WO2014078987A1 - 一种互动手机 - Google Patents

一种互动手机 Download PDF

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Publication number
WO2014078987A1
WO2014078987A1 PCT/CN2012/084892 CN2012084892W WO2014078987A1 WO 2014078987 A1 WO2014078987 A1 WO 2014078987A1 CN 2012084892 W CN2012084892 W CN 2012084892W WO 2014078987 A1 WO2014078987 A1 WO 2014078987A1
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WO
WIPO (PCT)
Prior art keywords
main body
module
mobile phone
disposed
mirror
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Application number
PCT/CN2012/084892
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English (en)
French (fr)
Inventor
那庆林
黄彦
王海湘
麦浩晃
Original Assignee
神画科技(深圳)有限公司
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Application filed by 神画科技(深圳)有限公司 filed Critical 神画科技(深圳)有限公司
Priority to PCT/CN2012/084892 priority Critical patent/WO2014078987A1/zh
Publication of WO2014078987A1 publication Critical patent/WO2014078987A1/zh

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    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03BAPPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
    • G03B21/00Projectors or projection-type viewers; Accessories therefor
    • G03B21/14Details
    • G03B21/28Reflectors in projection beam
    • GPHYSICS
    • G03PHOTOGRAPHY; CINEMATOGRAPHY; ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ELECTROGRAPHY; HOLOGRAPHY
    • G03BAPPARATUS OR ARRANGEMENTS FOR TAKING PHOTOGRAPHS OR FOR PROJECTING OR VIEWING THEM; APPARATUS OR ARRANGEMENTS EMPLOYING ANALOGOUS TECHNIQUES USING WAVES OTHER THAN OPTICAL WAVES; ACCESSORIES THEREFOR
    • G03B29/00Combinations of cameras, projectors or photographic printing apparatus with non-photographic non-optical apparatus, e.g. clocks or weapons; Cameras having the shape of other objects
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/02Constructional features of telephone sets
    • H04M1/0202Portable telephone sets, e.g. cordless phones, mobile phones or bar type handsets
    • H04M1/026Details of the structure or mounting of specific components
    • H04M1/0272Details of the structure or mounting of specific components for a projector or beamer module assembly

Definitions

  • the present invention relates to the field of mobile phones, and more particularly to an interactive mobile phone.
  • Touch display is the most commonly accepted input method after keyboard and mouse. It facilitates the operation of computers, mobile phones, etc. Users can easily touch the icon or text on the touch screen with a finger. The operation of the host makes the human-computer interaction more straightforward. Therefore, the touch display is a promising interactive input device.
  • the traditional touch display screens are hardware physical devices, mainly including infrared type, resistive type, capacitive type, etc., all of which have large volume and high cost. .
  • the interactive module of the existing projection display mobile phone is usually arranged on the top of the mobile phone, and the projection enlargement work is simply realized, and the virtual touch instruction operation cannot be realized.
  • the existing touch display products that can execute virtual touch operation instructions implement some basic gesture recognition algorithms in three-dimensional space, and the hardware cost is high. .
  • the technical problem to be solved by the present invention is to provide an interactive mobile phone for the above-mentioned drawbacks of the prior art.
  • an interactive mobile phone comprising a mobile phone main body, an interactive module, and a projection module disposed in the main body of the mobile phone, and further comprising detachably connecting with the mobile phone main body a connected external lens assembly, the external lens assembly including a body, a mirror rotatably disposed on the body for changing a projection direction of the projection module, and at least one for increasing the projection mode a lens group of a group of projection angles; an image projected by the projection module is increased by a projection angle of the lens group, and then reflected on the projection plane via the mirror .
  • the interactive mobile phone of the present invention wherein the mobile phone body is placed vertically, the projection module is disposed on the top of the mobile phone body, and the image projected by the projection module is projected from the top side of the mobile phone main body ;
  • a sliding slot is disposed on both sides of the main body of the mobile phone, and two sides of the main body are provided with a sliding bar that cooperates with the sliding slot, and the main body is slidably disposed by the sliding bar and the sliding slot.
  • the main body On the body of the mobile phone.
  • the top side of the main body is rotatably provided with a mirror supporting plate for mounting the mirror, and the bottom of the main body is provided with a lens mounting portion for mounting the lens group, the lens
  • the slide bar is provided on both sides of the mounting portion.
  • the interactive mobile phone of the present invention wherein the interactive module comprises an infrared laser emitting module disposed at the bottom of the mobile phone main body, a camera module disposed above the infrared laser emitting module, and disposed in the mobile phone main body
  • the arithmetic processing module comprises an infrared laser emitting module disposed at the bottom of the mobile phone main body, a camera module disposed above the infrared laser emitting module, and disposed in the mobile phone main body.
  • the camera module is disposed in the mobile phone main body and located above the infrared laser emitting module.
  • the interactive mobile phone of the present invention wherein the camera module is disposed on the main body.
  • the interactive mobile phone of the present invention wherein the mobile phone body is horizontally placed, and the image projected by the projection module is projected from one side of the mobile phone main body; the external lens assembly further includes a device disposed in the main body Secondary mirror
  • a rotating mirror supporting plate for mounting the mirror is disposed on the main body, the lens assembly is disposed in the main body, and the main body is further provided with a recess for docking with a projection module in the main body of the mobile phone.
  • the image projected by the projection module passes through the recess, increases the projection angle through the lens group, and the secondary mirror changes the projection direction, and then is reflected by the mirror onto the projection plane.
  • the main body is vertically placed, and the mirror supporting plate is rotatably disposed on one side of the main body, and the portion of the main body that can be covered by the mirror supporting plate is further An opening for emitting an image;
  • the secondary mirror is disposed at a position facing the interface in the main body, and the lens group is disposed above the secondary mirror, and an axis of the lens group is substantially parallel to a vertical direction.
  • the interactive mobile phone of the present invention wherein the mobile phone main body is provided with a data output interface for electrically connecting with the interactive module, the main body is provided with a data input interface, and the interactive module comprises a camera module at the top of the main body, an infrared laser emitting module disposed at the bottom of the main body, and an arithmetic processing module disposed in the main body, wherein the data input interface is electrically connected to the arithmetic processing module.
  • the main body wherein the main body is horizontally placed, the upper surface of the main body is rotatably provided with the mirror support plate, and the portion of the main body that can be covered by the mirror support plate is further An outlet for emitting an image;
  • the lens group is disposed at a position facing the interface in the main body, an axis of the lens group is substantially parallel to a horizontal direction, and a rear mirror is disposed at a rear portion of the lens group.
  • the interactive mobile phone of the present invention wherein the mobile phone main body is provided with a data output interface for electrically connecting with the interactive module, the main body is provided with a data input interface, and the interactive module comprises a camera module on the mirror support plate, an infrared laser emitting module disposed at the bottom of the main body, and an arithmetic processing module disposed in the main body, wherein the data input interface is electrically connected to the arithmetic processing module.
  • the interactive mobile phone of the present invention wherein the data input interface comprises an MHL interface.
  • the interactive mobile phone of the present invention wherein the mirror comprises an aspherical mirror, a spherical mirror or a plane mirror.
  • the interactive mobile phone of the present invention wherein the secondary mirror comprises an aspherical mirror, a spherical mirror or a plane mirror.
  • the interactive mobile phone embodying the present invention has the following beneficial effects: the virtual touch screen mobile phone of the present invention realizes the command operation function of the virtual display screen, and when the finger touches the infrared light plane formed by the infrared laser emitting module, a bright spot can be generated to determine the finger. Position, solve the problem of instability caused by external factors such as illumination or through skin color or feature points;
  • the operating area of the touch screen of the mobile phone is greatly increased, the physical volume of the touch screen display is greatly reduced, the cost of the touch screen display hardware and the hardware volume are greatly reduced, and the portable and easy to use are convenient.
  • FIG. 1 is a schematic structural view of a first embodiment of an interactive mobile phone according to the present invention.
  • FIG. 2 is a schematic structural view of a main body of a mobile phone in a first embodiment of an interactive mobile phone according to the present invention
  • FIG. 3 is a schematic structural view of an external lens assembly in a first embodiment of an interactive mobile phone according to the present invention
  • FIG. 4 is a schematic structural view of a second embodiment of an interactive mobile phone according to the present invention.
  • FIG. 5 is a schematic structural view of a third embodiment of an interactive mobile phone according to the present invention.
  • FIG. 6 is a schematic structural view of a fourth embodiment of an interactive mobile phone according to the present invention.
  • the interactive mobile phone includes a mobile phone main body 100, an interactive module (not shown), and a projection module disposed in the mobile phone main body 100.
  • 200 further comprising an external lens assembly 300 detachably connected to the mobile phone main body 100, the external lens assembly 300 includes a main body 301, and a mirror 302 rotatably disposed on the main body 301 for changing a projection direction of the projection module 200 And at least one lens group 303 for increasing the projection angle of the projection module 200.
  • the external lens assembly 300 is detachably connected to the mobile phone main body 100, which means that the mobile phone main body 100 can be used alone with the projection module 200 when the external lens assembly 300 is not connected.
  • the image projected by the projection module 200 is increased by the lens group 303 and then reflected by the mirror 302 onto the projection plane.
  • the interactive module enables the projected image to accept user manipulation commands and realize human-computer interaction.
  • the mobile phone main body 100 is placed vertically, and the projection module 200 is disposed at the top of the mobile phone main body 100. Therefore, the image projected by the projection module 200 is projected from the top side of the mobile phone main body 100.
  • the main body 301 is provided with a sliding slot 101 on both sides of the main body 301.
  • the main body 301 is slidably disposed on the mobile phone by the cooperation of the sliding rod 304 and the sliding slot 101. On the main body 100.
  • the detachable connection between the external lens assembly 300 and the mobile phone main body 100 is not limited to the specific structure of the first embodiment of the present invention, and may be other structures.
  • the sliding slot 101 may also be a slot or a card slot
  • the main body 301 may be The buckle is detachably connected to both sides of the main body 100 of the mobile phone.
  • the top side of the main body 301 is rotatably provided with a mirror support plate 305 for mounting the mirror 302.
  • the bottom of the main body 301 is provided with a lens mounting portion 306 for mounting the lens group 303, and two lens mounting portions 306.
  • a slide bar 304 is provided on the side.
  • the interaction module includes an infrared laser emitting module 402 disposed at the bottom of the mobile phone main body 100, a camera module 401 disposed above the infrared laser emitting module 402, and an arithmetic processing module disposed in the mobile phone main body 100.
  • the camera module 401 is disposed in the mobile phone main body 100 and located above the infrared laser emitting module 402.
  • the mirror 302 When in use, the mirror 302 is rotated by a certain angle, and the image projected by the projection module 200 is reflected by the mirror 302 onto the projection plane. At this time, the imaging surface of the camera module 401 and the infrared emitted by the infrared laser emitting module 402 The light plane is approximately parallel to the projection plane, when the finger or palm is operating on the projection plane, The infrared light will hit the finger or the palm to generate a bright spot.
  • the continuous video image frame collected by the camera module 401 is analyzed by image processing to determine part of the spot (ROI) of the area, and each is found.
  • the centroid coordinate of the region in a frame of image, The actual coordinate corresponding to the centroid coordinate on the virtual touch screen display is calculated by the perspective transformation method, thereby obtaining the trajectory of the motion of each image frame coordinate point.
  • the components and functions of the interactive mobile phone are the same as those of the previous embodiment, except that in this embodiment, the camera module 401 is disposed in the main body 301. Up.
  • the mobile phone main body 100 is horizontally placed, and the image projected by the projection module 200 is projected from one side of the mobile phone main body 100;
  • the external lens assembly 300 further includes a main body.
  • Secondary mirror 306 within 301.
  • a mirror support plate 305 for mounting the mirror 302 is disposed on the main body 301.
  • the lens group 303 is disposed in the main body 301.
  • the main body 301 is further provided with a recess portion for docking with the projection module 200 in the mobile phone main body 100 (in the figure). Not shown by the number).
  • the mobile phone main body 100 is provided with a portion of the projection module 200 aligned with the concave portion, so that the image projected by the projection module 200 passes through the concave portion, the projection angle is increased by the lens group 303, and the secondary mirror 306 changes the projection direction, and then Reflected by mirror 302 onto the projection plane.
  • the main body 301 is vertically placed, and a mirror supporting plate 305 is rotatably disposed on one side of the main body 301, and a portion of the main body 301 that can be covered by the mirror supporting plate 305 is further provided for emitting an image.
  • An opening (not shown in the figure), an image in which the projection angle is increased by the lens group 303 and the secondary mirror 306 changes direction is projected onto the mirror 302 through the opening.
  • the secondary mirror 306 is disposed at a position facing the interface in the main body 301, and the lens group 303 is disposed above the secondary mirror 306.
  • the axis of the lens group 303 is substantially parallel to the vertical direction.
  • the mobile phone main body 100 is provided with a data output interface for electrically connecting with the interactive module
  • the main body 301 is provided with a data input interface
  • the interactive module includes a camera module 401 disposed at the top of the main body 301,
  • the infrared laser emitting module 402 disposed at the bottom of the main body 301 and the arithmetic processing module 403 disposed in the main body 301, the camera module 401, the infrared laser emitting module 402, and the data input interface are electrically connected to the arithmetic processing module 403.
  • the components and functions of the interactive mobile phone are the same as those of the previous embodiment, and the main body 301 is horizontally placed, and the upper surface of the main body 301 is rotatably A mirror support plate 305 is disposed.
  • the portion of the main body 301 that can be covered by the mirror support plate 305 is further provided with an exit for emitting an image.
  • the lens group 303 is provided at a position facing the interface in the main body 301, and the lens group is provided.
  • the axis of the 303 is substantially parallel to the horizontal direction, and the rear of the lens group 303 is provided with a secondary mirror 306. That is to say, the image projected by the projection module 200 is first increased by the lens group 303 and then reflected by the secondary mirror 306 to the mirror 302.
  • the mobile phone main body 100 is provided with a data output interface for electrically connecting to the interaction module.
  • the main body 301 is provided with a data input interface.
  • the interaction module includes a camera module 401 disposed on the mirror support plate 305, and a setting.
  • the infrared laser emitting module 402 at the bottom of the main body 301 and the arithmetic processing module disposed in the main body 301, the camera module 401, the infrared laser emitting module 402, and the data input interface are all electrically connected to the arithmetic processing module.
  • the main body 301 is provided with a recessed portion, the interface is disposed in the recessed portion, and the interface is an MHL interface.
  • the mirror 302 can be an aspherical mirror, a spherical mirror or a planar mirror.
  • the secondary mirror 306 can also be an aspheric mirror, a spherical mirror or a plane mirror.
  • the aspherical mirror and the spherical mirror may in turn comprise a convex mirror and a concave mirror.

Abstract

本发明涉及一种互动手机,包括手机主体、互动模组、以及设置在所述手机主体内的投影模组,其特征在于,还包括与所述手机主体可拆卸地连接的外挂镜头组件,所述外挂镜头组件包括主体、可转动地设置在所述主体上的、用于改变所述投影模组投射方向的反射镜、以及至少一个用于增大所述投影模组投射角的镜片组;所述投影模组投射的影像通过所述镜片组增大投射角后,经由所述反射镜反射到投影平面上。大大增加了手机触摸显示屏可操作的面积,大大减小了触摸显示屏物理体积、很大程度上降低了触摸显示屏硬件的成本和硬件体积,方便携带、简单易用。

Description

一种互动手机 技术领域
本发明涉及手机领域,更具体地说,涉及一种互动手机。
背景技术
触摸显示屏是继键盘、鼠标之后最为普遍接受的输入方式,它方便了人们对计算机、手机等的操作,用户只要用手指轻轻的触碰触摸显示屏上的图符或文字就能实现对主机的操作,从而使人机交互更为直截了当。因此触摸显示屏是一种极有发展前途的交互式输入设备。同时,随着智能手机的发展,对手机显示屏的尺寸的要求越来越大。目前传统的触摸显示屏都是硬件的物理设备,主要包括红外线式、电阻式、电容式等类型、均存在体积大、成本高等问题 。
现有的投影显示手机的互动模组通常设置在手机顶部上,单纯的实现投影放大的工作,无法实现虚拟触摸的指令操作。另外,可执行虚拟触摸操作指令的现有触摸显示屏产品在三维空间中实现一些基本的手势识别的算法既复杂,同时硬件成本又较高 。
发明内容
本发明要解决的技术问题在于,针对现有技术的上述缺陷,提供一种互动手机。
本发明解决其技术问题所采用的技术方案是:构造一种互动手机,包括手机主体、互动模组、以及设置在所述手机主体内的投影模组,还包括与所述手机主体可拆卸地连接的外挂镜头组件,所述外挂镜头组件包括主体、可转动地设置在所述主体上的、用于改变所述投影模组投射方向的反射镜、以及至少一个用于增大所述投影模组投射角的镜片组;所述投影模组投射的影像通过所述镜片组增大投射角后,经由所述反射镜反射到投影平面上 。
本发明所述的互动手机,其中,所述手机主体竖直放置,所述投影模组设置在所述手机主体顶部,且所述投影模组投射的影像从所述手机主体的顶侧投出;
所述手机主体两侧面均设有滑槽,所述主体的两侧设有与所述滑槽配合的滑杆,所述主体通过所述滑杆与所述滑槽的配合可滑动地设置在所述手机主体上。
本发明所述的互动手机,其中,所述主体顶侧转动设置有用于安装所述反射镜的反射镜支撑板,所述主体底部设有用于安装所述镜片组的镜片安装部,所述镜片安装部的两侧设有所述滑杆。
本发明所述的互动手机,其中,所述互动模组包括设置在所述手机主体底部的红外激光发射模块、设置在所述红外激光发射模块上方的摄像头模块、以及设置在所述手机主体内的运算处理模块。
本发明所述的互动手机,其中,所述摄像头模块设置在所述手机主体内且位于所述红外激光发射模块的上方。
本发明所述的互动手机,其中,所述摄像头模块设置在所述主体上。
本发明所述的互动手机,其中,所述手机主体水平放置,所述投影模组投射的影像从所述手机主体的一侧投出;所述外挂镜头组件还包括设置在所述主体内的次反射镜;
所述主体上转动设置有用于安装所述反射镜的反射镜支撑板,所述镜片组设于所述主体内,所述主体上还设有用于与所述手机主体内的投影模块对接的凹陷部;所述投影模块投射的影像通过所述凹陷部,经过所述镜片组增大投射角、以及所述次反射镜改变投射方向后,再由所述反射镜反射到所述投影平面上。
本发明所述的互动手机,其中,所述主体竖直放置,所述主体一侧可转动地设置有所述反射镜支撑板,所述主体上能够被所述反射镜支撑板覆盖的部位还设有用于射出影像的开口;
所述主体内正对所述接口的位置设有所述次反射镜,所述次反射镜的上方设有所述镜片组,所述镜片组的轴线与竖直方向基本平行。
本发明所述的互动手机,其中,所述手机主体上设有用于与所述互动模组电性连接的数据输出接口,所述主体上设有数据输入接口,所述互动模组包括设置在所述主体顶部的摄像头模块、设置在所述主体底部的红外激光发射模块、以及设置在所述主体内的运算处理模块,所述数据输入接口与所述运算处理模块电性连接。
本发明所述的互动手机,其中,所述主体水平放置,所述主体的上表面可转动地设置有所述反射镜支撑板,所述主体上能够被所述反射镜支撑板覆盖的部位还设有用于射出影像的出口;
所述主体内正对所述接口的位置设有所述镜片组,所述镜片组的轴线基本与水平方向平行,所述镜片组的后部设有所述次反射镜。
本发明所述的互动手机,其中,所述手机主体上设有用于与所述互动模组电性连接的数据输出接口,所述主体上设有数据输入接口,所述互动模组包括设置在所述反射镜支撑板上的摄像头模块、设置在所述主体底部的红外激光发射模块、以及设置在所述主体内的运算处理模块,所述数据输入接口与所述运算处理模块电性连接。
本发明所述的互动手机,其中,所述数据输入接口包括MHL接口。
本发明所述的互动手机,其中,所述反射镜包括非球面反射镜、球面反射镜或平面反射镜。
本发明所述的互动手机,其中,所述次反射镜包括非球面反射镜、球面反射镜或平面反射镜。
实施本发明的互动手机,具有以下有益效果:本发明的虚拟触摸屏手机实现虚拟显示屏的指令操作功能,当手指触摸到红外激光发射模块形成的红外光平面,能产生明亮的光斑从而确定手指的位置,解决受光照等外界因素的影响了或者通过皮肤色或特征点去实现跟踪的不稳定问题;
大大增加了手机触摸显示屏可操作的面积,大大减小了触摸显示屏物理体积、很大程度上降低了触摸显示屏硬件的成本和硬件体积,方便携带、简单易用。
附图说明
下面将结合附图及实施例对本发明作进一步说明,附图中:
图1是本发明一种互动手机第一实施例的结构示意图;
图2是本发明一种互动手机第一实施例中手机主体的结构示意图;
图3是本发明一种互动手机第一实施例中外挂镜头组件的结构示意图;
图4是本发明一种互动手机的第二实施例的结构示意图;
图5是本发明一种互动手机的第三实施例的结构示意图;
图6是本发明一种互动手机的第四实施例的结构示意图。
具体实施方式
如图1-2所示,在本发明的第一实施例中,该互动手机包括手机主体100、互动模组(图中未用标号示出)、以及设置在手机主体100内的投影模组200,还包括与手机主体100可拆卸地连接的外挂镜头组件300,该外挂镜头组件300包括主体301、可转动地设置在主体301上的、用于改变投影模组200投射方向的反射镜302、以及至少一个用于增大投影模组200投射角的镜片组303。外挂镜头组件300可拆卸地与手机主体100连接,意味着手机主体100不连接外挂镜头组件300时可以单独与投影模组200配合来使用。投影模组200投射的影像通过镜片组303增大投射角后,经由反射镜302反射到投影平面上。互动模组使投射出的画面可以接受用户操控指令,实现人机互动功能。在该实施例中,手机主体100被竖直放置,投影模组200设置在手机主体100的顶部,因此投影模组200投射的影像从手机主体100的顶侧投出。且进一步地,手机主体100两侧面均设有滑槽101,主体301的两侧设有与滑槽配合的滑杆304,主体301通过滑杆304与滑槽101的配合可滑动地设置在手机主体100上。外挂镜头组件300与手机主体100可拆卸的连接方式不局限于本发明第一实施例给出的具体结构,还可以是其他结构,例如滑槽101也可以是插槽或卡槽,主体301可以通过卡扣与手机主体100的两侧可拆卸地连接。
优选地,如图3所示,主体301顶侧转动设置有用于安装反射镜302的反射镜支撑板305,主体301底部设有用于安装镜片组303的镜片安装部306,镜片安装部306的两侧设有滑杆304。
进一步地,上述互动模组包括设置在手机主体100底部的红外激光发射模块402、设置在红外激光发射模块402上方的摄像头模块401、以及设置在手机主体100内的运算处理模块。在本实施例中,摄像头模块401设置在手机主体100内且位于红外激光发射模块402的上方。
在使用的时候,将反射镜302转动一定的角度,投影模块200投射的影像会通过反射镜302反射到投影平面上,此时,摄像头模块401的成像面、以及红外激光发射模块402发出的红外光平面大致与投影平面平行,当手指或者手掌在投影平面上操作时, 红外光会打到手指或手掌上,从而产生发亮的光斑,通过摄像头模块401采集到的连续的视频图像帧,用图像处理分析判断该区域的部份光斑(ROI)提取出来,求出每一帧图像中该区域的质心坐标, 通过透视变换方法计算出质心坐标在虚拟触摸显示屏对应的实际坐标,从而得出每个图像帧坐标点运动的轨迹。
如图4所示,在本发明的第二实施例中,该互动手机的各个组成部分和功能与上一实施例相同,不同的是,在该实施例中,摄像头模块401是设置在主体301上的。
如图5所示,在本发明的第三实施例中,手机主体100水平放置,投影模组200投射的影像是从手机主体100的一侧投出的;外挂镜头组件300还包括设置在主体301内的次反射镜306。主体301上转动设置有用于安装反射镜302的反射镜支撑板305,镜片组303设于主体301内,主体301上还设有用于与手机主体100内的投影模块200对接的凹陷部(图中未用标号示出)。使用时,将手机主体100设有投影模块200的部分对准凹陷部,使投影模块200投射的影像通过凹陷部,经过镜片组303增大投射角、以及次反射镜306改变投射方向后,再由反射镜302反射到投影平面上。
在该实施例中,主体301是被竖直放置的,主体301一侧可转动地设置有反射镜支撑板305,主体301上能够被反射镜支撑板305覆盖的部位还设有用于射出影像的开口(图中未用标号示出),经过镜片组303增大投射角和次反射镜306改变方向的影像就是通过该开口投射到反射镜302上的。进一步地,主体301内正对接口的位置设有前述次反射镜306,次反射镜306的上方设有镜片组303,镜片组303的轴线与竖直方向基本平行。
在该实施例中,手机主体100上设有用于与所述互动模组电性连接的数据输出接口,主体301上设有数据输入接口,互动模组包括设置在主体301顶部的摄像头模块401、设置在主体301底部的红外激光发射模块402、以及设置在主体301内的运算处理模块403,摄像头模块401、红外激光发射模块402、以及数据输入接口均与运算处理模块403电性连接。
如图6所示,在本发明的第四实施例中,该互动手机的各个组成部分和功能均与上一实施例相同,且主体301是被水平放置的,主体301的上表面可转动地设置有反射镜支撑板305,主体301上能够被反射镜支撑板305覆盖的部位还设有用于射出影像的出口;不同的是,主体301内正对接口的位置设有镜片组303,镜片组303的轴线基本与水平方向平行,镜片组303的后部设有次反射镜306。也就是说,投影模块200投射出来的影像是先经过镜片组303增大投射角后再经过次反射镜306的反射到达反射镜302的。
手机主体100上设有用于与所述互动模组电性连接的数据输出接口,所述主体301上设有数据输入接口,互动模组包括设置在反射镜支撑板305上的摄像头模块401、设置在主体301底部的红外激光发射模块402、以及设置在主体301内的运算处理模块,摄像头模块401、红外激光发射模块402、以及数据输入接口均与运算处理模块电性连接。
在上述各优选实施例中,主体301设有凹陷部,接口设于凹陷部内,且接口采用的是MHL接口。反射镜302可以采用非球面反射镜、球面反射镜或平面反射镜。同理,次反射镜306也可以采用非球面反射镜、球面反射镜或平面反射镜。进一步地,非球面反射镜与球面反射镜又可以包括凸面镜和凹面镜。
以上实施例只为说明本发明的技术构思及特点,其目的在于让熟悉此项技术的人士能够了解本发明的内容并据此实施,并不能限制本发明的保护范围。凡跟本发明权利要求范围所做的均等变化与修饰,均应属于本发明权利要求的涵盖范围。

Claims (14)

1、一种互动手机,包括手机主体(100)、互动模组、以及设置在所述手机主体(100)内的投影模组(200),其特征在于,还包括与所述手机主体(100)可拆卸地连接的外挂镜头组件(300),所述外挂镜头组件(300)包括主体(301)、可转动地设置在所述主体(301)上的、用于改变所述投影模组(200)投射方向的反射镜(302)、以及至少一个用于增大所述投影模组(200)投射角的镜片组(303);所述投影模组(200)投射的影像通过所述镜片组(303)增大投射角后,经由所述反射镜(302)反射到投影平面上。
2、根据权利要求1所述的互动手机,其特征在于,所述手机主体(100)竖直放置,所述投影模组(200)设置在所述手机主体(100)顶部,且所述投影模组(200)投射的影像从所述手机主体(100)的顶侧投出;
所述手机主体(100)两侧面均设有滑槽(101),所述主体(100)的两侧设有与所述滑槽(101)配合的滑杆(304),所述主体(301)通过所述滑杆(304)与所述滑槽(101)的配合可滑动地设置在所述手机主体(100)上。
3、根据权利要求2所述的互动手机,其特征在于,所述主体(301)顶侧转动设置有用于安装所述反射镜(302)的反射镜支撑板(305),所述主体(301)底部设有用于安装所述镜片组(303)的镜片安装部(306),所述镜片安装部(306)的两侧设有所述滑杆(304)。
4、根据权利要求2所述的互动手机,其特征在于,所述互动模组包括设置在所述手机主体(100)底部的红外激光发射模块(402)、设置在所述红外激光发射模块(402)上方的摄像头模块(401)、以及设置在所述手机主体(100)内的运算处理模块。
5、根据权利要求4所述的互动手机,其特征在于,所述摄像头模块(401)设置在所述手机主体(100)内且位于所述红外激光发射模块(402)的上方。
6、 根据权利要求4所述的互动手机,其特征在于,所述摄像头模块(401)设置在所述主体(301)上。
7、根据权利要求1所述的互动手机,其特征在于,所述手机主体(100)水平放置,所述投影模组(200)投射的影像从所述手机主体(100)的一侧投出;所述外挂镜头组件(300)还包括设置在所述主体(301)内的次反射镜(306);
所述主体(301)上转动设置有用于安装所述反射镜(302)的反射镜支撑板(305),所述镜片组(303)设于所述主体(301)内,所述主体(301)上还设有用于与所述手机主体(100)内的投影模块(200)对接的凹陷部;所述投影模块(200)投射的影像通过所述凹陷部,经过所述镜片组(303)增大投射角、以及所述次反射镜(306)改变投射方向后,再由所述反射镜(302)反射到所述投影平面上。
8、根据权利要求7所述的互动手机,其特征在于,所述主体(301)竖直放置,所述主体(301)一侧可转动地设置有所述反射镜支撑板(305),所述主体(301)上能够被所述反射镜支撑板(305)覆盖的部位还设有用于射出影像的开口;
所述主体(301)内正对所述接口的位置设有所述次反射镜(306),所述次反射镜(306)的上方设有所述镜片组(303),所述镜片组(303)的轴线与竖直方向基本平行。
9、根据权利要求8所述的互动手机,其特征在于,所述手机主体(100)上设有用于与所述互动模组电性连接的数据输出接口,所述主体(301)上设有数据输入接口,所述互动模组包括设置在所述主体(301)顶部的摄像头模块(401)、设置在所述主体(301)底部的红外激光发射模块(402)、以及设置在所述主体(301)内的运算处理模块(403),所述摄像头模块(401)、所述红外激光发射模块(402)、以及所述数据输入接口均与所述运算处理模块(403)电性连接。
10、根据权利要求7所述的互动手机,其特征在于,所述主体(301)水平放置,所述主体(301)的上表面可转动地设置有所述反射镜支撑板(305),所述主体(301)上能够被所述反射镜支撑板(305)覆盖的部位还设有用于射出影像的出口;
所述主体(301)内正对所述接口的位置设有所述镜片组(303),所述镜片组(303)的轴线基本与水平方向平行,所述镜片组(303)的后部设有所述次反射镜(306)。
11、根据权利要求10所述的互动手机,其特征在于,所述手机主体(100)上设有用于与所述互动模组电性连接的数据输出接口,所述主体(301)上设有数据输入接口,所述互动模组包括设置在所述反射镜支撑板(305)上的摄像头模块(401)、设置在所述主体(301)底部的红外激光发射模块(402)、以及设置在所述主体(301)内的运算处理模块,所述摄像头模块(401)、所述红外激光发射模块(402)、以及所述数据输入接口均与所述运算处理模块电性连接。
12、根据权利要求7所述的互动手机,其特征在于,所述数据输入接口包括MHL接口。
13、根据权利要求1-12任一项所述的互动手机,其特征在于,所述反射镜(302)包括非球面反射镜、球面反射镜或平面反射镜。
14、根据权利要求7-12任一项所述的互动手机,其特征在于,所述次反射镜(306)包括非球面反射镜、球面反射镜或平面反射镜。
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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101571776A (zh) * 2008-04-21 2009-11-04 株式会社理光 具有投影仪模块的电子装置
CN101650520A (zh) * 2008-08-15 2010-02-17 索尼爱立信移动通讯有限公司 移动电话的可视激光触摸板和方法
CN102109675A (zh) * 2009-12-28 2011-06-29 株式会社理光 图像显示装置、以及手机、信息处理装置、摄影装置
CN102164204A (zh) * 2011-02-15 2011-08-24 深圳桑菲消费通信有限公司 一种具有交互式功能的手机及其交互方法

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101571776A (zh) * 2008-04-21 2009-11-04 株式会社理光 具有投影仪模块的电子装置
CN101650520A (zh) * 2008-08-15 2010-02-17 索尼爱立信移动通讯有限公司 移动电话的可视激光触摸板和方法
CN102109675A (zh) * 2009-12-28 2011-06-29 株式会社理光 图像显示装置、以及手机、信息处理装置、摄影装置
CN102164204A (zh) * 2011-02-15 2011-08-24 深圳桑菲消费通信有限公司 一种具有交互式功能的手机及其交互方法

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