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    • 14. 发明申请
    • Image projection system
    • 图像投影系统
    • US20090015548A1
    • 2009-01-15
    • US12214000
    • 2008-06-27
    • Keiko TazakiRuna NakamuraSatoko Maenishi
    • Keiko TazakiRuna NakamuraSatoko Maenishi
    • G09G5/00
    • G06F3/0308G06F3/0346G06F3/03542
    • Provided is an image projection system including a screen, an input terminal, an image processing unit, an image projector, and invisible light ray-shielding member, characterized in that: the screen has a pattern-printed sheet having reflection patterns for transmitting positional information by reflecting invisible light rays or absorption patterns for transmitting positional information by absorbing invisible light rays; the input terminal has an invisible light ray-applying portion, detects a reflected light ray of an invisible light ray, which is applied from the invisible light ray-applying portion and reflected from a specific site of the pattern-printed sheet, reads positional information of any one of the reflection patterns or any one of the absorption patterns, and outputs the positional information to the image processing unit; the image processing unit converts the positional information input from the input terminal into image information A, and transfers the image information A to the image projector; the image projector converts the image information A transferred from the image processing unit into visible light rays, and projects the visible light rays on the screen; and the invisible light ray-shielding means is placed in front of or inside the image projector, and removes the invisible light ray from the visible light rays to be projected. The present invention can provide the image projection system in which, even when a screen is large, the positional information of the screen can be simply input in a non-contact fashion with high accuracy, and image information converted from the input positional information can be further converted into visible light rays to be projected.
    • 提供了一种包括屏幕,输入端子,图像处理单元,图像投影仪和不可见光线屏蔽构件的图像投影系统,其特征在于:所述屏幕具有图案印刷板,其具有用于发送位置信息的反射图案 通过反射不可见的光线或吸收图案,通过吸收不可见的光线来发送位置信息; 输入端子具有不可见光线照射部分,检测从不可见光线照射部分施加并从图案印刷片材的特定位置反射的不可见光线的反射光线读取位置信息 反射图案中的任何一种或吸收图案中的任何一种,并将位置信息输出到图像处理单元; 图像处理单元将从输入端子输入的位置信息转换成图像信息A,并将图像信息A传送到图像投影仪; 图像投影仪将从图像处理单元传送的图像信息A转换成可见光,并将可见光投射到屏幕上; 并且将不可见光线屏蔽装置放置在图像投影仪的前面或内部,并且从可投射的可见光线中去除不可见的光线。 本发明可以提供一种图像投影系统,其中即使屏幕较大,屏幕的位置信息可以以非接触的方式以高精度简单地输入,并且从输入的位置信息转换的图像信息可以是 进一步转化为可投射的可见光线。
    • 15. 发明申请
    • PATTERN PRINTED SHEET
    • 图案印刷
    • US20070290047A1
    • 2007-12-20
    • US11753654
    • 2007-05-25
    • KEIKO TAZAKIYuichi MiyazakiSatoko MaenishiRuna NakamuraToshio YoshiharaYuudai Yamashita
    • KEIKO TAZAKIYuichi MiyazakiSatoko MaenishiRuna NakamuraToshio YoshiharaYuudai Yamashita
    • G06K19/06G06K7/10
    • G06K19/06037G02F1/13338G02F2201/343
    • The pattern printed sheet 1 of the present invention includes a substrate 2 and a non-visible light-reflective transparent pattern 3 printed on a surface of the substrate, wherein an ink for forming the transparent pattern 3 contains a non-visible light-reflective material capable of selectively reflecting a light having a wavelength in a non-visible light range, and the transparent pattern 3 printed on the surface of the substrate 2 has a multilayer structure in section which is repeated at predetermined intervals as observed by a scanning electron microscope, and reflects only a circular polarization component in a predetermined rotation direction relative to an incident light applied thereto. The pattern printed sheet is usable as a coordinate detecting means which is applicable a data input system of a type capable of directly hand-writing input data on an image screen of a display device, and has a reduced weight and a low price, and is readily obtained in the form of a large area sheet and can be mass-produced.
    • 本发明的图案印刷版1包括印刷在基板的表面上的基板2和不可见光反射透明图案3,其中用于形成透明图案3的墨含有不可见的光反射材料 能够选择性地反射具有不可见光范围的波长的光,并且印刷在基板2的表面上的透明图案3具有以由扫描电子显微镜观察到的预定间隔重复的截面的多层结构, 并且仅反射相对于施加到其的入射光在预定旋转方向上的圆偏振分量。 图案印刷版可用作坐标检测装置,其可应用于能够在显示装置的图像屏幕上直接手写输入数据的类型的数据输入系统,并且具有减小的重量和低的价格,并且是 容易地以大面积片材的形式获得并且可以批量生产。
    • 16. 发明申请
    • Optical element and method for manufacturing the same
    • 光学元件及其制造方法
    • US20060141171A1
    • 2006-06-29
    • US11315474
    • 2005-12-22
    • Keiko TazakiRuna Nakamura
    • Keiko TazakiRuna Nakamura
    • C09K19/00
    • C09K19/322C09K19/2007C09K2019/0448C09K2219/03G02B5/3016Y10T428/10Y10T428/1005Y10T428/1009
    • The present invention provides an optical element capable of improving the adhesion between the alignment property providing layer, for providing the alignment property to the refractive index anisotropic layer, and the refractive index anisotropic layer, as well as improving durability of each layer. An optical element 10 comprises an alignment property providing layer 12 laminated on the transparent base material 11, and a refractive index anisotropic layer 13 laminated on the alignment property providing layer 12. The alignment property providing layer 12 is an alignment film which provides the alignment property to the refractive index anisotropic layer 13. And the alignment property providing layer 12 is made from an alignment film composition capable of exhibiting the alignment limiting force by the photo-alignment method. The refractive index anisotropic layer 13 comprises a liquid crystal layer formed by curing (polymerizing) a liquid crystalline composition including a polymerizable liquid crystal material. In the refractive index anisotropic layer 13, the curing degree of the refractive index anisotropic layer 13 changes monotonously with a predetermined gradient in its thickness direction such that, within the refractive index anisotropic layer 13, the curing degree of the portion closer to the alignment property providing layer 12 is larger, compared with the curing degree of the portion farther from the alignment property providing layer 12. It is preferable that the average curing degree of the refractive index anisotropic layer 13 is 90% or more.
    • 本发明提供一种光学元件,其能够改善取向性质提供层之间的粘合性,用于提供折射率各向异性层的取向性能和折射率各向异性层,以及提高各层的耐久性。 光学元件10包括层叠在透明基材11上的取向性质提供层12和层叠在取向性提供层12上的折射率各向异性层13.取向性提供层12是取向膜,其取向性 取向性赋予层12由能够通过光取向法显示取向限制力的取向膜组合物构成。 折射率各向异性层13包括通过固化(聚合)包含可聚合液晶材料的液晶组合物形成的液晶层。 在折射率各向异性层13中,折射率各向异性层13的固化度在其厚度方向上以预定的梯度单调变化,使得在折射率各向异性层13内,更靠近取向性的部分的固化度 与比取向性提供层12的部分的固化度相比,提供层12更大。折射率各向异性层13的平均固化度优选为90%以上。
    • 17. 发明授权
    • Film with alignment film and optical device
    • 具有取向膜和光学装置的膜
    • US07812907B2
    • 2010-10-12
    • US11817337
    • 2006-02-28
    • Runa Nakamura
    • Runa Nakamura
    • G02F1/1333
    • G02F1/133345C08L1/02G02F1/1337G02F2202/023G02F2202/28Y10T428/1005
    • A film with alignment film which stably causes liquid crystal alignment and is excellent in adhesion between its constituting layers so as to give a high endurance and an excellent re-workability, and further to provide an optical device using the same. The film with alignment film contains at least a resin substrate and an alignment film, wherein the film is provided with a photocurable resin layer between the resin substrate and the alignment film, the photocurable resin layer being formed by use of a photo-cleaving type photopolymerization initiator. The optical device contains at least a resin substrate, an alignment film, and an optically functional layer, wherein the device is provided with a photocurable resin layer between the resin substrate and the alignment film, the photocurable resin layer being formed by use of a photo-cleaving type photopolymerization initiator.
    • 具有取向膜的膜,其能够稳定地进行液晶取向,并且其构成层之间的粘附性优异,从而具有高的耐久性和优异的再加工性,并且还提供使用该膜的光学装置。 具有取向膜的膜至少包含树脂基板和取向膜,其中该膜在树脂基板和取向膜之间设置有光固化树脂层,光固化树脂层通过使用光切割型光聚合 发起人 光学装置至少含有树脂基板,取向膜和光学功能层,其中,在树脂基板和取向膜之间设置有光固化树脂层,光固化树脂层通过使用照片形成 剥离型光聚合引发剂。