Screen, its manufacturing method and image display system
    1.
    发明授权
    Screen, its manufacturing method and image display system 失效
    屏幕,其制造方法和图像显示系统

    公开(公告)号:US07035008B2

    公开(公告)日:2006-04-25

    申请号:US11103212

    申请日:2005-04-11

    IPC分类号: G03B21/56 G03B21/60

    摘要: A projection screen comprises a red-reflecting particle layer, green-reflecting particle layer and blue-reflecting particle layer sequentially stacked on a substrate. In each particle layer particles are accumulated by eleven cycles in a regularly alignment such as close-packed structure. Diameter of red-reflecting particles is approximately 280 nm, diameter of green-reflecting particles is approximately 235 nm, and diameter of blue-reflecting particles is approximately 212 nm. Each particles layer is accumulated by self-organized technique. The substrate used here can absorb light of wavelengths other than those of red, green and blue three primary colors.

    摘要翻译: 投影屏幕包括依次堆叠在基板上的红色反射粒子层,绿色反射粒子层和蓝色反射粒子层。 在每个颗粒层中,颗粒以规则对准如紧密堆积的结构积累十一个周期。 红色反射粒子的直径约为280nm,绿色反射粒子的直径约为235nm,蓝色反射粒子的直径约为212nm。 每个颗粒层通过自组织技术积累。 这里使用的基板可以吸收不同于红,绿,蓝三原色波长的光。

    Screen, its manufacturing method and image display system
    2.
    发明授权
    Screen, its manufacturing method and image display system 失效
    屏幕,其制造方法和图像显示系统

    公开(公告)号:US06961175B2

    公开(公告)日:2005-11-01

    申请号:US10181240

    申请日:2002-03-26

    IPC分类号: G03B21/56 G03B21/00 G03B21/60

    摘要: A projection screen comprises a red-reflecting particle layer, green-reflecting particle layer and blue-reflecting particle layer sequentially stacked on a substrate. In each particle layer, particles are accumulated by eleven cycles in a regularly alignment such as close-packed structure. Diameter of red-reflecting particles is approximately 280 nm, diameter of green-reflecting particles is approximately 235 nm, and diameter of blue-reflecting particles is approximately 212 nm. Each particles layer is accumulated by self-organized technique. The substrate used here can absorb light of wavelengths other than those of red, green and blue three primary colors.

    摘要翻译: 投影屏幕包括依次堆叠在基板上的红色反射粒子层,绿色反射粒子层和蓝色反射粒子层。 在每个颗粒层中,颗粒以规则对准如紧密堆积的结构积累十一个周期。 红色反射粒子的直径约为280nm,绿色反射粒子的直径约为235nm,蓝色反射粒子的直径约为212nm。 每个颗粒层通过自组织技术积累。 这里使用的基板可以吸收不同于红,绿,蓝三原色波长的光。

    Screen, its manufacturing method and image display system
    3.
    发明申请
    Screen, its manufacturing method and image display system 失效
    屏幕,其制造方法和图像显示系统

    公开(公告)号:US20050180003A1

    公开(公告)日:2005-08-18

    申请号:US11103212

    申请日:2005-04-11

    IPC分类号: G03B21/56 G03B21/00 G03B21/60

    摘要: A projection screen comprises a red-reflecting particle layer, green-reflecting particle layer and blue-reflecting particle layer sequentially stacked on a substrate. In each particle layer particles are accumulated by eleven cycles in a regularly alignment such as close-packed structure. Diameter of red-reflecting particles is approximately 280 nm, diameter of green-reflecting particles is approximately 235 nm, and diameter of blue-reflecting particles is approximately 212 nm. Each particles layer is accumulated by self-organized technique. The substrate used here can absorb light of wavelengths other than those of red, green and blue three primary colors.

    摘要翻译: 投影屏幕包括依次堆叠在基板上的红色反射粒子层,绿色反射粒子层和蓝色反射粒子层。 在每个颗粒层中,颗粒以规则对准如紧密堆积的结构积累十一个周期。 红色反射粒子的直径约为280nm,绿色反射粒子的直径约为235nm,蓝色反射粒子的直径约为212nm。 每个颗粒层通过自组织技术积累。 这里使用的基板可以吸收不同于红,绿,蓝三原色波长的光。

    Screen, its manufacturing method and image display system
    5.
    发明申请
    Screen, its manufacturing method and image display system 失效
    屏幕,其制造方法和图像显示系统

    公开(公告)号:US20060033991A1

    公开(公告)日:2006-02-16

    申请号:US11194031

    申请日:2005-07-29

    IPC分类号: G03B21/60

    摘要: A projection screen comprises a red-reflecting particle layer, green-reflecting particle layer and blue-reflecting particle layer sequentially stacked on a substrate. In each particle layer, particles are accumulated by eleven cycles in a regularly alignment such as close packed structure. Diameter of red reflecting particles is approximately 280 nm, diameter of green-reflecting particles is approximately 235 nm, and diameter of blue-reflecting particles is approximately 212 nm. Each particles layer is accumulated by self-organized technique. The substrate used here can absorb light of wavelengths other than those of red, green and blue three primary colors.

    摘要翻译: 投影屏幕包括依次堆叠在基板上的红色反射粒子层,绿色反射粒子层和蓝色反射粒子层。 在每个颗粒层中,颗粒以规则对准如紧密堆积结构累积十一个周期。 红色反射粒子的直径约280nm,绿色反射粒子的直径约为235nm,蓝色反射粒子的直径约为212nm。 每个颗粒层通过自组织技术积累。 这里使用的基板可以吸收不同于红,绿,蓝三原色波长的光。

    Screen, its manufacturing method and image display system
    6.
    发明授权
    Screen, its manufacturing method and image display system 失效
    屏幕,其制造方法和图像显示系统

    公开(公告)号:US07345818B2

    公开(公告)日:2008-03-18

    申请号:US11194031

    申请日:2005-07-29

    IPC分类号: G03B21/56 G03B21/60

    摘要: A projection screen comprises a red-reflecting particle layer, green-reflecting particle layer and blue-reflecting particle layer sequentially stacked on a substrate. In each particle layer, particles are accumulated by eleven cycles in a regularly alignment such as close packed structure. Diameter of red reflecting particles is approximately 280 nm, diameter of green-reflecting particles is approximately 235 nm, and diameter of blue-reflecting particles is approximately 212 nm. Each particles layer is accumulated by self-organized technique. The substrate used here can absorb light of wavelengths other than those of red, green and blue three primary colors.

    摘要翻译: 投影屏幕包括依次堆叠在基板上的红色反射粒子层,绿色反射粒子层和蓝色反射粒子层。 在每个颗粒层中,颗粒以规则对准如紧密堆积结构累积十一个周期。 红色反射粒子的直径约280nm,绿色反射粒子的直径约为235nm,蓝色反射粒子的直径约为212nm。 每个颗粒层通过自组织技术积累。 这里使用的基板可以吸收不同于红,绿,蓝三原色波长的光。

    Screen, its manufacturing method and image display system
    7.
    发明申请
    Screen, its manufacturing method and image display system 失效
    屏幕,其制造方法和图像显示系统

    公开(公告)号:US20070002438A1

    公开(公告)日:2007-01-04

    申请号:US11103213

    申请日:2005-04-11

    IPC分类号: G03B21/60

    摘要: A projection screen comprises a red-reflecting particle layer, green-reflecting particle layer and blue-reflecting particle layer sequentially stacked on a substrate. In each particle layer, particles are accumulated by eleven cycles in a regularly alignment such as close-packed structure. Diameter of red-reflecting particles is approximately 280 nm, diameter of green-reflecting particles is approximately 235 nm, and diameter of blue-reflecting particles is approximately 212 nm. Each particles layer is accumulated by self-organized technique. The substrate used here can absorb light of wavelengths other than those of red, green and blue three primary colors.

    摘要翻译: 投影屏幕包括依次堆叠在基板上的红色反射粒子层,绿色反射粒子层和蓝色反射粒子层。 在每个颗粒层中,颗粒以规则对准如紧密堆积的结构积累十一个周期。 红色反射粒子的直径约为280nm,绿色反射粒子的直径约为235nm,蓝色反射粒子的直径约为212nm。 每个颗粒层通过自组织技术积累。 这里使用的基板可以吸收不同于红,绿,蓝三原色波长的光。

    Fine particle structure and optical medium
    8.
    发明授权
    Fine particle structure and optical medium 失效
    细颗粒结构和光学介质

    公开(公告)号:US07063890B2

    公开(公告)日:2006-06-20

    申请号:US10764735

    申请日:2004-01-26

    IPC分类号: B32B5/16

    摘要: Such a structure is to be provided in that in the case where a material, such as a protective film, is coated on a fine particle accumulated layer, such as a photonic crystal, penetration of the material into gaps among the fine particles is suppressed, whereby the mechanical strength against bending stress and tensile stress is improved, and peeling and breakage of the fine particle accumulated layer are suppressed, without adverse affect on the optical characteristics, such as reflection characteristics. The fine particle structure contains a visible light absorbing material absorbing visible light as a substrate, having accumulated thereon in this order silica fine particles having a particle diameter of 290 nm as a fine particle layer for reflecting red light, silica fine particles having a particle diameter of 240 nm as a fine particle layer for reflecting green light, and silica fine particles having a particle diameter of 210 nm as a fine particle layer for reflecting blue light, and further provided thereon a polymer layer or a gelatin layer containing a polymer having a size larger than the gaps among the fine particles. The optical medium, such as a reflective type screen, further contains a diffusion film on the polymer layer or the gelatin layer.

    摘要翻译: 要提供这样的结构,即在诸如保护膜的材料被涂覆在诸如光子晶体的细小颗粒聚集层上的情况下,材料渗透到细颗粒之间的间隙中被抑制, 从而提高了抗弯曲应力和拉伸应力的机械强度,并且抑制了微粒聚集层的剥离和破裂,而不会对诸如反射特性的光学特性产生不利影响。 细颗粒结构含有作为基板吸收可见光的可见光吸收材料,其上依次累积有粒径为290nm的二氧化硅微粒作为反射红光的微粒层,具有粒径的二氧化硅微粒 为反射绿光的微粒子层,粒径为210nm的二氧化硅微粒作为用于反射蓝光的微粒层,并且还在其上设置聚合物层或含有聚合物的明胶层,所述聚合物层含有具有 尺寸大于细颗粒之间的间隙。 诸如反射型屏幕的光学介质还在聚合物层或明胶层上包含扩散膜。

    Three-dimensional image pickup apparatus, three-dimensional display apparatus, three-dimensional image pickup and display apparatus and information recording method
    9.
    发明授权
    Three-dimensional image pickup apparatus, three-dimensional display apparatus, three-dimensional image pickup and display apparatus and information recording method 失效
    三维图像拾取装置,三维显示装置,三维图像拾取和显示装置以及信息记录方法

    公开(公告)号:US08223195B2

    公开(公告)日:2012-07-17

    申请号:US12069824

    申请日:2008-02-13

    IPC分类号: H04N13/04 G02B26/00 G09G3/00

    摘要: A three-dimensional image pickup apparatus, a three-dimensional display apparatus and a three-dimensional image pickup and display apparatus are disclosed by which high-definition three-dimensional display from a plurality of eye points of different directions can be achieved by a simple apparatus configuration. The incoming directions and the intensities of a plurality of lights incoming from different directions to a light reception section are coordinated with each other for individual pixels to form video signals. A light emission section emits lights based on a coordinated relationship between the outgoing directions and the intensities of lights to be emitted therefrom for the individual pixels. The light incoming directions and the light outgoing directions are time-divisionally selected by means of light path selection elements, and a plurality of pixels are formed to pick up and display images having a parallax.

    摘要翻译: 公开了一种三维图像拾取装置,三维显示装置和三维图像拾取和显示装置,其通过简单的方式可以实现来自多个不同方向的眼睛的高清晰度三维显示 设备配置。 将从不同方向入射到光接收部分的多个光的入射方向和强度彼此协调用于各个像素以形成视频信号。 发光部分基于出射方向和针对各个像素发射的光强度之间的协调关系发光。 光入射方向和光出射方向通过光路选择元件分时选择,并且形成多个像素以拾取并显示具有视差的图像。

    Three-dimensional image pickup apparatus, three-dimensional display apparatus, three-dimensional image pickup and display apparatus and information recording method
    10.
    发明申请
    Three-dimensional image pickup apparatus, three-dimensional display apparatus, three-dimensional image pickup and display apparatus and information recording method 失效
    三维图像拾取装置,三维显示装置,三维图像拾取和显示装置以及信息记录方法

    公开(公告)号:US20080143824A1

    公开(公告)日:2008-06-19

    申请号:US12069824

    申请日:2008-02-13

    IPC分类号: H04N13/02 H04N13/04

    摘要: A three-dimensional image pickup apparatus, a three-dimensional display apparatus and a three-dimensional image pickup and display apparatus are disclosed by which high-definition three-dimensional display from a plurality of eye points of different directions can be achieved by a simple apparatus configuration. The incoming directions and the intensities of a plurality of lights incoming from different directions to a light reception section are coordinated with each other for individual pixels to form video signals. A light emission section emits lights based on a coordinated relationship between the outgoing directions and the intensities of lights to be emitted therefrom for the individual pixels. The light incoming directions and the light outgoing directions are time-divisionally selected by means of light path selection elements, and a plurality of pixels are formed to pick up and display images having a parallax.

    摘要翻译: 公开了一种三维图像拾取装置,三维显示装置和三维图像拾取和显示装置,其通过简单的方式可以实现来自多个不同方向的眼睛的高清晰度三维显示 设备配置。 将从不同方向入射到光接收部分的多个光的入射方向和强度彼此协调用于各个像素以形成视频信号。 发光部分基于出射方向和针对各个像素发射的光强度之间的协调关系发光。 光入射方向和光出射方向通过光路选择元件分时选择,并且形成多个像素以拾取并显示具有视差的图像。