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    • 1. 发明申请
    • CIRCULARLY POLARIZING PLATE AND THREE-DIMENSIONAL IMAGE DISPLAY APPARATUS
    • 圆形极化板和三维图像显示装置
    • US20140225499A1
    • 2014-08-14
    • US14344000
    • 2012-07-20
    • Rieko RenKoji TasakaKouji Tashiro
    • Rieko RenKoji TasakaKouji Tashiro
    • G02B27/26G02B5/30
    • G02B27/26G02B5/3083
    • A circularly polarizing plate has a polarizer and two λ/4 plates (T1, T2) bonded respectively onto both sides of the polarizer so as to face each other, the circularly polarizing plate is characterized in that the in-plane retardation values Ro of the λ/4 plates (T1) and the λ/4 plates (T2) satisfy (a) to (c) below in an environment with a temperature of 23° C. and RH of 55%. (a) The in-plane retardation value Ro of the λ/4 plates (T1), when measured within the range of 450 to 650 nm, is 3.0 to 20.0 nm smaller than the in-plane retardation value Ro of the λ/4 plates (T2). (b) The in-plane retardation value Ro of the λ/4 plates (T1) (450) falls within the range of 110 to 140 nm. (c) The in-plane retardation value Ro of the λ/4 plates (T2) (650) falls within the range of 145 to 165 nm.
    • 圆偏振板具有偏振片和分别粘合在偏振片的两面上的两个λ/ 4板(T1,T2),以便彼此面对,圆偏振片的特征在于,面偏光板的面内相位差值Ro λ/ 4板(T1)和λ/ 4板(T2)在温度为23℃,RH为55%的环境下满足下述(a)〜(c)。 (a)当在450〜650nm的范围内测量时,λ/ 4板(T1)的面内延迟值Ro比λ/ 4的面内延迟值Ro小3.0〜20.0nm 板(T2)。 (b)λ/ 4板(T1)(450)的面内延迟值Ro落在110〜140nm的范围内。 (c)λ/ 4板(T2)(650)的面内延迟值Ro在145〜165nm的范围内。
    • 4. 发明授权
    • Dielectric device with partially closed hole
    • 具有部分封闭孔的介质器件
    • US06737943B2
    • 2004-05-18
    • US10195800
    • 2002-07-16
    • Osamu TakuboKouji TashiroKenji Endou
    • Osamu TakuboKouji TashiroKenji Endou
    • H01P1205
    • H01P7/04H01P1/2056H01P1/2136
    • A dielectric device includes a dielectric substrate that includes at least one resonator unit. An external conductor film covers most of the outer surface of the dielectric substrate, except one end surface. The at least one resonator unit includes a first hole and a second hole. The first hole is provided in the dielectric substrate, extending from the end surface to an opposite surface, being open at the end surface and the opposite surface, and having a first internal conductor inside thereof. The second hole is provided in the dielectric substrate at a predetermined distance from the first hole, extends from the end surface toward the opposite surface, being open at the end surface, closed at the opposite surface, and having a second internal conductor inside thereof. The second internal conductor is connected to the first internal conductor at the end surface.
    • 电介质器件包括包括至少一个谐振器单元的电介质基片。 除了一个端面之外,外部导体膜覆盖电介质基板的大部分外表面。 所述至少一个谐振器单元包括第一孔和第二孔。 第一孔设置在电介质基板中,从端面延伸到相对的表面,在端面和相对表面处开口,并且在其内部具有第一内部导体。 所述第二孔从所述第一孔设置在所述电介质基板的预定距离处,从所述端面朝向所述相对面延伸,在所述端面开口,在所述相对面封闭,并且在其内部具有第二内部导体。 第二内部导体在端表面处连接到第一内部导体。
    • 5. 发明授权
    • Image forming method using silver halide color photographic light-sensitive material and image forming apparatus therefore
    • 因此,使用卤化银彩色照相感光材料和成像装置的成像方法
    • US06667138B2
    • 2003-12-23
    • US10227890
    • 2002-08-26
    • Kouji TashiroHiroaki Takano
    • Kouji TashiroHiroaki Takano
    • G03C508
    • H04N1/00259G03C7/3041G03C7/407H04N1/00249H04N1/00262H04N1/00267H04N1/195
    • An image information recording method, comprising the steps of: (a) imagewise exposing to light a silver halide color photographic light-sensitive material comprising a support having thereon a light-sensitive layer containing a silver halide and a color coupler; (b) subjecting the photographic light-sensitive material to color development so as to obtain an image in the photographic light-sensitive material; (c) converting the image in the photographic light-sensitive material to electric image information using a scanner comprising a light source part and a light receiving part while at least 80% of the developed silver and the silver halide remains in the photographic light-sensitive material; and (d) recording the electric information on a recording medium, wherein, the step (c) is carried out with the scanner that exhibits a light diffusion coefficient of at least 0.8.
    • 一种图像信息记录方法,包括以下步骤:(a)将含有其上含有卤化银和彩色耦合器的感光层的载体的卤化银彩色照相感光材料成像曝光于光; (b)对照相感光材料进行着色显影,以获得摄影感光材料中的图像; (c)使用包括光源部分和光接收部分的扫描仪将照相感光材料中的图像转换成电图像信息,同时将显影的银和卤化银的至少80%保留在照相感光材料中 材料; 和(d)将电信息记录在记录介质上,其中步骤(c)用显示光扩散系数至少为0.8的扫描仪进行。
    • 8. 发明授权
    • Dielectric device
    • 电介质器件
    • US06727784B2
    • 2004-04-27
    • US10259504
    • 2002-09-30
    • Kenji EndouKouji TashiroOsamu Takubo
    • Kenji EndouKouji TashiroOsamu Takubo
    • H01P120
    • H01P1/2056H01P7/04
    • The present invention relates to a dielectric device that is suitable for miniaturization and height reduction and is surface-mountable. In a resonator unit Q1, a first hole 41 is provided to a dielectric substarate 1, extends from a surface 21 toward a surface 22 opposite thereto, opens in the surface 21, and has a first internal conductor 61 in the interior. A second hole 51 is provided to the dielectric substarate 1, opens in a surface 23 adjacent to the surface 21, extends from the surface 23 toward a surface 24 opposite thereto, and is connected with the first hole 41 in the interior of the dielectric substarate 1. The second hole 51 has a second internal conductor 81 in the interior, and the second internal conductor 81 is connected to the first internal conductor 61 in the interior of the dielectric substarate 1.
    • 本发明涉及一种适用于小型化和高度降低并且可表面安装的电介质器件。 在谐振器单元Q1中,第一孔41设置在绝缘基底1上,从表面21向与其相反的表面22延伸,在表面21中开口,并且在内部具有第一内部导体61。 第二孔51设置在绝缘基底1上,在与表面21相邻的表面23中开口,从表面23延伸到与其相对的表面24,并且与介电材料的内部的第一孔41连接 第二孔51在内部具有第二内部导体81,第二内部导体81连接到介电材料1的内部的第一内部导体61。
    • 9. 发明授权
    • Image forming method
    • 图像形成方法
    • US06200738B1
    • 2001-03-13
    • US09429372
    • 1999-10-28
    • Hiroaki TakanoHideaki HaragaKouji Tashiro
    • Hiroaki TakanoHideaki HaragaKouji Tashiro
    • G03C7333
    • G03C5/08G03C7/3041
    • An image forming method is disclosed, wherein a photographic element comprising a support having on at least one side thereof at least a photographic component layer containing light sensitive silver halide is subjected to exposure and photographic processing to form a dye image, in which the photographic processing is allowed to be completed, while the residual silver content in the photographic element is 5% or more; image information in the visible light wavelength region, in which the dye image has absorption, and image information in the invisible light wavelength region are read, and the obtained image information is further subjected to image processing to reduce noise due to the residual silver.
    • 公开了一种图像形成方法,其中包括在其至少一侧上具有至少一个含有光敏卤化银的照相组分层的支持体的照相元件进行曝光和照相处理以形成染料图像,其中摄影处理 允许完成照相元件中的残留银含量为5%以上; 读取染料图像具有吸收的可见光波长区域中的图像信息和不可见光波长区域中的图像信息,并且获得的图像信息进一步进行图像处理以减少由于残留的银产生的噪声。
    • 10. 发明授权
    • Circularly polarizing plate and three-dimensional image display apparatus
    • 圆偏振板和三维图像显示装置
    • US08952600B2
    • 2015-02-10
    • US14344000
    • 2012-07-20
    • Rieko RenKoji TasakaKouji Tashiro
    • Rieko RenKoji TasakaKouji Tashiro
    • H01J5/16H01J61/40H01K1/26H01K1/30G02B27/26
    • G02B27/26G02B5/3083
    • A circularly polarizing plate has a polarizer and two λ/4 plates (T1, T2) bonded respectively onto both sides of the polarizer so as to face each other, the circularly polarizing plate is characterized in that the in-plane retardation values Ro of the λ/4 plates (T1) and the λ/4 plates (T2) satisfy (a) to (c) below in an environment with a temperature of 23° C. and RH of 55%. (a) The in-plane retardation value Ro of the λ/4 plates (T1), when measured within the range of 450 to 650 nm, is 3.0 to 20.0 nm smaller than the in-plane retardation value Ro of the λ/4 plates (T2). (b) The in-plane retardation value Ro of the λ/4 plates (T1) (450) falls within the range of 110 to 140 nm. (c) The in-plane retardation value Ro of the λ/4 plates (T2) (650) falls within the range of 145 to 165 nm.
    • 圆偏振板具有偏振片和分别粘合在偏振片的两面上的两个λ/ 4板(T1,T2),以便彼此面对,圆偏振片的特征在于,面偏光板的面内相位差值Ro λ/ 4板(T1)和λ/ 4板(T2)在温度为23℃,RH为55%的环境下满足下述(a)〜(c)。 (a)当在450〜650nm的范围内测量时,λ/ 4板(T1)的面内延迟值Ro比λ/ 4的面内延迟值Ro小3.0〜20.0nm 板(T2)。 (b)λ/ 4板(T1)(450)的面内延迟值Ro落在110〜140nm的范围内。 (c)λ/ 4板(T2)(650)的面内延迟值Ro在145〜165nm的范围内。