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    • 3. 发明授权
    • Spiral membrane element and process for producing the same
    • 螺旋膜元件及其制造方法
    • US07998348B2
    • 2011-08-16
    • US12282138
    • 2007-03-07
    • Shinichi ChikuraKatsumi IshiiHideki MatsudaMasashi BeppuHiroki FujiokaYasuhiro Uda
    • Shinichi ChikuraKatsumi IshiiHideki MatsudaMasashi BeppuHiroki FujiokaYasuhiro Uda
    • B01D63/10B01D61/00
    • B01D63/103B01D63/10B01D65/003B01D2313/04B01D2313/146
    • An object of the present invention is to provide a spiral membrane element that can form a uniform fiber reinforcement layer on an outer circumferential surface by a simple process without a great change in the materials, as well as a process for producing the same. The spiral membrane element of the present invention is a spiral membrane element which is provided with a cylindrical roll R in which a separation membrane, a feed-side flow passageway member, and a permeate-side flow passageway member 3 are spirally wound in a laminate state around a perforated center tube 5 and in which a sealing part for preventing mixing of feed-side fluid and permeate-side fluid is disposed, wherein at least one sheet of the permeate-side flow passageway member 3 has a fiber cloth 23a extended or connected to the outer circumferential side, and the fiber cloth 23a is wound around an outer circumference of said cylindrical roll R, impregnated with a resin and hardened to thereby form a fiber reinforcement layer.
    • 本发明的目的在于提供一种能够通过简单的工艺在外周面上形成均匀的纤维增强层的螺旋膜元件,而不会产生很大的变化,以及其制造方法。 本发明的螺旋膜元件是具有圆筒形辊R的螺旋膜元件,其中分离膜,进料侧流动通道构件和渗透侧流动通道构件3螺旋卷绕在层压体 在其中设置有用于防止进料侧流体和渗透侧流体混合的密封部,其中至少一片渗透侧流动通道构件3具有延伸的纤维布23a或 连接到外周侧,并且纤维布23a缠绕在所述圆柱形辊R的外圆周上,浸渍树脂并硬化,从而形成纤维增强层。
    • 6. 发明申请
    • EXPOSURE APPARATUS, CORRECTION METHOD, AND DEVICE MANUFACTURING METHOD
    • 曝光装置,校正方法和装置制造方法
    • US20090280418A1
    • 2009-11-12
    • US12463235
    • 2009-05-08
    • Hideki Matsuda
    • Hideki Matsuda
    • G03F7/20G03B27/42G03B27/32
    • G03B27/32G03F7/706
    • An exposure apparatus comprising a projection optical system configured to project a pattern of an original onto a substrate; and a control unit, wherein the control unit acquires a result of measuring a line width of an image of a first mark and a position of an image of a second mark, wherein the first mark and the second mark are formed on the substrate at each position while gradually changing a position of a substrate stage in an optical-axis direction, and derives a position shift amount of the image of the second mark formed on the substrate held by the substrate stage at a position, in the optical-axis direction, at which an extremum of a change of line width of the image of the first mark is measured.
    • 一种曝光装置,包括:投影光学系统,被配置为将原稿的图案投影到基板上; 以及控制单元,其中所述控制单元获取测量第一标记的图像的线宽度和第二标记的图像的位置的结果,其中,在每个所述基板上形成所述第一标记和所述第二标记 同时逐渐改变基板载物台在光轴方向上的位置,并且导出在基板载台上保持的基板上形成的第二标记的图像的位置偏移量在光轴方向上的位置, 测量第一标记的图像的线宽的变化的极值。
    • 7. 发明授权
    • Projection control system, projector and projection control method
    • 投影控制系统,投影机和投影控制方法
    • US07524070B2
    • 2009-04-28
    • US11319269
    • 2005-12-29
    • Hideki MatsudaMasanobu KobayashiOsamu Wada
    • Hideki MatsudaMasanobu KobayashiOsamu Wada
    • G03B21/14
    • H04N9/3185G03B21/142
    • A projector includes a projection angle deriving section which generates projection angle information indicating an angle formed by a projection target area and projection light projected onto the projection target area; a projection distance deriving section which generates projection distance information indicating a distance from an aim area in the projection target area to a projection section which projects the projection light; a control information generation section which generates direction control information for aligning a projection direction of the projection light with a normal direction of the projection target area based on the projection angle information, and generates projection section control information for controlling the projection section so that the projection light is projected onto the aim area based on the projection distance information; a pedestal driver section which drives a pedestal which adjusts the projection direction of the projection light based on the direction control information; a control section which controls the projection section based on the projection section control information; and the projection section.
    • 投影仪包括:投影角度导出部,其生成投影角度信息,该投影角度信息表示由投影对象区域形成的角度;投影光投射到投影对象区域; 投影距离导出部,其生成表示从投影对象区域中的目标区域到投影投影光的投影部的距离的投影距离信息; 控制信息生成部,其基于投影角度信息生成用于使投影光的投影方向与投影对象区域的法线方向对齐的方向控制信息,并且生成用于控制投影部的投影部控制信息,使得投影部 基于投影距离信息将光投射到目标区域上; 基座驱动器部,其驱动基于所述方向控制信息来调整投影光的投影方向的基座; 控制部,其基于所述投影部控制信息来控制所述投影部; 和投影部。
    • 9. 发明授权
    • Image processing system, projector, information storage medium, and image processing method
    • 图像处理系统,投影机,信息存储介质和图像处理方法
    • US07245307B2
    • 2007-07-17
    • US11372262
    • 2006-03-10
    • Hideki Matsuda
    • Hideki Matsuda
    • G09G5/02
    • H04N9/3182G09G3/002G09G5/02G09G2320/0666G09G2360/144G09G2360/145H04N9/3194
    • In order to provide an image processing system and the like that can reproduce colors more appropriately, a projector is provided with a calibration signal generation section that generates a calibration signal for a white image and calibration signals for three subtracted-primary-color images, each of which is obtained by subtracting a predetermined input value from the RGB values of a predetermined primary color, one of plurality of kinds of primary colors that together form white; an image projection section for displaying each calibration image, based on the corresponding calibration signal; a sensing section for sensing each displayed calibration image; a primary-color amount information generation section for calculating a difference between sensing signal values and calculating an image signal value for the highest output value of each of the RGB colors, based on that difference; an ambient-light amount information generation section for calculating an ambient-light amount based on differences between image signal values; and a correction information generation section for generating correction information for applying corrections, based on the highest output value for each of the RGB colors and the ambient-light amount.
    • 为了提供能够更适当地再现颜色的图像处理系统等,投影仪设置有校准信号生成部,其生成用于白色图像的校准信号和三个相减原色图像的校准信号,每个 通过从预定原色的RGB值中减去一起形成白色的多种基色中的一种来获得预定输入值; 图像投影部分,用于基于相应的校准信号显示每个校准图像; 感测部分,用于感测每个显示的校准图像; 原色量信息生成部,其基于该差计算感测信号值之间的差异,并计算每个RGB颜色的最高输出值的图像信号值; 环境光量信息生成部,其基于图像信号值之差计算环境光量; 以及校正信息生成部分,用于基于RGB颜色和环境光量中的每一个的最高输出值产生用于应用校正的校正信息。
    • 10. 发明授权
    • Image processing system, projector, image processing method, and information storage medium
    • 图像处理系统,投影仪,图像处理方法和信息存储介质
    • US07221792B2
    • 2007-05-22
    • US10438849
    • 2003-05-16
    • Hideki MatsudaMasashi Kanai
    • Hideki MatsudaMasashi Kanai
    • G06K9/00
    • H04N9/3182H04N5/58H04N5/74H04N9/3194H04N9/73H04N17/04
    • In order to provide an image processing system and the like which can reduce calibration time, the image processing system comprises: a device profile storage section which stores ideal-environment-measurement data; a light separating section which derives output light data indicating output light from an image projecting section and ambient light data based on a difference between first and second viewing-environment-measurement data measured through a sensor, a projection-plane-reflectance estimating section which estimates a reflectance of a projection plane, based on the output light data and the ideal environment-measurement data; a sensing data generating section which generates viewing-environment-estimation data based on the reflectance, the ideal-environment-measurement data and the ambient light data; an LUT generating section which updates an LUT based on the viewing-environment-estimation data; and a correcting section which corrects image information based on the updated LUT.
    • 为了提供可以减少校准时间的图像处理系统等,图像处理系统包括:存储理想环境测量数据的设备简档存储部分; 基于通过传感器测量的第一观测环境测量数据和第二观测环境测量数据之间的差异,导出指示来自图像投影部分的输出光的输出光数据和环境光数据的光分离部分,其估计 基于输出光数据和理想环境测量数据的投影面的反射率; 感测数据生成部,其基于反射率,理想环境测量数据和环境光数据生成观看环境估计数据; LUT生成部,其基于观察环境估计数据更新LUT; 以及校正部分,其基于更新的LUT校正图像信息。