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    • 1. 发明授权
    • Method for manufacturing energy ray detection device
    • 能量射线检测装置的制造方法
    • US08912034B2
    • 2014-12-16
    • US13536750
    • 2012-06-28
    • Yasuhiro Kawabata
    • Yasuhiro Kawabata
    • H01L21/00H01L31/103H01L27/146
    • H01L27/14603H01L31/103
    • In a method for manufacturing an energy ray detection device including a first semiconductor region disposed below a first area on a surface of a semiconductor substrate, a second semiconductor region disposed below a second area on the surface and connected to a contact portion, and a third semiconductor region disposed below a third area on the surface between the first area and the second area, the first semiconductor region and the third semiconductor region are formed on the semiconductor substrate by performing ion implantation through a buffer film that covers the first area and the third area, a portion of the buffer film that covers the third area having a thickness smaller than a portion of the buffer film that covers the first area.
    • 在制造能量射线检测装置的方法中,包括设置在半导体衬底的表面上的第一区域下方的第一半导体区域,设置在表面上的第二区域下方并连接到接触部分的第二半导体区域,以及第三半导体区域 半导体区域设置在第一区域和第二区域之间的表面上的第三区域下方,通过经由覆盖第一区域和第三区域的缓冲膜进行离子注入,在半导体衬底上形成第一半导体区域和第三半导体区域 所述缓冲膜的覆盖所述第三区域的部分的厚度小于覆盖所述第一区域的所述缓冲膜的一部分。
    • 3. 发明申请
    • METHOD FOR MANUFACTURING ENERGY RAY DETECTION DEVICE
    • 制造能量雷达检测装置的方法
    • US20130011955A1
    • 2013-01-10
    • US13536750
    • 2012-06-28
    • Yasuhiro Kawabata
    • Yasuhiro Kawabata
    • H01L31/18
    • H01L27/14603H01L31/103
    • In a method for manufacturing an energy ray detection device including a first semiconductor region disposed below a first area on a surface of a semiconductor substrate, a second semiconductor region disposed below a second area on the surface and connected to a contact portion, and a third semiconductor region disposed below a third area on the surface between the first area and the second area, the first semiconductor region and the third semiconductor region are formed on the semiconductor substrate by performing ion implantation through a buffer film that covers the first area and the third area, a portion of the buffer film that covers the third area having a thickness smaller than a portion of the buffer film that covers the first area.
    • 在制造能量射线检测装置的方法中,包括设置在半导体衬底的表面上的第一区域下方的第一半导体区域,设置在表面上的第二区域下方并连接到接触部分的第二半导体区域,以及第三半导体区域 半导体区域设置在第一区域和第二区域之间的表面上的第三区域的下方,通过经由覆盖第一区域和第三区域的缓冲膜进行离子注入,在半导体衬底上形成第一半导体区域和第三半导体区域 所述缓冲膜的覆盖所述第三区域的部分的厚度小于覆盖所述第一区域的所述缓冲膜的一部分。
    • 7. 发明申请
    • TRACK INFORMATION PROCESSOR, TRACK INFORMATION PROCESSING METHOD, INFORMATION RECORDING MEDIUM, AND PROGRAM
    • 跟踪信息处理器,跟踪信息处理方法,信息记录介质和程序
    • US20100231526A1
    • 2010-09-16
    • US12279632
    • 2007-02-15
    • Yasuhiro Kawabata
    • Yasuhiro Kawabata
    • G06F3/041
    • G06F3/0416A63F13/00A63F13/2145A63F13/537A63F2300/1075A63F2300/301G06F3/0488
    • In a trajectory information processing apparatus (201) for equalizing the sensitivity of input near a starting point of a trajectory input to the extent possible, regardless of direction of movement, the trajectory information processing apparatus (201) including an input receiving unit (202) receives input of coordinate information of a trajectory at a first definition, a correcting unit (203) corrects the coordinate information of the trajectory based on a pair of coordinates of a starting point of the trajectory at the first definition and a pair of coordinates of the starting point of the trajectory at a second definition lower than the first definition, a converting unit (204) converts the corrected trajectory coordinate information to the second definition and outputs the converted coordinate information, the correcting unit (203), if the starting point locates on an edge of an area which includes the starting point at the first definition, and includes pairs of coordinates which are to be converted to a same pair of coordinates at the second definition, then corrects the pairs of position coordinates of the trajectory so that the starting point of the trajectory is located further inside than said edge of the area.
    • 在轨迹信息处理装置(201)中,不管运动方向如何均衡均匀化输入轨迹输入附近的输入的灵敏度,所述轨迹信息处理装置(201)包括输入接收单元(202) 在第一定义处接收轨迹的坐标信息的输入,校正单元(203)基于在第一定义处的轨迹起始点的一对坐标和第一定义的一对坐标来校正轨迹的坐标信息 转换单元(204)将校正的轨迹坐标信息转换为第二定义,并输出转换后的坐标信息,校正单元(203),如果起始点位于 在包括第一定义的起始点的区域的边缘上,并且包括坐标对 将在第二定义处转换成相同的一对坐标,然后校正轨迹的位置坐标对,使得轨迹的起始点位于比该区域的所述边缘更靠内侧。