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    • 61. 发明授权
    • Simulation method and simulation program
    • 仿真方法和仿真程序
    • US08230369B2
    • 2012-07-24
    • US12395481
    • 2009-02-27
    • Akiko MimotogiSatoshi TanakaShoji MimotogiTakashi Sato
    • Akiko MimotogiSatoshi TanakaShoji MimotogiTakashi Sato
    • G06F17/50
    • G03F7/705G03F1/36G03F1/70
    • A method of simulating an optical intensity distribution on a substrate when a mask pattern formed on the mask is transferred to the substrate through a projection optical system by irradiating an illumination light obliquely on a mask surface of the mask, which comprises setting a phase difference between a zero-order diffraction light and a first-order diffraction light determined according to at least one of a distance between the zero-order diffraction light and the first-order diffraction light on a pupil of the projection optical system, thickness of a light-shielding portion formed on the mask, angle defined by an optical axis direction of the illumination light and an incident direction on the mask, and a difference between a size of the mask pattern and a half cycle of the mask pattern, and carrying out a simulation of the optical intensity distribution on the substrate according to the set phase difference.
    • 当掩模上形成的掩模图案通过投影光学系统通过将照明光倾斜地照射到掩模的掩模表面上时,模拟基板上的光强度分布的方法,该方法包括设置掩模的掩模表面之间的相位差 根据投影光学系统的光瞳上的零级衍射光与一级衍射光之间的距离中的至少一个所确定的零级衍射光和一级衍射光, 形成在掩模上的屏蔽部分,由照明光的光轴方向和掩模上的入射方向限定的角度以及掩模图案的尺寸与掩模图案的半周期之间的差异,并且进行模拟 根据设定的相位差在基板上的光强度分布。
    • 63. 发明授权
    • Intake air heating control device for gas turbine
    • 燃气轮机进气加热控制装置
    • US08141335B2
    • 2012-03-27
    • US12447382
    • 2007-11-09
    • Satoshi TanakaShoichi HaradaKozo Toyama
    • Satoshi TanakaShoichi HaradaKozo Toyama
    • F02C7/047F02C7/08
    • F02C9/22F02C7/047F02C7/057F05D2270/705
    • Extremely cold (e.g., −20° C.) air A is heated by a heat exchanger 30, which is supplied with steam S via a control valve 32, and heated air A′ is taken into a gas turbine 10. The valve opening degree of the control valve 32 is feedback-controlled so that the deviation between the measured temperature t1 and the target temperature TO of the heated air A′ is eliminated. Further, when the number of revolutions, N, of the gas turbine 10 increases, or when an IGV opening degree OP increases, the valve opening degree of the control valve 32 is feedforward-controlled in accordance with the increase in the number N of revolutions or the increase in the IGV opening degree OP. By so doing, the temperature of air A′ can be maintained at a temperature enabling stable combustion without delay in control, and intake air can be heated without delay in control, even at the start of the gas turbine or during change in the opening degree of an inlet guide vane.
    • 非常冷(例如-20℃),空气A被热交换器30加热,热交换器30经由控制阀32供给蒸汽S,加热空气A'被吸入燃气轮机10.阀开度 控制阀32被反馈控​​制,从而消除了加热空气A'的测量温度t1与目标温度TO之间的偏差。 此外,当燃气轮机10的转数N增加时,或当IGV开度OP增加时,控制阀32的阀开度根据转数N的增加进行前馈控制 或IGV开度OP的增加。 通过这样做,空气A'的温度可以保持在能够在不延迟控制的情况下稳定燃烧的温度,并且即使在燃气轮机的启动时或者在开度变化的情况下,也可以不延迟地加热进气 的入口导叶。
    • 65. 发明授权
    • Hinge apparatus and foldable electronic device
    • 铰链装置和可折叠电子装置
    • US08096021B2
    • 2012-01-17
    • US12326862
    • 2008-12-02
    • Noriyuki IwamaYuuichi OotaSatoshi TanakaTomoaki KawabataMasatake FukeNobuyoshi Ooba
    • Noriyuki IwamaYuuichi OotaSatoshi TanakaTomoaki KawabataMasatake FukeNobuyoshi Ooba
    • E05D3/10
    • E05D3/10E05Y2900/606Y10T16/5472
    • A hinge apparatus of the present invention comprises a first rotational shaft which rotates a first casing and a second casing relative to each other from a state where the first and second casings are folded down, and opens the first and second casings in a vertical direction, a second rotational shaft which rotates the first casing and the second casing relative to each other in a horizontal direction, a coupling member which couples the first rotational shaft and the second rotational shaft together, with an end portion of the first rotational shaft being overlapped with an end portion of the second rotational shaft, and an engagement member which allows either one rotational shaft of the first rotational shaft and the second rotational shaft to engage with the other rotational shaft, thereby restricting a rotation of the other rotational shaft when the one rotational shaft rotates.
    • 本发明的铰链装置包括:第一旋转轴,其从第一和第二壳体向下折叠的状态相对于彼此旋转第一壳体和第二壳体,并且在垂直方向上打开第一和第二壳体, 使第一壳体和第二壳体相对于水平方向旋转的第二旋转轴,将第一旋转轴和第二旋转轴联接在一起的联接构件,第一旋转轴的端部与第一旋转轴的端部重叠 第二旋转轴的端部和允许第一旋转轴的第一旋转轴和第二旋转轴的一个旋转轴与另一旋转轴接合的接合构件,从而在旋转的一个旋转轴时限制另一旋转轴的旋转 轴旋转。
    • 67. 发明授权
    • Method for judging feature of malignant tumor
    • 判断恶性肿瘤特征的方法
    • US08041514B2
    • 2011-10-18
    • US11711053
    • 2007-02-27
    • Satoshi TanakaMasaki ShibayamaHideki IshiharaTomoko MatsushimaAya KatayamaYuko Kawasaki
    • Satoshi TanakaMasaki ShibayamaHideki IshiharaTomoko MatsushimaAya KatayamaYuko Kawasaki
    • G01N33/574G06F19/00
    • G01N33/57415C12Q1/485G01N2333/4739G01N2333/9121G06F19/24
    • A method for judging feature of malignant tumor is described. The method comprises obtaining step, first comparing step, second comparing step and judging step. The obtaining step comprises obtaining a first parameter based on activity and expression level of a first cyclin dependent kinase (first CDK) contained in a tumor cell of the malignant tumor, a second parameter based on activity and expression level of a second cyclin dependent kinase (second CDK) contained in the tumor cell, a third parameter based on the first parameter and the second parameter, and a fourth parameter based on expression level of a cyclin contained in the tumor cell. The first comparing step comprises comparing a first threshold value with the third parameter. The second comparing comprises comparing a second threshold value with the fourth parameter. The judging step comprises judging the feature of the malignant tumor based on the comparison results of the first comparing step and the second comparing step.
    • 描述了判断恶性肿瘤特征的方法。 该方法包括获得步骤,第一比较步骤,第二比较步骤和判断步骤。 获得步骤包括基于包含在恶性肿瘤的肿瘤细胞中的第一细胞周期依赖性激酶(第一CDK)的活性和表达水平获得第一参数,第二参数基于第二细胞周期蛋白依赖性激酶的活性和表达水平( 第二CDK),基于第一参数和第二参数的第三参数,以及基于包含在肿瘤细胞中的细胞周期蛋白的表达水平的第四参数。 第一比较步骤包括将第一阈值与第三参数进行比较。 第二比较包括将第二阈值与第四参数进行比较。 判断步骤包括基于第一比较步骤和第二比较步骤的比较结果判断恶性肿瘤的特征。