WO2023056909A1 - 一种智能眼镜及其制造方法 - Google Patents

一种智能眼镜及其制造方法 Download PDF

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Publication number
WO2023056909A1
WO2023056909A1 PCT/CN2022/123630 CN2022123630W WO2023056909A1 WO 2023056909 A1 WO2023056909 A1 WO 2023056909A1 CN 2022123630 W CN2022123630 W CN 2022123630W WO 2023056909 A1 WO2023056909 A1 WO 2023056909A1
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WIPO (PCT)
Prior art keywords
module
cavity
smart glasses
mirror leg
temple
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PCT/CN2022/123630
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English (en)
French (fr)
Inventor
霍二威
李立军
陈珂
刘遵昭
姚天伟
翟立铭
夏勇峰
Original Assignee
北京蜂巢世纪科技有限公司
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Publication of WO2023056909A1 publication Critical patent/WO2023056909A1/zh

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    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B27/00Optical systems or apparatus not provided for by any of the groups G02B1/00 - G02B26/00, G02B30/00
    • G02B27/01Head-up displays
    • G02B27/017Head mounted
    • G02B27/0176Head mounted characterised by mechanical features
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B27/00Optical systems or apparatus not provided for by any of the groups G02B1/00 - G02B26/00, G02B30/00
    • G02B27/01Head-up displays
    • G02B27/0101Head-up displays characterised by optical features
    • G02B2027/0138Head-up displays characterised by optical features comprising image capture systems, e.g. camera
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B27/00Optical systems or apparatus not provided for by any of the groups G02B1/00 - G02B26/00, G02B30/00
    • G02B27/01Head-up displays
    • G02B27/017Head mounted
    • G02B2027/0178Eyeglass type

Definitions

  • This patent belongs to the technical field of intelligent equipment. Specifically, it relates to smart glasses and a manufacturing method. In particular, head-mounted smart glasses with temples and methods of manufacturing the same.
  • Smart smart devices have been widely used in existing technologies. For example, smart watches, smart bracelets, smart glasses, etc. Among them, smart glasses have the characteristics of being convenient to display images and convenient to use, and have become more and more popular among consumers.
  • This patent is proposed based on the above-mentioned needs of the background technology.
  • the technical problem to be solved in this patent is to provide a kind of smart glasses and its manufacturing method, so that rich smart structures can be conveniently installed in the limited glasses space.
  • a kind of smart glasses characterized in that it includes: a first module, the first module includes a front beam part, and camera modules and optical-mechanical modules fixedly arranged on the left and right sides of the front beam part; a second module, the second module It includes a rear beam part, and a first mirror leg and a second mirror leg fixedly arranged on the left and right sides of the rear beam part; the first mirror leg has a first cavity, and the second mirror leg has a second cavity ; Wherein, the first module and the second module are plugged and connected; the front beam part and the rear beam part enclose a hollow channel communicating with the first cavity and the second cavity, and the camera module at least Partially disposed in the first cavity, the optical-mechanical module is at least partially disposed in the second cavity.
  • the first cavity is located at the front end of the first temple, and the second cavity is located at the front end of the second temple.
  • the first cavity and the second cavity are symmetrical to each other.
  • the first temple and the second temple are symmetrical to each other.
  • the left and right ends of the front beam part are respectively fixedly connected to the camera module and the optical machine module; the left and right ends of the rear beam part are respectively fixedly connected to the first temple and the second temple.
  • the first temple includes a front end, a rear end, an inner side and an outer side, the inner side is basically a plane, and the front end of the outer side of the first temple protrudes outwards and downwards to form a first cavity;
  • the first cavity of the mirror leg gradually narrows upward and inward from the front to the rear; the rear end of the first mirror leg is provided with a bending part matching the base of the ear.
  • the second temple includes a front end, a rear end, an inner side and an outer side; the inner side is basically a plane, and the front end of the outer side of the second temple protrudes outwards and downwards to form a second cavity;
  • the second cavity of the second mirror leg gradually narrows upward and inward from the front to the rear; the rear end of the mirror leg is provided with a bending part that matches the base of the ear.
  • the camera module and the optical-mechanical module both include: a panel, an optical device, and a control circuit board; the panel is arranged on both sides of the front beam, and closes the cavity of the temple from the front end of the temple.
  • the optical device is arranged on the front surface of the panel; the control circuit board is arranged on the rear surface of the panel and is inserted into the cavity through the front opening of the cavity in the temple.
  • this patent also discloses a method for manufacturing smart glasses, manufacturing the smart glasses described in any one of the above, characterized in that the method includes: obtaining a first module, obtaining a second module; A module is inserted into the second module and fixes the first module and the second module.
  • obtaining the first module includes fixing an optical engine and a camera on the front transverse part.
  • the optical components of the optical engine and the camera are arranged on the front surface of the front beam; the control circuit board of the optical engine and the camera is arranged on the rear surface of the front beam.
  • the smart glasses are divided into front and rear modules, the front module is used to carry the main optical and circuit components, and the rear module uses the mirror legs to provide installation space.
  • the integrated front module and rear module are put together again, which can reduce the difficulty of assembly and provide ample space for setting complex control devices, thereby improving the convenience of installation and operation and providing better for smart glasses. performance.
  • Fig. 1 is a structural diagram of a kind of smart glasses in the specific embodiment of this patent;
  • Fig. 2 is a structural diagram of the first half of the smart glasses in the specific embodiment of the patent;
  • Fig. 3 is a structural diagram of the second half of the smart glasses in the specific embodiment of the patent.
  • Figure 4 is a schematic diagram of the assembly of the front and rear parts of the patented smart glasses
  • Fig. 5 is a flowchart of a manufacturing method of smart glasses in a specific embodiment of the present patent.
  • a smart glasses 1 provided in this embodiment has a structure as shown in FIG. 1 to FIG. 4 .
  • the direction is defined as follows: as shown in Figure 1, the direction of the smart glasses toward the human eye is defined as the rear, and the direction away from the human eye is defined as the front; the direction of the smart glasses toward the top of the human head is defined as the top, and the direction toward the human feet
  • the direction of the smart glasses is defined as the bottom; the side of the smart glasses close to the face is defined as the inner side, and the side away from the face can be the outer side.
  • the definitions of up, down, inside, outside, front and back will be different depending on the frame of reference. Therefore, in this patent, the definition of the above position is used as an example to describe the technical solution of this specific embodiment.
  • the smart glasses 1 first have the form of glasses, that is, glasses understood by those of ordinary skill, and its notable feature is that it includes temples, and the temples include left temple 2 and right temple 3 , are arranged on both sides of the human face respectively, and the mirror legs are placed on the upper part of the people's ears through the bracket 4 bent downwards at the rear side of the mirror legs.
  • Adopt crossbeam 5 to connect between left side mirror leg 2 and right side mirror leg 3, described crossbeam is set across the width direction of people's face, and described crossbeam is provided with nose support 6, so that in the position of nose, preferably bridge of the nose position The front end of the glasses is supported, thus forming a glasses structure that can be stably mounted on the face of a person.
  • the smart glasses may or may not include lenses, and when lenses are provided, the lenses are preferably a pair, connected to the beam.
  • the lens can be detachably connected.
  • smart glasses are called smart is that in this specific embodiment, their main functions include smart functions, such as taking pictures and displaying them through near-eye display devices. In addition to taking pictures and near-eye display, the smart glasses may also optionally include touch operations to complete computer program instructions and other functions.
  • the smart glasses include two front and rear modules, that is, the first module 7 and the second module 8, and the assembly of the first module and the second module facilitates the manufacture of the device.
  • the first module includes a front beam part 9, and a camera module 10 and an optical-mechanical module 11 respectively arranged on the left and right sides of the front beam part.
  • the front beam part is a half area of the beam, and the front beam part is arranged across the entire face.
  • the front beam part is integrally formed into a plate shape, including beam plates on both sides of the beam.
  • the plate-shaped front beam part is convenient for carrying and installing the optical-mechanical module and the camera module, and can be conveniently blocked
  • the opening at the front end of the second module forms a closed cavity structure inside the smart glasses.
  • the camera module On one side of the front beam part, as shown in the figure, the left side is provided with a camera module 10, the camera module includes a panel 101, an optical device 102 and a control circuit board 103; the panel 101 and the front beam part is fixedly connected or integrally formed as a part of the front beam part, preferably, the panel is arranged at the left end part of the front beam part.
  • the camera module is set up with the panel and its attached frame as a supporting support. Since there are no obstructions on the front and back of the panel, in this case, setting the above structure is easy to operate and realize during the manufacturing and assembling process.
  • the optical assembly 102 of the camera is arranged on the outside of the panel 101.
  • the optical assembly preferably includes a lens assembly and the like. Since the lens assembly needs to collect light from the environment, it needs to be installed on the panel. outside, or at least toward the outside of the panel.
  • a control circuit board 103 is provided on the inside of the panel assembly, and the control circuit board can be a single circuit board or can be formed by multiple circuit boards, for example, the control circuit board of the camera, the battery, the main control chip of the glasses, etc. .
  • the control circuit board can be integrally packaged together, which is beneficial to maintain the overall shape of the circuit board and facilitate assembly into the temple.
  • the optical-mechanical module 11 is arranged on the right side of the front beam, and the optical-mechanical module is a component for providing near-eye display. Users wearing smart glasses can observe images through the optical machine, and the images can also be superimposed Play the role of augmented reality in the real scene.
  • the optomechanical components can adopt components in the prior art, including optical mirror group 112 (optical element), display (not shown in the figure) and control circuit board 113, and the control circuit board 113 controls the corresponding image of the display , and transmitted to the human eye through the optical mirror group 112.
  • the optical elements of the optical-mechanical module are also arranged on the outside of the right side panel 111 in this specific manner, so as to extend to the front of the human eye, and the control circuit board 113 of the optical-mechanical module also extends backward from the right side panel, similarly
  • the control circuit board 113 may also include one or more circuit boards. Preferably, they are also packaged together in an integral package to maintain the overall shape of the circuit boards and facilitate assembly into the temple.
  • the camera module and the optical-mechanical module can be installed on both sides of the front beam without obstruction, so that components with complex mechanical structures and circuit structures can be easily installed, improving the work efficiency.
  • the smart glasses further include a second module 8, the second module includes a rear beam part 12, the rear beam part is opposite to the front beam part, and the rear beam part is provided with
  • the front beam and the rear beam enclose a channel to connect the left and right sides of the glasses.
  • the channel can be used for wiring, so that the space for wiring can be increased, so that thinner beams can meet the needs of wiring; due to the large space for wiring, relatively balanced structures can be set on the left and right sides of the smart glasses , while the communication on both sides can still be smooth.
  • the second module also includes a first mirror leg arranged on the left and right sides of the rear beam, that is, the left mirror leg 2 and a second mirror leg, that is, the right mirror leg 3, and the first mirror leg has a first cavity 14 , the second mirror leg has a second cavity 15; the ends on both sides of the groove 13 of the rear beam part communicate with the first cavity 14 and the second cavity 15, so that the The wires in the first cavity or the second cavity are led to the other side through the channel in the beam.
  • a first mirror leg arranged on the left and right sides of the rear beam, that is, the left mirror leg 2 and a second mirror leg, that is, the right mirror leg 3, and the first mirror leg has a first cavity 14 , the second mirror leg has a second cavity 15; the ends on both sides of the groove 13 of the rear beam part communicate with the first cavity 14 and the second cavity 15, so that the The wires in the first cavity or the second cavity are led to the other side through the channel in the beam.
  • the first cavity and the second cavity are respectively arranged in the temples on the left and right sides, and are located at the front of the temples. That is to say, in this particular embodiment, the mirror legs are basically a whole, and a cavity is provided inside the mirror leg shell; through this arrangement, the mirror legs can be manufactured basically as a whole, thereby reducing the number of assembled parts. quantity.
  • the inner sides of the mirror legs are basically horizontal; in order to increase the volume of the cavity, the first cavity and the second cavity protrude outward from the left and right sides of the mirror legs respectively, so as not to Wearing will be affected, and at the same time, the accommodation volume of the cavity can be increased to facilitate the setting of more complex and large-scale circuit structures.
  • the front ends of the first cavity and the second cavity have openings, so that the first module part can be inserted thereinto, and at the rear of the first cavity and the second cavity, that is, at the position in the middle of the temple,
  • the cavity tapers to provide a smooth transition to the ear rests at the back of the temples.
  • the cavity is preferably gradually narrowed from bottom to top. This way does not affect the experience of wearing glasses.
  • the narrowed part can be used to set openings to realize the connection of other devices outside the glasses to the glasses. .
  • the mirror legs on the left and right sides are basically symmetrically arranged, and the shape and size of the first cavity and the second cavity are also basically the same and symmetrically arranged, which is conducive to the balance of wearing glasses and improving the wearing experience.
  • the first module and the second module are combined together by plugging. Specifically, when the two are combined, the strong beam part and the rear beam part are relatively attached to the front beam part and the rear beam part are opposite to each other to form a channel.
  • the control circuit boards of the camera module and the optical-mechanical module on both sides of the first module are respectively inserted into the first cavity and the second cavity in the first temple and the second temple.
  • the shape of the control circuit board in the first cavity and the second cavity matches the shape of the first cavity and the second cavity; after such insertion, the cavity size of the mirror leg It can be as small as possible, reducing the weight of the smart glasses and maintaining a suitable shape.
  • the panels of the camera module and the optical-mechanical module respectively close the openings of the first cavity and the second cavity at the ends of the first cavity and the second cavity, so that the glasses
  • the interior forms an inner space formed by the first cavity, the second cavity and the pipe connecting the first cavity and the second cavity, and various circuit structures are arranged in the inner space.
  • the second module is mainly formed as an accommodating space. After the first module is assembled, the first module can be conveniently inserted into the accommodating space of the second module based on the positioning of the front and rear modules. And in this embodiment, the space for the components of the smart glasses is not only sufficient, but also the left and right balance is kept in the shape of the glasses as a whole, so that devices with better performance can be installed to optimize the functions of the smart glasses.
  • a method for manufacturing smart glasses is provided, and the method for manufacturing smart glasses in this specific embodiment is used to manufacture the smart glasses described in Embodiment 1.
  • the method includes the following steps:
  • the first module may be an assembled first module. That is, the first module including the front cross member, the camera module and the optical-mechanical module.
  • the optical machine and the camera are fixed on the front beam; the optical components of the optical machine and the camera are arranged on the front surface of the front beam; the control circuit board of the optical machine and the camera is arranged on the The rear surface of the front cross member.
  • obtaining the first module may also include assembling various parts into the first module, such as assembling the optical-mechanical module and the camera module, and then fixing them to the front beam.
  • the first module is not interfered by the front and rear directions of the front beam during the manufacturing process, so that there is a large space for setting the working mechanism or facilitating manual operation, thereby improving the convenience of assembly and improving work efficiency.
  • the second module is the second module described in the first embodiment.
  • Obtaining the second module may include the structure of the second module that has already been manufactured, and may also include the process of manufacturing the second module, such as manufacturing through mold manufacturing, three-dimensional printing, or assembly.
  • a modular assembly method is adopted to manufacture smart glasses, which reduces the difficulty of assembly, facilitates assembly, and is beneficial to improve the assembly efficiency and product quality of smart glasses.

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

Abstract

一种智能眼镜及其制造方法。智能眼镜包括第一模块和第二模块,第一模块和第二模块插接连接。第一模块包括前横梁部(9)以及在前横梁部(9)左右两侧固定设置的摄像头模块(10)和光机模块(11)。第二模块包括后横梁部(12)以及在后横梁部(12)左右两侧固定设置的第一镜腿(2)和第二镜腿(3)。第一镜腿(2)具有第一空腔(14);第二镜腿(3)具有第二空腔(15)。前横梁部(9)和后横梁部(12)围成一个中空的通道连通第一空腔(14)和第二空腔(15),且摄像头模块(10)至少部分地设置于第一空腔(14)内,光机模块(11)至少部分地设置在第二空腔(15)内。这种智能眼镜的装配难度得到减小,并具有足够的空间设置各种控制器件,从而在提高安装操作方便性的同时能够为智能眼镜提供更好的性能。

Description

一种智能眼镜及其制造方法 技术领域
本专利属于智能装备技术领域。具体而言,涉及一种智能眼镜及制造方法。尤其是具有镜腿的头戴式智能眼镜及其制造方法。
背景技术
可穿戴式智能设备已经在现有技术当中广为应用。例如,智能手表、智能手环、智能眼镜等。其中智能眼镜其具有便于呈现图像方便使用的特点,已经越来越受消费者的欢迎。
随之,对智能眼镜的功能需求也越来越多。但是受制于眼镜的形态,采用眼镜形态的智能眼镜已经很难以承载如此之多的电路、电池和结构;而采用头盔式或类似的形态的产品,容易给佩戴造成困扰,因此也限制了其使用的场所。
此外随着智能眼镜功能的丰富,其结构也越来越复杂,制造难度越来越高。由此带来成本的上升、生产效率低下以及维修的不便。因此下现有技术中需要一种能够方便佩戴而且能够方便制造的智能眼镜。
发明内容
本本专利正是基于背景技术的上述需求而提出的,本专利要解决技术问题是提供一种智能眼镜及其制造方法,以能够在有限的眼镜空间内方便地安装丰富的智能结构。
为了解决上述技术问题,本专利中的技术方案包括:
一种智能眼镜,其特征在于,包括:第一模块,所述第一模块包括前横梁部,以及前横梁部左右两侧固定设置的摄像头模块和光机模块;第二模块,所述第二模块包括后横梁部,以及设置在后横梁部左右两侧固定设置的第一镜腿和第二镜腿;所述第一镜腿具有第一空腔,所述第二镜腿具有第二空腔;其中,所述第一模块和第二模块插接连接;所述前横梁部和 后横梁部围成一个中空的通道连通所述第一空腔和第二空腔,且所述摄像头模块至少部分地设置于所述第一空腔内,所述光机模块至少部分地设置在第二空腔内。
优选地,所述第一空腔位于所述第一镜腿的前端,所述第二空腔位于所述第二镜腿的前端。
优选地,所述第一空腔和第二空腔互相对称。
优选地,所述第一镜腿和第二镜腿互相对称。
优选地,所述前横梁部的左右两端分别与所述摄像头模块和光机模块固定连接;所述后横梁部在左右两端分别与所述第一镜腿、第二镜腿固定连接。
优选地,所述第一镜腿包括前端、后端、内侧和外侧,所述内侧基本上为平面,所述第一镜腿的外侧边前端向外向下凸出,形成第一空腔;所述镜腿的第一空腔从前向后逐渐向上向内收窄;所述第一镜腿的后端设置有与耳根配合的弯折部。
优选地,所述第二镜腿包括前端、后端、内侧和外侧;所述内侧基本上为平面,所述第二镜腿的外侧边前端向外向下凸出,形成第二空腔;所述第二镜腿的第二空腔从前向后逐渐向上向内收窄;所述镜腿的后端设置有与耳根配合的弯折部。
优选地,所述摄像头模块和光机模块均包括:面板、光学器件和控制电路板;所述面板,设置在所述前横梁部的两侧端部,并从镜腿的前端封闭镜腿空腔的开口;所述光学器件,设置在所述面板的前表面;所述控制电路板,设置在面板的后表面,经由镜腿中的空腔的前端开口插入到所述空腔中。
此外,本专利还公开了一种智能眼镜的制造方法,制造上述任一项所述的智能眼镜,其特征在于,所述方法包括:获取第一模块,获取第二模块;将所述第一模块插入到所述第二模块中,并将第一模块和第二模块固 定。
优选地,其中,获取第一模块包括将光机和摄像头固定于所述前横部。
优选地,将光机和摄像头的光学部件设置在前横梁部的前表面;将光机和摄像头的控制电路板设置在所述前横梁部的后表面。
通过采用上述技术方案,将智能眼镜分为前后两个模块,前方的模块用于承载主要的光学和电路器件,后方的模块利用镜腿提供安装空间。整体化的前方模块和后方模块再一次拼合到一起,能够减小装配的难度,并提供丰富的空间设置复杂的控制器件,从而提高了安装操作方便特性的同时提能够为智能眼镜提供更好的性能。
附图说明
为了更清楚地说明本说明书实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本说明书实施例中记载的一些实施例,对于本领域普通技术人员来讲,还可以根据这些附图获得其他的附图。
图1为本专利具体实施方式中一种智能眼镜的结构图;
图2为本专利具体实施方式中智能眼镜前半部分的结构图;
图3为本专利具体实施方式中智能眼镜后半部分的结构图;
图4为本专利智能眼镜前后两部分组装示意图;
图5为本专利具体实施方式中智能眼镜制造方法的流程图。
具体实施方式
为使本申请实施例的目的、技术方案和优点更加清楚,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。
为便于对本申请实施例的理解,下面将结合附图以具体实施例做进一步的解释说明,实施例并不构成对本申请实施例的限定。
实施例一
本实施例提供的一种智能眼镜1,其结构如图1到图4所示。在本具体实施方式中示例性地对所述智能眼镜镜的前、后、左、右、上、下。方向定义如下:如图1所示,所述智能眼镜朝向人眼的方向定义为后方,与之相对的远离人眼的方向定义为前方;智能眼镜朝向人头顶的方向定义为上方,朝向人脚的方向定义为下方;智能眼镜靠近人脸的一侧定义为内侧远离人脸的一侧可以为外侧。需要说明的是随着参照系的不同,上、下、内、外、前、后的定义则会有所不同。因此在本专利中以上述位置的定义进行示例性说明,以便于描述本具体实施方式的技术方案。
在本具体实施方式中,智能眼镜1首先具有眼镜的形态,即普通技术人员所理解的眼镜,其显著的特征是包括镜腿,所述镜腿包括左侧镜腿2和右侧镜腿3,分别在人脸两侧设置,通过镜腿后侧向下弯折的托架4将镜腿放置在人的耳根上部。左侧镜腿2和右侧镜腿3之间采用横梁5连接,所述横梁横跨人脸的宽度方向设置,所述横梁上设置有鼻托6,以在鼻子的部位,优选是鼻梁部位支撑所述眼镜的前端,这样就形成为一个能够稳固架设在人脸上的眼镜结构。
在本具体实施方式中,所述智能眼镜可以包括镜片也可以不包括镜片,当设置有镜片时,镜片优选为一对,与横梁连接。在本具体实施方式中所述镜片可以采用可拆卸地连接。
智能眼镜之所以称之为智能,在本具体实施方式中其主要功能包括了智能功能,例如拍照、以及通过近眼显示设备显示。除了拍照、近眼显示之外,所述智能眼镜可选地还可以包括触控操作,完成计算机程序指令等其它功能。
由于是眼镜的形态,显著区别于眼罩、头盔等产品,智能眼镜的重量和空间尺寸都存在明显的限制。但是随着消费者对于智能功能的需求越来越高, 仅以拍照为例,对于拍照的性能的要求导致拍照元器件的尺寸越来越大,与之而来的是电池、处理器等装置也需要性能更加强大的模块支持,由此不可避免地带来尺寸上的增加以及系统复杂程度的增加,这与方便制造以及眼镜佩戴舒适性之间形成主要的矛盾。
在本具体实施方式中,所述智能眼镜包括前后两个模块,即第一模块7和第二模块8,通过第一模块和第二模块的拼装来方便设备的制造。
如图所示,在本具体实施方式中,所述第一模块包括前横梁部9,以及分别设置在前横梁部左右两侧设置的摄像头模块10和光机模块11。
所述前横梁部是横梁的一半区域,在前横梁部横跨整个脸部设置。在本具体实施方式中,所述前横梁部整体形成为板状,包括横梁板在横梁两侧面板,板状的前横梁部便于承载和安装光机模块和摄像头模块,并且可以方便地封堵第二模块前端的开口,以在智能眼镜内部形成封闭的空腔结构。
在所述前横梁部的一侧,如图所示为左侧,设置有摄像头模块10,所述摄像头模块包括面板101、光学器件102和控制电路板103;所述面板101与所述前横梁部固定连接或者是一体成型为前横梁部的一部分,优选地,所述面板设置在所述前横梁部的左侧端部。以所述面板及其附属的框架作为承载依托设置摄像头模块,由于面板前后均没有遮挡物的遮挡,因此,在这种情况下,设置上述结构是在制造组装过程中易于操作和实现的。
在本具体实施方式中,面板101的外侧设置有摄像头的光学组件102,在所述摄像头中,光学组件优选地包括镜头组件等.由于镜头组件需要向外采集环境的光线因此需要设置在面板的外侧,或者至少朝向面板的外侧。所述面板组件的朝内设置有控制电路板103,所述控制电路板可以是单一的电路板也可以由多个电路板形成,例如,摄像头的控制电路板、电池、眼镜的主控芯片等。所述控制电路板可以整体封装在一起,这样就有利于保持电路板的整体造型便于组装到镜腿之中。
所述光机模块11设置在所述前横梁部的右侧,所述光机模块是用于提供近眼显示的部件,佩戴智能眼镜的使用者可以通过光机观察图像,所述图像还可以叠加到现实场景中起到增强现实的作用。光机部件可以采用现有技术中的部件,包括光学镜组112(光学元件)、显示器(图中未示出)和控制电路板113,所述控制电路板113控制所述显示器现实相应的图像,并通过光学镜组112传递至人眼。所述光机模块的光学元件在本具体方式中也设置右侧面板111的外侧,以便于延伸至人眼之前,所述光机模块的控制电路板113也从右侧面板向后延伸,同样,所述控制电路板113也可以包括一个或多个电路板,优选地,也采用整体封装的方式封装在一起以保持电路板的整体造型便于组装到镜腿之中。
在本具体实施方式中,通过所述第一模块的结构,可以在前横梁部两侧不受阻挡地安装摄像头模块和光机模块,使得具有复杂机械结构和电路结构的部件容易被安装,提高了工作效率。
在本具体实施方式中,所述智能眼镜还包括第二模块8,所述第二模块包括后横梁部12,所述后横梁部和所述前横梁部相对设置,所述后横梁部开设有开口朝前的凹槽13,当所述前横梁和后横梁相对抵靠之后,前横梁和后横梁合围成一个通道,将眼镜的左右两侧贯通连接起来。所述通道可以提供走线之用,从而能够提高走线的空间,使得较细的横梁就可以满足走线的需求;由于走线空间大,可以在智能眼镜的左右两侧设置相对平衡的结构,而两侧的通信仍然可以较为通畅。
所述第二模块还包括设置在后横梁部左右两侧的第一镜腿,即左镜腿2和第二镜腿,即右镜腿3,所述第一镜腿具有第一空腔14,所述第二镜腿具有第二空腔15;所述后横梁部的凹槽13两侧端部与所述第一空腔14和第二空腔15相连通,这样可以方便地将所述第一空腔或第二空腔中的电线通过所述横梁中的通道引向另外一侧。
在本具体实施方式中,所述第一空腔和第二空腔分别设置在左右两侧 的镜腿中,位于镜腿的前部。也就是说,在本具体实施方式中,所述镜腿基本上为一个整体,在镜腿外壳内部设置空腔;通过这种设置,可以基本上整体地制造镜腿,从而减少组装的零件的数量。在本具体实施方式中,所述镜腿的内侧基本上水平;为了加大空腔的体积,所述第一空腔和第二空腔分别从左右两侧的镜腿向外突出设置,这样不会影响佩戴,同时又可以提高空腔的容纳体积便于设置更加复杂和大型的电路结构。
所述第一空腔和第二空腔的前端具有开口,以便于所述第一模块部件插入其中,在所述第一空腔和第二空腔的后部,即镜腿中部的位置,空腔逐渐收窄从而平滑过渡到镜腿后端的耳根部托架。在本具体实施方式中,所述空腔优选地由下向上逐渐收窄,这样的方式不影响佩戴眼镜时的体验,此外可以利用收窄的部分设置开口从而实现眼镜外的其它设备与眼镜连接。
在第二模块中,左右两侧的镜腿基本上对称设置,第一空腔和第二空腔的造型和尺寸也基本相同且对称设置,这样有利于眼镜佩戴时的平衡提升佩戴体验。
所述第一模块和第二模块通过插接的方式组合在一起。具体而言,二者组合时,所述强横梁部和所述后横梁部相对贴合前横梁部和后横梁部彼此相对组成一个通道。所述第一模块两侧的摄像头模块和光机模块的控制电路板分别插入到所述第一镜腿和第二镜腿中的第一空腔和第二空腔之中,在本具体实施方式中,所述第一空腔和第二空腔之中的所述控制电路板的形状与第一空腔和第二空腔的形状相配;这样插接之后,所述镜腿的空腔尺寸可以尽可能地小,减轻智能眼镜的重量和便于保持适宜的形状。所述第一模块中,摄像头模块和光机模块的面板分别在所述第一空腔和第二空腔的端部封闭所述第一空腔和第二空腔的开口,这样在所述眼镜内部就形成了由第一空腔、第二空腔以及连接所述第一空腔和第二空腔之间的管道所形成的内部空间,在此内部空间中设置有各种电路结构。
因为在第一模块中,前横梁部的前后两侧没有阻挡,因此可以由两面进行操作,在安装光学元件和控制电路时可以不受空间的限制,能够方便的安装。而所述第二模块主要形成为容纳空间,当第一模块组装完成后,基于前后模块的定位可以将第一模块方便的插入到第二模块的容纳空间中。并且在本实施例中,组成的智能眼镜容纳元器件的空间不仅充裕而且左右平衡在整体保持在眼镜形态的前提下,可以安装性能更好的器件,优化智能眼镜的功能。
实施例二
在本实施例中提供了一种智能眼镜的制造方法,本具体实施例中的智能眼镜的制造方法用于制造如实施例一所述的智能眼镜。
在本实施例二中,所述方法包括如下步骤:
S001获取第一模块
在本步骤中,所述第一模块可以是组装好的第一模块。即包括前横梁部、摄像头模块和光机模块的第一模块。在所述第一模块中,光机和摄像头固定于所述前横梁部上;将光机和摄像头的光学部件设置在前横梁部的前表面;光机和摄像头的控制电路板设置在所述前横梁部的后表面。
除了上述方案外,在本具体实施方式中,获取第一模块还可以包括将各种零件拼装成第一模块的方案,例如将光机模块、摄像头模块组装,然后将其与前横梁部固定。
第一模块在制造过程中不受所述前横梁部前后方向上的干扰,这样有很大的空间设置工作机构或者便于人工操作,从而提高组装的方便程度和提高工作效率。
S002获取第二模块
在本步骤中,第二模块即如实施例一所描述的第二模块。获取第二模块可以包括已经制作好的第二模块的结构,也可以涵盖制造第二模块的过程,例如通过模具制造或者通过三维打印的方式制造,或者通过拼装的方 式制造等制造过程。
S003将所述第一模块插入到所述第二模块中,并将第一模块和第二模块固定。
在本步骤中,将第一模块的电路板插入到第二模块的空腔中,将第一模块和第二模块的两半部分横梁,即第一模块的前横梁部和第二模块的后横梁部相对贴合,然后将第一模块和第二模块组合在一起,如此便形成一个内部具有容纳电路空腔的智能眼镜。
本实施例中采用模块化的拼装方式制造智能眼镜,减小了装配的难度,便于组装,有利于提高智能眼镜的组装效率和产品质量。
以上所述的具体实施方式,对本申请的目的、技术方案和有益效果进行了进一步详细说明,所应理解的是,以上所述仅为本申请的具体实施方式而已,并不用于限定本申请的保护范围,凡在本申请的精神和原则之内,所做的任何修改、等同替换、改进等,均应包含在本申请的保护范围之内。

Claims (11)

  1. 一种智能眼镜,其特征在于,包括:
    第一模块,所述第一模块包括前横梁部,以及前横梁部左右两侧固定设置的摄像头模块和光机模块;
    第二模块,所述第二模块包括后横梁部,以及设置在后横梁部左右两侧固定设置的第一镜腿和第二镜腿;所述第一镜腿具有第一空腔,所述第二镜腿具有第二空腔;
    其中,所述第一模块和第二模块插接连接;所述前横梁部和后横梁部围成一个中空的通道连通所述第一空腔和第二空腔,且所述摄像头模块至少部分地设置于所述第一空腔内,所述光机模块至少部分地设置在第二空腔内。
  2. 根据权利要求1所述的一种智能眼镜,其特征在于,所述第一空腔位于所述第一镜腿的前端,所述第二空腔位于所述第二镜腿的前端。
  3. 根据权利要求1或2中任一项所述的一种智能眼镜,其特征在于,所述第一空腔和第二空腔互相对称。
  4. 根据权利要求1所述的一种智能眼镜,其特征在于,所述第一镜腿和第二镜腿互相对称。
  5. 根据权利要求4所述的一种智能眼镜,其特征在于,所述前横梁部的左右两端分别与所述摄像头模块和光机模块固定连接;所述后横梁部在左右两端分别与所述第一镜腿、第二镜腿固定连接。
  6. 根据权利要求5所述的一种智能眼镜,其特征在于,所述第一镜腿包括前端、后端、内侧和外侧,所述内侧基本上为平面,所述第一镜腿的外侧边前端向外向下凸出,形成第一空腔;所述镜腿的第一空腔从前向后逐渐向上向内收窄;所述第一镜腿的后端设置有与耳根配合的弯折部。
  7. 根据权利要求6或7所述的一种智能眼镜,其特征在于,所述第二镜腿包括前端、后端、内侧和外侧;所述内侧基本上为平面,所述第二镜 腿的外侧边前端向外向下凸出,形成第二空腔;所述第二镜腿的第二空腔从前向后逐渐向上向内收窄;所述镜腿的后端设置有与耳根配合的弯折部。
  8. 根据权利要求5所述的一种智能眼镜,其特征在于,所述摄像头模块和光机模块均包括:面板、光学器件和控制电路板;
    所述面板,设置在所述前横梁部的两侧端部,并从镜腿的前端封闭镜腿空腔的开口;
    所述光学器件,设置在所述面板的前表面;
    所述控制电路板,设置在面板的后表面,经由镜腿中的空腔的前端开口插入到所述空腔中。
  9. 一种智能眼镜的制造方法,其特征在于,制造如权利要求1-9中任一项所述的智能眼镜,其特征在于,所述方法包括:
    获取第一模块,
    获取第二模块;
    将所述第一模块插入到所述第二模块中,并将第一模块和第二模块固定。
  10. 根据权利要求9所述的一种智能眼镜的制造方法,其特征在于,其中,获取第一模块包括将光机和摄像头固定于所述前横部。
  11. 根据权利要求10所述的一种智能眼镜的制造方法,其特征在于,将光机和摄像头的光学部件设置在前横梁部的前表面;将光机和摄像头的控制电路板设置在所述前横梁部的后表面。
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