述壳体内,所述遮挡板与所述拨杆连接,所述遮挡板遮挡所述第二开口;以及
连接端口,设置于所述壳体内,并相对所述第二开口设置,所述连接端口用于与外部设备电性连接;
其中,当所述突出部在所述第一开口内移动并带动所述拨杆移动时,所述拨杆驱动所述遮挡板移动,以通过所述第二开口露出所述连接端口。
其中,所述第一开口开设于所述壳体的第一侧边,所述第二开口开设于所述壳体的第二侧边,所述第一侧边和所述第二侧边邻接。
其中,所述拨杆通过齿轮组连接所述遮挡板,所述拨杆通过所述齿轮组带动所述遮挡板移动。
其中,所述齿轮组包括第一齿轮和第二齿轮,所述第一齿轮和所述第二齿轮啮合,所述拨杆带动所述第一齿轮转动,所述第一齿轮带动所述第二齿轮转动,所述第二齿轮带动所述遮挡板移动。
其中,所述眼镜还包括弹性部件,所述弹性部件设置于所述壳体内,且一端与所述壳体内壁固定连接,另一端与所述拨杆固定连接;
当所述遮挡板通过所述第二开口露出所述连接端口后,所述弹性部件带动所述拨杆移动,并驱动所述遮挡板移动,以遮挡所述第二开口。
其中,所述眼镜包括镜框和眼镜腿,所述拨杆、所述遮挡板和所述连接端口均设置于所述眼镜腿。
其中,所述连接端口包括金属触点和第一磁体,所述金属触点用于与外部设备的接口电性连接,所述第一磁体与所述外部设备的接口磁性吸合。
其中,当所述眼镜设置于放置盒时,所述突出部与所述放置盒的凸起抵接,并通过所 述凸起使所述突出部在所述第一开口内移动并带动所述拨杆和所述遮挡板移动,以通过所述第二开口露出所述连接端口;
所述连接端口与经过所述第二开口的所述外部设备的接口电性连接,所述接口包括凸起的触点金属柱。
本申请实施例还提供一种放置盒,其中,所述放置盒用于放置穿戴式设备,所述穿戴式设备为如上述任意一个实施例中所述的穿戴式设备,所述放置盒包括:
凸起,所述凸起抵接所述穿戴式设备的突出部,并使所述突出部在所述第一开口内移动并带动所述拨杆和所述遮挡板移动,以通过所述第二开口露出所述连接端口;以及
接口,经过所述第二开口与所述连接端口电性连接。
其中,所述接口包括第二磁体和凸起的触点金属柱,所述触点金属柱经过所述第二开口与所述连接端口的金属触点电性连接,所述第二磁体与所述穿戴式设备的所述连接端口磁性吸合。
本申请实施例还提供一种放置盒,其中,所述放置盒用于放置眼镜,所述眼镜为如上述任意一个实施例中所述的眼镜,所述放置盒包括:
凸起,所述凸起抵接所述眼镜的突出部,并使所述突出部在所述第一开口内移动并带动所述拨杆和所述遮挡板移动,以通过所述第二开口露出所述连接端口;以及
接口,经过所述第二开口与所述连接端口电性连接。
其中,所述放置盒还包括第一电池,所述第一电池通过所述接口和所述连接端口给所述眼镜的第二电池充电。
其中,所述接口包括第二磁体和凸起的触点金属柱,所述触点金属柱经过所述第二开口与所述连接端口的金属触点电性连接,所述第二磁体与所述眼镜的所述连接端口磁性吸合。
本申请实施例还提供一种穿戴式设备组件,其包括:
穿戴式设备,所述穿戴式设备为上述任意一个实施例所述的穿戴式设备;以及
放置盒,所述放置盒为上述任意一个实施例所述的放置盒。
本申请实施例还一种穿戴式设备组件,其包括:
眼镜,所述眼镜为上述任意一个实施例所述的眼镜;以及
放置盒,所述放置盒为上述任意一个实施例所述的放置盒。
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,本领域技术人员在没有作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。
本申请实施例提供一种穿戴式设备,穿戴式设备可以为智能眼镜、智能手环、智能头盔和耳机等设备中的一种。请参阅图1至图3,图1为本申请实施例提供的穿戴式设备的结构示意图,图2为图1所示穿戴式设备中的第一种内部结构示意图,图3为图1所示穿戴式设备中的第二种内部结构示意图。穿戴式设备100包括壳体120、拨杆140、遮挡板160和连接端口180。其中,壳体120设有第一开口122和第二开口124,壳体120内具有一容纳空间,第一开口122和第二开口124均可以将壳体120内的容纳空间与壳体120外的外部环境连通。
拨杆140包括主体144和突出部142,突出部142设置于主体144上,主体144设置于壳体120内,突出部142位于第一开口122,且突出于壳体120。
遮挡板160设置于壳体120内,遮挡板160与拨杆140连接,遮挡板160遮挡第二开口124。
连接端口180设置于壳体120内,并相对第二开口124设置,连接端口180用于与外部设备电性连接。
其中,当突出部142在第一开口122内移动并带动拨杆140移动时,拨杆140驱动遮挡板160移动,以通过第二开口124露出连接端口180。
需要说明的是,相关技术中,穿戴式设备能够通过其内部的功能模块实现很多功能,如记录运行信息、监测身体信息、提供语音服务等。穿戴式设备需要设置连接端口以实现充电或数据传输等功能。穿戴式设备的连接端口若一种裸露在外部环境中,需要考虑静电对穿戴式设备的伤害,相应的内部电路需要加强防静电设计,防止静电将穿戴式设备直接打坏。另外,外部环境的水或者其他导体可能会将连接端口连通,导致短路损坏。连接端口长时间暴露在外部环境,容易受到水汽、汗液等液体侵蚀,久而久之容易氧化导致接触不良。
本实施例中的穿戴式设备100的连接端口180设置于壳体120内,当连接端口180需要与外部设备电性连接时,遮挡板160不遮挡第二开口124,连接端口180可以通过第二开口124与外部设备电性连接,当连接端口180不使用时,遮挡板160遮挡第二开口124,连接端口180与外界通过遮挡板160隔离,可以很好的保护连接端口180,使连接端口180 不容易出现异常,如使连接端口180不容易被外界物体碰撞损坏,也不容易被外部环境的水或者其他导体造成短路,也不容易被外界的液体侵蚀氧化导致接触不良。另外,遮挡板160将连接端口180与外界隔离,连接端口180不容易被外界的静电影响,不需要在壳体120内部对应连接端口180设置复杂的防静电电路,可以优化电路设计,降低成本,同时不影响防静电性能。
其中,第一开口122和第二开口124可以设置于壳体120的不同侧边。示例性地,第一开口122开设于壳体120的第一侧边126,第二开口124开设于壳体120的第二侧边128,第一侧边126和第二侧边128邻接。设置于不同侧边的第一开口122和第二开口124,使拨杆140的突出部142和遮挡板160位于不同的方向,突出部142和遮挡板160相互之间不会干扰,方便连接端口180露出后与外部设备电性连接。
需要说明的是,第一开口和第二开口也可以设置在壳体的同一侧边,用户可以手动拨动拨杆的突出部,从而移动拨杆和遮挡板,使连接端口露出。
请继续参阅图2和图3,拨杆140与遮挡板160位于不同的方向,拨杆140需要通过一驱动机构与遮挡板160连接,以实现拨杆140移动带动遮挡板160移动。驱动结构可以为齿轮组150,具体的,拨杆140通过齿轮组150连接遮挡板160,拨杆140通过齿轮组150带动遮挡板160移动。
齿轮组150可以包括第一齿轮152和第二齿轮154,所第一齿轮152和第二齿轮154啮合,拨杆140带动第一齿轮152转动,第一齿轮152带动第二齿轮154转动,第二齿轮154带动遮挡板160移动。
示例性地,突出部142带动拨杆140向上运动时,带动第一齿轮152沿第一方向旋转,第一齿轮152带动第二齿轮154沿第二方向旋转,第二齿轮154带动遮挡板160向右移动,使遮挡板160不再遮挡第二开口124,通过第二开口124露出连接端口180。其中,拨杆140上可以设置第一齿条结构,第一齿条结构可以和第一齿轮152啮合,并带动第一齿轮152转动。遮挡板160上也可以设置第二齿条结构,第二齿条结构可以和第二齿轮154啮合,使遮挡板160被第二齿轮154带动。遮挡板160上可以设置第三开口,第二齿轮154带动遮挡板160移动,使第三开口和第二开口124相对设置,从而露出连接端口180。
其中,为了更好的让拨杆140和遮挡板160移动,限制拨杆140和遮挡板160的移动方向,可以将拨杆140设置于第一轨道,将遮挡板160设置于第二轨道,使拨杆140沿第一轨道移动,遮挡板160沿第二轨道移动。
在其他一些实施例中,齿轮组也可以为一个齿轮,突出部带动拨杆向上运动时,带动齿轮沿第一方向旋转,齿轮带动遮挡板向左移动,使遮挡板不再遮挡第二开口,通过第二开口露出连接端口。其中,拨杆上可以设置第一齿条结构,第一齿条结构可以和齿轮啮合,并带动第一齿轮转动。遮挡板上也可以设置第二齿条结构,第二齿条结构可以和齿轮啮合,使遮挡板被齿轮带动。齿轮组也可以为3个齿轮或更多个齿轮,拨杆通过多个齿轮的齿轮啮合带动遮挡板移动。
可以理解的,本申请实施例中的每一个齿轮都可以通过齿轮中间的固定轴固定在壳体内。
在其他一些实施例中,驱动结构可以为柔性连接绳,具体的,拨杆通过柔性连接绳连接遮挡板,拨杆通过柔性连接绳带动遮挡板运动。拨杆设置于第一轨道,遮挡板设置于第二轨道,当驱动拨杆沿第一轨道移动时,通过柔性连接绳带动遮挡板沿第二轨道移动,使遮挡板不再遮挡第二开口。例如,遮挡板从第二开口上方移动到侧边,不再遮挡第二开口。又例如,初始状态,遮挡板的第三开口错开第二开口,拨杆移动时,带动遮挡板的第三开口移动到第二开口上方,使第三开口和第二开口相对设置,从而露出连接端口。
请继续参阅图2和图3,穿戴式设备100还包括弹性部件170,弹性部件170设置于壳体120内,且一端与壳体120内壁固定连接,另一端与拨杆140固定连接。当拨杆140带动遮挡板160移动,以通过第二开口124露出连接端口180时,弹性部件170产生弹性形变。当遮挡板160通过第二开口124露出连接端口180后,弹性部件170产生弹性形变可以产生弹性恢复力,从而使弹性部件170能够将拨杆140和遮挡板160恢复到之前的位置,即弹性部件170带动拨杆140移动,并驱动遮挡板160移动,以遮挡第二开口124,使连接端口180与壳体120外的外部环境隔离。
弹性部件170可以设置在远离齿轮组150的位置,也可以设置在邻接齿轮组150的位置,如图4和图5所示。
请继续参阅图1至图4,穿戴式设备100可以为眼镜,眼镜的结构可以参阅上述任意一个实施例中的穿戴式设备,在此不再赘述。眼镜可以包括镜框110和眼镜腿130,拨杆140、遮挡板160和连接端口180均设置于眼镜腿130。
连接端口180设置在眼镜腿130上,方便与外部设备电性连接。而且拨杆140、遮挡板160和连接端口180设置于眼镜腿130不会影响镜框110的使用。例如,镜框110的厚度和重量不会明显增加,对用户的佩戴影响不大,若镜框110太重会对用户的鼻梁造成过 大的压力和负担。
请参阅图6,图6为图1所示穿戴式设备中的第五种内部结构示意图。连接端口180包括金属触点182和第一磁体184,金属触点182与外部设备的接口电性连接,第一磁体184与外部设备的接口磁性吸合。连接端口180的第一磁体184与外部设备的接口磁性吸合,从而使金属触点182方便的与外部设备的接口连接。
请参阅图7和图8,图7为图1所示穿戴式设备中的穿戴式设备和放置盒的结构示意图,图8为图1所示穿戴式设备中的穿戴式设备和放置盒的另一结构示意图。当眼镜设置于放置盒200时,突出部142与放置盒200的凸起220抵接,并通过凸起220使突出部142在第一开口122内移动并带动拨杆140和遮挡板160移动,以通过第二开口124露出连接端口180。连接端口180与经过第二开口124的外部设备的接口电性连接,接口包括凸起220的触点金属柱240。
示例性地,连接端口180的金属触点182设计在眼镜腿130下方,在放置盒200对应眼镜腿130的金属触点182的位置设置触点金属柱240。眼镜的金属触点182和放置盒200的触点金属柱240可以采用磁吸功能实现自动连接,如连接端口180还包括与金属触点182配合的第一磁体184,和/或放置盒200的接口还包括与触点金属柱240配合的第二磁体。放置盒200里面的触点金属柱240要高出周边一定的尺寸。放置盒200内部还设置有一个凸起220,该凸起220在眼镜放到放置盒200里面时,正好卡到眼镜腿130侧面的突出部142,使突出部142在第一开口122内移动,从而使突出部142带动拨杆140向上移动。
眼镜腿130内部设计弹性件和齿轮组150,通过眼镜腿130侧面的拨杆140可以实现遮挡板160的移动。当眼镜腿130上的金属触点182隐藏在壳体120内部时,拨动拨杆140可以使遮挡板160移动以露出金属触点182,触点金属柱240可以经过第二开口124伸进壳体120内,然后接触到里面的金属触点182。而平时没有拨动时,遮挡板160遮挡住第二开口124,外面无法接触到里面的金属触点182,从而保护了眼镜的金属触点182。
在需要电性连接时,遮挡板160露出金属触点182,所以当眼镜放到放置盒200里面时,放置盒200的凸起220刚好抵到拨杆140的突出部142,使突出部142带动拨杆140移动,拨杆140带动遮挡板160移动,从而使遮挡板160不遮挡第二开口124并露出金属触点182,放置盒200的触点金属柱240伸进眼镜腿130内部,与眼镜腿130内部的金属触点182接触。在磁吸的作用下,金属触点182和触点金属柱240可以方便的连接在一起并实现电性连通。当将眼镜从放置盒200拿出时,拨杆140的突出部142不再受放置盒200 内凸起220的作用,在弹性件的弹性恢复力作用下,拨杆140回到原位置,带动遮挡板160回到原位置,遮挡板160重新遮挡第二开口124,将金属触点182与外界环境隔离,以保护壳体120内金属触点182。
可以理解的,放置盒内可以包括第一电池,眼镜内可以包括第二电池,放置盒的第一电池可以通过触点金属柱和金属触点给眼镜内的第二电池充电。此外,放置盒可以通过触点金属柱和金属触点与眼镜内的功能模块通信,如安装新的软件、更新功能模块的软件、更新无线网络的账号和密码等。
眼镜可以作为移动终端的可视化智能辅助设备,如眼镜可以展示时间、天气、运动步数等信息给用户,具体的可以通过眼镜的镜片显示并展示给用户。眼镜还可以提供到站提醒、定时闹钟、语音电话、待办事项提醒等功能,用户可以不握持移动终端而是通过眼镜获取即时消息、接听语音电话等,移动终端可以一直放置在口袋或包包里,不需要拿出来进行操作。还可以通过眼镜获取移动终端的显示界面,如移动终端的主界面、通知栏、应用程序界面等。
眼镜上可以集成语音模块,语音模块可以实现语音识别和语音控制功能,如根据语音控制眼镜的显示,获取语音并实施翻译功能(方便用户与外国人交流),还可以播放音频(如音乐、广播等)。
眼镜上还可以集成定位模块,眼镜可以根据定位模块实现导航功能,并将导航信息如地图或道路指引等显示在镜片上,还可以和实景图像叠加,实现增加现实显示功能。用户不需要在低头看移动终端,可以根据镜片显示的导航信息行进。此外,还可以通过语音拨快播放导航语音,辅助导航。
眼镜上还可以集成触控模块,可以通过触控模块控制眼镜的功能模块。如接听语音电话、关闭闹钟、调节音量等。
眼镜的镜片可以为太阳镜镜片,眼镜不仅具有较强的智能功能,还具有较好的外观和实用性。可以理解的,当镜片可以实现显示功能时,镜片可以为特质的镜片,如叠加超薄高透光柔性显示屏。
本申请实施例还提供一种放置盒,请参阅图9和图10,图9为本申请实施例提供的放置盒的结构示意图,图10为图9所示放置盒内部的部分结构示意图。放置盒200用于放置穿戴式设备100,穿戴式设备100可以为上述任意一个实施例中的穿戴式设备100,在此不再对穿戴式设备100的结构进行赘述。其中,穿戴式设备可以为眼镜,眼镜的具体结 构可以为上述任意一个实施例中的眼镜结构,在此不再赘述。放置盒200包括凸起220和接口210。凸起220抵接穿戴式设备100的突出部142,并使突出部142在第一开口122内移动并带动拨杆140和遮挡板160移动,以通过第二开口124露出连接端口180。放置盒200的接口210经过第二开口124与连接端口180电性连接。
图11,图11为本申请实施例提供的放置盒和穿戴式设备的结构示意图。放置盒200还包括第一电池260,第一电池260通过接口210和连接端口180给穿戴式设备100的第二电池190充电。当穿戴式设备100放置在放置盒200内时,放置盒200可以给穿戴式设备100充电。
其中,放置盒200可以连接市电,通过内部的电压转换电路将市电转换成给穿戴式设备100充电的电压和电流,或者利用市电给第一电池260充电。
图12,图12为本申请实施例提供的放置盒和穿戴式设备的另一结构示意图。其中,接口210包括第二磁体280和凸起220的触点金属柱240,触点金属柱240经过第二开口124与连接端口180的金属触点182电性连接,第二磁体280与穿戴式设备100的连接端口180磁性吸合。
放置盒200可以用于放置眼镜、手环、头盔等穿戴式设备100,并和穿戴式设备100电性连接,给穿戴式设备100充电或传输数据。下面以放置盒为放置盒为例说明。
示例性地,请继续参阅图11和图12,放置盒200内设有触点金属柱240和凸起220,触点金属柱240和凸起220均凸出于放置盒200的盒底。对应的,眼镜的金属触点182设计在眼镜腿130下方,放置盒200的触点金属柱240和眼镜的金属触点182可以采用磁吸功能实现自动连接,如放置盒200的接口210还包括与触点金属柱240配合的第二磁体280,和/或眼镜还包括与金属触点182配合的第一磁体184。放置盒200的凸起220在眼镜放到放置盒200里面时,正好卡到眼镜腿130侧面的突出部142,使突出部142在第一开口122内移动,从而使突出部142带动拨杆140向上移动。
眼镜腿130内部设置有弹性件和齿轮组150,通过眼镜腿130侧面的拨杆140可以实现遮挡板160的移动。当眼镜腿130上的金属触点182隐藏在壳体120内部时,拨动拨杆140可以使遮挡板160移动以露出金属触点182,触点金属柱240可以经过第二开口124伸进壳体120内,然后接触到里面的金属触点182。而平时没有拨动时,遮挡板160遮挡住第二开口124,外面无法接触到里面的金属触点182,从而保护了眼镜的金属触点182。
在需要电性连接时,遮挡板160露出金属触点182,所以当眼镜放到放置盒200里面 时,放置盒200的凸起220刚好抵到拨杆140的突出部142,使突出部142带动拨杆140移动,拨杆140带动遮挡板160移动,从而使遮挡板160不遮挡第二开口124并露出金属触点182,放置盒200的触点金属柱240伸进眼镜腿130内部,与眼镜腿130内部的金属触点182接触。在磁吸的作用下,金属触点182和触点金属柱240可以方便的连接在一起并实现电性连通。当将眼镜从放置盒200拿出时,拨杆140的突出部142不再受放置盒200内凸起220的作用,在弹性件的弹性恢复力作用下,拨杆140回到原位置,带动遮挡板160回到原位置,遮挡板160重新遮挡第二开口124,将金属触点182与外界环境隔离,以保护壳体120内金属触点182。
本申请实施例还提供一种穿戴式设备组件,请参阅图13和图14,图13为本申请实施例提供的穿戴式设备组件的结构示意图,图14为本申请实施例提供的穿戴式设备组件的另一结构示意图。穿戴式设备组件10包括穿戴式设备100和放置盒200,穿戴式设备100可以为上述任意一个实施例中的穿戴式设备,在此不再对穿戴式设备进行赘述,放置盒200可以为上述任意一个实施例中的放置盒,在此不再对放置盒进行赘述。可以理解的,本实施例中的穿戴式设备可以为眼镜,眼镜的具体结构可以为上述任意一个实施例中的眼镜结构,在此不再赘述。
穿戴式设备组件可以根据需要设置,如眼镜和眼镜盒、手环和手环盒或头盔和头盔盒、耳机和耳机盒等。
在本申请的描述中,术语“第一”、“第二”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括一个或者更多个特征。在本申请的描述中,“多个”的含义是两个或两个以上,除非另有明确具体的限定。
上文的公开提供了许多不同的实施方式或例子用来实现本申请的不同结构。为了简化本申请的公开,上文中对特定例子的部件和设置进行描述。当然,它们仅仅为示例,并且目的不在于限制本申请。
以上对本申请实施例提供的穿戴式设备、眼镜、放置盒及穿戴式设备组件进行了详细介绍。本文中应用了具体个例对本申请的原理及实施方式进行了阐述,以上实施例的说明只是用于帮助理解本申请。同时,对于本领域的技术人员,依据本申请的思想,在具体实施方式及应用范围上均会有改变之处,综上所述,本说明书内容不应理解为对本申请的限制。

Claims (20)

  1. 一种穿戴式设备,其中,包括:
    壳体,设有第一开口和第二开口;
    拨杆,包括主体和突出部,所述突出部设置于所述主体上,所述主体设置于所述壳体内,所述突出部位于所述第一开口,且突出于所述壳体;
    遮挡板,设置于所述壳体内,所述遮挡板与所述拨杆连接,所述遮挡板遮挡所述第二开口;以及
    连接端口,设置于所述壳体内,并相对所述第二开口设置,所述连接端口用于与外部设备电性连接;
    其中,当所述突出部在所述第一开口内移动并带动所述拨杆移动时,所述拨杆驱动所述遮挡板移动,以通过所述第二开口露出所述连接端口。
  2. 根据权利要求1所述的穿戴式设备,其中,所述第一开口开设于所述壳体的第一侧边,所述第二开口开设于所述壳体的第二侧边,所述第一侧边和所述第二侧边邻接。
  3. 根据权利要求2所述的穿戴式设备,其中,所述拨杆通过齿轮组连接所述遮挡板,所述拨杆通过所述齿轮组带动所述遮挡板移动。
  4. 根据权利要求3所述的穿戴式设备,其中,所述齿轮组包括第一齿轮和第二齿轮,所述第一齿轮和所述第二齿轮啮合,所述拨杆带动所述第一齿轮转动,所述第一齿轮带动所述第二齿轮转动,所述第二齿轮带动所述遮挡板移动。
  5. 根据权利要求1所述的穿戴式设备,其中,所述穿戴式设备还包括弹性部件,所述弹性部件设置于所述壳体内,且一端与所述壳体内壁固定连接,另一端与所述拨杆固定连接;
    当所述遮挡板通过所述第二开口露出所述连接端口后,所述弹性部件带动所述拨杆移动,并驱动所述遮挡板移动,以遮挡所述第二开口。
  6. 一种眼镜,其中,包括:
    壳体,设有第一开口和第二开口;
    拨杆,包括主体和突出部,所述突出部设置于所述主体上,所述主体设置于所述壳体内,所述突出部位于所述第一开口,且突出于所述壳体;
    遮挡板,设置于所述壳体内,所述遮挡板与所述拨杆连接,所述遮挡板遮挡所述第二开口;以及
    连接端口,设置于所述壳体内,并相对所述第二开口设置,所述连接端口用于与外部设备电性连接;
    其中,当所述突出部在所述第一开口内移动并带动所述拨杆移动时,所述拨杆驱动所述遮挡板移动,以通过所述第二开口露出所述连接端口。
  7. 根据权利要求6所述的眼镜,其中,所述第一开口开设于所述壳体的第一侧边,所述第二开口开设于所述壳体的第二侧边,所述第一侧边和所述第二侧边邻接。
  8. 根据权利要求7所述的眼镜,其中,所述拨杆通过齿轮组连接所述遮挡板,所述拨杆通过所述齿轮组带动所述遮挡板移动。
  9. 根据权利要求8所述的眼镜,其中,所述齿轮组包括第一齿轮和第二齿轮,所述第一齿轮和所述第二齿轮啮合,所述拨杆带动所述第一齿轮转动,所述第一齿轮带动所述第二齿轮转动,所述第二齿轮带动所述遮挡板移动。
  10. 根据权利要求6所述的眼镜,其中,所述眼镜还包括弹性部件,所述弹性部件设置于所述壳体内,且一端与所述壳体内壁固定连接,另一端与所述拨杆固定连接;
    当所述遮挡板通过所述第二开口露出所述连接端口后,所述弹性部件带动所述拨杆移动,并驱动所述遮挡板移动,以遮挡所述第二开口。
  11. 根据权利要求6所述的眼镜,其中,所述眼镜包括镜框和眼镜腿,所述拨杆、所述遮挡板和所述连接端口均设置于所述眼镜腿。
  12. 根据权利要求11所述的眼镜,其中,所述连接端口包括金属触点和第一磁体,所述金属触点用于与外部设备的接口电性连接,所述第一磁体与所述外部设备的接口磁性吸合。
  13. 根据权利要求12所述的眼镜,其中,当所述眼镜设置于放置盒时,所述突出部与所述放置盒的凸起抵接,并通过所述凸起使所述突出部在所述第一开口内移动并带动所述拨杆和所述遮挡板移动,以通过所述第二开口露出所述连接端口;
    所述连接端口与经过所述第二开口的所述外部设备的接口电性连接,所述接口包括凸起的触点金属柱。
  14. 一种放置盒,其中,所述放置盒用于放置穿戴式设备,所述穿戴式设备如权利要求1-4中任一项所述的穿戴式设备,所述放置盒包括:
    凸起,所述凸起抵接所述穿戴式设备的突出部,并使所述突出部在所述第一开口内移动并带动所述拨杆和所述遮挡板移动,以通过所述第二开口露出所述连接端口;以及
    接口,经过所述第二开口与所述连接端口电性连接。
  15. 根据权利要求14所述的放置盒,其中,所述接口包括第二磁体和凸起的触点金属柱,所述触点金属柱经过所述第二开口与所述连接端口的金属触点电性连接,所述第二磁体与所述穿戴式设备的所述连接端口磁性吸合。
  16. 一种放置盒,其中,所述放置盒用于放置眼镜,所述眼镜如权利要求6-13中任一项所述的眼镜,所述放置盒包括:
    凸起,所述凸起抵接所述眼镜的突出部,并使所述突出部在所述第一开口内移动并带动所述拨杆和所述遮挡板移动,以通过所述第二开口露出所述连接端口;以及
    接口,经过所述第二开口与所述连接端口电性连接。
  17. 根据权利要求16所述的放置盒,其中,所述放置盒还包括第一电池,所述第一电池通过所述接口和所述连接端口给所述眼镜的第二电池充电。
  18. 根据权利要求16所述的放置盒,其中,所述接口包括第二磁体和凸起的触点金属柱,所述触点金属柱经过所述第二开口与所述连接端口的金属触点电性连接,所述第二磁体与所述眼镜的所述连接端口磁性吸合。
  19. 一种穿戴式设备组件,其中,包括:
    穿戴式设备,所述穿戴式设备如权利要求1-4中任一项所述的穿戴式设备;以及
    放置盒,所述放置盒如权利要求14或15所述的放置盒。
  20. 一种穿戴式设备组件,其中,包括:
    眼镜,所述眼镜如权利要求6-13中任一项所述的眼镜;以及
    放置盒,所述放置盒如权利要求16-18中任一项所述的放置盒。
PCT/CN2021/105053 2020-08-20 2021-07-07 穿戴式设备、眼镜、放置盒及穿戴式设备组件 WO2022037302A1 (zh)

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