WO2015135226A1 - 显示装置和显示系统 - Google Patents
显示装置和显示系统 Download PDFInfo
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- WO2015135226A1 WO2015135226A1 PCT/CN2014/073932 CN2014073932W WO2015135226A1 WO 2015135226 A1 WO2015135226 A1 WO 2015135226A1 CN 2014073932 W CN2014073932 W CN 2014073932W WO 2015135226 A1 WO2015135226 A1 WO 2015135226A1
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- WO
- WIPO (PCT)
- Prior art keywords
- light
- polarized light
- display panel
- linearly polarized
- liquid crystal
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Classifications
-
- G—PHYSICS
- G02—OPTICS
- G02B—OPTICAL ELEMENTS, SYSTEMS OR APPARATUS
- G02B30/00—Optical systems or apparatus for producing three-dimensional [3D] effects, e.g. stereoscopic images
- G02B30/20—Optical 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
- G02B30/22—Optical 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
- G02B30/25—Optical 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
-
- G—PHYSICS
- G02—OPTICS
- G02F—OPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
- G02F1/00—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
- G02F1/01—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour
- G02F1/13—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour based on liquid crystals, e.g. single liquid crystal display cells
- G02F1/133—Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
- G02F1/1333—Constructional arrangements; Manufacturing methods
- G02F1/1335—Structural association of cells with optical devices, e.g. polarisers or reflectors
- G02F1/133528—Polarisers
-
- G—PHYSICS
- G02—OPTICS
- G02F—OPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
- G02F1/00—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
- G02F1/01—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour
- G02F1/13—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour based on liquid crystals, e.g. single liquid crystal display cells
- G02F1/133—Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
- G02F1/1333—Constructional arrangements; Manufacturing methods
- G02F1/1335—Structural association of cells with optical devices, e.g. polarisers or reflectors
- G02F1/13363—Birefringent elements, e.g. for optical compensation
-
- G—PHYSICS
- G02—OPTICS
- G02F—OPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
- G02F1/00—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
- G02F1/01—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour
- G02F1/13—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour based on liquid crystals, e.g. single liquid crystal display cells
- G02F1/133—Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
- G02F1/1333—Constructional arrangements; Manufacturing methods
- G02F1/1343—Electrodes
- G02F1/13439—Electrodes characterised by their electrical, optical, physical properties; materials therefor; method of making
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N13/00—Stereoscopic video systems; Multi-view video systems; Details thereof
- H04N13/30—Image reproducers
- H04N13/332—Displays for viewing with the aid of special glasses or head-mounted displays [HMD]
- H04N13/337—Displays for viewing with the aid of special glasses or head-mounted displays [HMD] using polarisation multiplexing
-
- G—PHYSICS
- G02—OPTICS
- G02F—OPTICAL DEVICES OR ARRANGEMENTS FOR THE CONTROL OF LIGHT BY MODIFICATION OF THE OPTICAL PROPERTIES OF THE MEDIA OF THE ELEMENTS INVOLVED THEREIN; NON-LINEAR OPTICS; FREQUENCY-CHANGING OF LIGHT; OPTICAL LOGIC ELEMENTS; OPTICAL ANALOGUE/DIGITAL CONVERTERS
- G02F1/00—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics
- G02F1/01—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour
- G02F1/13—Devices or arrangements for the control of the intensity, colour, phase, polarisation or direction of light arriving from an independent light source, e.g. switching, gating or modulating; Non-linear optics for the control of the intensity, phase, polarisation or colour based on liquid crystals, e.g. single liquid crystal display cells
- G02F1/133—Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
- G02F1/1333—Constructional arrangements; Manufacturing methods
- G02F1/1335—Structural association of cells with optical devices, e.g. polarisers or reflectors
- G02F1/13363—Birefringent elements, e.g. for optical compensation
- G02F1/133638—Waveplates, i.e. plates with a retardation value of lambda/n
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04N—PICTORIAL COMMUNICATION, e.g. TELEVISION
- H04N2213/00—Details of stereoscopic systems
- H04N2213/001—Constructional or mechanical details
Definitions
- the present invention relates to the field of display technologies, and in particular, to a display device and a display system.
- the 3D images displayed by the above conventional 3D display have only half resolution, and thus the display quality of the 3D image is low.
- a display device includes: a first display panel for emitting a first light in a first direction, and for emitting a second light in a second direction opposite to the first direction, the first light a light corresponding to the first image displayed by the first display panel in the first direction, the second light being a light corresponding to the first image in the second direction; and a second a display panel, configured to emit a third light in the first direction, where the third light is a light corresponding to the second image displayed by the second display panel in the first direction, and The second light ray is reflected in the first direction; wherein the first display panel is further configured to transmit the third light; the first direction is perpendicular to a plane where the first display panel is located, The first direction is a direction from a center or a center of gravity of the second display panel to a center or a center of gravity of the first display panel, and the second display panel and the first display panel are sequentially along the first The direction is superimposed into one; the display The device further includes: a polarizing plate
- the optical ray plate is a quarter wave plate; the quarter wave plate is for converting the first linearly polarized light into circularly polarized light, the circularly polarized light having a first a rotation state; the second display panel is further configured to reflect the circularly polarized light having the first rotation state in the first direction, so that the circularly polarized light has a second rotation state; A wave plate is further configured to convert the circularly polarized light having the second rotational state into the second linearly polarized light.
- the first rotation state is a right-handed state/left-handed state
- the second rotated state is a left-handed state/right-handed state
- the optical ray plate is a liquid crystal cell; the liquid crystal cell is configured to rotate the first linearly polarized light into a third linearly polarized light, and the third linearly polarized light has a third polarization direction;
- the second display panel is further configured to reflect the third linearly polarized light in the first direction;
- the liquid crystal cell is further configured to rotate the third linearly polarized light emitted through the second display panel to the second line polarized light.
- the liquid crystal cell includes: a first substrate; a liquid crystal layer; and a second substrate; wherein the first substrate and the second substrate are integrated, the liquid crystal layer is provided a liquid crystal molecule, the liquid crystal layer being disposed between the first substrate and the second substrate, wherein the first substrate and the second substrate are each provided with a transparent electrode, the first substrate and the second substrate
- the substrate is used to collectively control the deflection state of the liquid crystal molecules by applying an electric field force to the liquid crystal molecules, thereby changing a deflection direction of the first linearly polarized light.
- the optical ray plate is further configured to transmit the third light; the polarizing plate is further configured to convert the third light transmitted by the optical rotator into a fourth linearly polarized light.
- the fourth polarized light has the first polarization direction.
- a display device includes: a first display panel for emitting a first light in a first direction, and for emitting a second light in a second direction opposite to the first direction, the first light is The first image displayed by the first display panel corresponds to the light in the first direction, the second light is the light corresponding to the first image in the second direction, and a second display a panel for emitting a third light in the first direction, the third light being a light corresponding to the second image displayed by the second display panel in the first direction, and The second light is reflected in the first direction; wherein the first display panel is further configured to transmit the third light; the first direction is perpendicular to a plane where the first display panel is located, The two display panels and the first display panel are superimposed in a single direction along the first direction.
- the display device further includes: a polarizing plate disposed between the first display panel and the second display panel for converting the second light into the first linearly polarized light
- the first linearly polarized light has a first polarization direction
- a light-rotating plate disposed between the polarizing plate and the second display panel for reflecting the second reflective panel Converting the second light into a second linearly polarized light, the second linearly polarized light having a second polarization direction, the second polarization direction being perpendicular to the first polarization direction; the polarizing plate further for blocking the second linearly polarized light Through.
- the optical ray plate is a quarter wave plate; the quarter wave plate is for converting the first linearly polarized light into circularly polarized light, the circularly polarized light having a first a rotation state; the second display panel is further configured to reflect the circularly polarized light having the first rotation state in the first direction, so that the circularly polarized light has a second rotation state; A wave plate is further configured to convert the circularly polarized light having the second rotational state into the second linearly polarized light.
- the first rotation state is a right-handed state/left-handed state
- the second rotated state is a left-handed state/right-handed state
- the optical ray plate is a liquid crystal cell; the liquid crystal cell is configured to rotate the first linearly polarized light into a third linearly polarized light, and the third linearly polarized light has a third polarization direction;
- the second display panel is further configured to reflect the third linearly polarized light in the first direction;
- the liquid crystal cell is further configured to rotate the third linearly polarized light emitted through the second display panel to the second line polarized light.
- the liquid crystal cell includes: a first substrate; a liquid crystal layer; and a second substrate; wherein the first substrate and the second substrate are integrated, the liquid crystal layer is provided a liquid crystal molecule, the liquid crystal layer being disposed between the first substrate and the second substrate, wherein the first substrate and the second substrate are each provided with a transparent electrode, the first substrate and the second substrate
- the substrate is used to collectively control the deflection state of the liquid crystal molecules by applying an electric field force to the liquid crystal molecules, thereby changing a deflection direction of the first linearly polarized light.
- the optical ray plate is further configured to transmit the third light; the polarizing plate is further configured to convert the third light transmitted by the optical rotator into a fourth linearly polarized light.
- the fourth polarized light has the first polarization direction.
- a display system comprising: polarized glasses; and a display device, wherein the display device comprises: a first display panel for emitting a first light in a first direction, and for being opposite to the first direction The second direction emits a second light, wherein the first light is a light corresponding to the first image displayed by the first display panel in the first direction, and the second light is the first image a light corresponding to the second direction; and a second display panel for emitting a third light in the first direction, wherein the third light is a second image displayed by the second display panel Corresponding light in a first direction, and for reflecting the second light in the first direction; wherein the first display panel is further configured to transmit the third light; the first direction The second display panel and the first display panel are superimposed one after another in the first direction in a sequence perpendicular to a plane in which the first display panel is located.
- the display device further includes: a polarizing plate disposed between the first display panel and the second display panel for converting the second light into the first linearly polarized light
- the first linearly polarized light has a first polarization direction
- a light-rotating plate disposed between the polarizing plate and the second display panel for reflecting the second reflective panel Converting the second light into a second linearly polarized light, the second linearly polarized light having a second polarization direction, the second polarization direction being perpendicular to the first polarization direction; the polarizing plate further for blocking the second linearly polarized light Through.
- the optical rotator is a quarter wave plate; the quarter wave plate is for converting the first linearly polarized light into circularly polarized light, the circularly polarized light having a first a rotation state; the second display panel is further configured to reflect the circularly polarized light having the first rotation state in the first direction, so that the circularly polarized light has a second rotation state; A wave plate is further configured to convert the circularly polarized light having the second rotational state into the second linearly polarized light.
- the first rotation state is a right-handed state/left-handed state
- the second rotated state is a left-handed state/right-handed state
- the optical ray plate is a liquid crystal cell; the liquid crystal cell is configured to rotate the first linearly polarized light into a third linearly polarized light, and the third linearly polarized light has a third polarization direction;
- the second display panel is further configured to reflect the third linearly polarized light in the first direction;
- the liquid crystal cell is further configured to rotate the third linearly polarized light emitted through the second display panel to the second line polarized light.
- the liquid crystal cell includes: a first substrate; a liquid crystal layer; and a second substrate; wherein the first substrate and the second substrate are integrated, the liquid crystal layer is provided a liquid crystal molecule, the liquid crystal layer being disposed between the first substrate and the second substrate, wherein the first substrate and the second substrate are each provided with a transparent electrode, the first substrate and the second substrate
- the substrate is used to collectively control the deflection state of the liquid crystal molecules by applying an electric field force to the liquid crystal molecules, thereby changing a deflection direction of the first linearly polarized light.
- the optical ray plate is further configured to transmit the third light; the polarizing plate is further configured to convert the third light transmitted by the optical rotator into a fourth linearly polarized light.
- the fourth polarized light has the first polarization direction.
- the stereoscopic image displayed by the display device and the display system of the present invention has full resolution and thus has high stereoscopic image display quality, and further, the display device and the display system of the present invention can simultaneously display two-dimensional images and Three-dimensional image.
- FIG. 1 is a schematic view of a first embodiment of a display device of the present invention
- FIG. 2 is a schematic view showing a display mode of the display device shown in FIG. 1;
- FIG. 3 is a schematic view of a liquid crystal cell of a second embodiment of the display device of the present invention.
- FIG. 4 is a schematic diagram of a first embodiment of a display system of the present invention.
- FIG. 1 is a schematic diagram of a first embodiment of a display device 100 of the present invention
- FIG. 2 is a schematic diagram of a display mode of the display device 100 illustrated in FIG.
- the display device 100 of the present embodiment includes a first display panel 101, a second display panel 102, a polarizing plate 103, and a light-emitting plate 104.
- the first display panel 101, the polarizing plate 103, the optical rotating plate 104, and the second display panel 102 are all disposed in parallel, and the polarizing plate 103 is disposed on the first display panel 101 and the
- the second display panel 102 is disposed between the polarizing plate 103 and the second display panel 102, the second display panel 102, the optical rotating plate 104, and the polarizing plate 103.
- the first display panel 101 is superimposed integrally in the first direction 201 in order.
- the first display panel 101 is configured to emit a first light ray 1011 along a first direction 201, and to emit a second light ray 1012 in a second direction 202 opposite to the first direction 201, the first light ray 1011 being
- the first image displayed by the first display panel 101 corresponds to the light in the first direction 201
- the second light 1012 is the light corresponding to the first image in the second direction 202.
- the first display panel 101 is a transparent OLED (Organic A Light Emitting Diode panel for displaying the first image in the first direction 201 and the second direction 202.
- the first direction 201 is perpendicular to a plane where the first display panel 101 is located, and the first direction 201 is directed to a center of the first display panel 101 by a center or a center of gravity of the second display panel 102. Or the direction of the center of gravity.
- the polarizing plate 103 is configured to convert the second light ray 1012 into first linearly polarized light, and the first linearly polarized light has a first polarization direction 1031.
- the second display panel 102 is configured to emit a third light ray 1021 along the first direction 201, and the third light ray 1021 is a second image displayed by the second display panel 102 in the first direction 201. Corresponding light rays, and for reflecting the second light rays 1012 along the first direction 201.
- the second display panel 102 is a top emitting OLED, that is, one side of the second display panel 102 facing the first display panel 101 is a light emitting surface, and the second display panel 102 faces away.
- One surface of the first display panel 101 is a light reflecting surface, and the light reflecting surface is provided with a light reflecting material such that the light reflecting surface that is incident on the light emitting surface is reflected from the light emitting surface.
- the optical rotating plate 104 is configured to convert the second light (circularly polarized light or third linearly polarized light) 1013 reflected by the second display panel 102 into second linearly polarized light, and the second linearly polarized light has a second a polarization direction, the second polarization direction being perpendicular to the first polarization direction 1031.
- the polarizing plate 103 is further configured to block the transmission of the second linearly polarized light. Therefore, the second light 1013 reflected by the second display panel 102 will not pass through the first display panel 101.
- the optical rotating plate 104 is further configured to transmit the third light 1021 (fourth linearly polarized light).
- the polarizing plate 103 is further configured to convert the third light ray 1021 transmitted by the optical ray plate 104 into fourth linearly polarized light, and the fourth polarized light has the first polarization direction 1031.
- the first display panel 101 is further configured to transmit the third light 1021.
- the first image and the second display displayed by the first display panel 101 are provided because the first display panel 101 and the second display panel 102 have a certain distance therebetween.
- the second images displayed on the panel 102 are superimposed to form a stereoscopic image having a depth of field constructed by the first display panel 101 and the display panel.
- the first image is a full resolution image
- the stereoscopic image composed of the first image and the second image superimposed has full resolution.
- the display device 100 of the present invention can provide a stereoscopic image with higher display quality.
- the display device of the present invention is capable of simultaneously displaying a 2D image and a 3D image.
- the optical rotating plate 104 is a quarter wave plate.
- the quarter-wave plate is for converting the first linearly polarized light into circularly polarized light, and the circularly polarized light emitted from the quarter-wave plate has a first rotation state, for example, The first rotation state is a right-handed state.
- the second display panel 102 is further configured to reflect the circularly polarized light having the first rotation state along the first direction 201 such that the circularly polarized light reflected by the second display panel 102 has
- the second rotation state for example, the second rotation state is a left-hand rotation state.
- the quarter wave plate is further configured to convert the circularly polarized light having the second rotational state into the second linearly polarized light.
- the first rotation state may also be a left-handed state
- the second rotation state may also be a right-handed state
- the second embodiment of the display device 100 of the present invention is similar to the first embodiment described above, except that:
- the optical rotating plate 104 is a liquid crystal (Liquid As shown in FIG. 3, the liquid crystal cell includes a first substrate 1041, a liquid crystal layer 1042, and a second substrate 1043.
- the first substrate 1041 and the second substrate 1043 are integrally stacked.
- the first substrate 1041 and the second substrate 1043 are each provided with a transparent electrode, for example, ITO (Indium Tin Oxide).
- the liquid crystal layer 1042 is provided with liquid crystal molecules.
- the liquid crystal layer 1042 is disposed between the first substrate 1041 and the second substrate 1043, and the first substrate 1041 and the second substrate 1043 are used for common control by applying an electric field force to the liquid crystal molecules. a deflection state of the liquid crystal molecules such that a deflection direction of the first linearly polarized light is changed.
- the liquid crystal cell is configured to rotate the first linearly polarized light into a third linearly polarized light, and the third linearly polarized light has a third polarization direction.
- the second display panel 102 is further configured to reflect the third linearly polarized light along the first direction 201.
- the liquid crystal cell is further configured to rotate the third linearly polarized light emitted through the second display panel 102 into the second linearly polarized light.
- FIG. 4 there is shown a schematic view of a first embodiment of a display system of the present invention.
- the display system of the present embodiment includes the display device 100 and the polarizing glasses 400.
- the polarizing glasses 400 have a light transmitting direction, the light transmitting direction is perpendicular to the first polarization direction 1031, and the polarizing glasses 400 are used for transmitting the light.
- the light corresponding to the first image of the first display panel 101 (the first light 1011) is used to block the light corresponding to the second image transmitted through the second display panel 102 (the third light 1021) ).
- the display system of the present invention can simultaneously view 2D images and 3D images.
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Abstract
一种显示装置(100),包括:第一显示面板(101),用于沿第一方向(201)发出第一光线(1011),并用于沿与第一方向相反的第二方向(202)发出第二光线(1012);以及第二显示面板(102),用于沿第一方向发出第三光线(1021),并用于将第二光线沿第一方向反射;其中,第一显示面板还用于透过第三光线;第二显示面板和第一显示面板按先后顺序沿第一方向叠加为一体。
Description
本发明涉及显示技术领域,特别涉及一种显示装置和显示系统。
传统的3D(Three Dimension,三维)显示器一般都具有显示3D图像和2D(Two
Dimension,二维)图像的功能。
在实践中,发明人发现现有技术至少存在以下问题:
上述传统的3D显示器所显示的3D图像都仅有半分辨率,因此所述3D图像的显示质量较低。
故,有必要提出一种新的技术方案,以解决上述技术问题。
本发明的目的在于提供一种显示装置和显示系统,其能使得所显示的立体图像具有较高的显示质量。
为解决上述问题,本发明实施例的技术方案如下:
一种显示装置,其包括:一第一显示面板,用于沿第一方向发出第一光线,以及用于沿与所述第一方向相反的第二方向发出第二光线,所述第一光线为所述第一显示面板所显示的第一图像在所述第一方向上对应的光线,所述第二光线为所述第一图像在所述第二方向上对应的光线;以及一第二显示面板,用于沿所述第一方向发出第三光线,所述第三光线为所述第二显示面板所显示的第二图像在所述第一方向上对应的光线,以及用于将所述第二光线沿所述第一方向反射;其中,所述第一显示面板还用于透过所述第三光线;所述第一方向垂直于所述第一显示面板所在的平面,所述第一方向为由所述第二显示面板的中心或重心指向所述第一显示面板的中心或重心的方向,所述第二显示面板和所述第一显示面板按先后顺序沿所述第一方向叠加为一体;所述显示装置还包括:一偏光板,设置于所述第一显示面板和所述第二显示面板之间,用于将所述第二光线转换成第一线偏振光,所述第一线偏振光具有第一偏振方向;以及一旋光板,设置于所述偏光板和所述第二显示面板之间,用于将经过所述第二显示面板反射的所述第二光线转换成第二线偏振光,所述第二线偏振光具有第二偏振方向,所述第二偏振方向与所述第一偏振方向垂直;所述偏光板还用于阻挡所述第二线偏振光透过。
在上述显示装置中,所述旋光板为四分之一波片;所述四分之一波片用于将所述第一线偏振光转换成圆偏振光,所述圆偏振光具有第一旋转状态;所述第二显示面板还用于将具有所述第一旋转状态的所述圆偏振光沿所述第一方向反射,使得所述圆偏振光具有第二旋转状态;所述四分之一波片还用于将具有所述第二旋转状态的所述圆偏振光转换成所述第二线偏振光。
在上述显示装置中,所述第一旋转状态为右旋状态/左旋状态,所述第二旋转状态为左旋状态/右旋状态。
在上述显示装置中,所述旋光板为液晶盒;所述液晶盒用于将所述第一线偏振光旋转为第三线偏振光,所述第三线偏振光具有第三偏振方向;所述第二显示面板还用于将所述第三线偏振光沿所述第一方向反射;所述液晶盒还用于将经过所述第二显示面板发射的所述第三线偏振光旋转为所述第二线偏振光。
在上述显示装置中,所述液晶盒包括:一第一基板;一液晶层;以及一第二基板;其中,所述第一基板和所述第二基板叠加为一体,所述液晶层设有液晶分子,所述液晶层设置于所述第一基板和所述第二基板之间,所述第一基板和所述第二基板均设置有透明电极,所述第一基板和所述第二基板用于通过向所述液晶分子施加电场力来共同控制所述液晶分子的偏转状态,从而使得所述第一线偏振光的偏转方向发生改变。
在上述显示装置中,所述旋光板还用于透过所述第三光线;所述偏光板还用于将所述旋光板所透过的所述第三光线转换成第四线偏振光,所述第四偏振光具有所述第一偏振方向。
一种显示装置,包括:一第一显示面板,用于沿第一方向发出第一光线,以及用于沿与所述第一方向相反的第二方向发出第二光线,所述第一光线为所述第一显示面板所显示的第一图像在所述第一方向上对应的光线,所述第二光线为所述第一图像在所述第二方向上对应的光线;以及一第二显示面板,用于沿所述第一方向发出第三光线,所述第三光线为所述第二显示面板所显示的第二图像在所述第一方向上对应的光线,以及用于将所述第二光线沿所述第一方向反射;其中,所述第一显示面板还用于透过所述第三光线;所述第一方向垂直于所述第一显示面板所在的平面,所述第二显示面板和所述第一显示面板按先后顺序沿所述第一方向叠加为一体。
在上述显示装置中,所述显示装置还包括:一偏光板,设置于所述第一显示面板和所述第二显示面板之间,用于将所述第二光线转换成第一线偏振光,所述第一线偏振光具有第一偏振方向;以及一旋光板,设置于所述偏光板和所述第二显示面板之间,用于将经过所述第二显示面板反射的所述第二光线转换成第二线偏振光,所述第二线偏振光具有第二偏振方向,所述第二偏振方向与所述第一偏振方向垂直;所述偏光板还用于阻挡所述第二线偏振光透过。
在上述显示装置中,所述旋光板为四分之一波片;所述四分之一波片用于将所述第一线偏振光转换成圆偏振光,所述圆偏振光具有第一旋转状态;所述第二显示面板还用于将具有所述第一旋转状态的所述圆偏振光沿所述第一方向反射,使得所述圆偏振光具有第二旋转状态;所述四分之一波片还用于将具有所述第二旋转状态的所述圆偏振光转换成所述第二线偏振光。
在上述显示装置中,所述第一旋转状态为右旋状态/左旋状态,所述第二旋转状态为左旋状态/右旋状态。
在上述显示装置中,所述旋光板为液晶盒;所述液晶盒用于将所述第一线偏振光旋转为第三线偏振光,所述第三线偏振光具有第三偏振方向;所述第二显示面板还用于将所述第三线偏振光沿所述第一方向反射;所述液晶盒还用于将经过所述第二显示面板发射的所述第三线偏振光旋转为所述第二线偏振光。
在上述显示装置中,所述液晶盒包括:一第一基板;一液晶层;以及一第二基板;其中,所述第一基板和所述第二基板叠加为一体,所述液晶层设有液晶分子,所述液晶层设置于所述第一基板和所述第二基板之间,所述第一基板和所述第二基板均设置有透明电极,所述第一基板和所述第二基板用于通过向所述液晶分子施加电场力来共同控制所述液晶分子的偏转状态,从而使得所述第一线偏振光的偏转方向发生改变。
在上述显示装置中,所述旋光板还用于透过所述第三光线;所述偏光板还用于将所述旋光板所透过的所述第三光线转换成第四线偏振光,所述第四偏振光具有所述第一偏振方向。
一种显示系统,包括:偏光眼镜;以及显示装置,其中,所述显示装置包括:一第一显示面板,用于沿第一方向发出第一光线,以及用于沿与所述第一方向相反的第二方向发出第二光线,所述第一光线为所述第一显示面板所显示的第一图像在所述第一方向上对应的光线,所述第二光线为所述第一图像在所述第二方向上对应的光线;以及一第二显示面板,用于沿所述第一方向发出第三光线,所述第三光线为所述第二显示面板所显示的第二图像在所述第一方向上对应的光线,以及用于将所述第二光线沿所述第一方向反射;其中,所述第一显示面板还用于透过所述第三光线;所述第一方向垂直于所述第一显示面板所在的平面,所述第二显示面板和所述第一显示面板按先后顺序沿所述第一方向叠加为一体。
在上述显示系统中,所述显示装置还包括:一偏光板,设置于所述第一显示面板和所述第二显示面板之间,用于将所述第二光线转换成第一线偏振光,所述第一线偏振光具有第一偏振方向;以及一旋光板,设置于所述偏光板和所述第二显示面板之间,用于将经过所述第二显示面板反射的所述第二光线转换成第二线偏振光,所述第二线偏振光具有第二偏振方向,所述第二偏振方向与所述第一偏振方向垂直;所述偏光板还用于阻挡所述第二线偏振光透过。
在上述显示系统中,所述旋光板为四分之一波片;所述四分之一波片用于将所述第一线偏振光转换成圆偏振光,所述圆偏振光具有第一旋转状态;所述第二显示面板还用于将具有所述第一旋转状态的所述圆偏振光沿所述第一方向反射,使得所述圆偏振光具有第二旋转状态;所述四分之一波片还用于将具有所述第二旋转状态的所述圆偏振光转换成所述第二线偏振光。
在上述显示系统中,所述第一旋转状态为右旋状态/左旋状态,所述第二旋转状态为左旋状态/右旋状态。
在上述显示系统中,所述旋光板为液晶盒;所述液晶盒用于将所述第一线偏振光旋转为第三线偏振光,所述第三线偏振光具有第三偏振方向;所述第二显示面板还用于将所述第三线偏振光沿所述第一方向反射;所述液晶盒还用于将经过所述第二显示面板发射的所述第三线偏振光旋转为所述第二线偏振光。
在上述显示系统中,所述液晶盒包括:一第一基板;一液晶层;以及一第二基板;其中,所述第一基板和所述第二基板叠加为一体,所述液晶层设有液晶分子,所述液晶层设置于所述第一基板和所述第二基板之间,所述第一基板和所述第二基板均设置有透明电极,所述第一基板和所述第二基板用于通过向所述液晶分子施加电场力来共同控制所述液晶分子的偏转状态,从而使得所述第一线偏振光的偏转方向发生改变。
在上述显示系统中,所述旋光板还用于透过所述第三光线;所述偏光板还用于将所述旋光板所透过的所述第三光线转换成第四线偏振光,所述第四偏振光具有所述第一偏振方向。
相对现有技术,本发明的显示装置和显示系统所显示的立体图像具有全分辨率,因此具有较高的立体图像显示质量,此外,本发明的显示装置和显示系统能够同时显示二维图像和三维图像。
图1为本发明的显示装置的第一实施例的示意图;
图2为图1所示的显示装置的显示方式的示意图;
图3为本发明的显示装置的第二实施例的液晶盒的示意图;
图4为本发明的显示系统的第一实施例的示意图。
以下各实施例的说明是参考附加的图式,用以例示本发明可用以实施的特定实施例。
参考图1和图2,图1为本发明的显示装置100的第一实施例的示意图;图2为图1所示的显示装置100的显示方式的示意图。
本实施例的显示装置100包括第一显示面板101、第二显示面板102、偏光板103和旋光板104。其中,所述第一显示面板101、所述偏光板103、所述旋光板104和所述第二显示面板102均平行设置,所述偏光板103设置于所述第一显示面板101和所述第二显示面板102之间,所述旋光板104设置于所述偏光板103和所述第二显示面板102之间,所述第二显示面板102、所述旋光板104、所述偏光板103和所述第一显示面板101按先后顺序沿所述第一方向201叠加为一体。
所述第一显示面板101用于沿第一方向201发出第一光线1011,以及用于沿与所述第一方向201相反的第二方向202发出第二光线1012,所述第一光线1011为所述第一显示面板101所显示的第一图像在所述第一方向201上对应的光线,所述第二光线1012为所述第一图像在所述第二方向202上对应的光线。在本实施例中,所述第一显示面板101是透明OLED(Organic
Light Emitting Diode)面板,所述透明OLED用于在所述第一方向201和所述第二方向202上显示所述第一图像。
其中,所述第一方向201垂直于所述第一显示面板101所在的平面,所述第一方向201为由所述第二显示面板102的中心或重心指向所述第一显示面板101的中心或重心的方向。
所述偏光板103用于将所述第二光线1012转换成第一线偏振光,所述第一线偏振光具有第一偏振方向1031。
所述第二显示面板102用于沿所述第一方向201发出第三光线1021,所述第三光线1021为所述第二显示面板102所显示的第二图像在所述第一方向201上对应的光线,以及用于将所述第二光线1012沿所述第一方向201反射。在本实施例中,所述第二显示面板102是顶发射OLED,即,所述第二显示面板102朝向所述第一显示面板101的一面是出光面,所述第二显示面板102背向所述第一显示面板101的一面是光反射面,所述光反射面设置有光反射材料,从而使得照入所述出光面的光所述光反射面从所述出光面反射出去。
所述旋光板104用于将经过所述第二显示面板102反射的所述第二光线(圆偏振光或者第三线偏振光)1013转换成第二线偏振光,所述第二线偏振光具有第二偏振方向,所述第二偏振方向与所述第一偏振方向1031垂直。
所述偏光板103还用于阻挡所述第二线偏振光透过。因此,经过所述第二显示面板102反射的所述第二光线1013将不能透过所述第一显示面板101。
在本实施例中,所述旋光板104还用于透过所述第三光线1021(第四线偏振光)。
所述偏光板103还用于将所述旋光板104所透过的所述第三光线1021转换成第四线偏振光,所述第四偏振光具有所述第一偏振方向1031。
所述第一显示面板101还用于透过所述第三光线1021。
通过上述技术方案,由于所述第一显示面板101和所述第二显示面板102之间具有一定的距离,所以所述第一显示面板101所显示的所述第一图像和所述第二显示面板102所显示的所述第二图像叠加在一起,构成立体图像,所述立体图像具有由所述第一显示面板101和所述显示面板所构造的景深。此外,由于所述第一图像是全分辨率的图像,因此由所述第一图像和所述第二图像叠加构成的所述立体图像具有全分辨率。相对传统的显示面板所显示的立体图像仅有半分辨率这一特征,本发明的显示装置100能够提供显示质量更高的立体图像。此外,本发明的显示装置能够同时显示2D图像和3D图像。
在本实施例中,所述旋光板104为四分之一波片。所述四分之一波片用于将所述第一线偏振光转换成圆偏振光,从所述四分之一波片出射的所述圆偏振光具有第一旋转状态,例如,所述第一旋转状态为右旋状态。
所述第二显示面板102还用于将具有所述第一旋转状态的所述圆偏振光沿所述第一方向201反射,使得经所述第二显示面板102反射的所述圆偏振光具有第二旋转状态,例如,所述第二旋转状态为左旋状态。
所述四分之一波片还用于将具有所述第二旋转状态的所述圆偏振光转换成所述第二线偏振光。
在上述实施例中,所述第一旋转状态还可以为左旋状态,相对应地,所述第二旋转状态还可以为右旋状态。
本发明的显示装置100的第二实施例与上述第一实施例相似,不同之处在于:
所述旋光板104为液晶(Liquid
Crystal)盒(Cell),如图3所示,所述液晶盒包括第一基板1041、液晶层1042和第二基板1043,所述第一基板1041和所述第二基板1043叠加为一体。所述第一基板1041和所述第二基板1043均设置有透明电极,例如,ITO(氧化铟锡)。所述液晶层1042设有液晶分子。所述液晶层1042设置于所述第一基板1041和所述第二基板1043之间,所述第一基板1041和所述第二基板1043用于通过向所述液晶分子施加电场力来共同控制所述液晶分子的偏转状态,从而使得所述第一线偏振光的偏转方向发生改变。
所述液晶盒用于将所述第一线偏振光旋转为第三线偏振光,所述第三线偏振光具有第三偏振方向。
所述第二显示面板102还用于将所述第三线偏振光沿所述第一方向201反射。
所述液晶盒还用于将经过所述第二显示面板102发射的所述第三线偏振光旋转为所述第二线偏振光。
参考图4,图4为本发明的显示系统的第一实施例的示意图。
本实施例的显示系统包括上述显示装置100和偏光眼镜400,所述偏光眼镜400具有透光方向,所述透光方向与上述第一偏振方向1031垂直,所述偏光眼镜400用于透过所述第一显示面板101的所述第一图像所对应的光线(第一光线1011),并用于阻止透过所述第二显示面板102的所述第二图像所对应的光线(第三光线1021)。
通过上述技术方案,当用户佩戴所述偏光眼镜400时,用户的眼睛只会接收到所述第一显示面板101所发出的光线,而所述第二显示面板102所发出的光线会被所述偏光眼镜400吸收/过滤/阻挡,从而用户只会看到所述第一显示面板101所显示的图像,即,即2D图像。因此,本发明的显示系统可以同时观看2D图像和3D图像。
综上所述,虽然本发明已以优选实施例揭露如上,但上述优选实施例并非用以限制本发明,本领域的普通技术人员,在不脱离本发明的精神和范围内,均可作各种更动与润饰,因此本发明的保护范围以权利要求界定的范围为准。
Claims (20)
- 一种显示装置,其包括:一第一显示面板,用于沿第一方向发出第一光线,以及用于沿与所述第一方向相反的第二方向发出第二光线,所述第一光线为所述第一显示面板所显示的第一图像在所述第一方向上对应的光线,所述第二光线为所述第一图像在所述第二方向上对应的光线;以及一第二显示面板,用于沿所述第一方向发出第三光线,所述第三光线为所述第二显示面板所显示的第二图像在所述第一方向上对应的光线,以及用于将所述第二光线沿所述第一方向反射;其中,所述第一显示面板还用于透过所述第三光线;所述第一方向垂直于所述第一显示面板所在的平面,所述第一方向为由所述第二显示面板的中心或重心指向所述第一显示面板的中心或重心的方向,所述第二显示面板和所述第一显示面板按先后顺序沿所述第一方向叠加为一体;所述显示装置还包括:一偏光板,设置于所述第一显示面板和所述第二显示面板之间,用于将所述第二光线转换成第一线偏振光,所述第一线偏振光具有第一偏振方向;以及一旋光板,设置于所述偏光板和所述第二显示面板之间,用于将经过所述第二显示面板反射的所述第二光线转换成第二线偏振光,所述第二线偏振光具有第二偏振方向,所述第二偏振方向与所述第一偏振方向垂直;所述偏光板还用于阻挡所述第二线偏振光透过。
- 根据权利要求1所述的显示装置,其中所述旋光板为四分之一波片;所述四分之一波片用于将所述第一线偏振光转换成圆偏振光,所述圆偏振光具有第一旋转状态;所述第二显示面板还用于将具有所述第一旋转状态的所述圆偏振光沿所述第一方向反射,使得所述圆偏振光具有第二旋转状态;所述四分之一波片还用于将具有所述第二旋转状态的所述圆偏振光转换成所述第二线偏振光。
- 根据权利要求2所述的显示装置,其中所述第一旋转状态为右旋状态/左旋状态,所述第二旋转状态为左旋状态/右旋状态。
- 根据权利要求1所述的显示装置,其中所述旋光板为液晶盒;所述液晶盒用于将所述第一线偏振光旋转为第三线偏振光,所述第三线偏振光具有第三偏振方向;所述第二显示面板还用于将所述第三线偏振光沿所述第一方向反射;所述液晶盒还用于将经过所述第二显示面板发射的所述第三线偏振光旋转为所述第二线偏振光。
- 根据权利要求4所述的显示装置,其中所述液晶盒包括:一第一基板;一液晶层;以及一第二基板;其中,所述第一基板和所述第二基板叠加为一体,所述液晶层设有液晶分子,所述液晶层设置于所述第一基板和所述第二基板之间,所述第一基板和所述第二基板均设置有透明电极,所述第一基板和所述第二基板用于通过向所述液晶分子施加电场力来共同控制所述液晶分子的偏转状态,从而使得所述第一线偏振光的偏转方向发生改变。
- 根据权利要求1所述的显示装置,其中所述旋光板还用于透过所述第三光线;所述偏光板还用于将所述旋光板所透过的所述第三光线转换成第四线偏振光,所述第四偏振光具有所述第一偏振方向。
- 一种显示装置,其包括:一第一显示面板,用于沿第一方向发出第一光线,以及用于沿与所述第一方向相反的第二方向发出第二光线,所述第一光线为所述第一显示面板所显示的第一图像在所述第一方向上对应的光线,所述第二光线为所述第一图像在所述第二方向上对应的光线;以及一第二显示面板,用于沿所述第一方向发出第三光线,所述第三光线为所述第二显示面板所显示的第二图像在所述第一方向上对应的光线,以及用于将所述第二光线沿所述第一方向反射;其中,所述第一显示面板还用于透过所述第三光线;所述第一方向垂直于所述第一显示面板所在的平面,所述第二显示面板和所述第一显示面板按先后顺序沿所述第一方向叠加为一体。
- 根据权利要求7所述的显示装置,其中所述显示装置还包括:一偏光板,设置于所述第一显示面板和所述第二显示面板之间,用于将所述第二光线转换成第一线偏振光,所述第一线偏振光具有第一偏振方向;以及一旋光板,设置于所述偏光板和所述第二显示面板之间,用于将经过所述第二显示面板反射的所述第二光线转换成第二线偏振光,所述第二线偏振光具有第二偏振方向,所述第二偏振方向与所述第一偏振方向垂直;所述偏光板还用于阻挡所述第二线偏振光透过。
- 根据权利要求8所述的显示装置,其中所述旋光板为四分之一波片;所述四分之一波片用于将所述第一线偏振光转换成圆偏振光,所述圆偏振光具有第一旋转状态;所述第二显示面板还用于将具有所述第一旋转状态的所述圆偏振光沿所述第一方向反射,使得所述圆偏振光具有第二旋转状态;所述四分之一波片还用于将具有所述第二旋转状态的所述圆偏振光转换成所述第二线偏振光。
- 根据权利要求9所述的显示装置,其中所述第一旋转状态为右旋状态/左旋状态,所述第二旋转状态为左旋状态/右旋状态。
- 根据权利要求8所述的显示装置,其中所述旋光板为液晶盒;所述液晶盒用于将所述第一线偏振光旋转为第三线偏振光,所述第三线偏振光具有第三偏振方向;所述第二显示面板还用于将所述第三线偏振光沿所述第一方向反射;所述液晶盒还用于将经过所述第二显示面板发射的所述第三线偏振光旋转为所述第二线偏振光。
- 根据权利要求11所述的显示装置,其中所述液晶盒包括:一第一基板;一液晶层;以及一第二基板;其中,所述第一基板和所述第二基板叠加为一体,所述液晶层设有液晶分子,所述液晶层设置于所述第一基板和所述第二基板之间,所述第一基板和所述第二基板均设置有透明电极,所述第一基板和所述第二基板用于通过向所述液晶分子施加电场力来共同控制所述液晶分子的偏转状态,从而使得所述第一线偏振光的偏转方向发生改变。
- 根据权利要求8所述的显示装置,其中所述旋光板还用于透过所述第三光线;所述偏光板还用于将所述旋光板所透过的所述第三光线转换成第四线偏振光,所述第四偏振光具有所述第一偏振方向。
- 一种显示系统,其包括:偏光眼镜;以及显示装置,其中,所述显示装置包括:一第一显示面板,用于沿第一方向发出第一光线,以及用于沿与所述第一方向相反的第二方向发出第二光线,所述第一光线为所述第一显示面板所显示的第一图像在所述第一方向上对应的光线,所述第二光线为所述第一图像在所述第二方向上对应的光线;以及一第二显示面板,用于沿所述第一方向发出第三光线,所述第三光线为所述第二显示面板所显示的第二图像在所述第一方向上对应的光线,以及用于将所述第二光线沿所述第一方向反射;其中,所述第一显示面板还用于透过所述第三光线;所述第一方向垂直于所述第一显示面板所在的平面,所述第二显示面板和所述第一显示面板按先后顺序沿所述第一方向叠加为一体。
- 根据权利要求14所述的显示系统,其中所述显示装置还包括:一偏光板,设置于所述第一显示面板和所述第二显示面板之间,用于将所述第二光线转换成第一线偏振光,所述第一线偏振光具有第一偏振方向;以及一旋光板,设置于所述偏光板和所述第二显示面板之间,用于将经过所述第二显示面板反射的所述第二光线转换成第二线偏振光,所述第二线偏振光具有第二偏振方向,所述第二偏振方向与所述第一偏振方向垂直;所述偏光板还用于阻挡所述第二线偏振光透过。
- 根据权利要求15所述的显示系统,其中所述旋光板为四分之一波片;所述四分之一波片用于将所述第一线偏振光转换成圆偏振光,所述圆偏振光具有第一旋转状态;所述第二显示面板还用于将具有所述第一旋转状态的所述圆偏振光沿所述第一方向反射,使得所述圆偏振光具有第二旋转状态;所述四分之一波片还用于将具有所述第二旋转状态的所述圆偏振光转换成所述第二线偏振光。
- 根据权利要求16所述的显示系统,其中所述第一旋转状态为右旋状态/左旋状态,所述第二旋转状态为左旋状态/右旋状态。
- 根据权利要求15所述的显示系统,其中所述旋光板为液晶盒;所述液晶盒用于将所述第一线偏振光旋转为第三线偏振光,所述第三线偏振光具有第三偏振方向;所述第二显示面板还用于将所述第三线偏振光沿所述第一方向反射;所述液晶盒还用于将经过所述第二显示面板发射的所述第三线偏振光旋转为所述第二线偏振光。
- 根据权利要求18所述的显示系统,其中所述液晶盒包括:一第一基板;一液晶层;以及一第二基板;其中,所述第一基板和所述第二基板叠加为一体,所述液晶层设有液晶分子,所述液晶层设置于所述第一基板和所述第二基板之间,所述第一基板和所述第二基板均设置有透明电极,所述第一基板和所述第二基板用于通过向所述液晶分子施加电场力来共同控制所述液晶分子的偏转状态,从而使得所述第一线偏振光的偏转方向发生改变。
- 根据权利要求15所述的显示系统,其中所述旋光板还用于透过所述第三光线;所述偏光板还用于将所述旋光板所透过的所述第三光线转换成第四线偏振光,所述第四偏振光具有所述第一偏振方向。
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| CN105182554B (zh) * | 2015-10-30 | 2017-06-09 | 成都工业学院 | 一种基于双显示屏的狭缝光栅自由立体显示装置及方法 |
| CN110972506B (zh) * | 2019-01-04 | 2022-09-20 | 京东方科技集团股份有限公司 | 显示面板及其操作方法 |
| CN110264916B (zh) * | 2019-06-21 | 2022-05-10 | 京东方科技集团股份有限公司 | 一种投影装置及空中成像设备 |
| CN110275309B (zh) * | 2019-07-04 | 2021-12-28 | 京东方科技集团股份有限公司 | 偏振微透镜结构、显示装置及其驱动方法 |
| CN113805351B (zh) * | 2021-10-26 | 2024-09-13 | Oppo广东移动通信有限公司 | 显示屏、电子设备以及3d成像系统 |
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| JP2001157229A (ja) * | 1999-11-25 | 2001-06-08 | Olympus Optical Co Ltd | 映像表示装置 |
| US20100060721A1 (en) * | 2008-09-05 | 2010-03-11 | Au Optronics Corporation | Three-dimensional display, fabricating method and controlling method thereof |
| CN101876755A (zh) * | 2010-02-05 | 2010-11-03 | 华映视讯(吴江)有限公司 | 一种立体显示器 |
| CN102654653A (zh) * | 2011-03-23 | 2012-09-05 | 京东方科技集团股份有限公司 | 景深融合型立体显示装置 |
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| KR100732200B1 (ko) * | 2006-09-08 | 2007-06-27 | (주)세븐데이타 | 동일한 편광각을 갖는 두 개의 디스플레이패널을 이용한입체영상 출력장치 |
| CN101271198A (zh) * | 2007-03-19 | 2008-09-24 | 万双 | 圆偏振液晶立体显示器 |
| CN101576662B (zh) * | 2009-06-17 | 2011-09-14 | 福州华映视讯有限公司 | 显示装置及显示三维立体影像的方法 |
| CN101782687B (zh) * | 2010-01-26 | 2013-05-08 | 友达光电股份有限公司 | 显示三维图像的显示装置 |
| CN102981308B (zh) * | 2012-11-30 | 2015-02-18 | 京东方科技集团股份有限公司 | 透明显示器 |
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- 2014-03-12 CN CN201410089065.8A patent/CN103869489B/zh not_active Expired - Fee Related
- 2014-03-24 US US14/360,932 patent/US20150323801A1/en not_active Abandoned
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| JP2001157229A (ja) * | 1999-11-25 | 2001-06-08 | Olympus Optical Co Ltd | 映像表示装置 |
| US20100060721A1 (en) * | 2008-09-05 | 2010-03-11 | Au Optronics Corporation | Three-dimensional display, fabricating method and controlling method thereof |
| CN101876755A (zh) * | 2010-02-05 | 2010-11-03 | 华映视讯(吴江)有限公司 | 一种立体显示器 |
| CN102654653A (zh) * | 2011-03-23 | 2012-09-05 | 京东方科技集团股份有限公司 | 景深融合型立体显示装置 |
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| CN103869489B (zh) | 2017-02-01 |
| CN103869489A (zh) | 2014-06-18 |
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