WO2018176672A1 - 一种裸眼立体显示器及裸眼立体显示系统 - Google Patents

一种裸眼立体显示器及裸眼立体显示系统 Download PDF

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Publication number
WO2018176672A1
WO2018176672A1 PCT/CN2017/091525 CN2017091525W WO2018176672A1 WO 2018176672 A1 WO2018176672 A1 WO 2018176672A1 CN 2017091525 W CN2017091525 W CN 2017091525W WO 2018176672 A1 WO2018176672 A1 WO 2018176672A1
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Prior art keywords
regions
delay
pixel
naked eye
eye stereoscopic
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PCT/CN2017/091525
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English (en)
French (fr)
Inventor
陈猷仁
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HKC Co Ltd
Chongqing HKC Optoelectronics Technology Co Ltd
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HKC Co Ltd
Chongqing HKC Optoelectronics Technology Co Ltd
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Priority to US16/483,846 priority Critical patent/US11297302B2/en
Publication of WO2018176672A1 publication Critical patent/WO2018176672A1/zh
Anticipated expiration legal-status Critical
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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N13/00Stereoscopic video systems; Multi-view video systems; Details thereof
    • H04N13/30Image reproducers
    • H04N13/302Image reproducers for viewing without the aid of special glasses, i.e. using autostereoscopic displays
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B30/00Optical systems or apparatus for producing three-dimensional [3D] effects, e.g. stereoscopic images
    • G02B30/20Optical systems or apparatus for producing three-dimensional [3D] effects, e.g. stereoscopic images by providing first and second parallax images to an observer's left and right eyes
    • G02B30/26Optical systems or apparatus for producing three-dimensional [3D] effects, e.g. stereoscopic images by providing first and second parallax images to an observer's left and right eyes of the autostereoscopic type
    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B30/00Optical systems or apparatus for producing three-dimensional [3D] effects, e.g. stereoscopic images
    • G02B30/20Optical systems or apparatus for producing three-dimensional [3D] effects, e.g. stereoscopic images by providing first and second parallax images to an observer's left and right eyes
    • G02B30/22Optical systems or apparatus for producing three-dimensional [3D] effects, e.g. stereoscopic images by providing first and second parallax images to an observer's left and right eyes of the stereoscopic type
    • G02B30/25Optical systems or apparatus for producing three-dimensional [3D] effects, e.g. stereoscopic images by providing first and second parallax images to an observer's left and right eyes of the stereoscopic type using polarisation techniques
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N13/00Stereoscopic video systems; Multi-view video systems; Details thereof
    • H04N13/10Processing, recording or transmission of stereoscopic or multi-view image signals
    • H04N13/106Processing image signals
    • H04N13/122Improving the three-dimensional [3D] impression of stereoscopic images by modifying image signal contents, e.g. by filtering or adding monoscopic depth cues
    • H04N13/125Improving the three-dimensional [3D] impression of stereoscopic images by modifying image signal contents, e.g. by filtering or adding monoscopic depth cues for crosstalk reduction
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09GARRANGEMENTS OR CIRCUITS FOR CONTROL OF INDICATING DEVICES USING STATIC MEANS TO PRESENT VARIABLE INFORMATION
    • G09G2320/00Control of display operating conditions
    • G09G2320/02Improving the quality of display appearance
    • G09G2320/0209Crosstalk reduction, i.e. to reduce direct or indirect influences of signals directed to a certain pixel of the displayed image on other pixels of said image, inclusive of influences affecting pixels in different frames or fields or sub-images which constitute a same image, e.g. left and right images of a stereoscopic display
    • G09G2320/0214Crosstalk reduction, i.e. to reduce direct or indirect influences of signals directed to a certain pixel of the displayed image on other pixels of said image, inclusive of influences affecting pixels in different frames or fields or sub-images which constitute a same image, e.g. left and right images of a stereoscopic display with crosstalk due to leakage current of pixel switch in active matrix panels

Definitions

  • the present application relates to the field of electronic technologies, and in particular, to a naked eye stereoscopic display and a naked eye stereoscopic display system.
  • a stereoscopic display which is a new generation of autostereoscopic display device built on the human eye stereo vision mechanism, which can make excellent use of multi-channel auto-stereoscopic reality technology, and does not require With any visual aid (such as 3D glasses, helmets, etc.), you can get an image with full depth information.
  • the curved stereoscopic display has gradually become a new development direction, such as TV, monitor and Mobile, etc.
  • the new design of the polarized stereo display with curved surface is the designer's research and development, in general, the 3D polarized architecture design of the curved polarized stereo display will still generate a certain degree of 3D crosstalk. The problem is that the user will feel uncomfortable when watching, which seriously affects the user experience.
  • the embodiment of the present invention provides a naked-eye stereoscopic display and a naked-eye stereoscopic display system, which can effectively reduce the influence of 3D crosstalk on users and improve the viewing experience of the user.
  • the embodiment of the present application provides a naked-eye stereoscopic display, including a display panel, having a plurality of first pixel regions and a plurality of second pixel regions, wherein the first pixel region and the second pixel region are adjacently arranged in sequence Arranging in an array; a phase retardation film for arranging on a surface of the display panel, wherein the phase retardation film includes a plurality of first delay regions and a plurality of second delay regions, each of which has a phase delay amount Different from each other, and each of the first delay regions is configured corresponding to a first pixel region, each of the second delay regions has a different phase delay amount, and each of the second delay regions is associated with a second pixel region. Corresponding configuration.
  • the embodiment of the present application further provides a naked eye stereoscopic display, including
  • a display panel having a plurality of first pixel regions and a plurality of second pixel regions, wherein the first pixel regions and the second pixel regions are sequentially adjacently arranged to be arranged in an array;
  • phase retardation film configured to be disposed on a surface of the display panel, wherein the phase retardation film includes a plurality of first delay regions and a plurality of second delay regions, each of the first delay regions having a different phase delay amount, and Each of the first delay regions is configured corresponding to a first pixel region, each of the second delay regions has a different phase delay amount, and each of the second delay regions is configured corresponding to a second pixel region;
  • the backlight module is located on another surface of the display panel to provide backlight to the display panel;
  • the different first pixel regions and the different second pixel regions each correspond to a different curvature; the phase delay amount of the first delay region varies with the curvature of the first pixel region corresponding thereto; The phase delay amount of the second delay region varies with a change in curvature of the second pixel region corresponding thereto;
  • the display panel includes an active device array substrate having an active device array, an opposite substrate, and a display layer disposed between the active device array substrate and the opposite substrate.
  • the embodiment of the present application further provides a naked eye stereoscopic display system, including
  • control unit electrically connected to the naked eye stereoscopic display to control an operating state of the naked eye stereoscopic display
  • the naked eye stereoscopic display includes
  • a display panel having a plurality of first pixel regions and a plurality of second pixel regions, wherein the first pixel regions and the second pixel regions are sequentially adjacently arranged to be arranged in an array;
  • phase retardation film configured to be disposed on a surface of the display panel, wherein the phase retardation film includes a plurality of first delay regions and a plurality of second delay regions, each of the first delay regions having a different phase delay amount, and Each of the first delay regions is configured corresponding to a first pixel region, and each of the second delay regions has a different phase delay amount, and each of the second delay regions is configured corresponding to a second pixel region.
  • the structure of the embodiment of the present application is simple, and can not only effectively reduce the impact of 3D crosstalk on users, but also effectively improve the viewing experience of the user.
  • different first pixel regions have different phase delay amounts
  • different second pixel regions also have different phase delay amounts
  • different phase delay amounts vary with the curvature of the display panel. This is more effective in reducing the impact of 3D crosstalk on users.
  • FIG. 1 is a structural diagram of a naked eye stereoscopic display provided by an embodiment of the present application.
  • FIG. 2 is a cross-sectional view of a naked eye stereoscopic display provided by an embodiment of the present application
  • FIG. 3 is another cross-sectional view of a naked eye stereoscopic display provided by an embodiment of the present application.
  • FIG. 4 is a cross-sectional view of a naked eye stereoscopic display according to another embodiment of the present application.
  • the naked-eye stereoscopic display includes a display panel 1 having a plurality of first pixel regions 11 and a plurality of second pixel regions. 12, the first pixel region 11 and the second pixel 12 region are sequentially adjacently arranged to be arranged in an array; the phase retardation film 2 is configured to be disposed on a surface of the display panel, wherein the phase retardation film 2 includes a plurality of a delay region 21 and a plurality of second delay regions 22, each of which has a phase delay amount different from each other, and each of the first delay regions 21 is disposed corresponding to a first pixel region 11, each The phase delay amounts of the second delay regions 22 are all different, and each of the second delay regions 22 is configured corresponding to a second pixel region 12.
  • the first pixel area and the second pixel area in the display panel 1 are sequentially adjacently arranged to be arranged in an array, so that the human eye A can receive the image information transmitted by the first pixel area in the right eye while viewing, the left eye.
  • the image information transmitted by the second pixel area is received, thereby receiving and synthesizing the 3D image.
  • the phase delay amounts of different delay regions of the phase retardation film configured as the surface of the display panel are also set differently, so as to be pixel regions of different positions.
  • the image information is compensated accordingly.
  • the corresponding optimal phase delay amount can be obtained by obtaining the pixel regions located at different positions in the display panel according to the test, thereby performing corresponding settings.
  • the different first pixel regions and the different second pixel regions each correspond to a different curvature.
  • the display panels are all curved display panels, and different points on different curved display panels may have different curvatures, that is, different first pixel regions may have different correspondingities. Curvature, different second pixel regions will have different curvatures.
  • the display panel 1 is, for example, a liquid crystal display panel, an OLED, a QLED, or other display panel.
  • the phase delay amount of the first delay region varies with a change in curvature of a first pixel region corresponding thereto; the phase delay amount of the second delay region is configured corresponding thereto The curvature of the second pixel region changes.
  • the user In the process of viewing by the user's eye A, the user usually has a position corresponding to the center point of the display panel. At this time, the image information of the first pixel area having different curvatures needs the first corresponding to the first pixel area.
  • the delay region has a phase delay amount matching the curvature, and the image information of the second pixel region having different curvatures of the same requires the second delay region corresponding to the second pixel region to have a phase matching the curvature The amount of delay.
  • the display panel 1 may include an active device array substrate 13 having an active device array 13a, a counter substrate 14, and a display layer 15 disposed on the active device array. Between the substrate 13 and the opposite substrate 14.
  • the active device array substrate 13 includes a first substrate 131 for placing an active device array 13a, a black matrix 132 having a plurality of openings 132a, and a plurality of color filter films 133 for being disposed on the active device.
  • each of the color filter films 133 corresponds to one opening 132a
  • two adjacent color filter films 133 correspond to the first pixel region 11 and the second pixel region 12, respectively.
  • the black matrix is a light shielding member, which can effectively separate the light emitted by the active element array, and form image information respectively transmitted by the first pixel area and the second pixel area, further enabling the right eye to receive the first pixel area
  • the transmitted image information, the left eye receives the image information transmitted by the second pixel area.
  • the display panel 1 may further include a polarizer 16 disposed between the opposite substrate 14 and the phase retardation film 2.
  • the display panel 1 further includes a polarizer 16 disposed between the opposite substrate 14 and the display layer 15 .
  • the position of the polarizer 16 can be performed according to a specific situation.
  • the display layer 15 is a liquid crystal layer, an electrophoretic layer, an electrowetting layer or an organic electroluminescent layer.
  • the display layer 15 can be selected and determined according to actual conditions, and the display layer is not limited to the above components.
  • the naked eye stereoscopic display in the present application may further include a backlight module, and the backlight module is located on another surface of the display panel.
  • the display panel 1 can be a liquid crystal display panel, and the backlight module is used to provide backlight to the liquid crystal display panel (display panel 1).
  • the opposite substrate 14 includes a second substrate 141, a black matrix 142 having a plurality of openings 142a, and a plurality of color filter films 143 for On the two substrates 141, each color filter film 143 corresponds to one opening 142a, and two adjacent color filter films 143 correspond to the first pixel region 11 and the second pixel region 12, respectively.
  • the black matrix is a light shielding member, which can effectively separate the light emitted by the active element array, and form image information respectively transmitted by the first pixel area and the second pixel area, further enabling the right eye to receive the first pixel area
  • the transmitted image information, the left eye receives the image information transmitted by the second pixel area.
  • the display panel 1 may further include a polarizer 16 disposed between the second substrate 141 and the phase retardation film 2.
  • the position of the polarizer can be set according to actual conditions, and is not limited to the above.
  • the naked eye stereoscopic display of the present application has a simple structure, which can effectively reduce the influence of 3D crosstalk on the user, and can effectively improve the viewing experience of the user.
  • different first pixel regions have different phase delay amounts
  • different second pixel regions also have different phase delay amounts
  • different phase delay amounts vary with the curvature of the display panel. This is more effective in reducing the impact of 3D crosstalk on users.
  • the embodiment of the present application further provides a naked eye stereoscopic display system, where the naked eye stereoscopic display system includes a naked eye stereoscopic display and a control unit, wherein the control unit is electrically connected to the naked eye stereoscopic display to control the naked eye stereoscopic display.
  • Working status where the naked eye stereoscopic display system includes a naked eye stereoscopic display and a control unit, wherein the control unit is electrically connected to the naked eye stereoscopic display to control the naked eye stereoscopic display.
  • the naked eye stereoscopic display as shown in FIG. 1 includes: a display panel 1 having a plurality of first pixel regions 11 and a plurality of second pixel regions 12, the first pixel regions 11 and The two pixel 12 regions are sequentially adjacently arranged to be arranged in an array; the phase retardation film 2 is configured to be disposed on a surface of the display panel, wherein the phase retardation film 2 includes a plurality of first retardation regions 21 and a plurality of second retardation regions 22, the phase delay amount of each of the first delay regions 21 is different, and each of the first delay regions 21 is configured corresponding to a first pixel region 11, and the phase delay amount of each of the second delay regions 22 is not The same, and each of the second delay regions 22 is configured corresponding to a second pixel region 12.
  • the descriptions of the various embodiments are different, and the parts that are not described in detail in a certain embodiment may be referred to the related descriptions of other embodiments.

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Optics & Photonics (AREA)
  • Engineering & Computer Science (AREA)
  • Multimedia (AREA)
  • Signal Processing (AREA)
  • Liquid Crystal (AREA)
  • Electroluminescent Light Sources (AREA)

Abstract

一种裸眼立体显示器和一种裸眼立体显示系统,裸眼立体显示系统包括显示面板(1),具有多个第一像素区(11)和多个第二像素区(12),第一像素区(11)和第二像素区(12)依次相邻分布以成阵列排列;相位延迟膜(2),用于配置于显示面板(1)的表面,其中,相位延迟膜(2)包括多个第一延迟区(21)和多个第二延迟区(22),每个第一延迟区(21)的相位延迟量均不相同,且每个第一延迟区(21)均与一第一像素区(11)相对应配置,每个第二延迟区(22)的相位延迟量均不相同,且每个第二延迟区(22)均与一第二像素区(12)相对应配置。

Description

一种裸眼立体显示器及裸眼立体显示系统
技术领域
本申请涉及电子技术领域,尤其涉及一种裸眼立体显示器及裸眼立体显示系统。
背景技术
目前市场上越来越多的液晶面板应用需要使用立体显示器,立体显示器是一种建立在人眼立体视觉机制上的新一代自由立体显示设备,它能够出色的利用多通道自动立体现实技术,不需要借助任何助视设备(如3D眼镜、头盔等),即可获得具有完整深度信息的图像。
随着显示器的曲面技术的发展,曲面式的立体显示器已逐渐成为新的发展方向,比如TV、monitor以及 mobile等。再者,虽然其中的偏光式立体显示器搭配曲面的新型设计是设计者们在极力开发研究的,但是一般情况下曲面的偏光式立体显示器的3D偏光式的架构设计还是会产生一定程度的3D串扰问题,故会给用户在观看的时候产生眼睛不舒服的感觉,严重影响了用户使用的体验度。
发明内容
本申请实施例提供一种裸眼立体显示器及裸眼立体显示系统,能够有效减少3D串扰对用户影响,提高用户的观看体验度。
一方面,本申请实施例提供了一种裸眼立体显示器,包括显示面板,具有多个第一像素区和多个第二像素区,所述第一像素区和第二像素区依次相邻分布以成阵列排列;相位延迟膜,用于配置于显示面板的表面,其中,所述相位延迟膜包括多个第一延迟区和多个第二延迟区,每个第一延迟区的相位延迟量均不相同,且每个第一延迟区均与一第一像素区相对应配置,每个第二延迟区的相位延迟量均不相同,且每个第二延迟区均与一第二像素区相对应配置。
另一方面, 本申请实施例还提供一种裸眼立体显示器,包括,
显示面板,具有多个第一像素区和多个第二像素区,所述第一像素区和第二像素区依次相邻分布以成阵列排列;
相位延迟膜,用于配置于显示面板的表面,其中,所述相位延迟膜包括多个第一延迟区和多个第二延迟区,每个第一延迟区的相位延迟量均不相同,且每个第一延迟区均与一第一像素区相对应配置,每个第二延迟区的相位延迟量均不相同,且每个第二延迟区均与一第二像素区相对应配置;
背光模组,所述背光模组位于所述显示面板的另一表面,以提供背光给显示面板;
其中,不同的第一像素区以及不同的第二像素区均对应一个不同的曲率;所述第一延迟区的相位延迟量随着与其相对应配置的第一像素区的曲率的变化而变化;所述第二延迟区的相位延迟量随着与其相对应配置的第二像素区的曲率的变化而变化;
所述显示面板包括,有源元件阵列基板,具有有源元件阵列;对向基板;显示层,配置于所述有源元件阵列基板与所述对向基板之间。
又一方面,本申请实施例还提供一种裸眼立体显示系统,包括,
裸眼立体显示器;
控制单元,与所述裸眼立体显示器电性相连,以控制所述裸眼立体显示器的工作状态;
所述裸眼立体显示器包括,
显示面板,具有多个第一像素区和多个第二像素区,所述第一像素区和第二像素区依次相邻分布以成阵列排列;
相位延迟膜,用于配置于显示面板的表面,其中,所述相位延迟膜包括多个第一延迟区和多个第二延迟区,每个第一延迟区的相位延迟量均不相同,且每个第一延迟区均与一第一像素区相对应配置,每个第二延迟区的相位延迟量均不相同,且每个第二延迟区均与一第二像素区相对应配置。
本申请实施例的结构简单,不仅能够有效减少3D串扰对用户的影响,还能够有效提高用户的观看体验度。尤其是,不同的第一像素区对应具有不同的相位延迟量,不同的第二像素区也对应具有不同相位延迟量的,且不同搞得相位延迟量随着显示面板的曲率的变化而变化,这就更能够有效减少3D串扰对用户的影响。
附图说明
为了更清楚地说明本申请实施例技术方案,下面将对实施例描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图是本申请的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1是本申请实施例提供的一种裸眼立体显示器的结构图;
图2是本申请实施例提供的一种裸眼立体显示器的剖视图;
图3是本申请实施例提供的一种裸眼立体显示器的另一剖视图;
图4是本申请另一实施例提供的一种裸眼立体显示器的剖视图。
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。
应当理解,当在本说明书和所附权利要求书中使用时,术语“包括”和“包含”指示所描述特征、整体、步骤、操作、元素和/或组件的存在,但并不排除一个或多个其它特征、整体、步骤、操作、元素、组件和/或其集合的存在或添加。
还应当理解,在此本申请说明书中所使用的术语仅仅是出于描述特定实施例的目的而并不意在限制本申请。如在本申请说明书和所附权利要求书中所使用的那样,除非上下文清楚地指明其它情况,否则单数形式的“一”、“一个”及“该”意在包括复数形式。还应当进一步理解,在本申请说明书和所附权利要求书中使用的术语“和/ 或”是指相关联列出的项中的一个或多个的任何组合以及所有可能组合,并且包括这些组合。
参见图1,其是本申请实施例所提供一种裸眼立体显示器的结构图,如图所示的裸眼立体显示器包括:显示面板1,具有多个第一像素区11和多个第二像素区12,所述第一像素区11和第二像素12区依次相邻分布以成阵列排列;相位延迟膜2,用于配置于显示面板的表面,其中,所述相位延迟膜2包括多个第一延迟区21和多个第二延迟区22,每个第一延迟区21的相位延迟量均不相同,且每个第一延迟区21均与一第一像素区11相对应配置,每个第二延迟区22的相位延迟量均不相同,且每个第二延迟区22均与一第二像素区12相对应配置。
其中,显示面板1中的第一像素区和第二像素区依次相邻分布以成阵列排列,从而使得人眼A在观看的时候能够右眼接收到第一像素区发送的图像信息,左眼接收到第二像素区发送的图像信息,从而接收并合成3D图像。为了使得不同像素区在发送对应的图像信息时不会产生3D串扰,故配置为显示面板的表面的相位延迟膜的不同延迟区的相位延迟量也相应的设置为不同,以为不同位置的像素区的图像信息进行对应的补偿。此处,可以根据测试获取显示面板中位于不同位置的像素区需要对应的最佳的相位延迟量,从而进行相应的设置。
在一些实施例中,不同的第一像素区以及不同的第二像素区均对应一个不同的曲率。一般来说,在现有的裸眼立体显示器中,显示面板均为曲面显示面板,不同的曲面显示面板上的不同的点可能会有不同的曲率,即不同的第一像素区会对应有不同的曲率,不同的第二像素区会对应有不同的曲率。
在一些实施例中,显示面板1例如为液晶显示面板、OLED、QLED或其他显示面板。
在一些实施例中,所述第一延迟区的相位延迟量随着与其相对应配置的第一像素区的曲率的变化而变化;所述第二延迟区的相位延迟量随着与其相对应配置的第二像素区的曲率的变化而变化。
其中,在用户通过人眼A进行观看的过程中,通常都会位于显示面板中心点对应的位置,此时曲率不同的第一像素区的图像信息则需要与该第一像素区相对应的第一延迟区具有一与该曲率相匹配的相位延迟量,同理曲率不同的第二像素区的图像信息则需要与该第二像素区相对应的第二延迟区具有一与该曲率相匹配的相位延迟量。
如图2所示,作为可选的,所述显示面板1可以包括,有源元件阵列基板13,具有有源元件阵列13a;对向基板14;显示层15,配置于所述有源元件阵列基板13与所述对向基板14之间。
所述有源元件阵列基板13包括,第一基板131,用于放置有源元件阵列13a;黑矩阵132,具有多个开口132a;多个彩色滤光膜133,用于配置于所述有源元件阵列13a的上方,每个彩色滤光膜133均对应一个开口132a,且两两相邻的彩色滤光膜133分别对应为第一像素区11和第二像素区12。其中,黑矩阵为遮光构件,能够有效地将有源元件阵列发出的光进行分隔,并形成第一像素区和第二像素区分别发送的图像信息,进一步地使得右眼接收到第一像素区发送的图像信息,左眼接收到第二像素区发送的图像信息。
作为进一步的,所述显示面板1还可包括偏光片16,配置于所述对向基板14与相位延迟膜2之间。当然,如图3所示,作为更进一步的,所述显示面板1还包括偏光片16,所述偏光片16配置于所述对向基板14与显示层15之间。其中,偏光片16的位置可以根据具体的实际情况进行。
同时,所述显示层15为液晶层、电泳层、电湿润层或有机电致发光层。当然,显示层15具体可以根据实际情况进行选择确定种类,同时显示层也不仅是限于上述几种构件。
在一些实施例中,本申请中的裸眼立体显示器还可以包括一背光模组,所述背光模组位于所述显示面板的另一表面。其中所述显示面板1可以是液晶显示面板,背光模组用以提供背光给液晶显示面板(显示面板1)。
在一些实施例中,如图4所示,所述对向基板14包括,第二基板141,黑矩阵142,具有多个开口142a;多个彩色滤光膜143,用于配置于所述第二基板141上,每个彩色滤光膜143均对应一个开口142a,且两两相邻的彩色滤光膜143分别对应为第一像素区11和第二像素区12。
其中,黑矩阵为遮光构件,能够有效地将有源元件阵列发出的光进行分隔,并形成第一像素区和第二像素区分别发送的图像信息,进一步地使得右眼接收到第一像素区发送的图像信息,左眼接收到第二像素区发送的图像信息。
同时,所述显示面板1还可包括,偏光片16,配置于所述第二基板141与相位延迟膜2之间。偏光片的位置可以根据实际情况进行设置,并不仅限于上述情况。
综上所述,本申请一种裸眼立体显示器的结构简单,不仅能够有效减少3D串扰对用户的影响,还能够有效提高用户的观看体验度。尤其是,不同的第一像素区对应具有不同的相位延迟量,不同的第二像素区也对应具有不同相位延迟量的,且不同搞得相位延迟量随着显示面板的曲率的变化而变化,这就更能够有效减少3D串扰对用户的影响。
本申请实施例还提供一种裸眼立体显示系统,所述裸眼立体显示系统包括裸眼立体显示器以及控制单元,其中所述控制单元与所述裸眼立体显示器电性相连,以控制所述裸眼立体显示器的工作状态。
具体的,在本实施例中,如图1所示的裸眼立体显示器包括:显示面板1,具有多个第一像素区11和多个第二像素区12,所述第一像素区11和第二像素12区依次相邻分布以成阵列排列;相位延迟膜2,用于配置于显示面板的表面,其中,所述相位延迟膜2包括多个第一延迟区21和多个第二延迟区22,每个第一延迟区21的相位延迟量均不相同,且每个第一延迟区21均与一第一像素区11相对应配置,每个第二延迟区22的相位延迟量均不相同,且每个第二延迟区22均与一第二像素区12相对应配置。需要说明的是,在上述实施例中,对各个实施例的描述都各有侧重,某个实施例中没有详细描述的部分,可以参见其他实施例的相关描述。
以上所述,仅为本申请的具体实施方式,但本申请的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本申请揭露的技术范围内,可轻易想到各种等效的修改或替换,这些修改或替换都应涵盖在本申请的保护范围之内。因此,本申请的保护范围应以权利要求的保护范围为准。

Claims (20)

  1. 一种裸眼立体显示器,包括,
    显示面板,具有多个第一像素区和多个第二像素区,所述第一像素区和第二像素区依次相邻分布以成阵列排列;
    相位延迟膜,用于配置于显示面板的表面,其中,所述相位延迟膜包括多个第一延迟区和多个第二延迟区,每个第一延迟区的相位延迟量均不相同,且每个第一延迟区均与一第一像素区相对应配置,每个第二延迟区的相位延迟量均不相同,且每个第二延迟区均与一第二像素区相对应配置。
  2. 如权利要求1所述的裸眼立体显示器,其中,
    不同的第一像素区以及不同的第二像素区均对应一个不同的曲率。
  3. 如权利要求2所述的裸眼立体显示器,其中,
    所述第一延迟区的相位延迟量随着与其相对应配置的第一像素区的曲率的变化而变化;
    所述第二延迟区的相位延迟量随着与其相对应配置的第二像素区的曲率的变化而变化。
  4. 如权利要求1所述的裸眼立体显示器,其中,所述显示面板包括,
    有源元件阵列基板,具有有源元件阵列;
    对向基板;
    显示层,配置于所述有源元件阵列基板与所述对向基板之间。
  5. 如权利要求4所述的裸眼立体显示器,其中,所述有源元件阵列基板包括,
    第一基板,用于放置有源元件阵列;
    黑矩阵,具有多个开口;
    多个彩色滤光膜,用于配置于所述有源元件阵列的上方,每个彩色滤光膜均对应一个开口,且两两相邻的彩色滤光膜分别对应为第一像素区和第二像素区。
  6. 如权利要求5所述的裸眼立体显示器,其中,所述显示面板还包括,
    偏光片,配置于所述对向基板与相位延迟膜之间。
  7. 如权利要求5所述的裸眼立体显示器,其中,所述显示面板还包括,
    偏光片,配置于所述对向基板与显示层之间。
  8. 如权利要求4所述的裸眼立体显示器,其中,所述对向基板包括,
    第二基板;
    黑矩阵,具有多个开口;
    多个彩色滤光膜,用于配置于所述第二基板上,每个彩色滤光膜均对应一个开口,且两两相邻的彩色滤光膜分别对应为第一像素区和第二像素区。
  9. 如权利要求8所述的裸眼立体显示器,其中,所述显示面板还包括,
    偏光片,配置于所述第二基板与相位延迟膜之间。
  10. 如权利要求4所述的裸眼立体显示器,其中,所述显示层为液晶层、电泳层、电湿润层或有机电致发光层。
  11. 一种裸眼立体显示器,包括,
    显示面板,具有多个第一像素区和多个第二像素区,所述第一像素区和第二像素区依次相邻分布以成阵列排列;
    相位延迟膜,用于配置于显示面板的表面,其中,所述相位延迟膜包括多个第一延迟区和多个第二延迟区,每个第一延迟区的相位延迟量均不相同,且每个第一延迟区均与一第一像素区相对应配置,每个第二延迟区的相位延迟量均不相同,且每个第二延迟区均与一第二像素区相对应配置;
    其中,不同的第一像素区以及不同的第二像素区均对应一个不同的曲率;所述第一延迟区的相位延迟量随着与其相对应配置的第一像素区的曲率的变化而变化;所述第二延迟区的相位延迟量随着与其相对应配置的第二像素区的曲率的变化而变化;
    所述显示面板包括,有源元件阵列基板,具有有源元件阵列;对向基板;显示层,配置于所述有源元件阵列基板与所述对向基板之间。
  12. 一种裸眼立体显示系统,包括,
    裸眼立体显示器;
    控制单元,与所述裸眼立体显示器电性相连,以控制所述裸眼立体显示器的工作状态;
    所述裸眼立体显示器包括,
    显示面板,具有多个第一像素区和多个第二像素区,所述第一像素区和第二像素区依次相邻分布以成阵列排列;
    相位延迟膜,用于配置于显示面板的表面,其中,所述相位延迟膜包括多个第一延迟区和多个第二延迟区,每个第一延迟区的相位延迟量均不相同,且每个第一延迟区均与一第一像素区相对应配置,每个第二延迟区的相位延迟量均不相同,且每个第二延迟区均与一第二像素区相对应配置。
  13. 如权利要求12所述的裸眼立体显示系统,其中,
    不同的第一像素区以及不同的第二像素区均对应一个不同的曲率。
  14. 如权利要求13所述的裸眼立体显示系统,其中,
    所述第一延迟区的相位延迟量随着与其相对应配置的第一像素区的曲率的变化而变化;
    所述第二延迟区的相位延迟量随着与其相对应配置的第二像素区的曲率的变化而变化。
  15. 如权利要求12所述的裸眼立体显示系统,其中,所述显示面板包括,
    有源元件阵列基板,具有有源元件阵列;
    对向基板;
    显示层,配置于所述有源元件阵列基板与所述对向基板之间。
  16. 如权利要求15所述的裸眼立体显示系统,其中,其中,所述有源元件阵列基板包括,
    第一基板,用于放置有源元件阵列;
    黑矩阵,具有多个开口;
    多个彩色滤光膜,用于配置于所述有源元件阵列的上方,每个彩色滤光膜均对应一个开口,且两两相邻的彩色滤光膜分别对应为第一像素区和第二像素区。
  17. 如权利要求16所述的裸眼立体显示系统,其中,所述显示面板还包括,
    偏光片,配置于所述对向基板与相位延迟膜之间。
  18. 如权利要求16所述的裸眼立体显示系统,其中,所述显示面板还包括,
    偏光片,配置于所述对向基板与显示层之间。
  19. 如权利要求15所述的裸眼立体显示系统,其中,所述对向基板包括,
    第二基板;
    黑矩阵,具有多个开口;
    多个彩色滤光膜,用于配置于所述第二基板上,每个彩色滤光膜均对应一个开口,且两两相邻的彩色滤光膜分别对应为第一像素区和第二像素区。
  20. 如权利要求19所述的裸眼立体显示系统,其中,所述显示面板还包括,
    偏光片,配置于所述第二基板与相位延迟膜之间。
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CN106802489A (zh) * 2017-03-31 2017-06-06 惠科股份有限公司 一种裸眼立体显示器

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