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    • 41. 发明申请
    • Positioning apparatus, control method of positioning apparatus, control program for positioning apparatus, and computer-readable recording medium having control program for positioning apparatus recorded therein
    • 定位装置,定位装置的控制方法,定位装置的控制程序以及具有记录在其中的定位装置的控制程序的计算机可读记录介质
    • US20070262898A1
    • 2007-11-15
    • US11638682
    • 2006-12-14
    • Makoto Murakami
    • Makoto Murakami
    • G01S5/14G01S1/08
    • G01S19/30G01S19/29
    • A positioning apparatus that measures a current position by using measurement basis codes carried on satellite waves from a plurality of positioning satellites includes: a first phase error information generating unit that generates first phase error information indicating an error of a first phase on the basis of a frequency difference between a first frequency which is an estimated value of a receiving frequency of the satellite wave and a second frequency which is a frequency corresponding to a maximum value of a correlation value under a condition of the estimated phase; a second phase information generating unit that generates second phase information indicating a second phase by correcting a first phase information on the basis of the first phase error information; and a positioning unit that measures the current position on the basis of the second phase information on at least three of the positioning satellites.
    • 通过使用从多个定位卫星携带的卫星波的测量基准来测量当前位置的定位装置包括:第一相位误差信息生成单元,其基于第一相位误差信号生成表示第一相位的误差的第一相位误差信息, 在估计相位的条件下,作为卫星波的接收频率的估计值的第一频率与对应于相关值的最大值的频率的第二频率之间的频率差; 第二相位信息生成单元,其通过基于第一相位误差信息校正第一相位信息来生成表示第二相位的第二相位信息; 以及定位单元,其基于关于至少三个定位卫星的第二相位信息来测量当前位置。
    • 43. 发明申请
    • Active matrix liquid crystal display device
    • 有源矩阵液晶显示装置
    • US20060221288A1
    • 2006-10-05
    • US11374137
    • 2006-03-14
    • Akio OtaSatoshi MoritaMakoto MurakamiOsamu Kobayashi
    • Akio OtaSatoshi MoritaMakoto MurakamiOsamu Kobayashi
    • G02F1/1343
    • G02F1/136204G02F2201/123
    • An active matrix liquid crystal display device 10 of the present invention includes: a plurality of signal lines Y1, . . . Ym and scanning lines X1, . . . Xn, Xn+1, Xn+2 which are arranged in a matrix state on a substrate; switching transistors 14 arranged near the intersection of each of the signal lines and the scanning lines; and pixel electrodes that are severally arranged in positions surrounded by the signal lines and the scanning lines and connected to the switching transistors, in which the pixel electrode is made up of a pixel electrode for display 12(25) that contributes to display, which is provided in an effective display region, and a dummy pixel electrode 27 that does not contribute to display, which is provided in a non-effective display region, and the dummy pixel electrode has a smaller area than the area of the pixel electrode for display and a plurality of the dummy pixel electrodes are parallelly provided for each signal line. Consequently, it is possible to provide an active matrix liquid crystal display device in which a large number of dummy pixel electrodes are provided without increasing the area of the non-effective display region and which is capable of dealing with multiple entries of static electricity from terminals.
    • 本发明的有源矩阵液晶显示装置10包括:多条信号线Y 1,...。 。 。 Ym和扫描线X 1,。 。 。 Xn,Xn + 1,Xn + 2,其在基板上以矩阵状排列; 开关晶体管14布置在每个信号线和扫描线的交点附近; 以及像素电极,其分别设置在由信号线和扫描线包围的位置上,并连接到开关晶体管,其中像素电极由有助于显示的显示器12(25)的像素电极构成,这是有助于显示的 设置在有效显示区域中的虚拟像素电极27和设置在非有效显示区域中的无助于显示的虚拟像素电极27,并且虚拟像素电极具有比用于显示的像素电极的面积小的面积, 为每个信号线平行地设置多个虚拟像素电极。 因此,可以提供一种有源矩阵液晶显示装置,其中提供大量虚拟像素电极,而不增加非有效显示区域的面积,并且能够处理来自端子的多个静电条目 。
    • 45. 发明授权
    • Connector examining device
    • 连接器检查装置
    • US5490798A
    • 1996-02-13
    • US397764
    • 1995-03-02
    • Makoto MurakamiMichimasa NoroTakao Ito
    • Makoto MurakamiMichimasa NoroTakao Ito
    • G01R31/04H01B13/012H01R13/641H01R43/26H01R13/62
    • G01R31/04G01R31/045H01R43/26
    • A connector examining device in which a retainer for attaching a terminal within a housing can be pushed into the housing simultaneous with an examination of a connector. When a lever is pulled up, a cam comes in contact with a trailing end surface of a detector portion. This allows the detector portion to slide toward a connector receiving portion. After the detector portion is in contact with the connector receiving portion, the connector receiving portion and the detector portion together are further displaced. At this time, a retainer pusher, fixed to a base, pushes into the housing the retainer temporarily engaged with the housing of the connector held by the connector receiving portion. Thus, the retainer and the terminal within the housing are engaged with one another, and the terminals are engaged with the housing.
    • 连接器检查装置,其中用于将端子安装在壳体内的保持器可以与连接器的检查同时被推入壳体。 当拉杆时,凸轮与检测器部分的后端表面接触。 这使得检测器部分朝向连接器接收部分滑动。 在检测器部分与连接器接收部分接触之后,连接器接收部分和检测器部分在一起被进一步移位。 此时,固定到基座的保持器推动器将保持器暂时与由连接器接收部保持的连接器的壳体接合。 因此,保持器和壳体内的端子彼此接合,并且端子与壳体接合。
    • 46. 发明授权
    • Connector examining device
    • 连接器检查装置
    • US5429519A
    • 1995-07-04
    • US114087
    • 1993-08-31
    • Makoto MurakamiMichimasa NoroTakao Ito
    • Makoto MurakamiMichimasa NoroTakao Ito
    • G01R31/04H01B13/012H01R13/641H01R43/26H01R13/62
    • G01R31/04G01R31/045H01R43/26
    • A connector examining device, in which a retainer for attaching a terminal within a housing can be pushed into the housing simultaneous with an examination of a connector. When a lever is pulled up, a cam comes in contact with a trailing end surface of a detector portion. This allows the detector portion to slide toward a connector receiving portion. After the detector portion is in contact with the connector receiving portion, the connector receiving portion and the detector portion together are further displaced. At this time, a retainer pusher, fixed to a base pushes into the housing the retainer temporarily engaged with the housing of the connector held by the connector receiving portion. Thus, the retainer and the terminal within the housing are engaged with one another, and the terminals are engaged with the housing.
    • 连接器检查装置,其中用于将端子安装在壳体内的保持器可以与连接器的检查同时被推入壳体。 当拉杆时,凸轮与检测器部分的后端表面接触。 这使得检测器部分朝向连接器接收部分滑动。 在检测器部分与连接器接收部分接触之后,连接器接收部分和检测器部分在一起被进一步移位。 此时,固定到基座的保持器推动器将保持器暂时与由连接器接收部保持的连接器的壳体接合。 因此,保持器和壳体内的端子彼此接合,并且端子与壳体接合。