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    • 81. 发明授权
    • Variable focal length lenses
    • 可变焦距镜头
    • US06347742B2
    • 2002-02-19
    • US09761212
    • 2001-01-16
    • Daniel James WinarskiMasaki HasegawaKamal Emile DimitriRobert LaMar Bingham
    • Daniel James WinarskiMasaki HasegawaKamal Emile DimitriRobert LaMar Bingham
    • G02B2600
    • G06K7/10831G06K7/10574G06K7/10811
    • A bar code reader for an automated storage library has a lens assembly with a pair of polarized liquid crystal lenses. Each lens has pair of parallel glass plates that are separated by upper and lower glass substrates. A series of polymer films are symmetrically spaced apart between the substrates. Both the substrates and the films are perpendicular to the glass plates. Electrodes are formed on the films and combine to form a semi-cylindrical stack of film. Liquid crystal fills the spaces between adjacent pairs of the films. The films are coated and/or treated by an alignment process to predispose the liquid crystals to a specific rotational direction. When a selected voltage is applied between adjacent ones of the electrodes, the liquid crystals are synchronously rotated to alter their refractive index to a desired value. Thus, when the layers of each lens are manipulated in unison, the bar code reader is able to quickly adjust its focal length to read bar codes at various distances.
    • 用于自动存储库的条形码读取器具有带有一对偏振液晶透镜的透镜组件。 每个透镜都有一对由上玻璃基板和下玻璃基板隔开的平行玻璃板。 一系列聚合物膜在基板之间对称地间隔开。 基板和薄膜都垂直于玻璃板。 电极形成在薄膜上并结合形成半圆柱形的薄膜。 液晶填充相邻成对的薄膜之间的空间。 通过对准方法涂覆和/或处理膜以使液晶倾向于特定的旋转方向。 当在相邻的电极之间施加选择的电压时,液晶同步旋转以将其折射率改变到期望值。 因此,当每个透镜的层均一致地操作时,条形码读取器能够快速调整其焦距以在各种距离读取条形码。
    • 89. 发明授权
    • Graphical user interface for use with electron beam wafer inspection
    • 用于电子束晶圆检查的图形用户界面
    • US08502141B2
    • 2013-08-06
    • US12457734
    • 2009-06-19
    • Masaki HasegawaHisaya MurakoshiHiroshi Makino
    • Masaki HasegawaHisaya MurakoshiHiroshi Makino
    • G01N23/00G21K7/00
    • H01J37/265G06T7/0004G06T2207/10056G06T2207/30148H01J37/29H01J2237/22H01J2237/24592
    • Because a mirror electron imaging type inspection apparatus for obtaining an inspection object image with mirror electrons has been difficult to optimize inspection conditions, since the image forming principles of the apparatus are different from those of conventional SEM type inspection apparatuses. In order to solve the above conventional problem, the present invention has made it possible for the user to examine such conditions as inspection speed, inspection sensitivity, etc. intuitively by displaying the relationship among the values of inspection speed S, inspection object digital signal image pixel size D, inspection object image size L, and image signal acquisition cycle P with use of a time delay integration method as a graph on an operation screen. The user can thus determine a set of values of a pixel size, an inspection image width, and a TDI sensor operation cycle easily with reference to the displayed graph.
    • 由于用于获得具有镜电子的检查对象图像的镜像电子成像型检查装置难以优化检查条件,因为该装置的图像形成原理与常规SEM型检查装置的图像形成原理不同。 为了解决上述常规问题,本发明使得用户可以通过显示检查速度S,检查对象数字信号图像的值之间的关系来直观地检查诸如检查速度,检查灵敏度等条件 像素尺寸D,检查对象图像尺寸L和图像信号采集周期P,使用时间延迟积分方法作为操作画面上的图形。 因此,用户可以参照所显示的图形容易地确定像素尺寸,检查图像宽度和TDI传感器操作循环的一组值。
    • 90. 发明授权
    • Negative electrode for non-aqueous electrolyte secondary battery, method for producing the same, and non-aqueous electrolyte secondary battery
    • 非水电解质二次电池用负极及其制造方法以及非水电解质二次电池
    • US08389156B2
    • 2013-03-05
    • US12303854
    • 2007-08-22
    • Katsumi KashiwagiKazuyoshi HondaMasaki HasegawaMasaya UgajiYasutaka KogetsuShuji Ito
    • Katsumi KashiwagiKazuyoshi HondaMasaki HasegawaMasaya UgajiYasutaka KogetsuShuji Ito
    • H01M4/02
    • H01M4/13H01M4/386H01M4/40H01M4/70H01M10/0525H01M2004/025H01M2004/027
    • This invention provides a negative electrode and a non-aqueous electrolyte secondary battery including the negative electrode. The negative electrode includes a Li-absorbing element as a negative electrode active material, is free from deformation, separation of the negative electrode active material layer from the negative electrode current collector, and deposition of lithium on the negative electrode current collector, and is excellent in cycle characteristic, large-current discharge characteristic, and low-temperature discharge characteristic.The negative electrode of this invention includes: a current collector having depressions and protrusions on a surface in the thickness direction thereof; and a negative electrode active material layer that includes a plurality of columns containing a negative electrode active material that absorbs and releases lithium ions, the columns being grown outwardly from the surface of the current collector. The negative electrode of this invention is characterized in that the columns are grown at an inclination angle relative to the direction perpendicular to the surface of the current collector, and that the inclination angle of the columns changes reversibly depending on absorption and release of lithium ions by the negative electrode active material.
    • 本发明提供一种负极和含有负极的非水电解质二次电池。 负极包括作为负极活性物质的Li吸收元件,没有变形,负极活性物质层与负极集电体分离,并且在负极集电体上沉积锂,并且优异 循环特性,大电流放电特性和低温放电特性。 本发明的负极包括:在其厚度方向的表面上具有凹陷和突起的集电器; 以及包含吸收和释放锂离子的负极活性物质的多个列的负极活性物质层,所述列从集电体的表面向外生长。 本发明的负极的特征在于,柱相对于与集电体的表面垂直的方向以倾斜角度生长,并且柱的倾斜角随着锂离子的吸收和释放而可逆地变化 负极活性物质。