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    • 62. 发明申请
    • Display controller for injection molding machine
    • 注塑机显示控制器
    • US20060235568A1
    • 2006-10-19
    • US11404857
    • 2006-04-17
    • Kenji ArakiOsamu Saito
    • Kenji ArakiOsamu Saito
    • B29C45/00
    • G05B19/406B29C45/76B29C2045/7606B29C2945/76006B29C2945/76066B29C2945/76083B29C2945/7611B29C2945/76187B29C2945/76434G05B2219/34209G05B2219/35488
    • A display controller for an injection molding machine which can display a large amount of information or display characters, etc. in a manner that they are easy to read, according to need, to provide good operability. The apparatus has main frames MD for setting molding conditions and displaying actual measurement values, and subsidiary frames SD for displaying data representing the conditions of the injection molding machine. A first display mode for displaying only one main frame MD selected, a second display mode for displaying a selected main frame MD in a reduced size with one or more subsidiary frames SD1, SD2 selected, and a third display mode for displaying a plurality of main frames MD selected are provided, where a switchover between the first, second and third display modes can be carried out. In the first display mode, characters, etc. are displayed in a large size, so that data displayed can be clearly read. In the third display mode, a large amount of information is displayed and hence can be monitored on the screen at a time. In the second display mode, the size of characters is medium and the amount of information is medium. An optimal display mode is selected according to need.
    • 一种可以根据需要以易于阅读的方式显示大量信息或显示字符等的注塑机的显示控制器,以提供良好的可操作性。 该设备具有用于设置成型条件和显示实际测量值的主框架MD,以及用于显示表示注射成型机条件的数据的辅助框架SD。 用于仅显示所选择的一个主帧MD的第一显示模式,用于以选择的一个或多个辅助帧SD 1,SD 2显示缩小尺寸的所选主帧MD的第二显示模式和用于显示多个的第三显示模式 提供了选择的主框架MD,其中可以执行第一,第二和第三显示模式之间的切换。 在第一显示模式中,以大尺寸显示字符等,从而可以清楚地读出显示的数据。 在第三显示模式中,显示大量信息,因此可以一次在屏幕上监视。 在第二显示模式中,字符的大小是中等的,信息量是中等的。 根据需要选择最佳显示模式。
    • 63. 发明申请
    • Surface-mount capacitor and method of producing the same
    • 表面贴装电容器及其制造方法
    • US20060087795A1
    • 2006-04-27
    • US11260831
    • 2005-10-27
    • Toshihisa NagasawaKenji ArakiHitoshi TakataAkihiro KawaiShinji Arai
    • Toshihisa NagasawaKenji ArakiHitoshi TakataAkihiro KawaiShinji Arai
    • H01G4/228
    • H01G9/008H01G9/08Y10T29/417
    • A surface-mount capacitor includes a multilayer capacitor structure formed by laminating plate-like capacitor elements each having anode lead portions 11 at opposite ends thereof and a cathode portion 12 at the center, an anode terminal 18 connected to each anode lead portion 11 via a strip-like plate 14, and a cathode terminal 19 connected to the cathode portion 12. The anode and the cathode terminals 18 and 19 have a flat shape and are formed on a common plane as a substrate-mounted surface. A mold resin case 20 has a bottom portion filling a gap between the anode and the cathode terminals 18 and 19 and mechanically connecting the anode and the cathode terminals 18 and 19, and side walls substantially perpendicular to the substrate-mounted surface. The anode and the cathode terminals 18 and 19 have upper surfaces exposed on an inner bottom surface of the mold resin case 20 to be connected to the anode lead portions 11 and the cathode portion 12.
    • 表面贴装电容器包括层叠电容器结构,该层叠电容器结构通过层叠板状电容器元件而形成,所述电容器元件的相对端部具有阳极引线部分11和位于其中心的阴极部分12,阳极端子18经由一个阳极引线部分11经由 条状板14和连接到阴极部分12的阴极端子19。 阳极和阴极端子18和19具有扁平形状并且形成在公共平面上作为基板安装表面。 模具树脂壳体20具有填充阳极和阴极端子18和19之间的间隙的底部,并且机构地连接阳极和阴极端子18和19以及基本垂直于基板安装表面的侧壁。 阳极和阴极端子18和19具有暴露在模制树脂壳体20的内底表面上的上表面,以连接到阳极引线部分11和阴极部分12。
    • 67. 发明授权
    • Turbo blood pump
    • 涡轮血泵
    • US06722863B2
    • 2004-04-20
    • US09952240
    • 2001-09-10
    • Hiroyuki MaedaMasafumi SatoKenji ArakiHirofumi Anai
    • Hiroyuki MaedaMasafumi SatoKenji ArakiHirofumi Anai
    • F04B1700
    • F04D13/027A61M1/10A61M1/101A61M1/1013A61M1/1036F04D13/026
    • A turbo blood pump includes a housing 1 having a pump chamber 2, an inlet port 3, and an outlet port 4, an impeller 5 disposed rotatably in the pump chamber, an upper bearing 9 and a lower bearing 10 supporting the impeller rotatably, and a driving force transmitting unit for driving the impeller to rotate. The upper bearing is supported at a position in the pump chamber below the inlet port, so that a cross-sectional area of the pump chamber in a plane including an upper end of the upper bearing and being orthogonal to a shaft of the impeller is larger than a cross-sectional area of a flow path of the inlet port at a portion where the inlet port is coupled to the pump chamber, and thus obstruction with respect to blood flow by the upper bearing is of such a degree as to be permissible from a practical viewpoint, while an impeller is supported by upper and lower bearings. Thereby, the pump is less likely to cause problems of blood stagnation and thrombus formation.
    • 涡轮血泵包括具有泵室2,入口3和出口4的壳体1,可旋转地设置在泵室中的叶轮5,可旋转地支撑叶轮的上轴承9和下轴承10,以及 用于驱动叶轮旋转的驱动力传递单元。 上轴承支撑在泵室的入口下方的位置处,使得泵室在包括上轴承的上端并且与叶轮的轴正交的平面中的横截面面积较大 比入口端口联接到泵室的部分处的入口的流动通道的横截面面积大,因此相对于上轴承的血液流动阻塞的程度可以允许从 一个实用的观点,而叶轮由上下轴承支撑。 因此,泵不太可能引起血液滞留和血栓形成的问题。
    • 68. 发明授权
    • Manufacturing method of solid electrolytic capacitor
    • 固体电解电容器的制造方法
    • US06421228B2
    • 2002-07-16
    • US09849197
    • 2001-05-04
    • Kenji Araki
    • Kenji Araki
    • H02G900
    • H01G9/0036Y10T29/417
    • A dielectric film formed on a porous valve metal body is contacted with an oxidizing agent and dried. Then, by contacting the dielectric film with a monomer solution for forming an electrolyte layer of electroconductive polymer, a electrolyte layer of a solid electrolytic capacitor is formed by an oxidative polymerization reaction. An oxidative polymerization retarding agent, which delays the oxidative polymerization reaction, is added to at least one of the solutions, an oxidant solution and a monomer solution. The oxidative polymerization retarding agent delays the oxidative polymerization reaction when it contacts with the oxidant and monomer. As a result, the permeation of the monomer for forming an electroconductive polymer layer into small pores increases, and the covering rate of the electroconductive polymer in small pores increases, which improves the capacitance appearance factor and the equivalent series resistance in high frequency region.
    • 形成在多孔阀金属体上的电介质膜与氧化剂接触并干燥。 然后,通过使电介质膜与用于形成导电聚合物的电解质层的单体溶液接触,通过氧化聚合反应形成固体电解电容器的电解质层。 将氧化聚合反应延迟的氧化聚合阻滞剂加入至少一种溶液,氧化剂溶液和单体溶液中。 当氧化聚合延迟剂与氧化剂和单体接触时,延迟氧化聚合反应。 结果,用于形成导电聚合物层的单体渗透到小孔中增加,并且导电聚合物在小孔中的覆盖率增加,这改善了高频区域中的电容外观因子和等效串联电阻。