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    • 1. 发明授权
    • Polarization device and projection type display apparatus
    • 极化装置和投影型显示装置
    • US6067193A
    • 2000-05-23
    • US172264
    • 1998-10-14
    • Atsushi SekineHideaki ShimomuraTetsuo Hattori
    • Atsushi SekineHideaki ShimomuraTetsuo Hattori
    • G02B27/28G02F1/1335G02F1/13357G02F1/13363G02B5/30G03B21/14
    • G02F1/13362G02B27/283G02B27/285H04N9/3152G02F1/133528G02F2001/13355G02F2001/133638
    • A polarization device comprises: a light source; a first lens plate including a plurality of lenses in a planar configuration that divides light emitted from the light source into beams defined by apertures of the plurality of lenses; a second lens plate which is different from the first plate and includes a plurality of lenses in a planar configuration, the plurality of lenses of the first lens plate individually forming light spots at the plurality of lenses of the second lens plate; a polarization beam splitter array constituted of a plurality of polarization beam splitters provided continuously, that performs polarization splitting of light that has been emitted from the light spots of the plurality of lenses of the second lens plate and has entered therein to split the light into p-polarized light and s-polarized light, and emits the split light; and halfwave plates provided at an emission surface of the polarization beam splitter array that convert polarized light emitted from the polarization beam splitter array either from p-polarized light to s-polarized light or from s-polarized light to p-polarized light. And the halfwave plates are provided at the emission surface of the polarization beam splitter array, in different arrangements between a central area of the polarization beam splitter array and a peripheral area excluding the central area.
    • 偏振装置包括:光源; 第一透镜板,其包括平面构造的多个透镜,其将从光源发射的光分成由多个透镜的孔限定的光束; 第二透镜板,其与第一板不同,并且包括平面构造的多个透镜,第一透镜板的多个透镜在第二透镜板的多个透镜处分别形成光点; 由连续设置的多个偏振光束分离器构成的偏振分束器阵列,其进行从第二透镜板的多个透镜的光点发射并进入其中的光的偏振分束,将光分为p 偏振光和s偏振光,并发射分光; 以及设置在偏振分束器阵列的发射表面处的半波片,其将偏振分束器阵列发射的偏振光从p偏振光或从s偏振光或从s偏振光转换为p偏振光。 并且半波片设置在偏振分束器阵列的发射表面处,在偏振分束器阵列的中心区域和不包括中心区域的周边区域之间的不同布置中。
    • 4. 发明授权
    • Reflective liquid crystal spatial light modulator and projection
apparatus comprising same
    • 反射型液晶空间光调制器及投影装置
    • US5949503A
    • 1999-09-07
    • US668943
    • 1996-06-24
    • Motoo KoyamaHideaki Shimomura
    • Motoo KoyamaHideaki Shimomura
    • G02F1/1334G02F1/1335H04N5/74G02F1/136
    • G02F1/133553H04N5/7441G02F1/1334G02F2201/305G02F2203/22G02F2203/34
    • Reflective spatial light modulators (RSLMs) and projection apparatus employing such RSLMs are disclosed. The RSLM comprises a reflective surface and a superposed light-modulation layer. The reflective surface is configured to have a reflective diffraction optical element or a microfaceted reflective array. Incident light impinging on the RSLM can pass through the light-modulation layer, reflect from the reflective surface, and return through the light-modulation layer to become modulated signal light capable of forming a viewable image if projected onto a screen or other surface. The reflective diffraction optical element or microfaceted reflective array on the reflective surface is operable to cause the signal light to propagate from the RSLM in a different direction than any ghost light reflected from the RSLM. Projection apparatus employing such an RSLM comprise an illumination optical system, a projection optical system that may or may not be coaxial with the illumination optical system, and a stop operable to pass signal light but not ghost light to a screen for viewing. The viewed image has enhanced contrast over the prior art.
    • 公开了使用这种RSLM的反射空间光调制器(RSLM)和投影装置。 RSLM包括反射表面和叠加的光调制层。 反射表面被配置为具有反射衍射光学元件或微量反射阵列。 入射到RSLM上的入射光可以通过光调制层,从反射面反射,并通过光调制层返回成为能够在投影到屏幕或其它表面上时形成可视图像的调制信号光。 反射表面上的反射衍射光学元件或微量反射阵列可操作以使信号光从与RSLM反射的任何重影光不同的方向从RSLM传播。 使用这样的RSLM的投影装置包括照明光学系统,可以与照明光学系统共轴的投影光学系统,以及可操作以将信号光而不是重影光传递到用于观看的屏幕的停止。 所观看的图像与现有技术相比具有增强的对比度。