WO2023279796A1 - 头戴式设备 - Google Patents

头戴式设备 Download PDF

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Publication number
WO2023279796A1
WO2023279796A1 PCT/CN2022/086404 CN2022086404W WO2023279796A1 WO 2023279796 A1 WO2023279796 A1 WO 2023279796A1 CN 2022086404 W CN2022086404 W CN 2022086404W WO 2023279796 A1 WO2023279796 A1 WO 2023279796A1
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WO
WIPO (PCT)
Prior art keywords
leg
lens
head
mounted device
installation
Prior art date
Application number
PCT/CN2022/086404
Other languages
English (en)
French (fr)
Inventor
杨玉林
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 WO2023279796A1 publication Critical patent/WO2023279796A1/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
    • G02B27/0172Head mounted characterised by optical features
    • 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
    • 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
    • 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 belongs to the technical field of smart devices, and in particular relates to a head-mounted device.
  • smart glasses need to be equipped with various hardware to achieve various functions, resulting in a large volume of smart glasses and a lot of weight increase.
  • it is also necessary to bear the weight of the entire smart glasses .
  • a head-mounted device including: a frame structure, provided with a first external interface and a first connection assembly, the first connection assembly is used to generate a magnetic field; an external shell, provided with a second external interface interface and a second connection component, the second connection component is used to generate a magnetic field, and the external shell is configured to be installed on the frame structure when the first connection component and the second connection component interact with each other in a magnetic field
  • the first external interface is configured to abut against the second external interface when the external shell is installed on the frame structure, so that the first external interface is electrically connected to the second external interface
  • the host one part is set in the frame structure, the other part is set in the external shell, the one part is electrically connected to the first external interface, and the other part is electrically connected to the second external interface;
  • the second The first and second functional lenses are arranged in layers, the first functional lens is arranged on the frame structure, the second functional lens is arranged on the external housing, and the first and second functional lenses are
  • a head-mounted device including: a frame structure, provided with a first external interface and a first connection assembly, the first connection assembly is used to generate a magnetic field; an external shell, provided with a second An external interface and a second connection component, the second connection component is used to generate a magnetic field, and the external shell is configured to be installed on the frame structure when the first connection component and the second connection component interact with each other in a magnetic field outside, the first external interface is configured to abut against the second external interface when the external shell is installed on the frame structure, so that the first external interface is electrically connected to the second external interface;
  • a host one part is arranged in the frame structure, the other part is arranged in the external housing, the one part is electrically connected to the first external interface, and the other part is electrically connected to the second external interface; and
  • the first functional lens is arranged on the frame structure or the external shell, and the first functional lens is configured to present a virtual reality/augmented reality environment under the control of the host.
  • a head-mounted device including: a wearing component; an external component, arranged on the wearing component, and a first functional lens, installed on the first installation
  • a lens stack is provided to present a virtual reality/augmented reality environment under the control of the host.
  • the wearing assembly includes: a wearing body; first and second legs, arranged at opposite ends of the wearing body to form a frame structure, and the first leg is provided with a first external interface and a first connecting component , the first connecting component is used to generate a magnetic field; the first and second lenses are symmetrically arranged on the wearing body; and the first battery module is arranged on the first leg, and the first The external interface is electrically connected;
  • the plug-in component includes: a first installation frame, which is respectively arranged on opposite sides of the wearing body with the first leg, and a housing body is arranged on the side where the first leg is far away from the One side of the second outrigger, the end of the housing main body close to the wearing main body is connected and fixed with the first mounting frame, and the side of the housing main body close to the first outrigger is provided with a second An external interface and a second connection component, the second connection component is used to generate a magnetic field, and the housing body is configured to be installed on the first connection component when the magnetic field interacts with the
  • the leg is away from the side of the second leg, and the first external interface is configured to be mounted on the first leg on the housing body and abut against the second external interface, so that the first The external interface is electrically connected to the second external interface;
  • the host is arranged in the main body of the housing and electrically connected to the second external interface.
  • the host includes a second battery module for powering the host.
  • the first battery module is configured to supply power to the host when the first external interface is electrically connected to the second external interface;
  • the application sets the head-mounted device into a split type, for example, one part is the frame structure and the first functional lens, and the other part is the external shell and the second functional lens, which can be based on According to your own needs, you can assemble the two parts to experience the functions of the combination, or you can experience the functions of each part alone.
  • FIG. 1 is a schematic structural diagram of a head-mounted device in an embodiment of the present application
  • FIG. 2 is an exploded view of the head-mounted device in the embodiment shown in FIG. 1 of the present application;
  • Fig. 3 is an exploded view of the wearing assembly in the embodiment shown in Fig. 1 of the present application;
  • Fig. 4 is an exploded view of a viewing angle of the first leg in the embodiment shown in Fig. 3 of the present application;
  • Fig. 5 is an exploded view of another perspective of the first leg in the embodiment shown in Fig. 3 of the present application;
  • Fig. 6 is a schematic structural diagram of the connection between the main body of the leg and the side cover of the leg in the embodiment shown in Fig. 4 of the present application;
  • Fig. 7 is an installation structure diagram of the leg body and the first battery module in the embodiment shown in Fig. 4 of the present application;
  • Fig. 8 is a schematic structural diagram of another embodiment of the wearing assembly in the embodiment shown in Fig. 2 of the present application;
  • Fig. 9 is an exploded view of the wearing assembly in the embodiment shown in Fig. 8 of the present application.
  • Fig. 10 is a structural schematic diagram of a viewing angle of the wearing body in the embodiment shown in Fig. 9 of the present application;
  • Fig. 11 is a structural schematic diagram of another viewing angle of the wearing body in the embodiment shown in Fig. 9 of the present application.
  • Fig. 12 is a schematic structural view of the first leg in the embodiment shown in Fig. 9 of the present application.
  • Fig. 13 is an exploded view of a partial structure of the first leg in the embodiment shown in Fig. 12 of the present application;
  • Fig. 14 is an exploded view of part of the structure from another perspective of the first leg in the embodiment shown in Fig. 12 of the present application;
  • Fig. 15 is a schematic structural diagram of the tightness adjustment assembly in the embodiment shown in Fig. 9 of the present application.
  • Fig. 16 is a structural schematic diagram of a viewing angle when the wearing body is connected to the elastic adjustment assembly in the embodiment shown in Fig. 9 of the present application;
  • Fig. 17 is a structural schematic diagram of another perspective when the wearing body is connected to the elastic adjustment assembly in the embodiment shown in Fig. 9 of the present application;
  • Fig. 18 is a schematic structural diagram of the connection between the first leg and the first adjusting member in the embodiment shown in Fig. 9 of the present application;
  • Figure 19 discloses an exploded view of a perspective of the plug-in component in the embodiment shown in Figure 2 of the present application;
  • Fig. 20 is an exploded view of another perspective of the plug-in component in the embodiment shown in Fig. 2 of the present application;
  • Fig. 21 is a schematic structural view of another embodiment when the second functional lens is connected to the third mounting frame in the embodiment shown in Fig. 19 of the present application;
  • Fig. 22 is an exploded view of the connection between the second functional lens and the third mounting frame in the embodiment shown in Fig. 21 of the present application;
  • Figure 23 is a cross-sectional view of the second functional lens and the third installation frame line XXI-XXI in the embodiment shown in Figure 21 of the present application;
  • FIG. 24 is a schematic structural diagram of the host in the embodiment shown in FIG. 19 of the present application.
  • Fig. 25 is an exploded view of a perspective of the host in the embodiment shown in Fig. 24 of the present application;
  • Fig. 26 is an exploded view of another viewing angle of the host in the embodiment shown in Fig. 24 of the present application;
  • Fig. 27 is a schematic diagram of the installation and fixation of the first housing and the host in the embodiment shown in Fig. 19 of the present application;
  • Fig. 28 is a schematic structural diagram of a head-mounted device in another embodiment of the present application.
  • the present application describes a head-mounted device.
  • the head-mounted device may be an augmented reality or virtual reality device, such as augmented reality or virtual reality glasses.
  • the head-mounted device may also be other devices that need to be worn on the head, such as glasses, for example, devices that have other functions such as lighting and can be worn on the head, and details will not be repeated here.
  • the following uses augmented reality or virtual reality glasses as an example to describe in detail.
  • the head-mounted device may be configured to communicate data to and receive data from the external processing device through a signal connection, which may be a wired connection, a wireless connection, or a combination thereof.
  • a signal connection which may be a wired connection, a wireless connection, or a combination thereof.
  • the headset can be used as a stand-alone device, ie data processing is performed on the headset itself.
  • Signal connections may be configured to carry any kind of data, such as image data (eg, still images and/or full motion video, including 2D and 3D images), audio, multimedia, voice, and/or any other type of data.
  • the external processing device may be, for example, a game console, personal computer, tablet computer, smartphone, or other type of processing device.
  • the signal connection may be, for example, a Universal Serial Bus (USB) connection, a Wi-Fi connection, a Bluetooth or Bluetooth Low Energy (BLE) connection, an Ethernet connection, a cable connection, a DSL connection, a cellular connection (e.g., 3G, LTE/4G or 5G), etc. or a combination thereof.
  • the external processing device may communicate with one or more other external processing devices via a network, which may be or include, for example, a local area network (LAN), a wide area network (WAN), an intranet, a metropolitan area network (MAN), the global Internet, or combination.
  • LAN local area network
  • WAN wide area network
  • MAN metropolitan area network
  • the global Internet or combination.
  • Display components, optics, sensors, processors, etc. can be installed in the head-mounted device.
  • the display assembly is designed to perform the function of virtual reality glasses, e.g., by projecting light into the user's eyes,
  • the overlay image on the view of the world environment realizes the function of the augmented reality glasses.
  • the head mounted device may also include an ambient light sensor, and may also include electronic circuitry to control at least some of the components described above and perform associated data processing functions.
  • Electronic circuitry may include, for example, one or more processors and one or more memories.
  • FIG. 1 is a schematic structural diagram of a head-mounted device in an embodiment of the present application
  • FIG. 2 is an exploded view of the head-mounted device in the embodiment shown in FIG. 1 of the present application.
  • the head-mounted device 100 may include a wearing component 200 and a plug-in component 400 installed on the wearing component 200 .
  • the wearing assembly 200 can be worn on the user's head.
  • the wearable component 200 cooperates with the plug-in component 400 to realize augmented reality or virtual reality functions in front of the user's eyes, and of course other functions can also be realized, which will not be repeated here.
  • FIG. 3 is an exploded view of the wearing assembly 200 in the embodiment shown in FIG. 1 of the present application.
  • the wearing assembly 200 may include a first functional lens 20 , a wearing body 30 for installing the first functional lens 20 , and a support part 40 connected to opposite ends of the wearing body 30 .
  • the wearing body 30 and the supporting part 40 form a frame structure 10 to be worn on the user's head.
  • the frame structure 10 is not limited to the wearing body 30 and the supporting part 40, and it may also include other structures, which will not be repeated here.
  • the first functional lens 20 is set corresponding to the user's eyes to realize certain optical functions such as light transmission, vision correction, virtual reality, augmented reality, and the like.
  • the first functional lens 20 can be made of one or more transparent or translucent materials such as glass and plastic.
  • the first functional lens 20 can also be made of one or more materials such as transparent materials, translucent materials, and opaque materials for a certain light transmission effect.
  • the first functional lens 20 can be a vision correction lens made from one or more lenses such as a convex lens and a concave lens.
  • a vision correction lens made from one or more lenses such as a convex lens and a concave lens.
  • other types of lenses or functional lenses such as Flat mirror, anti-glare mirror, colored mirror, etc.
  • functional film such as anti-reflection film, polarizing mode, filter film, etc.
  • the first functional lens 20 may be a myopia lens.
  • the first functional lens 20 may also be other functional lenses such as plain mirrors, anti-glare mirrors, colored mirrors and the like.
  • the first functional lens 20 may also be a photochromic device.
  • a photochromic device can be made of a photochromic material, so that the photochromic device can change color after being excited by light of a certain wavelength.
  • the photochromic material can be produced by adopting existing technical solutions in the prior art within the scope understood by those skilled in the art, so no more details are given here.
  • the first functional lens 20 may also be an electrochromic device.
  • electrochromic devices can be made using electrochromic materials.
  • the electrochromic material can be one of inorganic electrochromic materials and organic electrochromic materials.
  • the inorganic electrochromic material can be tungsten trioxide.
  • the organic electrochromic material can be one of polythiophenes and their derivatives, viologens, tetrathiafulvalenes, metal phthalocyanines and the like.
  • the electrochromic material can be manufactured by adopting existing technical solutions in the prior art within the scope understood by those skilled in the art, so no further details are given.
  • the electrochromic device can be electrically connected with the host inside the head-mounted device 100 to realize the control of the electrochromic device.
  • the first functional lens 20 may be an optical waveguide, specifically a planar grating waveguide such as a diffraction grating waveguide.
  • the head-mounted device 100 can present a virtual reality/augmented reality environment through the first functional lens 20 .
  • the first functional lens 20 may also be a structure formed by combining any of the above embodiments, which will not be repeated here.
  • the first functional lens 20 may include a first lens 21 and a second lens 22 symmetrically disposed with the first lens 21 .
  • the first lens 21 may be set corresponding to the user's right eye
  • the second lens 22 may be set corresponding to the user's left eye.
  • the first lens 21 and the second lens 22 may be of different types.
  • the first lens 21 is an optical waveguide
  • the second lens 22 is a flat mirror.
  • first lens in other embodiments is called “second lens”
  • second lens the "first lens” in other embodiments is called “first lens”.
  • the lenses can be provided with an optical coupling inlet and an optical coupling outlet.
  • the optical coupling inlet and the optical coupling outlet are connected together to form an optical path.
  • the light is coupled into the lens from the optical coupling inlet and transmitted in the optical path.
  • the light will be coupled out of the lens at the optical coupling outlet and enter the wearer in the eye and forms an image on the retina.
  • At least one of the first lens 21 and the second lens 22 may be omitted.
  • the first functional lens 20 may be omitted.
  • the wearing body 30 can be used to be worn on the user's head.
  • the wearing body 30 is positioned in front of the user's eyes.
  • the wearing body 30 can be used to install the first functional lens 20 to realize the wearing of the first functional lens 20 .
  • the wearing body 30 may include a first mounting frame 31 for mounting the first lens 21, a second mounting frame 32 arranged symmetrically with the first mounting frame 31 and used for mounting the second lens 22, and connecting the first mounting frame 31 and the second mounting frame 31. Two connecting pieces 33 of the mounting frame 32 .
  • the first installation frame 31 can be made of hard materials such as metal, rubber, plastic and the like.
  • the first installation frame 31 can be a ring structure such as a rectangular ring structure, an irregular ring structure, a circular ring structure, an elliptical ring structure and the like.
  • the first installation frame 31 can also be a semi-circular structure or other structures, which will not be repeated here.
  • the first mounting frame 31 can be formed on the edge of the first functional lens 20 such as the first lens 21 to be connected and fixed with the first functional lens 20 such as the first lens 21 .
  • the first mounting frame 31 is disposed around the edge of the first functional lens 20 such as the first lens 21 .
  • the first installation frame 31 may form a first installation portion 311 at an end away from the second installation frame 32 for installing the supporting portion 40 .
  • the first installation part 311 may be a rotating shaft.
  • the second mounting frame 32 can be made of hard materials such as metal, rubber, plastic and the like.
  • the second installation frame 32 can also be made of the same material as the first installation frame 31 .
  • the second mounting frame 32 can be a ring structure such as a rectangular ring structure, an irregular ring structure, a circular ring structure, an elliptical ring structure and the like.
  • the second installation frame 32 can also be a semi-circular structure or other structures, which will not be repeated here.
  • the second mounting frame 32 can be formed on the edge of the first functional lens 20 such as the second lens 22 to be connected and fixed with the first functional lens 20 such as the second lens 22 .
  • the second mounting frame 32 surrounds the edge of the first functional lens 20 such as the second lens 22 .
  • the second installation frame 32 may form a second installation portion 321 at an end away from the first installation frame 31 for mounting the supporting portion 40 .
  • the second installation part 321 is located on the same side of the wearing body 30 as the first installation part 311 .
  • the second installation part 321 may be a rotating shaft.
  • first installation part in other embodiments is referred to as “second installation part”
  • second installation part in other embodiments is referred to as “first installation part”.
  • the connecting member 33 can be made of the same material as that of the first mounting frame 31 or the second mounting frame 32 , and of course it can also be made of other rigid materials.
  • the connecting piece 33 is located between the first installation frame 31 and the second installation frame 32, and is used to connect the first installation frame 31 and the second installation frame 32, so that the first installation frame 31 and the second installation frame 32 are integrated,
  • the first mounting frame 31 and the second mounting frame 32 are spaced apart, and a nose pad 34 is formed between the first mounting frame 31 and the second mounting frame 32, so that the wearing body 30 is mounted on the nose bridge of the user.
  • the nose pad 34 is provided separately and can be provided on the connecting piece 33 .
  • first installation frame 31 , the second installation frame 32 and the connecting member 33 may be integrated.
  • the connecting member 33 may be omitted, and the first mounting frame 31 and the second mounting frame 32 are directly connected and fixed.
  • the connecting member 33 can be directly connected and fixed to the first functional lens 20 such as the first lens 21 , and the supporting part 40 is directly connected to the first functional lens 20 such as the first lens 21 .
  • the connecting member 33 can be directly connected and fixed to the first functional lens 20 such as the second lens 22 , and the supporting part 40 is directly connected to the first functional lens 20 such as the second lens 22 .
  • the supporting portion 40 can be directly connected and fixed with the second mounting frame 32 or the connecting member 33 .
  • a camera in order to realize the function of virtual reality or augmented reality, or even to realize other functions, can be set on the wearing body 30 to capture the scene in front of the user's eyes.
  • the camera can also cooperate with The eye tracking technology tracks the user's eyes to realize further processing of images displayed in virtual reality or augmented reality.
  • the supporting part 40 is used to be worn on the user's head, and can be connected and fixed with the wearing body 30 to form the frame structure 10 .
  • the support part 40 may include a first leg 41 connected to the first mounting frame 31 such as the first mounting part 311 and a second leg 41 connected to the second mounting frame 32 such as the second mounting part 321 and symmetrically installed with the first leg 41. 42 outriggers.
  • the first outrigger 41 can be erected on the right ear
  • the second outrigger 42 can be erected on the left ear, so as to realize the wearing of the supporting part 40 .
  • the supporting part 40 may also be provided in other forms such as ring structure, semi-ring structure and the like.
  • first leg in other embodiments is called “second leg”
  • second leg in other embodiments is called “first leg”.
  • FIG. 4 and FIG. 5 are respectively an exploded view of a perspective view of the first leg 41 in the embodiment shown in FIG. 3 of the present application.
  • the first leg 41 may include a leg body 411 connected to the first mounting frame 31 such as the first mounting portion 311 , a leg side cover 412 that is fastened with the leg body 411 to form an accommodation space 4110 , and installed in the accommodation space 4110
  • the internal first battery module 413 and the first connection assembly 414 disposed in the accommodation space 4110 are used for installing the external assembly 400 .
  • the outrigger main body 411 is made of hard materials such as metal, rubber, plastic, etc., of course, it can also be made of the same material as the wearing main body 30 .
  • the main body 411 of the supporting leg may be in the shape of a long shell as a whole.
  • An assembly part 4111 is provided at one end of the leg main body 411 connected to the first installation frame 31 , such as the first installation part 311 .
  • the fitting portion 4111 may be a hole, so as to be pivotally connected with the first mounting portion 311 such as a rotating shaft, so that the leg body 411 is rotationally connected with the first mounting frame 31 .
  • the end of the outrigger main body 411 away from the first installation part 311 moves toward the second outrigger 42, so that the wearing assembly 200 can be folded and stored, thereby reducing the The footprint of the wearing assembly 200.
  • the leg body 411 rotates relative to the first mounting frame 31 the end of the leg body 411 away from the first mounting portion 311 moves to a side away from the second leg 42 , and then the wearing assembly 200 is unfolded.
  • the assembly part 4111 and the first installation part 311 can also be connected and fixed by other methods such as bonding, plugging, welding, clipping, etc., and details will not be repeated here.
  • An accommodating space 4110 is provided inside the leg body 411 for accommodating the first battery module 413 and the first connection assembly 414 .
  • the host for implementing augmented reality, virtual reality and/or other functions in the head-mounted device 100 is set on the leg body 411 , the host can be placed in the accommodation space 4110 .
  • the leg body 411 can be provided with a partition plate 4112 in the accommodation space 4110 to divide the accommodation space 4110 into multiple subspaces such as the first installation space 411a in the middle and the two sides of the first installation space 411a The second installation space 411b, 411c.
  • the partition plate 4112 can also be used to strengthen the strength of the main body 411 of the leg.
  • the partition plate 4112 can be omitted.
  • first installation space in other embodiments is called “second installation space”
  • second installation space in other embodiments is called “first installation space”.
  • the leg main body 411 defines an opening 41 a on a side away from the second leg 42 to communicate with the receiving space 4110 so as to cover the leg side cover 412 at the opening 41 a.
  • the opening 41 a can also be opened on the side of the leg body 411 close to the second leg 42 , and accordingly, the leg side cover 412 is installed on the side of the leg body 411 facing the second leg 42 .
  • the leg side cover 412 can be made of hard materials such as metal, rubber, plastic, etc., or can be made of the same material as the leg body 411 .
  • the leg side cover 412 can be a plate structure, and its size and shape can be similar to the opening 41a, so that the opening 41a can be covered on the leg body 411 .
  • the accommodating space 4110 is an airtight space.
  • FIG. 6 is a structural schematic diagram of the connection between the leg main body 411 and the leg side cover 412 in the embodiment shown in FIG. 4 of the present application.
  • the outrigger side cover 412 is set on the opening 41a corresponding to the first installation space 411a, so that the outrigger side cover 412 and the outrigger main body 411 form an installation opening 41b at a part corresponding to the second installation space 411b.
  • An installation opening 41 c is formed at a position corresponding to the second installation space 411 c , and the installation openings 41 b and 41 c are used to cooperate with the first connection assembly 414 and the external hanging assembly 400 .
  • the mounting openings 41b, 41c may also be provided on the leg side cover 412 when the leg side cover 412 completely blocks the opening 41a.
  • An installation hole 412 a is opened on the leg side cover 412 , and the installation hole 412 a communicates with the receiving space 4110 such as the first installation space 411 a to cooperate with the first battery module 413 .
  • the leg side cover 412 can be replaced by a display component and/or a button component.
  • the display component and/or the button component can be electrically connected to the host inside the head-mounted device 100 to input control commands into the head-mounted device 100 to realize the control of the head-mounted device 100 .
  • the outrigger side cover 412 when the outrigger side cover 412 is replaced by a display component, it can be used as an output device to output information such as the working status of the head-mounted device 100 to the user.
  • leg side cover 412 can be integrated with the leg body 411 .
  • leg side cover 412 when the leg side cover 412 is installed on the side of the leg body 411 close to the second leg 42, the installation openings 41b, 41c and the installation holes 412a can be provided on the leg body 411 accordingly, correspondingly, as shown Components and/or button components may also be provided on the leg body 411 .
  • the second outrigger 42 is arranged symmetrically with the first outrigger 41 , so that the second outrigger 42 cooperates with the first outrigger 41 to realize wearing the wearing assembly 200 on the user's head.
  • the second leg 42 can be set in the same manner as the above-mentioned first leg 41 .
  • the second leg 42 can be connected to the second mounting frame 32 in the same way as the first leg 41 is connected to the first mounting frame 31 .
  • the second leg 42 When the second leg 42 rotates relative to the second mounting frame 32 , the end of the second leg 42 away from the second mounting frame 32 moves to a side away from the first leg 41 , and then the wearing assembly 200 is unfolded.
  • the second leg 42 can adopt the configuration and connection relationship of the leg body 411 and the leg side cover 412 in the first leg 41 .
  • the setting method and function of the second leg 42 please refer to the setting method and function of the first leg 41 in the above-mentioned embodiment, and details will not be repeated here.
  • the second outrigger 42 can also be arranged in other ways instead of the first outrigger 41 , which will not be repeated here.
  • FIG. 7 is an installation structure diagram of the leg body 411 and the first battery module 413 in the embodiment shown in FIG. 4 of the present application.
  • the first battery module 413 is used for storing electric energy to provide electric energy for the operation of the head-mounted device 100 .
  • the first battery module 413 may be provided with a wireless charging device such as using an electromagnetic induction coil for wireless charging.
  • the first battery module 413 can also be provided with a wired interface for charging.
  • the first battery module 413 may be located in the receiving space 4110 of the first leg 41 , such as the first installation space 411 a.
  • the first battery module 413 is provided with a first external connection interface 413a corresponding to the installation hole 412a of the leg side cover 412, so that the first external connection interface 413a is arranged in the installation hole 412a to realize connection with the external power supply, the external assembly 400, and the external connection.
  • the host computer and other external devices are electrically connected to provide power for the external devices.
  • the external devices can also charge the first battery module 413 .
  • the second leg 42 can also cooperate with the first battery module 413 according to the matching relationship between the first battery module 413 and the first leg 41 , please refer to the first leg 41 for details. Certainly, the first battery module 413 may not be installed on the second leg 42 .
  • the first connecting component 414 can be installed on the first leg 41 to be connected and fixed with the external hanging component 400 .
  • the first connecting component 414 can be located in the receiving space 4110 of the first leg 41 .
  • the first connecting component 414 can be installed on at least one of the first leg 41 and the second leg 42 to be connected and fixed with the external hanging component 400 .
  • the first connecting component 414 can be installed in the receiving space 4110 .
  • the first connection assembly 414 may include a first shielding assembly 415 installed in the second installation space 411b, a second shielding assembly 416 installed in the second installation space 411c, and a first magnetic member installed in the first installation space 411a. 417. Wherein, the first shielding component 415 is used to shield the installation opening 41b, and the second shielding component 416 is used to shield the installation opening 41c.
  • the first magnetic part 417 is used for connecting and fixing with the external hanging assembly 400 .
  • first shielding component “first shielding component”, “second shielding component” and “shading component” can be interchanged in some embodiments.
  • first shading component in other embodiments is called “second shading component”
  • second shading component the "second shading component” in other embodiments is called “first shading component”.
  • the first shielding component 415 may include an abutting plate 4151 disposed in the second installation space 411b for shielding the installation opening 41b and an elastic member 4152 disposed between the installation opening 41b and the leg body 41 .
  • the abutment plate 4151 cooperates with the elastic member 4152 to realize the abdication of the external hanging assembly 400, so that the external hanging assembly 400 is installed on the first leg 41, and can also be installed on the first leg 41 when the external hanging assembly 400 is not installed.
  • the shielding of the opening 41 b improves the appearance of the supporting part 40 such as the first leg 41 .
  • the abutment plate 4151 can be made of hard material, and of course it can also be made of the same material as the leg main body 411 or the leg side cover 412 .
  • the abutting plate 4151 can be a plate-shaped structure, and the abutting plate 4151 can slide in the receiving space 4110 such as the second installation space 411b.
  • the abutment plate 4151 can be flush with the outer surfaces of the leg main body 411 and the leg side cover 412 at the installation opening 41 b, so as to improve the appearance of the supporting part 40 such as the first leg 41 .
  • the surface of the abutment plate 4151 on the side of the installation opening 41b can abut against the leg body 411 and the leg side cover 412 respectively, so as to prevent the abutment plate 4151 from sliding out of the receiving space 4110 such as the second installation space 411b.
  • the elastic member 4152 can be a spring. One end of the elastic member 4152 abuts against the abutment plate 4151, and the other end abuts against the leg body 411, so that the abutment plate 4151 abuts against the leg body 411 and the leg side cover 412 under the elastic action of the elastic member 4152, so that The abutting plate 4151 can slide into the accommodating space 4110 such as the second installation space 411b to expose the installation opening 41b when the external force overcomes the elastic force of the elastic member 4152 .
  • the second shielding component 416 and the first shielding component 415 can be respectively disposed on two sides of the first magnetic member 417 .
  • the second shielding component 416 can adopt the setting method of the first shielding component 415 to shield the installation opening 41 c to improve the appearance of the supporting part 40 such as the first leg 41 , so as to cooperate with the external hanging component 400 .
  • the second shielding component 416 can cooperate with the leg body 411 and the leg side cover 412 in the same way that the first shielding component 415 cooperates with the leg body 411 and the leg side cover 412 .
  • the second shielding component 416 can adopt the configuration and connection manner of the abutment plate 4151 and the elastic member 4152 in the first shielding component 415 .
  • the configuration and function of the second shielding component 416 please refer to the configuration and function of the first shielding component 415 in the above-mentioned embodiment, and details will not be repeated here.
  • the second shielding component 416 may also be set in other ways instead of the setting manner of the first shielding component 415 , which will not be repeated here.
  • first shielding component 415 and the second shielding component 416 can be omitted.
  • the first magnetic part 417 can generate a magnetic force so as to connect the hang-on component 400 to realize the installation of the hang-on component 400 on the wearing component 200 .
  • the first magnetic member 417 can be a permanent magnet or an electromagnet. When the first magnetic member 417 is an electromagnet, it can be electrically connected with the host in the head-mounted device 100 to realize the control of the electromagnet.
  • the first magnetic member 417 may be installed in the accommodation space 4110 such as the first installation space 411a. In an embodiment, the first magnetic member 417 may be specifically located between the leg side cover 412 and the first battery module 413 . In one embodiment, the first magnetic member 417 can be disposed on the leg side cover 412 .
  • the second outrigger 42 can also be arranged in the same manner as the first outrigger 41 is provided with the first connection assembly 414 , so as to install the external hanging assembly 400 .
  • the first connecting component 414 is provided on the first leg 41 , which will not be repeated here.
  • Fig. 8 is a structural schematic diagram of another embodiment of the wearing assembly 200 in the embodiment shown in Fig. 2 of the present application
  • Fig. 9 is an explosion of the wearing assembly 200 in the embodiment shown in Fig. 8 of the present application picture.
  • the wearing assembly 200 may include the first functional lens 20 , the wearing body 30 and the supporting part 40 in the above embodiments.
  • the wearing assembly 200 may further include a tightness adjusting assembly 50 installed on the wearing body 30 and used to adjust the force between the supporting part 40 and the user's head, so that the user can wear it more comfortably and conveniently. Understandably, the tightness adjustment assembly 50 can also be used as a part of the frame structure 10 .
  • FIG. 10 and FIG. 11 are structural schematic diagrams of different viewing angles of the wearing body 30 in the embodiment shown in FIG. 9 of the present application.
  • the first installation portion 311 extends from the first installation frame 31 to a side away from the first installation frame 31 .
  • the first installation portion 311 may include an installation body 3111 disposed on the first installation frame 31 and first and second installation plates 3112 , 3113 disposed on an end of the installation body 3111 away from the first installation frame 31 .
  • first and second mounting plates 3112, 3113 are opposite and arranged at intervals, so that the first leg 41 is installed between the first and second mounting plates 3112, 3113, so that the first mounting part 311 and the first leg 41
  • the fitting part 4111 is rotatably connected.
  • the arrangement direction of the first and second installation plates 3112, 3113 is perpendicular to the arrangement direction of the first and second installation parts 311, 321, so that the first leg 41 and the first installation frame 31 are relatively rotated to realize the wearing assembly 200 can be folded for storage or unfolded for use.
  • the installation body 3111 can be hollow inside. In one embodiment, it can facilitate the routing of the relevant circuit wiring of the first functional lens 20 and the host. In one embodiment, it can facilitate the related circuits of the first functional lens 20 and the host.
  • the arrangement of the optical path in one embodiment, can facilitate the arrangement of the host that controls the first functional lens 20 .
  • the side of the first mounting plate 3112 close to the second mounting plate 3113 and the side of the second mounting plate 3113 close to the first mounting plate 3112 are both provided with slideways 3114 , so as to cooperate with the elastic adjustment assembly 50 .
  • Both the sliding track 3114 of the first mounting plate 3112 and the sliding track 3114 of the second mounting plate 3113 extend to a side away from the second mounting portion 321 and extend to edges of the first and second mounting plates 3112 , 3113 .
  • the slideway 3114 can be omitted.
  • first mounting board in other embodiments is referred to as “second mounting board”
  • second mounting board in other embodiments is referred to as “first mounting board” ".
  • Both the slideway 3114 of the first mounting plate 3112 and the slideway 3114 of the second mounting plate 3113 are provided with an inwardly recessed limiting groove 3115 to cooperate with the first leg 41 such as the fitting part 4111, so that the fitting part 4111 is in the Slide in the first limiting groove 3115 .
  • the extending direction of the limiting groove 3115 can be consistent with the extending direction of the slideway 3114 .
  • the second installation part 321 can adopt the arrangement method of the first installation part 311 and the first installation frame 31 and the arrangement of the second installation frame 32 .
  • the second installation part 321 can be provided in the manner that the first installation part 311 is provided with the installation main body 3111 and the first and second installation plates 3112 , 3113 .
  • the second mounting part 321 can cooperate with the second leg 42 in the same manner as the first mounting part 311 and the first leg 41, so that the first leg 41 and the second mounting frame 32 rotate relatively to realize the folding of the wearing assembly 200 Store or unfold for use.
  • the installation method and function of the second installation part 321 please refer to the installation method and function of the first installation part 311 in the above-mentioned embodiment, and details will not be repeated here.
  • Fig. 12 is a schematic structural view of the first leg 41 in the embodiment shown in Fig. 9 of the present application
  • Fig. 13 is an exploded view of a partial structure of the first leg 41 in the embodiment shown in Fig. 12 of the present application
  • Fig. 14 is the present application An exploded view of part of the structure of the first leg 41 in another view in the embodiment shown in FIG. 12 of the application.
  • the leg side cover 412 is installed on the side of the leg body 411 facing the second leg 42 .
  • the installation openings 41 b, 41 c and the installation hole 412 a may be provided on the leg body 411 .
  • the assembly part 4111 includes a first shaft part 4113 and a second shaft part 4114 arranged on the same axis.
  • the axis where the first shaft portion 4113 and the second shaft portion 4114 are located is the axis where the first leg 41 rotates relative to the first mounting frame 31 .
  • the first shaft portion 4113 can be placed in the limiting groove 3115 of the first mounting plate 3112 and slide along the extending direction of the limiting groove 3115 .
  • the second shaft portion 4114 can be placed in the limiting groove 3115 of the second mounting plate 3113 and slide along the extending direction of the limiting groove 3115 .
  • the assembly part 4111 can rotate around the first and second shaft parts, and the rotation axis can be the first rotation shaft.
  • first shaft portion can be interchanged in some embodiments.
  • first shaft part in other embodiments is called “second shaft part”
  • second shaft part in other embodiments is called “first shaft part”.
  • the assembly part 4111 further includes a first clamping side wall 4115 extending from the end of the leg main body 411 to one side of the first installation frame 31 .
  • the first clamping side wall 4115 surrounds the first shaft portion 4113 and the second shaft portion 4114 to form an accommodating space 4116 communicating with the accommodating space 4110, and at the same time forms an embedding opening 4115a communicating with the opening 41a to connect with the leg side Cover 412 fits.
  • the surface of the first clamping side wall 4115 outside the accommodating space 4116 is provided with a limiting protrusion 4115 b to cooperate with the elastic adjustment assembly 50 .
  • the limiting protrusion 4115b can be made of elastically deformable material.
  • the portion where the first locking side wall 4115 is connected to the leg body 411 forms a relief portion 4115c to make way for the elastic adjustment component 50 to enhance the appearance of the wearing body 30 .
  • the relief part 4115c is stepped.
  • the leg side cover 412 may include a side cover main body 4121 covering the opening 41 a and a second locking side wall 4122 extending from the side cover main body 4121 to one side of the mounting portion 4111 .
  • the second clamping side wall 4122 covers the embedding opening 4115a and is connected with the first shaft portion 4113 and the second shaft portion 4114. The end of the side wall 4115 away from the side cover main body 4121 is connected.
  • the end of the second locking side wall 4122 away from the leg body 411 can be spaced apart from the end of the first locking side wall 4115 away from the side cover body 4121 , so that the circuit traces can extend from the accommodating space 4116 Into the first installation part 311 such as the installation body 3111 , in some embodiments, the optical path can pass through the accommodating space 4116 into the first installation part 311 to cooperate with the first functional lens 20 such as the first lens 21 .
  • first clamping side wall names such as “the first clamping side wall”, “the second clamping side wall” and “the clamping side wall” can be interchanged.
  • first clamping side wall in other embodiments is called “second clamping side wall”
  • second clamping side wall in other embodiments is called It is “the first clamping side wall”.
  • the second leg 42 can be set in the same way as the first leg 41, for example, the first shaft part 4113 and the second shaft part 4114, the first snapping side wall 4115, the second snapping side wall 4122, and the relief part 4115c, the limit protrusion 4115b, the relief part 4115c, etc.
  • the second leg 42 can cooperate with the second mounting frame 32 by adopting the matching relationship between the first leg 41 and the first mounting frame 31 .
  • the second leg 42 can cooperate with the hanger component 400 by adopting the matching relationship between the first leg 41 and the hanger component 400 .
  • the second leg 42 can cooperate with the first functional lens 20 such as the second lens 22 by adopting the matching relationship between the first leg 41 and the first functional lens 20 .
  • the configuration and function of each component in the second leg 42 please refer to the configuration and function of the first leg 41 , which will not be repeated here.
  • Fig. 15 is a schematic structural diagram of the elastic adjustment assembly 50 in the embodiment shown in Fig.
  • FIG. 17 is a structural schematic diagram of another angle of view when the main body 30 is connected to the elastic adjustment component 50 in the embodiment shown in FIG. 9 of the present application.
  • FIG. 18 is a diagram of the present application 9 is a schematic structural diagram of the connection between the first leg and the first adjusting member 51 in the embodiment shown in FIG.
  • the tightness adjustment assembly 50 may include a first adjusting member 51 installed on the first mounting frame 31 and connected to the first leg 41 such as the fitting portion 4111 and a first adjusting member 51 mounted on the second mounting frame 32 and connected to the second leg 42 such as the fitting portion 4111 connected second regulator 52.
  • the first adjusting part 51 is used for adjusting the force between the first leg 41 and the user's head
  • the second adjusting part 52 is used for adjusting the force between the second leg 42 and the user's head.
  • first adjustment member “first adjustment member”, “second adjustment member” and “adjustment member” can be interchanged in some embodiments.
  • first adjustment part in other embodiments is called “second adjustment part”
  • second adjustment part in other embodiments is called “first adjustment part”.
  • the first adjusting member 51 is made of elastically deformable material.
  • the first adjusting member 51 may include a connecting portion 511 disposed on opposite sides of the first mounting portion 311 on the first mounting frame 31 and a bending portion 512 fixedly connected to the connecting portion 511 .
  • the bending portion 512 is disposed at a position of the connecting portion 511 corresponding to the first installation portion 311 .
  • the bending portion 512 extends from an edge of the connecting portion 511 and bends toward the first installation portion 311 .
  • the bent portion 512 may be disposed on a side of the first mounting portion 311 away from the second mounting portion 321 . In one embodiment, the bent portion 512 may abut against a side of the first mounting portion 311 away from the second mounting portion 321 .
  • the shape of the connecting portion 511 can be the same as that of the first mounting frame 31 , for example, it can be a ring structure, of course it can also be a semi-ring structure, or it can also be a structure of other shapes such as a shape with texture or pattern on the surface.
  • the connecting portion 511 can be disposed around the first lens 21 .
  • the edge portion of the connecting portion 511 at the first lens 21 can be arranged on the side of the first lens 21 away from the first installation frame 31, so as to sandwich the first lens 21 between the edge and the first installation frame. Between boxes 31.
  • connection part 511 can realize the connection between the bending part 512 and the first installation frame 31 , so the connection part 511 can be omitted, and the end of the bending part 512 can be fixed on the first installation frame 31 .
  • the end of the bent portion 512 can be fixed on the first mounting portion 311 .
  • the bending portion 512 is provided with a first pivot portion 5122 and a second pivot portion 5123 opposite to the slideway 3114 .
  • the first pivotal portion 5122 can be placed in the slideway 3114 of the first mounting plate 3112 and slide along the extending direction of the slideway 3114 .
  • the first pivot portion 5122 is rotatably connected to the first shaft portion 4113 .
  • the second pivot portion 5123 can be placed in the sliding track 3114 of the second mounting plate 3113 and slide along the extending direction of the sliding track 3114 .
  • the second pivot portion 5123 is rotatably connected to the second shaft portion 4114 .
  • first pivotal part in other embodiments is called “second pivotal part”
  • second pivotal part in other embodiments is called “second pivotal part”.
  • a pivotal joint in one embodiment, the "first pivotal part” in other embodiments is called “second pivotal part”, and correspondingly, the “second pivotal part” in other embodiments is called “second pivotal part”.
  • the bending part 512 can make the bending part 512 be located at the relief part 4115c, and when abutting against the first leg 41 such as the leg main body 411 and the first locking side wall 4115, so that The bending portion 512 is relatively stationary relative to the first leg 41 .
  • the bending portion 512 when the bending portion 512 abuts against the first leg 41 such as the leg body 411 and the first engaging side wall 4115, the bending portion 512 can be made to contact the first leg 41 such as the leg body
  • the outer surface of 411 is even, so as to improve the appearance of the wearing assembly 200 .
  • the first leg 41 when the first leg 41 rotates relative to the bending portion 512, it can rotate to the position where the limiting protrusion 4115b abuts against the bending portion 512, and the limiting protrusion 4115b is squeezed and deformed to increase the first leg 4115b.
  • the damping when one leg 41 rotates relative to the bending portion 512 further enhances the user's feeling of folding and storing and unfolding for use.
  • the limiting protrusion 4115b abuts against the bending portion 512, so that the folding process needs to overcome the limiting protrusion 4115b and the bending portion Friction between 512.
  • the limiting protrusion 4115b abuts against the bending part 512, so that the unfolding process needs to overcome the limiting protrusion 4115b and the bending part Friction between 512.
  • the limiting protrusion 4115b can be rotated relative to the bending portion 512 of the first leg 41 and rotated to a certain position or a certain period of time in the rotation stroke. to increase the damping effect.
  • the position-limiting protrusion 4115b when it has no elasticity, it can have a position-limiting function when abutting against the bending portion 512 .
  • the first leg 41 is made stationary relative to the bent portion 512 .
  • the second adjusting member 52 can adopt the arrangement method of the first adjusting member 51 to be arranged.
  • the second adjustment member 52 can be arranged with the second installation frame 32 , the second lens 22 and the second support leg 42 in the same manner as the first adjustment member 51 and the first installation frame 31 , the first lens 21 and the first leg 41 .
  • the structure, connection mode and function of each component in the second adjusting member 52 can refer to the above-mentioned first adjusting member 51 , and will not be repeated here.
  • the first leg 41 and the second leg 42 are rotated relative to the wearing body 30 for deployment, the first leg 41 is rotated relative to the first pivot portion 5122 , and rotated to a side away from the second leg 42 , The second leg 42 rotates relative to the second pivot portion 5123 and rotates to a side away from the first leg 41 .
  • the first leg 41 and the second leg 42 can also be unfolded, but the first leg 41 is stationary relative to the first pivot portion 5122, and the second leg 42 is stationary relative to the second pivot portion 5123, so that the first shaft portion 4113 of the first leg 41 and the second leg 42 is on the first mounting plate 3112 slides in the limit groove 3115, the second shaft part 4114 slides in the limit groove 3115 of the second mounting plate 3113, the first pivot part 5122 slides in the slideway 3114 of the first mounting plate 3112, and the second pivot The joint part 5123 slides in the slideway 3114 of the second mounting plate 3113, so that the first leg 41 and the first pivotal part 5122 rotate around a second rotation axis together, and the second leg 42 and the second pivotal part 5123 together Rotate around another second rotating shaft, and at the same time, the bending part 512 is bent to the side
  • the first leg 41 has an active force to move toward the second leg 42
  • the second leg 42 has an active force to move toward the first leg 41 .
  • the size of the head-mounted device 100 can be easily adjusted, making it easy to wear, and under the force of the bending part 512 returning to its original shape, the first leg 41 and the second leg 42 can act on the user's head.
  • the force is adjustable, making it comfortable to wear.
  • the first leg 41 and the second leg 42 are rotated relative to the wearing body 30 to be folded and stored, and the force of the bending part 512 restoring the original shape makes the first leg 41 move to the second leg 42, and the second leg 41 moves toward the second leg 42.
  • the leg 42 moves toward the first leg 41 side.
  • the first leg 41 and the first pivot joint 5122 rotate around a second axis of rotation, and the second leg 42 rotates together with the second pivot joint 5123 around another second axis of rotation, so that the first leg 41 and the second pivot joint 5123 rotate together.
  • the first shaft part 4113 in the second leg 42 slides in the limiting groove 3115 of the first mounting plate 3112
  • the second shaft part 4114 slides in the limiting groove 3115 of the second mounting plate 3113
  • the first pivot part 5122 slides in the slideway 3114 of the first mounting plate 3112
  • the second pivot part 5123 slides in the slideway 3114 of the second mounting plate 3113, and can slide to the limit between the first shaft part 4113 and the first mounting plate 3112
  • the end of the groove 3115 abuts
  • the second shaft portion 4114 abuts against the end of the limiting groove 3115 in the second mounting plate 3113 .
  • the first shaft portion 4113 may not be in contact with the end of the limiting groove 3115 in the first mounting plate 3112, and the second shaft portion 4114 may not be in contact with the second mounting plate 3113.
  • the ends of the middle limiting groove 3115 abut against each other.
  • the adjustment process listed here is only one implementation manner, and of course, the adjustment method can also be determined according to the structure of the wearing assembly 200 .
  • the surface of the connecting part 33 away from the first and second mounting parts 311, 321 can be flush with the surface of the first adjusting part 51 and the second adjusting part 52, so as to enhance the appearance of the head-mounted device 100 expressiveness.
  • FIG. 19 discloses an exploded view of the plug-in component 400 in the embodiment shown in Figure 2 of the present application
  • Figure 20 is another perspective of the plug-in component 400 in the embodiment shown in Figure 2 of the present application exploded diagram.
  • the plug-in assembly 400 may include a second functional lens 60 set corresponding to the user's glasses and stacked with the first functional lens 20 , and a plug-in body for installing the second functional lens 60 and mounted on the supporting part 40 such as the first leg 41 70.
  • the hang-on main body 70 is installed on the supporting part 40 such as the first leg 41 , realizing the assembly of the hang-on component 400 and the wearing component 200 .
  • first functional lens in other embodiments is referred to as “second functional lens”
  • second functional lens in other embodiments is referred to as “first functional lens”.
  • the plug-in main body 70 may include a plug-in housing 80 for installing the second functional lens 60, a host 90 installed in the plug-in housing 80, and a host 90 arranged on the plug-in housing 80 and used for connecting with the support portion. 40 is connected to a fixed second connection component 71 .
  • the host 90 is used to control the second functional lens 60 to realize the functions of the second functional lens 60 such as augmented reality or virtual display or electrochromic, etc.
  • the plug-in housing 80 is fixed on the first leg 41 through the second connection assembly 71 .
  • first connection component in other embodiments is referred to as “second connection component”
  • second connection component in other embodiments is referred to as “first connection component”.
  • the add-on housing 80 may include a first housing 81 and a second housing 82 buckled with the first housing 81 to form a storage space 812a.
  • the second housing 82 is located between the first housing 81 and the wearing assembly 200 .
  • the storage space 812a is used for installing the host 90 .
  • the first housing 81 is engaged with the second housing 82 to fix the second functional lens 60 between the first housing 81 and the second housing 82 .
  • a part of the second functional lens 60 such as the optical coupling inlet, the electrical connection of the electrochromic device, and the circuit wiring can be placed in the storage space 812 a to cooperate with the host 90 .
  • the first housing 81 can be made of hard materials such as metal, rubber, plastic and the like.
  • the first housing 81 may include a first lens holder 811 that cooperates with the second housing 82 to install the second functional lens 60 , and a first lens holder 811 that is fastened with the second housing 82 to form a storage space 812a and has the first lens holder 811 at one end. sub-housing 812 .
  • the first lens frame 811 can be a ring structure to surround the edge of the second functional lens 60 .
  • the first lens frame 811 can also be in other shapes, which will not be repeated here.
  • the first lens frame 811 can be stacked with the wearing body 30 such as the first installation frame 31 .
  • the first lens frame 811 is disposed on a side of the wearing body 30 away from the support portion 40 .
  • the first sub-housing 812 may be in the shape of a shell as a whole, and is disposed on a side of the first leg 41 away from the second leg 42 .
  • the first sub-housing 812 is extended to one side of the wearing body 30 to be connected and fixed with the first lens frame 811 .
  • the first sub-housing 812 is provided with a storage space 812a.
  • the first sub-housing 812 is provided with a fixing plate 8121 on a side close to the first lens holder 811 in the storage space 812 a to cooperate with the host 90 .
  • the first sub-housing 812 is provided with a sub-fixing space 8122 at an end away from the first lens holder 811 in the storage space 812 a to cooperate with the host 90 .
  • the sidewall of the first sub-housing 812 is provided with a through hole 812b to communicate with the storage space 812a and cooperate with the host 90 .
  • the first sub-housing 812 is provided with an installation groove 812 c recessed on a side away from the first leg 41 to cooperate with the host 90 .
  • the first sub-housing 812 is provided with a connection hole 812d in the installation groove 812c to communicate with the storage space 812a and the installation groove 812c, so as to facilitate routing of circuits.
  • the first sub-housing 812 is provided with a communicating hole 812 e on a side away from the first leg 41 to communicate with the sub-fixing space 8122 .
  • the first lens frame 811 and the first sub-housing 812 can be integrally structured.
  • the second shell 82 can be made of hard materials such as metal, rubber, plastic, etc., or can be made of the same material as the first shell 81 .
  • the second housing 82 may include a second lens frame 821 that is buckled with the first housing 81, such as the first lens frame 811, and that is buckled with the first housing 81, such as the first sub-housing 812, and is engaged with the second lens frame 821. Connected second sub-housing 822 .
  • first lens frame in other embodiments is called “second lens frame”
  • second lens frame in other embodiments is called “first lens frame”.
  • the second lens holder 821 can be similar in shape to the first lens holder 811 so as to be buckled with the first lens holder 811 to fix the second functional lens 60 between the first lens holder 811 and the second lens holder 821 .
  • the second lens frame 821 surrounds the edge of the second functional lens 60 .
  • the second lens frame 821 is engaged with the first lens frame 811 to be clipped on the edge of the second functional lens 60 to realize the fixing of the second functional lens 60 .
  • the second sub-housing 822 may be a plate-shaped structure. The end of the second sub-housing 822 close to the wearing body 30 is connected and fixed to the second lens frame 821 .
  • the second sub-housing 822 has a mounting hole 8221 opposite to the leg body 411 such as the mounting hole 412a to cooperate with the host 90 so as to facilitate the host 90 to cooperate with the first battery module 413 such as the first external interface 413a.
  • the first lens frame 811 and the first sub-housing 812 can be integrally structured.
  • the second lens frame 821 and the second sub-housing 822 can be assembled to form a third installation frame 83 for installing the second functional lens 60 .
  • the third mounting frame 83 may also be provided with other structures, and is not limited to the first lens frame 811 and the second lens frame 821 .
  • one of the first lens holder 811 and the second lens holder 821 may be omitted.
  • first installation frame names such as “first installation frame”, “second installation frame”, “third installation frame” and “installation frame” can be interchanged in some embodiments.
  • first installation frame in other embodiments is called “second installation frame”
  • second installation frame in other embodiments is called “first installation frame”.
  • the first sub-housing 812 and the second sub-housing 822 can be assembled to form the housing main body 84 where the host 90 is installed.
  • the housing main body 84 may also be provided on the housing main body 84 , and are not limited to the first sub-housing 812 and the second sub-housing 822 .
  • the structure and arrangement of the second functional lens 60 can be designed according to the structure and arrangement of the first functional lens 20 .
  • the function of the second functional lens 60 may be different from that of the first functional lens 20, or may be the same.
  • the structure, arrangement and function of the second functional lens 60 please refer to the first functional lens 20 in the above-mentioned embodiment.
  • the second functional lens 60 can be an optical waveguide, specifically a planar grating waveguide such as a diffraction grating waveguide.
  • the head-mounted device 100 can present a virtual reality/augmented reality environment through the second functional lens 60 .
  • the following takes the second functional lens 60 as an optical waveguide as an example to introduce the second functional lens 60 .
  • the second functional lens 60 may be provided with an optical coupling inlet portion and an optical coupling outlet portion.
  • the optical coupling inlet and the optical coupling outlet are connected together to form an optical path.
  • the light is coupled into the lens from the optical coupling inlet and transmitted in the optical path. Finally, the light will be coupled out of the lens at the optical coupling outlet and enter the wearer in the eye and forms an image on the retina.
  • FIG. 21 is a schematic structural diagram of another embodiment when the second functional lens 60 is connected to the third installation frame 83 in the embodiment shown in FIG. 19 of the present application.
  • Figure 22 is an exploded view of the connection between the second functional lens 60 and the third mounting frame 83 in the embodiment shown in Figure 21 of the present application
  • Figure 23 is the second functional lens 60 and the third mounting frame in the embodiment shown in Figure 21 of the present application Sectional view of line XXI-XXI of 83.
  • the second functional lens 60 may include a first protective lens 61 with a protective space 610 inside, an optical waveguide lens 62 set in the protective space 610 , and a second protective lens 63 snapped together with the first protective lens 61 to form the protective space 610 .
  • first protective lens names such as “first protective lens”, “second protective lens” and “protective lens” can be interchanged in some embodiments.
  • first protective lens in other embodiments is called “second protective lens”
  • second protective lens in other embodiments is called “first protective lens”.
  • the first protective lens 61 can be made of plastic and other materials with high pressure resistance and high impact resistance.
  • the first protective lens 61 may include a lens body 611 stacked with the optical waveguide lens 62 and a side wall 612 formed at the edge of the lens body 611 and surrounding the optical waveguide lens 62 .
  • the lens body 611 has a plate-like structure.
  • the side wall 612 is extended to the side of the second protective lens 63 , so that the lens body 611 and the side wall 612 surround to form a protective space 610 .
  • An end of the side wall 612 close to the second protective lens 63 can be provided with a first insertion structure 613 to cooperate with the second protective lens 63 .
  • the first insertion structure 613 can be an insertion slot.
  • the side wall 612 is provided with a stepped support platform 614 in the protection space 610 to cooperate with the optical waveguide lens 62 , so that the optical waveguide lens 62 is spaced apart from the first protective lens 61 such as the lens body 611 .
  • the optical waveguide lens 62 can be a planar grating waveguide such as a diffraction grating waveguide.
  • the optical waveguide lens 62 can be provided with an optical coupling inlet and an optical coupling outlet.
  • the optical coupling inlet and the optical coupling outlet are connected together to form an optical path.
  • the light is coupled into the lens from the optical coupling inlet and transmitted in the optical path. Finally, the light will be coupled out of the lens at the optical coupling outlet and enter the wearer in the eye and forms an image on the retina.
  • the optical waveguide lens 62 can be disposed on the supporting platform 614 , so that the optical waveguide lens 62 is spaced apart from the lens body 611 . That is, the optical waveguide lens 62 can be engaged with the first protection lens 61 to form the first sub-protection space 610a.
  • the optical waveguide lens 62 can be fixed on the supporting platform 614 through a fixing member 621 .
  • the fixing member 621 can be a plastic frame to surround the edge of the optical waveguide lens 62 , and in one embodiment, the plastic frame is foam glue.
  • the fixing member 621 can also be of other structures such as plug-in, buckle and other structures.
  • the fixing member 621 can make the optical waveguide lens 62 and the support platform 614 be spaced apart, the support platform 614 can be omitted, so that the optical waveguide lens 62 is directly fixed on the lens body 611 through the fixing member 621, so that the optical waveguide lens 62 It is spaced apart from the lens main body 611.
  • the optical waveguide lens 62 when the optical waveguide lens 62 is fixed on the supporting platform 614 or other positions, it may not be in direct contact with the first protective lens 61 such as the side wall 612, so as to prevent the side wall 612 from being pressed against the optical waveguide lens 62. pressure.
  • the second protective lens 63 can be made of the same material as the first protective lens 61 .
  • the edge of the second protective lens 63 can be provided with a second insertion structure 631 so as to be inserted and fixed with the first insertion structure 613 , so as to realize the fastening connection between the first protective lens 61 and the second protective lens 63 .
  • the second insertion structure 631 can be a protrusion.
  • the second protective lens 63 and the first protective lens 61 can also be fixed by bonding or the like, and in an embodiment, glue can also be dispensed in the first insertion structure 613 such as the insertion groove.
  • the fastening connection between the first protective lens 61 and the second protective lens 63 is realized, wherein the glue can be further bonded and fixed to lift the first protective lens 61
  • the connection strength with the second protective lens 63 in addition, the first protective lens 61 and the second protective lens 63 can form an airtight protective space 610 to play a waterproof and dustproof effect and improve the pressure resistance of the optical waveguide lens 62 .
  • the optical waveguide lens 62 and the second protective lens 63 are spaced apart, that is, the arrangement of the optical waveguide lens 62 divides the protected space 610 into two subspaces, which are respectively the first subprotected space 610a and the first subspace located at the optical waveguide lens 62.
  • the second sub-protection space 610b on the side close to the second protection lens 63 can prevent the side wall 612 from being pressed against the optical waveguide lens 62 by force.
  • the optical waveguide lens 62 abuts against the second protective lens 63 .
  • the third mounting frame 83 can omit the first lens frame 811 .
  • the second lens frame 821 is directly connected and fixed with the second functional lens 60 .
  • the second lens holder 821 can be provided with a dispensing groove 8211 on the side that is attached to the second protective lens 63 such as the second protective lens 63, so that glue can be dispensed in the dispensing groove 8211 to realize the second protective lens 63 and the second protective lens 63.
  • the lens holder 821 is glued and fixed.
  • the second lens frame 821 and the second protective lens 63 can also be fixed in other ways, which will not be repeated here.
  • the second lens frame 821 is provided with a light through hole 8212 on the side close to the wearing assembly 200 and at a position corresponding to the optical waveguide lens 62 such as the optical coupling entrance, so as to cooperate with the host 90 to form a light coupling into The optical path of the optical waveguide lens 62.
  • the optical waveguide lens 62 is sandwiched between the first protective lens 61 and the second protective lens 63 , forming a 360° omni-directional wrap around the optical waveguide lens 62 and protecting the optical waveguide lens 62 .
  • the setting of the protection space 610 increases the redundant space for the deformation of the first protection lens 61 and the second protection lens 63 under force, ensuring that the force deformation of the optical waveguide lens 62 is weakened when the second functional lens 60 is stressed. .
  • the flexible connection between the optical waveguide lens 62 and the first protective lens 61 can be realized, which can further weaken the force deformation of the optical waveguide lens 62 and protect the optical waveguide lens 62. This makes the overall compressive strength of the second functional lens 60 better.
  • the optical waveguide lens 62 can be protected against pressure, impact and dust, which is lighter and thinner than the existing solutions, and the second function lens 60 can be compared with ordinary lenses. Similar sizes and diverse shapes are of great help to improve the expressiveness and reliability of the head-mounted device 100 using the second functional lens 60 .
  • This solution has simple structure and low cost, and is suitable for mass production.
  • the second functional lens 60 and the first functional lens 20 also have various light transmission effects, so the first lens 21 and the second lens 22 in the first functional lens 20 can both use the second functional lens 60 design ways to set.
  • both the first installation frame 31 and the second installation frame 32 can also be arranged in the design manner of the third installation frame 83 . No more details here.
  • Fig. 24 is a schematic structural diagram of the host 90 in the embodiment shown in Fig. 19 of the present application
  • Fig. 25 is an explosion of a perspective of the host 90 in the embodiment shown in Fig. 24 of the present application
  • 26 is an exploded view from another perspective of the host 90 in the embodiment shown in FIG. 24 of the present application
  • FIG. 27 is a schematic structural diagram of the installation and fixing of the first housing 81 and the host 90 in the embodiment shown in FIG. 19 of the present application.
  • the host 90 is installed in the storage space 812 a of the first sub-housing 812 .
  • the host machine 90 may include an opto-mechanical assembly 91 matched with the second functional lens 60, a main board 92 electrically connected to the opto-mechanical assembly 91, a second battery module 93 electrically connected to the main board 92, and an electric sounder electrically connected to the main board 92. 94 and a display assembly 95 electrically connected to the motherboard 92.
  • the optomechanical assembly 91 is located at the end of the storage space 812a close to the first lens holder 811 , and the end of the optomechanical assembly 91 away from the third mounting frame 83 abuts against the fixing plate 8121 to realize the installation of the optomechanical assembly 91 .
  • the optomechanical assembly 91 may include an installation case 911 installed in the storage space 812 a and an optomechanic 912 installed on the installation case 911 .
  • the installation shell 911 is in the shape of a shell, and is used to surround the optical machine 912 to support and protect the optical machine 912 .
  • the installation shell 911 can be installed at the end of the storage space 812a close to the first lens frame 811, and the end of the installation shell 911 far away from the third installation frame 83 abuts against the fixing plate 8121, so as to realize the limited installation of the installation shell 911 in the storage space 812a .
  • the optical machine 912 is arranged opposite to the second functional lens 60 installed on the third mounting frame 83, specifically the pipe groove and the inlet part of the second functional lens 60, so that the light emitted by the optical machine 912 is coupled into the second functional lens.
  • Lens 60 inside.
  • a first electrical connection portion 9121 is provided on a side of the optical engine 912 away from the third mounting frame 83 so as to be electrically connected to the main board 92 .
  • the optomechanical assembly 91 when the optomechanical assembly 91 cooperates with the first functional lens 20 , it can also be arranged on the supporting part 40 such as the first leg 41 .
  • the mainboard 92 is provided with processors, sensors and other electronic components in order to realize the normal operation of the head mounted device 100 .
  • the main board 92 is disposed on a side of the optomechanical assembly 91 away from the third installation frame 83 .
  • the side of the main board 92 close to the optical engine 912 is provided with a first electrical installation part 921 to be electrically connected with the optical engine 912 such as the first electrical connection part 9121 to realize the control of the optical engine 912 .
  • the main board 92 is provided with a second electrical installation part 922 and a third electrical installation part 923 to cooperate with the electrical sound generator 94 and the display assembly 95 .
  • the mainboard 92 is electrically connected to the display assembly 95 through the second electrical installation part 922, so as to control the display assembly 95, so that the display assembly 95 can input control commands to the mainboard 92 as an input device.
  • the main board 92 is electrically connected to the electric sound generator 94 through the third electric installation part 923 so as to control the electric sound generator 94 .
  • the main board 92 is provided with a second electrical connection portion 924 at a position corresponding to the through hole 812b to cooperate with the pickup. That is, the pickup can also serve as a part of the main body 90 .
  • the second battery module 93 is used for storing electric energy to provide electric energy for the operation of the head-mounted device 100 .
  • the second battery module 93 may be provided with a wireless charging device such as using an electromagnetic induction coil for wireless charging. Of course, the second battery module 93 can also be provided with a wired interface for charging.
  • the main board 92 can also be arranged on the supporting part 40 such as the first leg 41 .
  • the second battery module 93 is disposed on a side of the main board 92 away from the optical-mechanical assembly 91 .
  • the second battery module 93 is provided with a third electrical connection portion 931 to be electrically connected to the main board 92 .
  • the second battery module 93 can be omitted, so that the head-mounted device 100 can be powered by the first battery module 93 .
  • the electric sound generator 94 can be fixed in the sub-fixing space 8122 .
  • the electric sound generator 94 can be a device controlled by the main board 92 to realize sounding, such as a speaker or the like.
  • the sound emitted by the electric sound generator 94 can be transmitted to the outside of the storage space 812a through the communication hole 812e for the user to receive.
  • the electric sound generator 94 can be electrically connected with the main board 92 through the circuit board 941 .
  • the electric sound generator 94 can also be arranged on the support part 40 such as the first leg 41 , and correspondingly, the support part 40 such as the first leg 41 can be provided with a communication hole to communicate with the accommodating space 4110 .
  • the circuit board 941 may be a flexible circuit board.
  • One end of the circuit board 941 connected to the main board 92 is provided with a fourth electrical connection part 9411 so as to be electrically connected to the main board 92 such as the third electrical installation part 923 .
  • the circuit board 941 is provided with a fourth electrical installation part 9412 for electrical connection with the second battery module 93 , such as the third electrical connection part 931 , so as to realize the electrical connection between the main board 92 and the second battery module 93 .
  • the circuit board 941 is provided with a second external interface 9413, so that the second external interface 9413 is installed at the installation hole 8221 to realize the connection between the second battery module 93 and the first battery module.
  • the group 413 is, for example, the electrical connection of the first external interface 413a.
  • first external interface names such as “first external interface”, “second external interface” and “external interface” may be interchanged in some embodiments.
  • first external interface in other embodiments is referred to as “second external interface”
  • second external interface in other embodiments is referred to as “first external interface”.
  • first electrical connection part in other embodiments is referred to as “second electrical connection part”
  • second electrical connection part in other embodiments is referred to as “second electrical connection part”.
  • first electrical installation part in some embodiments can be converted to each other.
  • first electrical installation part in other embodiments is called “second electrical installation part”
  • second electrical installation part in other embodiments is called “second electrical installation part”.
  • An Electrical Installation Department in one embodiment, is called “second electrical installation part”, and accordingly, the “second electrical installation part” in other embodiments is called “second electrical installation part”.
  • the second battery module 93 is electrically connected to external devices such as an external power supply, the wearable assembly 200, and an external host through the second external interface 9413, so as to provide power for the external devices.
  • external devices such as an external power supply, the wearable assembly 200, and an external host through the second external interface 9413, so as to provide power for the external devices.
  • the external device can also be a second battery Module 93 is charged.
  • the display assembly 95 can be a display screen or a touch display screen, and the display assembly 95 is provided with a fifth electrical connection portion 951 to be electrically connected to the main board 92 .
  • the fifth electrical connection portion 951 can pass through the connection hole 812d to be electrically connected to the main board 92 .
  • the display component 95 can also be replaced by a key component, that is, the key component can also serve as a part of the host 90 .
  • the housing main body 84 can also be provided with a key assembly at the position where the display assembly 95 is provided, and the key assembly can be electrically connected with the main board 92 .
  • first electrical connection part “first electrical connection part”, “second electrical connection part”, “third electrical connection part”, “fourth electrical connection part”, “fifth electrical connection part” and “electrical connection part” and other names, which can be converted into each other in some embodiments.
  • first electrical connection part in other embodiments is referred to as “second electrical connection part”
  • second electrical connection part in other embodiments is referred to as “second electrical connection part”. an electrical connection part”.
  • the host 90 may at least include a motherboard 92 .
  • the host 90 may not be disposed in the housing body 84 , but disposed in at least one of the supporting part 40 such as the first leg 41 and the second leg 42 .
  • the main board 92 is disposed in the supporting portion 40 , for example, the main board 92 and the second battery module 93 may also be disposed in the supporting portion 40 .
  • the optomechanical assembly 91 can be arranged in the first leg 41 to cooperate with the first functional lens 20 to realize augmented reality or virtual reality.
  • the second functional lens 60 may not cooperate with the host 90 .
  • a part of the host 90 is set in the first leg 41 and another part is set in the second leg 42 .
  • a part of the host 90 is inside the supporting part 40 , and another part is arranged in the casing main body 84 .
  • the second leg 42 can also cooperate with the first battery module 413 according to the matching relationship between the first battery module 413 and the first leg 41 , please refer to the first leg 41 for details. Certainly, the first battery module 413 may not be installed on the second leg 42 .
  • the electrical connection of each electronic component inside the host 90 can be realized under the control of the main board 92 through the first external interface 413a and the second external interface 9413. Connection and communication, that is, the first external interface 413a and the second external interface 9413 do not only have the function of the battery module supplying power to the head-mounted device 100 .
  • the second connecting component 71 is disposed on the housing body 84 for connecting with the first connecting component 414 .
  • the second connection assembly 71 may include a second magnetic member 711 disposed in the storage space 812 a and a locking member 712 disposed on the housing main body 84 such as the second sub-housing 822 .
  • the second magnetic member 711 can generate a magnetic force so as to connect the supporting part 40 such as the first leg 41 to realize the installation of the hanging assembly 400 on the wearing assembly 200 .
  • the second magnetic member 711 can be a permanent magnet or an electromagnet. When the second magnetic member 711 is an electromagnet, it can be electrically connected with the host 90 in the head-mounted device 100 to realize the control of the electromagnet.
  • the second magnetic member 711 can be located between the host 90 and the second sub-housing 822 .
  • the second magnetic member 711 can be disposed on the second sub-housing 822 .
  • first magnetic element names such as “first magnetic element”, “second magnetic element” and “magnetic element” can be interchanged in some embodiments.
  • first magnetic part in other embodiments is called “second magnetic part”
  • second magnetic part in other embodiments is called “first magnetic part”.
  • the second magnetic part 711 can generate a magnetic force that attracts the first magnetic part 417 to realize the installation of the plug-in assembly 400 on the wearing assembly 200 .
  • the engaging member 712 is disposed on a side of the second sub-housing 822 away from the first sub-housing 812 , and is located on two opposite sides of the second magnetic member 711 .
  • the clip 712 is arranged relative to the installation openings 41b, 41c, so that the clip 712 can be inserted into the installation openings 41b, 41c to realize the positioning of the plug-in component 400 and the wearing component 200 .
  • the engaging member 712 is inserted into the installation openings 41b, 41c to be engaged or plugged in with the first leg 41, which will not be repeated here.
  • FIG. 28 is a schematic structural diagram of a head-mounted device 100 in another embodiment of the present application.
  • the head-mounted device 100 can be provided with two external components 400 , one of which is provided on the first leg 41 , and the other is provided on the second leg 42 .
  • the plug-in component 400 can be installed on the first leg 41 through the connection between the first connection component 414 and the second connection component 71, or can be installed on the first leg 41.
  • the hanger assembly 400 is rotated by 180°, and is installed on the second leg 42 through the connection between the first connection assembly 414 and the second connection assembly 71 .
  • This application adopts the design method of the plug-in component 400 to solve the problem of bulky smart glasses when worn.
  • This application not only ensures the virtual reality/augmented reality experience function but also independently experiences the sunglasses brought by the electrochromic/photochromic device through the plug-in component 400.
  • the first battery module can be used as a backup power supply to provide part of the power for the plug-in component 400, which increases the battery life of the virtual reality/augmented reality experience, and can provide consumers with the ultimate experience.

Abstract

本申请公开了一种头戴式设备,属于智能设备技术领域。头戴式设备中,框架结构设置有第一外接接口以及第一连接组件,外挂壳体设置有第二外接接口以及第二连接组件,第一连接组件与第二连接组件相互连接,第一外接接口与第二外接接口电连接,主机设置在框架结构和外挂壳体中,第一及第二功能镜片层叠设置,第一功能镜片设置在框架结构,第二功能镜片设置在外挂壳体,第一及第二功能镜片在主机的控制下呈现虚拟现实/增强现实环境。本申请将头戴式设备设置成分体式,例如一部分为框架结构与第一功能镜片,另一部分为外挂壳体与第二功能镜片,可以根据自己的需要将两部分进行组装体验组合后的功能,也可以单一体验各部分的功能。

Description

头戴式设备 【技术领域】
本申请属于智能设备技术领域,特别是涉及一种头戴式设备。
【背景技术】
目前在智能眼镜行业中,智能眼镜实现各种功能需要配备各种硬件,导致智能眼镜整机体积很大,重量也会增加很多,在实现某一单独功能时,也需要承受整个智能眼镜的重量。
【发明内容】
本申请一方面提供了一种头戴式设备,包括:框架结构,设置有第一外接接口以及第一连接组件,所述第一连接组件用于产生磁场;外挂壳体,设置有第二外接接口以及第二连接组件,所述第二连接组件用于产生磁场,所述外挂壳体配置为在所述第一连接组件与所述第二连接组件相互磁场作用而安装在所述框架结构的外侧,第一外接接口配置为在所述外挂壳体安装在所述框架结构而与所述第二外接接口抵接,以使所述第一外接接口与所述第二外接接口电连接;主机,一部分设置在所述框架结构中,另一部分设置在所述外挂壳体中,所述一部分与所述第一外接接口电连接,所述另一部分与所述第二外接接口电连接;以及第一及第二功能镜片,层叠设置,所述第一功能镜片设置在所述框架结构,所述第二功能镜片设置在所述外挂壳体,所述第一及第二功能镜片配置为在所述主机的控制下呈现虚拟现实/增强现实环境。
本申请另一方面提供了一种头戴式设备,包括:框架结构,设置有第一外接接口以及第一连接组件,所述第一连接组件用于产生磁场;外挂壳体,设置有第二外接接口以及第二连接组件,所述第二连接组件用于产生磁场,所述外挂壳体配置为在所述第一连接组件与所述第二连接组件相互磁场作用而安装在所述框架结构的外侧,第一外接接口配置为在所述外挂壳体安装在所述框架结构而与所述第二外接接口抵接,以使所述第一外接接口与所述第二外接接口电连接;主机,一部分设置在所述框架结构中,另一部分设置在所述外挂壳体中,所述一部分与所述第一外接接口电连接,所述另一部分与所述第二外接接口电连接;以及第一功能镜片,设置在所述框架结构或所述外挂壳体,所述第一功能镜片配置为在所述主机的控制下呈现虚拟现实/增强现实环境。
本申请另一方面提供了一种头戴式设备,包括:佩戴组件;外挂组件,设置在所述佩戴组件,以及第一功能镜片,安装在所述第一安装框上,与所述第一镜片层叠设置,在所述主机的控制下呈现虚拟现实/增强现实环境。所述佩戴组件包括:佩戴主体;第一及第二支腿,设置在所述佩戴主体的相对两端,以形成框架结构,所述第一支腿设置有第一外接接口以及第一连接组件,所述第一连接组件用于产生磁场;第一及第二镜片,对称设置在所述佩戴主体上;和第一电池模组,设置在所述第一支腿上,与所述第一外接接口电连接;所述外挂组件包括:第一安装框,与所述第一支腿分别设置在所述佩戴主体的相背两侧,壳体主体,设置在所述第一支腿远离所述第二支腿的一侧,所述壳体主体靠近所述佩戴主体的一端与所述第一安装框连接固定,所述壳体主体靠近所述第一支腿的一侧设置有第二外接接口以及第二连接组件,所述第二连接组件用于产生磁场,所述壳体主体配置为在所述第一连接组件与所述第二连接组件相互磁场作用而安装在所述第一支腿远离所述第二支腿的一侧,第一外接接口配置为在所述壳体主体安装在所述第一支腿而与所述第二外接接口抵接,以使所述第一外接接口与所述第二外接接口电连接;主机,设置在所述壳体主体内,与所述第二外接接口电连接,所述主机包括为所述主机供电的第二电池模组,所述第一电池模组配置为在所述第一外接接口与所述第二外接接口电连接时为所属主机供电;
采用本申请所述技术方案,具有的有益效果为:本申请将头戴式设备设置成分体式,例如一部分为框架结构与第一功能镜片,另一部分为外挂壳体与第二功能镜片,可以根据自己的需要将两部分进行组装体验组合后的功能,也可以单一体验各部分的功能。
【附图说明】
图1为本申请一实施例中头戴式设备的结构示意图;
图2为本申请图1所示实施例中头戴式设备的爆炸图;
图3为本申请图1所示实施例中佩戴组件的爆炸图;
图4为本申请图3所示实施例中第一支腿一个视角的爆炸图;
图5为本申请图3所示实施例中第一支腿另一个视角的爆炸图;
图6为本申请图4所示实施例中支腿主体和支腿侧盖连接的结构示意图;
图7为本申请图4所示实施例中支腿主体和第一电池模组的安装结构图;
图8为本申请图2所示实施例中佩戴组件的另一实施例中的结构示意图;
图9为本申请图8所示实施例中佩戴组件的爆炸图;
图10为本申请图9所示实施例中佩戴主体一个视角的结构示意图;
图11为本申请图9所示实施例中佩戴主体另一个视角的结构示意图;
图12为本申请图9所示实施例中第一支腿的结构示意图;
图13为本申请图12所示实施例中第一支腿一视角的部分结构爆炸图;
图14为本申请图12所示实施例中第一支腿另一视角的部分结构爆炸图;
图15为本申请图9所示实施例中松紧调节组件的结构示意图;
图16为本申请图9所示实施例中佩戴主体与松紧调节组件连接时一个视角的结构示意图;
图17为本申请图9所示实施例中佩戴主体与松紧调节组件连接时另一个视角的结构示意图;
图18为本申请图9所示实施例中第一支腿与第一调节件连接的结构示意图;
图19揭露本申请图2所示实施例中外挂组件一视角的爆炸图;
图20为本申请图2所示实施例中外挂组件另一视角的爆炸图;
图21为本申请图19所示实施例中第二功能镜片与第三安装框连接时另一实施例的结构示意图;
图22为本申请图21所示实施例中第二功能镜片与第三安装框连接的爆炸图;
图23为本申请图21所示实施例中第二功能镜片与第三安装框在线XXI-XXI的剖视图;
图24为本申请图19所示实施例中主机的结构示意图;
图25为本申请图24所示实施例中主机一个视角的爆炸图;
图26为本申请图24所示实施例中主机另一个视角的爆炸图;
图27为本申请图19所示实施例中第一壳体与主机安装固定的结构示意图;
图28为本申请另一实施例中头戴式设备的结构示意图。
【具体实施方式】
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做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。
在本文中提及“实施例”意味着,结合实施例描述的特定特征、结构或特性可以包含在本申请的至少一个实施例中。在说明书中的各个位置出现该短语并不一定均是指相同的实施例,也不是与其他实施例互斥的独立的或备选的实施例。本领域技术人员显式地和隐式地理解的是,本文所描述的实施例可以与其他实施例相结合。
本申请阐述了一种头戴式设备。该头戴式设备可以为增强现实或虚拟现实设备,例如增强现实或虚拟现实眼镜。当然,该头戴式设备也可以为其他需要佩戴在头部的设备,例如眼镜,例如具有照明等其他功能且可佩戴在头部的设备,不再赘述。下面以增强现实或虚拟现实眼镜为例进行详细阐述。
在增强现实或虚拟现实眼镜的示例中,头戴式设备可被配置成通过信号连接将数据传递到外部处理设备并从外部处理设备接收数据,信号连接可以是有线连接、无线连接或其组合。然而,在其他情形中,头戴式设备可用作独立设备,即在头戴式设备自身进行数据处理。信号连接可以被配置成承载任何种类的数据,诸如图像数据(例如,静止图像和/或完全运动视频,包括2D和3D图像)、音频、多媒体、语音和/或任何其他类型的数据。外部处理设备可以是例如游戏控制台、个人计算机、平板计算机、智能电话或其他类型的处理设备。信号连接可以是例如通用串行总线(USB)连接、Wi-Fi连接、蓝牙或蓝牙低能量(BLE)连接、以太网连接、电缆连接、DSL连接、蜂窝连接(例如,3G、LTE/4G或5G)等或其组合。附加地,外部处理设备可以经由网络与一个或多个其他外部处理设备通信,网络可以是或包括例如局域网(LAN)、广域网(WAN)、内联网、城域网(MAN)、全球因特网或其组合。
头戴式设备中可安装显示组件、光学器件、传感器和处理器等。在增强现实或虚拟现实眼镜的示例中,显示组件被设计成,例如,通过将光投影到用户眼睛中实现虚拟现实眼镜的功能,例如,通过将光投影到用户眼睛中,在用户对其现实世界环境的视图上覆盖图像实现增强现实眼镜的功能。头戴式设备还可包括环境光传感器,并且还可包括电子电路系统以控制上述部件中的至少一些并且执行相关联的数据处理功能。电子电路系统可包括例如一个或多个处理器和一个或多个存储器。
请参阅图1和图2,图1为本申请一实施例中头戴式设备的结构示意图,图2为本申请图1所示实施例中头戴式设备的爆炸图。该头戴式设备100可包括佩戴组件200以及安装在佩戴组件200上的外挂组件400。其中,佩戴组件200可佩戴在用户头部。佩戴组件200与外挂组件400配合,可在用户眼睛前方,实现增强现实或虚拟现实功能,当然也可以实现其他功能,不再赘述。
请一同参阅图1、图2和图3,图3为本申请图1所示实施例中佩戴组件200的爆炸图。佩戴组件200可包括第一功能镜片20、用于安装第一功能镜片20的佩戴主体30以及与佩戴主体30的相对两端连接的 支撑部40。其中,佩戴主体30和支撑部40形成框架结构10,以佩戴在用户头部,当然,框架结构10中并不仅限于佩戴主体30和支撑部40,其还可以包括其他结构,不再赘述。第一功能镜片20对应于用户眼睛设置,以实现某种光学功能例如光线透过、视力矫正、虚拟现实、增强现实等。
需要指出的是,此处以及下文中的术语“第一”、“第二”……等仅用于描述目的,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”……等的特征可以明示或者隐含地包括一个或者更多个所述特征。
请参阅图3,第一功能镜片20可采用玻璃、塑料等一种或多种透明或半透明材料制成。第一功能镜片20也可以在为了某种透光特效而采用透明材料、半透明材料、不透明材料等材料中的一种或多种制成。
在一实施例中,第一功能镜片20可为凸透镜和凹透镜等透镜中的一种或多种制成的视力矫正镜片,当然在视力矫正镜片中还可以设置其他类型的透镜或功能透镜(例如平镜、防眩镜、有色镜等)或功能膜片(例如增透膜、偏振模、滤光膜等)。在一实施例中,第一功能镜片20可为近视镜片。
在另一些实施例中,第一功能镜片20也可以是其他功能镜片例如平镜、防眩镜、有色镜等。
在一实施例中,第一功能镜片20也可为光致变色器件。例如,光致变色器件可采用光致变色材料制成,以使得光致变色器件受到一定波长的光激发后能够发生颜色变化。对于光致变色材料可在本领域技术人员理解的范围内采用现有技术中已存在的技术方案制作,不再赘述。
在一实施例中,第一功能镜片20也可为电致变色器件。例如,电致变色器件可采用电致变色材料制成。电致变色材料可为无机电致变色材料和有机电致变色材料中的一种。无机电致变色材料可为三氧化钨。而有机电致变色材料可为聚噻吩类及其衍生物、紫罗精类、四硫富瓦烯、金属酞菁类化合物等中的一种。当然,对于电致变色材料可在本领域技术人员理解的范围内采用现有技术中已存在的技术方案制作,不再赘述。
电致变色器件可与头戴式设备100内部的主机电连接,以实现对电致变色器件的控制。
在一实施例中,第一功能镜片20可为光波导,具体可为平面光栅波导例如衍射光栅波导。头戴式设备100可通过第一功能镜片20呈现虚拟现实/增强现实环境。
可以理解地,第一功能镜片20也可以是将上述实施例中的任意实施例进行组合形成的结构,不再赘述。
请参阅图3,第一功能镜片20可包括第一镜片21和与第一镜片21对称设置的第二镜片22。其中,第一镜片21可对应用户的右眼设置,第二镜片22可对应于用户的左眼设置。在一实施例中,第一镜片21可与第二镜片22的类型不同。例如第一镜片21为光波导,第二镜片22为平镜。
可以理解地,对于“第一镜片”、“第二镜片”以及“镜片”等名称,在一些实施例中可以相互转换。例如在一实施例中,将其他实施例中的“第一镜片”称为“第二镜片”,相应地,将其他实施例中的“第二镜片”称为“第一镜片”。
以第一功能镜片20为光波导为例,镜片(例如第一镜片21、第二镜片22)可设置光耦合进口部和光耦合出口部。光耦合进口部和光耦合出口部连接在一起以形成光路,光线从光耦合进口部被耦合进入镜片中,在光路内传输,最后光线会在光耦合出口部处被耦合出镜片,射入佩戴者眼中并在视网膜上成像。
可以理解地,在一实施例中,第一镜片21和第二镜片22中至少一个可省略。在一些实施例中,第一功能镜片20可以省略。
请参阅图3,佩戴主体30可用于佩戴在用户的头部。佩戴主体30位于用户眼睛前方。佩戴主体30可用于安装第一功能镜片20,实现第一功能镜片20的佩戴。佩戴主体30可包括用于安装第一镜片21的第一安装框31、与第一安装框31对称设置且用于安装第二镜片22的第二安装框32以及连接第一安装框31和第二安装框32的连接件33。
第一安装框31可以采用硬性材料例如金属、橡胶、塑料等制成。第一安装框31可为环状结构例如矩形环状结构、不规则环形结构、圆形环形结构、椭圆形环形结构等。当然,第一安装框31也可以为半环形结构或其他结构,不再赘述。第一安装框31可形成于第一功能镜片20例如第一镜片21的边缘,以与第一功能镜片20例如第一镜片21连接固定。在一实施例中,第一安装框31围设在第一功能镜片20例如第一镜片21的边缘。
第一安装框31可在远离第二安装框32的一端形成第一安装部311,以用于安装支撑部40。在一实施例中,第一安装部311可为转轴。
第二安装框32可以采用硬性材料例如金属、橡胶、塑料等制成。第二安装框32也可采用与第一安装框31相同的材料制成。第二安装框32可为环状结构例如矩形环状结构、不规则环形结构、圆形环形结构、椭圆形环形结构等。当然,第二安装框32也可以为半环形结构或其他结构,不再赘述。第二安装框32可形成于第一功能镜片20例如第二镜片22的边缘,以与第一功能镜片20例如第二镜片22连接固定。在一实施例中,第二安装框32围设在第一功能镜片20例如第二镜片22的边缘。
第二安装框32可在远离第一安装框31的一端形成第二安装部321,以用于安装支撑部40。第二安装部321与第一安装部311位于佩戴主体30的同一侧。在一实施例中,第二安装部321可为转轴。
可以理解地,对于“第一安装部”、“第二安装部”以及“安装部”等名称,在一些实施例中可以相互转换。例如在一实施例中,将其他实施例中的“第一安装部”称为“第二安装部”,相应地,将其他实施例中的“第二安装部”称为“第一安装部”。
连接件33可以采用与第一安装框31或第二安装框32一样的材质制成,当然也可以是其他硬性材料制成。连接件33位于第一安装框31和第二安装框32之间,用于连接第一安装框31和第二安装框32,以使得第一安装框31和第二安装框32成为一个整体,以使第一安装框31和第二安装框32间隔设置,并在第一安装框31和第二安装框32之间形成鼻托部34,以便佩戴主体30架设在用户的鼻梁上。在一实施例中,鼻托部34单独设置,可设置在连接件33上。
在一实施例中,第一安装框31、第二安装框32以及连接件33可为一体结构。在一实施例中,连接件33可省略,第一安装框31和第二安装框32直接连接固定。
可以理解地,第一安装框31和第二安装框32中的至少一个可以省略。例如省略第一安装框31,连接件33可直接与第一功能镜片20例如第一镜片21连接固定,支撑部40直接与第一功能镜片20例如第一镜片21连接。例如省略第二安装框32,连接件33可直接与第一功能镜片20例如第二镜片22连接固定,支撑部40直接与第一功能镜片20例如第二镜片22连接。在一实施例中,第一安装框31及第一镜片21省略时,支撑部40可直接与第二安装框32或连接件33连接固定。
在其他实施例中,为了实现虚拟现实或增强现实功能,甚至为了实现其他功能,可在佩戴主体30上设置摄像头,以实现对用户眼睛前方景象的摄取,在一些实施例中,摄像头也可以配合眼球追踪技术对用户眼睛进行追踪,以实现对虚拟现实或增强现实显示的图像地进一步处理。
请参阅图3,支撑部40用于佩戴在用户的头部,可与佩戴主体30连接固定形成框架结构10。支撑部40可包括与第一安装框31例如第一安装部311连接的第一支腿41以及与第二安装框32例如第二安装部321连接且与第一支腿41对称安装的第二支腿42。其中,第一支腿41可架设在右耳上,第二支腿42可架设在左耳上,以实现支撑部40的佩戴。当然,支撑部40也可以采用其他例如环状结构、半环状结构等形式设置。
可以理解地,对于“第一支腿”、“第二支腿”以及“支腿”等名称,在一些实施例中可以相互转换。例如在一实施例中,将其他实施例中的“第一支腿”称为“第二支腿”,相应地,将其他实施例中的“第二支腿”称为“第一支腿”。
请参阅图4和图5,图4和图5分别为本申请图3所示实施例中第一支腿41一个视角的爆炸图。第一支腿41可包括与第一安装框31例如第一安装部311连接的支腿主体411、与支腿主体411扣合以形成容纳空间4110的支腿侧盖412、安装在容纳空间4110内部的第一电池模组413以及设置在容纳空间4110内且用于安装外挂组件400的第一连接组件414。
支腿主体411采用硬性材料例如金属、橡胶、塑料等制成,当然也可以采用和佩戴主体30相同的材质制成。支腿主体411整体可呈长条形壳状结构。支腿主体411与第一安装框31例如第一安装部311连接的一端设置装配部4111。在一实施例中,装配部4111可为孔,以便与第一安装部311例如转轴枢接,使得支腿主体411与第一安装框31转动连接。在支腿主体411与第一安装框31相对转动时,支腿主体411远离第一安装部311的一端向第二支腿42一侧移动,进而可以实现佩戴组件200的折叠、收纳,进而减少佩戴组件200的占用空间。在支腿主体411与第一安装框31相对转动时,支腿主体411远离第一安装部311的一端向远离第二支腿42一侧移动,进而展开佩戴组件200。当然,装配部4111和第一安装部311也可以采用其他方式例如粘接、插接、焊接、卡接等方式连接固定,不再赘述。
支腿主体411内部设置有容纳空间4110,以便于容纳第一电池模组413以及第一连接组件414。当然,在头戴式设备100中用于实现增强现实、虚拟现实功能和/或其他功能的主机设置在支腿主体411上时,主机可置于容纳空间4110内。
在一实施例中,支腿主体411在容纳空间4110内可设置分隔板4112,以将容纳空间4110分割为多个子空间例如位于中部的第一安装空间411a以及位于第一安装空间411a两侧的第二安装空间411b、411c。分隔板4112也可用于加强支腿主体411强度。当然,在某些实施例中,分隔板4112可以省略。
可以理解地,对于“第一安装空间”、“第二安装空间”以及“安装空间”等名称,在一些实施例中可以相互转换。例如在一实施例中,将其他实施例中的“第一安装空间”称为“第二安装空间”,相应地,将其他实施例中的“第二安装空间”称为“第一安装空间”。
支腿主体411在远离第二支腿42一侧开设开口41a,以与容纳空间4110连通,以便在开口41a处盖设支腿侧盖412。当然,开口41a也可以开设在支腿主体411靠近第二支腿42的一侧,相应地,支腿侧盖412安装在支腿主体411朝向第二支腿42的一侧。
支腿侧盖412可采用硬性材料例如金属、橡胶、塑料等制成,也可采用与支腿主体411一样的材料制成。支腿侧盖412可为板状结构,其大小形状可与开口41a类似,以便开口41a处盖设在支腿主体411。在一实施例中,支腿侧盖412盖设在支腿主体411上时,使得容纳空间4110为一个密闭的空间。
在一实施例中,请一同参阅图4和图6,图6为本申请图4所示实施例中支腿主体411和支腿侧盖412连接的结构示意图。支腿侧盖412盖设在开口41a与第一安装空间411a相对应的部位,以使得支腿侧盖412与支腿主体411在与第二安装空间411b相对应地部位形成安装口41b,在与第二安装空间411c相对应地部位形成安装口41c,安装口41b、41c用于与第一连接组件414及外挂组件400配合。当然,安装口41b、41c也可以在支腿侧盖412完全遮挡开口41a时设置在支腿侧盖412上。
支腿侧盖412上开设有安装孔412a,安装孔412a与容纳空间4110例如第一安装空间411a连通,以与第一电池模组413配合。
在一实施例中,支腿侧盖412可用显示组件和/或按键组件替代。显示组件和/或按键组件可与头戴式设备100内部的主机电连接,以向头戴式设备100内输入控制指令,实现对头戴式设备100的控制。当然,在支腿侧盖412被显示组件替代时,可作为输出设备向用户输出头戴式设备100的工作状态等消息。
在一实施例中,支腿侧盖412可与支腿主体411为一体结构。
可以理解地,在支腿侧盖412安装在支腿主体411靠近第二支腿42一侧时,安装口41b、41c及安装孔412a相应地可设置在支腿主体411上,相应地,显示组件和/或按键组件也可以设置在支腿主体411上。
第二支腿42与第一支腿41对称设置,以便第二支腿42与第一支腿41配合实现佩戴组件200佩戴在用户头部上。第二支腿42可采用上述第一支腿41的设置方式设置。例如,在一些实施例中,第二支腿42可采用第一支腿41与第一安装框31的连接方式与第二安装框32连接。在第一支腿41与第一安装框31相对转动时,第一支腿41远离第一安装框31相的一端向第二支腿42一侧移动,进而可以实现佩戴组件200的折叠、收纳,进而减少佩戴组件200的占用空间。在第二支腿42与第二安装框32相对转动时,第二支腿42远离第二安装框32的一端向远离第一支腿41一侧移动,进而展开佩戴组件200。例如,在一些实施例中,第二支腿42可采用第一支腿41中支腿主体411和支腿侧盖412的构造及连接关系设置。对于第二支腿42的设置方式及功能具体可参阅上述实施例中第一支腿41的设置方式及功能,不再赘述。当然,第二支腿42也可不采用第一支腿41的设置方式设置,而采用其他方式设置,不再赘述。
请参阅图4和图7,图7为本申请图4所示实施例中支腿主体411和第一电池模组413的安装结构图。第一电池模组413用于存储电能,以为头戴式设备100的运行提供电能。第一电池模组413可设置有无线充电装置例如利用电磁感应线圈进行无线充电。当然,第一电池模组413也可以设置有线接口以进行充电。
第一电池模组413具体可位于第一支腿41的容纳空间4110例如第一安装空间411a内。第一电池模组413对应于支腿侧盖412的安装孔412a处设置第一外接接口413a,以便于将第一外接接口413a设置在安装孔412a内,实现与外部电源、外挂组件400、外接主机等外接设备电连接,进而可为外接设备供电,当然外接设备也可为第一电池模组413充电。
可以理解地,第二支腿42也可以按照第一电池模组413与第一支腿41的配合关系与第一电池模组413配合,具体可参阅第一支腿41。当然,第二支腿42也可以不安装第一电池模组413。
请参阅图4和图5,第一连接组件414可安装在第一支腿41上以与外挂组件400连接固定。第一连接组件414具体可位于第一支腿41的容纳空间4110内。第一连接组件414可安装在第一支腿41和第二支腿42中至少一个支腿上,以与外挂组件400连接固定。第一连接组件414具体可安装在容纳空间4110内。第一连接组件414可包括安装在第二安装空间411b中的第一遮挡组件415、安装在第二安装空间411c中的第二遮挡组件416以及安装在第一安装空间411a中的第一磁性件417。其中,第一遮挡组件415用于对安装口41b进行遮挡,第二遮挡组件416用于对安装口41c进行遮挡。第一磁性件417用于与外挂组件400进行连接固定。
可以理解地,对于“第一遮挡组件”、“第二遮挡组件”以及“遮挡组件”等名称,在一些实施例中可以相互转换。例如在一实施例中,将其他实施例中的“第一遮挡组件”称为“第二遮挡组件”,相应地,将其他实施例中的“第二遮挡组件”称为“第一遮挡组件”。
第一遮挡组件415可包括置于第二安装空间411b内且用于遮挡安装口41b的抵接板4151以及设置在安装口41b与支腿主体41之间的弹性件4152。其中,抵接板4151与弹性件4152配合实现对外挂组件400的让位,以使得外挂组件400安装在第一支腿41上,也可在第一支腿41未安装外挂组件400时对安装口41b进行遮挡提高支撑部40例如第一支腿41的外观表现力。
抵接板4151可采用硬性材料制成,当然也可以采用与支腿主体411或支腿侧盖412一样的材质制成。抵接板4151可呈板状结构,抵接板4151可在容纳空间4110例如第二安装空间411b内滑动。抵接板4151可在安装口41b处与支腿主体411和支腿侧盖412的外表面平齐,提高支撑部40例如第一支腿41的外观表现力。抵接板4151位于安装口41b一侧的表面可分别与支腿主体411及支腿侧盖412抵接,以避免抵 接板4151滑出容纳空间4110例如第二安装空间411b。
弹性件4152可为弹簧。弹性件4152一端抵接抵接板4151,另一端抵接支腿主体411,以使得抵接板4151在弹性件4152的弹性作用下与支腿主体411及支腿侧盖412抵接,以使得抵接板4151在外力克服弹性件4152的弹性作用力下,可向容纳空间4110例如第二安装空间411b内滑动以露出安装口41b。
第二遮挡组件416可与第一遮挡组件415分别设置在第一磁性件417的两侧。第二遮挡组件416可采用第一遮挡组件415的设置方式对安装口41c进行遮挡以提高支撑部40例如第一支腿41的外观表现力,以与外挂组件400配合。例如,在一些实施例中,第二遮挡组件416可采用第一遮挡组件415与支腿主体411及支腿侧盖412的配合方式与支腿主体411及支腿侧盖412配合。例如,在一些实施例中,第二遮挡组件416可采用第一遮挡组件415中抵接板4151和弹性件4152构造及连接方式设置。对于第二遮挡组件416的设置方式及功能具体可参阅上述实施例中第一遮挡组件415的设置方式及功能,不再赘述。当然,第二遮挡组件416也可不采用第一遮挡组件415的设置方式设置,而采用其他方式设置,不再赘述。
可以理解地,第一遮挡组件415和第二遮挡组件416可至少省略其中一个。
第一磁性件417可产生磁作用力,以便连接外挂组件400,实现外挂组件400在佩戴组件200上的安装。第一磁性件417可为永磁铁或电磁铁。当第一磁性件417为电磁铁时,可与头戴式设备100内的主机电连接,以实现对电磁铁的控制。
第一磁性件417可安装在容纳空间4110例如第一安装空间411a内。在一实施例中,第一磁性件417具体可位于支腿侧盖412与第一电池模组413之间。在一实施例中,第一磁性件417可设置在支腿侧盖412上。
可以理解地,第二支腿42也可按照第一支腿41设置第一连接组件414的方式设置,以安装外挂组件400。具体可参阅第一支腿41设置第一连接组件414的方式,不作赘述。
请参阅图8和图9,图8为本申请图2所示实施例中佩戴组件200的另一实施例中的结构示意图,图9为本申请图8所示实施例中佩戴组件200的爆炸图。佩戴组件200可包括上述实施例中的第一功能镜片20、佩戴主体30以及支撑部40。除此之外,佩戴组件200还可包括安装在佩戴主体30上且用于调节支撑部40与用户头部之间作用力的松紧调节组件50,使得用户佩戴更舒适,佩戴更方便。可以理解地,松紧调节组件50也可以作为框架结构10的一部分。
请参阅图10和图11,图10和图11分别为本申请图9所示实施例中佩戴主体30不同视角的结构示意图。其中,第一安装部311自第一安装框31向远离第一安装框31一侧延伸设置。第一安装部311可包括设置在第一安装框31的安装主体3111以及设置在安装主体3111远离第一安装框31一端的第一及第二安装板3112、3113。其中,第一及第二安装板3112、3113相对且间隔设置,以在第一及第二安装板3112、3113之间安装第一支腿41,以使得第一安装部311与第一支腿41例如装配部4111转动连接。第一及第二安装板3112、3113的排布方向与第一及第二安装部311、321的排布方向垂直,以使得第一支腿41与第一安装框31相对转动以实现佩戴组件200的折叠收纳或展开使用。
安装主体3111可内部中空,在一实施例中,可便于第一功能镜片20与主机配合的相关电路走线穿设,在一实施例中,可便于第一功能镜片20与主机配合的相关的光路布置,在一实施例中,可便于布置控制第一功能镜片20的主机。
第一安装板3112靠近第二安装板3113一侧及第二安装板3113靠近第一安装板3112的一侧均设置有滑道3114,以便于与松紧调节组件50配合。第一安装板3112的滑道3114及第二安装板3113的滑道3114均向远离第二安装部321的一侧延伸并延伸至第一及第二安装板3112、3113的边缘。在一实施例中,滑道3114可以省略。
可以理解地,对于“第一安装板”、“第二安装板”以及“安装板”等名称,在一些实施例中可以相互转换。例如在一实施例中,将其他实施例中的“第一安装板”称为“第二安装板”,相应地,将其他实施例中的“第二安装板”称为“第一安装板”。
第一安装板3112的滑道3114及第二安装板3113的滑道3114内均设置有向内凹陷的限位槽3115,以与第一支腿41例如装配部4111配合,使得装配部4111在第一限位槽3115内滑动。限位槽3115的延伸方向可与滑道3114的延伸方向一致。
第二安装部321可采用第一安装部311与第一安装框31的设置方式与第二安装框32设置。第二安装部321可采用第一安装部311设置安装主体3111及第一及第二安装板3112、3113的方式设置。第二安装部321可采用第一安装部311与第一支腿41的配合方式与第二支腿42配合,使得第一支腿41与第二安装框32相对转动以实现佩戴组件200的折叠收纳或展开使用。对于第二安装部321的设置方式及功能具体可参阅上述实施例中第一安装部311的设置方式及功能,不再赘述。
请一同参阅图9和图12、图13、图14。图12为本申请图9所示实施例中第一支腿41的结构示意图,图13为本申请图12所示实施例中第一支腿41一视角的部分结构爆炸图,图14为本申请图12所示实施 例中第一支腿41另一视角的部分结构爆炸图。其中,支腿侧盖412安装在支腿主体411朝向第二支腿42的一侧。安装口41b、41c及安装孔412a可设置在支腿主体411上。
装配部4111包括设置在同一轴线上的第一轴部4113及第二轴部4114。其中第一轴部4113及第二轴部4114所在轴线为第一支腿41相对于第一安装框31转动的轴线。第一轴部4113可置于第一安装板3112的限位槽3115内,并在限位槽3115的延伸方向上滑动。第二轴部4114可置于第二安装板3113的限位槽3115内,并在限位槽3115的延伸方向上滑动。同时,装配部4111可绕第一及第二轴部转到,转动轴线可为第一转轴。
可以理解地,对于“第一轴部”、“第二轴部”以及“轴部”等名称,在一些实施例中可以相互转换。例如在一实施例中,将其他实施例中的“第一轴部”称为“第二轴部”,相应地,将其他实施例中的“第二轴部”称为“第一轴部”。
装配部4111还包括自支腿主体411端部向第一安装框31一侧延伸设置的第一卡接侧壁4115。第一卡接侧壁4115与第一轴部4113及第二轴部4114围设形成与容纳空间4110连通的容置空间4116,同时形成与开口41a连通的嵌设口4115a,以与支腿侧盖412配合。
第一卡接侧壁4115在容置空间4116外的表面设置有限位凸起4115b,以与松紧调节组件50配合。在一实施例中,限位凸起4115b可采用具有弹性形变的材料制成。
第一卡接侧壁4115与支腿主体411连接的部位形成让位部4115c,以对松紧调节组件50让位,以提升佩戴主体30的外观表现力。让位部4115c呈阶梯状。
支腿侧盖412可包括盖设在开口41a处的侧盖主体4121以及自侧盖主体4121向装配部4111一侧延伸设置的第二卡接侧壁4122。第二卡接侧壁4122盖设在嵌设口4115a处并与第一轴部4113及第二轴部4114连接,第二卡接侧壁4122远离支腿主体411的端部可与第一卡接侧壁4115远离侧盖主体4121的端部连接。在一实施例中,第二卡接侧壁4122远离支腿主体411的端部可与第一卡接侧壁4115远离侧盖主体4121的端部间隔设置,以便电路走线从容置空间4116伸入第一安装部311例如安装主体3111内,在一些实施例中,可供光路从容置空间4116穿设进入第一安装部311内,与第一功能镜片20例如第一镜片21配合。
可以理解地,对于“第一卡接侧壁”、“第二卡接侧壁”、以及“卡接侧壁”等名称,在一些实施例中可以相互转换。例如在一实施例中,将其他实施例中的“第一卡接侧壁”称为“第二卡接侧壁”,相应地,将其他实施例中的“第二卡接侧壁”称为“第一卡接侧壁”。
第二支腿42可采用第一支腿41的设置方式设置,例如设置第一轴部4113及第二轴部4114、第一卡接侧壁4115、第二卡接侧壁4122、让位部4115c及限位凸起4115b、让位部4115c等。第二支腿42可采用第一支腿41与第一安装框31的配合关系与第二安装框32配合。第二支腿42可采用第一支腿41与外挂组件400的配合关系与外挂组件400配合。第二支腿42可采用第一支腿41与第一功能镜片20的配合关系与第一功能镜片20例如第二镜片22配合。具体第二支腿42中各个部件的设置方式及功能可参阅第一支腿41的设置方式及功能,不再赘述。
请参阅图9、图15、图16、图17和图18,图15为本申请图9所示实施例中松紧调节组件50的结构示意图,图16为本申请图9所示实施例中佩戴主体30与松紧调节组件50连接时一个视角的结构示意图,图17为本申请图9所示实施例中佩戴主体30与松紧调节组件50连接时另一个视角的结构示意图,图18为本申请图9所示实施例中第一支腿与第一调节件51连接的结构示意图。松紧调节组件50可包括安装在第一安装框31且与第一支腿41例如装配部4111连接的第一调节件51和安装在第二安装框32上且与第二支腿42例如装配部4111连接的第二调节件52。其中,第一调节件51用于调节第一支腿41与用户头部之间的作用力,第二调节件52用于调节第二支腿42与用户头部之间的作用力。
可以理解地,对于“第一调节件”、“第二调节件”以及“调节件”等名称,在一些实施例中可以相互转换。例如在一实施例中,将其他实施例中的“第一调节件”称为“第二调节件”,相应地,将其他实施例中的“第二调节件”称为“第一调节件”。
第一调节件51采用具有弹性形变的材料制成。第一调节件51可包括设置在与第一安装部311分别设置在第一安装框31相背两侧的连接部511以及与连接部511连接固定的弯折部512。其中,弯折部512设置在连接部511对应于第一安装部311的位置。弯折部512自连接部511的边缘延伸设置,并向第一安装部311一侧弯折。弯折部512可设置在第一安装部311远离第二安装部321的一侧。在一实施例中,弯折部512可抵接在第一安装部311远离第二安装部321的一侧。
连接部511的形状可与第一安装框31的形状相同,例如可呈环状结构,当然也可呈半环状结构,也可呈其他形状的结构例如表面具有纹理、图案的形状。连接部511可围设在第一镜片21的周围。在一实施例中,连接部511在第一镜片21处的边缘部可设置在第一镜片21远离第一安装框31的一侧,以便将第一镜片21夹设在边缘部与第一安装框31之间。
可以理解地,连接部511可实现弯折部512与第一安装框31的连接,所以连接部511可以省略,弯 折部512的端部可固定在第一安装框31上。在一实施例中,弯折部512的端部可固定在第一安装部311上。
弯折部512在与滑道3114相对的位置设置有相对设置的第一枢接部5122以及第二枢接部5123。其中,第一枢接部5122可置于第一安装板3112的滑道3114内,并在滑道3114的延伸方向上滑动。第一枢接部5122可与第一轴部4113转动连接。第二枢接部5123可置于第二安装板3113的滑道3114内,并在滑道3114的延伸方向上滑动。第二枢接部5123可与第二轴部4114转动连接。
可以理解地,对于“第一枢接部”、“第二枢接部”以及“枢接部”等名称,在一些实施例中可以相互转换。例如在一实施例中,将其他实施例中的“第一枢接部”称为“第二枢接部”,相应地,将其他实施例中的“第二枢接部”称为“第一枢接部”。
弯折部512在第一支腿41转动时可使得弯折部512位于让位部4115c,并与第一支腿41例如支腿主体411、第一卡接侧壁4115抵接时,以使得弯折部512与第一支腿41相对静止。在一实施例中,在弯折部512与第一支腿41例如支腿主体411、第一卡接侧壁4115抵接时,可使得弯折部512与第一支腿41例如支腿主体411的外表面平齐,以提高佩戴组件200的外观表现力。
在一实施例中,第一支腿41相对于弯折部512转动时,可转动至限位凸起4115b与弯折部512抵接的位置,限位凸起4115b被挤压变形以增加第一支腿41相对于弯折部512转动时的阻尼,进而提升用户折叠收纳、展开使用的手感。例如,在第一支腿41相对于弯折部512转动以实现佩戴组件200折叠时,限位凸起4115b与弯折部512抵接,使得折叠过程需要克服限位凸起4115b与弯折部512之间的摩擦力。例如,在第一支腿41相对于弯折部512转动以实现佩戴组件200展开时,限位凸起4115b与弯折部512抵接,使得展开过程需要克服限位凸起4115b与弯折部512之间的摩擦力。当然,在限位凸起4115b设置的数量以及位置的影响,可以使得限位凸起4115b在第一支腿41相对于弯折部512转动并转动至某个位置或转动行程中某一段时起到增加阻尼的效果。
当然,在限位凸起4115b不具有弹性时,在与弯折部512抵接时可具有限位的作用。使得第一支腿41相对于弯折部512静止。
第二调节件52可采用第一调节件51的设置方式设置。第二调节件52可采用第一调节件51与第一安装框31、第一镜片21及第一支腿41的设置方式与第二安装框32、第二镜片22及第二支腿42设置。第二调节件52中各个部件的构造、连接方式及功能可参阅上述第一调节件51,不再赘述。
在松紧调节组件50对支撑部40进行调节的过程如下:
第一支腿41和第二支腿42相对于佩戴主体30转动以进行展开使用,第一支腿41相对于第一枢接部5122转动,并向远离第二支腿42的一侧转动,第二支腿42相对于第二枢接部5123转动,并向远离第一支腿41的一侧转动。在转动至弯折部512位于让位部4115c且与支腿主体411、第一卡接侧壁4115抵接时,第一支腿41和第二支腿42还可以展开,但第一支腿41相对于第一枢接部5122静止,第二支腿42相对于第二枢接部5123静止,使得第一支腿41和第二支腿42中的第一轴部4113在第一安装板3112的限位槽3115内滑动,第二轴部4114在第二安装板3113的限位槽3115内滑动,第一枢接部5122在第一安装板3112的滑道3114内滑动,第二枢接部5123在第二安装板3113的滑道3114内滑动,使得第一支腿41与第一枢接部5122一同绕一个第二转轴转动,第二支腿42与第二枢接部5123一同绕另一个第二转轴转动,同时,弯折部512向远离第一及第二安装部311、321的一侧弯折,以使得弯折部512发生弹性形变,使得弯折部512在弹性形变的作用具有恢复原状的作用力。即第一支腿41具有向第二支腿42一侧移动的作用力,第二支腿42具有向第一支腿41一侧移动的作用力。在佩戴时,可以轻易调整头戴式设备100的大小,使得便于佩戴,在弯折部512具有恢复原状的作用力下,使得第一支腿41、第二支腿42对用户头部的作用力可调,使得佩戴舒适。
第一支腿41和第二支腿42相对于佩戴主体30转动以进行折叠收纳,弯折部512恢复原状的作用力使得第一支腿41向第二支腿42一侧移动,第二支腿42向第一支腿41一侧移动。使得第一支腿41与第一枢接部5122一同绕一个第二转轴转动,第二支腿42与第二枢接部5123一同绕另一个第二转轴转动,进而使得第一支腿41和第二支腿42中的第一轴部4113在第一安装板3112的限位槽3115内滑动,第二轴部4114在第二安装板3113的限位槽3115内滑动,第一枢接部5122在第一安装板3112的滑道3114内滑动,第二枢接部5123在第二安装板3113的滑道3114内滑动,可滑动至第一轴部4113与第一安装板3112中限位槽3115的端部抵接,第二轴部4114与第二安装板3113中限位槽3115的端部抵接。当然,在弯折部512恢复原状的作用力消失后,第一轴部4113可不与第一安装板3112中限位槽3115的端部抵接,第二轴部4114可不与第二安装板3113中限位槽3115的端部抵接。在弯折部512恢复原状的作用力消失后,第一支腿41相对于第一枢接部5122转动,并向靠近第二支腿42的一侧转动,第二支腿42相对于第二枢接部5123转动,并向靠近第一支腿41的一侧转动,以完成折叠收纳。
可以理解地,在此列举的调节过程仅仅是其中一实施的实施方式,当然,还可以根据佩戴组件200的 结构确定调节方式。
请参阅图16,连接件33远离第一及第二安装部311、321一侧的表面可与第一调节件51及第二调节件52的表面平齐,以提升头戴式设备100的外观表现力。
请参阅图2、图19和图20,图19揭露本申请图2所示实施例中外挂组件400一视角的爆炸图,图20为本申请图2所示实施例中外挂组件400另一视角的爆炸图。外挂组件400可包括对应于用户眼镜设置且与第一功能镜片20层叠设置的第二功能镜片60以及用于安装第二功能镜片60且安装在支撑部40例如第一支腿41上的外挂主体70。其中,外挂主体70安装在支撑部40例如第一支腿41上,实现了外挂组件400与佩戴组件200的组装。
可以理解地,对于“第一功能镜片”、“第二功能镜片”以及“功能镜片”等名称,在一些实施例中可以相互转换。例如在一实施例中,将其他实施例中的“第一功能镜片”称为“第二功能镜片”,相应地,将其他实施例中的“第二功能镜片”称为“第一功能镜片”。
请再次参阅图19和图20,外挂主体70可包括安装第二功能镜片60的外挂壳体80、安装在外挂壳体80内的主机90以及设置在外挂壳体80上且用于与支撑部40连接固定的第二连接组件71。其中,主机90用于控制第二功能镜片60实现第二功能镜片60的功能例如增强现实或虚拟显示或电致变色等,外挂壳体80通过第二连接组件71固定在第一支腿41上。
可以理解地,对于“第一连接组件”、“第二连接组件”以及“连接组件”等名称,在一些实施例中可以相互转换。例如在一实施例中,将其他实施例中的“第一连接组件”称为“第二连接组件”,相应地,将其他实施例中的“第二连接组件”称为“第一连接组件”。
外挂壳体80可包括第一壳体81以及与第一壳体81扣合以形成置物空间812a的第二壳体82。其中,第二壳体82位于第一壳体81与佩戴组件200之间。置物空间812a用于安装主机90。第一壳体81与第二壳体82扣合以将第二功能镜片60固定第一壳体81和第二壳体82之间。第二功能镜片60的一部分例如光耦合进口部、电致变色器件电连接部、电路走线等可置于置物空间812a内与主机90配合。
第一壳体81可采用硬性材料例如金属、橡胶、塑料等制成。第一壳体81可包括与第二壳体82配合安装第二功能镜片60的第一镜片架811以及与第二壳体82扣合形成置物空间812a且一端设置第一镜片架811的第一子壳体812。
第一镜片架811可为环状结构,以围设在第二功能镜片60的边缘。当然,第一镜片架811也可以为其他形状,不再赘述。第一镜片架811可与佩戴主体30例如第一安装框31层叠设置。第一镜片架811设置在佩戴主体30远离支撑部40的一侧。
第一子壳体812整体可呈壳体状,其设置在第一支腿41远离第二支腿42的一侧。第一子壳体812向佩戴主体30一侧延伸设置以与第一镜片架811连接固定。第一子壳体812设置置物空间812a。第一子壳体812在置物空间812a内靠近第一镜片架811的一侧设置固定板8121,以与主机90配合。第一子壳体812在置物空间812a内远离第一镜片架811的一端设置子固定空间8122,以与主机90配合。
在一实施例中,第一子壳体812的侧壁设置有穿孔812b,以与置物空间812a连通,以与主机90配合。
在一实施例中,第一子壳体812在远离第一支腿41的一侧凹陷设置安装槽812c,以与主机90配合。
在一实施例中,第一子壳体812在安装槽812c中设置有连接孔812d,以连通置物空间812a与安装槽812c,便于穿设电路走线。
在一实施例中,第一子壳体812在远离第一支腿41的一侧设置连通孔812e,以与子固定空间8122连通。
在一实施例中,第一镜片架811可与第一子壳体812为一体结构。
第二壳体82可采用硬性材料例如金属、橡胶、塑料等制成,也可采用与第一壳体81相同的材料制成。第二壳体82可包括与第一壳体81例如第一镜片架811扣合的第二镜片架821以及与第一壳体81例如第一子壳体812扣合且与第二镜片架821连接的第二子壳体822。
可以理解地,对于“第一壳体”、“第二壳体”、“第一子壳体”、“第二子壳体”、“子壳体”以及“壳体”等名称,在一些实施例中可以相互转换。例如在一实施例中,将其他实施例中的“第一壳体”称为“第二壳体”,相应地,将其他实施例中的“第二壳体”称为“第一壳体”。
可以理解地,对于“第一镜片架”、“第二镜片架”以及“镜片架”等名称,在一些实施例中可以相互转换。例如在一实施例中,将其他实施例中的“第一镜片架”称为“第二镜片架”,相应地,将其他实施例中的“第二镜片架”称为“第一镜片架”。
第二镜片架821可与第一镜片架811的形状类似,以便与第一镜片架811扣合以将第二功能镜片60固定在第一镜片架811与第二镜片架821之间。第二镜片架821围设在第二功能镜片60的边缘。第二镜片架821与第一镜片架811扣合以夹设在第二功能镜片60的边缘,以实现对第二功能镜片60的固定。
第二子壳体822可呈板状结构。第二子壳体822靠近佩戴主体30一端与第二镜片架821连接固定。
第二子壳体822与支腿主体411例如安装孔412a相对的安装孔8221,以与主机90配合,以便于主机90与第一电池模组413例如第一外接接口413a配合。
在一实施例中,第一镜片架811可与第一子壳体812为一体结构。
可以理解地,第二镜片架821和第二子壳体822可组装形成安装第二功能镜片60的第三安装框83。当然,第三安装框83还可以设置其他结构,并不仅限于第一镜片架811和第二镜片架821。在一实施例中,第一镜片架811和第二镜片架821其中一个可以省略。
可以理解地,对于“第一安装框”、“第二安装框”、“第三安装框”以及“安装框”等名称,在一些实施例中可以相互转换。例如在一实施例中,将其他实施例中的“第一安装框”称为“第二安装框”,相应地,将其他实施例中的“第二安装框”称为“第一安装框”。
第一子壳体812和第二子壳体822可组装形成安装主机90的壳体主体84。当然,壳体主体84还可以设置其他结构,并不仅限于第一子壳体812和第二子壳体822。
请参阅图19,第二功能镜片60的构造及设置方式可按照第一功能镜片20的构造及设置方式设计。当然第二功能镜片60的功能可与第一功能镜片20的功能不同,也可以相同。对于第二功能镜片60构造及设置方式、功能可具体参阅上述实施例中的第一功能镜片20。
在一实施例中,第二功能镜片60可为光波导,具体可为平面光栅波导例如衍射光栅波导。头戴式设备100可通过第二功能镜片60呈现虚拟现实/增强现实环境。
下边以第二功能镜片60为光波导为例,对第二功能镜片60进行介绍。
第二功能镜片60可设置光耦合进口部和光耦合出口部。光耦合进口部和光耦合出口部连接在一起以形成光路,光线从光耦合进口部被耦合进入镜片中,在光路内传输,最后光线会在光耦合出口部处被耦合出镜片,射入佩戴者眼中并在视网膜上成像。
在一实施例中,请参阅图21和图22、图23,图21为本申请图19所示实施例中第二功能镜片60与第三安装框83连接时另一实施例的结构示意图,图22为本申请图21所示实施例中第二功能镜片60与第三安装框83连接的爆炸图,图23为本申请图21所示实施例中第二功能镜片60与第三安装框83在线XXI-XXI的剖视图。第二功能镜片60可包括内部设置保护空间610的第一保护镜片61、设置在保护空间610内的光波导镜片62,与第一保护镜片61扣合形成保护空间610的第二保护镜片63。
可以理解地,对于“第一保护镜片”、“第二保护镜片”以及“保护镜片”等名称,在一些实施例中可以相互转换。例如在一实施例中,将其他实施例中的“第一保护镜片”称为“第二保护镜片”,相应地,将其他实施例中的“第二保护镜片”称为“第一保护镜片”。
第一保护镜片61可采用塑胶等具有抗压、高抗冲击的材料制成。第一保护镜片61可包括与光波导镜片62层叠设置的镜片主体611以及形成在镜片主体611边缘处并围设在光波导镜片62周围的侧壁612。其中,镜片主体611呈板状结构。侧壁612向第二保护镜片63一侧延伸设置,以使镜片主体611与侧壁612围设形成保护空间610。侧壁612靠近第二保护镜片63的一端可设置第一插接结构613,以与第二保护镜片63配合。在一实施例中,第一插接结构613可为插接槽。
在一实施例中,侧壁612在保护空间610内设置阶梯状支撑台614,以便与光波导镜片62配合,使得光波导镜片62与第一保护镜片61例如镜片主体611间隔设置。
光波导镜片62可为平面光栅波导例如衍射光栅波导。光波导镜片62可设置光耦合进口部和光耦合出口部。光耦合进口部和光耦合出口部连接在一起以形成光路,光线从光耦合进口部被耦合进入镜片中,在光路内传输,最后光线会在光耦合出口部处被耦合出镜片,射入佩戴者眼中并在视网膜上成像。
光波导镜片62可设置在支撑台614上,使得光波导镜片62与镜片主体611间隔设置。即,光波导镜片62可与第一保护镜片61扣合,以形成第一子保护空间610a。
在一实施例中,光波导镜片62可通过固定件621固定在支撑台614上。在一实施例中,固定件621可为胶框,以围设置在光波导镜片62的边缘,在一实施例中,胶框为泡棉胶。当然固定件621也可以为其他结构例如插接、卡扣等结构。
当然,在固定件621可以使得光波导镜片62与支撑台614间隔设置时,可以省略支撑台614,以使得光波导镜片62通过固定件621直接固定在镜片主体611上,进而使得光波导镜片62与镜片主体611间隔设置。
在一实施例中,在光波导镜片62固定在支撑台614或其他位置上时,可不与第一保护镜片61例如侧壁612直接接触,以避免侧壁612受力对光波导镜片62的挤压。
第二保护镜片63可采用与第一保护镜片61相同的材料制成。第二保护镜片63的边缘处可设置有第二插接结构631,以便与第一插接结构613插接固定,实现第一保护镜片61与第二保护镜片63扣合连接。在一实施例中,第二插接结构631可为凸起。当然,在一实施例中,第二保护镜片63与第一保护镜片61也可以通过粘接等方式固定,在一实施例中,也可以在第一插接结构613例如插接槽内点胶,再通过第二 插接结构631与第一插接结构613插接实现第一保护镜片61与第二保护镜片63地扣合连接,其中胶水可以进一步粘接固定,以提升第一保护镜片61与第二保护镜片63的连接强度,另外第一保护镜片61与第二保护镜片63可形成一密闭的保护空间610,以起到防水防尘的效果以及提高光波导镜片62的抗压能力。
在一实施例中,光波导镜片62与第二保护镜片63间隔设置,即光波导镜片62的设置将保护空间610分割为两个子空间,分别为第一子保护空间610a及位于光波导镜片62靠近第二保护镜片63一侧的第二子保护空间610b,以避免侧壁612受力对光波导镜片62的挤压。
在一实施例中,光波导镜片62与第二保护镜片63抵接。
在一实施例中,请参阅图23,第三安装框83可省略第一镜片架811。第二镜片架821直接与第二功能镜片60连接固定。第二镜片架821可在与第二保护镜片63例如第二保护镜片63贴合的一侧设置有点胶槽8211,以便在点胶槽8211内点胶,实现第二保护镜片63与第二镜片架821的粘接固定。当然,第二镜片架821与第二保护镜片63还可采用其他方式固定,不再赘述。
在一实施例中,第二镜片架821在靠近佩戴组件200的一侧并在与光波导镜片62例如光耦合进口部相对应的位置设置通光孔8212,以与主机90配合形成光线耦合进入光波导镜片62的光路。
可以理解地,第一保护镜片61与第二保护镜片63之间夹设光波导镜片62,对光波导镜片62形成了360°全方位包裹,可对光波导镜片62进行保护。另外,保护空间610的设置提高第一保护镜片61与第二保护镜片63受力变形的冗余空间,确保在第二功能镜片60受力的情况下,减弱了光波导镜片62的受力变形。另外,结合固定件621例如泡棉胶等,实现了光波导镜片62与第一保护镜片61的柔性连接,可进一步减弱光波导镜片62的受力变形,起到了保护光波导镜片62的目的,使得第二功能镜片60整体抗压强度较好。
通过第二功能镜片60独特的结构对光波导镜片62提供抗压和抗冲击保护以及防尘保护,比现有的方案重量更轻,厚度更薄,第二功能镜片60可以做到和普通镜片相近尺寸,且造型可以多样化,对于提升采用第二功能镜片60的头戴式设备100的表现力和可靠性都很大帮助,本方案结构组装简单,成本较低,适合批量生产。
可以理解地,第二功能镜片60与第一功能镜片20同样是起到各种透光特效,所以,第一功能镜片20中的第一镜片21和第二镜片22可均采用第二功能镜片60的设计方式设置。同样的,第一安装框31和第二安装框32也可以均采用第三安装框83的设计方式设置。在此不再过多赘述。
请参阅图24、图25、图26和图27,图24为本申请图19所示实施例中主机90的结构示意图,图25为本申请图24所示实施例中主机90一个视角的爆炸图,图26为本申请图24所示实施例中主机90另一个视角的爆炸图,图27为本申请图19所示实施例中第一壳体81与主机90安装固定的结构示意图。主机90安装在第一子壳体812的置物空间812a内。主机90可包括与第二功能镜片60配合的光机组件91、与光机组件91电连接的主板92、与主板92电连接的第二电池模组93、与主板92电连接的电发声器94以及与主板92电连接的显示组件95。
光机组件91位于置物空间812a靠近第一镜片架811的一端,光机组件91远离第三安装框83的一端与固定板8121抵接,实现光机组件91的安装。
光机组件91可包括安装在置物空间812a内的安装壳911以及安装在安装壳911上的光机912。其中,安装壳911呈壳体状,用于围设在光机912外围以支撑、保护光机912。安装壳911可安装在置物空间812a靠近第一镜片架811的一端,安装壳911远离第三安装框83的一端与固定板8121抵接,以实现安装壳911在置物空间812a中的限位安装。光机912与安装在第三安装框83上的第二功能镜片60相对设置,具体与第二功能镜片60的管沟和进口部相对设置,以便于光机912发出的光线耦合进入第二功能镜片60内部。光机912远离第三安装框83的一侧设置有第一电连接部9121,以便与主板92电连接。
可以理解地,在光机组件91与第一功能镜片20配合时,也可以设置在支撑部40例如第一支腿41上。
主板92上设置有处理器、传感器等电子元件,以便实现头戴式设备100的正常运行。主板92设置在光机组件91远离第三安装框83的一侧。主板92靠近光机912一侧设置有第一电安装部921,以与光机912例如第一电连接部9121电连接,以实现对光机912的控制。
主板92设置有第二电安装部922及第三电安装部923,以与电发声器94、显示组件95配合。例如,主板92通过第二电安装部922与显示组件95电连接,以便对显示组件95进行控制,以便显示组件95作为输入设备向主板92输入控制指令。例如,主板92通过第三电安装部923与电发声器94电连接,以便对电发声器94进行控制。
主板92在与穿孔812b相对应的部位设置第二电连接部924,以与拾音器配合。即,拾音器也可以作为主机90的一部分。第二电池模组93用于存储电能,以为头戴式设备100的运行提供电能。第二电池模组93可设置有无线充电装置例如利用电磁感应线圈进行无线充电。当然,第二电池模组93也可以设置有线接口以进行充电。
可以理解地,主板92也可以设置在支撑部40例如第一支腿41上。
第二电池模组93设置在主板92远离光机组件91的一侧。第二电池模组93设置有第三电连接部931,以与主板92电连接。
可以理解地,第二电池模组93可以省略,以用第一电池模组93为头戴式设备100供电。
电发声器94可固定在子固定空间8122内。电发声器94可为被主板92控制以实现发音的设备例如扬声器等。电发声器94发出的声音可通过连通孔812e传播至置物空间812a外,供用户接收。电发声器94可通过电路板941与主板92电连接。
可以理解地,电发声器94也可以设置在支撑部40例如第一支腿41上,相应地,支撑部40例如第一支腿41上可设置有连通孔,以连通容纳空间4110。
电路板941可为柔性电路板。电路板941与主板92连接的一端设置有第四电连接部9411,以便与主板92例如第三电安装部923电连接。电路板941上设置有第四电安装部9412,以便与第二电池模组93例如第三电连接部931电连接,以实现主板92与第二电池模组93电连接。电路板941上对应于第二子壳体822例如安装孔8221设置有第二外接接口9413,以便将第二外接接口9413安装在安装孔8221处,实现第二电池模组93与第一电池模组413例如第一外接接口413a的电连接。
可以理解地,对于“第一外接接口”、“第二外接接口”以及“外接接口”等名称,在一些实施例中可以相互转换。例如在一实施例中,将其他实施例中的“第一外接接口”称为“第二外接接口”,相应地,将其他实施例中的“第二外接接口”称为“第一外接接口”。
可以理解地,对于“第一电连接部”、“第二电连接部”以及“电连接部”等名称,在一些实施例中可以相互转换。例如在一实施例中,将其他实施例中的“第一电连接部”称为“第二电连接部”,相应地,将其他实施例中的“第二电连接部”称为“第一电连接部”。
可以理解地,对于“第一电安装部”、“第二电安装部”、“第三电安装部”、“第四电安装部”以及“电安装部”等名称,在一些实施例中可以相互转换。例如在一实施例中,将其他实施例中的“第一电安装部”称为“第二电安装部”,相应地,将其他实施例中的“第二电安装部”称为“第一电安装部”。
可以理解地,第二电池模组93通过第二外接接口9413,实现与外部电源、佩戴组件200、外接主机等外接设备电连接,进而可为外接设备供电,当然外接设备也可为第二电池模组93充电。
显示组件95可为显示屏或触控显示屏,显示组件95设置有第五电连接部951,以与主板92电连接。第五电连接部951可穿设于连接孔812d,以与主板92电连接。显示组件95也可以用按键组件替代,即,按键组件也可以作为主机90的一部分。当然,壳体主体84在设置显示组件95的部位也可以同时设置按键组件,按键组件可与主板92电连接。
可以理解地,对于“第一电连接部”、“第二电连接部”、“第三电连接部”、“第四电连接部”、“第五电连接部”以及“电连接部”等名称,在一些实施例中可以相互转换。例如在一实施例中,将其他实施例中的“第一电连接部”称为“第二电连接部”,相应地,将其他实施例中的“第二电连接部”称为“第一电连接部”。
可以理解地,在一实施例中,主机90可至少包括主板92。在一实施例中,主机90可不设置在壳体主体84内,而设置在支撑部40例如第一支腿41和第二支腿42中至少一个支腿内。例如,仅将主板92设置在支撑部40内,例如,也可以将主板92和第二电池模组93设置在支撑部40内。例如,可将光机组件91设置在第一支腿41内以与第一功能镜片20配合实现增强现实或虚拟现实。例如,将主机90均设置在支撑部40内,第二功能镜片60可不与主机90配合。例如,主机90一部分在第一支腿41,另一部分设置在第二支腿42中。例如,主机90一部分在支撑部40内,另一部分设置在壳体主体84中。
可以理解地,第二支腿42也可以按照第一电池模组413与第一支腿41的配合关系与第一电池模组413配合,具体可参阅第一支腿41。当然,第二支腿42也可以不安装第一电池模组413。
进而,在主机90中各个电子元件分布在佩戴组件200及外挂组件400之间时,可通过第一外接接口413a与第二外接接口9413在主板92的控制下实现主机90内部各个电子元件的电连接通信,即第一外接接口413a与第二外接接口9413并不仅仅具有电池模组为头戴式设备100供电的功能。
请再次参阅图19,第二连接组件71设置在壳体主体84上,用于与第一连接组件414连接。第二连接组件71可包括设置在置物空间812a中的第二磁性件711以及设置在壳体主体84例如第二子壳体822上的卡接件712。其中,第二磁性件711可产生磁作用力,以便连接支撑部40例如第一支腿41,实现外挂组件400在佩戴组件200上的安装。第二磁性件711可为永磁铁或电磁铁。当第二磁性件711为电磁铁时,可与头戴式设备100内的主机90电连接,以实现对电磁铁的控制。在一实施例中,第二磁性件711可位于主机90与第二子壳体822之间。在一实施例中,第二磁性件711可设置在第二子壳体822上。
可以理解地,对于“第一磁性件”、“第二磁性件”以及“磁性件”等名称,在一些实施例中可以相互转换。例如在一实施例中,将其他实施例中的“第一磁性件”称为“第二磁性件”,相应地,将其他实 施例中的“第二磁性件”称为“第一磁性件”。
第二磁性件711可产生与第一磁性件417相吸的磁作用力,以实现外挂组件400在佩戴组件200上的安装。
卡接件712设置在第二子壳体822远离第一子壳体812的一侧,且位于第二磁性件711的相对两侧。具体地,卡接件712相对于安装口41b、41c设置,以便卡接件712插入安装口41b、41c内,实现外挂组件400与佩戴组件200的定位。在一实施例中,卡接件712插入安装口41b、41c可与第一支腿41卡接或插接,不再赘述。
请参阅图28,图28为本申请另一实施例中头戴式设备100的结构示意图。其中头戴式设备100中可设置两个外挂组件400,其中一个设置在第一支腿41上,另一个设置在第二支腿42上。可以理解地,头戴式设备100中也可以仅设置一个外挂组件400,外挂组件400既可以通过第一连接组件414和第二连接组件71连接实现安装在第一支腿41上,也可以在外挂组件400旋转180°,通过第一连接组件414和第二连接组件71连接实现安装在第二支腿42上。
本申请采用外挂组件400的设计方式解决了智能眼镜佩戴时笨重问题,本申请通过外挂组件400既保证了虚拟现实/增强现实体验功能又能单独体验电致变色/光致变色器件带来的墨镜功能,同时第一电池模组可作为备用电源为外挂组件400提供一部分电能,增加了虚拟现实/增强现实体验的续航能力,可以为消费者提供极致的体验。
以上所述仅为本申请的实施例,并非因此限制本申请的专利范围,凡是利用本申请说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本申请的专利保护范围内。

Claims (37)

  1. 一种头戴式设备,其特征在于,包括:
    框架结构,设置有第一外接接口以及第一连接组件,所述第一连接组件用于产生磁场;
    外挂壳体,设置有第二外接接口以及第二连接组件,所述第二连接组件用于产生磁场,所述外挂壳体配置为在所述第一连接组件与所述第二连接组件相互磁场作用而安装在所述框架结构的外侧,第一外接接口配置为在所述外挂壳体安装在所述框架结构而与所述第二外接接口抵接,以使所述第一外接接口与所述第二外接接口电连接;
    主机,一部分设置在所述框架结构中,另一部分设置在所述外挂壳体中,所述一部分与所述第一外接接口电连接,所述另一部分与所述第二外接接口电连接;以及
    第一及第二功能镜片,层叠设置,所述第一功能镜片设置在所述框架结构,所述第二功能镜片设置在所述外挂壳体,所述第一及第二功能镜片配置为在所述主机的控制下呈现虚拟现实/增强现实环境。
  2. 根据权利要求1所述的头戴式设备,其特征在于,所述框架结构包括:
    佩戴主体,用于安装所述第一功能镜片;以及
    第一及第二支腿,设置在所述佩戴主体的相对两端,所述第一外接接口、所述第一连接组件及所述一部分设置在所述第一支腿上。
  3. 根据权利要求2所述的头戴式设备,其特征在于,所述第一支腿内设置有容纳所述一部分的容纳空间,所述第一支腿远离所述第二支腿的一侧设置有与所述容纳空间连通的安装口。
  4. 根据权利要求3所述的头戴式设备,其特征在于,所述第一连接组件包括:
    遮挡组件,安装在所述容纳空间内,用于遮挡所述安装口,所述遮挡组件配置为在所述外挂壳体安装在所述第一支腿而为所述第二连接组件让位,以使所述第二连接组件置于所述安装口内与所述第一支腿连接;以及
    第一磁性件,用于产生磁场,所述外挂壳体配置为在所述第一磁性件与所述第二连接组件相互磁场作用而安装在所述第一支腿远离所述第二支腿的一侧。
  5. 根据权利要求4所述的头戴式设备,其特征在于,所述外挂壳体包括:
    第一安装框,与所述第一支腿分别设置在所述佩戴主体的相背两侧,用于安装所述第二功能镜片;以及
    壳体主体,设置在所述第一支腿远离所述第二支腿的一侧,所述壳体主体靠近所述佩戴主体的一端与所述第一安装框连接固定,所述壳体主体设置有置物空间,所述另一部分及所述第二连接组件设置在所述壳体主体上。
  6. 根据权利要求5所述的头戴式设备,其特征在于,所述第二连接组件包括:
    卡接件,设置在所述壳体主体朝向所述第一支腿的一侧,与所述安装口相对设置,以使所述卡接件置于所述安装口内与所述第一支腿连接;以及
    第二磁性件,用于产生磁场,安装在所述置物空间内,所述壳体主体配置为在所述第一磁性件与所述第二磁性件相互磁场作用而安装在所述第一支腿远离所述第二支腿的一侧。
  7. 根据权利要求5所述的头戴式设备,其特征在于,所述壳体主体包括:
    第一子壳体,与所述第一安装框连接固定;以及
    第二子壳体,与所述第一安装框连接固定,与所述第一子壳体扣合连接以形成所述置物空间,所述第二子壳体设置在所述第一子壳体靠近所述第一支腿的一侧。
  8. 根据权利要求7所述的头戴式设备,其特征在于,所述另一部分包括:
    光机组件,安装在所述置物空间靠近所述第一安装框的一侧;
    电发声器,所述壳体主体在所述置物空间内远离所述第一安装框的一侧设置子固定空间,所述电发声器安装在所述子固定空间内;以及
    主板,设置在所述置物空间内,位于所述光机组件与所述电发声器之间,并分别与所述光机组件、所述电发声器电连接。
  9. 根据权利要求8所述的头戴式设备,其特征在于,所述另一部分还包括:
    显示组件,与所述主板电连接,设置在所述第一子壳体远离所述第二子壳体的一侧;以及
    第一电池模组,设置在所述置物空间内,位于所述主板与所述电发声器之间,用于为所述另一部分供电。
  10. 根据权利要求9所述的头戴式设备,其特征在于,所述第一子壳体远离所述第二子壳体的一侧设置有安装槽,所述显示组件位于所述安装槽内。
  11. 根据权利要求8所述的头戴式设备,其特征在于,所述第一子壳体远离所述第二子壳体的一侧设置有连通孔,所述连通孔与所述子固定空间连通,以使所述电发声器发出的声音通过所述连通孔传播至所述 壳体主体外。
  12. 根据权利要求8所述的头戴式设备,其特征在于,所述第二功能镜片的光耦合进光部置于所述置物空间,并与所述光机组件相对设置,以使所述光机组件发出的光线在所述光耦合进光部耦合进入所述第二功能镜片。
  13. 根据权利要求12所述的头戴式设备,其特征在于,所述第二功能镜片为有色镜、平镜、防眩镜、电致变色器件、光致变色器件中的一种。
  14. 根据权利要求9-13任一项所述的头戴式设备,其特征在于,所述一部分包括第二电池模组,所述第二电池模组为所述另一部分供电。
  15. 根据权利要求1-13任一项所述的头戴式设备,其特征在于,所述第二功能镜片包括:
    第一及第二保护镜片,相互扣合连接,以形成一密闭的保护空间;以及
    光波导镜片,用于呈现虚拟现实/增强现实环境,所述光波导镜片设置在所述保护空间内,所述光波导镜片具有光耦合进光部以及光耦合出光部,以使光线在所述光耦合进光部耦合进入所述光波导镜片并在所述光耦合出光部耦合射出所述光波导镜片。
  16. 根据权利要求15所述的头戴式设备,其特征在于,所述第一保护镜片包括:
    镜片主体,与所述光波导镜片间隔且层叠设置;以及
    侧壁,设置在所述镜片主体的边缘,与所述第二保护镜片扣合连接。
  17. 根据权利要求16所述的头戴式设备,其特征在于,所述光波导镜片与所述第二保护镜片间隔且层叠设置。
  18. 根据权利要求16所述的头戴式设备,其特征在于,所述侧壁设置有支撑台,所述光波导镜片设置在所述支撑台上。
  19. 根据权利要求18所述的头戴式设备,其特征在于,所述光波导镜片与所述支撑台之间设置有胶框,以使所述光波导镜片通过所述胶框与所述支撑台连接固定。
  20. 根据权利要求16所述的头戴式设备,其特征在于,所述侧壁与所述第二保护镜片连接的部位设置有第一插接结构,所述第二保护镜片设置有第二插接结构,所述第一插接结构与所述第二插接结构插接固定。
  21. 根据权利要求20所述的头戴式设备,其特征在于,所述第一插接结构为插接槽,第二插接结构为凸起,所述凸起置于所述插接槽内与所述侧壁粘接固定。
  22. 根据权利要求16-21任一项所述的头戴式设备,其特征在于,所述光波导镜片与所述侧壁间隔设置。
  23. 根据权利要求4所述的头戴式设备,其特征在于,所述遮挡组件包括:
    抵接板,置于所述容纳空间内,与所述安装口相对设置;
    弹性件,一端抵接所述抵接板,一端抵接所述第一支腿,所述抵接板配置为在所述弹性件的弹力作用下与所述第一支腿在所述安装口处的部位抵接,以遮挡所述安装口,所述抵接板配置为在所述外挂壳体对所述抵接板抵压以克服所述弹力作用而向所述容纳空间内滑动。
  24. 根据权利要求4或23所述的头戴式设备,其特征在于,所述第一支腿包括:
    支腿主体,所述容纳空间设置在所述支腿主体上,所述支腿主体在靠近所述外挂壳体的一侧设置有与所述容纳空间连通的开口;
    支腿侧板,盖设在所述开口处,以与所述支腿主体形成所述安装口。
  25. 根据权利要求2所述的头戴式设备,其特征在于,所述框架结构还包括松紧调节组件,所述第一及第二支腿分别转动连接于所述佩戴主体,所述第一及第二支腿中的一个支腿配置为可相对于所述佩戴主体滑动,所述一个支腿与所述佩戴主体相对转动的转轴为第一转轴,所述松紧调节组件设置在所述佩戴主体上,并分别与所述第一及第二支腿转动连接,所述一个支腿在所述第一转轴上与所述松紧调节组件转动连接,所述一个支腿配置为相对于所述松紧调节组件转动并转动至与所述松紧调节组件抵接时与所述松紧调节组件相对静止,所述一个支腿配置为与所述松紧调节组件相对静止时可相对于所述佩戴主体向远离所述第一及第二支腿中的另一个支腿的方向滑动且同时绕第二转轴转动,所述第一转轴与所述第二转轴相异,所述松紧调节组件配置为在所述一个支腿绕所述第二转轴转动时发生弹性形变,以对所述一个支腿施加使所述一个支腿相对于所述佩戴主体向所述另一个支腿滑动的力。
  26. 根据权利要求25所述的头戴式设备,其特征在于,所述松紧调节组件包括:
    连接部,设置在所述佩戴主体上;以及
    弯折部,与所述连接部固定连接,与所述一个支腿转动连接,所述弯折部设置在所述一个支腿远离所述另一个支腿的一侧。
  27. 根据权利要求26所述的头戴式设备,其特征在于,所述佩戴主体设置有安装部,所述安装部与所述一个支腿转动连接,所述一个支腿配置为可相对于所述安装部滑动。
  28. 根据权利要求27所述的头戴式设备,其特征在于,所述安装部包括:
    安装主体,设置在所述佩戴主体上;以及
    第一及第二安装板,在所述第一转轴的方向上相对设置,设置在所述安装主体远离所述佩戴主体的一端,所述第一安装板朝向所述第二安装板的一侧及所述第二安装板朝向所述第一安装板的一侧均设置有限位槽,所述一个支腿配置为可相对于所述安装部在所述限位槽内滑动。
  29. 根据权利要求28所述的头戴式设备,其特征在于,所述弯折部在朝向所述一个支腿的一侧设置有第一及第二枢接部,所述第一及第二枢接部与所述一个支腿在所述第一转轴上转动连接。
  30. 根据权利要求29所述的头戴式设备,其特征在于,所述第一安装板朝向所述第二安装板的一侧及所述第二安装板朝向所述第一安装板的一侧均设置有滑道,所述第一枢接部位于所述第一安装板的滑道内,所述第二枢接部位于所述第二安装板的滑道内,所述第一及第二枢接部可沿所述滑道的延伸方向滑动。
  31. 根据权利要求30所述的头戴式设备,其特征在于,所述第一安装板的所述限位槽位于所述第一安装板的所述滑道内,所述第二安装板的所述限位槽位于所述第二安装板的所述滑道内。
  32. 根据权利要求31所述的头戴式设备,其特征在于,所述一个支腿的端部设置有第一及第二轴部,所述第一轴部与所述第一枢接部转动连接且置于所述第一安装板的所述限位槽内,所述第二轴部与所述第二枢接部转动连接且置于所述第二安装板的所述限位槽内。
  33. 根据权利要求26所述的头戴式设备,其特征在于,所述佩戴主体包括:
    第二及第三安装框,相对设置,所述第二及第三安装框之间设置鼻托部;
    连接件,连接固定所述第二及第三安装框,所述一个支腿与所述第二及第三安装框中的一个安装框转动连接,所述安装部与所述连接部设置在所述一个安装框相背两侧,所述弯折部设置在所述连接部的边缘。
  34. 根据权利要求33所述的头戴式设备,其特征在于,所述连接部远离所述一个安装框的一侧与所述连接件的表面平齐。
  35. 根据权利要求33所述的头戴式设备,其特征在于,所述第一功能镜片包括:
    第一镜片,安装在所述一个安装框,所述连接部远离所述一个安装框的一侧与所述第一镜片的表面平齐。
  36. 一种头戴式设备,其特征在于,包括:
    框架结构,设置有第一外接接口以及第一连接组件,所述第一连接组件用于产生磁场;
    外挂壳体,设置有第二外接接口以及第二连接组件,所述第二连接组件用于产生磁场,所述外挂壳体配置为在所述第一连接组件与所述第二连接组件相互磁场作用而安装在所述框架结构的外侧,第一外接接口配置为在所述外挂壳体安装在所述框架结构而与所述第二外接接口抵接,以使所述第一外接接口与所述第二外接接口电连接;
    主机,一部分设置在所述框架结构中,另一部分设置在所述外挂壳体中,所述一部分与所述第一外接接口电连接,所述另一部分与所述第二外接接口电连接;以及
    第一功能镜片,设置在所述框架结构或所述外挂壳体,所述第一功能镜片配置为在所述主机的控制下呈现虚拟现实/增强现实环境。
  37. 一种头戴式设备,其特征在于,包括:
    佩戴组件,所述佩戴组件包括:
    佩戴主体;
    第一及第二支腿,设置在所述佩戴主体的相对两端,以形成框架结构,所述第一支腿设置有第一外接接口以及第一连接组件,所述第一连接组件用于产生磁场;
    第一及第二镜片,对称设置在所述佩戴主体上;和
    第一电池模组,设置在所述第一支腿上,与所述第一外接接口电连接;以及
    外挂组件,设置在所述佩戴组件,所述外挂组件包括:
    第一安装框,与所述第一支腿分别设置在所述佩戴主体的相背两侧;
    壳体主体,设置在所述第一支腿远离所述第二支腿的一侧,所述壳体主体靠近所述佩戴主体的一端与所述第一安装框连接固定,所述壳体主体靠近所述第一支腿的一侧设置有第二外接接口以及第二连接组件,所述第二连接组件用于产生磁场;
    所述壳体主体配置为在所述第一连接组件与所述第二连接组件相互磁场作用而安装在所述第一支腿远离所述第二支腿的一侧,第一外接接口配置为在所述壳体主体安装在所述第一支腿而与所述第二外接接口抵接,以使所述第一外接接口与所述第二外接接口电连接;
    主机,设置在所述壳体主体内,与所述第二外接接口电连接,所述主机包括为所述主机供电的第二电池模组,所述第一电池模组配置为在所述第一外接接口与所述第二外接接口电连接时为所属主机供电;以及
    第一功能镜片,安装在所述第一安装框上,与所述第一镜片层叠设置,在所述主机的控制下呈现虚拟现实/增强现实环境。
PCT/CN2022/086404 2021-07-06 2022-04-12 头戴式设备 WO2023279796A1 (zh)

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