WO2023040484A1 - 头戴式设备 - Google Patents

头戴式设备 Download PDF

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Publication number
WO2023040484A1
WO2023040484A1 PCT/CN2022/109006 CN2022109006W WO2023040484A1 WO 2023040484 A1 WO2023040484 A1 WO 2023040484A1 CN 2022109006 W CN2022109006 W CN 2022109006W WO 2023040484 A1 WO2023040484 A1 WO 2023040484A1
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WO
WIPO (PCT)
Prior art keywords
assembly
housing
head
hole
magnet
Prior art date
Application number
PCT/CN2022/109006
Other languages
English (en)
French (fr)
Inventor
周伟
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 WO2023040484A1 publication Critical patent/WO2023040484A1/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
    • 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
    • G02B27/02Viewing or reading apparatus

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 wearable device, a plug-in device, and a first functional lens module
  • the plug-in device includes a housing assembly and a control system, and the housing assembly passes through the housing assembly
  • the plug-in device is detachably installed on the wearable device
  • the control system is installed on the housing assembly, including a touch key assembly and an optical machine, the touch key assembly includes a touch part, and the control system
  • the system controls the head-mounted device in response to the operation of the touch part
  • the first functional lens module is installed on the housing assembly for receiving and projecting the optical signal of the optical machine.
  • FIG. 1 is an assembly diagram of a head-mounted device in an embodiment of the present application
  • FIG. 2 is a schematic structural diagram of the wearing device in the embodiment shown in FIG. 1 of the present application;
  • Fig. 3 is an exploded view of the wearing device in the embodiment shown in Fig. 1 of the present application;
  • Fig. 4 is a schematic structural diagram of the wearing body in the embodiment shown in Fig. 3 of the present application;
  • Fig. 5 is a structural schematic view of the first casing from a perspective in the embodiment shown in Fig. 4 of the present application;
  • Fig. 6 is a structural schematic diagram of another viewing angle of the first casing in the embodiment shown in Fig. 4 of the present application;
  • Fig. 7 is a structural schematic diagram of another viewing angle of the first casing in the embodiment shown in Fig. 4 of the present application;
  • Fig. 8 is a schematic structural diagram of the shielding member in the embodiment shown in Fig. 4 of the present application.
  • Fig. 9 is a schematic structural view of the nose pad in the embodiment shown in Fig. 4 of the present application.
  • Fig. 10 is an exploded view of a viewing angle of the first leg in the embodiment shown in Fig. 3 of the present application;
  • Fig. 11 is a structural schematic diagram of another viewing angle of the first leg in the embodiment shown in Fig. 10 of the present application;
  • Fig. 12 is an exploded view of the first mounting assembly in the embodiment shown in Fig. 11 of the present application;
  • Fig. 13 is a schematic structural view of another embodiment of the main body of the leg in the embodiment shown in Fig. 10 of the present application;
  • Fig. 14 is an exploded view in another perspective of the main body of the leg in the embodiment shown in Fig. 10 of the present application;
  • Fig. 15 is an exploded view from a perspective of the rotating shaft and the main body of the connecting arm in an embodiment of the present application;
  • Figure 16 is an exploded view from another perspective of the rotating shaft and the main body of the connecting arm in the embodiment shown in Figure 15 of the present application;
  • Fig. 17 is a schematic structural diagram of the first functional lens in the embodiment shown in Fig. 3 of the present application.
  • FIG. 18 is a structural schematic view of the first circuit system from a perspective in the embodiment shown in FIG. 3 of the present application;
  • FIG. 19 is a structural schematic diagram of another perspective of the first circuit system in the embodiment shown in FIG. 18 of the present application.
  • FIG. 20 is a schematic structural diagram of the first flexible circuit board of the present application.
  • Fig. 21 is a schematic diagram of the installation structure of the first flexible circuit board, the main body of the leg and the first connecting arm in the embodiment shown in Fig. 20 of the present application;
  • Fig. 22 is a schematic structural diagram of the external device in the embodiment shown in Fig. 1 of the present application;
  • Fig. 23 is a cross-sectional view of the external device in the embodiment shown in Fig. 22 of the present application;
  • Fig. 24 is a schematic structural diagram of the housing assembly in the embodiment shown in Fig. 23 of the present application.
  • Fig. 25 is a schematic structural view of the third housing in the embodiment shown in Fig. 24 of the present application.
  • Fig. 26 is a schematic structural view of another embodiment when the housing body is connected to the third connecting arm in the embodiment shown in Fig. 23 of the present application;
  • Fig. 27 is a structural schematic diagram of the cooperation between the first mounting component and the second mounting component in an embodiment of the present application
  • Fig. 28 is a schematic structural view of another embodiment of the first mounting component and the second mounting component in one embodiment of the present application;
  • Fig. 29 is a schematic diagram of cooperation between the first mounting component and the second mounting component in another embodiment of the present application.
  • Fig. 30 is a schematic structural view of the housing side cover in the embodiment shown in Fig. 24 of the present application;
  • Fig. 31 is an exploded view of the touch key assembly in the embodiment shown in Fig. 24 of the present application;
  • Fig. 32 is a schematic structural view of the driving device in the embodiment shown in Fig. 31 of the present application;
  • Fig. 33 is an exploded view of the second circuit system in the embodiment shown in Fig. 23 of the present application;
  • FIG. 34 is a flowchart of a control method in an embodiment of the present application.
  • FIG. 35 is a flowchart of a control method in another embodiment of the present application.
  • FIG. 36 is a flowchart of a control method in another embodiment of the present application.
  • FIG. 37 is a schematic diagram of the frame of an electronic device in an embodiment of the present application.
  • FIG. 38 is a schematic diagram of a computer-readable storage medium according to an embodiment of the present application.
  • the present application describes a head-mounted device, including: a wearable device; and a plug-in device, the plug-in device includes: a housing component, through which the plug-in device is detachably mounted on the wearable device On; the control system, installed on the housing assembly, includes a touch key assembly and an optical machine, the touch key assembly includes a touch part, and the control system controls the head-mounted device in response to the operation of the touch part. equipment; and a first functional lens module, installed on the housing assembly, for receiving and projecting the optical signal of the optical machine.
  • the housing assembly includes: a main housing; and a housing side cover, which is connected and fixed to the main housing at one side of the main housing to form a storage space.
  • the main housing includes: a first housing, which is fastened and connected with the side cover of the housing to form the storage space, and the first housing is provided with a first through hole and a second Through holes, both the first through hole and the second through hole communicate with the storage space, the first functional lens module is installed at the second through hole; and the protective cover is installed at the at the first through hole, so as to cover the first through hole.
  • the first through hole and the second through hole are located at both ends of the first housing in one direction, between the plane where the first functional lens module is located and the one direction Angle setting.
  • connection wall is provided on the edge of the first housing that is snap-fitted with the side cover of the housing, and the control system has an antenna assembly, and the antenna assembly is installed on the connection wall.
  • a first connecting piece is provided on the connecting wall, and the first connecting piece is snap-connected with the side cover of the casing.
  • a second connecting piece is provided on a side of the housing side cover close to the main housing, and the second connecting piece is snap-connected with the first connecting piece, so that the first connecting piece The housing is fastened and connected with the side cover of the housing.
  • the housing side cover is provided with a communicating hole communicating with the storage space, and the touch portion is located in the communicating hole.
  • the touch key assembly includes: a support base installed in the storage space; a capacitive flexible circuit board placed in the storage space and arranged on a side of the support base close to the communication hole side; and a touch key, disposed on the side of the capacitive flexible circuit board close to the communication hole, the touch part is disposed on the touch key, and the capacitive flexible circuit board responds to the touch key assembly Touch operations to control the head-mounted device.
  • the touch key assembly further includes: a driving device, placed in the storage space, connected to the support base and the first housing, and used to drive the support base to approach the communication
  • a driving device placed in the storage space, connected to the support base and the first housing, and used to drive the support base to approach the communication
  • One side of the hole moves or moves toward a side away from the communication hole
  • the touch portion protrudes from the communication hole toward the storage space in response to the movement of the support seat toward the side close to the communication hole out, or retract from the communication hole into the storage space in response to the movement of the support seat to a side away from the communication hole.
  • the touch key includes a touch main body, the touch main body is arranged on the capacitive flexible circuit board, and the touch part is arranged on a side of the touch main body away from the capacitive flexible circuit board, so A side cover of the casing facing the main casing is provided with a relief groove, the communication hole is located in the relief groove, and the relief groove is used to accommodate the touch main body.
  • the main housing is provided with a first mount assembly
  • the wearing device is provided with a second mount assembly
  • the second mount assembly is used to be detachable from the first mount assembly connected to mount the external device on the wearable device.
  • a side of the main housing away from the side cover of the housing is provided with an assembly groove for accommodating the second hanging component.
  • a fixing groove is provided on the bottom surface of the fitting groove
  • the first mounting component includes: a first magnet, disposed in the fixing groove, for magnetically interacting with the second mounting component force connection; and a first decorative sheet, arranged on the bottom surface of the fitting groove, for covering the fixing groove.
  • the number of the first magnet parts is multiple, and the plurality of first magnet parts are arranged symmetrically about the center, and the magnetic poles of the two first magnets that are symmetrical to each other relative to the center point are opposite.
  • the first magnet part includes: a magnet, used to generate a magnetic force, so as to be connected with the second mount component by a magnetic force; and an isolation cover, arranged on the surface of the magnet, for In order to isolate the magnetic force of the magnet, the isolation cover is provided with an opening at a position of the first magnet part facing the side of the first decorative sheet.
  • control system is provided with a first external joint, and a relief hole is provided in the assembly groove to communicate with the assembly groove and the storage space, and the first external joint is installed on the In the relief hole, the first decorative sheet is provided with a hole communicating with the relief hole.
  • control system further includes: a motherboard module, installed in the storage space; a battery module, installed in the storage space, for powering the control system; and a speaker, and
  • the motherboard module is electrically connected and installed at the first through hole.
  • control system further includes a heat dissipation component for dissipating heat from the battery module and the motherboard module.
  • the first functional lens module includes: a first lens, which is an optical waveguide lens; and a mirror frame, installed on the housing assembly, for installing the first lens and the optical machine .
  • the mirror frame is rotatably connected with the housing assembly around a rotation axis, and the end of the mirror frame away from the rotation shaft is configured to move closer to the housing assembly when the mirror frame rotates relative to the housing assembly.
  • One side of the housing assembly is moved to fold the mirror frame, or the mirror frame is moved to a side away from the housing assembly to unfold the mirror frame.
  • the spectacle frame includes: a spectacle frame main body, which surrounds the first lens to fix the first lens; and a first connecting arm, installed at one end of the spectacle frame main body, On the housing assembly, the optical engine is installed on the first connecting arm.
  • the wearing device includes: a frame structure, on which the external device is detachably mounted; and a second functional lens module, installed on the frame structure, when the external device When installed on the frame structure, the second functional lens module is stacked with the first functional lens module.
  • 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 user's head, such as glasses, for example, a device that has other functions such as lighting and can be worn on the user's 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, smart phone, 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 sensors such as ambient light sensors, Hall sensors, etc., and may also include electronic circuitry to control at least some of the aforementioned components and perform associated data processing functions.
  • Electronic circuitry may include, for example, one or more processors and one or more memories.
  • FIG. 1 is an assembly diagram of a head-mounted device in an embodiment of the present application.
  • the head-mounted device 100 may include a wearable device 200 and an external device 400 installed on the wearable device 200 .
  • the wearing device 200 may be worn on the user's head.
  • the wearable device 200 cooperates with the plug-in device 400 to realize augmented reality or virtual reality functions in front of the user's eyes. Of course, other functions can also be realized, which will not be repeated here.
  • one of the wearable device 200 and the external device 400 may be omitted, and the other of the worn device 200 and the external device 400 may be used alone.
  • connection should be understood in a broad sense, for example, it can be a fixed connection, or It can be a detachable connection or an integrated connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediary, and it can be the internal communication of two components.
  • connection can be a fixed connection, or It can be a detachable connection or an integrated connection; it can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediary, and it can be the internal communication of two components.
  • FIG. 2 is a schematic structural diagram of the wearing device 200 in the embodiment shown in FIG. 1 of the present application.
  • FIG. 3 is an exploded view of the wearing device 200 in the embodiment shown in FIG. 1 of the present application.
  • the wearing device 200 may include a frame structure 10 for wearing on the user's head, a first functional lens module 20 mounted on the frame structure 10 , and a first circuit system 30 mounted on the frame structure 10 .
  • the first functional lens module 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 so on.
  • the first circuit system 30 can cooperate with the first functional lens module 20 to realize a certain optical function of the first functional lens module 20 .
  • the first circuit system 30 is used to cooperate with the plug-in device 400 to realize the functions of the plug-in device 400 and/or the first functional lens module 20 .
  • the frame structure 10 may include a wearing body 40 and a support portion 50 connected to opposite ends of the wearing body 40 .
  • the wearing body 40 can be worn on the nose bridge of the user.
  • the supporting part 50 can be erected between the user's ear and the head.
  • the wearing body 40 and the supporting part 50 are matched and worn on the user's head.
  • the frame structure 10 can also be worn in other forms, for example, the wearing body 40 can also be connected with the support part 50 to form a ring structure or a semi-ring structure, so as to be worn on the user's head.
  • the frame structure 10 is not limited to the wearing body 40 and the supporting part 50 , and it can also include other structures, which will not be repeated here.
  • FIG. 4 is a schematic structural diagram of the wearing body 40 in the embodiment shown in FIG. 3 of the present application.
  • the wearing body 40 may include a first shell 41 connected to the support portion 50 on one side, a shield 42 covering the side of the first shell 41 away from the support portion 50 , and a first connection mounted on the first shell 41 . 43 , the assembly frame 44 covering the side of the first shell 41 away from the support portion 50 , and the nose pad 45 installed on the assembly frame 44 .
  • the first housing 41 can cooperate with the assembly frame 44 to install and fix the first functional lens module 20 .
  • the first housing 41 can be connected and fixed with the assembly frame 44 through the first connecting piece 43 .
  • the first housing 41 can be used to cooperate with the first circuit system 30 .
  • the shield 42 can be used to shield the first circuit system 30 disposed on the first casing 41 to enhance the appearance of the wearing body 40 .
  • the nose pads 45 can be used to support the wearing body 40 when the wearing body 40 is worn on the bridge of the user's nose.
  • FIG. 5 is a schematic view of the structure of the first housing 41 in the embodiment shown in Fig.
  • FIG. 7 is a structural schematic diagram of another viewing angle of the first housing 41 in the embodiment shown in FIG. 4 of the present application.
  • the material of the first shell 41 can be hard material.
  • the first housing 41 may include a channel case 411 for cooperating with the first circuit system 30, a mounting frame 412 disposed on one side of the channel case 411 and snap-fitted with the assembly frame 44, and connected to the channel case 411 and respectively disposed on The connecting arms 413 on both sides of the channel shell 411 and on both sides of the installation frame 412 .
  • the passage shell 411 and the installation frame 412 may both be located on the same side of the assembly frame 44 .
  • the installation frame 412 cooperates with the assembly frame 44 to clamp and fix the first functional lens module 20 .
  • the connecting arm 413 is used to connect with the support part 50 to realize the connection between the first housing 41 and the support part 50 .
  • the channel shell 411 may generally be in the shape of a strip plate. A side of the channel shell 411 away from the support portion 50 can be sequentially covered with the shielding member 42 and the assembly frame 44 .
  • the passage shell 411 may include a bar-shaped body 4111 and a first protruding edge 4112 and a second protruding edge 4113 bent from two long edges of the body 4111 toward the side of the shielding member 42 . Wherein, the main body 4111 , the first protruding edge 4112 and the second protruding edge 4113 surround and form a routing channel 41 a for arranging the first circuit system 30 .
  • the shielding member 42 is used to shield the first circuit system 30 arranged in the wiring channel 41a.
  • the first protruding edge 4112 is located on a side of the body 4111 away from the mounting frame 412
  • the second protruding edge 4113 is located on a side of the body 4111 close to the mounting frame 412 .
  • the first protruding edge 4112 and the second protruding edge 4113 extend from the long edge of the body 4111 to a position where the first protruding edge 4112 and the second protruding edge 4113 are connected.
  • the first convex edge 4112 and the second convex edge 4113 can also be connected together by the convex edge on the short edge of the body 4111 .
  • the first convex edge 4112 and the second convex edge 4113 may also be part or all of the convex edge extending from the edge of the body 4111 to one side.
  • names such as “first convex edge”, “second convex edge” and “convex edge” can be interchanged.
  • first convex edge in other embodiments is called “second convex edge”
  • second convex edge in other embodiments is called “first convex edge”.
  • the middle part of the main body 4111 can be recessed toward the side of the shield 42 to form a relief part such as the first relief part 41b, so as to make space for the bridge of the user's nose.
  • the first relief portion 41b may be omitted.
  • Both ends of the main body 4111 in the extending direction can define communication holes 41 c for matching with the first circuit system 30 .
  • the main body 4111 may only define a communicating hole 41c at one end of the main body 4111 in the extending direction.
  • the first protruding edge 4112 can extend from the edge of the main body 4111 to one side of the assembly frame 44 .
  • the first protruding edge 4112 is provided with first mounting portions 4114 on both sides of the first relief portion 41 b for mounting the first connecting member 43 .
  • the first mounting portion 4114 can be a groove. The groove can be inwardly recessed from the surface of the first convex edge 4112 close to the second convex edge 4113 .
  • the first installation part 4114 may be only disposed on one side of the first relief part 41b.
  • the position of the first convex edge 4112 corresponding to the first relief portion 41b may be flush with the surface of the body 4111.
  • the first protruding edge 4112 can be flush with the surface of the main body 4111 on one side of the first relief portion 41b and where the first mounting portion 4114 is not provided.
  • the second protruding edge 4113 extends from the edge of the main body 4111 to one side of the assembly frame 44 .
  • the second raised edge 4113 may include a first sub-raised edge 4113a opposite to the first relief portion 41b and a second sub-raised edge 4113b located on both sides of the first sub-raised edge 4113a. Wherein, the first sub-convex edge 4113a is connected with the second sub-convex edge 4113b.
  • names such as “first sub-convex”, “second sub-convex” and “sub-convex” can be interchanged.
  • the "first sub-convex edge” in other embodiments is called “second sub-convex edge”
  • the "second sub-convex edge” in other embodiments is called “second sub-convex edge”.
  • a convex edge is used.
  • the extension length of the first sub-protrusion edge 4113a extending from the edge of the body 4111 to the side of the assembly frame 44 is the same as the extension length of the first convex edge 4112 extending from the edge of the body 4111 to the side of the assembly frame 44, to improve appearance.
  • the first sub-raised edge 4113a is flush with the surface of the body 4111 .
  • the extension length of the second sub-protrusion edge 4113b extending from the edge of the body 4111 to the side of the assembly frame 44 is shorter than the extension length of the first protrusion edge 4112 extending from the edge of the body 4111 to the side of the assembly frame 44, To make way for assembly frame 44 . Understandably, the extension length of the second sub-protrusion edge 4113b extending from the edge of the body 4111 to the side of the assembly frame 44 may also be the same as the extension length of the first protrusion edge 4112 extending from the edge of the body 4111 to the side of the assembly frame 44 .
  • first convex edge 4112 when the first convex edge 4112 is on one side of the first relief portion 41b and is flush with the surface of the body 4111 where the first mounting portion 4114 is not provided, it is aligned with the first convex edge 4112 on the first side of the first relief portion 41b.
  • the second sub-protrusion edge 4113b on one side of the relief portion 41b and opposite to the portion where the first installation portion 4114 is not provided can be flush with the surface of the body 4111 .
  • the second sub-convex edge 4113b is provided with a second mounting portion 4115 for matching with the first functional lens module 20 .
  • the second mounting portion 4115 can be a groove.
  • the groove can be inwardly recessed from the surface of the second sub-protrusion 4113b near the first protruding edge 4112 .
  • the number of installation frames 412 may include two, which are respectively a first installation frame 412 a and a second installation frame 412 b .
  • the first installation frame 412a and the second installation frame 412b are arranged symmetrically and at intervals.
  • the gap between the first installation frame 412a and the second installation frame 412b can give way to the human body such as the bridge of the nose, so that the nose pad 45 can be installed between the first installation frame 412a and the second installation frame 412b.
  • one of the first installation frame 412a and the second installation frame 412b may be omitted.
  • the mounting frame 412 such as the first mounting frame 412 a and the second mounting frame 412 b may include a mounting frame main body 4121 extending from the second sub-protruding edge 4113 b to a side away from the first protruding edge 4112 . It can be understood that the second sub-protrusion 4113b can be omitted, and the installation frame main body 4121 can be extended from the position where the main body 4111 is opposite to the second sub-protrusion 4113b to the side away from the first protruding edge 4112 .
  • the middle part of the installation frame main body 4121 is provided with a light transmission hole 4122 so that the installation frame main body 4121 has a ring structure, and the light transmission hole 4122 is used to cooperate with the first functional lens module 20 .
  • the light-transmitting hole 4122 can be extended toward the edge of the installation frame body 4121 , so that the installation frame body 4121 has a semi-circular structure.
  • the edge of the installation frame main body 4121 is provided with a third convex edge 4123 to cooperate with the first connecting member 43 and/or the first functional lens module 20 .
  • the third protruding edge 4123 is bent from the edge of the mounting frame main body 4121 to one side of the mounting frame 44 .
  • One of the two ends of the third protruding edge 4123 formed by disconnecting the edge connecting the installation frame main body 4121 and the second sub-protruding edge 4113b can be connected with one end of the first protruding edge 4112, and the other end can be connected with the first sub-protruding edge 4113b. Connect along one end of 4113a.
  • the surface of the third protruding edge 4123 away from the mounting frame main body 4121 may be flush with the surface of the third protruding edge 4123 away from the body 4111 .
  • the surface of the third protruding edge 4123 away from the mounting frame main body 4121 may be flush with the surface of the first sub-protruding edge 4113 a away from the main body 4111 .
  • one end of the third protruding edge 4123 can be connected to one end of the first sub-protruding edge 4113a, and one end where the second sub-protruding edge 4113b is connected to the first sub-protruding edge 4113a.
  • a first mounting portion 4124 is disposed on the third protruding edge 4123 , and the first mounting portion 4124 cooperates with the first mounting portion 4114 on the first protruding edge 4112 to mount the first connecting member 43 together.
  • the first mounting portion 4124 can be a groove. The groove can be recessed from the surface of the third convex edge 4123 close to the light transmission hole 4122 inwardly.
  • one of the first installation frame 412 a and the second installation frame 412 b may not be provided with the first installation part 4124 .
  • the first installation frame 412a is provided with a connecting portion 412c on the side close to the second installation frame 412b and the second installation frame 412b is provided on the side close to the first installation frame 412a, for installing the nose pad 45 .
  • the connecting portion 412c may be a groove. The groove can be recessed inward from the surface of the third convex edge 4123 away from the light transmission hole 4122 .
  • one of the first installation frame 412a and the second installation frame 412b may not be provided with the connecting portion 412c.
  • the number of connecting arms 413 may include two, namely a first connecting arm 413a and a second connecting arm 413b.
  • the first connecting arm 413a and the second connecting arm 413b may be respectively located at both ends of the channel shell 411 such as the main body 4111 in the extending direction.
  • the first connecting arm 413 a and the second connecting arm 413 b may be located on the same side of the channel shell 411 such as the main body 4111 close to the supporting part 50 .
  • the installation positions of the first connecting arm 413 a and the second connecting arm 413 b may also be installed on the main body 4121 of the installation frame.
  • the installation positions of the first connecting arm 413 a and the second connecting arm 413 b can be other, as long as the first connecting arm 413 a and the second connecting arm 413 b are arranged symmetrically and can be used to connect with the supporting part 50 .
  • the first connecting arm 413a and the second connecting arm 413b may be omitted.
  • the channel case 411 or the mounting frame 412 is directly connected to the supporting part 50 .
  • the connecting arm 413 such as the first connecting arm 413a and the second connecting arm 413b may include a connecting arm main body 4131 connected to the side of the channel shell 411 such as the main body 4111 close to the support part 50 and provided with a locking space 41d (shown in FIG. 6 ) inside.
  • the first and second mounting plates 4132 , 4133 are arranged at the end of the connecting arm main body 4131 away from the channel shell 411 , such as the main body 4111 .
  • the first and second mounting boards 4132 , 4133 are used for connecting with the supporting part 50 .
  • the fastening space 41d of the connecting arm main body 4131 can be used for fastening part of the structure of the first circuit system 30 .
  • the fastening space 41d can communicate with the communication hole 41c, so as to facilitate the arrangement of the first circuit system 30 .
  • the first and second mounting plates 4132 , 4133 are arranged symmetrically and at intervals for accommodating the end of the support portion 50 between the first and second mounting plates 4132 , 4133 and connecting with the support portion 50 .
  • the first and second mounting plates 4132 and 4133 may be arranged in sequence along the extending direction of the mounting frame 412 extending from the second sub-protrusion edge 4113b to one side.
  • the first and second mounting plates 4132 , 4133 may also be provided with pivot joints such as pivot holes or pivot shafts to be rotatably connected to the support part 50 .
  • the connecting arm main body 4131 is provided with an abutment plate 4134 for matching with the supporting part 50 .
  • the abutment plate 4134 may be disposed on two sides of the first connecting arm 413a and the second connecting arm 413b away from each other.
  • the abutting plate 4134 is connected and fixed to the first and second mounting plates 4132 and 4133 .
  • the edge of the abutting plate 4134 away from the main body 4131 of the connecting arm may be flush with the edges of the first and second mounting plates 4132 , 4133 .
  • the shielding member 42 can be made of hard material, and of course the same material as the first shell 41 can also be used.
  • the shielding member 42 can be fastened on the channel shell 411 for shielding the first circuit system 30 .
  • the shielding element 42 may include a shielding element body 421 buckled on the channel shell 411 , and a first fixing cover 422 and a second fixing cover 423 located at two ends of the shielding element body 421 .
  • the shield body 421 may be disposed opposite to the body 4111 of the passage shell 411 .
  • at least one of the first fixing cover 422 and the second fixing cover 423 can be omitted.
  • the shield body 421 is respectively connected and fixed with the first protruding edge 4112 and the second protruding edge 4113 , such as buckle connection, adhesive bonding, or insertion. Certainly, when the first fixed cover 422 and the second fixed cover 423 are connected and fixed to the first housing 41 , the shield body 421 only abuts against the first protruding edge 4112 and the second protruding edge 4113 .
  • the shield body 421 abuts against the surface of the first protruding edge 4112 near the second protruding edge 4113 .
  • the shield body 421 abuts against the surface of the second protruding edge 4113 near the first protruding edge 4112 .
  • the shield body 421 and the second convex edge 4113 are close to the first convex edge
  • the surface on one side of the 4112 abuts.
  • the surface of the shield body 421 away from the body 4111 may be flush with the surfaces of the first convex edge 4112 and the second convex edge 4113 .
  • the shield body 421 may be directly flush with the surface of the first convex edge 4112 away from the body 4111 , and may be flush with the surface of the second convex edge 4113 away from the body 4111 .
  • the shielding member 42 may include a first shielding portion 4211 opposite to the first relief portion 41 b and a second shielding portion 4212 located on both sides of the first shielding portion 4211 and connected and fixed to the first shielding portion 4211 .
  • one end of the second shielding portion 4212 close to the side of the first fixing cover 422 is connected and fixed to the first fixing cover 422 .
  • One end of the second shielding portion 4212 close to the side of the second fixing cover 423 is connected and fixed to the second fixing cover 423 .
  • the second shielding portion 4212 located on one side of the first shielding portion 4211 may be omitted.
  • the first shielding portion 4211 may be omitted.
  • first shielding part names such as “first shielding part”, “second shielding part” and “shielding part” can be interchanged in some embodiments.
  • first shielding part in other embodiments is called “second shielding part”
  • second shielding part the "second shielding part” in other embodiments is called “first shielding part”.
  • the first shielding portion 4211 is opposite to the main body 4111 .
  • the first shielding portion 4211 can be connected and fixed with the first sub-rim 4113 a and the part of the first protruding edge 4112 opposite to the first sub-protrusion 4113 a.
  • the first shielding portion 4211 can be connected and fixed with the surface of the first sub-protrusion 4113 a away from the body 4111 , such as plugging, buckling, adhesive, welding and so on.
  • the first shielding portion 4211 can be connected and fixed with the surface of the first protruding edge 4112 away from the body 4111 , such as plugging, buckling, adhesive, welding and so on.
  • the first shielding portion 4211 may be connected and fixed to the surface of the first sub-raised edge 4113 a near the first raised edge 4112 .
  • a surface of the first shielding portion 4211 away from the main body 4111 is flush with the first sub-protruding edge 4113a.
  • the first shielding portion 4211 may be connected and fixed to the surface of the first protruding edge 4112 near the first sub-protruding edge 4113a.
  • a surface of the first shielding portion 4211 away from the main body 4111 is flush with the first protruding edge 4112 .
  • the first shielding part 4211 can be integrated with the channel shell 411 , that is, as a part of the channel shell 411 , and the second shielding part 4212 is two independent entities.
  • the second shielding portion 4212 is opposite to the main body 4111 .
  • the second shielding portion 4212 can be connected and fixed with the second sub-protruding edge 4113b and the part of the first protruding edge 4112 opposite to the second sub-protruding edge 4113b.
  • the second shielding portion 4212 can be connected and fixed with the surface of the second sub-protrusion 4113b away from the body 4111 , such as plugging, buckling, adhesive, welding and so on.
  • the second shielding portion 4212 can be connected and fixed with the surface of the first protruding edge 4112 close to the second sub-protruding edge 4113b, such as plugging, buckling, adhesive, welding and so on.
  • the second shielding portion 4212 may be connected and fixed to the surface of the second sub-raised edge 4113b on the side close to the first raised edge 4112 .
  • one of the two second shielding parts 4212 located on both sides of the first shielding part 4211 can be integrated with the channel shell 411, that is, as a part of the channel shell 411, and can be separated from the first shielding part 4211. two separate entities.
  • the fixing covers such as the first fixing cover 422 and the second fixing cover 423 are used to cover the communication holes 41c provided at both ends of the main body 4111 .
  • the fixed cover such as the first fixed cover 422 may include a fixed cover main body 4221 opposite to the main body 4111 .
  • the fixed cover main body 4221 can be in contact with the surfaces of the first protruding edge 4112 and the second protruding edge 4113 near the communication hole 41c, of course, it can also be fixed by adhesive, bayonet, inserting and so on.
  • the fixed cover main body 4221 can abut against the main body 4111 , and of course, it can also be fixed by adhesive, plug-in, snap-fit and so on.
  • the fixed cover main body 4221 can also be spaced apart from the main body 4111 .
  • a light hole 4222 is defined in the middle of the fixed cover main body 4221 to be opposite to the communication hole 41c on the body 4111 , so that both the light hole 4222 and the communication hole 41c are matched with the first circuit system 30 .
  • both the light through hole 4222 and the communication hole 41c are circular holes and coaxially arranged.
  • the main body 4221 of the fixed cover is also provided with a first installation hole 4223, which is arranged opposite to the communication hole 41c on the body 4111, so that the first installation hole 4223 and the communication hole 41c are both matched with the first circuit system 30
  • the fixed cover main body 4221 is also provided with a fastening plate 4224 that can extend into the communication hole 41c of the main body 4111 and be fastened with the main body 4111 .
  • the fastening plate 4224 can extend into the fastening space 41d and be fastened with the main body 4131 of the connecting arm instead of fastened with the body 4111 .
  • the fastening plate 4224 can also cooperate with the first circuit system 30 .
  • FIG. 8 is a schematic structural diagram of the shielding member 42 in the embodiment shown in FIG. 4 of the present application.
  • the second fixed cover 423 can also include a fixed cover main body 4221 like the first fixed cover 422 , and a light through hole 4222 , a first installation hole 4223 and a fastening plate 4224 are provided on the fixed cover main body 4221 .
  • the setting method of the second fixed cover 423 and the matching relationship with the first casing 41 please refer to the setting method of the first fixing cover 422 and the matching relationship with the first casing 41 .
  • the shielding member 42 can be integrated with the channel shell 411 . That is, the shield 42 may serve as a part of the first housing 41 .
  • At least one of the first fixing cover 422 and the second fixing cover 423 may be omitted.
  • the first connecting member 43 can be used to realize the installation of the assembly frame 44 on the first housing 41 .
  • the first connecting part 43 may include a first sub-connecting part 431 mounted on the first mounting part 4114 and the first mounting part 4124 and a second sub-connecting part 432 disposed on the second mounting part 4115 .
  • the first sub-connecting part 431 can be matedly connected with the assembly frame 44 .
  • the second sub-connecting part 432 can be matedly connected with the first functional lens module 20 .
  • at least one of the first sub-connector 431 and the second sub-connector 432 may be omitted.
  • the first sub-connecting part 431 may be a magnet capable of generating a magnetic force.
  • the first sub-connecting member 431 may also be a plug-in structure, a snap-fit structure, or a screw-connection structure.
  • the first sub-connector 431 can also be omitted.
  • the second sub-connecting part 432 may be a magnet capable of generating a magnetic force.
  • the second sub-connecting member 432 may also be a plug-in structure, a snap-fit structure, or a screw-connection structure.
  • the second sub-connector 432 can also be omitted.
  • the second sub-connector 432 can also be installed on other parts of the channel shell 411 .
  • the first connecting member 43 may be a part of the first housing 41 . In one embodiment, at least one of the first sub-connection part 431 and the second sub-connection part 432 may be a part of the first housing 41 .
  • the assembly frame 44 can be made of rigid material.
  • the assembly frame 44 can be connected with the first connecting member 43 when the first connecting member 43 is provided, so as to realize connection and fixation with the first housing 41 .
  • the assembly frame 44 can be directly connected and fixed to the first housing 41 without the first connecting member 43 being provided.
  • the material of the assembly frame 44 can be a hard metal that is magnetically connected and fixed with the first connecting member 43 such as a magnet or a hard material that includes a metal that cooperates with the magnetic force of the magnet so as to be connected with the first connecting member 43 Magnetic force connection.
  • the first connecting member 43 may be disposed on the assembly frame main body 4411 .
  • the first connecting member 43 may be arranged on the assembly frame 44 instead of the first housing 41, so that the first connecting member 43 is magnetically connected to the first housing 41 to realize the assembly frame 44 is fixedly connected to the first housing 41.
  • the number of assembly frames 44 can be two, namely a first assembly frame 441 and a second assembly frame 442 .
  • the first assembly frame 441 is fastened on the first installation frame 412a.
  • the second assembly frame 442 is fastened on the second installation frame 412b.
  • the assembling frame 44 such as the first assembling frame 441 and the second assembling frame 442 can generally be a plate-like structure.
  • the assembly frame 44 such as the first assembly frame 441 and the second assembly frame 442 may include an assembly frame main body 4411 opposite to the installation frame main body 4121 .
  • the assembly frame main body 4411 is surrounded by a third protruding edge 4123 and a first protruding edge 4112 connected to the third protruding edge 4123, and abuts against the third protruding edge 4123 and the first protruding edge 4112 connected to the third protruding edge 4123 catch.
  • a light hole 4412 is provided in the middle of the assembly frame body 4411 opposite to the light hole 4122 so that the assembly frame body 4411 has a ring structure.
  • the light hole 4412 is used to cooperate with the first functional lens module 20 .
  • Light can pass through the light-transmitting hole 4412 , the first functional lens module 20 and the light-transmitting hole 4122 in sequence.
  • the light-transmitting hole 4412 can be extended toward the edge of the assembly frame body 4411 so that the assembly frame body 4411 has a semi-circular structure corresponding to the semi-circular structure of the mounting frame body 4121 .
  • the surface of the assembly frame main body 4411 away from the channel shell 411 is flush with the surface of the third protruding edge 4123 surrounding the assembly frame main body 4411 to improve appearance.
  • the surface of the assembly frame main body 4411 away from the passage shell 411 is flush with the surface of the first protruding edge 4112 surrounding the assembly frame main body 4411 to improve appearance.
  • the side of the assembly frame main body 4411 away from the main body 4111 is flush with the surface of the first shielding portion 4211 to improve appearance.
  • the surface of the assembly frame body 4411 away from the channel shell 411, such as the side of the body 4111, and the third convex edge 4123 surrounding the assembly frame body 4411 is flush with the surface of the first sub-convex edge 4113a, so as to improve the appearance.
  • the assembly frame main body 4411 can also abut against the edge of the third convex edge 4123 away from the installation frame main body 4121 .
  • the assembly frame body 4411 can also abut against the edge of the first protruding edge 4112 away from the installation frame body 4121 .
  • the assembly frame main body 4411 can communicate with the two ends of the main body 4111 extending direction.
  • the hole 41c and the fixed cover such as the light through hole 4222 on the first fixed cover 422 and the second fixed cover 423 are shielded.
  • assembly frame 44 such as the first assembly frame 441 and the second assembly frame 442 can form the second housing 46 with the shielding part 42 .
  • the assembly frame 44 such as the first assembly frame 441 and the second assembly frame 442 may be integrated with the shielding member 42 .
  • the second shielding portion 4212 opposite to the assembly frame 441 can form the first housing, the second assembly frame 442, the second installation frame 412b opposite to the second assembly frame 442, and the second assembly frame 412b opposite to the second assembly frame 442 in the channel shell 411.
  • the position and the second shielding part 4212 opposite to the second assembly frame 442 in the shielding part 42 can form the second housing, and the position between the first housing and the second housing in the passage shell 411 and the first shielding part 4211 Connections can be made.
  • the first shell and the second shell are used to fix the first functional lens module 20 .
  • the first housing and the second housing are connected and fixed inside the first functional lens module 20 through the connecting portion.
  • the second housing can be omitted.
  • FIG. 9 is a schematic structural view of the nose pad 45 in the embodiment shown in FIG. 4 of the present application.
  • the nose pad 45 may include a first nose pad 451 installed on the first mounting frame 412a such as the connecting portion 412c and a second nose pad 451 that is symmetrically arranged with the first nose pad 451 and mounted on the second mounting frame 412b such as the connecting portion 412c. Nose piece 452.
  • the first nose pad 451 and the second nose pad 452 can be integrated.
  • the first nose pad 451 and the second nose pad 452 can only be installed on the first installation frame 412a or the second installation frame 412b.
  • the first nose pad 451 and the second nose pad 452 can also be installed on the channel shell 411 .
  • the nose pads such as the first nose pad 451 and the second nose pad 452 may include a connecting seat 453 mounted on the connecting portion 412c and a nose pad 454 movably connected with the connecting seat 453 .
  • the nose pad 454 can be in contact with the bridge of the nose of the user to support the wearing body 40 .
  • the nose pad 45 can also be in other shapes.
  • the nose pad 45 may be a bump provided on a side of the first mounting frame 412a close to the second mounting frame 412b.
  • the nose pad 45 may be a protrusion provided on a side of the second mounting frame 412b close to the first mounting frame 412a. That is, the nose pad 45 can be a part of the first housing 41 .
  • the supporting part 50 is used to be worn between the user's head and ears, and can be connected with the wearing body 40 such as the connecting arm 413 to form the frame structure 10 .
  • the supporting part 50 may include a first leg 51 connected to the first shell 41 such as the first connecting arm 413a and a second leg 51 connected to the first shell 41 such as the second connecting arm 413b and arranged symmetrically to the first leg 51.
  • Outrigger 52 wherein, the first outrigger 51 can be erected between the right ear and the head, and the second outrigger 52 can be erected between the left ear and the head, so as to realize the wearing of the supporting part 50 .
  • the supporting portion 50 may also be provided in other forms such as a ring structure, a semi-ring structure, etc., which will not be described in detail.
  • first leg in other embodiments is called “second leg”
  • second leg in other embodiments is called “first leg”.
  • FIG. 10 is an exploded view of the first leg 51 in the embodiment shown in FIG. 3 of the present application.
  • the first leg 51 may include a leg body 53 connected to the first housing 41 such as the first connecting arm 413a, and buckle with the leg body 53 on the side of the leg body 53 facing the second leg 52 to form an accommodation space.
  • 530 outrigger side cover 54 is an exploded view of the first leg 51 in the embodiment shown in FIG. 3 of the present application.
  • the first leg 51 may include a leg body 53 connected to the first housing 41 such as the first connecting arm 413a, and buckle with the leg body 53 on the side of the leg body 53 facing the second leg 52 to form an accommodation space.
  • 530 outrigger side cover 54 wherein, the accommodating space 530 can be used for accommodating the first circuit system 30 .
  • the outrigger main body 53 can be made of hard materials such as metal, rubber, plastic, etc., and of course can also be made of the same material as the wearing main body 40 .
  • the main body 53 of the supporting leg can be in the shape of a long shell as a whole.
  • the leg body 53 is provided with at least one second mounting hole 53 a passing through the leg body 53 to cooperate with the first circuit system 30 .
  • the leg main body 53 is provided with a bent portion 531 at an end away from the first housing 41 such as the first connecting arm 413a to improve the stability of the support portion 50 worn on the user's head and prevent the support portion 50 from slipping.
  • the bent portion 531 can be bent toward the first side, so that the supporting leg body 53 can be set between the ear and the user's head.
  • the bent portion 531 is provided with a recessed portion 53b on the first side, and a decorative member 532 is provided at the recessed portion 53b on the first side, so that the bent portion 531 and the decorative member 532 surround the recessed portion 53b.
  • a hole is formed.
  • the bending portion 531 is provided with a first engaging portion 5311 and a second engaging portion 5312 on both sides of the recessed portion 53b.
  • the first engaging portion 5311 is located on a side of the bending portion 531 close to the main body 53 of the leg.
  • the second engaging portion 5312 is located on a side of the bending portion 531 away from the leg main body 53 .
  • the first engaging portion 5311 can be disposed on the leg body 53 .
  • both the first engaging portion 5311 and the second engaging portion 5312 are grooves for installing the decoration 532 .
  • the decoration part 532 can be a strip structure, which can be made of elastic material or hard material.
  • the decorative part 532 is made of elastic material, the wearing comfort of the supporting part 50 and the adjustability brought by the elasticity can be improved.
  • first engaging portion 5321 can be engaged with the first engaging portion 5311 .
  • the second engaging portion 5322 can be engaged with the second engaging portion 5312 .
  • the first locking part 5321 can be a locking block, so as to be placed in the first locking part 5311 such as a groove, so as to realize the locking between the first locking part 5321 and the first locking part 5311 .
  • the second locking part 5322 can be a locking block, so as to be placed in the second locking part 5312 such as a groove, so as to realize the locking between the second locking part 5322 and the second locking part 5312 .
  • the matching relationship between the first locking part 5321 and the first locking part 5311 and the matching relationship between the second locking part 5322 and the second locking part 5312 are not limited to the matching relationship between the groove and the locking block. It can also be a snap connection, a plug connection, an adhesive connection, a welding connection, a screw connection and the like.
  • the decoration part 532 can be integrated with the bending part 531 .
  • FIG. 11 is a structural schematic diagram of another viewing angle of the first leg 51 in the embodiment shown in FIG. 10 of the present application.
  • One end of the leg main body 53 connected to the first shell 41 such as the first connecting arm 413a is provided with a fitting part 533, so that when the fitting part 533 is placed between the first mounting plate 4132 and the second mounting plate 4133, it is respectively connected with the first mounting plate 4132 and the second mounting plate 4133.
  • the mounting plate 4132 is rotatably connected with the second mounting plate 4133 .
  • the assembly part 533 may include an assembly part main body 534 disposed between the first mounting plate 4132 and the second mounting plate 4133, and a mounting part body 534 provided on the mounting part main body 534 and respectively rotatably connected with the first mounting plate 4132 and the second mounting plate 4133. Shaft assembly 535 .
  • the assembly part main body 534 is extended from the leg main body 53 to the first housing 41 such as the first connecting arm 413a.
  • the mounting part main body 534 forms a relief part, such as a second relief part 5341, on the surface away from the leg side cover 54 and the end of the leg body 53 facing the mounting part 533, so as to abut against the first connecting arm 413a, for example.
  • the connecting plate 4134 makes way, so that the abutting plate 4134 is located in the second moving portion 5341 to limit the position of the first leg 51 .
  • the shaft assembly 535 may include at least a shaft.
  • the rotating shaft can pass through the main body 534 of the assembly part, and is rotatably connected to the first mounting plate 4132 and the second mounting plate 4133 respectively.
  • the assembly part body 534 is integrated with the shaft component 535 such as a shaft.
  • the shaft component 535 such as a shaft may be a part of the first housing 41 .
  • the rotating shaft assembly 535, such as the rotating shaft can be fixedly connected with the first mounting plate 4132 and the second mounting plate 4133 of the first connecting arm 413a in the first housing 41, such as plug-in fixing, welding fixing, adhesive fixing, etc. .
  • the rotating shaft assembly 535 such as the rotating shaft can be integrated with the first mounting plate 4132 and the second mounting plate 4133 of the first connecting arm 413 a in the first housing 41 .
  • a first mounting component 55 is disposed on a side of the leg main body 53 away from the leg side cover 54 for mounting the external device 400 .
  • FIG. 12 is an exploded view of the first mounting assembly 55 in the embodiment shown in FIG. 11 of the present application.
  • the first mounting assembly 55 may include a mount 551 mounted on the leg body 53 , a first magnet 552 mounted on the mount 551 away from the leg body 53 , and a cover on the mount 551 away from the leg body 53 .
  • the first decorative sheet 553 on the side. Wherein, the first magnet part 552 is disposed between the installation seat 551 and the first decoration sheet 553 .
  • a receiving groove 5511 is provided on a side of the mounting base 551 facing the first decorative sheet 553 for receiving the first magnet member 552 .
  • the mounting base 551 is provided with a third mounting hole 5512 communicating with the second mounting hole 53 a to cooperate with the first circuit system 30 .
  • the mounting base 551 may be a one-piece structure.
  • the mounting seat 551 can extend from the leg main body 53 to a side away from the leg side cover 54 .
  • the first magnet part 552 can have a magnetic force, so as to connect with the external device 400 through magnetic force, so as to realize the installation of the external device 400 on the wearable device 200 .
  • the first magnet part 552 can be installed in the mounting seat 551 such as the receiving groove 5511 .
  • the surface of the first magnet part 552 close to the first decorative sheet 553 is flush with the surface of the mounting base 551 .
  • the first magnet part 552 may include a magnet 5521 with a magnetic force and an isolation cover 5522 wrapped on the magnet 5521 .
  • the isolation cover 5522 can open an opening on the side away from the leg body 53 , that is, on the side close to the first decorative sheet 553 , so that the magnet 5521 is exposed to the side facing the first decorative sheet 553 and magnetically connected with the external device 400 .
  • the isolation cover 5522 is used to isolate or weaken the magnetic force of the first magnet part 552 on the side of the leg body 53, so that the first circuit system 30 is weakened or eliminated by the magnetic interference of the first magnet part 552, thereby protecting the first circuit system 30. Function of the circuit system 30 .
  • the isolation cover 5522 may be omitted.
  • the first decorative sheet 553 can be made of hard material or flexible material.
  • the first decorative sheet 553 can be used to cover the first magnet part 552 to improve appearance.
  • the first decoration sheet 553 is provided with a fourth installation hole 5531 at a position corresponding to the third installation hole 5512 to cooperate with the first circuit system 30 .
  • first mounting component 55 may not be connected to the external device 400 through the first magnet member 552 , but may be connected and fixed through a plugging structure, a buckle structure, a screw connection structure, etc., which will not be described in detail.
  • first installation hole names such as “first installation hole”, “second installation hole”, “third installation hole”, “fourth installation hole” and “installation hole” can be interchanged in some embodiments.
  • first mounting hole in other embodiments is called “second mounting hole”
  • second mounting hole in other embodiments is called “first mounting hole”.
  • the leg side cover 54 can be made of hard material or flexible material. Of course, the same material as that of the leg main body 53 can also be used.
  • the leg side cover 54 can be fastened on the side of the leg body 53 facing the second leg 52 .
  • the leg side cover 54 may include a side cover body 541 covering the leg body 53 and an abutting side wall extending from the side cover body 541 to the side of the fitting part 533 and abutting or buckling with the fitting part body 534 542.
  • the first circuit system 30 can be arranged to cooperate with the abutting side wall 542 and the assembly part main body 534 .
  • the side cover body 541 is provided with a gap 5411 for the concave portion 53 b of the bent portion 531 . In one embodiment, the side cover body 541 cooperates with the bent portion 531 to fasten the first engaging portion 5321 and the second engaging portion 5322 of the decoration member 532 .
  • the second outrigger 52 is arranged symmetrically with the first outrigger 51 , so that the second outrigger 52 cooperates with the first outrigger 51 to realize wearing the wearing device 200 on the user's head.
  • the second outrigger 52 can adopt the arrangement method of the above-mentioned first outrigger 51 to be arranged.
  • the second leg 52 can be connected to the second connecting arm 413b in the same way as the first leg 51 is connected to the first connecting arm 413a.
  • the occupied space of the wearable device 200 is reduced.
  • the second leg 52 rotates relative to the second connecting arm 413 b , the end of the second leg 52 away from the second connecting arm 413 b moves to the side away from the first leg 51 , and then the wearing device 200 is unfolded.
  • the second leg 52 can adopt the structure and connection relationship of the leg body 53 and the leg side cover 54 in the first leg 51 .
  • the setting method and function of the second leg 52 please refer to the setting method and function of the first leg 51 in the above-mentioned embodiment, and details will not be repeated.
  • the second outrigger 52 can also be arranged in other ways instead of the first outrigger 51 , which will not be repeated here.
  • both the first leg 51 and the second leg 52 are integrated with the first housing 41 .
  • the first leg 51 is rotatably connected to the first connecting arm 413a of the first casing 41 such as the first mounting plate 4132 and the second mounting plate 4133 through the assembly part 533 such as the rotating shaft assembly 535, and the second leg The leg 52 is rotatably connected to the second connecting arm 413 b of the first housing 41 , such as the first mounting plate 4132 and the second mounting plate 4133 , through an assembly portion 533 such as a rotating shaft assembly 535 .
  • the force between the support part 50 and the user's head cannot be adjusted.
  • the assembly part 533 is adjusted so that the force between the support part 50 and the user's head can be adjusted.
  • Fig. 13 is a schematic structural diagram of another embodiment of the leg body 53 in the embodiment shown in Fig. 10 of the present application
  • Fig. 14 is another embodiment of the leg body 53 in the embodiment shown in Fig. An exploded view from one perspective.
  • mounting grooves 5342 are respectively provided on the surfaces of the assembly portion body 534 facing both sides of the first mounting plate 4132 and the second mounting plate 4133 , so as to cooperate with the rotating shaft assembly 535 .
  • the assembly part main body 534 is provided with a through hole 5343 penetrating through the assembly part main body 534 to communicate with two installation grooves 5342 provided on both sides of the assembly part main body 534 , and further cooperate with the rotating shaft assembly 535 .
  • the assembly part main body 534 defines a stroke part 5344 on the inner wall of the installation groove 5342 to cooperate with the rotating shaft assembly 535 .
  • the stroke portion 5344 may be a stroke groove.
  • the stroke portion 5344 is provided with two abutting surfaces such as a first abutting surface 5344 a and a second abutting surface 5344 b in the stroke groove, so as to cooperate with the rotating shaft assembly 535 .
  • a third abutting surface 5344 c is provided in the travel portion 5344 , such as a travel groove, so as to cooperate with the rotating shaft assembly 535 .
  • the third abutting surface 5344c is located between the first abutting surface 5344a and the second abutting surface 5344b.
  • the stroke portion 5344 can be three protrusions disposed in the installation groove 5342 .
  • one of the three protrusions is provided with a first abutting surface 5344 a
  • the other is provided with a second abutting surface 5344 b
  • the last one is provided with a third abutting surface 5344 c to cooperate with the shaft assembly 535 .
  • the three bumps can be integrated.
  • the installation groove 5342 can be omitted.
  • the stroke part 5344 can be disposed on the surface of the assembly part main body 534 facing the two sides of the first mounting plate 4132 and the second mounting plate 4133 respectively.
  • stroke portion 5344 may be three bumps.
  • the stroke portion 5344 is not limited to the listed matching relationship between the stroke groove and the three protrusions, and can also be other matching relationships.
  • the stroke portion 5344 is disposed inside the assembly portion main body 534 .
  • the third abutting surface 5344c may be omitted.
  • the shaft assembly 535 may include a shaft 536 placed in the through hole 5343 and fixedly connected to the first mounting plate 4132 and the second mounting plate 4133 , and an elastic shaft connected to the shaft 536 and snapped to the main body 534 of the assembly part. Item 537.
  • the rotating shaft 536 can be provided with a fixing portion 5361 to be fixedly connected or engaged with one end of the elastic member 537 such as the first end 5371 .
  • the fixing portion 5361 can be a through hole or a groove passing through the rotating shaft 536 , so that one end of the elastic member 537 such as the first end 5371 protrudes into the through hole or the groove to engage with the rotating shaft 536 .
  • the fixing portion 5361 such as a through hole may be a strip-shaped through hole. The extending direction of the strip-shaped through hole can be consistent with the axial direction of the rotating shaft 536 , so that one end of the elastic member 537 such as the first end 5371 protrudes into the through hole and engages with the rotating shaft 536 in the radial direction of the rotating shaft 536 .
  • the extending direction of the strip-shaped through hole may also be inconsistent with the axial direction of the rotating shaft 536, so that one end of the elastic member 537, such as the first end 5371, extends into the through hole under the cooperation of the assembly part main body 534 The inside is engaged with the rotating shaft 536 in the radial direction of the rotating shaft 536 .
  • Figure 15 is an exploded view of the rotation shaft 536 and the connecting arm body 4131 in one embodiment of the present application.
  • the rotating shaft 536 may include a rotating shaft screw 5362 with a fixed portion 5361 arranged in the axial direction, such as a through hole, and a rotating shaft screw 5363 screwed to the end of the rotating shaft screw 5362 .
  • the rotating shaft screw 5362 may include a screw rod part 5364 with one end screwed to the rotating shaft screw 5363 and a fixed part 5361 such as a through hole arranged in the axial direction, and a screw head 5365 provided at the other end of the screw rod part 5364 .
  • the fixing part 5361 is, for example, extended to the end of the screw rod part 5364 screwed with the screw rod 5363 through a through hole, so as to extend to the edge of the screw rod part 5364, so that the elastic member 537 slides into the fixing part 5361 from the edge of the rotating shaft screw rod 5362, for example inside the through hole.
  • the screw head 5365 is arranged opposite to the shaft screw 5363 to be mounted on the connecting arm body 4131 such as the first mounting plate 4132 and the second mounting plate 4133 to prevent the elastic member 537 from slipping out of the fixing portion 5361 such as the through hole.
  • the first mounting plate 4132 is provided with a through hole 4132 a, and a first fastening portion 4132 b is provided around the through hole 4132 a to fasten with the rotating shaft 536 to prevent the rotating shaft 536 from rotating relative to the connecting arm body 4131 .
  • the first fastening portion 4132b can be a groove.
  • the second mounting plate 4132 is provided with a through hole 4133a opposite to the through hole 4132a on the first mounting plate 4132, so that the rotating shaft 536 such as the rotating shaft screw 5362 passes through the through hole 4132a and the through hole 4133a in sequence.
  • the screw head 5365 is provided with a second fastening portion 5365a on a side facing the shaft screw 5363 for fastening with the first fastening portion 4132b.
  • the second fastening portion 5365a can be a protrusion to be placed in the first fastening portion 4132b such as a groove, so as to realize fastening between the first fastening portion 4132b and the second fastening portion 5365a.
  • the arrangement relationship between the first fastening portion 4132b and the second fastening portion 5365a is not limited to the protrusion and the groove.
  • the elastic member 537 can be a torsion spring.
  • the elastic member 537 can also be other types of elastic members 537 such as elastic cords, springs, reeds and the like.
  • the elastic member 537 can be a planar scroll spring, and the planar scroll spring surrounds the periphery of the rotating shaft 536 .
  • the number of the elastic member 537 may be one, or three, four, etc., and the number of the elastic member 537 is not limited.
  • One end of the elastic member 537 is connected and fixed or engaged with the fixing portion 5361 of the rotating shaft 536 .
  • one end of the elastic member 537 such as the first end 5371 can slide from the edge of the screw rod portion 5364 into the fixing portion 5361 such as the through hole.
  • the other end of the elastic member 537 slides in the stroke portion 5344, such as the stroke groove, and can slide to the abutment surface of the other end of the elastic member 537, such as the second end 5372, and the stroke portion 5344, such as the stroke groove, such as the first
  • the abutting state of the abutting surface 5344a and the second abutting surface 5344b makes the other end of the elastic member 537 such as the second end 5372 limited.
  • the elastic member 537 when the other end of the elastic member 537 such as the second end 5372 slides from the first abutting surface 5344a to the second abutting surface 5344b in the stroke portion 5344 such as the stroke groove, it can slide through the third The abutment surface 5344c, when the other end of the elastic member 537, such as the second end 5372, abuts against the third abutment surface 5344c, the elastic member 537 can be elastically deformed, so that the elastic member 537 can move relative to the third abutment surface. 5344c slides.
  • the second end 5372 of the elastic member 537 can be separated from the two abutting surfaces of the stroke portion 5344, such as the first abutting surface 5344a and the second abutting surface 5344b, when the distance is relatively close.
  • the two abutting surfaces of the stroke portion 5344 such as the first abutting surface 5344 a and the second abutting surface 5344 b abut against each other, and cannot slide on the stroke portion 5334 .
  • the elastic member 537 can be placed in the mounting groove 5342, so that the second end 5372 of the elastic member 537 is placed in the stroke part 5344, such as in the stroke groove, place the assembly part 534 between the first mounting plate 4132 and the second mounting plate 4133, so that the through hole 5343, the through hole 4132a and the through hole 4133 communicate, and the rotating shaft screw 5362 passes through the through hole in turn 4132a, the through hole 5343 and the through hole 4133, so that the elastic member 537 slides into the fixing part 5361 such as a through hole, the first fastening part 4132b and the second fastening part 5365a are fastened, and the rotating shaft screw 5363 is screwed to the rotating shaft screw rod 5362, Furthermore, the rotating shaft 536 is installed in the first mounting plate 4132 and the second mounting plate 4133 .
  • the elastic member 537 follows the rotating shaft 536 and rotates relative to the leg main body 53, so that the second end 5372 of the elastic member 537 is in the stroke portion 5344 such as a stroke groove. and can slide to the state of abutting against the abutment surface such as the second abutment surface 5344a, and the leg body 53 continues to rotate around the rotation shaft 536, for example, in the first direction, so that the elastic member 537 can be elastically deformed.
  • the deformation produces an active force that restores the elastic member 537 to its original shape, and then exerts a force on the outrigger body 53 to rotate the outrigger main body 53 in the second direction, thereby adjusting the force of the outrigger main body 53 on the user's head, so that It is more comfortable for users to wear.
  • the difficulty makes the user experience the experience of folding and unfolding the outrigger main body 53 .
  • the other end of the elastic member 537 is in contact with the stroke portion 5344, such as the first abutting surface 5344a in the stroke groove, and slides to the stroke portion 5344, such as the second abutment surface in the stroke groove.
  • the stroke part 5344 is designed in a different style, and the rotation angle of the supporting leg body 53 around the rotating shaft 536 can be adjusted.
  • the other end of the elastic member 537 is in contact with the stroke portion 5344, such as the first contact surface 5344a in the stroke groove, and slides to the stroke portion 5344, such as the third abutment surface in the stroke groove.
  • the stroke portion 5344 such as the first contact surface 5344a in the stroke groove
  • slides to the stroke portion 5344 such as the third abutment surface in the stroke groove.
  • the contact surfaces 5344c abut against each other, the leg body 53 can rotate 0-70° around the rotation axis 536 .
  • the stroke part 5344 is designed in a different style, and the rotation angle of the leg body 53 around the rotation axis 536 can be adjusted, for example, 45°.
  • the elastic member 537 may only be disposed on one side of the assembly part main body 534 facing the first mounting plate 4132 or the second mounting plate 4133 . In some embodiments, the elastic member 537 can also be disposed inside the fitting body 534 , and the travel portion 5344 is also disposed inside the fitting body 534 .
  • rotating shaft 536 can also be fixed on the assembly part main body 534 , and structures such as the installation groove 5342 and the stroke part 5344 can be provided on at least one of the first installation plate 4132 and the second installation plate 4133 .
  • the matching relationship between the second relief portion 5341 of the leg body 53 shown in FIG. 13 and FIG. The matching relationship between the second relief portion 5341 of the leg main body 53 and the connecting arm main body 4131 such as the abutment plate 4134 is different.
  • the angle of rotation of the leg body 53 relative to the connecting arm body 4131 makes the angle of rotation of the leg body 53 relative to the connecting arm body 4131 larger, that is The expansion angle during deployment is relatively large, and the cooperation between the second relief portion 5341 of the leg body 53 shown in Figure 10 and Figure 11 and the connecting arm body 4131 such as the abutment plate 4134 makes the leg body 53 relative to the connecting arm body 4131
  • the angle of rotation is small, that is, the deployment angle during deployment is small.
  • the difference between the two deployment angles can be 0-12°. That is, in FIGS. 13 and 14 , the inflection angle of the leg main body 53 relative to the connecting arm main body 4131 is relatively large.
  • a rotating shaft assembly 535 is provided between the supporting leg main body 53 and the connecting arm main body 4131 shown in Fig. 13 and Fig. 14, so that when the deployment angle is relatively large, the rotating shaft assembly 535 can be used to adjust the alignment of the supporting leg main body 53 to the user's head. force.
  • the elastic member 537 follows the rotation shaft 536 and rotates relative to the leg body 53, so that the second end 5372 of the elastic member 537 is within the stroke portion 5344, such as Sliding in the travel groove, and can slide to the state of abutting against the abutment surface such as the second abutment surface 5344a, the leg main body 53 continues to rotate around the rotation axis 536, for example, in the first direction, so that the elastic member 537 can be elastically deformed , the elastic deformation produces a force that restores the elastic member 537 to its original shape, and then exerts a force on the leg body 53 that causes the leg body 53 to rotate in the second direction, that is, the rebound force, and then adjusts the leg body 53 to the user's head.
  • the abutment plate 4134 of the connecting arm body 4131 can be rotated to the second position of the leg body 53
  • the position part 5341 is used to limit the position of the main body 53 of the leg.
  • the first functional lens module 20 may include a first functional lens 21 and a second functional lens 22 mounted on a first casing 41 .
  • the first functional lens 21 and the second functional lens 22 are arranged symmetrically.
  • the first functional lens 21 can be set corresponding to the user's right eye
  • the second functional lens 22 can be set corresponding to the user's left eye.
  • at least one of the first functional lens 21 and the second functional lens 22 may be omitted.
  • the functional lenses such as the first functional lens 21 and the second functional lens 22 may include a plurality of laminated lenses. In some embodiments, the functional lenses such as the first functional lens 21 and the second functional lens 22 may only include one lens. In one embodiment, the function of the first functional lens 21 and the function of the second functional lens 22 may be different, of course, in some embodiments, the function of the first functional lens 21 and the function of the second functional lens 22 may be the same .
  • the eyeglass can be made of one or more transparent or translucent materials such as glass and plastics. Lenses can also be made of one or more materials such as transparent materials, translucent materials, and opaque materials for certain light-transmitting special effects.
  • the eyeglasses can be vision correction lenses made from one or more of lenses such as convex lenses and concave lenses.
  • lenses such as convex lenses and concave lenses.
  • other types of lenses or functional lenses such as flat mirrors, anti- Glare mirror, colored mirror, etc.
  • functional films such as anti-reflection film, polarizing mode, filter film, electrochromic film, photochromic film, etc.
  • the lens may be a myopic lens.
  • the lenses may also be other functional lenses such as plain mirrors, anti-glare mirrors, colored mirrors, and the like.
  • the lens can also be a photochromic device (eg, a photochromic film).
  • 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, and details are not repeated here.
  • the lens can also be an electrochromic device (such as an electrochromic film).
  • 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 produced by adopting the existing technical solutions in the prior art within the scope understood by those skilled in the art, so no further description is given.
  • the electrochromic device can be electrically connected with the electronic circuit system inside the head-mounted device 100 to realize the control of the electrochromic device.
  • the lens 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 glasses.
  • the lens may also be a structure formed by combining lenses in any of the above embodiments, which will not be described in detail.
  • the number of lenses may be two, such as a first lens 23 and a second lens 24 .
  • the first lens 23 and the second lens 24 are stacked.
  • the first lens 23 and the second lens 24 may be of different types.
  • the first lens 23 is an optical waveguide
  • the second lens 24 is a flat mirror.
  • one of the first lens 23 and the second lens 24 may be omitted.
  • the first functional lens module 20 may be omitted.
  • the first lens 23 may be disposed between the installation frame main body 4121 and the assembly frame main body 4411 .
  • the fixing of the first lens 23 is realized by clamping the first lens 23 by the installation frame main body 4121 and the assembly frame main body 4411 .
  • the first lens 23 may cover the side of the shielding member 42 away from the main body 4111 .
  • the first lens 23 can abut against the side of the shielding member 42 away from the first convex edge 4112 , and abut against the surface of the second sub-protruding edge 4113 b away from the body 4111 .
  • the first lens 23 can be provided with a light-coupling light-incoming part at a position opposite to the light-through hole 4222 , and a light-coupling light-out part at a position opposite to the light-through hole 4122 .
  • the optical coupling input part and the optical coupling output part are connected together to form an optical path.
  • the light is coupled into the lens from the optical coupling input part and transmitted in the optical path.
  • the light will be coupled out of the lens at the optical coupling output part and injected into the lens. In the wearer's eye and on the retina.
  • the first lens 23 may include a lens body 231 provided with an optical coupling light-in portion and a light-coupling light output portion, and an electrochromic lens disposed on the side of the lens body 231 facing the installation frame body 4121 or the assembly frame body 4411 Film 232.
  • the arrangement of the electrochromic film 232 solves the problem that the first lens 23 has a single color.
  • the lens body 231 can be provided with an electrochromic film 232 on a side facing the mounting frame body 4121 and a side facing the mounting frame body 4411 .
  • the electrochromic film 232 can be omitted.
  • the lens body 231 may be a flat mirror or a near-sighted mirror without having a light-coupling-in portion and a light-coupling-out portion.
  • FIG. 17 is a schematic structural diagram of the first functional lens 21 in the embodiment shown in FIG. 3 of the present application.
  • the lens main body 231 is provided with an extension part 2311, and the extension part 2311 can extend to a position overlapping with the fixed cover.
  • the light coupling-in part may be disposed on the extension part 2311 .
  • the electrochromic film 232 is provided with an electrical connection end such as a first electrical connection end 2321 at a position where the extension portion 2311 is opposite to the first installation hole 4223 , so as to be electrically connected to the first circuit system 30 .
  • the function of the lens body 231 in the first lens 23 may be different from that of the lens body 231 in the second lens 24 .
  • the lens body 231 in the first lens 23 can be an optical waveguide
  • the lens body 231 in the second lens 24 can be a plane mirror or a myopia mirror.
  • the second lens 24 as a myopia lens as an example.
  • the second lens 24 may be located on a side of the first lens 23 facing the main body 4121 of the installation frame.
  • the side of the second lens 24 facing the channel shell 411 is provided with a second connecting piece 241 so as to be connected and fixed with the first connecting piece 43 such as the second sub-connecting piece 432 .
  • the second connecting part 241 can be a metal capable of generating a magnetic force or a composite material including a metal having a magnetic force, so as to be magnetically connected to the second sub-connecting part 432 .
  • the matching relationship between the second connecting part 241 and the second sub-connecting part 432 is not limited to the magnetic force connection, and it can also be a plugging connection, a buckle connection, an adhesive connection, a screw connection and the like.
  • the number of lenses in the first functional lens 21 may be different from the number of lenses in the second functional lens 22 .
  • the first functional lens 21 is provided with a first lens 23 and a second lens 24
  • the second functional lens 22 is provided with a first lens 23 .
  • FIG. 18 is a structural schematic view of the first circuit system 30 in the embodiment shown in FIG. Schematic diagram of the perspective structure.
  • the first circuit system 30 can be used to realize at least one of the functions of the first functional lens module 20 such as augmented reality, virtual reality, and color change with the first functional lens module 20 .
  • the first circuit system 30 can also be used to implement the functions of the external device 400 .
  • the first circuit system 30 may include a motherboard module 31 , an optical-mechanical component 32 , a battery module 33 and a speaker module 34 electrically connected together through a flexible circuit board 35 .
  • the battery module 33 can provide electric energy for the normal operation of the motherboard module 31 , the optical-mechanical component 32 and the speaker module 34 .
  • the motherboard module 31 can be used to control the normal operation of the optical-mechanical component 32 and the speaker module 34 .
  • the motherboard module 31 may include a first motherboard 311 arranged in the receiving space 530 of the first leg 51 and a second motherboard 312 circuit-connected with the first motherboard 311 and arranged in the fastening space 41d of the second connecting arm 413b .
  • the first main board 311 may also be disposed in the fastening space 41d of the first connecting arm 413a.
  • the first main board 311 may also be disposed in the fastening space 41d of the second connecting arm 413b.
  • the first main board 311 may also be disposed in the receiving space 530 of the second leg 52 .
  • the second main board 312 may also be disposed in the fastening space 41d of the first connecting arm 413a. In an embodiment, the second main board 312 may also be disposed in the receiving space 530 of the first leg 51 . In an embodiment, the second main board 312 can also be disposed in the receiving space 530 of the second leg 52 .
  • the functional devices integrated on the first main board 311 and the functional devices integrated on the first main board 311 may be integrated on one main board, that is, one of the first main board 311 and the second main board 312 may be omitted.
  • the optical-mechanical assembly 32 can be used as a display assembly, and the optical-mechanical assembly 32 can be disposed in the fastening space 41d of the first connecting arm 413a.
  • the optical-mechanical assembly 32 is electrically connected to the motherboard module 31 such as the first motherboard 311 through the first flexible circuit board 351 .
  • the first flexible circuit board 351 can extend from the receiving space 530 of the first leg 51 to the side of the first connecting arm 413a, and extend to between the abutting side wall 542 and the assembly part main body 534, and from the abutting side wall 542 and the main body of the assembly part 534 protrude into the fastening space 41d of the first connecting arm 413a to be electrically connected to the optical-mechanical assembly 32 .
  • the optomechanical assembly 32 may include at least an optomechanic.
  • the light engine emits light (also referred to as a "light signal") with image information.
  • the light can be coupled into the first lens 23 from the light coupling-in portion of the first lens 23 through the communication hole 41 c and the light-through hole 4222 , so that the light is coupled out from the light coupling out portion of the first lens 23 .
  • the optomechanical assembly 32 can be disposed in the fastening space 41d of the second connecting arm 413b. It can be understood that there may be two optomechanical assemblies 32, one of which is disposed in the fastening space 41d of the first connecting arm 413a, and the other is disposed in the fastening space 41d of the second connecting arm 413b.
  • the optical-mechanical assembly 32 can be electrically connected to the motherboard module 31 such as the second motherboard 312 through the second flexible circuit board 352 .
  • the second flexible circuit board 352 can be arranged in the wiring channel 41 a , that is, the second flexible circuit board 352 is arranged in the channel shell 411 . It is sandwiched between the body 4111 and the shielding member 42 to be covered by the shielding member 42 to prevent the second flexible circuit board 352 from being exposed.
  • one end of the second flexible circuit board 352 corresponds to the position of the first mounting hole 4223 of the first fixed cover 422, and an electrical connection terminal such as a second electrical connection terminal 3521 is provided to connect with the first functional lens 21 of the first functional lens 21.
  • the first electrical connection end 2321 of a lens 23 is electrically connected.
  • the other end of the second flexible circuit board 352 corresponds to the position of the first mounting hole 4223 of the second fixed cover 423 to set an electrical connection end such as a second electrical connection end 3522 to connect with the first lens 23 of the second functional lens 22.
  • An electrical connection end 2321 is electrically connected.
  • another optical-mechanical assembly 32 can be installed in the position where the second main board 312 is installed, that is, in the fastening space 41d of the second connecting arm 413b.
  • Another optomechanical assembly 32 can be installed according to the installation method of the optical mechanical assembly 32 in the first connecting arm 413 a, so that the other optical mechanical assembly 32 can cooperate with the first lens 23 in the second functional lens 22 .
  • the battery module 33 can be disposed in the receiving space 530 of the second leg 52 . It can be electrically connected with the second flexible circuit board 352 and/or the second main board 312 through the third flexible circuit board 353 .
  • the third flexible circuit board 353 can extend from the receiving space 530 of the second leg 52 to the side of the first connecting arm 413a, and extend to between the abutting side wall 542 and the assembly part main body 534, and from the abutting side wall 542 protrudes into the fastening space 41d of the second connecting arm 413b between the assembly part main body 534 and is electrically connected to the second flexible circuit board 352 and/or the second main board 312 .
  • the battery module 33 may also be disposed in the accommodation space 530 of the first leg 51 .
  • the battery module 33 may also be disposed in the fastening space 41d of the first connecting arm 413a, or may be disposed in the fastening space 41d of the second connecting arm 413b.
  • the speaker module 34 may include a first speaker 341 arranged in the receiving space 530 of the first leg 51 and a second speaker 342 arranged in the receiving space 530 of the second leg 52.
  • the first speaker 341 is arranged in the first leg 51.
  • the accommodating space 530 of the leg 51 is disposed corresponding to the second installation hole 53 a of the leg body 53 , so that the sound can be transmitted from the second installation hole 53 a to the outside.
  • the second speaker 342 is disposed in the receiving space 530 of the second leg 52 corresponding to the second mounting hole 53a of the leg body 53, so that sound can be transmitted to the outside through the second mounting hole 53a.
  • at least one of the first speaker 341 and the second speaker 342 may be omitted.
  • the first circuit system 30 may further include a first external connector electrically connected to the motherboard module 31 and/or the battery module 33 .
  • the first external joint can be set corresponding to the first mounting component 55 such as the mounting base 551, such as extending from the second mounting hole 53a of the leg body 53 into the third mounting hole 5512 and the fourth mounting hole 5531, so that the first hanging
  • the load assembly 55 is connected to an external device such as an external power supply or the external device 400, it can realize data transmission with the external device, or provide electric energy for the external device, or provide electric energy for the first circuit system 30 by the external device.
  • the first external connector may be a pogo pin or a contact paired with the pogo pin.
  • the first external joint can be used as a part of the first mounting component 55 .
  • the first external connector can be disposed inside the mounting seat 551 , for example, the first external connector is directly fixed in the third mounting hole 5512 .
  • the first circuit system 30 is not limited to the motherboard module 31, the optical-mechanical assembly 32, the battery module 33, and the speaker module 34 listed in the above-mentioned embodiments, and it may also include electronic components, such as a microphone, For example Hall sensors.
  • the Hall sensor can be used to sense the change of the magnetic field around the first mounting component 55 , so that the motherboard module 31 can control the normal operation of the first circuit system 30 according to the result detected by the Hall sensor.
  • the installation and disassembly of the plug-in device 400 can be sensed through the change of the magnetic field, and the task management of the head-mounted device 100 can be further realized, and the switching between sleep and working modes of the head-mounted device 100 system can be realized, and power consumption can be optimized.
  • the Hall sensor can be installed on the first mounting component 55 , and of course it can also be installed at other locations, which will not be described in detail here.
  • the part of the first circuit system 30 located in the first leg 51 can be referred to as a "first part”
  • the part of the first circuit system 30 located in the second leg 52 can be referred to as "first part”.
  • the part is called “second part”
  • the part of the first circuit system 30 located in the first connecting arm 413a can be called “third part”
  • the part of the first circuit system 30 located in the second connecting arm 413b can be called is the "third part”
  • the first part and the third part are electrically connected through the first flexible circuit board 351, the third part and the fourth part are electrically connected through the second flexible circuit board 352, and the second part and the fourth part are electrically connected through the second flexible circuit board 352.
  • the third flexible circuit board 353 is electrically connected.
  • first part can be interchanged in some embodiments.
  • first part in other embodiments is referred to as a “second part”
  • second part in other embodiments is referred to as a "first part”.
  • the assembly process of the wearable device 200 is relatively complicated, and the arrangement of the flexible circuit board 35 such as the first flexible circuit board 351 and the third flexible circuit board 353 needs to go through the assembly part 533 provided on the leg body 53, and then The design of the assembly part main body 534 is too complicated, and the first flexible circuit board 351 and the third flexible circuit board 353 will be bent back and forth during use, so that the first flexible circuit board 351 and the third flexible circuit board 353 have folded Bending damage reduces the lifespan of the flexible circuit board 35 such as the first flexible circuit board 351 and the third flexible circuit board 353, so the flexible circuit board 35 such as the first flexible circuit board 351 and the third flexible circuit board 353 needs to be redesigned.
  • first flexible circuit board can be interchanged in some embodiments.
  • first flexible circuit board in other embodiments is called “second flexible circuit board”, and accordingly, the “second flexible circuit board” in other embodiments is called “second flexible circuit board”.
  • a flexible circuit board in one embodiment, is called “second flexible circuit board”, and accordingly, the “second flexible circuit board” in other embodiments is called “second flexible circuit board”.
  • Figure 20 is a schematic structural diagram of the first flexible circuit board 351 of the present application
  • Figure 21 is a schematic diagram of the first flexible circuit board 351 and the legs in the embodiment shown in Figure 20 of the present application
  • the first flexible circuit board 351 may include a first sub-flexible circuit board 3511 electrically connected to the first main board 311, a second sub-flexible circuit board 3512 electrically connected to the optical-mechanical assembly 32, and disposed on the first sub-flexible circuit board 3511.
  • the first electrical interface 3513 and the second electrical interface 3514 provided at the other end of the second sub-FPC 3512 .
  • first electrical interface 3513 is electrically connected to the second electrical interface 3514 to realize the electrical connection between the first sub-FPC 3511 and the second sub-FPC 3512 .
  • the first electrical interface 3513 and the second electrical interface 3514 form an electrical connection assembly.
  • the first electrical interface 3513 is disposed on the end surface of the leg main body 53 located at the second relief portion 5341
  • the second electrical interface 3514 is disposed on the end surface of the abutting plate 4134 away from the end of the connecting arm main body 4131 .
  • the abutting plate 4134 can be located at the second abdication portion 5341, that is, when the first leg 51 is in the unfolded state, the first electrical interface 3513 and the second electrical interface 3514 can be abutted. Connect to realize electrical connection.
  • the abutment plate 4134 can be kept away from the second relief portion 5341, that is, when the first leg 51 is in the folded state, the first electrical interface 3513 and the second electrical interface 3514 can be separated. Contact, and then can not achieve circuit conduction. It can be understood that the first electrical interface 3513 can also be arranged at other parts of the second abdication part 5341, as long as the first electrical interface 3513 can be connected with the second electrical interface 3514 when the contact plate 4134 is located in the second abdication part 5341. Electric connection is enough.
  • first electrical interface 3513 and the second electrical interface 3514 are not limited to be arranged on the end surface of the abutment plate 4134 and the connecting arm body 4131 at the second relief part 5341, the first electrical interface 3513 can also be arranged on the assembly part 533 In other positions of the first connecting arm 413a, the second electrical interface 3514 may also be disposed in other positions of the first connecting arm 413a.
  • one of the first electrical interface 3513 and the second electrical interface 3514 is a pogo pin, and the other is a contact mated with the pogo pin.
  • the first electrical interface 3513 and the second electrical interface 3514 can be electrically connected or disconnected when the connecting arm main body 4131 rotates around the rotating shaft assembly 535 . Further, the normal operation of the head-mounted device 100 can be controlled.
  • the electrical connection component is made to function as a switch.
  • the first flexible circuit board 351 is protected.
  • the structure of the third flexible circuit board 353 may be similar to that of the first flexible circuit board 351.
  • the third flexible circuit board 353 may also include a first sub- Electrical interface 3513, second electrical interface 3514.
  • the usage of the third flexible circuit board 53 in the first circuit system 30 please refer to the first flexible circuit board, and details will not be repeated.
  • FIG. 22 is a schematic structural diagram of the plug-in device 400 in the embodiment shown in FIG. 1 of the present application.
  • the plug-in device 400 may include a second functional lens module 60 corresponding to the user's eyes and stacked with the first functional lens module 20 such as the first functional lens 21, and is used to install the second functional lens module 60 and be installed on a support
  • the part 50 is, for example, the hanging main body 70 on the first hanging component 55 .
  • FIG. 23 is a cross-sectional view of the external device 400 in the embodiment shown in FIG. 22 of the present application.
  • the second functional lens module 60 may include a frame 61 and a third functional lens 62 .
  • the third functional lens 62 can be stacked with the first functional lens module 20 such as the first functional lens 21 , and can be located on the side of the first lens 23 away from the second lens 24 .
  • the mirror frame 61 can be used to fix the third functional lens 62 .
  • the mirror frame 61 can be used to be connected and fixed with the external hanging main body 70 .
  • first functional lens can be interchanged in some embodiments.
  • first functional lens in other embodiments is referred to as “second functional lens”
  • second functional lens the "second functional lens” in other embodiments is referred to as “first functional lens”.
  • the mirror frame 61 can be made of hard material.
  • the spectacle frame 61 may include a spectacle frame body 611 surrounding the edge of the third functional lens 62 and a third connecting arm 612 disposed on the spectacle frame body 611 and used for connecting with the plug-in body 70 .
  • the third connecting arm 612 is provided with an accommodating space 610 for matching with the plug-in main body 70 .
  • the accommodating space 610 is provided with a light-transmitting hole toward the side of the third functional lens 62 to cooperate with the third functional lens 62 .
  • the accommodating space 610 may be omitted.
  • the frame body 611 can surround the edge portion of the third functional lens 62 , and in addition, the frame body 611 can be fixedly connected to the third functional lens 62 through hot melt adhesive.
  • first connecting arm in other embodiments is called “second connecting arm”
  • second connecting arm in other embodiments is called “first connecting arm”.
  • the structure and arrangement of the third functional lens 62 can be designed according to the structure and arrangement of the first functional lens 21 .
  • the function of the third functional lens 62 may be different from that of the first functional lens 21, or may be the same.
  • the structure, arrangement and function of the third functional lens 62 please refer to the first functional lens 21 in the above-mentioned embodiment, and details are not repeated here.
  • the third functional lens 62 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 third functional lens 62 .
  • the third functional lens 62 is introduced below by taking the third functional lens 62 as an optical waveguide as an example.
  • the third functional lens 62 can be provided with a light-coupling-in part and a light-coupling-out part opposite to the accommodating space 610 .
  • the light-coupling-in part and the light-coupling-out part are connected together to form an optical path, the light is coupled into the third functional lens 62 from the light-coupling part, transmitted in the light path, and finally the light will be coupled out at the light-coupling part
  • the third functional lens 62 is projected into the wearer's eye and forms an image on the retina.
  • the plug-in body 70 may include a housing component 80 that can be mounted on a wearable device 200 such as the first mounting component 55 and a second circuit system 90 installed in the housing component 80 .
  • the shell assembly 80 can be connected and fixed with the third connecting arm 612 .
  • the second circuit system 90 can be used to implement the virtual reality or augmented reality function of the third functional lens 62 .
  • the second circuit system 90 can be electrically connected with the first circuit system 30 to form an electronic circuit system to realize the operation of at least one of the first functional lens module 20 and the second functional lens module 60 .
  • first circuit system names such as “first circuit system”, “second circuit system”, “circuit system” and “control system” can be interchanged in some embodiments.
  • the "first circuit system” in other embodiments is referred to as “second circuit system”, and accordingly, the “second circuit system” in other embodiments is referred to as “first circuit system”. ".
  • both the "first circuit system” and the “second circuit system” in other embodiments can be referred to as a "control system”.
  • FIG. 24 is a schematic structural diagram of the housing assembly 80 in the embodiment shown in FIG. 23 of the present application.
  • the housing assembly 80 may include a main housing 81 that can be mounted on the wearing device 200 such as the first mounting assembly 55, a housing side cover 82 on the side of the main housing 81 away from the first leg 51, and a housing side cover 82 mounted on the main housing 81.
  • the touch key assembly 83 inside the housing 81 .
  • a storage space 840 is provided in the main housing 81 for accommodating the touch key assembly 83 and the second circuit system 90 .
  • the touch key assembly 83 cooperates with the housing side cover 82 to trigger the touch key assembly 83 on the side of the housing side cover 82 , and then realize the control of the second circuit system 90 electrically connected to the touch assembly 83 . That is, the touch key assembly 83 can also serve as a part of the second circuit system 90 .
  • the main housing 81 may include a third housing 84 with a storage space 840, a protective cover 85 disposed at the end of the third housing 84 away from the second functional lens module 60, and a protective cover 85 disposed at the end of the third housing 84 close to the first leg. 51 side and the second hanging component 86 connected and fixed with the first hanging component 55 .
  • first functional lens module can be interchanged in some embodiments.
  • first functional lens module in other embodiments is called “second functional lens module”
  • second functional lens module in other embodiments is called It is "the first functional lens module”.
  • first mounting component in other embodiments is referred to as “second mounting component”
  • second mounting component in other embodiments is referred to as “second mounting component”.
  • One mount component is referred to as “second mounting component”.
  • first housing in other embodiments is referred to as “second housing”
  • second housing in other embodiments is referred to as “first housing”.
  • FIG. 25 is a schematic structural diagram of the third housing 84 in the embodiment shown in FIG. 24 of the present application.
  • the third housing 84 can be made of hard material.
  • the third housing 84 may be cylindrical and extend in the height direction. Of course, other shapes are also possible.
  • the third case 84 may include a case body 841 .
  • the casing main body 841 is enclosed to form a storage space.
  • a partition plate 842 may be provided inside the housing body 841 to divide the storage space 840 into a plurality of spaces for respectively installing part of the second circuit system 90 .
  • the housing body 841 is provided with a third installation portion 843 in the storage space 840 for installing the touch key assembly 83 .
  • a connection wall 8411 is provided on the edge of the casing main body 841 , and a third connecting member 8412 may be provided on the connection wall 8411 so as to be connected and fixed with the casing side cover 82 .
  • the third connecting member 8412 can be one of a buckle structure, a plug-in structure, and the like.
  • first installation part names such as “first installation part”, “second installation part”, “third installation part” and “installation part” can be interchanged in some embodiments.
  • first installation part in other embodiments is referred to as “second installation part”
  • second installation part the "second installation part” in other embodiments is referred to as “first installation part”. ".
  • connection wall 8411 can be provided with a locking position 8413 so as to cooperate with the second circuit system 90 .
  • a first through hole 8414 is defined at the end of the casing body 841 away from the second functional lens module 60 to communicate with the storage space 840 .
  • a second through hole 8415 is opened on the end of the housing body 841 close to the second functional lens module 60 to communicate with the storage space 840.
  • the second through hole 8415 can be used to accommodate the third connecting arm 612 to realize the housing
  • the connection between the main body 841 and the third connecting arm 612 is fixed.
  • FIG. 26 is a structural diagram of another embodiment of the embodiment shown in FIG. 23 of the present application when the housing body 841 is connected to the third connecting arm 612 .
  • the housing body 841 and the third connecting arm 612 can be rotatably connected through the rotating shaft 63.
  • the angle between the mirror frame 61 and the third connecting arm 612 can be generally 45-150°. In one embodiment, the angle between the mirror frame 61 and the third connecting arm 612 may be approximately 90°.
  • One end of the mirror frame 61 far away from the rotating shaft 63 can move toward the side close to the housing body 841 when the mirror frame 61 rotates relative to the outer shell body 841, so that the mirror frame 61 is opposite to the housing body 841 to realize the second function of the lens mold.
  • the folded accommodation of the set 20 is for example folded at an angle of 0-90°.
  • the end of the mirror frame 61 away from the rotating shaft 63 can move to the side away from the housing body 841 when the mirror frame 61 rotates relative to the housing body 841 to unfold the second functional lens module 20 for ease of use.
  • the external device 400 can be folded and stored, so as to reduce the volume of the external device 400 .
  • the casing main body 841 is provided with an assembly groove 844 on a side close to the first leg 51 for installing the second hanging component 86 .
  • a fixing slot 8441 is provided in the fitting slot 844 , such as the bottom surface, for installing the second hanging component 86 .
  • the fixing groove 8441 is recessed from the bottom surface of the assembling groove 844.
  • a relief hole 8442 is provided in the fitting groove 844 for installing the second mounting component 86 . The relief hole 8442 can communicate with the storage space 840 .
  • the protective cover 85 can be made of hard material, and the protective cover 85 can be arranged on the end of the third housing 84 away from the second functional lens module 60 and buckled at the first through hole 8414 to realize the protection of the first through hole 8414. shaded.
  • the protective cover 85 may be provided with a mesh through-hole structure.
  • the second mounting assembly 86 may include a second magnet 861 installed in the fixing slot 8441, a second decorative sheet 862 covering the bottom surface of the fitting slot 844, and a second external joint arranged at the relief hole of the second decorative sheet 862. 863.
  • the general structure of the second hanging component 86 is the same as that of the first hanging component 86, the difference is that the second hanging component 86 does not carry the second magnet 861, the second decorative sheet 862 and the second circumscribed Mounting seat for connector 863.
  • the arrangement and matching relationship between the second magnet member 861, the fixing groove 8441, and the second decorative sheet 862 please refer to the arrangement method of the first magnet member 552, the mounting seat 551, the receiving groove 5511, and the first decorative sheet 553 in the above-mentioned embodiment. And the cooperative relationship, so I won’t repeat them.
  • the third housing 84 serves as a mounting base for carrying the second magnet piece 861, the second decorative sheet 862 and the second external joint 863, wherein the fixing groove 8441 can be omitted, and the second magnet piece 861 can be directly fixed
  • the second decorative sheet 862 is arranged on the side of the second magnet piece 861 facing the first mounting assembly 55, and the second decorative sheet 8411 abuts against the side wall of the fitting groove 844, so that the mounting The grooves 844 are divided into two parts respectively.
  • the part of the fitting groove 844 used for installing the second magnet piece 861 may also be referred to as a "fixing groove".
  • the second external connector 863 can be used to electrically connect with an external device such as an external power supply, the wearable device 200 such as the first external connector, realize data transmission with the external device, or provide power for the external device, or the external device is the second The circuit system 90 provides power, or the first circuit system 30 provides power to the second circuit system 90 .
  • the second external connector 863 can be a pogo pin or a contact paired with a pogo pin. It can be understood that the electrical connection relationship between the first external connector and the second external connector 863 is not limited to the coordination relationship between pogo pins or contacts paired with pogo pins, and other interfaces such as USB interfaces can also be used. I won't go into details.
  • a Hall sensor electrically connected to the first external connector is provided on the first mounting component 55 for detecting the magnetic field strength of the second electromagnet 861, and a second circuit is provided on the second mounting component 863.
  • the Hall sensor electrically connected to the system 90 is used to detect the magnetic field strength of the first electromagnetic component 552.
  • both Hall sensors can be connected to the second circuit system 90. electrical connection, and then control the external device 400 according to the system preset control method.
  • first magnet part in other embodiments is called “second magnet part”
  • second magnet part in other embodiments is called “first magnet part”.
  • first decorative sheet in other embodiments is referred to as “second decorative sheet”
  • second decorative sheet in other embodiments is referred to as “first decorative sheet”.
  • FIG. 27 is a structural schematic diagram of the cooperation between the first mounting component 55 and the second mounting component 86 in an embodiment of the present application.
  • the first mounting component 55 can extend into the mounting groove 844, so that the first decorative sheet 553 and the second decorative sheet 862 can be arranged opposite to each other.
  • the first decorative The sheet 553 and the second decorative sheet 862 can be arranged at intervals, or can be in contact with each other.
  • the first magnet part 552 and the second magnet part 861 are attracted by mutual magnetic force, so that the first hanging component 55 and the second hanging component 86 are connected.
  • the structure and shape of the mounting groove 844 is the same as that of the first mounting component 55 such as the mounting base 551.
  • the shape can realize the function of positioning.
  • the cross-section of the fitting groove 844 perpendicular to the direction of depression toward the housing main body 841 can be one of ellipse, rectangle, polygon, etc., and of course it can also be a special shape.
  • the mounting seat 551 can be self-supporting
  • the cross section of the leg body 53 perpendicular to the direction extending away from the leg side cover 54 can be adapted to the cross section of the fitting groove 844 perpendicular to the direction of the recess toward the side of the housing body 841, so that the mounting seat 551 can be inserted into the assembly In the slot 844 , the connection strength between the first mounting component 55 and the second mounting component 86 is strengthened.
  • first mount component 55 and the second mount component 86 can form a plug-in component.
  • the plug-in component is not limited to the first mount component 55 and the second mount component 86, and the plug-in component can also include others, such as the first
  • the third housing 84 can be replaced by an assembly seat, and the assembly seat is used as a part of the external assembly, wherein, the assembly groove 844, the fixing groove 8441 and the relief hole 8442 on the third housing 84 that cooperate with the second mounting assembly 86 Can be set on the mounting base.
  • the mounting base can be fixed on one object, and the mounting base 551 can be fixed on another object, so as to realize the detachable connection of the two objects.
  • the mounting base can be fixed on the third housing 84
  • the mounting base 551 can be fixed on the first leg 51 , so as to realize the detachable link between the third housing 84 and the first leg 51 .
  • the mounting base can be used as a part of the first hanging component 55 .
  • two first magnet parts 552 may be arranged in the first mounting assembly 55, wherein the two first magnet parts 552 have different magnetic poles (also referred to as "opposite magnetic poles"), for example, in FIG. 27
  • the first magnet part 552 on the left side of the first mount assembly 55 faces the magnetic pole of the second mount assembly 86 to the south pole (that is, the S pole), while the first magnet part 552 on the right faces the second pole.
  • the magnetic pole on one side of the mounting assembly 86 is north pole (ie, N pole).
  • the second mount assembly 86 can be provided with two second magnet members 861 corresponding to the two first magnet members 552 in the first mount assembly 55, wherein the two second magnet members 861 have different magnetic poles, for example, in FIG. 27
  • the magnetic pole of the second magnet part 861 on the left side facing the first mounting assembly 55 is N pole
  • the second magnet part 861 on the right is facing the first mounting assembly 55-
  • the magnetic pole on the side is the S pole.
  • the magnetic poles of the second magnet part 861 on the side are different, so as to generate magnetic force.
  • the magnetic poles of the first magnet part 552 on the right side of the first mounting component 55 and the second magnet part 861 on the right side of the second mounting component 86 are different, and generate magnetic force to attract each other.
  • FIG. 28 is a structural diagram of another embodiment of the first mounting component 55 and the second mounting component 86 in one embodiment of the present application.
  • the first magnet member 552 on the left side of the first mounting assembly 55 can be aligned with the left side of the second mounting assembly 86.
  • the second magnet parts 861 on the left have the same magnetic poles, and generate magnetic force to repel each other.
  • the first magnet part 552 on the right side of the first mounting component 55 has the same magnetic pole as the second magnet part 861 on the right side of the second mounting component 86 , and generates magnetic force to repel each other.
  • the magnetic force connection between the first mounting component 55 and the second mounting component 86 cannot be made.
  • the plurality of first magnet pieces 552 in the first mount assembly 55 are distributed symmetrically about the center.
  • the plurality of second magnet parts 861 are distributed symmetrically about the center, and when the two second magnet parts 861 are symmetrical about the center of the symmetrical point, the magnetic poles are different.
  • the first mounting component 55 and the second mounting component 86 are installed as shown in FIG. 27 , they can be correctly installed together.
  • the first mount component 55 in FIG. 27 is turned upside down, as shown in FIG. 28, the first mount component 55 and the second mount component 86 will repel each other due to the change of the magnetic pole arrangement, thereby avoiding wearing the device.
  • the 200 and the external device 400 can still be installed together when the first mounting component 55 is turned upside down, so that the user can perceive the position dislocation according to the change of the magnetic force of opposite poles attracting each other or homopolar repelling, and can adjust accordingly
  • the relative position of the first mounting component 55 and the second mounting component 86 can be adjusted between the wearing device 200 and the external device 400 until the change of the magnetic force is used to guide the user to place the external device 400 in a reasonable position set by the wearable device 200 .
  • the disassembly and convenient assembly of the first mounting component 55 and the second mounting component 86 can be realized by sensing the magnetic force between the first magnet part 552 and the second magnet part 861.
  • the magnetic force between the first magnet part 552 and the second magnet part 861 is guided to adjust the relative position between the first hanging component 55 and the second hanging component 86 .
  • FIG. 29 is a schematic diagram of cooperation between the first mounting component 55 and the second mounting component 86 in another embodiment of the present application.
  • the first hanging component 55 is center-symmetrically arranged with a first group of magnetic parts 554 and a second group of magnetic parts 555 in the first direction (in some embodiments, it may be referred to as "horizontal direction").
  • the third group of magnetic components 556 and the fourth group of magnetic components 557 are symmetrically arranged in the second direction (which may be referred to as “vertical direction” in some embodiments).
  • first magnet part 552 in the first group of magnetic parts 554 and the first magnet part 552 in the second group of magnetic parts 555 are centrally symmetrically arranged, and the first magnet part 552 in the third group of magnetic parts 556 is arranged with the fourth group of magnetic parts.
  • the first magnet parts 552 in the magnetic parts 557 are arranged symmetrically about the center.
  • the two first magnet parts 552 that are symmetrical about the center of the symmetrical point have different magnetic poles.
  • the second mounting assembly 86 is provided with a first group of magnetic parts 866 and a second group of magnetic parts 867 symmetrically in the first direction, and a third group of magnetic parts 868 and a fourth group of magnetic parts in the second direction. 869.
  • the first magnet part 552 in the first group of magnetic parts 866 and the first magnet part 552 in the second group of magnetic parts 867 are centrally symmetrically arranged
  • the first magnet part 552 in the third group of magnetic parts 868 is arranged with the fourth group of magnetic parts.
  • the first magnet parts 552 in the magnetic parts 869 are arranged symmetrically about the center.
  • the two first magnet parts 552 that are symmetrical about the center of the symmetrical point have different magnetic poles.
  • the first direction is perpendicular to the second direction.
  • the first set of magnetic elements 554 and the second set of magnetic elements 555 are arranged axially and centrally symmetrically.
  • the third set of magnetic components 556 and the fourth set of magnetic components 557 are arranged axially and centrally symmetrically.
  • the first set of magnetic components 866 and the second set of magnetic components 867 are arranged axially and centrally symmetrically.
  • the third set of magnetic components 868 and the fourth set of magnetic components 869 are arranged axially and centrally symmetrically.
  • the number of first magnet pieces 552 is not equal to the number of first magnet pieces 552 in the third group of magnetic pieces 556 .
  • the number of the first magnet parts 552 in the first group of magnetic parts 554 is equal to the number of the first magnet parts 552 in the second group of magnetic parts 555, and the number of the first magnet parts 552 in the third group of magnetic parts 556 is equal to the fourth The number of the first magnet parts 552 in the set of magnetic parts 557 .
  • two adjacent first magnet elements 552 have different magnetic poles.
  • the first magnet part 552 in the first group of magnetic parts 866 can be at least one, the first magnet part 552 in the third group of magnetic parts 868 can be at least one, and the first magnet part 552 in the first group of magnetic parts 866
  • the number is not equal to the number of the first magnet parts 552 in the third group of magnetic parts 868 .
  • the number of the first magnet parts 552 in the first group of magnetic parts 866 is equal to the number of the first magnet parts 552 in the second group of magnetic parts 867, and the number of the first magnet parts 552 in the third group of magnetic parts 868 is equal to the number of the fourth group of magnetic parts 868.
  • the number of the first magnets 552 in the set of magnetics 869 In one embodiment, in a set of magnetic elements such as the first set of magnetic elements 866 , two adjacent first magnet elements 552 have different magnetic poles.
  • the number of first magnet pieces 552 is equal to the number of first magnet pieces 552 in the third group of magnetic pieces 556 .
  • the number of the first magnet parts 552 in the first group of magnetic parts 554 is equal to the number of the first magnet parts 552 in the second group of magnetic parts 555, and the number of the first magnet parts 552 in the third group of magnetic parts 556 is equal to the fourth The number of the first magnet parts 552 in the set of magnetic parts 557 .
  • two adjacent first magnet elements 552 have different magnetic poles.
  • the first magnet part 552 in the first group of magnetic parts 866 can be at least one, the first magnet part 552 in the third group of magnetic parts 868 can be at least one, and the first magnet part 552 in the first group of magnetic parts 866
  • the number is equal to the number of the first magnet parts 552 in the third group of magnetic parts 868 .
  • the number of the first magnet parts 552 in the first group of magnetic parts 866 is equal to the number of the first magnet parts 552 in the second group of magnetic parts 867
  • the number of the first magnet parts 552 in the third group of magnetic parts 868 is equal to the number of the fourth group of magnetic parts 868.
  • the number of the first magnets 552 in the set of magnetics 869 In one embodiment, in a set of magnetic elements such as the first set of magnetic elements 866 , two adjacent first magnet elements 552 have different magnetic poles.
  • first magnet pieces 552 in the first set of magnetic pieces 554 there may be two first magnet pieces 552 in the first set of magnetic pieces 554, two first magnet pieces 552 in the third set of magnetic pieces 556, and two magnet pieces in the first set of magnetic pieces 554.
  • the number of a magnet part 552 is equal to the number of the first magnet part 552 in the second group of magnetic parts 555, and the number of the first magnet part 552 in the third group of magnetic parts 556 is equal to the number of the first magnet in the fourth group of magnetic parts 557.
  • two adjacent first magnet elements 552 have different magnetic poles.
  • the first magnet parts 552 in the first group of magnetic parts 866 can be 2, the first magnet parts 552 in the third group of magnetic parts 868 can be 2, and the number of the first magnet parts 552 in the first group of magnetic parts 866 The number is equal to the number of the first magnet parts 552 in the third group of magnetic parts 868 .
  • the number of the first magnet parts 552 in the first group of magnetic parts 866 is equal to the number of the first magnet parts 552 in the second group of magnetic parts 867
  • the number of the first magnet parts 552 in the third group of magnetic parts 868 is equal to the number of the fourth group of magnetic parts 868.
  • the number of the first magnets 552 in the set of magnetics 869 In one embodiment, in a set of magnetic elements such as the first set of magnetic elements 866 , two adjacent first magnet elements 552 have different magnetic poles.
  • first magnet pieces 552 in the first set of magnetic pieces 554 there may be three first magnet pieces 552 in the first set of magnetic pieces 554, two first magnet pieces 552 in the third set of magnetic pieces 556, and two first magnet pieces 552 in the first set of magnetic pieces 554.
  • the number of a magnet part 552 is equal to the number of the first magnet part 552 in the second group of magnetic parts 555, and the number of the first magnet part 552 in the third group of magnetic parts 556 is equal to the number of the first magnet in the fourth group of magnetic parts 557.
  • two adjacent first magnet elements 552 have different magnetic poles.
  • the first magnet parts 552 in the first group of magnetic parts 866 can be 3, the first magnet parts 552 in the third group of magnetic parts 868 can be 2, and the number of the first magnet parts 552 in the first group of magnetic parts 866 The number is equal to the number of the first magnet parts 552 in the third group of magnetic parts 868 .
  • the number of the first magnet parts 552 in the first group of magnetic parts 866 is equal to the number of the first magnet parts 552 in the second group of magnetic parts 867
  • the number of the first magnet parts 552 in the third group of magnetic parts 868 is equal to the number of the fourth group of magnetic parts 868.
  • the number of the first magnets 552 in the set of magnetics 869 In one embodiment, in a set of magnetic elements such as the first set of magnetic elements 866 , two adjacent first magnet elements 552 have different magnetic poles.
  • the first direction is perpendicular to the second direction. In an embodiment, the first direction and the second direction may not be perpendicular to each other.
  • FIG. 30 is a schematic structural diagram of the housing side cover 82 in the embodiment shown in FIG. 24 of the present application.
  • the casing side cover 82 can be made of hard material, and of course it can also be made of the same material as the third casing 84 .
  • the housing side cover 82 can be fastened on the side of the third housing 84 away from the first leg 51 .
  • the case side cover 82 may include a side cover main body 821 .
  • the side cover main body 821 is a curved shell structure.
  • the side cover main body 821 may be provided with a communication hole 8211 passing through the side cover main body 821 .
  • the communication hole 8211 can communicate with the storage space 840 to cooperate with the touch key assembly 83 .
  • a relief groove 8212 is provided on a side of the side cover main body 821 close to the third casing 84 to cooperate with the touch key assembly 83 .
  • the relief groove 8212 communicates with the communication hole 8211 .
  • the communication hole 8211 is located in the relief groove 8212 .
  • the side cover main body 821 is provided with a fourth connecting member 8213 on the edge to connect with the third connecting member 8412 on the third casing 84 .
  • the fourth connecting part 8213 can be one of a buckle structure, a plug-in structure, etc., so as to be connected with the third connecting part 8412 by a buckle or a plug-in connection.
  • the matching relationship between the fourth connecting member 8213 and the third connecting member 8412 is not limited to the above listed manners.
  • the fourth connecting member 8213 and the third connecting member 8412 may also be in one of the cooperation methods such as screw connection, welding connection, adhesive connection, etc., which will not be repeated here.
  • first connector For “first connector”, “second connector”, “third connector”, “fourth connector”, “first sub-connector”, “second sub-connector” and “connector” etc.
  • the names can be converted to each other.
  • the “first connector” in other embodiments is referred to as “second connector”
  • the “second connector” in other embodiments is referred to as “first connector”. ".
  • FIG. 31 is an exploded view of the touch key assembly 83 in the embodiment shown in FIG. 24 of the present application.
  • the touch key assembly 83 is used to control the second circuit system 90 so that the second circuit system 90 operates normally.
  • the touch key assembly 83 may include a supporting base 831 arranged opposite to the third housing 84, a drive device 832 installed between the supporting bases 831, a capacitive flexible circuit board 833 installed on the supporting base 831, and a capacitive flexible circuit board fixed on the capacitive flexible circuit board.
  • Touch key 834 on 833 Wherein, the capacitive flexible circuit board 833 and the touch key 834 are disposed on a side of the support seat 831 facing the side cover 82 of the casing.
  • the touch key 834 can protrude from the communication hole 8211 to the storage space 840 to be touched by the user to control the second circuit system 90 .
  • the support seat 831 is made of hard material.
  • the supporting base 831 is generally in the shape of a plate with a slight bend to fit closely with the side cover 82 of the housing.
  • the support seat 831 is provided with a bearing slot 8311 facing the side cover 82 of the housing, for installing the capacitive flexible circuit board 833 and the touch key 834 .
  • the carrying groove 8311 is extended to the edge of the supporting base 831 to form an opening 8312 , which is convenient for wiring arrangement of the capacitive flexible circuit board 833 .
  • a matching portion 8313 is provided on a side of the support base 831 close to the third housing 84 for connecting with the driving device 832 .
  • FIG. 32 is a schematic structural diagram of the driving device 832 in the embodiment shown in FIG. 31 of the present application.
  • the driving device 832 is arranged between the support base 831 and the third housing 84, and can be used to adjust the distance between the support base 831 and the third housing 84, thereby adjusting the distance between the support base 831 and the housing side cover 82, and further
  • the touch key 834 can be extended from the communication hole 8211 to the outside of the storage space 840 , or retracted from the outside of the storage space 840 into the storage space 840 .
  • the driving device 832 may include a base 8321 installed on the third housing 84 such as the third mounting portion 843 , a driving member 8322 installed on the base 8321 , and a telescopic lead screw 8323 installed on the base 8321 .
  • one end of the telescopic lead screw 8323 is connected to the support base 831 to adjust the distance between the support base 831 and the third housing 84 under the push of the telescopic lead screw 8323 .
  • the telescopic lead screw 8323 is rotatably connected with the driving member 8322, so that the distance between the telescopic lead screw 8323 between the supporting base 831 and the base 8321 can be adjusted under the driving of the driving member 8322.
  • the base 8321 may be omitted, and the driving device 832 may be directly disposed on the third housing 84 .
  • the base 8321 can be integrated with the third housing 84 .
  • the driving device 832 can be directly disposed on the side cover main body 821 .
  • One end of the telescopic lead screw 8323 is connected to the third housing 84 .
  • the base 8321 can be integrated with the side cover main body 821 .
  • the driving member 8322 can be a motor, a hydraulic cylinder and the like.
  • the driving device 832 can be omitted.
  • the support base 831 can be directly fixed on the side cover main body 821 or the third housing 84 .
  • the capacitive flexible circuit board 833 can be electrically connected with the second circuit system 90 .
  • the capacitive flexible circuit board 833 can be bonded (for example, by foam glue) in the supporting base 831 such as the bearing groove 8311 .
  • the touch key 834 may include a touch body 8341 that can be placed in the relief groove 8212 and a touch portion 8342 disposed on the side of the touch body 8341 away from the capacitive flexible circuit board 833 .
  • the touch portion 8342 can extend from the communication hole 8211 to the outside of the storage space 840 or retract from the outside of the storage space 840 into the storage space 840 under the support of the support base 831 .
  • the touch key 834 can be retracted into the storage space 840, so that the surface of the touch key 834 such as the touch part 8342 away from the touch main body 8341 is flush with the surface of the side cover main body 821, In this case, controlling the touch portion 8342 cannot allow the user to better confirm the position of the touch portion 8342 .
  • the touch key 834 can be extended out of the storage space 840, so that the touch key 834 protrudes from the surface of the side cover main body 821, such as the touch portion 8342. In this case, the touch portion 8342 The control can enable the user to better confirm the position of the touch part 8342 .
  • the driving device 832 can be used to control the surface of the touch part 8342 away from the touch body 8341 and the surface of the side cover body 821 to improve the appearance of the plug-in device 400 expressiveness.
  • the plug-in device 400 can be controlled by the driving device 832 so that the touch part 8342 protrudes from the communication hole 8211 of the side cover main body 821 to the surface of the side cover main body 821, so that the user can easily
  • the working position of the touch part 8342 can be accurately sensed, so that operations such as sliding and clicking can be easily performed to control the function usage of the plug-in device 400 or the wearable device 200 .
  • the touch key component 83 can take into account both the appearance experience in the non-working state and the use experience in the working state.
  • FIG. 33 is an exploded view of the second circuit system 90 in the embodiment shown in FIG. 23 of the present application.
  • the second circuit system 90 may include a motherboard module 91, an optical-mechanical assembly 92, a battery module 93, a loudspeaker 94, an antenna assembly 95, and a capacitive flexible circuit board 833 that are fixed in the storage space 840 and are electrically connected together.
  • An optical-mechanical component 92, a battery module 93, and a speaker 94 are used to dissipate heat.
  • the motherboard module 91 may be provided with a processor, sensors (such as temperature sensors, Hall sensors, etc.), so as to control the second circuit system 90 .
  • the Hall sensor can be used to sense the change of the magnetic field around the second mounting component 86 , so that the motherboard module 91 can control the normal operation of the second circuit system 30 according to the result sensed by the Hall sensor.
  • the installation and disassembly of the plug-in device 400 can be sensed by the change of the magnetic field, and the task management of the head-mounted device 100 can be further realized, and the switching of the sleep and working modes of the head-mounted device 100 system can be realized, and the power consumption can be optimized.
  • the Hall sensor can be installed on the second mounting component 86 , and of course it can also be installed in other positions such as the fitting groove 844 , which will not be repeated here.
  • the optical-mechanical assembly 92 can be used as a display assembly, and the optical-mechanical assembly 92 can be installed in the accommodating space 610 of the third connecting arm 612 .
  • the optical-mechanical assembly 92 can be electrically connected to the mainboard module 91 through a flexible circuit board, so that the mainboard module 91 can control the optical-mechanical assembly 92 .
  • the optical machine assembly 92 may at least include an optical machine, and the optical machine may be set corresponding to the third functional lens 62 of the second functional lens module 60, such as an optical coupling-in part, so that the light with image signals emitted by the optical machine is optically coupled in. The light part is coupled into the third functional lens 62 .
  • the optical machine assembly 92 can be pasted with an adapter board adhesive on the optical machine, the optical machine adapter board can be pasted on the adapter plate glue on the optical machine, and the support seat is fixed on the adapter plate, and the The optomechanical electrical connector is fixed on the support base to realize the electrical connection with the adapter board. Finally, the optomechanical adhesive can be pasted on the optomechanical for use in subsequent assembly.
  • the battery module 93 can provide electric energy for the normal operation of the second circuit system 90 .
  • the battery module 93 can be electrically connected to the mainboard module 91 through a flexible circuit board, so that the mainboard module 91 can control and monitor the battery module 93 .
  • the speaker 94 can be arranged on the third housing 84, such as the end of the housing body 841 away from the second functional lens module 60, and is arranged at a position corresponding to the first through hole 8414, that is, at a position corresponding to the protective cover 85, so that the speaker The sound emitted by 94 is transmitted to the outside of the accommodating space 610 through the protective cover 85 .
  • the antenna assembly 95 can be disposed on the third housing 84 such as the card retainer 8413 of the housing body 841 , and can be electrically connected to the motherboard module 91 through a flexible circuit board.
  • Antenna assembly 95 may include BT (Bluetooth, Bluetooth)/WiFi (Wireless-Fidelity, wireless fidelity) flexible circuit board antenna
  • the heat dissipation assembly 96 may include a first heat dissipation fin 961 disposed on the same side of the motherboard module 91 , the battery module 93 , and the speaker 94 , and a second heat dissipation fin 962 wrapped on the surface of the battery module 93 .
  • the first heat sink 961 is disposed on a side of the battery module 93 away from the third housing 84 to dissipate heat from the battery module 93 and the motherboard module 91 .
  • the second heat sink 962 is used for dissipating heat from the battery module 93 .
  • the first heat sink 961 is in contact with the second heat sink 962 .
  • the first heat sink 961 and the second heat sink 962 can be one of copper foil, copper, nano-carbon heat sink, aluminum foil heat sink, and the like.
  • the second circuit system 90 is not limited to the motherboard module 91, the optical-mechanical assembly 92, the battery module 93, the speaker 94, the antenna assembly 95, and the capacitive flexible circuit board 833, and may also include a microphone, various types of Sensors, etc., will not be described in detail.
  • the first circuit system 30 can be electrically connected with the second circuit system 90 to form an electronic circuit system.
  • the electronic circuit system can include a motherboard module, a battery module, an optical-mechanical component, and a speaker module, etc., and the motherboard module, battery module, optical-mechanical component, and speaker module can be distributed on the wearable device 200 according to a preset design.
  • the electronic circuit system is formed by electrically connecting the first external connector and the second external connector 863, so as to realize the functions of the first functional lens module 20 and/or the second functional lens module 60 through the optical mechanical assembly .
  • the battery module of the electronic circuit system can be set in the external device 400 to realize the function of the first functional lens module 20 through an optical-mechanical component.
  • the battery module of the electronic circuit system can be set in the wearable device 200 to realize the function of the second functional lens module 60 through an optomechanical component.
  • the motherboard module of the electronic circuit system can be set in the external device 400 to realize the function of the first functional lens module 20 through an optical-mechanical component.
  • the mainboard module of the electronic circuit system can be set in the wearable device 200 to realize the function of the second functional lens module 60 through an optical-mechanical component.
  • the touch key assembly 83 such as the capacitive flexible circuit board 833 can be used as a common part of the housing assembly 80 and the second circuit system 90, so in some embodiments, the touch key assembly 83 can be a part of the second circuit system 90, Not as part of the housing assembly 80 .
  • the electronic circuit system can both be arranged in the wearable device 200, and correspondingly, the touch key assembly 83 can also be arranged in a support in the wearable device 200. In the receiving space 530 of the leg (for example, one of the first leg 51 and the second leg 52 ).
  • the matching relationship between the touch key assembly 83 and the leg side cover 54 can be set according to the matching relationship between the touch key assembly 83 and the main housing 81 .
  • the matching relationship between the touch key assembly 83 and the leg main body 53 can be set according to the matching relationship between the touch key assembly 83 and the casing side cover 82 .
  • the touch key assembly 83 may include a supporting seat 831 opposite to the leg side cover 54, a driving device 832 installed between the supporting seats 831, a capacitive flexible circuit board 833 installed on the supporting seat 831, and a capacitive flexible circuit board 833 fixed on the capacitive flexible circuit board. Touch key 834 on circuit board 833 .
  • the capacitive flexible circuit board 833 and the touch key 834 are disposed on a side of the supporting seat 831 away from the side cover 54 of the leg.
  • the touch key 834 can protrude from the second installation hole 53 a to the storage space 840 to be touched by the user to control the second circuit system 90 .
  • the specific details of the touch key assembly 83 refer to the cooperation relationship between the above touch key assembly 83 and the main housing 81 and the housing side cover 82 , and details will not be repeated here.
  • FIG. 34 is a diagram of the control method in an embodiment of the present application. Flowchart, the method includes:
  • Step S3201 Detect the strength of the first magnetic field at the position of the second mounting component.
  • the external device 400 is provided with the second mounting assembly 86, and the second mounting assembly 86 can be connected with the first mounting assembly 55 through the magnetic force between the first magnet 552 and the second magnet 861. connected, then when the first magnet piece 552 and the second magnet piece 861 are close to each other, the first magnetic field strength around the second magnet piece 861 can be changed by the interference of the first magnet piece 552, thereby making the first magnetic field strength The change of can represent the distance between the first magnet part 552 and the second magnet part 861 sideways. Therefore, the first magnetic field strength can be used as a measure of whether the external device 400 is mounted on the wearable device 200 . In an embodiment, the measurement may be performed by a Hall sensor disposed in the second mounting component 86 . Understandably, in the scenario where the second mounting component 86 is provided with the second magnet 861, the strength of the second magnetic field around the first magnet 552 can also be used as a measure of whether the external device 400 is mounted on the wearable device 200 .
  • Step S3202 If it is detected that the first magnetic field strength is greater than the first preset threshold, give the touch key component the authority to control the first circuit system.
  • the first preset threshold is determined according to the magnetic field strength of the first magnet part 552, the magnetic field strength of the second magnet part 861 and the distance between the first magnet 552 and the second magnet 861, and the first magnet part 552
  • the magnetic field strength when the external device 400 is mounted on the wearable device 200 with the second magnet 861 is taken as the maximum magnetic field strength, and the first preset threshold may be slightly smaller than the maximum magnetic field strength.
  • the first preset threshold may also be adjusted.
  • the first magnet part 552 and the second magnet part 861 can be made to approach each other due to the force of the magnetic field, so that the first magnetic field strength is reduced by the first preset threshold Increase to the maximum magnetic field strength, and mount the external device 400 on the wearable device 200 .
  • the second magnetic field strength is used as the criterion for whether the external device 400 is mounted on the wearable device 200, the second preset threshold value will be involved, and the magnetic field strength of the first magnet part 552 and the second magnet part 861
  • the difference in magnetic field strength can determine whether the first preset threshold is the same as the second preset threshold.
  • the first preset threshold is the same as the second preset threshold.
  • the external device 400 When the external device 400 is mounted on the wearable device 200, the external device 400 can be controlled through the touch key assembly 83. Understandably, when the external device 400 is not mounted on the wearable device 200, in order to protect the external device 400, additionally Also in order to experience the external device 400 better, the function of the touch key component 83 to control the external device 400 can be canceled.
  • Step S3203 Prompt the information that the external device is successfully mounted on the frame structure.
  • the first magnet part 552 and the second magnet part 861 can be brought close to each other due to the force of the magnetic field, so that the first magnetic field strength increases from the first preset threshold to the maximum
  • the strength of the magnetic field is to mount the external device 400 on the wearable device 200 . Therefore, when the external device 400 is mounted on the wearable device 200, the information that the external device 400 is successfully mounted on the frame structure 10 can be prompted through the first circuit system 30 such as a speaker, or through the cooperation of the third functional lens 62 and the optical machine Displaying the information that the external device 400 is successfully mounted on the frame structure 10 may also be prompted by an indicator light that the external device 400 is successfully mounted on the frame structure 10 .
  • FIG. 35 is a flowchart of a control method in another embodiment of the present application. After step S3203, the method also includes:
  • Step S3304 If a touch operation on the touch key assembly is detected, control the external device through the first circuit system.
  • the first circuit system 30 will give the touch key component 83 the control ability to control the external device 400, and then the touch operation of the touch key component such as double-click, single click, long press, Short press, etc., can realize functions such as starting, shutting down, selecting, canceling, deleting, playing, forward, backward, and page turning of the external device 400 , and then completes the control of the external device 400 .
  • Step S3305 If it is detected that the first magnetic field strength is less than the first preset threshold, cancel the authority of the touch key assembly to control the first circuit system, and control the external device to enter a low power consumption standby state.
  • the first magnetic field strength is less than the first preset threshold, it means that the external device 400 is not mounted on the wearable device 200, so at this time, the external device 400 is not used, so the external device 400 can be made to enter a low-power standby state, That is, the dormant state can ensure the standby time of the external device 400 and improve user experience.
  • Step S3306 If it is detected that the first magnetic field strength is lower than the first preset threshold, control the external device 400 to shut down.
  • controlling the shutdown of the external device 400 can ensure the standby time of the external device 400 and improve user experience.
  • Step S3307 If it is detected that the first magnetic field strength is less than the first preset threshold, prompt the information that the external device 400 is not successfully mounted to the frame structure.
  • steps S3304 and S3305. When the plug-in device 400 is not mounted on the wearable device 200, the user can be reminded in time to improve user experience and avoid misoperation and other problems.
  • steps S3304, S3305, S3306, and S3307 may be performed in no particular order.
  • FIG. 36 is a flowchart of a control method in another embodiment of the present application.
  • the method may include:
  • Step S3401 Detect the strength of the first magnetic field at the position of the second mounting component.
  • step S3201 Please refer to step S3201, and details will not be repeated.
  • Step S3201 Detect the second magnetic field strength at the position of the second mounting component.
  • step S3201 Please refer to step S3201, and details will not be repeated.
  • Step S3201 If it is detected that the first magnetic field strength is greater than the first preset threshold and the second magnetic field strength is detected to be greater than the second preset threshold, give the touch key component the authority to control the first circuit system, and the first mount component is provided with The second magnet piece that generates a magnetic field is used to change the strength of the second magnetic field when the first mounting component is close to the second mounting component.
  • Step S3203 Prompt the information that the external device is successfully mounted on the frame structure.
  • step S3203 Please refer to step S3203, and details will not be repeated.
  • FIG. 37 is a schematic diagram of the frame of an electronic device 600 in an embodiment of the present application.
  • the electronic device 600 may include a processor 601 and a memory 602 .
  • the memory 602 stores a computer program, and when the computer program is executed by the processor 601, it is used to implement the transportation method in any of the above-mentioned embodiments.
  • the processor 601 controls the operation of the electronic device 600, and the processor 601 may also be called a CPU (Central Processing Unit, central processing unit).
  • the processor 601 may be an integrated circuit chip and has signal processing capability.
  • the processor 601 can also be a general-purpose processor, a digital signal processor (DSP), an application-specific integrated circuit (ASIC), an off-the-shelf programmable gate array (FPGA) or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components .
  • a general-purpose processor may be a microprocessor, or the processor may be any conventional processor, or the like.
  • the memory 602 is used for storing program data executed by the processor 601 and data during processing by the processor 601, wherein the memory 602 may include a non-volatile storage part for storing the above program data.
  • the memory 602 can only be used as the memory of the processor 601 to cache the data in the processing process of the processor 601, and the program data is actually stored in a device other than the processor 601, and the processor 601 communicates with External devices are connected to perform corresponding processing by calling the program data stored externally.
  • FIG. 38 is a schematic diagram of a computer-readable storage medium 800 according to an embodiment of the present application.
  • the computer-readable storage medium 800 stores a computer program 801, and when the computer program 801 is executed by a processor, the above-mentioned control method is realized.
  • the computer-readable storage medium 800 can specifically be a U disk, a mobile hard disk, a read-only memory (ROM, Read-Only Memory), a random access memory (RAM, Random Access Memory), a magnetic disk or an optical disk, etc., which can store program instructions. media, or a server that stores the program instructions, and the server can send the stored program instructions to other devices for execution, or can also run the stored program instructions by itself.
  • a unit described as a separate component may or may not be physically separated, and a component displayed as a unit may or may not be a physical unit, that is, it may be located in one place, or may be distributed to multiple network units. Part or all of the units can be selected according to actual needs to achieve the purpose of the solution of this embodiment.
  • each functional unit in each embodiment of the present application may be integrated into one processing unit, each unit may exist separately physically, or two or more units may be integrated into one unit.
  • the above-mentioned integrated units can be implemented in the form of hardware or in the form of software functional units.
  • a unit described as a separate component may or may not be physically separated, and a component displayed as a unit may or may not be a physical unit, that is, it may be located in one place, or may be distributed to multiple network units. Part or all of the units can be selected according to actual needs to achieve the purpose of the solution of this embodiment.
  • each functional unit in each embodiment of the present application may be integrated into one processing unit, each unit may exist separately physically, or two or more units may be integrated into one unit.
  • the above-mentioned integrated units can be implemented in the form of hardware or in the form of software functional units.

Abstract

一种头戴式设备(100),属于智能设备技术领域。头戴式设备(100)中,外挂设备(400)包括壳体组件(80)和控制系统(90),壳体组件(80)通过壳体组件(80)将外挂设备(400)可拆卸地安装在佩戴设备(200)上;控制系统(90)安装在壳体组件(80)上,包括触摸键组件(83)和光机(92),触摸键组件(83)包括一触摸部(8342),控制系统(90)响应于触摸部(8342)的操作而控制头戴式设备(100);第一功能镜片模组(60)安装在壳体组件(80)上,用于接收和投射光机(92)的光信号。在使用外挂设备(400)时,将外挂设备(400)安装在佩戴设备(200)上,可在不使用外挂设备(400)时,将外挂设备(400)单独取下收纳,而不影响佩戴设备(200)的独立使用,减轻佩戴设备(200)对用户头部的压迫感,提升佩戴设备(200)的佩戴舒适感,同时方便携带外挂设备(400)。

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,包括佩戴设备、外挂设备及第一功能镜片模组,所述外挂设备包括壳体组件及控制系统,所述壳体组件通过所述壳体组件将所述外挂设备可拆卸地安装在所述佩戴设备上;所述控制系统,安装在所述壳体组件上,包括触摸键组件和光机,所述触摸键组件包括一触摸部,所述控制系统响应于所述触摸部的操作而控制所述头戴式设备;所述第一功能镜片模组安装在所述壳体组件上,用于接收和投射所述光机的光信号。
【附图说明】
图1为本申请一实施例中头戴式设备的装配图;
图2为本申请图1所示实施例中佩戴设备的结构示意图;
图3为本申请图1所示实施例中佩戴设备的爆炸图;
图4为本申请图3所示实施例中佩戴主体的结构示意图;
图5为本申请图4所示实施例中第一壳体一视角的结构示意图;
图6为本申请图4所示实施例中第一壳体另一视角的结构示意图;
图7为本申请图4所示实施例中第一壳体又一视角的结构示意图;
图8为本申请图4所示实施例中遮蔽件的结构示意图;
图9为本申请图4所示实施例中鼻托的结构示意图;
图10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11为本申请图10所示实施例中第一支腿另一视角的结构示意图;
图12为本申请图11所示实施例中第一挂载组件的爆炸图;
图13为本申请图10所示实施例中支腿主体另一实施例中的结构示意图;
图14为本申请图10所示实施例中支腿主体另一视角中的爆炸图;
图15为本申请一实施例中转轴与连接臂主体一视角的爆炸图;
图16为本申请图15所示实施例中转轴与连接臂主体另一视角的爆炸图;
图17为本申请图3所示实施例中第一功能镜片的结构示意图;
图18为本申请图3所示实施例中第一电路系统一视角的结构示意图;
图19为本申请图18所示实施例中第一电路系统另一视角的结构示意图;
图20为本申请第一柔性电路板的结构示意图;
图21为本申请图20所示实施例中第一柔性电路板、支腿主体及第一连接臂的安装结构示意图;
图22为本申请图1所示实施例中外挂设备的结构示意图;
图23为本申请图22所示实施例中外挂设备的剖视图;
图24为本申请图23所示实施例中壳体组件的结构示意图;
图25为本申请图24所示实施例中第三壳体的结构示意图;
图26为本申请图23所示实施例中壳体主体与第三连接臂连接时的另一实施例结构示意图;
图27为本申请一实施例中第一挂载组件与第二挂载组件配合的结构示意图;
图28为本申请一实施例中第一挂载组件与第二挂载组件另一实施例中的结构示意图;
图29为本申请另一实施例中第一挂载组件与第二挂载组件配合的示意简图;
图30为本申请图24所示实施例中壳体侧盖的结构示意图;
图31为本申请图24所示实施例中触摸键组件的爆炸图;
图32为本申请图31所示实施例中驱动装置的结构示意图;
图33为本申请图23所示实施例中第二电路系统的爆炸图;
图34为本申请一实施例中控制方法的流程图;
图35为本申请另一实施例中控制方法的流程图;
图36为本申请另一实施例中控制方法的流程图;
图37为本申请一实施例中电子设备的框架示意图;
图38为本申请中一实施例的一种计算机可读存储介质的框架示意图。
【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,包括:佩戴设备;以及外挂设备,所述外挂设备包括:壳体组件,通过所述壳体组件将所述外挂设备可拆卸地安装在所述佩戴设备上;控制系统,安装在所述壳体组件上,包括触摸键组件和光机,所述触摸键组件包括一触摸部,所述控制系统响应于所述触摸部的操作而控制所述头戴式设备;以及第一功能镜片模组,安装在所述壳体组件上,用于接收和投射所述光机的光信号。
在一些实施例中,所述壳体组件包括:主壳体;和壳体侧盖,在所述主壳体的一侧与所述主壳体连接固定,以形成置物空间。
在一些实施例中,所述主壳体包括:第一壳体,与所述壳体侧盖扣合连接,以形成所述置物空间,所述第一壳体设置第一通孔及第二通孔,所述第一通孔和所述第二通孔均与所述置物空间连通,所述第一功能镜片模组安装在所述第二通孔处;以及防护盖,安装在所述第一通孔处,以对所述第一通孔进行遮盖。
在一些实施例中,所述第一通孔及所述第二通孔位于所述第一壳体在一方向上的两端,所述第一功能镜片模组所在平面与所述一方向之间成夹角设置。
在一些实施例中,所述第一壳体在与所述壳体侧盖扣合连接的边缘设置连接壁,所述控制系统具有一天线组件,所述天线组件安装在所述连接壁上。
在一些实施例中,所述连接壁上设置有第一连接件,所述第一连接件与所述壳体侧盖卡扣连接。
在一些实施例中,所述壳体侧盖靠近所述主壳体的一侧设置第二连接件,所述第二连接件与所述第一连接件卡扣连接,以使所述第一壳体与所述壳体侧盖扣合连接。
在一些实施例中,所述壳体侧盖设置有连通所述置物空间的连通孔,所述触摸部位于所述连通孔内。
在一些实施例中,所述触摸键组件包括:支撑座,安装在所述置物空间内;电容柔性电路板,置于所述置物空间内,设置在所述支撑座靠近所述连通孔的一侧;以及触摸键,设置在所述电容柔性电路板靠近所述连通孔的一侧,所述触摸部设置在所述触摸键上,所述电容柔性电路板响应于对所述触摸键组件的触摸操作而控制所述头戴式设备。
在一些实施例中,所述触摸键组件还包括:驱动装置,置于所述置物空间内,连接所述支撑座与所述第一壳体,用于驱动所述支撑座向靠近所述连通孔的一侧运动或向远离所述连通孔的一侧运动,所述触摸部响应于所述支撑座向靠近所述连通孔的一侧运动而自所述连通孔向所述置物空间外伸出,或响应于所述支撑座向远离所述连通孔的一侧运动而自所述连通孔向所述置物空间内缩回。
在一些实施例中,所述触摸键包括触摸主体,所述触摸主体设置在所述电容柔性电路板上,所述触摸部设置在所述触摸主体远离所述电容柔性电路板的一侧,所述壳体侧盖朝向所述主壳体的一侧设置有让位槽,所述连通孔位于所述让位槽内,所述让位槽用于容纳所述触摸主体。
在一些实施例中,所述主壳体设置有第一挂载组件,所述佩戴设备设置有第二挂载组件,所述第二挂载组件用于与所述第一挂载组件可拆卸连接,以将所述外挂设备挂载于所述佩戴设备上。
在一些实施例中,所述主壳体远离所述壳体侧盖的一侧设置有装配槽,以容纳所述第二挂载组件。
在一些实施例中,所述装配槽的底面设置固定槽,所述第一挂载组件包括:第一磁铁件,设置在所述固定槽内,用于与所述第二挂载组件磁作用力连接;以及第一装饰片,设置在所述装配槽的底面,用于遮盖所述固定槽。
在一些实施例中,所述第一磁铁件的数量为多个,多个所述第一磁铁件中心对称设置,相对于中心点相互对称的两个所述第一磁铁,其磁极相反。
在一些实施例中,所述第一磁铁件包括:磁铁,用于产生磁作用力,以与所述第二挂载组件磁作用力连接;和隔离罩,设置在所述磁铁的表面,用于隔绝所述磁铁的磁作用力,所述隔离罩在所述第一磁铁件朝向所述第一装饰片一侧的位置设置开口。
在一些实施例中,所述控制系统设置有第一外接接头,所述装配槽内设置有让位孔以连通所述装配槽与所述置物空间,所述第一外接接头安装在所述让位孔内,所述第一装饰片设置有与所述让位孔连通的孔。
在一些实施例中,所述控制系统还包括:主板模组,安装在所述置物空间内;电池模组,安装在所述置物空间内,用于为所述控制系统供电;以及扬声器,与主板模组电连接,安装在所述第一通孔处。
在一些实施例中,控制系统还包括散热组件,所述散热组件用于对所述电池模组和所述主板模组进行散热。
在一些实施例中,所述第一功能镜片模组包括:第一镜片,为光波导镜片;以及镜框,安装在所述壳体组件上,用于安装所述第一镜片及所述光机。
在一些实施例中,所述镜框与所述壳体组件绕转动轴转动连接,所述镜框远离所述转动轴的一端配置为在所述镜框相对于所述壳体组件转动时,向靠近所述壳体组件的一侧运动,以折叠所述镜框,或向远离所述壳体组件的一侧运动,以展开所述镜框。
在一些实施例中,所述镜框包括:镜框主体,围设在所述第一镜片的周围,以固定连接所述第一镜片;以及第一连接臂,安装在所述镜框主体的一端,安装在所述壳体组件上,所述光机安装在所述第一连接臂上。
在一些实施例中,所述佩戴设备包括:框架结构,所述外挂设备可拆卸安装在所述框架结构上;以及第二功能镜片模组,安装在所述框架结构上,当所述外挂设备安装在所述框架结构上时,所述第二功能镜片模组与所述第一功能镜片模组层叠设置。
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用户头部的设备,例如眼镜,例如具有照明等其他功能且可佩戴在用户头部的设备,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传感器例如环境光传感器、霍尔传感器等,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,图1为本申请一实施例中头戴式设备的装配图。该头戴式设备100可包括佩戴设备200以及安装在佩戴设备200上的外挂设备400。其中,佩戴设备200可佩戴在用户头部。佩戴设备200与外挂设备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。在一实施例中,可省略佩戴设备200和外挂设备400中的一个,而佩戴设备200和外挂设备400中的另一个可单独使用。
在本申请的描述中,需要说明的是,除非另有明确的规定和限定,术语“安装”、“相连”、“连接”、“连通”应做广义理解,例如,可以是固定连接,也可以是可拆卸连接,或一体的连接;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通。对于本领域的普通技术人员而言,可以具体情况理解上述术语在本文中的具体含义。
请一同参阅图1、图2和图3,图2为本申请图1所示实施例中佩戴设备200的结构示意图。图3为本申请图1所示实施例中佩戴设备200的爆炸图。佩戴设备200可包括用于佩戴在用户头部的框架结构10、安装在框架结构10上的第一功能镜片模组20以及安装在框架结构10上的第一电路系统30。其中,第一功能镜片模组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。第一电路系统30可与第一功能镜片模组20配合实现第一功能镜片模组20的某种光学功能。在一些实施例中,第一电路系统30是用于与外挂设备400配合,实现外挂设备400和/或第一功能镜片模组20的功能。
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。
框架结构10可包括佩戴主体40以及与佩戴主体40相对两端连接的支撑部50。其中,佩戴主体40可佩戴在用户的鼻梁上。支撑部50可架设在用户的耳朵与头部之间。佩戴主体40和支撑部50配合佩戴在用户头部上。在一些实施例中,框架结构10也可以采用其他形式佩戴,例如佩戴主体40也可以与支撑部50连接形成一环状结构或半环状结构,以佩戴在用户头部。可以理解地,框架结构10可不仅限于佩戴主体40和支撑部50,其还可以包括其他结构,不做赘述。
请参阅图3和图4,图4为本申请图3所示实施例中佩戴主体40的结构示意图。佩戴主体40可包括一侧与支撑部50连接的第一壳体41、罩设在第一壳体41远离支撑部50一侧的遮蔽件42、安装在第一壳体41上的第一连接件43、罩设在第一壳体41远离支撑部50一侧的装配框44以及安装在装配框44上的鼻托45。其中,第一壳体41可与装配框44配合安装固定第一功能镜片模组20。第一壳体41可与装配框44通过第一连接件43连接固定。第一壳体41可用于与第一电路系统30配合。遮蔽件42可用于遮挡设置在第一壳体41上的第一电路系统30,以提升佩戴主体40的外观表现力。鼻托45可用于在佩戴主体40佩戴在用户鼻梁上时支撑佩戴主体40。
请参阅图4、图5、图6和图7,图5为本申请图4所示实施例中第一壳体41一视角的结构示意图,图6为本申请图4所示实施例中第一壳体41另一视角的结构示意图,图7为本申请图4所示实施例中第一壳体41又一视角的结构示意图。该第一壳体41的材质可为硬性材料。第一壳体41可包括用于与第一电路系统30配合的通道壳411、在通道壳411一侧设置且与装配框44扣合连接的安装框412以及与通道壳411连接且分别设置在通道壳411两侧及安装框412两侧的连接臂413。其中,通道壳411与安装框412可均位于装配框44的同一侧。安装框412与装配框44配合以夹持固定第一功能镜片模组20。连接臂413用于与支撑部50连接,以实现第一壳体41与支撑部50的连接。
通道壳411大体可呈条形板状结构。通道壳411远离支撑部50的一侧可依次罩设遮蔽件42以及装配框44。通道壳411可包括呈条形状的本体4111以及自本体4111延伸方向上的两个长边边缘向遮蔽件42一侧弯折设置的第一凸沿4112和第二凸沿4113。其中,本体4111、第一凸沿4112以及第二凸沿4113围设形成走线通道41a,以布置第一电路系统30。遮蔽件42用于对布置在走线通道41a中第一电路系统30进行遮挡。第一凸沿4112位于本体4111远离安装框412的一侧,第二凸沿4113位于本体4111靠近安装框412的一侧。第一凸沿4112以及第二凸沿4113在自本体4111的长边边缘延伸方向延伸并延伸至第一凸沿4112与第二凸沿4113相连接的位置。可以理解地,第一凸沿4112与第二凸沿4113也可通过在本体4111短边边缘的凸沿连接在一起。在其他实施例中,第一凸沿4112与第二凸沿4113也可以作为本体4111边缘向一侧延伸设置的凸沿的一部分或全部。
可以理解地,对于“第一凸沿”、“第二凸沿”以及“凸沿”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“第一凸沿”称为“第二凸沿”,相应地,将其他实施例中的“第二凸沿”称为“第一凸沿”。
本体4111的中部可向遮蔽件42一侧凹陷设置以形成让位部例如第一让位部41b,以对用户鼻梁让位。在一实施例中,第一让位部41b可以省略。
本体4111在延伸方向上的两端端部可开设连通孔41c,以与第一电路系统30配合。在一实施例中,本体4111也可仅在本体4111在延伸方向上的一端端部开设连通孔41c。
第一凸沿4112可自本体4111的边缘向装配框44一侧延伸设置。在一实施例中,第一凸沿4112在第一让位部41b的两侧设置第一安装部4114,以用于安装第一连接件43。在一实施例中,第一安装部4114可为凹槽。凹槽可自第一凸沿4112靠近第二凸沿4113一侧的表面向内凹陷设置。
在一些实施例中,第一安装部4114可仅设置在第一让位部41b的一侧。在一些实施例中,第一凸沿4112与第一让位部 41b对应的位置可与本体4111的表面平齐。在一些实施例中,第一凸沿4112在第一让位部41b的一侧且在未设置第一安装部4114的部位可与本体4111的表面平齐。
第二凸沿4113自本体4111的边缘向装配框44一侧延伸设置。
第二凸沿4113可包括与第一让位部41b相对的第一子凸沿4113a以及位于第一子凸沿4113a两侧的第二子凸沿4113b。其中,第一子凸沿4113a与第二子凸沿4113b相连接。
可以理解地,对于“第一子凸沿”、“第二子凸沿”以及“子凸沿”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“第一子凸沿”称为“第二子凸沿”,相应地,将其他实施例中的“第二子凸沿”称为“第一子凸沿”。
在一实施例中,第一子凸沿4113a自本体4111的边缘向装配框44一侧延伸的延伸长度与第一凸沿4112自本体4111的边缘向装配框44一侧延伸的延伸长度相同,以提高外观表现力。在一些实施例中,在第一凸沿4112与第一让位部41b对应的位置可与本体4111的表面平齐时,第一子凸沿4113a与本体4111的表面平齐。
在一实施例中,第二子凸沿4113b自本体4111的边缘向装配框44一侧延伸的延伸长度较第一凸沿4112自本体4111的边缘向装配框44一侧延伸的延伸长度短,以对装配框44让位。可以理解地,第二子凸沿4113b自本体4111的边缘向装配框44一侧延伸的延伸长度也可以与第一凸沿4112自本体4111的边缘向装配框44一侧延伸的延伸长度相同。在一些实施例中,第一凸沿4112在第一让位部41b的一侧且在未设置第一安装部4114的部位与本体4111的表面平齐时,与第一凸沿4112在第一让位部41b的一侧且在未设置第一安装部4114的部位相对的第二子凸沿4113b可与本体4111的表面平齐。
第二子凸沿4113b设置有第二安装部4115,以与第一功能镜片模组20配合。在一实施例中,第二安装部4115可为凹槽。凹槽可自第二子凸沿4113b靠近第一凸沿4112一侧的表面向内凹陷设置。
请参阅图5、图6和图7,安装框412的数量可包括两个,分别为第一安装框412a和第二安装框412b。第一安装框412a和第二安装框412b分别对称且间隔设置。第一安装框412a和第二安装框412b之间的间隙可对人体例如鼻梁进行让位,便于在第一安装框412a和第二安装框412b之间安装鼻托45。在一实施例中,第一安装框412a和第二安装框412b可省略其中一个。
安装框412例如第一安装框412a和第二安装框412b可包括自第二子凸沿4113b向远离第一凸沿4112一侧延伸设置的安装框主体4121。可以理解地,第二子凸沿4113b可以省略,安装框主体4121可自本体4111与第二子凸沿4113b相对的位置向远离第一凸沿4112一侧延伸设置。
安装框主体4121中部开设透光孔4122,以使安装框主体4121呈环状结构,透光孔4122用于与第一功能镜片模组20配合。在一实施例中,透光孔4122可向安装框主体4121的边缘延伸设置,以使得安装框主体4121呈半环状结构。
安装框主体4121的边缘设置第三凸沿4123,以与第一连接件43和/或第一功能镜片模组20配合。第三凸沿4123自安装框主体4121的边缘向装配框44的一侧弯折设置。
第三凸沿4123在安装框主体4121与第二子凸沿4113b相连接的边缘断开形成的两端中的一端可与第一凸沿4112的一端相连接,另一端可与第一子凸沿4113a的一端相连接。在一实施例中,第三凸沿4123远离安装框主体4121一侧的表面可与第三凸沿4123远离本体4111一侧的表面平齐。在一实施例中,第三凸沿4123远离安装框主体4121一侧的表面可与第一子凸沿4113a远离本体4111一侧的表面平齐。在一实施例中,第三凸沿4123的一端可同时与第一子凸沿4113a的一端、第二子凸沿4113b与第一子凸沿4113a相连接的一端连接。
第三凸沿4123上设置有第一安装部4124,第一安装部4124与第一凸沿4112上的第一安装部4114配合一同安装第一连接件43。在一实施例中,第一安装部4124可为凹槽。凹槽可自第三凸沿4123靠近透光孔4122一侧的表面向内凹陷设置。在一实施例中,第一安装框412a和第二安装框412b中的一个可不设置第一安装部4124。
请参阅图7,第一安装框412a在靠近第二安装框412b的一侧及第二安装框412b在靠近第一安装框412a的一侧均设置有连接部412c,以用于安装鼻托45。在一实施例中,连接部412c可为凹槽。凹槽可自第三凸沿4123远离透光孔4122一侧的表面向内凹陷设置。在一实施例中,第一安装框412a及第二安装框412b中的一个可不设置连接部412c。
连接臂413的数量可包括两个,分别为第一连接臂413a和第二连接臂413b。第一连接臂413a和第二连接臂413b可分别位于通道壳411例如本体4111在延伸方向上的两端端部。第一连接臂413a和第二连接臂413b可位于通道壳411例如本体4111靠近支撑部50的同一侧。在一些实施例中,第一连接臂413a和第二连接臂413b的安装位置还可以是安装在安装框主体4121上。当然,第一连接臂413a和第二连接臂413b的安装位置还可以是其他,只要第一连接臂413a和第二连接臂413b对称设置并可用于与支撑部50连接即可。在一些实施例中,第一连接臂413a和第二连接臂413b可以省略。通道壳411或安装框412直接与支撑部50连接。
连接臂413例如第一连接臂413a和第二连接臂413b可包括与通道壳411例如本体4111靠近支撑部50一侧连接且内部设置有卡固空间41d(图6所示)的连接臂主体4131以及设置在连接臂主体4131远离通道壳411例如本体4111一端的第一及第二安装板4132、4133。其中,第一及第二安装板4132、4133用于与支撑部50连接。
连接臂主体4131的卡固空间41d可用于卡固第一电路系统30的部分结构。卡固空间41d可与连通孔41c连通,以便于第一电路系统30的布置。
第一及第二安装板4132、4133对称设置且间隔设置,以用于在第一及第二安装板4132、4133之间容纳支撑部50的端部并与支撑部50连接。第一及第二安装板4132、4133可在安装框412自第二子凸沿4113b向一侧延伸的延伸方向上依次布置。在一实施例中,第一及第二安装板4132、4133也可设置枢接部例如枢接孔或枢接轴以与支撑部50转动连接。
在一实施例中,连接臂主体4131设置有抵接板4134,以与支撑部50配合。抵接板4134可设置在第一连接臂413a和第二连接臂413b相互远离的两侧。在一实施例中,抵接板4134与第一及第二安装板4132、4133连接固定。在一实施例中,抵接板4134远离连接臂主体4131一侧的边缘可与第一及第二安装板4132、4133的边缘平齐。
请参阅图4,遮蔽件42可采用硬性材料制成,当然也可以采用与第一壳体41相同的材料。遮蔽件42可扣设在通道壳411上,以用于遮挡第一电路系统30。遮蔽件42可包括扣设在通道壳411上的遮蔽件主体421以及位于遮蔽件主体421两端的第一固定盖422及第二固定盖423。其中,遮蔽件主体421可与通道壳411的本体4111相对设置。在一实施例中,第 一固定盖422及第二固定盖423可至少省略其中一个。
遮蔽件主体421分别与第一凸沿4112及第二凸沿4113连接固定例如卡扣连接、粘接、插接。当然,也可以在第一固定盖422及第二固定盖423与第一壳体41连接固定时,遮蔽件主体421仅与第一凸沿4112及第二凸沿4113抵接。
在一实施例中,遮蔽件主体421与第一凸沿4112靠近第二凸沿4113一侧的表面抵接。遮蔽件主体421与第二凸沿4113靠近第一凸沿4112一侧的表面抵接。
在一些实施例中,在第二凸沿4113自本体4111边缘延伸的长度与第一凸沿4112自本体4111边缘延伸的长度一样时,遮蔽件主体421与第二凸沿4113靠近第一凸沿4112一侧的表面抵接。在一些实施例中,遮蔽件主体421远离本体4111一侧的表面可与第一凸沿4112及第二凸沿4113的表面平齐。在一实施例中,遮蔽件主体421可直接与第一凸沿4112远离本体4111一侧的表面平齐,可与第二凸沿4113远离本体4111一侧的表面平齐。
在一实施例中,遮蔽件42可包括与第一让位部41b相对的第一遮蔽部4211以及位于第一遮蔽部4211两侧且与第一遮蔽部4211连接固定的第二遮蔽部4212。其中,靠近第一固定盖422一侧的第二遮蔽部4212的一端与第一固定盖422连接固定。靠近第二固定盖423一侧的第二遮蔽部4212的一端与第二固定盖423连接固定。在一实施例中,位于第一遮蔽部4211一侧的第二遮蔽部4212可以省略。在一实施例中,第一遮蔽部4211可以省略。
可以理解地,对于“第一遮蔽部”、“第二遮蔽部”以及“遮蔽部”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“第一遮蔽部”称为“第二遮蔽部”,相应地,将其他实施例中的“第二遮蔽部”称为“第一遮蔽部”。
第一遮蔽部4211与本体4111相对设置。第一遮蔽部4211可与第一子凸沿4113a及第一凸沿4112中与第一子凸沿4113a相对的部位连接固定。在一实施例中,第一遮蔽部4211可与第一子凸沿4113a远离本体4111一侧的表面连接固定例如插接固定、卡扣固定、粘接固定、焊接固定等。第一遮蔽部4211可与第一凸沿4112远离本体4111一侧的表面连接固定例如插接固定、卡扣固定、粘接固定、焊接固定等。当然,在一些实施例中,第一遮蔽部4211可与第一子凸沿4113a靠近第一凸沿4112一侧的表面连接固定。第一遮蔽部4211远离本体4111一侧的表面与第一子凸沿4113a平齐。在一些实施例中,第一遮蔽部4211可与第一凸沿4112靠近第一子凸沿4113a一侧的表面连接固定。第一遮蔽部4211远离本体4111一侧的表面与第一凸沿4112平齐。在一实施例中,第一遮蔽部4211可与通道壳411为一体结构,即作为通道壳411的一部分,而与第二遮蔽部4212为两个独立的个体。
第二遮蔽部4212与本体4111相对设置。第二遮蔽部4212可与第二子凸沿4113b及第一凸沿4112中与第二子凸沿4113b相对的部位连接固定。在一实施例中,第二遮蔽部4212可与第二子凸沿4113b远离本体4111一侧的表面连接固定例如插接固定、卡扣固定、粘接固定、焊接固定等。第二遮蔽部4212可与第一凸沿4112靠近第二子凸沿4113b一侧的表面连接固定例如插接固定、卡扣固定、粘接固定、焊接固定等。当然,在一些实施例中,第二遮蔽部4212可与第二子凸沿4113b靠近第一凸沿4112一侧的表面连接固定。在一实施例中,位于第一遮蔽部4211两侧的两个第二遮蔽部4212中的一个可与通道壳411为一整体,即作为通道壳411的一部分,而与第一遮蔽部4211为两个独立的个体。
固定盖例如第一固定盖422及第二固定盖423用于盖设本体4111两端端部设置的连通孔41c。固定盖例如第一固定盖422可包括与本体4111相对设置的固定盖主体4221。固定盖主体4221可与第一凸沿4112及第二凸沿4113靠近连通孔41c一侧的表面抵接,当然也可以是粘接固定、卡口固定、插接固定等。在一些实施例中,固定盖主体4221可与本体4111抵接,当然也可以是粘接固定、插接固定、卡扣固定等。当然,固定盖主体4221也可与本体4111间隔设置。
固定盖主体4221中部开设通光孔4222,以与本体4111上的连通孔41c相对设置,使得通光孔4222与连通孔41c均与第一电路系统30配合。在一实施例中,通光孔4222与连通孔41c均为圆形孔且同轴设置。
固定盖主体4221还开设有第一安装孔4223,以与本体4111上的连通孔41c相对设置,使得第一安装孔4223与连通孔41c均与第一电路系统30配合
固定盖主体4221还设置有可伸入本体4111的连通孔41c内与本体4111卡固连接的卡固板4224。在一实施例中,卡固板4224可伸入卡固空间41d与连接臂主体4131卡固连接,而不与本体4111卡固连接,当然,也可以与本体4111卡固连接。在一实施例中,卡固板4224还可与第一电路系统30配合。
请参阅图4,固定盖例如第二固定盖423可不设置通光孔4222以及卡固板4224。请参阅图8,图8为本申请图4所示实施例中遮蔽件42的结构示意图。第二固定盖423也可与第一固定盖422一样可包括固定盖主体4221,并在固定盖主体4221上设置通光孔4222、第一安装孔4223及卡固板4224。对于第二固定盖423的设置方式及与第一壳体41的配合关系可参阅第一固定盖422的设置方式及与第一壳体41的配合关系。
在一实施例中,遮蔽件42可与通道壳411为一体结构。即,遮蔽件42可作为第一壳体41的一部分。
在一实施例中,第一固定盖422及第二固定盖423可至少省略其中一个。
请参阅图4,第一连接件43可用于实现装配框44在第一壳体41上的安装。第一连接件43可包括安装在第一安装部4114及第一安装部4124上的第一子连接件431以及设置在第二安装部4115上的第二子连接件432。其中,第一子连接件431可与装配框44配合连接。第二子连接件432可与第一功能镜片模组20配合连接。在一些实施例中,第一子连接件431与第二子连接件432可至少省略一个。
在一实施例中,第一子连接件431可为可产生磁作用力的磁铁。当然,第一子连接件431也可为插接结构、卡扣结构、螺接结构。当然,在一些实施例中,第一子连接件431也可以省略。
在一实施例中,第二子连接件432可为可产生磁作用力的磁铁。当然,第二子连接件432也可为插接结构、卡扣结构、螺接结构。当然,在一些实施例中,第二子连接件432也可以省略。在一些实施例中,第二子连接件432也可以安装在通道壳411的其他部位。
在一实施例中,第一连接件43可为第一壳体41的一部分。在一实施例中,第一子连接件431及第二子连接件432中的至少一个可为第一壳体41的一部分。
请参阅图4,装配框44可采用硬性材料制成。装配框44可在第一连接件43设置的情况下与第一连接件43连接,以实现与第一壳体41的连接固定。装配框44可在不设置第一连接件43的情况下直接与第一壳体41连接固定。
在一些实施例中,装配框44的材质可为与第一连接件43例如磁铁磁作用力连接固定的硬性金属或包含与磁铁磁作用力配合的金属的硬性材料,以便与第一连接件43磁作用力连接。在一些实施例中,第一连接件43可设置在装配框主体4411上。在一些实施例中,第一连接件43可不设置在第一壳体41上而设置在装配框44上,以使得第一连接件43与第一壳体41磁作用力连接,以实现装配框44与第一壳体41的连接固定。
装配框44的数量可以为两个,分别为第一装配框441及第二装配框442。第一装配框441扣设在第一安装框412a上。第二装配框442扣设在第二安装框412b。
装配框44例如第一装配框441及第二装配框442大体可呈板状结构。装配框44例如第一装配框441及第二装配框442可包括与安装框主体4121相对设置的装配框主体4411。装配框主体4411的周围围设第三凸沿4123及与第三凸沿4123连接的第一凸沿4112,并与第三凸沿4123及与第三凸沿4123连接的第一凸沿4112抵接。
装配框主体4411中部与透光孔4122相对的位置开设透光孔4412,以使装配框主体4411呈环状结构,透光孔4412用于与第一功能镜片模组20配合。光线可依次透过透光孔4412、第一功能镜片模组20以及透光孔4122。在一实施例中,透光孔4412可向装配框主体4411的边缘延伸设置,以使得装配框主体4411呈半环状结构,以与呈半环状结构的安装框主体4121相对应。
在一实施例中,装配框主体4411远离通道壳411例如本体4111一侧的表面与围设在装配框主体4411周围的第三凸沿4123的表面平齐,以提高外观表现力。
在一实施例中,装配框主体4411远离通道壳411例如本体4111一侧的表面与围设在装配框主体4411周围的第一凸沿4112的表面平齐,以提高外观表现力。
在一实施例中,装配框主体4411远离本体4111的一侧与第一遮蔽部4211的表面平齐,以提高外观表现力。
在一实施例中,在装配框44不盖设在遮蔽件42上时,装配框主体4411远离通道壳411例如本体4111一侧的表面与围设在装配框主体4411周围的第三凸沿4123的表面平齐,装配框主体4411远离通道壳411例如本体4111一侧的表面与第一子凸沿4113a的表面平齐,以提高外观表现力。
可以理解地,装配框主体4411也可与第三凸沿4123远离安装框主体4121一侧的边缘抵接。装配框主体4411也可与第一凸沿4112远离安装框主体4121一侧的边缘抵接。另外,在装配框主体4411以任何方式与第三凸沿4123及与第三凸沿4123连接的第一凸沿4112抵接时,装配框主体4411可对本体4111延伸方向的两端设置的连通孔41c及固定盖例如第一固定盖422和第二固定盖423上的通光孔4222进行遮挡。
另外,装配框44例如第一装配框441及第二装配框442可与遮蔽件42可组成第二壳体46。在一实施例中,装配框44例如第一装配框441及第二装配框442可与遮蔽件42可为一体结构。
再者,在某些实施例中,第一装配框441、与第一装配框441相对的第一安装框412a、通道壳411中与第一装配框441相对的部位及遮蔽件42中与第一装配框441相对的第二遮蔽部4212可组成第一壳体,第二装配框442、与第二装配框442相对的第二安装框412b、通道壳411中与第二装配框442相对的部位及遮蔽件42中与第二装配框442相对的第二遮蔽部4212可组成第二壳体,通道壳411中位于第一壳体与第二壳体之间的部位及第一遮蔽部4211可组成连接部。第一壳体与第二壳体用于固定第一功能镜片模组20。在一实施例中,第一壳体与第二壳体,通过连接部实现第一功能镜片模组20内部的连接固定。在一实施例中,第二壳体可以省略。
请参阅图4和图9,图9为本申请图4所示实施例中鼻托45的结构示意图。鼻托45可包括安装在第一安装框412a例如连接部412c上的第一鼻托件451以及与第一鼻托件451对称设置且安装在第二安装框412b例如连接部412c上的第二鼻托件452。在一实施例中,第一鼻托件451与第二鼻托件452可为一体结构。在一实施例中,第一鼻托件451与第二鼻托件452可仅安装在第一安装框412a或第二安装框412b上。在一实施例中,第一鼻托件451与第二鼻托件452也可安装在通道壳411上。
鼻托件例如第一鼻托件451和第二鼻托件452可包括安装在连接部412c上的连接座453以及与连接座453活动连接的鼻托垫454。其中,鼻托垫454可与用户的鼻梁接触,实现对佩戴主体40的支撑。
可以理解地,鼻托45也可为其他形状。例如鼻托45可为第一安装框412a靠近第二安装框412b一侧设置的凸块。例如鼻托45可为第二安装框412b靠近第一安装框412a一侧设置的凸块。即鼻托45可以为第一壳体41的一部分。
请参阅图3,支撑部50用于佩戴在用户的头部与耳朵之间,可与佩戴主体40例如连接臂413连接以形成框架结构10。支撑部50可包括与第一壳体41例如第一连接臂413a连接的第一支腿51以及与第一壳体41例如第二连接臂413b连接且与第一支腿51对称设置的第二支腿52。其中,第一支腿51可架设在右耳朵与头部之间,第二支腿52可架设在左耳朵与头部之间,以实现支撑部50的佩戴。当然,支撑部50也可以采用其他例如环状结构、半环状结构等形式设置,不做赘述。
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3和图10,图10为本申请图3所示实施例中第一支腿51一个视角的爆炸图。第一支腿51可包括与第一壳体41例如第一连接臂413a连接的支腿主体53以及在支腿主体53朝向第二支腿52一侧与支腿主体53扣合以形成容纳空间530的支腿侧盖54。其中,容纳空间530可用于容纳第一电路系统30。
支腿主体53可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40相同的材质制成。支腿主体53整体可呈长条形壳状结构。支腿主体53设置有贯穿支腿主体53的至少一个第二安装孔53a,以与第一电路系统30配合。支腿主体53在远离第一壳体41例如第一连接臂413a的一端设置弯折部531,以提高支撑部50在用户头部佩戴的稳定性,避免支撑部50的滑落。弯折部531可向第一侧弯折设置,以便支腿主体53可架设在耳朵与用户头部之间。
在一实施例中,弯折部531在第一侧设置凹陷部53b,并在第一侧的凹陷部53b处设置装饰件532,以使弯折部531与装饰件532在凹陷部53b处围设形成孔。
在一实施例中,弯折部531在凹陷部53b的两侧设置第一卡接部5311及第二卡接部5312。其中,第一卡接部5311位于弯折部531靠近支腿主体53的一侧。第二卡接部5312位于弯折部531远离支腿主体53的一侧。在一实施例中,第一卡接部5311可设置在支腿主体53上。在一实施例中,第一卡接部5311与第二卡接部5312均为凹槽,以用于安装装饰件532。
在一实施例中,装饰件532可为条状结构,可采用弹性材料或硬性材料制成。在装饰件532采用弹性材料时,可提高支撑部50的佩戴舒适性以及弹性带来的可调节性。
装饰件532的两端分别设置第一卡接部5321及第二卡接部5322。第一卡接部5321可与第一卡接部5311卡接。第二卡接部5322可与第二卡接部5312卡接。在一实施例中,第一卡接部5321可为卡接块,以置于第一卡接部5311例如凹槽内,实现第一卡接部5321与第一卡接部5311卡接。在一实施例中,第二卡接部5322可为卡接块,以置于第二卡接部5312例如凹槽内,实现第二卡接部5322与第二卡接部5312卡接。可以理解地,第一卡接部5321与第一卡接部5311的配合关系及第二卡接部5322与第二卡接部5312的配合关系并不仅限于凹槽与卡接块的配合关系,其还可以是卡扣连接、插接连接、粘接连接、焊接连接、螺接连接等配合关系。
在一实施例中,装饰件532可与弯折部531为一体结构。
请参阅图10和图11,图11为本申请图10所示实施例中第一支腿51另一视角的结构示意图。支腿主体53与第一壳体41例如第一连接臂413a连接的一端设置装配部533,以在装配部533置于第一安装板4132与第二安装板4133之间时,分别与第一安装板4132与第二安装板4133转动连接。
装配部533可包括置于第一安装板4132与第二安装板4133之间的装配部主体534以及设置在装配部主体534上且分别与第一安装板4132、第二安装板4133转动连接的转轴组件535。
在一实施例中,装配部主体534自支腿主体53向第一壳体41例如第一连接臂413a一侧延伸设置。装配部主体534在远离支腿侧盖54一侧的表面与支腿主体53朝向装配部533一侧的端部形成让位部例如第二让位部5341,以对第一连接臂413a例如抵接板4134让位,使得抵接板4134位于第二让位部5341,对第一支腿51限位。
转轴组件535可至少包括转轴。转轴可贯穿装配部主体534,并分别与第一安装板4132与第二安装板4133转动连接。
在一实施例中,装配部主体534与转轴组件535例如转轴为一体结构,在一实施例中,转轴组件535例如转轴可为第一壳体41的一部分。在一实施例中,转轴组件535例如转轴可与第一壳体41中第一连接臂413a的第一安装板4132、第二安装板4133固定连接例如插接固定、焊接固定、粘接固定等。在一实施例中,转轴组件535例如转轴可与第一壳体41中第一连接臂413a的第一安装板4132、第二安装板4133为一体结构。
在一实施例中,支腿主体53远离支腿侧盖54的一侧设置第一挂载组件55,以用于挂载外挂设备400。
请参阅图12,其为本申请图11所示实施例中第一挂载组件55的爆炸图。第一挂载组件55可包括安装在支腿主体53上的安装座551、安装在安装座551远离支腿主体53一侧的第一磁铁件552以及覆盖在安装座551远离支腿主体53一侧的第一装饰片553。其中,第一磁铁件552设置在安装座551与第一装饰片553之间。
安装座551朝向第一装饰片553的一侧设置容纳槽5511,以用于容纳第一磁铁件552。在一实施例中,安装座551设置有与第二安装孔53a连通的第三安装孔5512,以与第一电路系统30配合。
在一实施例中,安装座551可为一体结构。安装座551可自支腿主体53向远离支腿侧盖54的一侧的方向延伸设置。
第一磁铁件552可具有磁作用力,以与外挂设备400通过磁作用力连接,实现外挂设备400在佩戴设备200上的安装。第一磁铁件552可安装在安装座551例如容纳槽5511内。在一实施例中,第一磁铁件552靠近第一装饰片553一侧的表面与安装座551的表面平齐。
第一磁铁件552可包括具有磁作用力的磁铁5521以及包裹在磁铁5521上的隔离罩5522。隔离罩5522可在远离支腿主体53一侧即在靠近第一装饰片553的一侧开设开口,以使磁铁5521朝向第一装饰片553一侧裸露并与外挂设备400磁作用力连接。隔离罩5522用于隔绝或减弱第一磁铁件552在支腿主体53一侧的磁作用力,以使第一电路系统30被第一磁铁件552的磁干扰减弱或消失,起到了保护第一电路系统30的作用。在一实施例中,隔离罩5522可以省略。
第一装饰片553可采用硬性材料或柔性材料制成。第一装饰片553可用于对第一磁铁件552进行遮挡,提高外观表现力。在一实施例中,第一装饰片553对应于第三安装孔5512的位置设置第四安装孔5531,以与第一电路系统30配合。
可以理解地,第一挂载组件55可不通过第一磁铁件552与外挂设备400连接,可通过插接结构、卡扣结构、螺接结构等实现连接固定,不做赘述。
另外,对于“第一安装孔”、“第二安装孔”、“第三安装孔”、“第四安装孔”以及“安装孔”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“第一安装孔”称为“第二安装孔”,相应地,将其他实施例中的“第二安装孔”称为“第一安装孔”。
请参阅图10,支腿侧盖54可采用硬性材料或柔性材料。当然,也可以采用与支腿主体53相同的材料。支腿侧盖54可扣设在支腿主体53朝向第二支腿52一侧。支腿侧盖54可包括盖设在支腿主体53上的侧盖本体541以及自侧盖本体541向装配部533一侧延伸设置且与装配部主体534抵接或扣合的抵接侧壁542。其中,抵接侧壁542与装配部主体534之间可布置第一电路系统30配合。
在一实施例中,侧盖本体541对于与弯折部531的凹陷部53b设置有让位缺口5411。在一实施例中,侧盖本体541与弯折部531配合以对装饰件532的第一卡接部5321、第二卡接部5322卡固。
第二支腿52与第一支腿51对称设置,以便第二支腿52与第一支腿51配合实现佩戴设备200佩戴在用户头部上。第二支腿52可采用上述第一支腿51的设置方式设置。例如,在一些实施例中,第二支腿52可采用第一支腿51与第一连接臂413a的连接方式与第二连接臂413b连接。在第一支腿51与第一连接臂413a相对转动时,第一支腿51远离第一连接臂413a的一端向第二支腿52一侧移动,进而可以实现佩戴设备200的折叠、收纳,进而减少佩戴设备200的占用空间。在第二支腿52与第二连接臂413b相对转动时,第二支腿52远离第二连接臂413b的一端向远离第一支腿51一侧移动,进而展开佩戴设备200。例如,在一些实施例中,第二支腿52可采用第一支腿51中支腿主体53和支腿侧盖54的构造及连接关系设置。对于第二支腿52的设置方式及功能具体可参阅上述实施例中第一支腿51的设置方式及功能,不做赘述。当然,第二支腿52也可不采用第一支腿51的设置方式设置,而采用其他方式设置,不做赘述。
在一实施例中,第一支腿51及第二支腿52均可与第一壳体41为一体结构。
在一些实施例中,在第一支腿51通过装配部533例如转轴组件535与第一壳体41的第一连接臂413a例如第一安装板4132、第二安装板4133转动连接,第二支腿52通过装配部533例如转轴组件535与第一壳体41的第二连接臂413b例如第 一安装板4132、第二安装板4133转动连接。使得支撑部50与用户头部之间的作用力无法调节,为了使得用户佩戴舒适性得以改进,对装配部533进行调整,以使得支撑部50与用户头部之间的作用力可调节。
请参阅图13和图14,图13为本申请图10所示实施例中支腿主体53另一实施例中的结构示意图,图14为本申请图10所示实施例中支腿主体53另一视角中的爆炸图。在装配部533中,装配部主体534在分别朝向第一安装板4132和第二安装板4133两侧的表面分别设置有安装槽5342,以与转轴组件535配合。装配部主体534设置贯穿装配部主体534的贯穿孔5343,以连通设置在装配部主体534两侧的两个安装槽5342,进而与转轴组件535配合。
在一实施例中,装配部主体534在安装槽5342的内壁开设行程部5344,以与转轴组件535配合。在一实施例中,行程部5344可为行程槽。行程部5344例如行程槽内设置有两个抵接面例如第一抵接面5344a、第二抵接面5344b,以与转轴组件535配合。在一些实施例中,为了更好地与转轴组件535配合,行程部5344例如行程槽内设置了第三抵接面5344c,以与转轴组件535配合。第三抵接面5344c位于第一抵接面5344a、第二抵接面5344b之间。
在一实施例中,行程部5344可为设置在安装槽5342内的三个凸块。例如三个凸块中的一个设置有第一抵接面5344a,另一个设置有第二抵接面5344b,最后一个设置有第三抵接面5344c,以与转轴组件535配合。当然三个凸块可为一体结构。在一实施例中,安装槽5342可以省略。行程部5344可设置在装配部主体534分别朝向第一安装板4132和第二安装板4133两侧的表面。例如,行程部5344可为三个凸块。
可以理解地,行程部5344可不仅限于所列举的行程槽及三个凸块的配合关系,其还可以为其他配合关系例如,行程部5344设置在装配部主体534的内部。另外,第三抵接面5344c可以省略。
在一实施例中,转轴组件535可包括置于贯穿孔5343内并与第一安装板4132和第二安装板4133连接固定的转轴536以及与转轴536连接且与装配部主体534卡接的弹性件537。其中,转轴536可设置固定部5361,以与弹性件537的一端例如第一端5371固定连接或卡接。
在一实施例中,固定部5361可为贯穿转轴536的通孔或凹槽,以便弹性件537的一端例如第一端5371伸入通孔或凹槽内与转轴536卡接。在一实施例中,固定部5361例如通孔可为条形通孔。条形通孔的延伸方向可与转轴536的轴向方向一致,以使得弹性件537的一端例如第一端5371伸入通孔内与转轴536在转轴536的径向方向卡接。在某些实施例中,条形通孔的延伸方向也可与转轴536的轴向方向不一致,以在装配部主体534的配合下,使得弹性件537的一端例如第一端5371伸入通孔内与转轴536在转轴536的径向方向卡接。
请参阅图15和图16,图15为本申请一实施例中转轴536与连接臂主体4131一视角的爆炸图,图16为本申请图15所示实施例中转轴536与连接臂主体4131另一视角的爆炸图。转轴536可包括在轴向方向布置固定部5361例如通孔的转轴螺杆5362和与转轴螺杆5362端部螺接的转轴螺钉5363。
转轴螺杆5362可包括一端与转轴螺钉5363螺接并在轴向方向布置固定部5361例如通孔的螺杆杆部5364以及设置在螺杆杆部5364另一端的螺杆头部5365。其中,固定部5361例如通孔向螺杆杆部5364与螺杆螺钉5363螺接的一端延伸设置,以延伸至螺杆杆部5364的边缘,以便弹性件537从转轴螺杆5362的边缘滑入固定部5361例如通孔内。螺杆头部5365与转轴螺钉5363相对设置,以安装在连接臂主体4131例如第一安装板4132、第二安装板4133,避免弹性件537从固定部5361例如通孔内滑出。
在一些实施例中,为了实现转轴536与连接臂主体4131例如第一安装板4132、第二安装板4133的连接固定。第一安装板4132上设置有贯穿孔4132a,并在贯穿孔4132a周围设置第一卡固部4132b,以与转轴536卡固,避免转轴536与连接臂主体4131相对转动。在一实施例中,第一卡固部4132b可为凹槽。第二安装板4132上设置有贯穿孔4133a,以与第一安装板4132上的贯穿孔4132a相对设置,使得转轴536例如转轴螺杆5362依次穿过贯穿孔4132a和贯穿孔4133a。螺杆头部5365朝向转轴螺钉5363的一侧设置有第二卡固部5365a,以与第一卡固部4132b卡固。在一实施例中,第二卡固部5365a可为凸块,以置于第一卡固部4132b例如凹槽内,实现第一卡固部4132b与第二卡固部5365a卡固。当然,第一卡固部4132b与第二卡固部5365a并不仅限于凸块和凹槽的配置关系。
请参阅图13、图14、图15和图16,弹性件537可为扭簧。在一实施例中,弹性件537还可为其他类型的弹性件537例如弹性绳、弹簧、簧片等。在一实施例中,弹性件537可为平面涡卷弹簧,平面涡卷弹簧环绕在转轴536的外围。在一实施例中,弹性件537可为两个,与两个安装槽5342一一对应,一个弹性件537安装在一个安装槽5342内。当然,在某些实施例中,弹性件537的个数可为一个,当然也可以为3个、4个等,可不对弹性件537的个数做限定。
弹性件537的一端例如第一端5371与转轴536的固定部5361连接固定或卡接。在一些实施例中,弹性件537的一端例如第一端5371可从螺杆杆部5364的边缘滑进固定部5361例如通孔内。
弹性件537的另一端例如第二端5372在行程部5344例如行程槽内滑动,并可滑动至弹性件537的另一端例如第二端5372与行程部5344例如行程槽的抵接面例如第一抵接面5344a、第二抵接面5344b抵接的状态,以使得弹性件537的另一端例如第二端5372被限位。当然,在某些实施例中,弹性件537的另一端例如第二端5372在行程部5344例如行程槽内从第一抵接面5344a滑动至第二抵接面5344b时,可滑动经过第三抵接面5344c,在弹性件537的另一端例如第二端5372与第三抵接面5344c抵接时,可使得弹性件537发生弹性形变,进而使得弹性件537可以相对于第三抵接面5344c滑动。
可以理解地,在某些实施例中,弹性件537的第二端5372可在行程部5344两个抵接面例如第一抵接面5344a、第二抵接面5344b距离较近时,分别与行程部5344的两个抵接面例如第一抵接面5344a、第二抵接面5344b抵接,而无法在行程部5334上滑动。
在实现转轴组件535与装配部主体534、第一安装板4132、第二安装板4133安装时,可将弹性件537置于安装槽5342内,使得弹性件537的第二端5372置于行程部5344例如行程槽内,将装配部534置于第一安装板4132与第二安装板安装4133之间,使得贯穿孔5343、贯穿孔4132a及贯穿孔4133相通,将转轴螺杆5362依次穿过贯穿孔4132a、穿孔5343及贯穿孔4133,使得弹性件537滑进固定部5361例如通孔内,第一卡固部4132b与第二卡固部5365a卡固,将转轴螺钉5363与转轴螺杆5362螺接,进而将转轴536安装在了第一安装板4132及第二安装板4133内。
在支腿主体53绕转轴536转动,例如在第一方向转动时,使得弹性件537一起跟随转轴536相对于支腿主体53转动,使得弹性件537的第二端5372在行程部5344例如行程槽内滑动,并可滑动至与抵接面例如第二抵接面5344a抵接的状态, 支腿主体53继续绕转轴536转动,例如在第一方向转动,可使得弹性件537发生弹性形变,弹性形变产生使弹性件537恢复原状的作用力,进而对支腿主体53施加使支腿主体53在第二方向上的转动的力,进而调节了支腿主体53对用户头部的作用力,使得用户佩戴更加舒适。可以理解地,在支腿主体53绕转轴536转动过程中,可滑动经过第三抵接面5344c,使得弹性件537与第三抵接面5344c抵接发生弹性形变,提高支腿主体53的转动难度,使得用户体验到支腿主体53折叠、展开的体验。
在一实施例中,弹性件537的另一端例如第二端5372与行程部5344例如行程槽内的第一抵接面5344a抵接的状态滑动至与行程部5344例如行程槽内的第二抵接面5344b抵接时,可使得支腿主体53绕转轴536转动0-90°。当然,在行程部5344设计的样式不同,而支腿主体53绕转轴536转动的角度可以调节。
在一实施例中,弹性件537的另一端例如第二端5372与行程部5344例如行程槽内的第一抵接面5344a抵接的状态滑动至与行程部5344例如行程槽内的第三抵接面5344c抵接时,可使得支腿主体53绕转轴536转动0-70°。当然,在行程部5344设计的样式不同,而支腿主体53绕转轴536转动的角度可以调节,例如45°。
可以理解地,弹性件537可以仅设置在装配部主体534朝向第一安装板4132或第二安装板4133的一侧。在某些实施例中,弹性件537也可以设置在装配部主体534的内部,行程部5344也设置在装配部主体534的内部。
另外,转轴536也可固定在装配部主体534上,而安装槽5342、行程部5344等结构可设置在第一安装板4132和第二安装板4133两者中的至少一者上。
可以理解地,在某些实施例中,图13及图14所示支腿主体53的第二让位部5341和连接臂主体4131例如抵接板4134的配合关系与图10及图11所示支腿主体53的第二让位部5341和连接臂主体4131例如抵接板4134的配合关系有所区别。例如,图13及图14所示支腿主体53的第二让位部5341和连接臂主体4131例如抵接板4134的配合使得支腿主体53相对于连接臂主体4131转动的角度较大,即展开时的展开角度较大,而图10及图11所示支腿主体53的第二让位部5341和连接臂主体4131例如抵接板4134的配合使得支腿主体53相对于连接臂主体4131转动的角度较小,即展开时的展开角度较小。两者展开角度差可为0-12°。即,图13及图14中支腿主体53相对于连接臂主体4131转动的反折角度较大。
其中,图13及图14所示支腿主体53与连接臂主体4131之间设置了转轴组件535,使得展开时的展开角度较大时,可以利用转轴组件535调节支腿主体53对用户头部的作用力。
例如,在支腿主体53绕转轴536转动,例如在第一方向转动时,使得弹性件537一起跟随转轴536相对于支腿主体53转动,使得弹性件537的第二端5372在行程部5344例如行程槽内滑动,并可滑动至与抵接面例如第二抵接面5344a抵接的状态,支腿主体53继续绕转轴536转动,例如在第一方向转动,可使得弹性件537发生弹性形变,弹性形变产生使弹性件537恢复原状的作用力,进而对支腿主体53施加使支腿主体53在第二方向上的转动的力,即回弹力,进而调节了支腿主体53对用户头部的作用力,使得用户佩戴更加舒适,在支腿主体53继续绕转轴536转动,例如在第一方向转动,可转动至连接臂主体4131的抵接板4134位于支腿主体53的第二让位部5341,以对支腿主体53进行限位。
请参阅图3,第一功能镜片模组20可包括安装在第一壳体41上的第一功能镜片21及第二功能镜片22。其中,第一功能镜片21及第二功能镜片22对称设置。第一功能镜片21可对应用户的右眼设置,第二功能镜片22可对应于用户的左眼设置。在一实施例中,第一功能镜片21及第二功能镜片22中的至少一个可以省略。
功能镜片例如第一功能镜片21及第二功能镜片22可包括多片层叠设置的镜片。在某些实施例中,功能镜片例如第一功能镜片21及第二功能镜片22可仅包括一片镜片。在一实施例中,第一功能镜片21的功能与第二功能镜片22的功能可以不同,当然,在某些实施例中,第一功能镜片21的功能与第二功能镜片22的功能可以相同。
镜片可采用玻璃、塑料等一种或多种透明或半透明材料制成。镜片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,镜片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、电致变色膜、光致变色膜等)。在一实施例中,镜片可为近视镜片。
在另一些实施例中,镜片也可以为其他功能镜片例如平镜、防眩镜、有色镜等。
在一实施例中,镜片也可为光致变色器件(例如光致变色膜)。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,不做赘述。
在一实施例中,镜片也可为电致变色器件(例如电致变色膜)。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,不做赘述。
电致变色器件可与头戴式设备100内部的电子电路系统电连接,以实现对电致变色器件的控制。
在一实施例中,镜片可为光波导,具体可为平面光栅波导例如衍射光栅波导。头戴式设备100可通过镜片呈现虚拟现实/增强现实环境。
可以理解地,镜片也可以是将上述实施例中的任意实施例中的镜片进行组合形成的结构,不做赘述。
在一实施例中,镜片的数量可为两个,例如第一镜片23与第二镜片24。第一镜片23与第二镜片24层叠设置。在一实施例中,第一镜片23可与第二镜片24的类型不同。例如第一镜片23为光波导,第二镜片24为平镜。在一实施例中,第一镜片23与第二镜片24可以省略其中一个。在一些实施例中,第一功能镜片模组20可以省略。
第一镜片23可设置在安装框主体4121与装配框主体4411之间。通过安装框主体4121与装配框主体4411对第一镜片23的夹持,实现了第一镜片23的固定。在一实施例中,第一镜片23可覆盖在遮蔽件42远离本体4111的一侧。在一实施例中,第一镜片23可抵接在遮蔽件42远离第一凸沿4112的一侧,并与第二子凸沿4113b远离本体4111一侧的表面抵接。
以第一镜片23为光波导为例,第一镜片23可在与通光孔4222相对的位置设置光耦合进光部,可在与透光孔4122相对的位置设置光耦合出光部。光耦合进光部和光耦合出光部连接在一起以形成光路,光线从光耦合进光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光部处被耦合出镜片,射入佩戴者眼中并在视网膜上成像。
在一实施例中,第一镜片23可包括设置有光耦合进光部及光耦合出光部的镜片主体231以及设置在镜片主体231朝向安装框主体4121或装配框主体4411一侧的电致变色膜232。电致变色膜232的设置解决了第一镜片23颜色单一的问题。
在一实施例中,镜片主体231可在朝向安装框主体4121的一侧及朝向装配框主体4411的一侧均设置电致变色膜232。
在一实施例中,电致变色膜232可以省略。在一实施例中,镜片主体231可为平镜或近视镜等,而不具有光耦合进光部及光耦合出光部。
请参阅图3图17,图17为本申请图3所示实施例中第一功能镜片21的结构示意图。镜片主体231设置延伸部2311,延伸部2311可延伸至与固定盖重叠的位置。光耦合进光部可设置在延伸部2311上。电致变色膜232在延伸部2311与第一安装孔4223相对的部位设置电连接端例如第一电连接端2321,以便与第一电路系统30电连接。
可以理解地,第一镜片23中的镜片主体231可与第二镜片24中的镜片主体231功能不同。例如,第一镜片23中的镜片主体231可以为光波导,第二镜片24中的镜片主体231可以为平镜或近视镜。
以第二镜片24为近视镜为例。第二镜片24可位于第一镜片23朝向安装框主体4121的一侧。第二镜片24朝向通道壳411的一侧设置第二连接件241,以便与第一连接件43例如第二子连接件432连接固定。第二连接件241可为可产生磁作用力的金属或包含具有磁作用力的金属的复合材料,以与第二子连接件432磁作用力连接。当然,第二连接件241与第二子连接件432的配合关系并不仅限于磁作用力连接,其还可以为插接连接、卡扣连接、粘接连接、螺接连接等配合关系。
可以理解地,第一功能镜片21中的镜片数量可与第二功能镜片22的镜片数量不同。例如第一功能镜片21设置第一镜片23和第二镜片24,第二功能镜片22设置第一镜片23。
请参阅图18和图19,图18为本申请图3所示实施例中第一电路系统30一视角的结构示意图,图19为本申请图18所示实施例中第一电路系统30另一视角的结构示意图。第一电路系统30可用于与第一功能镜片模组20实现第一功能镜片模组20的增强现实、虚拟现实、变色等功能中的至少一种。当然,在一些实施例中,第一电路系统30也可用于实现外挂设备400的功能。
第一电路系统30可包括通过柔性电路板35电连接在一起的主板模组31、光机组件32、电池模组33及扬声器模组34。其中,电池模组33可为主板模组31、光机组件32及扬声器模组34的正常工作提供电能。主板模组31可用于控制光机组件32及扬声器模组34的正常运行。
主板模组31上可设置有处理器、传感器(例如霍尔传感器、温度传感器等)等电子元件,在此不作赘述。主板模组31可包括设置在第一支腿51的容纳空间530内的第一主板311和与第一主板311电路连接且设置在第二连接臂413b的卡固空间41d内的第二主板312。在一实施例中,第一主板311也可以设置在第一连接臂413a的卡固空间41d内。在一实施例中,第一主板311也可以设置在第二连接臂413b的卡固空间41d内。在一实施例中,第一主板311也可以设置在第二支腿52的容纳空间530内。
在一实施例中,第二主板312也可以设置在第一连接臂413a的卡固空间41d内。在一实施例中,第二主板312也可以设置在第一支腿51的容纳空间530内。在一实施例中,第二主板312也可以设置在第二支腿52的容纳空间530内。
在一实施例中,可将第一主板311上集成的功能器件与第一主板311上集成的功能器件集成在一个主板上,即,第一主板311与第二主板312可以省略其中一个。
光机组件32可作为显示组件使用,光机组件32可设置在第一连接臂413a的卡固空间41d内。光机组件32与主板模组31例如第一主板311通过第一柔性电路板351电连接。第一柔性电路板351可从第一支腿51的容纳空间530内向第一连接臂413a一侧延伸设置,并延伸至抵接侧壁542与装配部主体534之间,并从抵接侧壁542与装配部主体534之间伸入第一连接臂413a的卡固空间41d内与光机组件32电连接。光机组件32可至少包括光机。光机可发出具有图像信息的光线(也可被称为“光信号”)。光线可穿过连通孔41c、通光孔4222从第一镜片23的光耦合进光部耦进第一镜片23,使得光线从第一镜片23的光耦合出光部耦出。当然,在一些实施例中,光机组件32可设置在第二连接臂413b的卡固空间41d内。可以理解地,光机组件32可以为两个,其中一个设置在第一连接臂413a的卡固空间41d内,另一个可设置在第二连接臂413b的卡固空间41d内。
光机组件32可与主板模组31例如第二主板312通过第二柔性电路板352电连接。第二柔性电路板352可布置在走线通道41a内,即第二柔性电路板352设置在通道壳411内。被夹设在本体4111与遮蔽件42之间,以被遮蔽件42遮挡,避免第二柔性电路板352裸露。
在一实施例中,第二柔性电路板352的一端对应于第一固定盖422的第一安装孔4223的位置设置电连接端例如第二电连接端3521,以与第一功能镜片21的第一镜片23的第一电连接端2321电连接。第二柔性电路板352的另一端对应于第二固定盖423的第一安装孔4223的位置设置电连接端例如第二电连接端3522,以与第二功能镜片22的第一镜片23的第一电连接端2321电连接。
在一实施例中,在第二主板312省略时,可以在安装第二主板312的位置即第二连接臂413b的卡固空间41d中安装另一个光机组件32。另一个光机组件32可依据第一连接臂413a中的光机组件32的安装方式进行安装布置,以使得另一个光机组件32可与第二功能镜片22中的第一镜片23配合。
电池模组33可设置在第二支腿52的容纳空间530内。其可以通过第三柔性电路板353与第二柔性电路板352和/或第二主板312电连接。第三柔性电路板353可从第二支腿52的容纳空间530内向第一连接臂413a一侧延伸设置,并延伸至抵接侧壁542与装配部主体534之间,并从抵接侧壁542与装配部主体534之间伸入第二连接臂413b的卡固空间41d内与第二柔性电路板352和/或第二主板312电连接。
可以理解地,电池模组33也可设置在第一支腿51的容纳空间530中。在某些实施例中,电池模组33也可以设置在第一连接臂413a的卡固空间41d内,也可以设置在第二连接臂413b的卡固空间41d内。
扬声器模组34可包括设置在第一支腿51的容纳空间530内的第一扬声器341以及设置在第二支腿52的容纳空间530内的第二扬声器342,第一扬声器341在第一支腿51的容纳空间530内对应于支腿主体53的第二安装孔53a设置,以便声音从第二安装孔53a传播至外界。第二扬声器342在第二支腿52的容纳空间530内对应于支腿主体53的第二安装孔53a设 置,以便声音第二安装孔53a传播至外界。在一实施例中,第一扬声器341与第二扬声器342可至少省略其中一个。
在一实施例中,第一电路系统30中还可以包括与主板模组31和/或电池模组33电连接的第一外接接头。第一外接接头可对应于第一挂载组件55例如安装座551设置,例如从支腿主体53的第二安装孔53a伸入第三安装孔5512、第四安装孔5531,以便在第一挂载组件55与外接设备例如外接电源、外挂设备400连接时,实现与外接设备之间的数据传输,或为外接设备提供电能,或外接设备为第一电路系统30提供电能。在一实施例中,第一外接接头可为pogo pin针或与pogo pin针配对的触点。在一实施例中,第一外接接头可作为第一挂载组件55的一部分。在一实施例中,第一外接接头可设置在安装座551的内部,例如,第一外接接头直接固定在第三安装孔5512内。
在一实施例中,第一电路系统30可不仅限于上述实施例中列举的主板模组31、光机组件32、电池模组33、扬声器模组34,其还可以包括电子元件,例如麦克风,例如霍尔传感器。其中霍尔传感器可用于感测第一挂载组件55周围的磁场变化,以便主板模组31根据霍尔传感器感测的结果控制第一电路系统30的正常运行。例如,可通过磁场变化感测外挂设备400的安装与拆卸,也可以进一步实现对头戴式设备100的任务管理,实现头戴式设备100系统的休眠、工作等模式的切换,优化功耗。在一实施例中,霍尔传感器可安装在第一挂载组件55上,当然也可以安装在其他位置,在此不做赘述。
可以理解地,在第一电路系统30中,可以将第一电路系统30位于第一支腿51中的部分称为“第一部分”,可以将第一电路系统30位于第二支腿52中的部分称为“第二部分”,可以将第一电路系统30位于第一连接臂413a中的部分称为“第三部分”,可以将第一电路系统30位于第二连接臂413b中的部分称为“第三部分”,进而有第一部分与第三部分通过第一柔性电路板351电连接,第三部分与第四部分通过第二柔性电路板352电连接,第二部分与第四部分通过第三柔性电路板353电连接。
对于“第一部分”、“第二部分”、“第三部分”、“第四部分”以及“部分”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“第一部分”称为“第二部分”,相应地,将其他实施例中的“第二部分”称为“第一部分”。
在一些实施例中,由于佩戴设备200组装过程较为复杂,且柔性电路板35例如第一柔性电路板351和第三柔性电路板353的布置需要经过支腿主体53上设置的装配部533,进而使得装配部主体534的设计过于复杂,另外也会在使用过程中来回弯折第一柔性电路板351和第三柔性电路板353,使得第一柔性电路板351和第三柔性电路板353具有折弯损伤,降低柔性电路板35例如第一柔性电路板351和第三柔性电路板353的寿命,所以需要对柔性电路板35例如第一柔性电路板351和第三柔性电路板353进行重新设计。
对于“第一柔性电路板”、“第二柔性电路板”、“第三柔性电路板”以及“柔性电路板”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“第一柔性电路板”称为“第二柔性电路板”,相应地,将其他实施例中的“第二柔性电路板”称为“第一柔性电路板”。
请参阅图18、图19、图20和图21,图20为本申请第一柔性电路板351的结构示意图,图21为本申请图20所示实施例中第一柔性电路板351、支腿主体53及第一连接臂413a的安装结构示意图。第一柔性电路板351可包括与第一主板311电连接的第一子柔性电路板3511、与光机组件32电连接的第二子柔性电路板3512、设置在第一子柔性电路板3511上的第一电接口3513以及设置在第二子柔性电路板3512另一端的第二电接口3514。其中,第一电接口3513与第二电接口3514电连接,实现第一子柔性电路板3511与第二子柔性电路板3512的电连接。第一电接口3513与第二电接口3514组成电连接组件。
在一实施例中,第一电接口3513设置在支腿主体53位于第二让位部5341的端面上,第二电接口3514设置在抵接板4134远离连接臂主体4131一端的端面上。在连接臂主体4131绕转轴组件535转动时,可使得抵接板4134位于第二让位部5341,即第一支腿51处于展开状态时,使得第一电接口3513与第二电接口3514抵接,实现电连接。在连接臂主体4131绕转轴组件535转动时,可使得抵接板4134远离第二让位部5341,即第一支腿51处于折叠状态时,使得第一电接口3513与第二电接口3514不抵接,进而无法实现电路导通。可以理解地,第一电接口3513还可设置在第二让位部5341的其他部位,只要能使第一电接口3513在抵接板4134位于第二让位部5341时与第二电接口3514电连接即可。另外,第一电接口3513与第二电接口3514可不仅限于设置在抵接板4134和连接臂主体4131在第二让位部5341处的端面,第一电接口3513还可以设置装配部533上的其他位置,第二电接口3514还可以设置在第一连接臂413a的其他位置。
在一实施例中,第一电接口3513与第二电接口3514中的一个为pogo pin针,另一个为与pogo pin针配合的触点。
通过电连接组件的设置,可以使得第一电接口3513与第二电接口3514在连接臂主体4131绕转轴组件535转动时实现电连接或电断开。进而可以控制头戴式设备100的正常运行。使得电连接组件起到开关的功能。进而使得第一柔性电路板351得到了保护。可以理解地,第三柔性电路板353可与第一柔性电路板351的结构类似,例如第三柔性电路板353也可包括第一子柔性电路板3511、第二子柔性电路板3512、第一电接口3513、第二电接口3514。对于第三柔性电路板53在第一电路系统30中的使用方式可参阅第一柔性电路板,不做赘述。对于第三柔性电路板353与第二连接臂413b、第二支腿52的配合关系可参阅第一柔性电路板351与第一连接臂413a、第一支腿51的配合关系,不做赘述。
请参阅图1和图22,图22为本申请图1所示实施例中外挂设备400的结构示意图。外挂设备400可包括对应于用户眼睛设置且与第一功能镜片模组20例如第一功能镜片21层叠设置的第二功能镜片模组60以及用于安装第二功能镜片模组60且安装在支撑部50例如第一挂载组件55上的外挂主体70。
请参阅图22和图23,图23为本申请图22所示实施例中外挂设备400的剖视图。第二功能镜片模组60可包括镜框61以及第三功能镜片62。其中,第三功能镜片62可与第一功能镜片模组20例如第一功能镜片21层叠设置,且可位于第一镜片23远离第二镜片24的一侧。镜框61可用于固定第三功能镜片62。镜框61可用于与外挂主体70连接固定。
可以理解地,对于“第一功能镜片”、“第二功能镜片”、“第三功能镜片”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”。
镜框61可采用硬性材料制成。镜框61可包括围设在第三功能镜片62边缘的镜框主体611以及设置在镜框主体611上且用于与外挂主体70连接的第三连接臂612。其中,第三连接臂612设置有容置空间610以与外挂主体70配合。在一实施 例中,容置空间610朝向第三功能镜片62一侧设置透光孔,以与第三功能镜片62配合。在一实施例中,容置空间610可以省略。在一实施例中,镜框主体611可围设第三功能镜片62的边缘部分,另外,可通过热熔胶实现镜框主体611与第三功能镜片62的固定连接。
对于“第一连接臂”、“第二连接臂”、“第三连接臂”以及“连接臂”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“第一连接臂”称为“第二连接臂”,相应地,将其他实施例中的“第二连接臂”称为“第一连接臂”。
第三功能镜片62的构造及设置方式可按照第一功能镜片21的构造及设置方式设计。当然第三功能镜片62的功能可与第一功能镜片21的功能不同,也可以相同。对于第三功能镜片62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21,不做赘述。
在一实施例中,第三功能镜片62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可通过第三功能镜片62呈现虚拟现实/增强现实环境。
下边以第三功能镜片62为光波导为例,对第三功能镜片62进行介绍。
第三功能镜片62可设置与容置空间610相对的光耦合进光部和光耦合出光部。光耦合进光部和光耦合出光部连接在一起以形成光路,光线从光耦合进光部被耦合进入第三功能镜片62中,在光路内传输,最后光线会在光耦合出光部处被耦合出第三功能镜片62,射入佩戴者眼中并在视网膜上成像。
请参阅图23,外挂主体70可包括可挂载在佩戴设备200例如第一挂载组件55上的壳体组件80以及安装在壳体组件80内的第二电路系统90。其中,壳体组件80可与第三连接臂612连接固定。第二电路系统90可用于实现第三功能镜片62的虚拟现实或增强现实的功能。在一些实施例中,第二电路系统90可与第一电路系统30电连接组成电子电路系统,实现第一功能镜片模组20及第二功能镜片模组60中至少一个工作。
可以理解地,对于“第一电路系统”、“第二电路系统”、“电路系统”以及“控制系统”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“第一电路系统”称为“第二电路系统”,相应地,将其他实施例中的“第二电路系统”称为“第一电路系统”。例如在一实施例中,将其他实施例中的“第一电路系统”及“第二电路系统”均可被称为“控制系统”。
请参阅图24,图24为本申请图23所示实施例中壳体组件80的结构示意图。壳体组件80可包括可挂载在佩戴设备200例如第一挂载组件55上的主壳体81、在主壳体81远离第一支腿51一侧的壳体侧盖82以及安装在主壳体81内的触摸键组件83。其中,主壳体81内设置置物空间840,以用于容纳触摸键组件83以及第二电路系统90。触摸键组件83与壳体侧盖82配合,以在壳体侧盖82一侧实现触摸键组件83的触发,进而实现对与触摸组件83电连接的第二电路系统90的控制。即,触摸键组件83也可以作为第二电路系统90的一部分。
主壳体81可包括具有置物空间840的第三壳体84、设置在第三壳体84远离第二功能镜片模组60一端的防护盖85以及设置在第三壳体84靠近第一支腿51一侧且与第一挂载组件55连接固定的第二挂载组件86。
可以理解地,对于“第一功能镜片模组”、“第二功能镜片模组”、“第三功能镜片模组”以及“功能镜片模组”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“第一功能镜片模组”称为“第二功能镜片模组”,相应地,将其他实施例中的“第二功能镜片模组”称为“第一功能镜片模组”。
对于“第一挂载组件”、“第二挂载组件”以及“挂载组件”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“第一挂载组件”称为“第二挂载组件”,相应地,将其他实施例中的“第二挂载组件”称为“第一挂载组件”。
对于“第一壳体”、“第二壳体”、“第三壳体”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”。
请参阅图24和图25,图25为本申请图24所示实施例中第三壳体84的结构示意图。第三壳体84可采用硬性材料制成。第三壳体84可呈圆柱状,在高度方向延伸设置。当然,也可以呈其他形状。第三壳体84可包括壳体主体841。壳体主体841围设形成置物空间。在一实施例中,壳体主体841内部可设置分隔板842以将置物空间840分割为多个空间,以用于分别安装第二电路系统90的部分结构。在一实施例中,壳体主体841在置物空间840内设置第三安装部843,以用于安装触摸键组件83。在一实施例中壳体主体841的边缘设置连接壁8411,连接壁8411上可设置第三连接件8412,以便与壳体侧盖82连接固定。在一实施例中,第三连接件8412可为卡扣结构、插接结构等中的一种。
可以理解地,对于“第一安装部”、“第二安装部”、“第三安装部”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”。
在一实施例中,连接壁8411的外侧可设置卡固位8413,以便与第二电路系统90配合。
在一实施例中,壳体主体841在远离第二功能镜片模组60一端开设第一通孔8414,以与置物空间840连通。
在一实施例中,壳体主体841在靠近第二功能镜片模组60一端开设第二通孔8415,以与置物空间840连通,第二通孔8415可用于容纳第三连接臂612,实现壳体主体841与第三连接臂612的连接固定。
请参阅图26,图26为本申请图23所示实施例中壳体主体841与第三连接臂612连接时的另一实施例结构示意图。其中,壳体主体841与第三连接臂612可通过转轴63实现转动连接,请一同参阅图23和图26,镜框61与第三连接臂612之间夹角大体可为45-150°。在一实施例中,镜框61与第三连接臂612之间夹角大体可为90°。镜框61远离转动轴63的一端在镜框61相对于外壳体主体841转动时可向靠近壳体主体841的一侧运动,以使得镜框61与壳体主体841相对设置,以实现第二功能镜片模组20的折叠收纳例如折叠0-90°角。镜框61远离转动轴63的一端在镜框61相对于外壳体主体841转动时可向远离壳体主体841的一侧运动,以展开第二功能镜片模组20,便于使用。
进而使得外挂设备400可折叠收纳,以减少外挂设备400的体积。
在一实施例中,请参阅图25,壳体主体841靠近第一支腿51一侧设置装配槽844,以用于安装第二挂载组件86。在一实施例中,装配槽844内例如底面设置固定槽8441,以用于安装第二挂载组件86。在一实施例中,固定槽8441自装配槽 844的底面凹陷设置。在一实施例中,装配槽844内设置让位孔8442,以用于安装第二挂载组件86。让位孔8442可与置物空间840连通。
请参阅图24。防护盖85可采用硬性材料制成,防护盖85可设置在第三壳体84远离第二功能镜片模组60的一端并扣设在第一通孔8414处,实现对第一通孔8414的遮蔽。在一实施例中,防护盖85可设置有网状通孔结构。
请参阅图24。第二挂载组件86可包括安装在固定槽8441内的第二磁铁件861、覆盖在装配槽844底面的第二装饰片862以及设置在第二装饰片862让位孔处的第二外接接头863。其中,第二挂载组件86的大体结构与第一挂载组件86的大体结构相同,不同之处在于第二挂载组件86没有承载第二磁铁件861、第二装饰片862和第二外接接头863的安装座。对于第二磁铁件861与固定槽8441、第二装饰片862的设置方式以及配合关系可参阅上述实施例中第一磁铁件552、安装座551、容纳槽5511、第一装饰片553的设置方式以及配合关系,不做赘述。
在一些实施例中,第三壳体84作为承载第二磁铁件861、第二装饰片862和第二外接接头863的安装座,其中,固定槽8441可以省略,第二磁铁件861可直接固定在装配槽844的底面,第二装饰片862设置在所述第二磁铁件861朝向第一挂载组件55的一侧,第二装饰片8411与装配槽844的侧壁抵接,以将装配槽844分别为两部分。在一些实施例中,装配槽844用于安装第二磁铁件861的那部分也可被称为“固定槽”。
另外,第二外接接头863可用于与外接设备例如外接电源、佩戴设备200例如第一外接接头电连接,实现与外接设备之间的数据传输,或为外接设备提供电能,或外接设备为第二电路系统90提供电能,或第一电路系统30为第二电路系统90提供电能。在一实施例中,第二外接接头863可为pogo pin针或与pogo pin针配对的触点。可以理解地,第一外接接头与第二外接接头863的电连接关系可不仅限于pogo pin针或与pogo pin针配对的触点的配合关系,其他还可以为其他接口例如USB接口等配合关系,不做赘述。可以理解地,在第一挂载组件55上设置与第一外接接头电连接的霍尔传感器,用于检测第二电磁件861的磁场强度,在第二挂载组件863上设置与第二电路系统90电连接的霍尔传感器,用于检测第一电磁件552的磁场强度,在第一外接接头与第二外接接头863电连接时,可实现两个霍尔传感器均与第二电路系统90电连接,进而根据系统预设控制方法对外挂设备400进行控制。
可以理解地,对于“第一磁铁件”、“第二磁铁件”以及“磁铁件”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“第一磁铁件”称为“第二磁铁件”,相应地,将其他实施例中的“第二磁铁件”称为“第一磁铁件”。
对于“第一装饰片”、“第二装饰片”以及“装饰片”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“第一装饰片”称为“第二装饰片”,相应地,将其他实施例中的“第二装饰片”称为“第一装饰片”。
请参阅图11、图12、图25和图27,图27为本申请一实施例中第一挂载组件55与第二挂载组件86配合的结构示意图。在佩戴设备200挂载外挂设备400时,第一挂载组件55可伸入装配槽844内,可使得第一装饰片553与第二装饰片862相对设置,在一实施例中,第一装饰片553与第二装饰片862可间隔设置,也可抵接。第一磁铁件552与第二磁铁件861通过相互之间的磁作用力相吸引,使得第一挂载组件55与第二挂载组件86完成连接。
可以理解地,由于第一挂载组件55需要伸入装配槽844内,完成佩戴设备200挂载外挂设备400,所以装配槽844的结构及形状与第一挂载组件55例如安装座551的结构及形状可实现定位的作用。例如,装配槽844在与向壳体主体841一侧凹陷方向垂直的截面可为椭圆形、矩形、多边形等中的一种,当然也可以为异形,相应地,安装座551可在与自支腿主体53向远离支腿侧盖54的一侧延伸方向垂直的截面可为与装配槽844在与向壳体主体841一侧凹陷方向垂直的截面相适配,以便安装座551可伸入装配槽844内,强化第一挂载组件55与第二挂载组件86的连接强度。
另外,第一挂载组件55可与第二挂载组件86组成外挂组件,当然,外挂组件可不仅限于第一挂载组件55与第二挂载组件86,外挂组件还可以包括其他,例如第三壳体84可用装配座替代,并将装配座作为外挂组件的一部分,其中,第三壳体84上与第二挂载组件86配合的装配槽844、固定槽8441及让位孔8442等结构可设置在装配座上。在使用外挂组件时,可将装配座固定在一个物体上,将安装座551固定在另一个物体上,实现两个物体的可拆卸连接。例如,可将装配座固定在第三壳体84上,将安装座551固定在第一支腿51上,实现第三壳体84与第一支腿51的可拆卸链接。
在一实施例中,装配座可作为第一挂载组件55的一部分。
请参阅图27,第一挂载组件55中可设置两个第一磁铁件552,其中,两个第一磁铁件552磁极相异(也可称为“磁极相反”),例如,在图27的第一挂载组件55中靠左侧的第一磁铁件552朝向第二挂载组件86一侧的磁极为南极(即,S极),而靠右侧的第一磁铁件552朝向第二挂载组件86一侧的磁极为北极(即,N极)。第二挂载组件86对应于第一挂载组件55中两个第一磁铁件552可设置两个第二磁铁件861,其中,两个第二磁铁件861磁极相异,例如,在图27的第二挂载组件86中靠左侧的第二磁铁件861朝向第一挂载组件55一侧的磁极为N极,而靠右侧的第二磁铁件861朝向第一挂载组件55一侧的磁极为S极。
在第一挂载组件55与第二挂载组件86磁作用力连接时,图27中,第一挂载组件55中靠左侧的第一磁铁件552与第二挂载组件86中靠左侧的第二磁铁件861磁极相异,而产生磁作用力。第一挂载组件55中靠右侧的第一磁铁件552与第二挂载组件86中靠右侧的第二磁铁件861磁极相异,而产生磁作用力相吸。
请参阅图28,图28为本申请一实施例中第一挂载组件55与第二挂载组件86另一实施例中的结构示意图。在图28中,第一挂载组件55做竖直镜像翻转(即左右颠倒)后,可使得第一挂载组件55中靠左侧的第一磁铁件552与第二挂载组件86中靠左侧的第二磁铁件861磁极相同,而产生磁作用力相斥。第一挂载组件55中靠右侧的第一磁铁件552与第二挂载组件86中靠右侧的第二磁铁件861磁极相同,而产生磁作用力相斥。进而无法使得第一挂载组件55与第二挂载组件86磁作用力连接。
可见,在图27中,第一挂载组件55中的多个第一磁铁件552中心对称分布,两个第一磁铁件552关于对称点中心对称时,磁极相异,第二挂载组件86中的多个第二磁铁件861中心对称分布,两个第二磁铁件861关于对称点中心对称时,磁极相异。在第一挂载组件55与第二挂载组件86按照图27所示进行安装,即可正确安装在一起。而在图27中的第一挂载组件55左右颠倒后如图28所示,将使得第一挂载组件55和第二挂载组件86因为磁极排布方式改变而相互排斥,进而避免佩戴设备200与外挂设备400在第一挂载组件55左右颠倒时还能安装在一起的情况出现,可使得用户根据异极相吸或同极相 斥的磁作用力变化感知位置错位,就能相应调整第一挂载组件55与第二挂载组件86的相对位置,直到利用磁作用力的变化引导用户将外挂设备400放到佩戴设备200设定的合理位置,可在佩戴设备200与外挂设备400盲拆盲装时,通过感知第一磁铁件552和第二磁铁件861之间的磁作用力实现第一挂载组件55与第二挂载组件86的拆卸与便捷组装,另外也可以根据第一磁铁件552和第二磁铁件861之间的磁作用力导向,调整第一挂载组件55与第二挂载组件86之间的相对位置。
请参阅图29,图29为本申请另一实施例中第一挂载组件55与第二挂载组件86配合的示意简图。在图29中,第一挂载组件55在第一方向(在某些实施例中可称为“水平方向”)上中心对称设置有第一组磁性件554及第二组磁性件555,在第二方向(在某些实施例中可称为“竖直方向”)上中心对称设置有第三组磁性件556及第四组磁性件557。其中,第一组磁性件554中的第一磁铁件552与第二组磁性件555中的第一磁铁件552中心对称设置,第三组磁性件556中的第一磁铁件552与第四组磁性件557中的第一磁铁件552中心对称设置。关于对称点中心对称的两个第一磁铁件552磁极相异。
第二挂载组件86在第一方向上中心对称设置有第一组磁性件866及第二组磁性件867,在第二方向上中心对称设置有第三组磁性件868及第四组磁性件869。其中,第一组磁性件866中的第一磁铁件552与第二组磁性件867中的第一磁铁件552中心对称设置,第三组磁性件868中的第一磁铁件552与第四组磁性件869中的第一磁铁件552中心对称设置。关于对称点中心对称的两个第一磁铁件552磁极相异。
第一组磁性件554与第一组磁性件866之间具有磁作用力,以使第一组磁性件554与第一组磁性件866连接。第二组磁性件555与第二组磁性件867之间具有磁作用力,以使第二组磁性件555与第二组磁性件867连接。第三组磁性件556与第三组磁性件868之间具有磁作用力,以使第三组磁性件556与第三组磁性件868连接。第四组磁性件557与第四组磁性件869之间具有磁作用力,以使第四组磁性件557与第四组磁性件869连接。
在一实施例中,第一方向与第二方向垂直。
在一实施例中,第一组磁性件554与第二组磁性件555轴对称设置且中心对称设置。在一实施例中,第三组磁性件556和第四组磁性件557轴对称设置且中心对称设置。在一实施例中,第一组磁性件866与第二组磁性件867轴对称设置且中心对称设置。在一实施例中,第三组磁性件868和第四组磁性件869轴对称设置且中心对称设置。
在一实施例中,第一组磁性件554中的第一磁铁件552可为至少一个,第三组磁性件556中的第一磁铁件552可为至少一个,且第一组磁性件554中第一磁铁件552的个数不等于第三组磁性件556中第一磁铁件552的个数。第一组磁性件554中第一磁铁件552的个数等于第二组磁性件555中第一磁铁件552的个数,第三组磁性件556中第一磁铁件552的个数等于第四组磁性件557中第一磁铁件552的个数。在一实施例中,在一组磁性件例如第一组磁性件554中,相邻两个第一磁铁件552磁极相异。
第一组磁性件866中的第一磁铁件552可为至少一个,第三组磁性件868中的第一磁铁件552可为至少一个,且第一组磁性件866中第一磁铁件552的个数不等于第三组磁性件868中第一磁铁件552的个数。第一组磁性件866中第一磁铁件552的个数等于第二组磁性件867中第一磁铁件552的个数,第三组磁性件868中第一磁铁件552的个数等于第四组磁性件869中第一磁铁件552的个数。在一实施例中,在一组磁性件例如第一组磁性件866中,相邻两个第一磁铁件552磁极相异。
在一实施例中,第一组磁性件554中的第一磁铁件552可为至少一个,第三组磁性件556中的第一磁铁件552可为至少一个,且第一组磁性件554中第一磁铁件552的个数等于第三组磁性件556中第一磁铁件552的个数。第一组磁性件554中第一磁铁件552的个数等于第二组磁性件555中第一磁铁件552的个数,第三组磁性件556中第一磁铁件552的个数等于第四组磁性件557中第一磁铁件552的个数。在一实施例中,在一组磁性件例如第一组磁性件554中,相邻两个第一磁铁件552磁极相异。
第一组磁性件866中的第一磁铁件552可为至少一个,第三组磁性件868中的第一磁铁件552可为至少一个,且第一组磁性件866中第一磁铁件552的个数等于第三组磁性件868中第一磁铁件552的个数。第一组磁性件866中第一磁铁件552的个数等于第二组磁性件867中第一磁铁件552的个数,第三组磁性件868中第一磁铁件552的个数等于第四组磁性件869中第一磁铁件552的个数。在一实施例中,在一组磁性件例如第一组磁性件866中,相邻两个第一磁铁件552磁极相异。
在一实施例中,第一组磁性件554中的第一磁铁件552可为2个,第三组磁性件556中的第一磁铁件552可为2个,第一组磁性件554中第一磁铁件552的个数等于第二组磁性件555中第一磁铁件552的个数,第三组磁性件556中第一磁铁件552的个数等于第四组磁性件557中第一磁铁件552的个数。在一实施例中,在一组磁性件例如第一组磁性件554中,相邻两个第一磁铁件552磁极相异。
第一组磁性件866中的第一磁铁件552可为2个,第三组磁性件868中的第一磁铁件552可为2个,且第一组磁性件866中第一磁铁件552的个数等于第三组磁性件868中第一磁铁件552的个数。第一组磁性件866中第一磁铁件552的个数等于第二组磁性件867中第一磁铁件552的个数,第三组磁性件868中第一磁铁件552的个数等于第四组磁性件869中第一磁铁件552的个数。在一实施例中,在一组磁性件例如第一组磁性件866中,相邻两个第一磁铁件552磁极相异。
在一实施例中,第一组磁性件554中的第一磁铁件552可为3个,第三组磁性件556中的第一磁铁件552可为2个,第一组磁性件554中第一磁铁件552的个数等于第二组磁性件555中第一磁铁件552的个数,第三组磁性件556中第一磁铁件552的个数等于第四组磁性件557中第一磁铁件552的个数。在一实施例中,在一组磁性件例如第一组磁性件554中,相邻两个第一磁铁件552磁极相异。
第一组磁性件866中的第一磁铁件552可为3个,第三组磁性件868中的第一磁铁件552可为2个,且第一组磁性件866中第一磁铁件552的个数等于第三组磁性件868中第一磁铁件552的个数。第一组磁性件866中第一磁铁件552的个数等于第二组磁性件867中第一磁铁件552的个数,第三组磁性件868中第一磁铁件552的个数等于第四组磁性件869中第一磁铁件552的个数。在一实施例中,在一组磁性件例如第一组磁性件866中,相邻两个第一磁铁件552磁极相异。
在一实施例中,第一方向与第二方向垂直设置。在一实施例中,第一方向与第二方向可不垂直设置。
请参阅图24和图30,图30为本申请图24所示实施例中壳体侧盖82的结构示意图。壳体侧盖82可采用硬性材料制成,当然也可以采用与第三壳体84一样的材料制成。壳体侧盖82可扣设在第三壳体84远离第一支腿51的一侧。壳体侧盖82可包括侧盖主体821。侧盖主体821呈弯曲状的壳体结构。侧盖主体821可设置有贯穿侧盖主体821的连通孔8211。连通孔8211可连通置物空间840,以与触摸键组件83配合。在一实施例中,侧盖主体821靠近第三壳体84的一侧设置让位槽8212, 以与触摸键组件83配合。让位槽8212与连通孔8211相通。连通孔8211位于让位槽8212内。在一实施例中,侧盖主体821在边缘设置第四连接件8213,以与第三壳体84上的第三连接件8412连接。第四连接件8213可为卡扣结构、插接结构等中的一种,以便与第三连接件8412卡扣连接、插接连接。可以理解地,第四连接件8213与第三连接件8412的配合关系并不仅限于上述列举的方式。在一实施例中,第四连接件8213与第三连接件8412也可以是螺接连接、焊接连接、粘接连接等配合方式中一种,不做赘述。
对于“第一连接件”、“第二连接件”、“第三连接件”、“第四连接件”、“第一子连接件”、“第二子连接件”以及“连接件”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“第一连接件”称为“第二连接件”,相应地,将其他实施例中的“第二连接件”称为“第一连接件”。
请参阅图24和图31,图31为本申请图24所示实施例中触摸键组件83的爆炸图。触摸键组件83用于控制第二电路系统90,使得第二电路系统90正常运行。触摸键组件83可包括与第三壳体84相对设置的支撑座831、安装在支撑座831之间的驱动装置832、安装在支撑座831上的电容柔性电路板833以及固定在电容柔性电路板833上的触摸键834。其中,电容柔性电路板833及触摸键834设置在支撑座831朝向壳体侧盖82的一侧。触摸键834可自连通孔8211伸出至置物空间840,以被用户触摸实现对第二电路系统90的控制。
支撑座831采用硬性材料制成。支撑座831整体呈板状结构,略有弯曲,以与壳体侧盖82紧密配合。支撑座831朝向壳体侧盖82一侧设置承载槽8311,以用于安装电容柔性电路板833及触摸键834。承载槽8311向支撑座831的边缘延伸设置以形成开口8312,便于电容柔性电路板833走线布置。支撑座831靠近第三壳体84的一侧设置配合部8313,以与驱动装置832连接。
请参阅图31和图32,图32为本申请图31所示实施例中驱动装置832的结构示意图。驱动装置832设置在支撑座831与第三壳体84之间,可用于调整支撑座831与第三壳体84之间的距离,进而调整支撑座831与壳体侧盖82之间距离,进而可以使得触摸键834从连通孔8211伸出至置物空间840外,或自置物空间840外缩回至置物空间840内。驱动装置832可包括安装在第三壳体84例如第三安装部843上底座8321、安装在底座8321上的驱动件8322以及安装在底座8321上的伸缩丝杠8323。其中,伸缩丝杠8323一端与支撑座831连接,以在伸缩丝杠8323的推动下调节支撑座831与第三壳体84之间的距离。伸缩丝杠8323与驱动件8322转动连接,以在驱动件8322的驱动下,调节伸缩丝杠8323在支撑座831和底座8321之间的距离。在一实施例中,底座8321可以省略,驱动装置832可直接设置在第三壳体84上。在一实施例中,底座8321可与第三壳体84为一体结构。在一实施例中,驱动装置832可直接设置在侧盖主体821上。通过伸缩丝杠8323的一端连接第三壳体84。在一实施例中,底座8321可与侧盖主体821为一体结构。在一实施例中,驱动件8322可为电机、液压油缸等。在一实施例中,驱动装置832可以省略。支撑座831可直接固定在侧盖主体821或第三壳体84上。在一实施例中,电容柔性电路板833可与第二电路系统90电连接。在一实施例中,电容柔性电路板833可粘接(例如通过泡棉胶粘接)在支撑座831例如承载槽8311内。在一实施例中,触摸键834可包括可置于让位槽8212内的触摸主体8341以及设置在触摸主体8341远离电容柔性电路板833一侧的触摸部8342。其中,触摸部8342可在支撑座831的承载下,自从连通孔8211伸出至置物空间840外,或自置物空间840外缩回至置物空间840内。
可以理解地,在驱动装置832的控制下,可使得触摸键834缩回至置物空间840,使得触摸键834例如触摸部8342远离触摸主体8341一侧的表面与侧盖主体821的表面平齐,在此情况下,对触摸部8342进行控制,无法使得用户更好的确认触摸部8342的位置。而在驱动装置832的控制下,可使得触摸键834伸出至置物空间840外,使得触摸键834例如触摸部8342凸出于侧盖主体821的表面,在此情况下,对触摸部8342进行控制,可使得用户更好的确认触摸部8342的位置。
在一实施例中,可在外挂设备400不工作时,利用驱动装置832控制,使得触摸部8342远离触摸主体8341一侧的表面与侧盖主体821的表面平齐,以提升外挂设备400的外观表现力。可在外挂设备400工作时,利用驱动装置832控制,使得触摸部8342自侧盖主体821的连通孔8211凸出于侧盖主体821的表面,使得用户在盲操作的状态下,也可以很轻松地感知到触摸部8342的工作位置,从而很轻松地进行滑动、点击等操作来控制外挂设备400或佩戴设备200的功能使用。触摸键组件83可以兼顾到非工作状态下的外观体验和工作状态下的使用体验。
请参阅图23和图33,图33为本申请图23所示实施例中第二电路系统90的爆炸图。第二电路系统90可包括固定在置物空间840且电连接在一起的主板模组91、光机组件92、电池模组93、扬声器94、天线组件95及电容柔性电路板833以及对主板模组91、光机组件92、电池模组93、扬声器94进行散热的散热组件96。
主板模组91上可设置有处理器、传感器(例如温度传感器、霍尔传感器等)等,以便对第二电路系统90进行控制。其中,霍尔传感器可用于感测第二挂载组件86周围的磁场变化,以便主板模组91根据霍尔传感器感测的结果控制第二电路系统30的正常运行。例如,可通过磁场变化感测外挂设备400的安装与拆卸,也可以进一步实现对头戴式设备100的任务管理,实现头戴式设备100系统的休眠、工作等模式的切换等,优化功耗。在一实施例中,霍尔传感器可安装在第二挂载组件86上,当然也可以安装在其他位置例如装配槽844内,在此不做赘述。
光机组件92可作为显示组件使用,光机组件92可安装在第三连接臂612的容置空间610内。光机组件92可通过柔性电路板与主板模组91电连接,以便主板模组91对光机组件92进行控制。光机组件92可至少包括光机,光机可对应于第二功能镜片模组60的第三功能镜片62例如光耦合进光部设置,以便光机发出的具有图像信号的光线在光耦合进光部处耦进第三功能镜片62内。
在一些实施例中,中光机组件92,可在光机上贴转接板胶,可将光机转接板粘贴到光机上的转接板胶上,在转接板上固定支撑座,将光机电接头固定在支撑座上,实现与转接板电连接,最后,可在光机上贴附光机胶以在后续组装中使用。
电池模组93可为第二电路系统90正常工作提供电能。电池模组93可通过柔性电路板与主板模组91电连接,以便主板模组91对电池模组93进行控制、监控。
扬声器94可设置在第三壳体84例如壳体主体841远离第二功能镜片模组60的一端,且对应于第一通孔8414的部位设置,即对应于防护盖85的部位设置,以便扬声器94发出的声音透过防护盖85传输至容置空间610外。
天线组件95可设置在第三壳体84例如壳体主体841的卡固位8413上,可通过柔性电路板与主板模组91电连接。天线组件95可包括BT(Bluetooth,蓝牙)/WiFi(Wireless-Fidelity,无线保真)柔性电路板天线
散热组件96可包括设置在主板模组91、电池模组93、扬声器94同一侧的第一散热片961以及包裹在电池模组93表面的第二散热片962。其中,第一散热片961设置在电池模组93远离第三壳体84的一侧,以对电池模组93及主板模组91等散热。第二散热片962用于对电池模组93散热。第一散热片961与第二散热片962抵接。在一实施例中,第一散热片961及第二散热片962可为铜箔片、铜片、纳米碳散热片、铝箔散热片等中的一种。
在一些实施例中,第二电路系统90可不仅限于主板模组91、光机组件92、电池模组93、扬声器94、天线组件95及电容柔性电路板833,还可以包括麦克风、各种类型传感器等,不再赘述。
可以理解地,第一电路系统30可与第二电路系统90电连接组成电子电路系统。而电子电路系统可包括主板模组、电池模组、光机组件及扬声器模组等,而主板模组、电池模组、光机组件及扬声器模组等可按照预设设计分布在佩戴设备200和外挂设备400内,通过第一外接接头和第二外接接头863电连接实现电子电路系统组成,以通过光机组件实现第一功能镜片模组20和/或第二功能镜片模组60的功能。例如,电子电路系统的电池模组可设置在外挂设备400中,以通过光机组件实现第一功能镜片模组20的功能。例如,电子电路系统的电池模组可设置在佩戴设备200中,以通过光机组件实现第二功能镜片模组60的功能。例如,电子电路系统的主板模组可设置在外挂设备400中,以通过光机组件实现第一功能镜片模组20的功能。例如,电子电路系统的主板模组可设置在佩戴设备200中,以通过光机组件实现第二功能镜片模组60的功能。至于电子电路系统在佩戴设备200和外挂设备400中的布置方式,可参阅上述实施例中的记载,不再赘述。
另外,触摸键组件83例如电容柔性电路板833可作为壳体组件80和第二电路系统90共用的部分,所以在某些实施例中,触摸键组件83可为第二电路系统90的一部分,而不作为壳体组件80的一部分。在第一电路系统30可与第二电路系统90电连接组成电子电路系统时,电子电路系统可均设置在佩戴设备200中,相应地,触摸键组件83也可设置在佩戴设备200中的支腿(例如第一支腿51和第二支腿52中的一个)的容纳空间530内。可按照触摸键组件83与主壳体81的配合关系设置触摸键组件83与支腿侧盖54的配合关系。可按照触摸键组件83与壳体侧盖82的配合关系设置触摸键组件83与支腿主体53的配合关系。例如,触摸键组件83可包括与支腿侧盖54相对设置的支撑座831、安装在支撑座831之间的驱动装置832、安装在支撑座831上的电容柔性电路板833以及固定在电容柔性电路板833上的触摸键834。其中,电容柔性电路板833及触摸键834设置在支撑座831远离支腿侧盖54的一侧。触摸键834可自第二安装孔53a伸出至置物空间840,以被用户触摸实现对第二电路系统90的控制。至于触摸键组件83的具体细节,可参阅上述触摸键组件83分别与主壳体81、壳体侧盖82的配合关系,不做赘述。
接下来阐述一种控制方法,该方法可用于上述实施例中的头戴式设备100,可对头戴式设备100进行控制,请参阅图34,图34为本申请一实施例中控制方法的流程图,该方法包括:
步骤S3201:检测第二挂载组件位置处的第一磁场强度。
在上述实施例中,外挂设备400上设置第二挂载组件86,第二挂载组件86可与第一挂载组件55通过第一磁铁件552与第二磁铁件861之间的磁作用力连接,那么在第一磁铁件552与第二磁铁件861相互靠近时,可以使得第二磁铁件861周围的第一磁场强度受到第一磁铁件552的干扰而发生变化,进而使得第一磁场强度的变化可以侧面表示第一磁铁件552与第二磁铁件861之间的距离。因此,可以将第一磁场强度作为外挂设备400是否挂载于佩戴设备200的衡量标准。在一实施例中,可通过第二挂载组件86中设置的霍尔传感器来进行测量。可以理解地,在第二挂载组件86设置第二磁铁件861的情景下,也可以将第一磁铁件552周围的第二磁场强度作为作为外挂设备400是否挂载于佩戴设备200的衡量标准。
步骤S3202:若检测到第一磁场强度大于第一预设阈值,则赋予触摸键组件控制第一电路系统的权限。
在这里,第一预设阈值是根据第一磁铁件552的磁场强度、第二磁铁件861的磁场强度以及第一磁铁552与第二磁铁861之间的距离来决定,将第一磁铁件552与第二磁铁件861实现将外挂设备400挂载于佩戴设备200时的磁场强度作为最大磁场强度,而第一预设阈值可略小于最大磁场强度。当然,也可以对第一预设阈值进行调整。可以理解地,在第一磁场强度大于第一预设阈值时,可使得第一磁铁件552与第二磁铁件861因磁场作用力而相互靠近,以至于第一磁场强度由第一预设阈值增大至最大磁场强度,将外挂设备400挂载于佩戴设备200。可以理解地,当使用第二磁场强度来作为外挂设备400是否挂载于佩戴设备200的衡量标准时,会涉及第二预设阈值,而由第一磁铁件552的磁场强度与第二磁铁件861的磁场强度的差别,可决定第一预设阈值与第二预设阈值是否相同。当第一磁铁件552的磁场强度与第二磁铁件861的磁场强度相同时,第一预设阈值与第二预设阈值相同。
在外挂设备400挂载于佩戴设备200时,可以通过触摸键组件83进行外挂设备400的控制,可以理解地,当外挂设备400未挂载在佩戴设备200上时,为了保护外挂设备400,另外也为了更好地体验外挂设备400,可取消触摸键组件83控制外挂设备400的功能。
步骤S3203:提示外挂设备在框架结构挂载成功的信息。
在第一磁场强度大于第一预设阈值时,可使得第一磁铁件552与第二磁铁件861因磁场作用力而相互靠近,以至于第一磁场强度由第一预设阈值增大至最大磁场强度,将外挂设备400挂载于佩戴设备200。所以在外挂设备400挂载于佩戴设备200时,可以通过第一电路系统30例如扬声器来提示外挂设备400在框架结构10挂载成功的信息,也可以通过第三功能镜片62与光机的配合显示外挂设备400在框架结构10挂载成功的信息,也可以通过指示灯进行提示外挂设备400在框架结构10挂载成功的信息,当然,还可以使用其他方式来提示,不做赘述。
请参阅图35,图35为本申请另一实施例中控制方法的流程图。该方法在步骤S3203之后,还包括:
步骤S3304:若检测到对触摸键组件的触摸操作,则通过第一电路系统控制外挂设备。
在外挂设备400挂载在佩戴设备200上时,第一电路系统30会赋予触摸键组件83控制外挂设备400的控制能力,进而可以通过触摸键组件的触摸操作例如双击、单击、长按、短按等,可以实现对外挂设备400的开机、关机、选择、取消、删除、播放、前进、后退、翻页等功能,进而完成了对外挂设备400的控制。
步骤S3305:若检测到第一磁场强度小于第一预设阈值,则取消触摸键组件控制第一电路系统的权限,并控制外挂设备进入低功耗待机状态。
在第一磁场强度小于第一预设阈值,意味着外挂设备400未挂载在佩戴设备200,所以,此时,并未使用外挂设备400,因此可以使得外挂设备400进入低功耗待机状态,即休眠状态,可以保证外挂设备400的待机时长,可以提高用户体验。
步骤S3306:若检测到第一磁场强度小于第一预设阈值,则控制外挂设备400关机。
可参阅步骤S3305,控制外挂设备400关机,可保证外挂设备400的待机时长,可以提高用户体验。
步骤S3307:若检测到第一磁场强度小于第一预设阈值,则提示外挂设备400未与框架结构挂载成功的信息。
可参阅步骤S3304和S3305,在外挂设备400未挂载在佩戴设备200上,可以及时提醒用户,提高用户体验,另外,也避免误操作等问题。
可以理解地,步骤S3304、S3305、S3306、S3307可不分先后顺序进行。
请参图36,图36为本申请另一实施例中控制方法的流程图,该方法可包括:
步骤S3401:检测第二挂载组件位置处的第一磁场强度。
请参阅步骤S3201,不做赘述。
步骤S3201:检测第二挂载组件位置处的第二磁场强度。
请参阅步骤S3201,不做赘述。
步骤S3201:若检测到第一磁场强度大于第一预设阈值且检测到第二磁场强度大于第二预设阈值,则赋予触摸键组件控制第一电路系统的权限,第一挂载组件设置有产生磁场的第二磁铁件,以在第一挂载组件靠近第二挂载组件时改变第二磁场强度。
请参阅步骤S3201、S3202,不做赘述。可以理解地,第一磁场强度与第二磁场强度的联合使用,可以提高外挂设备400是否挂载在佩戴设备200的状态判断几率,避免误操作。
步骤S3203:提示外挂设备在框架结构挂载成功的信息。
请参阅步骤S3203,不做赘述。
下面进行一种电子设备的阐述,可应用于上述运输方法中。请参阅图37,其为本申请一实施例中电子设备600的框架示意图。该电子设备600可包括处理器601和存储器602。其中,存储器602存储有计算机程序,计算机程序在被处理器601执行时,用于实现上述任一实施例中的运输方法。
具体地,处理器601控制该电子设备600的操作,处理器601还可以称为CPU(Central Processing Unit,中央处理单元)。处理器601可能是一种集成电路芯片,具有信号的处理能力。处理器601还可以是通用处理器、数字信号处理器(DSP)、专用集成电路(ASIC)、现成可编程门阵列(FPGA)或者其他可编程逻辑器件、分立门或者晶体管逻辑器件、分立硬件组件。通用处理器可以是微处理器或者该处理器也可以是任何常规的处理器等。
存储器602用于存储处理器601执行的程序数据以及处理器601在处理过程中的数据,其中,该存储器602可包括非易失性存储部分,用于存储上述程序数据。在另一实施例中,该存储器602可仅作为处理器601的内存而缓存该处理器601处理过程中的数据,该程序数据实际存储于处理器601之外的设备中,处理器601通过与外部设备连接,通过调用外部存储的程序数据,以执行相应处理。
接下来阐述一种计算机可读存储介质,请参阅图38,其为本申请中一实施例的一种计算机可读存储介质800的框架示意图。此计算机可读存储介质800存储有计算机程序801,此计算机程序801被处理器执行时实现上述控制方法。
该计算机可读存储介质800具体可以为U盘、移动硬盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、磁碟或者光盘等可以存储程序指令的介质,或者也可以为存储有该程序指令的服务器,该服务器可将存储的程序指令发送给其他设备运行,或者也可以自运行该存储的程序指令。
在本申请所提供的几个实施方式中,应该理解到,所揭露的方法以及设备,可以通过其他的方式实现。例如,以上所描述的设备实施方式仅仅是示意性的,例如,模块或单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。
作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本实施方式方案的目的。
另外,在本申请各个实施方式中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。上述集成的单元既可以采用硬件的形式实现,也可以采用软件功能单元的形式实现。
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。
在本申请所提供的几个实施方式中,应该理解到,所揭露的方法以及设备,可以通过其他的方式实现。例如,以上所描述的设备实施方式仅仅是示意性的,例如,模块或单元的划分,仅仅为一种逻辑功能划分,实际实现时可以有另外的划分方式,例如多个单元或组件可以结合或者可以集成到另一个系统,或一些特征可以忽略,或不执行。
作为分离部件说明的单元可以是或者也可以不是物理上分开的,作为单元显示的部件可以是或者也可以不是物理单元,即可以位于一个地方,或者也可以分布到多个网络单元上。可以根据实际的需要选择其中的部分或者全部单元来实现本实施方式方案的目的。
另外,在本申请各个实施方式中的各功能单元可以集成在一个处理单元中,也可以是各个单元单独物理存在,也可以两个或两个以上单元集成在一个单元中。上述集成的单元既可以采用硬件的形式实现,也可以采用软件功能单元的形式实现。
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做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 (23)

  1. 一种头戴式设备,其特征在于,包括:
    佩戴设备;以及
    外挂设备,所述外挂设备包括:
    壳体组件,通过所述壳体组件将所述外挂设备可拆卸地安装在所述佩戴设备上;
    控制系统,安装在所述壳体组件上,包括触摸键组件和光机,所述触摸键组件包括一触摸部,所述控制系统响应于所述触摸部的操作而控制所述头戴式设备;以及
    第一功能镜片模组,安装在所述壳体组件上,用于接收和投射所述光机的光信号。
  2. 根据权利要求1所述的头戴式设备,其特征在于,所述壳体组件包括:
    主壳体;和
    壳体侧盖,在所述主壳体的一侧与所述主壳体连接固定,以形成置物空间。
  3. 根据权利要求2所述的头戴式设备,其特征在于,所述主壳体包括:
    第一壳体,与所述壳体侧盖扣合连接,以形成所述置物空间,所述第一壳体设置第一通孔及第二通孔,所述第一通孔和所述第二通孔均与所述置物空间连通,所述第一功能镜片模组安装在所述第二通孔处;以及
    防护盖,安装在所述第一通孔处,以对所述第一通孔进行遮盖。
  4. 根据权利要求3所述的头戴式设备,其特征在于,所述第一通孔及所述第二通孔位于所述第一壳体在一方向上的两端,所述第一功能镜片模组所在平面与所述一方向之间成夹角设置。
  5. 根据权利要求3所述的头戴式设备,其特征在于,所述第一壳体在与所述壳体侧盖扣合连接的边缘设置连接壁,所述控制系统具有一天线组件,所述天线组件安装在所述连接壁上。
  6. 根据权利要求5所述的头戴式设备,其特征在于,所述连接壁上设置有第一连接件,所述第一连接件与所述壳体侧盖卡扣连接。
  7. 根据权利要求6所述的头戴式设备,其特征在于,所述壳体侧盖靠近所述主壳体的一侧设置第二连接件,所述第二连接件与所述第一连接件卡扣连接,以使所述第一壳体与所述壳体侧盖扣合连接。
  8. 根据权利要求3-7任一项所述的头戴式设备,其特征在于,所述壳体侧盖设置有连通所述置物空间的连通孔,所述触摸部位于所述连通孔内。
  9. 根据权利要求8所述的头戴式设备,其特征在于,所述触摸键组件包括:
    支撑座,安装在所述置物空间内;
    电容柔性电路板,置于所述置物空间内,设置在所述支撑座靠近所述连通孔的一侧;以及
    触摸键,设置在所述电容柔性电路板靠近所述连通孔的一侧,所述触摸部设置在所述触摸键上,所述电容柔性电路板响应于对所述触摸键组件的触摸操作而控制所述头戴式设备。
  10. 根据权利要求9所述的头戴式设备,其特征在于,所述触摸键组件还包括:
    驱动装置,置于所述置物空间内,连接所述支撑座与所述第一壳体,用于驱动所述支撑座向靠近所述连通孔的一侧运动或向远离所述连通孔的一侧运动,所述触摸部响应于所述支撑座向靠近所述连通孔的一侧运动而自所述连通孔向所述置物空间外伸出,或响应于所述支撑座向远离所述连通孔的一侧运动而自所述连通孔向所述置物空间内缩回。
  11. 根据权利要求9或10所述的头戴式设备,其特征在于,所述触摸键包括触摸主体,所述触摸主体设置在所述电容柔性电路板上,所述触摸部设置在所述触摸主体远离所述电容柔性电路板的一侧,所述壳体侧盖朝向所述主壳体的一侧设置有让位槽,所述连通孔位于所述让位槽内,所述让位槽用于容纳所述触摸主体。
  12. 根据权利要求2-7任一项所述的头戴式设备,其特征在于,所述主壳体设置有第一挂载组件,所述佩戴设备设置有第二挂载组件,所述第二挂载组件用于与所述第一挂载组件可拆卸连接,以将所述外挂设备挂载于所述佩戴设备上。
  13. 根据权利要求12所述的头戴式设备,其特征在于,所述主壳体远离所述壳体侧盖的一侧设置有装配槽,以容纳所述第二挂载组件。
  14. 根据权利要求13所述的头戴式设备,其特征在于,所述装配槽的底面设置固定槽,所述第一挂载组件包括:
    第一磁铁件,设置在所述固定槽内,用于与所述第二挂载组件磁作用力连接;以及
    第一装饰片,设置在所述装配槽的底面,用于遮盖所述固定槽。
  15. 根据权利要求14所述的头戴式设备,其特征在于,所述第一磁铁件的数量为多个,多个所述第一磁铁件中心对称设置,相对于中心点相互对称的两个所述第一磁铁,其磁极相反。
  16. 根据权利要求15所述的头戴式设备,其特征在于,所述第一磁铁件包括:
    磁铁,用于产生磁作用力,以与所述第二挂载组件磁作用力连接;和
    隔离罩,设置在所述磁铁的表面,用于隔绝所述磁铁的磁作用力,所述隔离罩在所述第一磁铁件朝向所述第一装饰片一侧的位置设置开口。
  17. 根据权利要求14所述的头戴式设备,其特征在于,所述控制系统设置有第一外接接头,所述装配槽内设置有让位孔以连通所述装配槽与所述置物空间,所述第一外接接头安装在所述让位孔内,所述第一装饰片设置有与所述让位孔连通的孔。
  18. 根据权利要求3-5任一项所述的头戴式设备,其特征在于,所述控制系统还包括:
    主板模组,安装在所述置物空间内;
    电池模组,安装在所述置物空间内,用于为所述控制系统供电;以及
    扬声器,与主板模组电连接,安装在所述第一通孔处。
  19. 根据权利要求18所述的头戴式设备,其特征在于,控制系统还包括散热组件,所述散热组件用于对所述电池模组和所述主板模组进行散热。
  20. 根据权利要求1所述的头戴式设备,其特征在于,所述第一功能镜片模组包括:
    第一镜片,为光波导镜片;以及
    镜框,安装在所述壳体组件上,用于安装所述第一镜片及所述光机。
  21. 根据权利要求20所述的头戴式设备,其特征在于,所述镜框与所述壳体组件绕转动轴转动连接,所述镜框远离所述转动轴的一端配置为在所述镜框相对于所述壳体组件转动时,向靠近所述壳体组件的一侧运动,以折叠所述镜框,或向远离所述壳体组件的一侧运动,以展开所述镜框。
  22. 根据权利要求20所述的头戴式设备,其特征在于,所述镜框包括:
    镜框主体,围设在所述第一镜片的周围,以固定连接所述第一镜片;以及
    第一连接臂,安装在所述镜框主体的一端,安装在所述壳体组件上,所述光机安装在所述第一连接臂上。
  23. 根据权利要求1所述的头戴式设备,其特征在于,所述佩戴设备包括:
    框架结构,所述外挂设备可拆卸安装在所述框架结构上;以及
    第二功能镜片模组,安装在所述框架结构上,当所述外挂设备安装在所述框架结构上时,所述第二功能镜片模组与所述第一功能镜片模组层叠设置。
PCT/CN2022/109006 2021-09-15 2022-07-29 头戴式设备 WO2023040484A1 (zh)

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JP2005072867A (ja) * 2003-08-22 2005-03-17 Matsushita Electric Ind Co Ltd 頭部装着型表示装置
CN104160320A (zh) * 2012-01-05 2014-11-19 谷歌公司 具有输入和输出结构的可佩戴设备组合件
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