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    • 51. 发明授权
    • Ink cartridge for ink-jet recorder
    • 喷墨记录器用墨盒
    • US06170941B2
    • 2001-01-09
    • US09036378
    • 1998-03-06
    • Kazuhiko HaraKouichi TobaAtsushi Kobayashi
    • Kazuhiko HaraKouichi TobaAtsushi Kobayashi
    • B41J2175
    • B41J2/17513
    • Generally speaking, in accordance with the invention, an ink cartridge for an ink-jet recording apparatus can include a container formed by a plurality of walls, an ink supply port extending through at least one of said walls of the container to permit ink to pass out of the container, a porous member disposed within the container for transferring ink to the ink supply port, and a projecting member that projects into the container and is formed with an inlet of the ink supply port. The projecting member can engage against and locally compress a portion of the porous member in the region of the inlet of the ink supply port. The projecting member can be formed so that a first region of the container proximal the front wall of the container is shallower than a second region of the container proximal the back wall of the container.
    • 一般来说,根据本发明,用于喷墨记录装置的墨盒可以包括由多个壁形成的容器,一个延伸穿过容器的至少一个壁的供墨口,以允许墨水通过 从所述容器中排出的多孔构件设置在所述容器内用于将墨水输送到所述供墨口;以及突出构件,其突出到所述容器中并且形成有所述供墨口的入口。 突出构件可以在供墨口的入口区域中接合并局部压缩多孔构件的一部分。 突出构件可以形成为使得容器的靠近容器的前壁的第一区域比靠近容器的后壁的容器的第二区域浅。
    • 53. 发明授权
    • Register group circuit for data processing system
    • 数据处理系统寄存器组电路
    • US5606709A
    • 1997-02-25
    • US344365
    • 1994-11-23
    • Keiichi YoshiokaShinichi YamauraKazuhiko HaraTakao Katayama
    • Keiichi YoshiokaShinichi YamauraKazuhiko HaraTakao Katayama
    • G06F7/00G06F13/40G06F13/20
    • G06F13/4027
    • A general-purpose register group circuit provided in a data processing system includes a plurality of register groups connected to a first bus and a second bus, data being written into the plurality of register groups via the first bus according to a first control signal and being read therefrom via the second bus according to a second control signal. An output register group is connected to the plurality of register groups via the first and second buses. The data read from the plurality of register groups is written into the output register group according to a third control signal, and data read from the output register group is sent to an inner bus of the data processing system according to a fourth control signal. Each of the plurality of register groups includes a plurality of unit registers, each of which registers includes a first part for setting the second bus to either a high-impedance state or a reference level according to data latched therein and the second control signal. The output register group includes a second part for driving the inner bus according to a state of the second bus.
    • 提供在数据处理系统中的通用寄存器组电路包括连接到第一总线和第二总线的多个寄存器组,经由第一总线根据第一控制信号被写入多个寄存器组的数据,并且 根据第二控制信号经由第二总线从其读取。 输出寄存器组经由第一和第二总线连接到多个寄存器组。 根据第三控制信号将从多个寄存器组读取的数据写入输出寄存器组,并且根据第四控制信号将从输出寄存器组读取的数据发送到数据处理系统的内部总线。 多个寄存器组中的每一个包括多个单元寄存器,其中每个寄存器包括用于根据锁存在其中的数据和第二控制信号将第二总线设置为高阻抗状态或参考电平的第一部分。 输出寄存器组包括用于根据第二总线的状态驱动内部总线的第二部分。
    • 55. 发明授权
    • Substance vaporizing apparatus
    • 物质蒸气装置
    • US5150375A
    • 1992-09-22
    • US535615
    • 1990-06-11
    • Yoichiro TabataYoshihiro UedaShigeo UeguriKazuhiko Hara
    • Yoichiro TabataYoshihiro UedaShigeo UeguriKazuhiko Hara
    • H01S3/03
    • H01S3/031
    • A substance vaporizing apparatus which uses a vapor of a substance generated by heating the substance in a gas-filled tube as an exciting medium or an ionizing medium. The apparatus employs an improved container for containing the substance within the gas-filled tube. The improved container suppresses the rate of emission of the vapor of the substance into a discharge space defined by the gas-filled tube to hold the vapor density of the substance at an optimum low value for laser oscillation relative to the buffer gas density in the discharge space. Thus, the mean free path of the atoms of the substance, namely the average distance traveled by the atoms between elastic collisions with the electrons, ions and neutral atoms of the buffer gas, is increased to increase the number of atoms of the subtance excited to a higher energy level, which, consequently, increases laser power and enhances laser beam or ion beam accelerating energy. The employment of segmental discharge electrodes each consisting of a plurality of partial electrodes diametrically distributed in the discharge space of the gas-filled tube enables heating the buffer gas in a substantially uniform diametrical temperature distribution, which enables to increase the length and diameter of the laser medium. The employment of two pulse generating circuits promotes the relaxation of the atoms of the substance from a lower energy level to the ground energy level to enable the next application of a pulse voltage to establish a complete population inversion, which enables the substance vaporizing apparatus to operate at a high efficiency at a high discharge frequency.
    • 56. 发明授权
    • Fabri-perot spectroscopy method and apparatus utilizing the same
    • Fabri-perot光谱法和利用该法的装置
    • US4850709A
    • 1989-07-25
    • US19665
    • 1987-02-27
    • Mikichi BanOsamu KakuchiHironori YamamotoMasaru OhtsukaOsamu ShibaKazuhiko Hara
    • Mikichi BanOsamu KakuchiHironori YamamotoMasaru OhtsukaOsamu ShibaKazuhiko Hara
    • G01J3/26
    • G01J3/26
    • Fabri-Perot spectroscopy method comprises a step of directing a light beam at a first refraction angle to a first Fabri-Perot interference plate and a step of directing a light beam transmitted through the first Fabri-Perot interference plate to a second Fabri-Perot interference plate at a second refraction angle, and Fabri-Perot spectroscopy apparatus comprises Fabri-Perot interference plates, a control device for changing a spacing between the Fabri-Perot interference plates, a first optical device for directing a light beam to the first Fabri-Perot interference plate at a first refraction angle, a second optical device for directing the light beam transmitted through the Fabri-Perot interference plate at a second refraction angle different from the first refraction angle to the second Fabri-Perot interference plate, and a seal for externally sealing the Fabri-Perot interference plates. Gas for protecting the Fabri-Perot interference plates is filled in the sealed space.
    • Fabri-Pérot光谱法包括将第一折射角的光束引导到第一Fabri-Pérot干涉板的步骤和将透射通过第一Fabri-Pérot干涉板的光束引导到第二Fabri-Pérot干涉 平板以第二折射角,Fabri-Pérot光谱装置包括Fabri-Pérot干涉板,用于改变Fabri-Pérot干涉板之间的间距的控制装置,用于将光束引导到第一Fabri-Pérot的第一光学装置 在第一折射角处的干涉板,用于将透射通过Fabri-Pérot干涉板的光束以不同于第一折射角的第二折射角引导到第二Fabri-Pérot干涉板的第二光学装置,以及用于外部的密封件 密封Fabri-Pérot干涉板。 用于保护Fabri-Pérot干涉板的气体填充在密封空间中。
    • 58. 发明授权
    • Reactor apparatus for a railway vehicle
    • 铁路车辆用反应堆设备
    • US08009005B2
    • 2011-08-30
    • US12596113
    • 2007-06-13
    • Kazuhiko HaraYoichi HisamoriYoshitaka Kotani
    • Kazuhiko HaraYoichi HisamoriYoshitaka Kotani
    • H01F27/06
    • H01F27/06B60L5/005B60L9/005B60L2200/26H01F27/02H01F37/00
    • A reactor apparatus for a railway vehicle includes a coil assembly, a side cover, through bolts inserted into the coil assembly, cover supporting members, a pair of frames, and ribs that reinforce the pair of frames. A support/fixation section of each frame is fixed to an under surface of a vehicle pedestal. The pair of the frames are disposed on both sides of the coil assembly, and support the through bolts and the cover supporting member. For each rib, leg members that extend from corresponding reinforcing body are penetrated into and welded to the corresponding frame. For each cover supporting member, a leg member that extends from corresponding cover supporting body is penetrated into and welded to the corresponding frame.
    • 一种用于铁路车辆的电抗器装置包括线圈组件,侧盖,插入到线圈组件中的螺栓,盖支撑构件,一对框架和加强该对框架的肋。 每个框架的支撑/固定部分固定到车辆底座的下表面。 一对框架设置在线圈组件的两侧,并且支撑贯穿螺栓和盖支撑构件。 对于每个肋,从相应的加强体延伸的腿部件被穿入并焊接到相应的框架上。 对于每个盖支撑构件,从相应的盖支撑体延伸的腿构件被穿入并焊接到相应的框架。