Abstract:
There is provided conductive paste composition for an external electrode including: a first metal powder particle having a spherical shape and formed of a fine copper; and a second metal powder particle coated on a surface of the first metal powder particle and having a melting point lower than that of the copper.
Abstract:
There are provided a conductive paste composition for an external electrode, a multilayer ceramic electronic component using the same, and a manufacturing method thereof, and more specifically, a conductive paste composition for an external electrode, allowing for decreased blister and glass beading defects by improving a removal of residual carbon at low temperature before necking between metal particles is generated and the metal particles are densified during a firing process of the external electrode, a multilayer ceramic electronic component using the same, and a manufacturing method thereof.
Abstract:
A multilayer ceramic capacitor includes a ceramic body including a plurality of dielectric layers and first and second internal electrodes; and first and second external electrodes connected to the first and second internal electrodes, respectively. The first and second external electrodes include: first and second connection layers including the same first conductive material as the first and second internal electrodes and formed on opposite surfaces of the ceramic body to be connected to the first and second internal electrodes, respectively; and first and second terminal layers including a second conductive material different from the first conductive material and formed on the opposite surfaces of the ceramic body to cover the first and second connection layers.
Abstract:
There is provided a multilayer ceramic capacitor including: a ceramic body including dielectric layers and internal electrodes; electrode layers connected to the internal electrodes; and a conductive resin layer formed on the electrode layers and including a first conductor, a second conductor having a fiber shape, and a base resin.
Abstract:
There is provided a multilayer ceramic electronic component including a ceramic body having internal electrodes formed therein, external electrodes formed on external surfaces of the ceramic body and connected to the internal electrodes, and a buffer layer formed on surfaces of contact between the internal electrodes and the external electrodes among external surfaces of the ceramic body, in an interior direction of the ceramic body, wherein when a thickness of the external electrode is denoted by T, a thickness of the buffer layer is denoted by t, a thickness of an active region is denoted by TA, and a thickness of the ceramic body is denoted by Tc, T≦10 μm, TA/TC>0.8, and t≦5 μm, so that a multilayer ceramic electronic component having excellent reliability may be realized.
Abstract:
A ceramic electronic component includes a ceramic body; internal electrodes disposed in the ceramic body; external electrodes disposed on outer surfaces of the ceramic body and electrically connected to the internal electrodes; and tin plating layers disposed on the external electrodes.
Abstract:
There is provided a multilayer ceramic electronic component including: a ceramic body in which internal electrodes containing a first electrode material and dielectric layers are alternately disposed; external electrodes provided on outer surfaces of the ceramic body and containing a second electrode material; and diffusion parts each disposed to be connected to one end of the internal electrode and the external electrode and containing the first electrode material and the second electrode material mixed with each other, wherein the diffusion part includes an internal diffusion portion disposed within the ceramic body and an external diffusion portion protruding outside of the ceramic body.
Abstract:
There is provided a composite conductive powder including a conductive particle, and a coating layer formed on a surface of the conductive particle and including glass, wherein when a thickness of the coating layer in a portion A in which the coating layer is the thickest, on the surface of the conductive particle is defined as a, and a thickness of the coating layer in a portion B forming an angle of 90° with respect to the portion A on the surface of the conductive particle, based on a center of the conductive particle is defined as b, 0.1≦b/a≦0.7 is satisfied.
Abstract translation:提供了包括导电颗粒的复合导电粉末和形成在导电颗粒的表面上并包括玻璃的涂层,其中当涂层最厚的部分A中的涂层的厚度在 基于导电性粒子的中心,将导电性粒子的表面定义为相对于导电性粒子表面上的部分A形成90°的角度的部分B中的涂层的厚度, 定义为b,0.1≦̸ b / a≦̸ 0.7。
Abstract:
There is provided a multilayer ceramic electronic component, including: a ceramic body having internal electrodes formed therein; external electrodes formed on external surfaces of the ceramic body and connected to the internal electrodes; and buffer layers formed on contact surfaces between the internal electrodes and the external electrodes, among external surfaces of the ceramic body, in an interior direction of the ceramic body, wherein when a thickness of the internal electrode is denoted by Te, a number of laminated internal electrodes is denoted by N, a thickness of the buffer layer is denoted by t, and a width of a margin of the ceramic body in a length direction of the ceramic body is denoted by L, Te≦0.6 μm, N>200, and 3 μm≦t
Abstract translation:提供了一种多层陶瓷电子部件,其包括:形成有内部电极的陶瓷体; 形成在陶瓷体的外表面并与内部电极连接的外部电极; 以及在陶瓷体的内部方向上形成在内部电极和外部电极之间的接触表面上的缓冲层,其中当内部电极的厚度由Te表示时,层叠的数量 内部电极由N表示,缓冲层的厚度由t表示,陶瓷体的长度方向的边缘宽度为L,Te≦̸0.6μm,N> 200, 和3μm≦̸ t
Abstract:
There is provided a multi-layered ceramic electronic component including a ceramic body including a dielectric layer, first and second internal electrodes disposed within the ceramic body so as to face each other, having the dielectric layer interposed therebetween, and a first external electrode electrically connected to the first internal electrodes and a second external electrode electrically connected to the second internal electrodes, wherein the first and second external electrodes include a conductive metal and glass and further include a second phase material occupying an area of 1 to 80% with respect to an area of glass in the first and second external electrodes.