WO2012097665A1 - 快门眼镜 - Google Patents

快门眼镜 Download PDF

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Publication number
WO2012097665A1
WO2012097665A1 PCT/CN2011/084782 CN2011084782W WO2012097665A1 WO 2012097665 A1 WO2012097665 A1 WO 2012097665A1 CN 2011084782 W CN2011084782 W CN 2011084782W WO 2012097665 A1 WO2012097665 A1 WO 2012097665A1
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WO
WIPO (PCT)
Prior art keywords
electric field
shutter glasses
provider
lens
right lens
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PCT/CN2011/084782
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English (en)
French (fr)
Inventor
刘美鸿
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浙江亿思达显示科技有限公司
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Publication of WO2012097665A1 publication Critical patent/WO2012097665A1/zh

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    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04NPICTORIAL COMMUNICATION, e.g. TELEVISION
    • H04N13/00Stereoscopic video systems; Multi-view video systems; Details thereof
    • H04N13/30Image reproducers
    • H04N13/332Displays for viewing with the aid of special glasses or head-mounted displays [HMD]
    • H04N13/341Displays for viewing with the aid of special glasses or head-mounted displays [HMD] using temporal multiplexing
    • GPHYSICS
    • G02OPTICS
    • G02FOPTICAL 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
    • G02F1/00Devices 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
    • G02F1/01Devices 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 
    • G02F1/13Devices 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
    • G02F1/133Constructional arrangements; Operation of liquid crystal cells; Circuit arrangements
    • G02F1/1333Constructional arrangements; Manufacturing methods
    • G02F1/1334Constructional arrangements; Manufacturing methods based on polymer dispersed liquid crystals, e.g. microencapsulated liquid crystals

Definitions

  • the present invention relates to the field of shutter glasses, and in particular to a shutter glasses.
  • the left electronic liquid crystal shutter when the left stereoscopic image is scanned on the screen of the display, the left electronic liquid crystal shutter is controlled to be in the open state, and the right electronic liquid crystal shutter is in the closed state, and vice versa.
  • the right electronic liquid crystal shutter is controlled to be the open state, and the left electronic liquid crystal shutter is the closed state, so that the viewer can see the left or right stereoscopic image to achieve the stereoscopic image.
  • the technical problem to be solved by the present invention is to provide a shutter glasses.
  • Electric field selector electric field provider, left lens, right lens, eyeglass frame;
  • the electric field selector is disposed on the eyeglass frame for selectively selecting an electric field for the left lens and the right lens;
  • the electric field provider is disposed on the eyeglass frame for selectively providing an electric field to the left lens and the right lens according to a selection result of the electric field selector;
  • the left lens is disposed on the eyeglass frame, and includes a light control film for changing to a transparent state when the electric field provider supplies an electric field thereto, and the electric field provider provides an electric field to the right lens When it becomes opaque;
  • the right lens is disposed on the eyeglass frame, and includes a light control film for turning into a transparent state when the electric field provider supplies an electric field thereto, and providing an electric field to the left lens at the electric field provider When it becomes opaque.
  • Another technical solution adopted by the present invention is to provide a shutter glasses, comprising:
  • Electric field selector electric field provider, left lens, right lens, eyeglass frame;
  • the electric field selector is disposed on the eyeglass frame for selectively selecting an electric field for the left lens and the right lens;
  • the electric field provider is disposed on the eyeglass frame for selectively providing an electric field to the left lens and the right lens according to a selection result of the electric field selector;
  • the left lens is disposed on the eyeglass frame for becoming transparent when the electric field provider supplies an electric field thereto, and becomes opaque when the electric field provider provides an electric field to the right lens status;
  • the right lens is disposed on the eyeglass frame for becoming transparent when the electric field provider supplies an electric field thereto, and becomes opaque when the electric field provider provides an electric field to the left lens status.
  • the medium to be transmitted includes a dimming film such as a polymer dispersed liquid crystal PDLC dimming film, and the light needs to be transmitted when the light passes through the existing shutter glasses lens.
  • the medium comprises a first polarizing plate, a first conductive glass, a liquid crystal layer, a second conductive glass and a second polarizing plate, and has five layers of medium, which reduces light loss of light passing through the dielectric layer, thereby improving light transmittance of the shutter glasses lens.
  • the medium to be transmitted includes a dimming film such as a polymer dispersed liquid crystal PDLC dimming film, and the light needs to pass through when the light passes through the existing shutter glasses lens.
  • the medium comprises a first polarizing plate, a first conductive glass, a liquid crystal layer, a second conductive glass and a second polarizing plate, and has a total of five layers of medium, which reduces light loss of light through the dielectric layer, thereby improving light transmission of the shutter glasses lens.
  • the rate improves the light transmittance of the shutter glasses, reduces the flickering feeling when the user uses the shutter glasses, and improves the eye comfort when the user uses the shutter glasses.
  • Figure 1 is a schematic view of a conventional shutter glasses lens
  • FIG. 2 is a schematic view of shutter glasses of the present invention
  • FIG. 3 is a schematic view of an embodiment of shutter glasses of the present invention.
  • the polarizing plate, the first conductive glass, the liquid crystal layer, the second conductive glass, and the second polarizing plate have a total of five layers of media, thereby reducing light loss of light passing through the dielectric layer, thereby improving light transmittance of the shutter glasses and improving the shutter.
  • the light transmittance of the glasses reduces the flickering feeling when the user uses the shutter glasses, and improves the eye comfort when the user uses the shutter glasses.
  • FIG. 2 is a schematic view of a shutter glasses according to the present invention
  • FIG. 3 is a schematic view of an embodiment of the shutter glasses according to the present invention.
  • the shutter glasses 200 include an electric field selector 201, an electric field provider 202, and a left lens 203.
  • the electric field selector 201 is disposed on the eyeglass frame 205 for selecting to selectively add an electric field to the left lens 203 and the right lens 204;
  • the electric field provider 202 is disposed on the eyeglass frame 205 for selectively providing an electric field to the left lens 203 and the right lens 204 according to the selection result of the electric field selector 201; for selecting an electric field for the left lens 203 at the electric field selector 201.
  • the electric field is supplied to the left lens 203
  • the electric field selector 201 selects to add an electric field to the right lens 204
  • an electric field is supplied to the right lens 204;
  • the left lens 203 is disposed on the eyeglass frame 205 for being in a transparent state when the electric field provider 202 supplies an electric field thereto, and becomes an opaque state when the electric field provider 202 provides an electric field to the right lens 204;
  • the right lens 204 is disposed on the eyeglass frame 205 for becoming transparent when the electric field provider 202 supplies an electric field thereto, and becomes opaque when the electric field provider 202 supplies an electric field to the left lens 203.
  • the left lens 203 includes a light adjustment film for becoming a transparent state when the electric field provider 202 supplies an electric field thereto, and becomes an opaque state when the electric field provider 202 supplies an electric field to the right lens 204.
  • the right lens 204 includes a dimming film for becoming a transparent state when the electric field provider 202 supplies an electric field thereto, and becomes an opaque state when the electric field provider 202 supplies an electric field to the left lens 203.
  • the left lens 203 may be a NCAP light-adjusting film for becoming a transparent state when the electric field provider 202 supplies an electric field thereto, and becomes an opaque state when the electric field provider 202 supplies an electric field to the right lens 204;
  • It may also be a polymer dispersed liquid crystal (PDLC) dimming film for becoming a transparent state when the electric field provider 202 supplies an electric field thereto, and becomes an opaque state when the electric field provider 202 supplies an electric field to the right lens 204;
  • PDLC polymer dispersed liquid crystal
  • the right lens 204 may be a NCAP light-adjusting film for becoming a transparent state when the electric field provider 202 supplies an electric field thereto, and becomes an opaque state when the electric field provider 202 supplies an electric field to the left lens 203;
  • It may also be a polymer dispersed liquid crystal PDLC dimming film for becoming a transparent state when the electric field provider 202 supplies an electric field thereto, and becomes an opaque state when the electric field provider 202 supplies an electric field to the left lens 203;
  • the right lens 204 is the right lens of the shutter glasses; when the left lens 203 is the right lens of the shutter glasses, the right lens 204 is the left lens of the shutter glasses.
  • the electric field selector 201 includes a power supply gate disposed on the eyeglass frame 205 for selecting to selectively add an electric field to the left lens 203 and the right lens 204.
  • the electric field provider 202 includes a power source disposed on the eyeglass frame 205 for selectively providing an electric field to the left lens 203 and the right lens 204 according to the selection result of the electric field selector 201; for selecting the left side in the electric field selector 201 When the lens 203 is added to the electric field, an electric field is supplied to the left lens 203, and when the electric field selector 201 selects to add an electric field to the right lens 204, an electric field is supplied to the right lens 204.
  • the medium to be transmitted includes a dimming film such as a polymer dispersed liquid crystal PDLC dimming film, and the light needs to pass through when the light passes through the existing shutter glass lens.
  • the medium comprises a first polarizing plate, a first conductive glass, a liquid crystal layer, a second conductive glass and a second polarizing plate, and has a total of five layers of medium, which reduces light loss of light through the dielectric layer, thereby improving light transmission of the shutter glasses lens.

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  • Engineering & Computer Science (AREA)
  • Multimedia (AREA)
  • Signal Processing (AREA)
  • Liquid Crystal (AREA)
  • Eyeglasses (AREA)

Description

快门眼镜
【技术领域】
本发明涉及快门眼镜技术领域,尤其涉及一种快门眼镜。
【背景技术】
现有的快门眼镜,在左立体影像被扫描出现于显示器的屏幕上时,控制左电子液晶快门即左镜片为开启状态,右电子液晶快门即右镜片为关闭状态,反之,在右立体影像被扫描出现于显示器的屏幕上时,控制右电子液晶快门即右镜片为开启状态,左电子液晶快门即左镜片为关闭状态,从而使观看者可以看到左或右立体影像,达到观赏立体影像的目的。
请参见图1,为现有的快门眼镜镜片的示意图,现有的快门眼镜镜片包括第一偏光板101、第一导电玻璃102、液晶层103、第二导电玻璃104、第二偏光板105,光线在透过现有的快门眼镜镜片时,光线需要透过的介质包括第一偏光板、第一导电玻璃、液晶层、第二导电玻璃、第二偏光板,而光线透过介质时,光线是有损失的,由于光线透过的介质较多,导致现有的快门眼镜镜片的透光率不高,导致现有的快门眼镜的透光率不高,用户使用该快门眼镜时闪烁感较强,眼睛舒适度不高。
【发明内容】
本发明要解决的技术问题是提供一种快门眼镜。
本发明采用的技术方案是提供一种快门眼镜,包括:
电场选择器、电场提供器、左镜片、右镜片、眼镜框架;
所述电场选择器,设置于所述眼镜框架上,用于选择对所述左镜片、所述右镜片选择性加入电场;
所述电场提供器,设置于所述眼镜框架上,用于根据所述电场选择器的选择结果,对所述左镜片、所述右镜片选择性提供电场;
所述左镜片,设置于所述眼镜框架上,包括调光膜,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述右镜片时,变成不透明状态;
所述右镜片,设置于所述眼镜框架上,包括调光膜,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述左镜片时,变成不透明状态。
本发明采用的另一个技术方案是提供一种快门眼镜,包括:
电场选择器、电场提供器、左镜片、右镜片、眼镜框架;
所述电场选择器,设置于所述眼镜框架上,用于选择对所述左镜片、所述右镜片选择性加入电场;
所述电场提供器,设置于所述眼镜框架上,用于根据所述电场选择器的选择结果,对所述左镜片、所述右镜片选择性提供电场;
所述左镜片,设置于所述眼镜框架上,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述右镜片时,变成不透明状态;
所述右镜片,设置于所述眼镜框架上,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述左镜片时,变成不透明状态。
光线在透过本发明快门眼镜左镜片时,需要透过的介质包括调光膜如聚合物分散液晶PDLC调光膜,相比光线在透过现有的快门眼镜镜片时,光线需要透过的介质包括第一偏光板、第一导电玻璃、液晶层、第二导电玻璃、第二偏光板共五层介质,减少了光线透过介质层的光线损失,从而提高了快门眼镜镜片的透光率,光线在透过本发明快门眼镜右镜片时,需要透过的介质包括调光膜如聚合物分散液晶PDLC调光膜,相比光线在透过现有的快门眼镜镜片时,光线需要透过的介质包括第一偏光板、第一导电玻璃、液晶层、第二导电玻璃、第二偏光板共五层介质,减少了光线透过介质层的光线损失,从而提高了快门眼镜镜片的透光率,提高了快门眼镜的透光率,降低了用户使用快门眼镜时的闪烁感,提高了用户使用快门眼镜时的眼睛舒适度。
【附图说明】
图1,为现有的快门眼镜镜片的示意图;
图2,为本发明快门眼镜的示意图;
图3,为本发明快门眼镜实施例的示意图。
【具体实施方式】
本发明提供一种快门眼镜,应用于快门眼镜技术领域,光线在透过本发明快门眼镜左镜片时,需要透过的介质包括调光膜如聚合物分散液晶PDLC调光膜,光线在透过本发明快门眼镜右镜片时,需要透过的介质包括调光膜如聚合物分散液晶PDLC调光膜,相比光线在透过现有的快门眼镜镜片时,光线需要透过的介质包括第一偏光板、第一导电玻璃、液晶层、第二导电玻璃、第二偏光板共五层介质,减少了光线透过介质层的光线损失,从而提高了快门眼镜镜片的透光率,提高了快门眼镜的透光率,降低了用户使用快门眼镜时的闪烁感,提高了用户使用快门眼镜时的眼睛舒适度。
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
请参见图2,为本发明快门眼镜的示意图,并结合图3,图3为本发明快门眼镜实施例的示意图,该快门眼镜200包括:电场选择器201、电场提供器202、左镜片203、右镜片204、眼镜框架205;
电场选择器201,设置于眼镜框架205上,用于选择对左镜片203、右镜片204选择性加入电场;
电场提供器202,设置于眼镜框架205上,用于根据电场选择器201的选择结果,对左镜片203、右镜片204选择性提供电场;用于在电场选择器201选择对左镜片203加入电场时,提供电场给左镜片203,在电场选择器201选择对右镜片204加入电场时,提供电场给右镜片204;
左镜片203,设置于眼镜框架205上,用于在电场提供器202给其提供电场时,变成透明状态,在电场提供器202提供电场给右镜片204时,变成不透明状态;
右镜片204,设置于眼镜框架205上,用于在电场提供器202给其提供电场时,变成透明状态,在电场提供器202提供电场给左镜片203时,变成不透明状态。
其中,左镜片203包括调光膜,用于在电场提供器202给其提供电场时,变成透明状态,在电场提供器202提供电场给右镜片204时,变成不透明状态。
其中,右镜片204包括调光膜,用于在电场提供器202给其提供电场时,变成透明状态,在电场提供器202提供电场给左镜片203时,变成不透明状态。
其中,左镜片203可以是NCAP调光膜,用于在电场提供器202给其提供电场时,变成透明状态,在电场提供器202提供电场给右镜片204时,变成不透明状态;
也可以是聚合物分散液晶(PDLC)调光膜,用于在电场提供器202给其提供电场时,变成透明状态,在电场提供器202提供电场给右镜片204时,变成不透明状态;
还可以是V-BEST调光膜,用于在电场提供器202给其提供电场时,变成透明状态,在电场提供器202提供电场给右镜片204时,变成不透明状态。
其中,右镜片204可以是NCAP调光膜,用于在电场提供器202给其提供电场时,变成透明状态,在电场提供器202提供电场给左镜片203时,变成不透明状态;
也可以是聚合物分散液晶PDLC调光膜,用于在电场提供器202给其提供电场时,变成透明状态,在电场提供器202提供电场给左镜片203时,变成不透明状态;
还可以是V-BEST调光膜,用于在电场提供器202给其提供电场时,变成透明状态,在电场提供器202提供电场给左镜片203时,变成不透明状态。
其中,左镜片203为快门眼镜的左镜片时,右镜片204就为快门眼镜的右镜片;左镜片203为快门眼镜的右镜片时,右镜片204就为快门眼镜的左镜片。
其中,电场选择器201包括电源选通器,设置于眼镜框架205上,用于选择对左镜片203、右镜片204选择性加入电场。
其中,电场提供器202包括电源,设置于眼镜框架205上,用于根据电场选择器201的选择结果,对左镜片203、右镜片204选择性提供电场;用于在电场选择器201选择对左镜片203加入电场时,提供电场给左镜片203,在电场选择器201选择对右镜片204加入电场时,提供电场给右镜片204。
光线在透过本发明快门眼镜左镜片203时,需要透过的介质包括调光膜如聚合物分散液晶PDLC调光膜,相比光线在透过现有的快门眼镜镜片时,光线需要透过的介质包括第一偏光板、第一导电玻璃、液晶层、第二导电玻璃、第二偏光板共五层介质,减少了光线透过介质层的光线损失,从而提高了快门眼镜镜片的透光率,光线在透过本发明快门眼镜右镜片204时,需要透过的介质包括调光膜如聚合物分散液晶PDLC调光膜,相比光线在透过现有的快门眼镜镜片时,光线需要透过的介质包括第一偏光板、第一导电玻璃、液晶层、第二导电玻璃、第二偏光板共五层介质,减少了光线透过介质层的光线损失,从而提高了快门眼镜镜片的透光率,提高了快门眼镜的透光率,降低了用户使用快门眼镜时的闪烁感,提高了用户使用快门眼镜时的眼睛舒适度。
对于本发明快门眼镜,实现的形式是多种多样的。凡在本发明的精神和原则之内,所作的任何修改、等同替换、改进等,均应包含在本发明的保护范围之内。

Claims (16)

  1. 一种快门眼镜,其特征在于,包括:
    电场选择器、电场提供器、左镜片、右镜片、眼镜框架;
    所述电场选择器,设置于所述眼镜框架上,用于选择对所述左镜片、所述右镜片选择性加入电场;
    所述电场提供器,设置于所述眼镜框架上,用于根据所述电场选择器的选择结果,对所述左镜片、所述右镜片选择性提供电场;
    所述左镜片,设置于所述眼镜框架上,包括调光膜,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述右镜片时,变成不透明状态;
    所述右镜片,设置于所述眼镜框架上,包括调光膜,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述左镜片时,变成不透明状态。
  2. 如权利要求1所述的快门眼镜,其特征在于,所述左镜片包括NCAP调光膜,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述右镜片时,变成不透明状态。
  3. 如权利要求1所述的快门眼镜,其特征在于,所述左镜片包括聚合物分散液晶PDLC调光膜,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述右镜片时,变成不透明状态。
  4. 如权利要求1所述的快门眼镜,其特征在于,所述左镜片包括V-BEST调光膜,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述右镜片时,变成不透明状态。
  5. 如权利要求1所述的快门眼镜,其特征在于,所述右镜片包括NCAP调光膜,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述左镜片时,变成不透明状态。
  6. 如权利要求1所述的快门眼镜,其特征在于,所述右镜片包括聚合物分散液晶PDLC调光膜,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述左镜片时,变成不透明状态。
  7. 如权利要求1所述的快门眼镜,其特征在于,所述右镜片包括V-BEST调光膜,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述左镜片时,变成不透明状态。
  8. 一种快门眼镜,其特征在于,包括:
    电场选择器、电场提供器、左镜片、右镜片、眼镜框架;
    所述电场选择器,设置于所述眼镜框架上,用于选择对所述左镜片、所述右镜片选择性加入电场;
    所述电场提供器,设置于所述眼镜框架上,用于根据所述电场选择器的选择结果,对所述左镜片、所述右镜片选择性提供电场;
    所述左镜片,设置于所述眼镜框架上,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述右镜片时,变成不透明状态;
    所述右镜片,设置于所述眼镜框架上,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述左镜片时,变成不透明状态。
  9. 如权利要求1所述的快门眼镜,其特征在于,所述左镜片包括调光膜,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述右镜片时,变成不透明状态。
  10. 如权利要求1所述的快门眼镜,其特征在于,所述右镜片包括调光膜,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述左镜片时,变成不透明状态。
  11. 如权利要求1所述的快门眼镜,其特征在于,所述左镜片包括NCAP调光膜,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述右镜片时,变成不透明状态。
  12. 如权利要求1所述的快门眼镜,其特征在于,所述左镜片包括聚合物分散液晶PDLC调光膜,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述右镜片时,变成不透明状态。
  13. 如权利要求1所述的快门眼镜,其特征在于,所述左镜片包括V-BEST调光膜,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述右镜片时,变成不透明状态。
  14. 如权利要求1所述的快门眼镜,其特征在于,所述右镜片包括NCAP调光膜,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述左镜片时,变成不透明状态。
  15. 如权利要求1所述的快门眼镜,其特征在于,所述右镜片包括聚合物分散液晶PDLC调光膜,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述左镜片时,变成不透明状态。
  16. 如权利要求1所述的快门眼镜,其特征在于,所述右镜片包括V-BEST调光膜,用于在所述电场提供器给其提供电场时,变成透明状态,在所述电场提供器提供电场给所述左镜片时,变成不透明状态。
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10553002B2 (en) 2012-08-31 2020-02-04 Apple, Inc. Information display using electronic diffusers

Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5276539A (en) * 1990-12-14 1994-01-04 Humphrey Engineering, Inc. Method and apparatus for controlling perceived brightness using a time varying shutter
CN1618035A (zh) * 2002-01-30 2005-05-18 舒芙特图素股份有限公司 用于立体影像的眼镜和镜片以及使用它们的系统
CN2703264Y (zh) * 2003-12-29 2005-06-01 张蕾 眼保太阳镜
CN101738742A (zh) * 2008-11-20 2010-06-16 肯尼思·马丁·雅各布 连续可调3deeps滤光眼镜优化立体观看及其控制的方法和手段
CN101923243A (zh) * 2009-04-27 2010-12-22 宝创有限公司 聚合物分散液晶光开关器件
CN201876614U (zh) * 2010-11-29 2011-06-22 深圳市中显微电子有限公司 一种基于pdlc的主动快门式3d眼镜
CN201984228U (zh) * 2011-01-21 2011-09-21 浙江亿思达显示科技有限公司 快门眼镜

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5276539A (en) * 1990-12-14 1994-01-04 Humphrey Engineering, Inc. Method and apparatus for controlling perceived brightness using a time varying shutter
CN1618035A (zh) * 2002-01-30 2005-05-18 舒芙特图素股份有限公司 用于立体影像的眼镜和镜片以及使用它们的系统
CN2703264Y (zh) * 2003-12-29 2005-06-01 张蕾 眼保太阳镜
CN101738742A (zh) * 2008-11-20 2010-06-16 肯尼思·马丁·雅各布 连续可调3deeps滤光眼镜优化立体观看及其控制的方法和手段
CN101923243A (zh) * 2009-04-27 2010-12-22 宝创有限公司 聚合物分散液晶光开关器件
CN201876614U (zh) * 2010-11-29 2011-06-22 深圳市中显微电子有限公司 一种基于pdlc的主动快门式3d眼镜
CN201984228U (zh) * 2011-01-21 2011-09-21 浙江亿思达显示科技有限公司 快门眼镜

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10553002B2 (en) 2012-08-31 2020-02-04 Apple, Inc. Information display using electronic diffusers
US11538206B2 (en) 2012-08-31 2022-12-27 Apple Inc. Flash unit using adjustable diffusers
US11854134B2 (en) 2012-08-31 2023-12-26 Apple Inc. Information display using electronic diffusers

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