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    • 1. 发明授权
    • Multilayer ceramic electronic part
    • 多层陶瓷电子部件
    • US08542477B2
    • 2013-09-24
    • US13404890
    • 2012-02-24
    • Wi Heon KimDoo Young KimJin Man Jung
    • Wi Heon KimDoo Young KimJin Man Jung
    • H01G4/06
    • H01G4/12H01G4/30
    • There is provided a multilayer ceramic electronic part, including: a ceramic body including dielectric layers each having an average thickness of 0.6 μm or less; and first and second internal electrodes disposed to face each other within the ceramic body with the dielectric layer interposed therebetween, wherein the ceramic body includes a capacitance forming part and non-capacitance forming parts, and when the capacitance forming part is divided into 2n+1 (n is 1 or more) regions in a thickness direction of the ceramic body, the dielectric layers of the capacitance forming part get thinner in directions from a central region toward upper and lower regions, whereby continuity of the internal electrode may be improved and a high-capacity multilayer ceramic electronic part may be realized.
    • 提供了一种多层陶瓷电子部件,其包括:陶瓷体,其包括平均厚度为0.6μm以下的电介质层; 所述第一和第二内部电极在所述陶瓷体内彼此相对配置,所述电介质层插入在所述第一和第二内部电极之间,其中所述陶瓷体包括电容形成部和非电容形成部,并且当所述电容形成部分被分割为2n + 1 (n为1以上)区域时,电容形成部的电介质层从中央部朝向上下区域的方向变薄,能够提高内部电极的连续性, 可以实现高容量多层陶瓷电子部件。
    • 2. 发明申请
    • MULTILAYER CERAMIC ELECTRONIC PART
    • 多层陶瓷电子部件
    • US20130135789A1
    • 2013-05-30
    • US13404890
    • 2012-02-24
    • Wi Heon KIMDoo Young KimJin Man Jung
    • Wi Heon KIMDoo Young KimJin Man Jung
    • H01G4/12
    • H01G4/12H01G4/30
    • There is provided a multilayer ceramic electronic part, including: a ceramic body including dielectric layers each having an average thickness of 0.6 μm or less; and first and second internal electrodes disposed to face each other within the ceramic body with the dielectric layer interposed therebetween, wherein the ceramic body includes a capacitance forming part and non-capacitance forming parts, and when the capacitance forming part is divided into 2n+1 (n is 1 or more) regions in a thickness direction of the ceramic body, the dielectric layers of the capacitance forming part get thinner in directions from a central region toward upper and lower regions, whereby continuity of the internal electrode may be improved and a high-capacity multilayer ceramic electronic part may be realized.
    • 提供了一种多层陶瓷电子部件,其包括:陶瓷体,其包括平均厚度为0.6μm以下的电介质层; 所述第一和第二内部电极在所述陶瓷体内彼此相对配置,所述电介质层插入在所述第一和第二内部电极之间,其中所述陶瓷体包括电容形成部和非电容形成部,并且当所述电容形成部分被分割为2n + 1 (n为1以上)区域时,电容形成部的电介质层从中央部朝向上下区域的方向变薄,能够提高内部电极的连续性, 可以实现高容量多层陶瓷电子部件。
    • 3. 发明授权
    • Solid state electrolytic capacitor and lead frame therefor
    • 固态电解电容器及其引线框架
    • US06535375B1
    • 2003-03-18
    • US10159108
    • 2002-06-03
    • Jin Man JungByoung Won SonJeon Yong Park
    • Jin Man JungByoung Won SonJeon Yong Park
    • H01G900
    • H01G9/012H01G9/26
    • A solid state electrolytic capacitor and a structurally improved lead frame used in such a capacitor are disclosed. In the solid state electrolytic capacitor of this invention, the positive terminal parts of a lead frame assembled with each laminated capacitor unit are primarily bent upward to extend along the front surface of the positive portion of the capacitor unit and are secondarily bent rearward to come into contact with the upper surface of the positive portion, thus forming positive terminals of the capacitor unit. The contact parts of the lead frame extend outward from both sides of the capacitor unit and are brought into contact with those of lead frames assembled with the other capacitor units. The positive portion of each capacitor unit has the same width as that of the other part of the capacitor unit, thus removing stepped corners from the junction of the positive portion and the other part of the capacitor unit. The capacitor of this invention is thus not likely to be cracked or broken regardless of impact or load since the capacitor units do not have such stepped corners and are free from undesired stress concentration.
    • 公开了一种用于这种电容器的固态电解电容器和结构改进的引线框架。 在本发明的固态电解电容器中,与各层叠电容器单元组装的引线框架的正极端子主要向上弯曲,沿着电容器单元的正极部分的前表面延伸并且向后弯曲以进入 与正极部分的上表面接触,从而形成电容器单元的正极端子。 引线框架的接触部分从电容器单元的两侧向外延伸,并与与其他电容器单元组装的引线框架相接触。 每个电容器单元的正部分具有与电容器单元的其他部分相同的宽度,从而从电容器单元的正部分和另一部分的接合处去除阶梯角。 因此,由于电容器单元不具有这种阶梯角并且没有不期望的应力集中,因此本发明的电容器不管是冲击还是负载都不会破裂或断裂。