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    • 16. 发明授权
    • Method for fabricating a cylindrical capacitor including implanting impurities into the upper sections of the lower electrode to prevent the formation of hemispherical grain silicon on the upper sections
    • 一种用于制造圆柱形电容器的方法,包括将杂质注入到下电极的上部,以防止在上部形成半球形晶粒硅
    • US07741176B2
    • 2010-06-22
    • US12013509
    • 2008-01-14
    • Tomohiro UnoYoshitaka Nakamura
    • Tomohiro UnoYoshitaka Nakamura
    • H01L21/8242H01L27/108
    • H01L28/82H01L27/10852
    • A method for fabricating a semiconductor device is disclosed. The semiconductor device includes a capacitor and a support insulator. The capacitor includes a cylindrical electrode. The cylindrical electrode comprises upper and lower sections. The lower section has a roughened inner surface and an outer surface supported by the support insulator. The upper section upwardly projects from the support insulator. An initial cylindrical electrode is formed, wherein the initial cylindrical electrode comprises an initial upper section and an initial lower section which correspond to the upper section and the lower section of the cylindrical electrode, respectively. The initial upper section is supported by the support insulator. Specific impurities are implanted into the initial upper section, wherein the specific impurities serve to prevent the initial upper section from being roughened. Then, the initial cylindrical electrode is exposed to a roughening process so that the initial lower section is roughened to be the lower section.
    • 公开了一种制造半导体器件的方法。 半导体器件包括电容器和支撑绝缘体。 电容器包括圆柱形电极。 圆柱形电极包括上部和下部。 下部具有粗糙的内表面和由支撑绝缘体支撑的外表面。 上部从支撑绝缘体向上突出。 形成初始圆柱形电极,其中初始圆柱形电极分别包括对应于圆柱形电极的上部和下部的初始上部和初始下部。 最初的上部由支撑绝缘子支撑。 特定的杂质被注入到初始上部,其中特定的杂质用于防止初始上部被粗糙化。 然后,将初始的圆柱形电极暴露于粗糙化处理,使得初始下部被粗糙化为下部。
    • 19. 发明授权
    • Vehicle power seat slide device
    • 车载动力座滑动装置
    • US07597303B2
    • 2009-10-06
    • US11311653
    • 2005-12-20
    • Toshihiro KimuraYoshitaka Nakamura
    • Toshihiro KimuraYoshitaka Nakamura
    • F16M13/00
    • B60N2/0232B60N2/067
    • A vehicle power seat slide device includes a first rail fixed to a vehicle, a second rail fixed to a seat and slidably supported by the first rail, a nut member fixed to the first rail by means of a bracket, a screw shaft rotatably supported by the second rail and screwed into the nut member, a driving mechanism supported by the second rail for driving the screw shaft so as to rotate, the screw shaft being rotated by the driving mechanism relative to the nut member, the second rail being moved so as to slide relative to the first rail by means of the shaft screwing into the nut member, the nut member including a protruding portion fitted into a fitting hole, which is formed on the first rail, the nut member being supported by the bracket, and the bracket fixed to the first rail together with the nut member.
    • 一种车辆动力座椅滑动装置,包括固定到车辆的第一轨道,固定到座椅并由第一轨道可滑动地支撑的第二轨道,通过支架固定到第一轨道的螺母构件, 所述第二导轨并拧入所述螺母构件,所述驱动机构由所述第二轨道支撑,用于驱动所述螺杆轴旋转,所述螺杆轴由所述驱动机构相对于所述螺母构件旋转,所述第二轨道移动为 通过旋入螺母构件的轴相对于第一轨道滑动,螺母构件包括嵌合在第一轨道上的装配孔中的突出部分,螺母构件由支架支撑, 支架与螺母构件一起固定到第一轨道。
    • 20. 发明授权
    • Noncontact sensor
    • 非接触传感器
    • US07330033B2
    • 2008-02-12
    • US10565641
    • 2004-03-30
    • Yoshitaka Nakamura
    • Yoshitaka Nakamura
    • G01R31/08
    • G01R15/06Y10T428/13
    • A noncontact voltage sensor is housed in a container comprising a container body having an opening on one side and an insulation cover body for sealing the opening. A plate type electrode insulated from a ground is housed in the container. The cover body side is opposed to a charging part of such as cables of an aerial line. A voltage is induced in the plate type electrode due to aerial electric charges between the charging part and the plate type electrode in the container, allowing detection of the voltage in the charging part. The cover body of the noncontact sensor is made of a fluorine containing resin such as an ethylene tetrafluoride resin to prevent a water film from forming on the outside surface of the insulation cover body and causing deterioration of the detection.
    • 非接触电压传感器容纳在容器中,该容器包括在一侧具有开口的容器主体和用于密封开口的绝缘盖体。 与地面绝缘的板状电极容纳在容器中。 盖主体侧与架空电线的电缆的充电部相对。 由于容器内的充电部和板式电极之间的空中电荷,板电极中产生电压,能够检测充电部的电压。 非接触传感器的盖体由诸如四氟乙烯树脂的含氟树脂制成,以防止在绝缘盖体的外表面上形成水膜并导致检测的劣化。