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    • 2. 发明申请
    • LAMINATED OPTICAL FILM, POLARIZING PLATE AND LIQUID CRYSTAL DISPLAY DEVICE
    • 层压光学薄膜,偏光板和液晶显示装置
    • US20090086138A1
    • 2009-04-02
    • US12235097
    • 2008-09-22
    • Shun NakamuraMasayoshi Toyoda
    • Shun NakamuraMasayoshi Toyoda
    • G02F1/13363G02B5/30
    • G02B5/3016G02B5/305G02F1/133528G02F1/13363G02F1/1395G02F2001/133633G02F2202/40G02F2203/60
    • A laminated optical film including a first optical anisotropic layer, and a second optical anisotropic layer, wherein Relationship (1) is satisfied when a slow phase axis of the first optical anisotropic layer is substantially perpendicular to a slow phase axis of the second optical anisotropic layer, −10 nm≦ΔRe1−ΔRe2≦10 nm   Relationship (1) wherein Relationship (2) is satisfied when the slow phase axis of the first optical anisotropic layer is substantially parallel to the slow phase axis of the second optical anisotropic layer, and −10 nm≦ΔRe1+ΔRe2≦10 nm   Relationship (2) wherein an in-plane retardation value Re of the film as a whole satisfies 30 nm≦Re≦500 nm, where ΔRe1 denotes a value calculated from “Re1 (at a temperature of 50° C.)−Re1 (at a temperature of 25° C.)” concerning the first optical anisotropic layer, and ΔRe2 denotes a value calculated from “Re2 (at a temperature of 50° C.)−Re2 (at a temperature of 25° C.)” concerning the second optical anisotropic layer.
    • 一种包括第一光学各向异性层和第二光学各向异性层的层压光学膜,其中当第一光学各向异性层的慢相轴基本上垂直于第二光学各向异性层的慢相位轴时,满足关系(1) ,<?in-line-formula description =“In-line formula”end =“lead”?> - 10 nm <= DeltaRe1-ΔRe2<= 10 nm关系(1)<?in-line-formula description =“In 线“公式”end =“tail”?>其中,当第一光学各向异性层的慢相轴基本上平行于第二光学各向异性层的慢相轴时,满足关系(2),并且< -formulae description =“In-line Formulas”end =“lead”?> - 10 nm <= DeltaRe1 + DeltaRe2 <= 10 nm关系(2)<?in-line-formula description =“In-line Formulas”end = “尾”→>其中膜的面内延迟值Re整体满足30nm
    • 3. 发明申请
    • LAMINATED OPTICAL FILM, POLARIZING PLATE AND LIQUID CRYSTAL DISPLAY DEVICE
    • 层压光学薄膜,偏光板和液晶显示装置
    • US20090086128A1
    • 2009-04-02
    • US12235014
    • 2008-09-22
    • Shun NakamuraMasayoshi Toyoda
    • Shun NakamuraMasayoshi Toyoda
    • G02F1/13363G02B5/30
    • G02B5/3083G02F2001/133633G02F2202/40G02F2413/03
    • A laminated optical film including a first optical anisotropic layer, and a second optical anisotropic layer, wherein Rth1 of the first optical anisotropic layer, and Rth2 of the second optical anisotropic layer satisfy one of Relationships (1) and (2), and ΔRth1≧0 nm and ΔRth2≦0 nm   (1) ΔRth1 0 nm   (2) wherein a retardation value Rth of the laminated optical film as a whole in its thickness direction satisfies 50 nm≦Rth≦500 nm,where ΔRth1 denotes a value obtained by calculating the expression Rth1 (at a temperature of 50° C.)—Rth1 (at a temperature of 25° C.) concerning the first optical anisotropic layer, and ΔRth2 denotes a value obtained by calculating the expression Rth2 (at a temperature of 50° C.)—Rth2 (at a temperature of 25° C.) concerning the second optical anisotropic layer.
    • 包括第一光学各向异性层和第二光学各向异性层的层压光学膜,其中第一光学各向异性层的Rth1和第二光学各向异性层的Rth2满足关系式(1)和(2)中的一个。 in-line-formula description =“In-line Formulas”end =“lead”?> DeltaRth1> = 0 nm和DeltaRth2 <= 0 nm(1)<?in-line-formula description =“In-line Formulas”end =“tail”?> <?in-line-formula description =“In-line formula”end =“lead”?> DeltaRth1 <0 nm and DeltaRth2> 0 nm(2)<?in-line-formula description =“ 其中层叠光学膜整体厚度方向的延迟值Rth满足50nm <= Rth <= 500nm,其中ΔRth1表示通过计算表达式 Rth1(温度为50℃)-Rth1(25℃的温度),ΔRth2表示通过计算表达式Rth2得到的值(温度50℃ ℃)-Rth2(在25℃的温度下)与第二光学各向异性层有关。
    • 5. 发明授权
    • Silver halide color photosensitive material
    • 卤化银色感光材料
    • US07115356B2
    • 2006-10-03
    • US10947173
    • 2004-09-23
    • Masayoshi ToyodaJunichiro HosokawaTakanori Hioki
    • Masayoshi ToyodaJunichiro HosokawaTakanori Hioki
    • G03C1/46G03C1/005G03C1/495
    • G03C1/46G03C1/0051G03C7/3022G03C7/3029G03C7/3041G03C7/3825G03C7/3924G03C2007/3025G03C2007/3027G03C2007/3034Y10S430/156
    • A silver halide color photosensitive material of less than 320 ISO speed, comprising at least two red-sensitive emulsion layers, at least two green-sensitive emulsion layers, at least one blue-sensitive emulsion layer and at least one nonsensitive layer, wherein silver halide tabular grains of 0.15 μm or less grain thickness are contained in an amount of 50% or more in respective layers with the highest speed among the green- and red-sensitive emulsion layers; wherein the total dry film thickness of the material on the emulsion layer side thereof is 24 μm or less; and wherein the compound (A) is contained in at least one silver halide emulsion layer or the nonsensitive layer.Compound (A): heterocyclic compound having one or more heteroatoms, which heterocyclic compound is capable of substantially increasing the sensitivity of silver halide color photosensitive material by addition thereof as compared with that exhibited when the compound is not added.
    • 小于320 ISO感光度的卤化银色感光材料,包含至少两个感红乳剂层,至少两个感绿乳剂层,至少一个感蓝乳剂层和至少一个非敏感层,其中卤化银 绿色和红色感光乳剂层中速度最高的各层的厚度为0.15μm以下的片状颗粒的含量为50%以上。 其中乳剂层侧的材料的总干膜厚度为24μm以下; 并且其中化合物(A)包含在至少一个卤化银乳剂层或非敏感层中。 化合物(A):具有一个或多个杂原子的杂环化合物,该杂环化合物与不加入该化合物时相比,能够显着提高卤化银色感光材料的添加灵敏度。
    • 7. 发明授权
    • Silver halide color photographic light-sensitive material
    • 卤化银彩色摄影感光材料
    • US5380631A
    • 1995-01-10
    • US2465
    • 1993-01-08
    • Yasushi NozawaNobuo SetoNobutaka OhkiMasayoshi Toyoda
    • Yasushi NozawaNobuo SetoNobutaka OhkiMasayoshi Toyoda
    • G03C1/035G03C1/18G03C1/34G03C7/305G03C7/333G03C7/392G03C1/46
    • G03C7/3335G03C7/305G03C7/39216Y10S430/158
    • A silver halide color photographic light-sensitive material having at least one negative silver halide emulsion layer on a support, wherein the silver halide color photographic light-sensitive material contains at least one type of a compound which reacts with the oxidized form of a developing agent to release a development inhibitor or a precursor of a development inhibitor and/or at least one type of a compound which cleaves after reacting with the oxidized form of a color developing agent, the cleaved compound of which in turn reacts with another molecule of the oxidized form of a color developing agent to cleave a development inhibitor, and contains at least one type of a compound selected from Formulas (A) and (B) below. In Formulas (A) and (B), each of R.sub.a1 to R.sub.a5 and R.sub.b1 to R.sub.b5 represents a hydrogen atom, an alkyl group or other groups. R.sub.a1 to R.sub.a5 are not simultaneously hydrogen atoms, and one or two of R.sub.b2 to R.sub.b5 are hydroxyl groups. ##STR1##
    • 一种卤化银彩色照相感光材料,其在载体上具有至少一个负卤化银乳剂层,其中所述卤化银彩色照相感光材料含有至少一种与氧化形式的显影剂反应的化合物 释放开发抑制剂或显影抑制剂的前体和/或至少一种类型的化合物,其与氧化形式的显色剂反应后裂解,其中切割的化合物又与另一分子的氧化的 形成显色剂以切割显影抑制剂,并含有至少一种选自下式(A)和(B)的化合物。 在式(A)和(B)中,Ra1〜Ra5和Rb1〜Rb5各自表示氢原子,烷基或其它基团。 Ra1〜Ra5不同时为氢原子,Rb2〜Rb5中的一个或两个为羟基。 公式(A)公式(B)
    • 8. 发明授权
    • Laminated optical film, polarizing plate and liquid crystal display device
    • 层压光学膜,偏光板和液晶显示装置
    • US08054441B2
    • 2011-11-08
    • US12235097
    • 2008-09-22
    • Shun NakamuraMasayoshi Toyoda
    • Shun NakamuraMasayoshi Toyoda
    • G02F1/13G02F1/1335
    • G02B5/3016G02B5/305G02F1/133528G02F1/13363G02F1/1395G02F2001/133633G02F2202/40G02F2203/60
    • A laminated optical film including a first optical anisotropic layer, and a second optical anisotropic layer, wherein Relationship (1), −10 nm≦ΔRe1−ΔRe2≦10 nm, is satisfied when a slow phase axis of the first optical anisotropic layer is substantially perpendicular to a slow phase axis of the second optical anisotropic layer, wherein Relationship (2), −10 nm≦ΔRe1+ΔRe2≦10 nm, is satisfied when the slow phase axis of the first optical anisotropic layer is substantially parallel to the slow phase axis of the second optical anisotropic layer, wherein an in-plane retardation value Re of the film as a whole satisfies 30 nm≦Re≦500 nm, where ΔRe1 denotes a value calculated from “Re1 (at a temperature of 50° C.)−Re1 (at a temperature of 25° C.)” concerning the first optical anisotropic layer, and ΔRe2 denotes a value calculated from “Re2 (at a temperature of 50° C.)−Re2 (at a temperature of 25° C.)” concerning the second optical anisotropic layer.
    • 包括第一光学各向异性层和第二光学各向异性层的层叠光学膜,其中当第一光学器件的慢相位轴相关时,满足关系(1),-10nm和nlE;&Dgr; Re1-&Dgr; Re2&nlE; 10nm 各向异性层基本上垂直于第二光学各向异性层的慢相位轴,其中当第一光学各向异性层的慢相位轴相关时,满足关系式(2),-10nm和nlE; Dgr; Re1 +&Dgr; Re2&nlE; 10nm 层基本上平行于第二光学各向异性层的慢相位轴,其中膜的面内延迟值Re整体满足30nm&lt; NlE; Re&nlE; 500nm,其中&Dgr; Re1表示从“Re1 (温度为50℃)-Re1(在25℃的温度下)],&Dgr; Re2表示从“Re2(在50℃的温度下)计算的值 )-Re2(温度25℃)“ cal各向异性层。
    • 9. 发明授权
    • Laminated optical film, polarizing plate and liquid crystal display device
    • 层压光学膜,偏光板和液晶显示装置
    • US07916251B2
    • 2011-03-29
    • US12235014
    • 2008-09-22
    • Shun NakamuraMasayoshi Toyoda
    • Shun NakamuraMasayoshi Toyoda
    • G02F1/13G02F1/1335G02B5/30G02B27/28
    • G02B5/3083G02F2001/133633G02F2202/40G02F2413/03
    • A laminated optical film including a first optical anisotropic layer, and a second optical anisotropic layer, wherein Rth1 of the first optical anisotropic layer, and Rth2 of the second optical anisotropic layer satisfy one of Relationships (1) and (2), and ΔRth1≧0 nm and ΔRth2≦0 nm   (1) ΔRth1 0 nm   (2) wherein a retardation value Rth of the laminated optical film as a whole in its thickness direction satisfies 50 nm≦Rth≦500 nm, where ΔRth1 denotes a value obtained by calculating the expression Rth1 (at a temperature of 50° C.)−Rth1 (at a temperature of 25° C.) concerning the first optical anisotropic layer, and ΔRth2 denotes a value obtained by calculating the expression Rth2 (at a temperature of 50° C.)−Rth2 (at a temperature of 25° C.) concerning the second optical anisotropic layer.
    • 包括第一光学各向异性层和第二光学各向异性层的层叠光学膜,其中第一光学各向异性层的Rth1和第二光学各向异性层的Rth2满足关系(1)和(2)中的一个,并且&Dgr; Rth1≥0nm,&Dgr; Rth2&nlE; 0nm(1)&Dgr; Rth1 <0nm和&Dgr; Rth2> 0nm(2)其中层叠光学膜的整体厚度方向的延迟值Rth满足50nm& ; Rth&nlE; 500nm,其中&Dgr; Rth1表示通过计算关于第一光学各向异性层的表达式Rth1(在50℃的温度)-Rth1(在25℃的温度下)和&Dgr Rth2表示通过计算关于第二光学各向异性层的表达式Rth2(在温度为50℃)-Rth2(在25℃的温度下)而获得的值。