Module incorporating a capacitor, method for manufacturing the same, and capacitor used therefor
    12.
    发明申请
    Module incorporating a capacitor, method for manufacturing the same, and capacitor used therefor 有权
    包含电容器的模块及其制造方法以及用于其的电容器

    公开(公告)号:US20050073818A1

    公开(公告)日:2005-04-07

    申请号:US10944311

    申请日:2004-09-17

    摘要: A module incorporating a capacitor, the module including a circuit board and a layer incorporating a capacitor, wherein the circuit board includes a wiring layer and a via contact for providing electrical conductivity to a cathode and an anode of the capacitor. The layer incorporating the capacitor includes a ferromagnetic layer integrated with at least a portion of a surface of the capacitor, and in the circuit board or the layer incorporating the capacitor, a coil is wound around the capacitor, or an inductor component is disposed in parallel with the capacitor. Accordingly, a module incorporating a capacitor in which miniaturization, a higher density and a reduced thickness have been achieved, as well as a method for producing the module and a capacitor used for the module, are provided.

    摘要翻译: 一种包含电容器的模块,所述模块包括电路板和包含电容器的层,其中所述电路板包括用于向所述电容器的阴极和阳极提供导电性的布线层和通孔接触。 包含电容器的层包括与电容器的表面的至少一部分集成的铁磁层,并且在电路板或包含电容器的层中,线圈缠绕在电容器周围,或者电感器部件并联设置 与电容器。 因此,提供了一种包括其中实现了小型化,更高密度和更小厚度的电容器的模块以及用于该模块的模块和电容器的制造方法。

    Electrode for electrolytic capacitor and process of producing the same
    15.
    发明授权
    Electrode for electrolytic capacitor and process of producing the same 失效
    电解电容器用电极及其制造方法

    公开(公告)号:US06464739B2

    公开(公告)日:2002-10-15

    申请号:US09816224

    申请日:2001-03-26

    IPC分类号: H01G900

    CPC分类号: H01G9/052 Y10T29/417

    摘要: An anode for an electrolytic capacitor includes a porous body having micropores that include a dielectric layer filled thereon and an electrolyte filled therein. The porous body includes a laminate of a plurality of sinter layers having the micropores formed from valve metal particles. The laminate includes alternating smaller micropore-size regions and larger micropore-size regions, which form electric conductive passages between the smaller micropore-size regions and side surfaces of the porous body. This structure reduces resistance of the capacitor and also increases capacitance by effectively utilizing the capacitance of the smaller micropore-size regions. The porous body is formed by stacking a plurality of porous preforms, such as sheets preformed of valve metal powder, into a laminate, and then sintering the laminate. The porous body may be joined with a valve metal substrate during sintering, thereby completing the anode for an electrolytic capacitor. Particularly, the porous body may be a laminate including larger micropore-size sinter layers and smaller micropore-size sinter layers, by alternatively laminating two types of preforms, each having a different density.

    摘要翻译: 用于电解电容器的阳极包括具有微孔的多孔体,该微孔包括填充在其上的电介质层和填充在其中的电解质。 多孔体包括具有由阀金属颗粒形成的微孔的多个烧结层的层叠体。 层压体包括交替的较小的微孔尺寸区域和较大的微孔尺寸区域,其在更小的微孔尺寸区域和多孔体的侧表面之间形成导电通道。 该结构降低了电容器的电阻,并且还通过有效地利用较小的微孔尺寸区域的电容来增加电容。 多孔体通过将预先形成有阀金属粉末的多个多孔预成型体叠层在层叠体中,然后烧结层叠体而形成。 多孔体可以在烧结期间与阀金属基板接合,从而完成电解电容器的阳极。 特别地,多孔体可以是层叠体,其包括较大的微孔尺寸的烧结层和较小的微孔尺寸的烧结层,通过交替层压两种类型的每种具有不同密度的预制件。

    Chip-type battery
    18.
    发明授权
    Chip-type battery 失效
    芯片型电池

    公开(公告)号:US07655348B2

    公开(公告)日:2010-02-02

    申请号:US11055971

    申请日:2005-02-14

    IPC分类号: H01M10/48 H01M2/00 H01M2/02

    摘要: In order to enhance versatility, a chip-type battery having a means for readily identifying a first terminal and a second terminal is provided. The chip-type battery includes: a body having a substantially rectangular parallelepiped shape and contains a plurality of power generating elements in a stack, each element including a sintered material; a first terminal having a first polarity; and a second terminal having a second polarity. The first terminal is provided at a first side face of the body. The second terminal is provided at a second side face of the body located on other than the first side face. The first terminal and the second terminal include different metal materials.

    摘要翻译: 为了提高多功能性,提供了具有用于容易地识别第一端子和第二端子的装置的芯片型电池。 芯片型电池包括:具有大致长方体形状并且在堆叠中包含多个发电元件的主体,每个元件包括烧结材料; 具有第一极性的第一端子; 以及具有第二极性的第二端子。 第一端子设置在主体的第一侧面。 第二端子设置在位于除了第一侧面之外的主体的第二侧面。 第一端子和第二端子包括不同的金属材料。

    Electrode for electrolytic capacitor
    19.
    发明授权
    Electrode for electrolytic capacitor 失效
    电解电容器用电极

    公开(公告)号:US06351371B1

    公开(公告)日:2002-02-26

    申请号:US09549491

    申请日:2000-04-14

    IPC分类号: H01G904

    CPC分类号: H01G9/052 Y10T29/417

    摘要: An anodic electrode for an electrolytic capacitor having high capacitance with low-resistance properties at high frequencies and capable of carrying large current, and a process of producing the same. Such an anodic electrode for electrolytic capacitor includes a porous body having micropores to be formed with a dielectric layer therein and to be filled with electrolyte therein, wherein the porous body includes a laminate of a plurality of sinter layers having the micropores formed from valve metal particles. The laminate includes multilaminarly smaller micropore-size regions and larger micropore-size regions to form electric conductive passages between the small micropore-size regions and side surfaces of the porous body to reduce resistance of the capacitor and also increase capacitance by utilizing the smaller micropores-size regions for capacitor effectively. The porous body is formed by stacking a plurality of porous preforms such as sheets preformed of valve metal powder into a laminate, and then sintering the laminate. The porous body may be joined with a valve metal substrate during sintering, thereby completing the anodic electrode for an electrolytic capacitor. Particularly, the porous body may be a laminate including large micropore-size sinter layers and small micropore size sinter layers, by alternatively laminating two types of preforms different in density.

    摘要翻译: 一种用于电解电容器的阳极电极,其具有高电容,高频低电阻特性并且能够承载大电流的电解电容器及其制造方法。 这种用于电解电容器的阳极电极包括具有在其中形成有介电层的微孔并在其中填充电解质的多孔体,其中多孔体包括具有由阀金属颗粒形成的微孔的多个烧结层的层压体 。 层压体包括多层较小的微孔尺寸区域和较大的微孔尺寸区域,以在小微孔尺寸区域和多孔体的侧表面之间形成导电通道,以降低电容器的电阻并且还通过利用较小的微孔尺寸区域增加电容, 电容器的尺寸区域有效。 多孔体通过将预先形成有阀金属粉末的多个多孔预成型体层压成层叠体而形成,然后烧结层压体。 多孔体可以在烧结时与阀金属基板接合,从而完成电解电容器的阳极电极。 特别地,通过交替地层压两种不同密度的预制件,多孔体可以是包括大的微孔尺寸的烧结层和小的微孔烧结层的层压体。

    Angular velocity sensor and a sensor apparatus incorporating the same
    20.
    发明授权
    Angular velocity sensor and a sensor apparatus incorporating the same 失效
    角速度传感器和传感器装置同时进行

    公开(公告)号:US5131273A

    公开(公告)日:1992-07-21

    申请号:US548705

    申请日:1990-07-06

    IPC分类号: G01C19/56 G01P1/00

    CPC分类号: G01C19/5607 G01P1/006

    摘要: An angular velocity sensor includes a pair of vibratory piezoelectric detecting elements defining detecting planes which are disposed in symmetry about a plane containing the sense axis and out of right-angled orientation with respect to this plane. The detecting elements thus arranged assume a widely spread or flattened V-shaped configuration as viewed from above. Output signals of opposite polarities received from the respective detecting elements are weighted respectively and added together so as to cancel out unwanted leak component signals. Thus, leak component signals resulting from assembling tolerances can be canceled. In this instance, if the characteristics of two sensor elements each including one of the detecting elements are fully equivalent, a leak component signal dependent on a disturbing inertial force can simultaneously be canceled out. With this construction, the variation of the offset voltage can be reduced even when the sensor is subjected to a great change in environmental conditions including temperature.