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    • 97. 发明授权
    • Reflective liquid crystal display apparatus
    • 反光液晶显示装置
    • US07595848B2
    • 2009-09-29
    • US11228612
    • 2005-09-16
    • Masayuki Abe
    • Masayuki Abe
    • G02F1/1335
    • H04N9/315G02B27/283G02F2001/13355G02F2001/133638G02F2203/02H04N5/7441
    • At least one exemplary embodiment is directed to a reflective liquid crystal display apparatus which comprises: a polarization beam splitter having a polarization split film used as both a polarizer and an analyzer; a reflective liquid crystal display device; a quarter wave plate; and a projection optical system; where the absolute value of phase difference of diffracted light generated by the reflective liquid crystal display device in a black display state is reduced by the phase difference of the quarter wave plate, and thus the amount of stray light of the diffracted light guided from the polarizing beam splitter to the projection optical system decreases.
    • 至少一个示例性实施例涉及一种反射型液晶显示装置,其包括:偏振分束器,其具有用作偏振器和分析器的偏振分束膜; 反射型液晶显示装置; 四分之一波片; 和投影光学系统; 其中由黑色显示状态的反射型液晶显示装置产生的衍射光的相位差的绝对值通过四分之一波片的相位差而减小,并且因此从偏振光引导的衍射光的杂散光量 投影光学系统的分束器减小。
    • 98. 发明申请
    • Apparatus for extracting the contents from a refill pouch
    • 用于从填充袋提取内容物的装置
    • US20090071977A1
    • 2009-03-19
    • US12231262
    • 2008-08-28
    • Masayuki Abe
    • Masayuki Abe
    • B65D35/28B65D35/56B67D5/40B65D37/00
    • B65D75/56A47K5/1204B05B11/00412B05B11/3015B05B11/3032B05B11/3045
    • An apparatus for extracting the contents from a refill pouch comprises a holding member for holding the pouch with its extraction port located downward, and a pump attached to the extraction port of the pouch. The pump has a pump body defining a housing space having an inlet opening and an outlet opening, an inlet-side valve which communicates with the extraction port to open and close the inlet opening so that the contents can be introduced into the housing space from the pouch, and an outlet-side valve to open and close the outlet opening so that the contents in the housing space can be discharged through a nozzle that communicates with the outlet-side valve. In one embodiment, the pump has two spindles disposed in laterally spaced-apart relation at opposite sides of the pump body and that are manually movable towards each other in a sidewise direction of the pump body to pressurize the housing space so that the contents can be extracted through the nozzle. In another embodiment, the pump wall portion is constituted by a resiliently compressible, restorable and flexible material so that the contents in the housing space can be extracted through the nozzle by manually squeezing the pump wall portion thereby pressurizing the housing space.
    • 一种用于从再填充袋中提取内容物的装置包括:保持构件,其用于将其提取口保持在下方的小袋,以及附接到袋的提取口的泵。 泵具有限定具有入口开口和出口开口的容纳空间的泵体,入口侧阀与抽出口连通以打开和关闭入口开口,使得内容物可以从容纳空间引入到容纳空间中 袋和出口侧阀,以打开和关闭出口开口,使得容纳空间中的内容物可以通过与出口侧阀连通的喷嘴排出。 在一个实施例中,泵具有在泵体的相对侧处以横向间隔开的关系设置的两个主轴,并且可以在泵体的侧向方向上彼此相对地移动以对容纳空间加压,使得内容物可以 通过喷嘴提取。 在另一个实施例中,泵壁部分由弹性可压缩,可恢复和柔性的材料构成,从而通过手动挤压泵壁部分从而使壳体空间加压,能够通过喷嘴抽出容纳空间中的内容物。
    • 99. 发明申请
    • Probe position control system and method
    • 探头位置控制系统及方法
    • US20070272005A1
    • 2007-11-29
    • US11802624
    • 2007-05-24
    • Masayuki AbeMasahiro OtaYoshiaki SugimotoKenichi MoritaNoriaki OyabuSeizo MoritaOscar Custance
    • Masayuki AbeMasahiro OtaYoshiaki SugimotoKenichi MoritaNoriaki OyabuSeizo MoritaOscar Custance
    • G12B21/20G01N13/10
    • G01Q30/06G01Q70/04
    • The present invention provides a technique for eliminating the effect of the thermal drift and other variances and to improve the observing or manipulating accuracy of a scanning probe microscope or atom manipulator by using the technique to correct the aforementioned change in the relative position of the probe and the sample due to heat or other factors during the observation or manipulation. To obtain an image of the sample surface at the atomic level or perform a certain manipulation on an atom on the sample surface, the present invention can be applied to a probe position control method for controlling the relative position of the probe and the sample while measuring an interaction between the objective atom on the sample surface and the tip of the probe. In the present method, the relative position of the probe and the sample are changed while the probe is oscillated relative to the sample in two directions parallel to the sample surface at frequencies of f1 and f2 (S1a). Meanwhile, a point (or characteristic point) where the frequencies f1 and f2 disappear from the measured value of the interaction working in the direction perpendicular to the sample surface is detected (S1b). Then, the relative movement of the probe and the sample is controlled so that the measurement value thereby detected is maintained (i.e. the characteristic point is tracked; S1c), and the speed of the aforementioned relative movement is determined (S1d). Subsequently, the relative position control is corrected using the detected speed (S2).
    • 本发明提供了一种用于消除热漂移和其它方差的影响的技术,并且通过使用该技术来校正探针的相对位置的上述变化来提高扫描探针显微镜或原子操纵器的观察或操纵精度,以及 在观察或操纵期间由于热或其他因素导致的样品。 为了获得原子级别的样品表面的图像或对样品表面上的原子进行一定的操作,本发明可以应用于用于在测量时控制探针和样品的相对位置的探针位置控制方法 样品表面上的目标原子与探针尖端之间的相互作用。 在本方法中,探针和样品的相对位置在f 1和f 2的频率下相对于样品在平行于样品表面的两个方向上振荡的同时发生变化, 2(S 1a)。 同时,检测频率f 1和f 2 2的点(或特征点)从垂直于样品表面的方向上工作的相互作用的测量值消失 (S 1b)。 然后,控制探头和样品的相对移动,使得由此检测到的测量值被维持(即跟踪特征点; S1c),并且确定上述相对移动的速度(S1d) 。 随后,使用检测速度来校正相对位置控制(S 2)。
    • 100. 发明授权
    • Image display optical system and projection type image display apparatus
    • 图像显示光学系统和投影型图像显示装置
    • US07222967B2
    • 2007-05-29
    • US10213719
    • 2002-08-07
    • Atsushi OkuyamaHiroyuki KodamaMasayuki Abe
    • Atsushi OkuyamaHiroyuki KodamaMasayuki Abe
    • G03B21/00G03B21/14G03B21/28
    • G03B21/006
    • An image display optical system according to the present invention has an illumination optical system, a plurality of image display elements, a color separation/combination optical system, and a projection optical system. The image display optical system also has a light guide element which reflects illumination light from the illumination optical system with a reflectivity of substantially 100% to guide the reflected light to the color separation/combination optical system and transmits image light from the color separation/combination optical system to the projection optical system.Each optical path of the illumination light and each optical path of the image light are different from each other in the light guide element and the color separation/combination optical system. The projection optical system is an eccentric optical system.With the configuration, the use efficiency of light can be enhanced to obtain bright and high-definition display images.
    • 根据本发明的图像显示光学系统具有照明光学系统,多个图像显示元件,分色/组合光学系统和投影光学系统。 图像显示光学系统还具有导光元件,其将来自照明光学系统的照明光以大致100%的反射率反射,以将反射光引导到分色/组合光学系统,并将来自颜色分离/组合的图像光 光学系统投影光学系统。 照明光的每个光路和图像光的每个光路在导光元件和分色/组合光学系统中彼此不同。 投影光学系统是偏心光学系统。 通过配置,可以提高光的使用效率,以获得明亮和高清晰度的显示图像。