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    • 51. 发明申请
    • Methods of Separating, Identifying and Dispensing Specimen and Device Therefor, and Analyzing Device Method
    • 分离,鉴定和分配样品及其装置的方法和分析装置方法
    • US20080257072A1
    • 2008-10-23
    • US11587210
    • 2005-04-25
    • Toru TakahashiKen TsukiiJie Xu
    • Toru TakahashiKen TsukiiJie Xu
    • B01L3/02A61L2/20G01N23/00G01P3/36
    • G01N15/1459B01F5/0057B01F11/0074B07C5/00G01N1/286G01N15/1427G01N15/1436G01N2015/1075G01N2035/1062
    • [PROBLEMS] A (a) (b) separation unit can confirms a separation state, a detection unit enhances a lighting efficiency and a light reception sensitivity, and a dispensing unit ensures the normal state of a specimen. [MEANS FOR SOLVING PROBLEMS] A specimen separation device characterized by comprising a container for storing a specimen, a nozzle for sucking and ejecting the specimen from the container, a nozzle operating means for moving the nozzle vertically and laterally, and a nozzle controlling means for controlling the suction force and ejection force of the nozzle. A specimen identification device comprising a nozzle for sucking a specimen from a container storing the specimen, a flow path for allowing the specimen to flow therethrough, and a measuring unit having a monitoring light lighting unit and a light receiving unit for observing (monitoring) the specimen that are installed in a flow path, characterized in that the above nozzle, the flow path and the measuring unit are formed in an integrated structure.
    • (问题)A(a)(b)分离单元可以确认分离状态,检测单元提高照明效率和光接收灵敏度,并且分配单元确保样本的正常状态。 用于解决问题的手段一种试样分离装置,其特征在于,包括容纳容器的容器,用于从容器吸取和喷射试样的喷嘴,用于使喷嘴垂直和侧向移动的喷嘴操作装置,以及用于 控制喷嘴的吸力和喷射力。 一种样本识别装置,包括:用于从容纳所述样本的容器吸取试样的喷嘴,用于使所述试样流过的流路;以及具有监视用光照射单元的测量单元和观察(监视) 试样,其安装在流路中,其特征在于,上述喷嘴,流路和测量单元形成为一体的结构。
    • 52. 发明授权
    • Service provision support system, bundle management terminal, terminal program, bundle data structure, service provision support method, and bundle generation method
    • 服务提供支持系统,捆绑管理终端,终端程序,捆绑数据结构,服务提供支持方法和捆绑生成方法
    • US07424456B2
    • 2008-09-09
    • US10390005
    • 2003-03-18
    • Toru TakahashiShinya TaniguchiAkihito FukaoSenichi Mokuya
    • Toru TakahashiShinya TaniguchiAkihito FukaoSenichi Mokuya
    • G06Q40/00
    • G06Q30/04G06Q20/10G06Q20/102G06Q20/145G06Q30/06G07F17/0014G07F17/16
    • The invention provides a service provision support system that can reduce the economic expenses imposed on a service recipient due to the provision of a service, and that can provide a service for an unspecified, large number of persons. A charge bundle includes: a usage status detection process, to detect the usage state of a charge bundle compatible device; a charge calculation process, to calculate the usage charge based on the usage status detected during the usage status detection process; and a charge notification process, to notify a charge bundle management server of the usage charge obtained by the charge calculation process. The charge bundle management server generates a charge bundle in accordance with a request received from the service provision terminal, and transmits the generated charge bundle to the charge bundle compatible device. Further, the charge bundle management server performs the charge process to charge the service provider the usage charge acquired during the charge notification process. When the charge bundle compatible device receives the charge bundle, it constitutes the usage status detection process, the charge calculation process, and the charge notification process based on the received charge bundle.
    • 本发明提供了一种服务提供支持系统,其可以减少由于提供服务而对服务接收者施加的经济费用,并且可以为未指定的大量的人提供服务。 充电束包括:使用状态检测处理,用于检测充电束兼容装置的使用状态; 费用计算处理,基于在使用状态检测处理期间检测到的使用状态来计算使用费用; 以及收费通知处理,通知费用捆绑管理服务器通过费用计算处理获得的使用费用。 收费捆绑管理服务器根据从服务提供终端接收的请求生成收费捆绑包,并将生成的收费捆绑包发送到收费捆绑兼容装置。 此外,充电束管理服务器执行充电处理,以向服务提供商收取在充电通知处理期间获取的使用费用。 当充电束兼容装置接收到充电束时,它构成使用状态检测处理,充电计算处理和基于所接收的充电束的充电通知处理。
    • 54. 发明申请
    • Fluid supply container and fuel cell system using the same
    • 流体供应容器和使用其的燃料电池系统
    • US20080105708A1
    • 2008-05-08
    • US11592965
    • 2006-11-06
    • Makoto EbikawaToru TakahashiJunji OyamaNobuo Katsuura
    • Makoto EbikawaToru TakahashiJunji OyamaNobuo Katsuura
    • B67D5/60
    • H01M8/04208H01M8/04186H01M8/1011Y02E60/523
    • A fluid supply container that can continuously apply pressure to a fluid stored therein and enhance the supply rate of the fluid to a liquid acceptor is provided. Also, a fuel cell system including the fluid supply container is provided.A fluid supply container 1 includes a fluid storage unit 20 and a pressurizing mechanism 30 for pressurizing the fluid storage unit 20 and supplies a fluid stored in the fluid storage unit 20 to a fluid acceptor. The fluid storage unit 20 includes a first storage chamber 21 and a second storage chamber 22 defined by a flexible member 23 and connected to the first storage chamber 21 so as to allow the fluid to flow to/from the first storage chamber 21. The flexible member 23 is reversed by means of pressurization by the pressurizing mechanism 30 so that the flexible member 23 enters the first storage chamber 21, thereby reducing the volume of the fluid storage unit 20 storing the fluid. The fuel cell system uses this fluid supply container 1.
    • 提供一种能够对存储在其中的流体持续施加压力并且增加流体到液体受体的供应速率的流体供应容器。 另外,提供了包括流体供给容器的燃料电池系统。 流体供给容器1包括流体存储单元20和用于对流体存储单元20加压并将存储在流体存储单元20中的流体供应给流体受体的加压机构30。 流体存储单元20包括由柔性构件23限定并连接到第一储存室21的第一储存室21和第二储存室22,以允许流体流向/从第一储存室21流出。柔性 构件23通过加压机构30的加压而相反,使得柔性构件23进入第一储存室21,从而减少存储流体的流体存储单元20的体积。 燃料电池系统使用该流体供应容器1。
    • 58. 发明授权
    • Printing system, printing system control program and printing system control method, and print data generating system, print data generating program and print data generating method
    • 打印系统,打印系统控制程序和打印系统控制方法,以及打印数据生成系统,打印数据生成程序和打印数据生成方法
    • US07289246B2
    • 2007-10-30
    • US11365890
    • 2006-02-28
    • Toru TakahashiHiroyuki Yoshino
    • Toru TakahashiHiroyuki Yoshino
    • G06F15/00B41J2/205
    • B41J2/205
    • A printing system which prints an image with a print head having a plurality of nozzles capable of forming a dot includes a section acquiring first image data including pixel data constituting the image, which shows a pixel density value of M (M≧3), a section storing nozzle information of each nozzle, a section determining whether to use the nozzle corresponding to each pixel data, a section modifying the density value of the pixel data set as non-use to a lower density, a section increment-correcting the modification-prior density value, a section distributing the increment-corrected density value to the density value of a predetermined pixel adjacent the pixel of the increment-corrected pixel data, a section generating print data to prescribe dot formation information of the nozzles corresponding to the image data after the distribution of the density value, and a section printing the image based on the print data.
    • 用具有能够形成点的多个喷嘴的打印头打印图像的打印系统包括获取包括构成图像的像素数据的第一图像数据的部分,其显示M(M> = 3)的像素密度值, 存储每个喷嘴的喷嘴信息的部分,确定是否使用与每个像素数据对应的喷嘴的部分,将像素数据集的密度值修改为不使用较低密度的部分,增加修正修改的部分 -prior密度值,将增量校正密度值分配到与增量校正的像素数据的像素相邻的预定像素的浓度值的部分,生成打印数据的部分,以规定对应于图像的喷嘴的点形成信息 在分配密度值之后的数据,以及基于打印数据打印图像的部分。
    • 60. 发明申请
    • Power steering device
    • 动力转向装置
    • US20070043490A1
    • 2007-02-22
    • US11450393
    • 2006-06-12
    • Tadaharu YokotaKiyoshi InoueToru Takahashi
    • Tadaharu YokotaKiyoshi InoueToru Takahashi
    • B62D6/00
    • B62D5/065B62D5/046B62D5/0463
    • In a power steering device employing a hydraulic power cylinder, a motor-driven pump, and a driving power source for the motor, a power steering control system is configured to electrically connected to at least the motor and the power source for controlling a driving state of the motor and a power source voltage of the power source. The power steering control system includes a motor control circuit that generates a motor driving signal, whose command signal value is determined based on a steering assist force applied through the power cylinder to steered road wheels, a booster circuit that boosts the power source voltage, a motor angular acceleration detection circuit that detects or estimates a motor angular acceleration, and a booster-circuit control circuit that controls, responsively to the motor angular acceleration, switching between operating and non-operating states of the booster circuit.
    • 在采用液压动力缸的动力转向装置,马达驱动泵和用于马达的驱动力源中,动力转向控制系统被配置为至少电动马达和电源连接以控制驱动状态 的电机和电源的电源电压。 动力转向控制系统包括:电动机控制电路,其生成电动机驱动信号,其指令信号值基于通过动力汽缸施加的转向辅助力来确定转向车轮;升压电路,其提高电源电压; 电动机角加速度检测电路,其检测或估计电动机角加速度;以及升压电路控制电路,其响应于电动机角加速度,在升压电路的工作状态和非工作状态之间进行切换。