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    • 92. 发明申请
    • TARGET SUBSTANCE-DETECTING APPARATUS AND TARGET SUBSTANCE-DETECTING METHOD
    • 目标物质检测装置和目标物质检测方法
    • US20110164252A1
    • 2011-07-07
    • US12672067
    • 2008-09-25
    • Yoichiro HandaTomohiro Yamada
    • Yoichiro HandaTomohiro Yamada
    • G01N21/55
    • G01N21/554B82Y15/00B82Y20/00
    • A target substance-detecting apparatus for detecting a target substance in an analyte comprises a detecting device having a substrate and metal structures capable of causing a plasmon resonance arranged thereon, an illumination optical system for illuminating an incident light containing a polarization component polarized in a first direction onto the detecting device to cross the arranged metal structures, a light-receiving device for receiving light containing the polarization component polarized in the first direction and transmitted through or reflected by the detecting device, and an arithmetic unit for calculating on signals from the light-receiving device to analyze a characteristic of the analyte; the metal structures arranged at first intervals not more than 1/10 of a plasmon resonance wavelength in lines in the first direction and at second intervals not less than ¼ of the plasmon resonance wavelength and not more than the wavelength in lines parallel in a second direction.
    • 用于检测分析物中的目标物质的目标物质检测装置包括具有基板的检测装置和能够引起其上排列的等离子体共振的金属结构,照明光学系统,用于照射包含第一 方向移动到检测装置上以穿过排列的金属结构;光接收装置,用于接收包含在第一方向上偏振并被检测装置透射或反射的偏振分量的光,以及用于计算来自光的信号的运算单元 接收装置分析分析物的特征; 金属结构以第一方向排列的等离子体共振波长的1/10不等于等离子体共振波长的1/4以上的第一方向的第二间隔,并且不大于沿第二方向平行的波长的波长 。
    • 98. 发明授权
    • Method and system for creating a product parts catalog
    • 用于创建产品零件目录的方法和系统
    • US07567850B2
    • 2009-07-28
    • US10530219
    • 2004-06-03
    • Tomohiro YamadaKoji TanakaTsuyoshi Harada
    • Tomohiro YamadaKoji TanakaTsuyoshi Harada
    • G06F19/00G06F3/00G09G5/10
    • G06F17/50G06F2217/02G06Q10/00G06Q10/0875Y10S715/964
    • A method and a system are disclosed for enabling an automatic creation of a parts list and 3-dimensional illustrations of a product based on 3-dimensional CAD or XVL data of an industrial product consisting of a plurality of parts. A method for generating a parts catalog consisting of a parts list and corresponding disassembly illustrations is provided. This method comprises the steps of (a) assigning reference numerals/symbols based on the parts list; (b) building a disassembly algorithm based on the parts list; and (c) generating disassembly illustrations based on the disassembly algorithm, wherein minimum disassembly units of the disassembly illustrations are parts and parts groups assigned with the reference numerals/symbols, and displaying the reference numeral/symbol for each of the parts and parts groups in the disassembly illustrations.
    • 公开了一种方法和系统,用于基于由多个部分组成的工业产品的三维CAD或XVL数据来自动创建零件清单和产品的三维图示。 提供了一种用于生成由零件列表和相应的拆卸图示组成的零件目录的方法。 该方法包括以下步骤:(a)基于部件列表分配参考数字/符号; (b)根据零件清单构建拆卸算法; 和(c)基于拆卸算法产生拆卸图,其中拆卸图的最小拆卸单元是分配有附图标记/符号的零件和零件组,并且将每个零件和零件组的参考数字/符号显示在 拆卸图示。
    • 100. 发明授权
    • Piezoelectric/electrostrictive film element
    • 压电/电致伸缩膜元件
    • US07427820B2
    • 2008-09-23
    • US11960923
    • 2007-12-20
    • Kunihiko YoshiokaTakao OhnishiTomohiro Yamada
    • Kunihiko YoshiokaTakao OhnishiTomohiro Yamada
    • H01L41/047
    • H01L41/0973H01L41/0475H01L41/257Y10T29/42Y10T29/49155Y10T29/49163
    • A lower electrode 4 and an auxiliary electrode 8, a piezoelectric/electrostrictive film 5, and an upper electrode 6 are sequentially arranged in layers on a substrate 1. The lower electrode 4 is continuously formed in a region ranging from a first portion of the thick-walled portion 2 to a thin-walled diaphragm portion 3. The auxiliary electrode 8 is continuously formed in a region ranging from a second portion of the thick-walled portion 2 opposite the first portion to a position on the thin-walled diaphragm portion 3, the position being separated from the lower electrode 4. The upper electrode 6 is formed in such a manner as to overlie the piezoelectric/electrostrictive film 5 and the auxiliary electrode 8. Furthermore, a connection electrode 20 is provided for electrically connecting the upper electrode 6 and the auxiliary electrode 8. Thus, a plurality of paths are provided for electrically connecting the upper electrode 6 and the auxiliary electrode 8. Therefore, even when connection through a certain path is cut off due to fracture of a portion of the upper electrode 6 caused by deterioration in insulating performance of the piezoelectric/electrostrictive film 5, electrical connection between the upper electrode 6 and the auxiliary electrode 8 can be maintained through the remaining path(s).
    • 下部电极4和辅助电极8,压电/电致伸缩膜5和上部电极6依次排列在基板1上。 下部电极4连续形成在从厚壁部2的第一部分到薄壁膜部3的范围内。 辅助电极8连续地形成在与第一部分相对的厚壁部分2的第二部分到薄壁隔膜部分3上的位置,该位置与下部电极4分离。 上电极6以覆盖压电/电致伸缩膜5和辅助电极8的方式形成。 此外,设置连接电极20用于电连接上电极6和辅助电极8。 因此,设置多个路径用于电连接上电极6和辅助电极8。 因此,即使由于由于压电/电致伸缩膜5的绝缘性能的劣化而导致的上部电极6的一部分的断裂,通过某一路径的连接被切断时,上部电极6与辅助电极8之间的电连接也可以 通过剩余的路径进行维护。