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    • 1. 发明专利
    • Grip for stick and walking aid stick with the same
    • 用于与其相同的纸张和打盹卡
    • JP2013233234A
    • 2013-11-21
    • JP2012106392
    • 2012-05-08
    • Masato Watanabe眞人 渡邊Yuko Watanabe悠子 渡邊
    • WATANABE MASATOWATANABE YUKO
    • A45B9/02
    • PROBLEM TO BE SOLVED: To provide a grip for a stick which transfers a force applied to the grip to a stick shaft without waste, on which even a sitting user readily puts his/her weight, and which has a shape inhibiting fingers put thereon from slipping when the grip gets wet with water drops, and to provide a walking aid stick with the grip for a stick.SOLUTION: A grip for a stick has a side surface having a substantially comma shape in which a tapered end is directed upward, the comma shape has a protruding surface formed with a plurality of wavy gripping grooves, a virtual line connecting between the center of gravity of the grip and the vertex at the end, is inclined at an angle of 25° to 40° toward the protruding surface relative to a stick shaft, and the grip is disposed at the upper end of the stick shaft so that a point to which the load of a hand holding the grip is applied, and the axis of the stick shaft are positioned substantially concentrically.
    • 要解决的问题:为了提供一种用于将施加到把手上的力传递到棒状轴而不浪费的棒的把手,即使是坐着的使用者也容易地放置他的重量,并且具有抑制手指放置在其上的形状 当手柄被水滴弄湿时滑动,并且用手柄的手柄提供助行杆。解决方案:用于棒的手柄具有基本上为逗号形状的侧表面,其中锥形端朝向上方, 逗号形状具有形成有多个波状抓持槽的突出表面,连接在手柄的重心和端部之间的顶点之间的虚拟线以相对于突出表面相对于25°至40°的角度倾斜 并且把手被设置在棒状杆的上端,从而使得握住把手的手的负荷的点和杆轴的轴线基本上同心地定位。
    • 2. 发明授权
    • Semiconductor device having sense amplifier
    • 具有读出放大器的半导体器件
    • US08659321B2
    • 2014-02-25
    • US13306560
    • 2011-11-29
    • Yuko WatanabeYoshiro RihoHiromasa NodaYoji IdeiKosuke Goto
    • Yuko WatanabeYoshiro RihoHiromasa NodaYoji IdeiKosuke Goto
    • G01R19/00G11C7/00H03F3/45
    • G11C11/4091G11C7/065G11C7/08G11C7/222G11C11/4074G11C11/4076
    • A semiconductor device includes a first driver circuit for supplying a first potential to a first power supply node of the sense amplifier, second and third driver circuits for supplying a second potential and a third potential to a second power supply node of the sense amplifier, and a timing control circuit for controlling operations of the first to third driver circuits. The timing control circuit includes a delay circuit for deciding an ON period of the third driver circuit. The delay circuit includes a first delay circuit having a delay amount that depends on an external power supply potential and a second delay circuit having a delay amount that does not depend on the external power supply potential, and the ON period of the third driver circuit is decided based on a sum of the delay amounts of the first and second delay circuits.
    • 半导体器件包括用于向读出放大器的第一电源节点提供第一电位的第一驱动器电路,用于向读出放大器的第二电源节点提供第二电位和第三电位的第二和第三驱动器电路,以及 用于控制第一至第三驱动器电路的操作的定时控制电路。 定时控制电路包括用于决定第三驱动电路的接通时间的延迟电路。 延迟电路包括具有取决于外部电源电位的延迟量的第一延迟电路和具有不依赖于外部电源电位的延迟量的第二延迟电路,并且第三驱动电路的导通周期为 基于第一和第二延迟电路的延迟量的总和来决定。
    • 7. 发明申请
    • SEMICONDUCTOR DEVICE HAVING SENSE AMPLIFIER
    • 具有感应放大器的半导体器件
    • US20120133399A1
    • 2012-05-31
    • US13306560
    • 2011-11-29
    • Yuko WATANABEYoshiro RIHOHiromasa NODAYoji IDEIKosuke GOTO
    • Yuko WATANABEYoshiro RIHOHiromasa NODAYoji IDEIKosuke GOTO
    • H03K3/00
    • G11C11/4091G11C7/065G11C7/08G11C7/222G11C11/4074G11C11/4076
    • A semiconductor device includes a first driver circuit for supplying a first potential to a first power supply node of the sense amplifier, second and third driver circuits for supplying a second potential and a third potential to a second power supply node of the sense amplifier, and a timing control circuit for controlling operations of the first to third driver circuits. The timing control circuit includes a delay circuit for deciding an ON period of the third driver circuit. The delay circuit includes a first delay circuit having a delay amount that depends on an external power supply potential and a second delay circuit having a delay amount that does not depend on the external power supply potential, and the ON period of the third driver circuit is decided based on a sum of the delay amounts of the first and second delay circuits.
    • 半导体器件包括用于向读出放大器的第一电源节点提供第一电位的第一驱动器电路,用于向读出放大器的第二电源节点提供第二电位和第三电位的第二和第三驱动器电路,以及 用于控制第一至第三驱动器电路的操作的定时控制电路。 定时控制电路包括用于决定第三驱动电路的接通时间的延迟电路。 延迟电路包括具有取决于外部电源电位的延迟量的第一延迟电路和具有不依赖于外部电源电位的延迟量的第二延迟电路,并且第三驱动电路的导通周期为 基于第一和第二延迟电路的延迟量的总和来决定。
    • 8. 发明授权
    • Chromatic aberration compensating image optics
    • 色差补偿图像光学
    • US08014081B2
    • 2011-09-06
    • US11500985
    • 2006-08-09
    • Yuko WatanabeTakashi SakamotoHiroyuki TairaSeigou Nakai
    • Yuko WatanabeTakashi SakamotoHiroyuki TairaSeigou Nakai
    • G02B9/08
    • G02B27/0025
    • An imaging optics capable of compensating for chromatic aberration is provided with a light shielding means in a surface peripheral area of a certain lens element in a lens system so as to block a light flux of a specified wavelength range, thereby eliminating chromatic aberration in halo of the light flux of the specified wavelength range when it passes the periphery of the lens system. Thus, the invention provides the imaging optics that, without an increase in the number of pieces of lens elements and without a use of an expensive specified low-dispersion glass material, in contrast with the prior art imaging optics of the same optical performances, well compensates for chromatic aberration, especially, in halo.
    • 能够补偿色像差的成像光学元件在透镜系统中的特定透镜元件的表面周边区域中设置有遮光装置,以阻挡特定波长范围的光束,从而消除光晕中的色差 当通过透镜系统的周边时,指定波长范围的光通量。 因此,本发明提供了成像光学器件,与现有技术的相同光学性能的成像光学器件相比,在不增加透镜元件数量并且不使用昂贵的指定的低分散玻璃材料的情况下, 补偿色差,特别是在光晕中。
    • 9. 发明申请
    • IMAGING APPARATUS
    • 成像设备
    • US20110074945A1
    • 2011-03-31
    • US12891483
    • 2010-09-27
    • Yuko WatanabeYoko SaitoTomoko KobayashiKoichi Shintani
    • Yuko WatanabeYoko SaitoTomoko KobayashiKoichi Shintani
    • H04N5/225
    • H04N5/23203H04N5/232H04N5/23241H04N5/23245H04N7/183
    • An imaging apparatus includes an imaging unit for capturing a subject and generating image data of the subject, an operation input unit for receiving inputs of operation signals containing a release signal for instructing the imaging unit to shoot, an acceleration detector for detecting an acceleration of the imaging apparatus, a state detector for separately detecting a case in which the imaging apparatus is overland, a case in which the imaging apparatus is underwater and a photographer shoots while swimming, and a case in which the imaging apparatus is underwater and the photographer shoots while changing a water depth, and a control unit for performing operation control depending on an input into the operation input unit and/or into the acceleration detector according to a state detection result by the state detector.
    • 一种成像装置,包括:拍摄对象并生成被摄体的图像数据的摄像部;操作输入部,接收包含用于指示拍摄部拍摄的释放信号的动作信号的输入;加速度检测部, 成像装置,用于分别检测成像装置是陆地的情况的状态检测器,成像装置在水中的情况和摄影者在游泳时拍摄的情况,以及拍摄装置在水下并且拍摄者拍摄的情况 改变水深;以及控制单元,用于根据状态检测器的状态检测结果,根据对操作输入单元的输入和/或进入加速度检测器进行操作控制。