Abstract:
A composite electronic component includes a composite body formed by combining a multilayer ceramic capacitor (MLCC) and a tantalum capacitor. The composite electronic component has an excellent acoustic noise reduction effect, low equivalent series resistance (ESR)/equivalent series inductance (ESL), enhanced DC-bias characteristics, and a reduced chip thickness.
Abstract:
There is provided a mounting circuit board of a multilayer ceramic capacitor including a multilayer ceramic capacitor including a ceramic body in which a plurality of dielectric layers are stacked, an active layer including a plurality of first and second internal electrodes alternately exposed to both end surfaces of the ceramic body, having the dielectric layer therebetween, and first and second external electrodes extended from both end surfaces of the ceramic body to a portion of a lower surface thereof; and a printed circuit board having first and second electrode pads so that the first and second external electrodes are mounted thereon, wherein the first and second electrode pads are disposed in positions diagonally opposed to each other, based on the ceramic body.
Abstract:
A multilayer ceramic capacitor includes a ceramic body; an active layer including a plurality of first and second internal electrodes alternately exposed to both end surfaces of the ceramic body with a dielectric layer interposed therebetween; upper and lower cover layers formed on upper and lower surfaces of the active layer; and first and second external electrodes formed on the end surfaces of the ceramic body, wherein when a thickness of the ceramic body is defined as T, a thickness of the active layer is defined as S, a thickness of the lower cover layer is defined as C, and a distance from an end of a lowermost internal electrode in a length direction to an end of a band portion of an external electrode close to the end of the lowermost internal electrode is defined A, 0.25≦S/T≦0.75 and 3≦A/C≦10 are satisfied.
Abstract translation:多层陶瓷电容器包括陶瓷体; 活性层,包括交替地暴露于陶瓷体的两个端面的多个第一和第二内部电极,介电层插入其间; 形成在有源层的上表面和下表面上的上和下覆盖层; 以及形成在陶瓷体的端面上的第一外部电极和第二外部电极,其中当陶瓷体的厚度被定义为T时,有源层的厚度被定义为S,下覆盖层的厚度被定义为 C,并且从最内部内部电极的长度方向的端部到靠近最内部电极的端部的外部电极的带状部分的端部的距离被定义为A,0.25≦̸ S / T≦̸ 0.75和 3≦̸ A / C≦̸ 10满意。
Abstract:
There is provided a multilayer ceramic electronic part to be embedded in a board including: a ceramic body including dielectric layers; an active layer including a plurality of first and second internal electrodes; upper and lower cover layers disposed on and below the active layer, respectively; and first and second external electrodes formed on both end portions of the ceramic body, wherein a first internal electrode positioned at an outermost position among the first electrodes is connected to the first external electrode by at least one first via extended to at least one of first and second main surfaces of the ceramic body, and a second internal electrode positioned at an outermost position among the second internal electrodes is connected to the second external electrode by at least one second via extended to at least one of first and second main surfaces of the ceramic body.
Abstract:
There is provided a multilayer ceramic electronic component, including: a ceramic body formed by laminating dielectric layers having an average thickness of 0.7 μm or less; external electrodes formed on external surfaces of the ceramic body; and internal electrodes respectively disposed on the dielectric layer so as to have a gap formed therebetween, wherein, when a narrowest gap between the internal electrode edges adjacent to one another is denoted by Gmin, 10 μm≦Gmin≦60 μm is satisfied.
Abstract:
There is provided an embedded multilayer ceramic electronic component including a ceramic body including dielectric layers, having first and second main surfaces, first and second side surfaces, and first and second end surfaces, and having a thickness of 250 μm or less, first and second internal electrodes alternately exposed to the first or second side surface, and first and second external electrodes formed on the first and second side surfaces, wherein the first external electrode includes a first electrode layer and a first metal layer, the second external electrode includes a second electrode layer and a second metal layer, the first and second external electrodes are extended onto the first and second main surfaces, and widths of the first and second external electrodes formed on the first and second main surfaces are different from each other.
Abstract:
There is provided a multilayer ceramic capacitor including: a ceramic body in which a plurality of dielectric layers are laminated; a plurality of first and second internal electrodes formed to be alternately exposed to both end surfaces of the ceramic body with the dielectric layer interposed therebetween; and first and second external electrodes formed on both end surfaces of the ceramic body and electrically connected to the first and second internal electrodes, wherein when it is defined that a thickness of a band of the first and second external electrodes is T1 and a thickness of the ceramic body is T2, a ratio (T1/T2) of the thickness of the band of the first or second external electrode to the thickness of the ceramic body is equal to or less than 0.18.
Abstract:
Disclosed herein are an electronic component and a method of manufacturing the same. In an electronic component having a conductor formed in an insulator and providing an external electrode electrically connected to the conductor on an outer surface of the insulator, a curvature of the external electrode in a via machining region is decreased at a predetermined level or less, thereby making it possible to decrease defect generation due to a glare-reflection of a laser.
Abstract:
There is provided a multilayer ceramic capacitor including: a ceramic body; an active layer including a plurality of first and second internal electrodes formed to be alternately exposed to both end surfaces of the ceramic body, disposed vertically on upper and lower surfaces of the ceramic body and forming capacitance; an upper cover layer formed upwardly of the active layer; a lower cover layer formed downwardly of the active layer and having a thickness greater than that of the upper cover layer; and first and second external electrodes covering both end surfaces of the ceramic body, wherein the active layer includes a first block in which a first region I and a second region II formed, and a second block in which a third region III, and a fourth region IV formed.
Abstract:
There is provided a multilayered ceramic capacitor including: a ceramic body in which a plurality of dielectric layers are stacked; an active layer including a plurality of first and second internal electrodes formed to be alternately exposed to both end surfaces of the ceramic body, having the dielectric layer interposed therebetween, to form capacitance; an upper cover layer formed above the active layer, a lower cover layer formed below the active layer and being thicker than the upper cover layer; and first and second external electrodes formed to cover both end surfaces of the ceramic body, wherein a ratio of an area Y of a region overlapped between the first and second internal electrodes to a total area X of the active layer and the upper cover layer on a cross section of the ceramic body in length-thickness (L-T) directions is in a range of 0.5 to 0.9.