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    • 23. 发明申请
    • FORENSIC SYSTEM, FORENSIC METHOD, AND FORENSIC PROGRAM
    • 威尔逊系统,威尔逊法和威尔逊计划
    • US20120239666A1
    • 2012-09-20
    • US13514295
    • 2011-03-24
    • Masahiro MorimotoYoshikatsu ShiraiHideki Takeda
    • Masahiro MorimotoYoshikatsu ShiraiHideki Takeda
    • G06F17/30
    • G06F17/30011G06Q10/10G06Q50/18
    • Embodiments of the inventive concept can extract digital document information related with a specific individual to achieve a work load reduction associated with evidentiary material preparation for litigation. Recorded digital information can be displayed and user-specifying information can be set for each of a plurality of document files. The user-specifying information shows which user contained in user information one or more document files is related with. A recording unit can record the set user-specifying information. At least one user is selected, and a document file where user-specifying information which corresponds to the selected user was set is searched. Additional information showing whether or not the searched document file is related with the litigation is set via a display unit. A document file which is related with litigation is outputted based on the additional information.
    • 本发明概念的实施例可以提取与特定个人相关的数字文档信息,以实现与用于诉讼的证据材料准备相关联的工作负载减少。 可以显示记录的数字信息,并且可以为多个文档文件中的每一个设置用户指定信息。 用户指定信息显示与一个或多个文档文件相关联的用户信息中包含的用户。 记录单元可以记录设定的用户指定信息。 选择至少一个用户,并且搜索其中设置了与所选用户对应的用户指定信息的文档文件。 通过显示单元设置显示所搜索的文档是否与诉讼相关的附加信息。 基于附加信息输出与诉讼有关的文件文件。
    • 26. 发明授权
    • Brushless DC motor
    • 无刷直流电机
    • US06335578B1
    • 2002-01-01
    • US09553484
    • 2000-04-20
    • Tetsuya KatsumiHideki TakedaYoshinori Miura
    • Tetsuya KatsumiHideki TakedaYoshinori Miura
    • H02K1100
    • H01L43/10H02K29/08
    • In a brushless DC motor comprising a stator provided with a plurality of coils, a rotor magnet magnetized so as to possess a plurality of magnetic poles and rotatably disposed as opposed to the coils of the stator, and a magnetic sensor which detects the magnetic poles of the rotor magnet, in which the electric current supplied to said coils of respective phases is controlled based on a detection signal from said magnetic sensor so that the rotor magnet is rotationally driven, the magnetic sensor comprises in combination a giant magnetoresistive element disposed as opposed to the rotor magnet and a magnet disposed on a rear side of the giant magnetoresistive element. The giant magnetoresistive element is formed of a magnetic particle dispersion type giant magnetoresistive material, an artificial lattice type giant magnetoresistive material, or a colossal magnetoresistive material.
    • 在包括具有多个线圈的定子的无刷直流电动机中,磁体被磁化以具有多个磁极并且与定子的线圈相对地可旋转地设置的转子磁体和检测磁极的磁极的磁传感器 基于来自所述磁传感器的检测信号来控制提供给各相的线圈的电流的转子磁体,使得转子磁体被旋转地驱动,所述磁传感器包括与相对地设置的巨磁阻元件 转子磁体和设置在巨磁阻元件的后侧的磁体。 巨磁阻元件由磁性粒子分散型巨磁阻材料,人造晶格型巨磁阻材料或巨磁阻材料形成。
    • 27. 发明授权
    • Rotational angle detector for brushless motor and brushless motor using the detector
    • 无刷电机的旋转角度检测器和使用检测器的无刷电机
    • US06285101B1
    • 2001-09-04
    • US09648747
    • 2000-08-28
    • Noriaki KazamaTetsuya KatsumiHideki TakedaYoshinori Miura
    • Noriaki KazamaTetsuya KatsumiHideki TakedaYoshinori Miura
    • H02K1100
    • G01D5/145H02K29/08
    • A detector for the rotational angle of a motor and a small brushless or stepping motor having the detector built therein are disclosed. A sensor probe of the detector is provided with a wire configuration comprising a giant magnetoresistive element (sensor element) enabled to read a change in magnetic field up to at least 10 kOe, a first sensor lead and a second sensor lead connected one each to the opposite terminals of the magnetoresistive element, and an insulating layer interposed between the two sensor leads. The sensor probe of the detector is disposed inside a motor housing as approximated closely to the magnetic teeth of a rotor of the motor. The giant magnetoresistive element is formed of a magnetic particle dispersion type giant magnetoresistive material, an artificial lattice type giant magnetoresistive material, or a colossal magnetoresistive material.
    • 公开了一种用于电机旋转角度的检测器以及内置检测器的小型无刷或步进电机。 检测器的传感器探针设置有导线配置,其包括能够读取高达至少10kOe的磁场变化的巨磁阻元件(传感器元件),第一传感器引线和第二传感器引线,每个至少连接到 磁阻元件的相对端子和介于两个传感器引线之间的绝缘层。 检测器的传感器探头设置在马达壳体内部,与马达的转子的磁齿近似近似。 巨磁阻元件由磁性粒子分散型巨磁阻材料,人造晶格型巨磁阻材料或巨磁阻材料形成。
    • 28. 发明授权
    • Reset mechanism of counter for counting number of times of image
formation
    • 计数器的复位机制,用于计数图像形成次数
    • US5430780A
    • 1995-07-04
    • US165158
    • 1993-12-10
    • Hideki TakedaSusumu KomakiKatsuyuki Teranishi
    • Hideki TakedaSusumu KomakiKatsuyuki Teranishi
    • G03G21/00G03G15/00G03G15/08G03G21/02G06M1/28G06M1/08
    • G03G21/1896G03G15/55G06M1/28G03G2221/1663G03G2221/183
    • A reset mechanism of a counter for counting the number of times of image formation is mounted on an image forming apparatus. The image forming apparatus includes a unit constituting at least a part of an image forming section which is detachably mounted on a predetermined portion of the main body of the image forming apparatus, a driving mechanism for driving the unit, and a counter for counting the number of times of image formation for reporting the time for replacement of the unit. The reset mechanism has a reset switch provided for on the main body for resetting the counter, and an operating member which is provided for on the unit for operating the reset switch. If a unit which has not been used is mounted on the main body, the operating member which is previously set in the operating position resets the reset switch. If the unit is initially driven by the driving mechanism, the operating member is moved to the operating position by the driving mechanism, so that the connection between the operating member and the driving mechanism is released. The operating member which is moved to the non-operating position can be held in the non-operating position, so that the unit never operates the reset switch.
    • 用于计数图像形成次数的计数器的复位机构安装在图像形成装置上。 图像形成装置包括构成图像形成部的至少一部分的单元,该图像形成部的可拆卸地安装在图像形成装置的主体的预定部分上,用于驱动该单元的驱动机构和用于对该数字进行计数的计数器 的图像形成时间用于报告更换单元的时间。 复位机构具有设置在主体上用于复位计数器的复位开关和设置在用于操作复位开关的单元上的操作构件。 如果未使用的单元安装在主体上,则预先设置在操作位置的操作构件复位复位开关。 如果单元最初由驱动机构驱动,则操作构件通过驱动机构移动到操作位置,从而释放操作构件与驱动机构之间的连接。 移动到非操作位置的操作构件可以保持在非操作位置,使得该单元不会操作复位开关。