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    • 1. 发明申请
    • Gas Vane Pump, and Method of Operating the Pump
    • 气体叶片泵,以及操作泵的方法
    • US20080240962A1
    • 2008-10-02
    • US10591034
    • 2005-03-08
    • Kohei OnoHiroyuki IkemotoJunichi TanoueUlrich HiltemannChristoph Heidemeyer
    • Kohei OnoHiroyuki IkemotoJunichi TanoueUlrich HiltemannChristoph Heidemeyer
    • F04C29/02F04C18/356
    • F04C29/02F04C18/3441
    • A gas vane pump wherein a lubricant is intermittently introduced into a housing 10 during rotation of a rotor 40, through a lubricant supply passage 100 formed through the housing and the rotor, and the relative position between the rotor having a diametric hole 112 and the housing having a communication groove 130 is determined such that when the rotor 40 is placed at an angular position which is in the middle of a predetermined angular range relative to the housing 10 and in which the hole 112 is in communication with the groove 130, a point of contact between a vane 70 movably held by the rotor and the inner circumferential surface of the housing 10 is located at the lowest position of the inner circumferential surface, so that when the rotor 40 is stopped at an angular position within the predetermined angular range, the vane 70 divides the remaining lubricant mass into two portions, which are discharged at respective two different times one after the other, making it possible to reduce the load acting on the vane upon restarting of the vane pump.
    • 一种气体叶片泵,其中在转子40旋转期间,通过形成在壳体和转子上的润滑剂供应通道100将润滑剂间歇地引入壳体10中,并且具有径向孔112​​的转子与壳体之间的相对位置 具有连通槽130被确定为使得当转子40被放置在相对于壳体10在预定角度范围的中间并且孔112与凹槽130连通的角位置时, 由转子可移动地保持的叶片70和壳体10的内周面之间的接触位于内周面的最低位置,使得当转子40停在预定角度范围内的角位置时, 叶片70将剩余的润滑剂块分成两部分,它们分别在相应的两个不同的时间一个接一个地排出,使得可以 在叶片泵重新起动时减小作用在叶片上的负荷。
    • 2. 发明授权
    • Gas vane pump, and method of operating the pump
    • 气体叶片泵,以及操作泵的方法
    • US07628595B2
    • 2009-12-08
    • US10591034
    • 2005-03-08
    • Kohei OnoHiroyuki IkemotoJunichi TanoueUlrich HiltemannChristoph Heidemeyer
    • Kohei OnoHiroyuki IkemotoJunichi TanoueUlrich HiltemannChristoph Heidemeyer
    • F03C2/00F03C4/00F04C18/00
    • F04C29/02F04C18/3441
    • A gas vane pump wherein a lubricant is intermittently introduced into a housing during rotation of a rotor, through a supply passage formed through the housing and the rotor, and the relative position between the rotor having a diametric hole and the housing having a communication groove is determined such that when the rotor is at an angular position in the middle of a predetermined angular range relative to the housing and the hole is in communication with the groove, a point of contact between a vane movably held by the rotor and the inner circumferential surface of the housing is located at the lowest position of the inner circumferential surface. When the rotor is stopped within the predetermined angular range, the vane divides the remaining lubricant into two portions, which are discharged at different times, making it possible to reduce the load on the vane upon restarting the pump.
    • 一种气体叶片泵,其中在转子转动期间,通过形成在壳体和转子上的供给通道,并且具有直径孔的转子和具有连通槽的壳体之间的相对位置在轴承中间歇地引入润滑剂, 确定为当转子相对于壳体处于预定角度范围的中间的角位置并且孔与槽连通时,由转子可移动地保持的叶片与内周面之间的接触点 的壳体位于内周面的最低位置。 当转子在预定角度范围内停止时,叶片将剩余的润滑剂分成两部分,这些部分在不同时间被排出,使得可以在重新启动泵时降低叶片上的负荷。
    • 7. 发明申请
    • SIMULATOR, METHOD, AND PROGRAM FOR PREDICTING PROCESSING SHAPE BY PLASMA PROCESS
    • 用于通过等离子体处理预测处理形状的模拟器,方法和程序
    • US20140005991A1
    • 2014-01-02
    • US14003692
    • 2012-02-29
    • Kohei OnoTakuya Iwasaki
    • Kohei OnoTakuya Iwasaki
    • G06F17/50
    • G06F17/5009H01L21/30655
    • A method and a program for predicting a processing shape by a plasma process, the method including: a conditions-setting step (STEP 11) for setting conditions relevant to an object to be processed, process conditions including a cycle number provided that an etching process and a deposition process are taken as one cycle, and conditions relevant to simulation; an etching process surface transition amount calculating step (STEP 12) for calculating a surface transition amount by plasma etching based on etching process conditions; and a deposition process surface transition amount calculating step (STEP 13) for calculating a surface transition amount by plasma deposition based on deposition process conditions, wherein the etching process surface transition amount calculating step (STEP 12) and the deposition process surface transition amount calculating step (STEP 13) are repeated for the cycle number set in the conditions-setting step (STEP 11), thereby obtaining a processing shape by the the Bosch process.
    • 一种用于通过等离子体处理来预测处理形状的方法和程序,所述方法包括:条件设置步骤(步骤11),用于设置与待处理对象相关的条件,包括循环数的处理条件,条件是蚀刻处理 并将沉积过程作为一个循环,并且与模拟相关的条件; 蚀刻工艺表面过渡量计算步骤(步骤12),用于基于蚀刻工艺条件通过等离子体蚀刻来计算表面过渡量; 以及沉积工艺表面过渡量计算步骤(步骤13),用于通过基于沉积工艺条件的等离子体沉积来计算表面过渡量,其中蚀刻处理表面过渡量计算步骤(步骤12)和沉积处理表面过渡量计算步骤 (步骤11),对条件设定步骤中设定的循环次数进行重复(步骤11),从而获得博世过程的处理形状。
    • 8. 发明授权
    • Biological signal detection system
    • 生物信号检测系统
    • US07433731B2
    • 2008-10-07
    • US11020221
    • 2004-12-27
    • Fumiyuki MatsumuraTetsushi SekiguchiHiroshi SakataHidehiro HosakaShin SudaKohei Ono
    • Fumiyuki MatsumuraTetsushi SekiguchiHiroshi SakataHidehiro HosakaShin SudaKohei Ono
    • A61B5/0408
    • A61B5/0006A61B5/0008A61B5/0404A61B5/04085A61B5/0424A61B5/04325A61B2560/0412A61B2560/045A61B2560/0475Y10S128/903
    • A biological signal detection system includes a pair of electrodes, adapted to be attached on a living body; a transmitter, adapted to be attached on the living body, and including an electric circuit operable to process the biological signal and to telemeter the processed signal; and a biological signal inputting apparatus. The system may also include a receiver-transmitter operable to receive the processed signal telemetered from the transmitter and to telemeter the processed signal to the biological signal inputting apparatus by way of a wide area network; and a storage for storing the processed signal telemetered from the transmitter as biological signal data and for inputting the biological signal data to the biological signal inputting apparatus. Also, the system may include a storage for storing the processed signal telemetered from the transmitter as biological signal data and for inputting the biological signal data to the biological signal inputting apparatus.
    • 生物信号检测系统包括:一对电极,适于附着在生物体上; 发射器,其适于附接在所述生物体上,并且包括可操作以处理所述生物信号并对所述经处理的信号进行遥测的电路; 和生物信号输入装置。 该系统还可以包括一个接收机 - 发射机,可操作以接收从发射机遥测的经处理的信号,并通过广域网将处理的信号遥测到生物信号输入装置; 以及用于将从发射机遥测的处理信号存储为生物信号数据并将生物信号数据输入到生物信号输入装置的存储器。 此外,该系统可以包括用于将从发射机遥测的处理信号存储为生物信号数据并将生物信号数据输入到生物信号输入装置的存储器。
    • 10. 发明申请
    • Biological signal detection apparatus Holter electrocardiograph and communication system of biological signals
    • 生物信号检测仪Holter心电图仪和生物信号通信系统
    • US20050107714A1
    • 2005-05-19
    • US11020221
    • 2004-12-27
    • Fumiyuki MatsumuraTetsushi SekiguchiHiroshi AkataHidehiro HosakaShin SudaKohei Ono
    • Fumiyuki MatsumuraTetsushi SekiguchiHiroshi AkataHidehiro HosakaShin SudaKohei Ono
    • A61B5/00A61B5/0404A61B5/0408A61B5/0432A61B5/0402
    • A61B5/0006A61B5/0008A61B5/0404A61B5/04085A61B5/0424A61B5/04325A61B2560/0412A61B2560/045A61B2560/0475Y10S128/903
    • A communication system has a Holter electrocardiograph having a biological signal detection apparatus having a transmitter 10 for processing and telemetering signals detected by a plurality of electrodes supported on supports for detecting biological signals, a receiver 14 for receiving the signal telemetered from the transmitter, demodulating the received signal, and outputting the demodulated signal to a biological signal input section of required record means, and a recorder 16 having record means for recording the demodulated signal by the receiver. The recorder of the Holter electrocardiograph has transmitting and receiving means 17 for telemetering the signal stored in the record means, receiving an external transmission signal, and telemetering some or all of the signals stored in the record means as instructed by the external transmission signal. A biological signal input apparatus PC having transmitting and receiving means for inputting signals and transmitting and receiving communication information to and from the transmitting and receiving means of the recorder of the Holter electrocardiograph through a relay transmitter-receiver 19 and a wide area network. An electrode 4 for detecting a biological signal and a loop antenna 3 are integrally mounted on a support 2 placed on the surface of a living body and a transmitter 5 is placed on the support 2. A biological signal detected on the electrode 4 is input through a connector 11 to electric circuitry 10 of the transmitter 5 and an electric signal processed by the electric circuitry 10 is output through connectors 12 and 13 to both ends of the loop antenna 3 from which the biological signal is emitted to a receiver. At this time, the opening face of the loop antenna 3 is in a direction almost perpendicular to the surface of a living body for improving sensitivity.
    • 一种通信系统具有一个具有生物信号检测装置的心电图仪,该生物信号检测装置具有用于处理和遥测被支持在用于检测生物信号的支架上的多个电极检测的信号的发射器10,用于接收从发射机遥测的信号的接收机14, 并将所解调的信号输出到所需记录装置的生物信号输入部分,记录装置16具有记录装置,用于由接收机记录解调信号。 Holter心电图仪的记录器具有发送和接收装置17,用于对存储在记录装置中的信号进行遥测,接收外部发送信号,并且根据外部发送信号的指示遥测存储在记录装置中的一些或全部信号。 一种生物信号输入装置PC,具有发送和接收装置,用于通过中继发射机 - 接收机19和广域网输入信号并向Holter心电图仪的记录器的发送和接收装置发送和接收通信信息。 用于检测生物信号的电极4和环形天线3一体地安装在放置在生物体的表面上的支撑件2上,并且将发射器5放置在支撑体2上。 在电极4上检测到的生物信号通过连接器11输入到发射器5的电路10,并且由电路10处理的电信号通过连接器12和13输出到环形天线3的两端, 生物信号被发射到接收器。 此时,环状天线3的开口面大致垂直于生物体的表面,以提高灵敏度。