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    • 12. 发明授权
    • Disk drive with air-flow control component
    • 带气流控制组件的磁盘驱动器
    • US09196312B2
    • 2015-11-24
    • US12630807
    • 2009-12-03
    • Naoshi MizumotoMasaki OtsukaSatoshi Suzuki
    • Naoshi MizumotoMasaki OtsukaSatoshi Suzuki
    • G11B5/54G11B21/22G11B33/14
    • G11B33/148
    • A disk drive. The disk drive includes a motor, a base to which the motor is affixed, an actuator supporting a head-slider, and an air-flow control component affixed inside the base. The motor is configured to spin a disk. The actuator is configured to access the disk and to rotate about a pivot shaft to move the head-slider. The air-flow control component includes a plate which faces a recording surface of the disk, and a support portion supporting the plate. The thickness of the plate gradually decreases towards an outflow side of the air-flow control component. The bodies of the plate and the support portion are made of resin; and, a surface of the plate is configured to be held at an electrical potential selected from the group consisting of ground potential and a negative potential.
    • 磁盘驱动器 磁盘驱动器包括电动机,固定有电动机的基座,支撑头部滑块的致动器以及固定在基座内的气流控制部件。 电机配置为旋转磁盘。 致动器被配置为接近盘并围绕枢转轴旋转以移动头部滑块​​。 气流控制部件包括面向盘的记录表面的板和支撑板的支撑部。 板的厚度朝向气流控制部件的流出侧逐渐减小。 板的主体和支撑部分由树脂制成; 并且,所述板的表面被配置为保持在从由地电位和负电位组成的组中选择的电位。
    • 13. 发明授权
    • Image capturing apparatus and defective pixel detection method
    • 图像捕获装置和缺陷像素检测方法
    • US09071781B2
    • 2015-06-30
    • US13700326
    • 2012-03-21
    • Satoshi Suzuki
    • Satoshi Suzuki
    • H04N5/367H01L27/146H04N5/217H04N5/232H04N5/345H04N9/07
    • H04N5/367H01L27/14643H04N5/2173H04N5/23245H04N5/3458H04N9/04511H04N9/07
    • An image capturing apparatus comprises: an image sensor including a plurality of pixels each having a microlens and a plurality of photoelectric conversion means, and defective pixel detection means for detecting defective photoelectric conversion means from among the plurality of photoelectric conversion means, wherein the defective pixel detection means determines defective photoelectric conversion means by comparing an output signal output from photoelectric conversion means of a subject, sequentially taken from the plurality of photoelectric conversion means, for detection with first signals from photoelectric conversion means included in pixels neighboring the pixel including the photoelectric conversion means of the subject for detection, each position of the photoelectric conversion means included in the neighboring pixels corresponding to a position of the photoelectric conversion means of the subject for detection with respect to the microlens.
    • 一种图像捕获装置包括:包括多个像素的图像传感器,每个像素具有微透镜和多个光电转换装置,以及用于从所述多个光电转换装置中检测缺陷光电转换装置的缺陷像素检测装置,其中所述缺陷像素 检测装置通过将从多个光电转换装置顺序取得的被摄体的光电转换装置输出的输出信号与包括在包括光电转换的像素相邻的像素中的光电转换装置的第一信号进行比较来确定有缺陷的光电转换装置 用于检测的对象的装置,包括在相对于相对于微透镜检测的被摄体的光电转换装置的位置的相邻像素中的光电转换装置的每个位置。
    • 14. 发明申请
    • RECTANGULAR BATTERY AND METHOD OF MANUFACTURING RECTANGULAR BATTERY
    • 矩形电池和制造矩形电池的方法
    • US20150140413A1
    • 2015-05-21
    • US14411288
    • 2013-06-25
    • Satoshi SuzukiToshiya Okada
    • Satoshi SuzukiToshiya Okada
    • H01M2/02H01M2/04H01M10/0525
    • A battery case of a rectangular battery has a main body member that has the shape of a bottomed rectangular tube, and a lid member that has the shape of a rectangular plate. The main body member has a rectangular opening portion that is constituted of opening long side portions, opening short side portions, and opening R portions. The lid member seals the opening portion. The opening portion is configured such that each thickness of the opening R portions is larger than each thickness of the opening long side portions respectively. In addition, the opening portion and a lid peripheral edge portion are welded to each other in an airtight manner along an entire circumference thereof, by an energy beam that is radiated from outside the lid member in a thickness direction thereof.
    • 矩形电池的电池壳体具有底部矩形管的形状的主体部件和具有矩形板形状的盖部件。 主体构件具有由开口长边部分,开口短边部分和开口R部分构成的矩形开口部分。 盖构件密封开口部。 开口部分被构造成使得开口R部分的每个厚度分别大于开口长边侧部分的每个厚度。 此外,开口部和盖周缘部通过从盖部件的外侧沿其厚度方向辐射的能量束以其整个周边以气密的方式彼此焊接。
    • 16. 发明授权
    • Sealed secondary battery
    • 密封二次电池
    • US08993139B2
    • 2015-03-31
    • US13318820
    • 2010-03-19
    • Satoshi SuzukiKatsumi Ito
    • Satoshi SuzukiKatsumi Ito
    • H01M2/34H01M2/02H01M2/26H01M10/04
    • H01M2/34H01M2/022H01M2/023H01M2/263H01M2/345H01M10/0431
    • Disclosed is a sealed secondary battery provided with a current cut-off device which employs an inexpensive and uncomplicated construction, without the need to mount a separate current cut-off device on the battery body. A sealed secondary battery (10) comprises a battery casing (11) and a sealing plate (12), an electrode body (21) and current collecting plates (22, 22) provided on the inside of this casing (11). A contact section (11c) formed as part of the bottom (11a) of this battery casing (11) is bowed further inwards towards the negative electrode-side current collecting plate (22b) than the peripheral section of the bottom (11a) of this battery casing (11). At this contact section (11c), the inside face of the bottom (11a) of the battery casing contacts the current collecting plate (22b) at the negative electrode end, but this electrical contact between the contact section (11c) and the current collecting plate (22b) at the negative electrode end is cut off when outward swelling of the contact section (11c) takes place, produced by a rise in internal pressure in the casing in a sealed condition.
    • 公开了一种具有电流切断装置的密封二次电池,其采用廉价且不复杂的结构,而不需要在电池体上安装单独的电流切断装置。 密封的二次电池(10)包括电池壳体(11)和密封板(12),设置在该壳体(11)的内部的电极体(21)和集电板(22,22)。 形成为该电池壳体(11)的底部(11a)的一部分的接触部(11c)比该电池壳体(11)的底部(11a)的周边部朝向负极侧集电板(22b)进一步向内弯曲 电池外壳(11)。 在该接触部分(11c)处,电池壳体的底部(11a)的内表面在负极端处接触集电板(22b),但是接触部分(11c)与集电体 当密封状态下壳体内部压力升高而产生接触部分(11c)的向外膨胀时,在负极端部处的板(22b)被切断。
    • 18. 发明授权
    • Unmanned aircraft system and operation method thereof
    • 无人机系统及其操作方法
    • US08740134B2
    • 2014-06-03
    • US12935432
    • 2009-08-13
    • Satoshi Suzuki
    • Satoshi Suzuki
    • B64C37/02
    • B64C39/024B64C37/02B64C2201/082B64C2201/206G05D1/104
    • An unmanned aircraft system includes a manned aircraft and an unmanned aircraft. The manned aircraft includes a manned aircraft main wing, a manned aircraft fuselage, a manned aircraft landing system, and a manned aircraft joining mechanism provided at a bottom portion of the manned aircraft fuselage. The unmanned aircraft includes an unmanned aircraft main wing, an unmanned aircraft fuselage, an unmanned aircraft landing system, and an unmanned aircraft joining mechanism provided at a roof portion of the unmanned aircraft fuselage. The manned aircraft joining mechanism and the unmanned aircraft joining mechanism are detachably joined. The unmanned aircraft system can take off or land in a state that the unmanned aircraft and the manned aircraft are joined.
    • 无人机系统包括载人飞机和无人飞机。 载人飞机包括载人飞机主翼,载人飞机机身,载人飞机着陆系统,以及设置在载人飞机机身底部的载人飞机连接机构。 无人机包括无人驾驶飞机主翼,无人飞机机身,无人飞机着陆系统以及设在无人驾驶飞机机身顶部的无人飞机连接机构。 载人飞机接合机构和无人飞行器接合机构可拆卸地接合。 无人驾驶飞机系统可以以无人驾驶飞机和载人飞机加入的状态起飞或着陆。
    • 19. 发明授权
    • Travel controlling apparatus of vehicle
    • 车辆行驶控制装置
    • US08676463B2
    • 2014-03-18
    • US13060179
    • 2008-11-25
    • Ryosuke OkuboHiroshi KobayashiSatoshi Suzuki
    • Ryosuke OkuboHiroshi KobayashiSatoshi Suzuki
    • B60T8/176
    • B60T8/17616B60T8/175B60T8/17636B60T2210/12B60T2240/06
    • A travel controlling apparatus of a vehicle includes a slip ratio detecting unit that obtains a slip ratio of front wheels and rear wheels depending on a travel state of the vehicle, a friction coefficient detecting unit that obtains a friction coefficient of the front wheels and the rear wheels depending on the travel state of the vehicle, a slip ratio stable region setting unit that sets a slip ratio stable region in which the friction coefficient becomes a predetermined value or more depending on the travel state of the vehicle, a braking/driving force controlling unit that controls a braking/driving force in the slip ratio stable region, and a slip ratio stable region changing unit that changes an upper limit value and a lower limit value in the slip ratio stable region depending on a variation of the friction coefficient when the slip ratio increases and when the slip ratio decreases.
    • 车辆的行驶控制装置包括滑移率检测单元,其根据车辆的行驶状态获得前轮和后轮的滑移率;摩擦系数检测单元,其获得前轮和后侧的摩擦系数 滑轮比稳定区域设定单元,其根据车辆的行驶状态设定摩擦系数成为规定值以上的滑移率稳定区域,制动/驱动力控制 控制滑移率稳定区域中的制动/驱动力的单元,以及滑移率稳定区域改变单元,其根据摩擦系数的变化来改变滑移率稳定区域中的上限值和下限值 滑移率增加,滑移率降低时。
    • 20. 发明申请
    • GAME DEVICE, METHOD FOR CONTROLLING A GAME DEVICE, PROGRAM, AND INFORMATION STORAGE MEDIUM
    • 游戏装置,用于控制游戏装置,程序和信息存储介质的方法
    • US20130267330A1
    • 2013-10-10
    • US13995021
    • 2012-04-26
    • Satoshi SuzukiYuta Yahiro
    • Satoshi SuzukiYuta Yahiro
    • A63F13/10
    • A63F13/42A63F13/56A63F13/812A63F2300/6045A63F2300/8011A63H30/04
    • First control means (102) of a game device (10) moves a first instruction target of a user based on an operation state of a first operation member (44L). Second control means (104) causes each of characters (62) other than the first instruction target of the user to act based on an operation of a computer. Selection means (110) selects a second instruction target of the user based on a direction which is acquired based on an operation state of a second operation member. Third control means (106) causes, instead of action control performed by the second control means (104), the second instruction target selected by the selection means (110) to perform any one of a predetermined action and an action based on an operation state of one of a plurality of operation members (30) other than the first operation member (44L).
    • 根据第一操作构件(44L)的操作状态,游戏装置(10)的第一控制装置(102)移动用户的第一指令目标。 第二控制装置(104)使得除用户的第一指令目标之外的每个字符(62)基于计算机的操作而起作用。 选择单元(110)基于基于第二操作构件的操作状态获取的方向来选择用户的第二指示目标。 第三控制装置(106)代替由第二控制装置执行的动作控制,使得由选择装置(110)选择的第二指令目标基于操作状态执行预定动作和动作中的任一个 除了第一操作构件(44L)之外的多个操作构件(30)中的一个。