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    • 5. 发明授权
    • Shock absorber and suspension apparatus
    • 减震器和悬挂装置
    • US08776961B2
    • 2014-07-15
    • US13479873
    • 2012-05-24
    • Shunsuke MoriKenichi Nakamura
    • Shunsuke MoriKenichi Nakamura
    • F16F9/34
    • B60G17/08B60G2400/10B60G2400/204B60G2400/252B60G2400/51B60G2500/10
    • A shock absorber includes: at least one cylinder apparatus including a cylinder sealingly containing operating fluid, a piston slidably fittedly inserted in the cylinder to divide an interior of the cylinder into two chambers, and a piston rod coupled to the piston and extending to an outside of the cylinder; and at least one damping force generation mechanism connected to the cylinder apparatus, and capable of generating a damping force to be applied to a flow of the operating fluid caused by a movement of the piston and adjusting the damping force from the outside. The damping force generation mechanism includes a damping valve for generating the damping force, a pilot chamber for applying a pilot pressure by the operating fluid to the damping valve, and a pump for at least supplying or discharging the operating fluid to or from the pilot chamber.
    • 减震器包括:至少一个气缸装置,其包括密封地容纳工作流体的气缸,可滑动地嵌合在气缸中以将气缸内部分成两个室的活塞,以及联接到活塞并延伸到外部的活塞杆 的气缸 以及连接到气缸装置的至少一个阻尼力产生机构,并且能够产生施加到由活塞的运动引起的工作流体的流动的阻尼力并且调节来自外部的阻尼力。 阻尼力产生机构包括用于产生阻尼力的阻尼阀,用于通过工作流体向阻尼阀施加先导压力的先导室,以及用于至少将工作流体供给或排出到先导室的泵 。
    • 6. 发明授权
    • Suspended particle device and method for driving same
    • 悬浮粒子装置及其驱动方法
    • US08599470B2
    • 2013-12-03
    • US13189626
    • 2011-07-25
    • Shunsuke MoriYoshiro MikamiToshiaki Kusunoki
    • Shunsuke MoriYoshiro MikamiToshiaki Kusunoki
    • G02B26/00G09G3/34
    • G02F1/172G02F1/167
    • A suspended particle device is realized which enables control of the amount of light transmitted through a prescribed area, without any complicated switching circuit on a substrate. A suspension, containing charged particles and a disperse medium, is filled between an A-substrate and a B-substrate, and first and second electrodes are formed on the A-substrate. A DC voltage is applied across the first and second electrodes, to localize the charged particles on the second electrode side. Subsequently, an AC voltage is applied across the first and second electrodes to orient, while maintaining the localized state of the charged particles, the charged particles along a direction of an electric field. Light transmittance is lower in an area where the charged particles are present than in an area without charged particles, whereas, in the area where the charged particles are present, the light transmittance can be controlled by adjusting the AC voltage.
    • 实现了一种悬浮颗粒装置,其能够控制透过规定区域的光量,而不需要在基板上的任何复杂的开关电路。 含有带电粒子和分散介质的悬浮液被填充在A衬底和B衬底之间,并且在A衬底上形成第一和第二电极。 在第一和第二电极两端施加直流电压,以将带电粒子定位在第二电极侧。 随后,跨越第一和第二电极施加AC电压,以沿着电场方向定向带电粒子,同时保持带电粒子的局部状态。 在带电粒子存在的区域中的透光率低于没有带电粒子的区域,而在带电粒子的区域中,可以通过调整AC电压来控制透光率。
    • 7. 发明申请
    • PLASMA DISPLAY PANEL
    • 等离子显示面板
    • US20090153050A1
    • 2009-06-18
    • US12335561
    • 2008-12-16
    • Kazutaka TsujiRyo InoueShunsuke MoriMasaaki KomatsuTatsuya MiyakeKeizo SuzukiHideto MomoseShirun Ho
    • Kazutaka TsujiRyo InoueShunsuke MoriMasaaki KomatsuTatsuya MiyakeKeizo SuzukiHideto MomoseShirun Ho
    • H01J17/49
    • H01J11/40H01J11/12
    • A high-quality long-life plasma display panel is provided by enabling compatibility between priming-electron emission characteristics, and other characteristics such as sputtering resistance, secondary electron emission characteristics, and wall charge retention. The plasma display panel is structured to include a front substrate, transparent electrodes and bus electrodes provided on the inner side of the front substrate, a dielectric layer covering these electrodes, a first protective layer covering the dielectric layer, and a second protective layer disposed on the side closer to the discharge space than the first protective layer. The first protective layer is doped with Sc to generate a predetermined excitation light by incidence of ultraviolet light. The second protective layer is doped with Si to emit electrons to the discharge space by the excitation light. With this structure, it is possible to realize a plasma display device in which the discharge delay is small, thereby the fluctuation less occurs.
    • 通过实现引发电子发射特性和诸如溅射电阻,二次电子发射特性和壁电荷保留的其它特性之间的兼容性,提供了高质量的长寿命等离子体显示面板。 等离子体显示面板被构造为包括前基板,设置在前基板的内侧的透明电极和总线电极,覆盖这些电极的介电层,覆盖电介质层的第一保护层和设置在电介质层上的第二保护层 比第一保护层更靠近放电空间的一侧。 第一保护层掺杂有Sc以通过紫外光的入射产生预定的激发光。 第二保护层掺杂有Si以通过激发光向放电空间发射电子。 利用这种结构,可以实现放电延迟小的等离子体显示装置,从而发生波动较小。
    • 8. 发明申请
    • Scroll type fluid machine
    • 滚动式流体机
    • US20070231175A1
    • 2007-10-04
    • US11727516
    • 2007-03-27
    • Kazutaka SuefujiShunsuke MoriJunichi Nagasawa
    • Kazutaka SuefujiShunsuke MoriJunichi Nagasawa
    • F01C1/02F01C1/063
    • F04C18/0215F01C21/02F04C29/0057
    • The present invention provides a scroll type fluid machine having a driving system including a counter weight and a sub weight, in which an efficiency of an assembling operation is enhanced by simplifying an assembling structure of the driving system. In the fluid machine, a sub weight 17 is provided on a rotary shaft 16 and a counter weight 20 is provided on a driving bush 19. The driving bush 19 is attached to the rotary shaft 16 by an attachment bolt 23 to prevent a relative rotation between the rotary shaft and the driving bush. The rotary shaft 16 supported by a main bearing 18 is rotatingly driven by a motor 9, with the result that an orbiting scroll 4 performs an orbiting motion with respect to a fixed scroll 2. With this arrangement, during an assembling operation of the fluid machine, by attaching the attachment bolt 23, a plurality of parts including casing 1, rotary shaft 16, sub weight 17, main bearing 18, driving bush 19, counter weight 20, washer 21 and the like can easily be integrated with each other, thereby enhancing the assembling operation efficiently.
    • 本发明提供一种涡卷式流体机械,其具有包括配重和副重量的驱动系统,其中通过简化驱动系统的组装结构来提高组装操作的效率。 在流体机械中,副转子17设置在旋转轴16上,配重20设置在驱动衬套19上。驱动衬套19通过安装螺栓23安装在旋转轴16上,以防止相对旋转 在旋转轴和驱动衬套之间。 由主轴承18支撑的旋转轴16由马达9旋转驱动,结果是绕动涡旋件4相对于固定涡旋件2进行轨道运动。通过这种布置,在流体机械的组装操作期间 通过安装附接螺栓23,可以容易地将包括壳体1,旋转轴16,副重量17,主轴承18,驱动衬套19,配重20,垫圈21等的多个部件彼此一体化,从而 有效提高装配作业。
    • 9. 发明授权
    • Suspended particle device, light control device using the same, and method for driving the same
    • 悬浮粒子装置,使用其的光控制装置及其驱动方法
    • US08952884B2
    • 2015-02-10
    • US13337576
    • 2011-12-27
    • Shunsuke MoriYoshiro Mikami
    • Shunsuke MoriYoshiro Mikami
    • G09G3/34G02F1/17G02F1/133
    • G02F1/172G02F1/13306
    • Disclosed is a suspended particle device having a higher response speed of particles upon shutdown of the device. The suspended particle device includes a first substrate; a first electrode arranged on a surface of the first substrate; a second substrate; a second electrode arranged on a surface of the second substrate; and a suspension arranged between the first substrate and the second substrate, in which the suspension includes particles and a disperse medium, the particles are dispersed in the disperse medium, an orientation of the particles is controlled by an alternate-current voltage to be applied between the first electrode and the second electrode, and “a” which represents a frequency of an alternate-current voltage in a driving period is greater than “b” which represents a frequency of an alternate-current voltage in a shutdown period.
    • 公开了一种悬浮颗粒装置,其在装置关闭时具有较高的颗粒响应速度。 悬浮颗粒装置包括第一基板; 布置在所述第一基板的表面上的第一电极; 第二基板; 布置在所述第二基板的表面上的第二电极; 以及布置在第一基板和第二基板之间的悬架,其中悬浮液包括颗粒和分散介质,颗粒分散在分散介质中,颗粒的取向由施加在 第一电极和第二电极,以及表示驱动周期中的交流电压的频率的“a”大于表示停机期间的交流电压的频率的“b”。