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    • 1. 发明授权
    • Multilayer ceramic capacitor
    • 多层陶瓷电容器
    • US06987662B2
    • 2006-01-17
    • US11043267
    • 2005-01-27
    • Takako HibiKazunori NoguchiMari MiyauchiAkira Sato
    • Takako HibiKazunori NoguchiMari MiyauchiAkira Sato
    • H01G4/20H01G4/06
    • H01G4/30H01G4/12
    • A multilayer ceramic capacitor 1 having internal electrode layers 3, internal dielectric layers 2 having the thickness of less than 2 μm, and external dielectric layers 20 wherein; the internal dielectric layers 2 and the external dielectric layers 20 include a plural number of dielectric particles 2a, 20a, and when y1 is ratio(D50a/D50b) of D50a and D50b where D50a is an average particle size of dielectric particles 2a included in the internal dielectric layers 2 and D50b is an average particle size of dielectric particles 20a included in the external dielectric layer 20 and located at least 5 μm away from an internal electrode layer 3a, arranged outermost part of all the internal electrode layers, to the stacked direction, and x is thickness of the internal dielectric layer 2, y1 and x satisfy the following equations, y1≦−0.75x+2.275 and y1≧−0.75x+1.675. According to the present invention, even when thickness of internal dielectric layers 2 were made thinner, a multilayer ceramic capacitor 1 wherein improvements in all kinds of electric characteristics, specially an improvement in TC bias characteristic while having sufficient dielectric constant can be expected.
    • 具有内部电极层3,厚度小于2μm的内部电介质层2和外部电介质层20的多层陶瓷电容器1,其中: 内部电介质层2和外部电介质层20包括多个电介质粒子2a,20a,当y1为D50a和D50b的比率(D50a / D50b)时,D50 a是包含在内部电介质层2中的电介质粒子2a的平均粒径,D50b是包含在外部电介质层20中并且位于离内部电极至少5m的电介质粒子20a的平均粒径 层3a,所有内部电极层的最外面的部分为堆叠方向,x为内部电介质层2的厚度,y 1和x满足下列等式:y 1 <= - 0.75×+ 2.275和y 1> = - 0.75x + 1.675。 根据本发明,即使使内部电介质层2的厚度变薄,也可以期望具有各种电特性的改善的多层陶瓷电容器1,特别是具有足够介电常数的TC偏置特性的改善。
    • 3. 发明授权
    • Multilayer ceramic capacitor
    • 多层陶瓷电容器
    • US07072170B2
    • 2006-07-04
    • US10996424
    • 2004-11-26
    • Mari MiyauchiKazunori NoguchiTakako HibiAkira Sato
    • Mari MiyauchiKazunori NoguchiTakako HibiAkira Sato
    • H01G4/06
    • H01G4/12
    • There is provided a multilayer ceramic capacitor 1, having an internal electrode layer 3 and an interlayer dielectric layer 2 having a thickness of 3.5 μm or less, wherein the interlayer dielectric layer 2 is composed of contact dielectric particles 2a contacting said internal electrode layer and noncontact dielectric particles 2b not contacting said internal electrode layer; and when assuming that an average particle diameter of the contact dielectric particles 2a is D50e and an average particle diameter of the noncontact dielectric particles 2b is D50d, D50e
    • 提供了具有内部电极层3和厚度为3.5μm以下的层间电介质层2的多层陶瓷电容器1,其中层间电介质层2由与内部电极层接触的接触电介质粒子2a和 非接触电介质颗粒2b不接触所述内部电极层; 并且当假定接触电介质粒子2a的平均粒径为D50e,非接触电介质粒子2b的平均粒径为D50d时,D50e <0.450μm,(D50e / D50d)= 1.20〜3.00(注意,1.20 和3.00),其中即使当层间绝缘层2变薄时,也可以预期在85℃下的偏置特性的改善。
    • 4. 发明申请
    • Multilayer ceramic capacitor
    • 多层陶瓷电容器
    • US20050180092A1
    • 2005-08-18
    • US11043267
    • 2005-01-27
    • Takako HibiKazunori NoguchiMari MiyauchiAkira Sato
    • Takako HibiKazunori NoguchiMari MiyauchiAkira Sato
    • H01G4/12H01G4/30H01G4/06
    • H01G4/30H01G4/12
    • A multilayer ceramic capacitor 1 having internal electrode layers 3, internal dielectric layers 2 having the thickness of less than 2 μm, and external dielectric layers 20 wherein; the internal dielectric layers 2 and the external dielectric layers 20 include a plural number of dielectric particles 2a, 20a, and when y1 is ratio(D50a/D50b) of D50a and D50b where D50a is an average particle size of dielectric particles 2a included in the internal dielectric layers 2 and D50b is an average particle size of dielectric particles 20a included in the external dielectric layer 20 and located at least 5 μm away from an internal electrode layer 3a, arranged outermost part of all the internal electrode layers, to the stacked direction, and x is thickness of the internal dielectric layer 2, y1 and x satisfy the following equations, y1≦−0.75x+2.275 and y1≧−0.75x+1.675. According to the present invention, even when thickness of internal dielectric layers 2 were made thinner, a multilayer ceramic capacitor 1 wherein improvements in all kinds of electric characteristics, specially an improvement in TC bias characteristic while having sufficient dielectric constant can be expected.
    • 具有内部电极层3,厚度小于2μm的内部电介质层2和外部电介质层20的多层陶瓷电容器1,其中: 内部电介质层2和外部电介质层20包括多个电介质粒子2a,20a,当y1为D50a和D50b的比率(D50a / D50b)时,D50a 是包含在内部电介质层2中的介电粒子2a的平均粒径,D50b是包含在外部电介质层20中并且位于离内部电极层至少5um的电介质粒子20a的平均粒径 图3a是所有内部电极层的最外面部分的堆叠方向,x是内部电介质层2的厚度,y1和x满足下列等式:y1 <= - 0.75x + 2.275和y1> = - 0.75x + 1.675。 根据本发明,即使使内部电介质层2的厚度变薄,也可以期望具有各种电特性的改善的多层陶瓷电容器1,特别是具有足够介电常数的TC偏置特性的改善。
    • 5. 发明授权
    • Multilayer ceramic capacitor
    • 多层陶瓷电容器
    • US06930876B1
    • 2005-08-16
    • US11043265
    • 2005-01-27
    • Kazunori NoguchiTakako HibiMari MiyauchiAkira Sato
    • Kazunori NoguchiTakako HibiMari MiyauchiAkira Sato
    • H01G4/12H01G4/30H01G4/06
    • H01G4/12H01G4/30
    • A multilayer ceramic capacitor 1 having internal electrode layers 3 and internal dielectric layers 2 having thickness of at most 3.5 μm wherein; the internal dielectric layers 2 comprising dielectric particles contacting the internal electrode layers (contacting dielectric particles 2a) and dielectric particles not contacting the internal electrode layers (non-contacting dielectric particles 2b), and when an average particle size of an entire plural number of dielectric particles included in the internal dielectric layers 2 is D50, and standard deviation for particle size range of the contacting dielectric particles is σ, the multilayer ceramic capacitor satisfy the following equations; D50≦0.25 μm and σ≦0.14. According to the present invention, multilayer ceramic capacitor 1 is provided wherein the capacitor is expected to have improved DC bias characteristic even when the internal dielectric layers 2 are made thinner.
    • 具有内部电极层3和厚度至多3.5μm的内部电介质层2的多层陶瓷电容器1, 内部电介质层2包括与内部电极层(接触电介质粒子2a)接触的电介质粒子和不与内部电极层(非接触电介质粒子2b)接触的电介质粒子,当平均粒径为多个数量 包含在内部电介质层2中的电介质粒子为D50,接触电介质粒子的粒径范围的标准偏差为σ,多层陶瓷电容器满足下式: D50 <=0.25μm和σ<= 0.14。 根据本发明,提供了多层陶瓷电容器1,其中即使内部电介质层2变薄,预期电容器也具有改善的DC偏置特性。
    • 6. 发明授权
    • Multilayer ceramic capacitor
    • 多层陶瓷电容器
    • US06975502B2
    • 2005-12-13
    • US11094604
    • 2005-03-31
    • Takako MurosawaMari MiyauchiKazunori NoguchiAkira Sato
    • Takako MurosawaMari MiyauchiKazunori NoguchiAkira Sato
    • H01G4/12H01G4/30H01G4/06H01G4/20
    • H01G4/12H01G4/30
    • A multilayer ceramic capacitor including an internal electrode layer, an internal dielectric layer having a thickness of less than 2 μm, and an external dielectric layer is provided, wherein the internal dielectric layer and external dielectric layer contain a plurality of dielectric particles, and when assuming that an average particle diameter of the entire dielectric particles in the internal dielectric layer is D50a (unit: μm), an average particle diameter of the entire dielectric particles existing at a position being away at least by 5 μm from the outermost internal electrode layer in the thickness direction is D50b (unit: μm), a ratio (D50a/D50b) of the D50a and D50b is y (no unit), standard deviation of a particle size distribution of the entire dielectric particles in the internal dielectric layer is σ (no unit), and a ratio that dielectric particles (coarse particles) having an average particle diameter of 2.25 times of the D50a exist in the entire dielectric particles is p (unit: %), the y and x satisfy a relationship of y −0.75x+1.740, the σ satisfies σ
    • 提供包括内部电极层,厚度小于2μm的内部电介质层和外部电介质层的多层陶瓷电容器,其中内部电介质层和外部电介质层包含多个电介质颗粒,并且当假定 内部电介质层中的整个电介质颗粒的平均粒径为D50a(单位:mum),存在于距离最外部内部电极层至少离开5μm的位置的整个电介质粒子的平均粒径 厚度方向为D50b(单位:mum),D50a和D50b的比率(D50a / D50b)为y(无单位),内部电介质层中的整个电介质粒子的粒度分布的标准偏差为σ( 无单位),并且在整个电介质粒子中存在平均粒径为D50a的2.25倍的电介质粒子(粗粒子)的比例 s为p(单位:%),y和x满足y <-0.75x + 2.015和y> -0.75x + 1.740的关系,σ满足σ<0.091,p满足p <2.85% 即使当内部电介质层变薄时,也可以期望改善TC偏压特性,同时保持各种电特性,特别是足够的介电常数。
    • 8. 发明授权
    • Multilayer ceramic capacitor
    • 多层陶瓷电容器
    • US07046502B2
    • 2006-05-16
    • US11092730
    • 2005-03-30
    • Takako MurosawaMari MiyauchiKazunori NoguchiAkira Sato
    • Takako MurosawaMari MiyauchiKazunori NoguchiAkira Sato
    • H01G4/06
    • H01G4/12H01G4/30
    • A multilayer ceramic capacitor having an internal electrode layer and a dielectric layer having a thickness of less than 2 μm is provided, wherein the dielectric layer contains a plurality of dielectric particles, and when it is assumed that standard deviation of a particle distribution of the entire dielectric particles in the dielectric layer is σ (no unit), an average particle diameter of the entire dielectric particles in the dielectric layer is D50 (unit: μm), and a rate that dielectric particles (coarse particles) having an average particle diameter of 2.25 times of the D50 exist in the entire dielectric particles is p (unit: %), the σ and p satisfy σ
    • 提供了具有内部电极层和厚度小于2μm的电介质层的多层陶瓷电容器,其中介电层包含多个电介质颗粒,并且当假定整个电介质层的粒子分布的标准偏差 电介质层中的电介质粒子是σ(无单位),电介质层中的整个电介质粒子的平均粒径为D 50(单位:mum),并且具有平均粒径 在整个电介质颗粒中存在的D50的2.25倍是p(单位:%),σ和p满足σ<0.130和p <12%; 即使层间电介质层薄,也可以预期可以提高TC偏置特性,同时保持各种电特性,特别是足够的介电常数。
    • 9. 发明申请
    • Multilayer ceramic capacitor
    • 多层陶瓷电容器
    • US20050254197A1
    • 2005-11-17
    • US11092730
    • 2005-03-30
    • Takako MurosawaMari MiyauchiKazunori NoguchiAkira Sato
    • Takako MurosawaMari MiyauchiKazunori NoguchiAkira Sato
    • H01G4/12H01G4/30H01G4/06
    • H01G4/12H01G4/30
    • A multilayer ceramic capacitor comprising an internal electrode layer and a dielectric layer having a thickness of less than 2 μm is provided, wherein the dielectric layer contains a plurality of dielectric particles, and when it is assumed that standard deviation of a particle distribution of the entire dielectric particles in the dielectric layer is σ (no unit), an average particle diameter of the entire dielectric particles in the dielectric layer is D50 (unit: μm), and a rate that dielectric particles (coarse particles) having an average particle diameter of 2.25 times of the D50 exist in the entire dielectric particles is p (unit: %), the σ and p satisfy σ
    • 提供了包括内部电极层和厚度小于2μm的电介质层的多层陶瓷电容器,其中介电层包含多个电介质颗粒,并且当假定整个电极的颗粒分布的标准偏差 电介质层中的电介质粒子是σ(无单位),电介质层中的整个电介质粒子的平均粒径为D 50(单位:mum),并且具有平均粒径 在整个电介质颗粒中存在的D50的2.25倍是p(单位:%),σ和p满足σ<0.130和p <12%; 即使层间电介质层薄,也可以预期可以提高TC偏置特性,同时保持各种电特性,特别是足够的介电常数。
    • 10. 发明申请
    • MULTILAYER CERAMIC CAPACITOR
    • 多层陶瓷电容器
    • US20050219795A1
    • 2005-10-06
    • US11094604
    • 2005-03-31
    • Takako MurosawaMari MiyauchiKazunori NoguchiAkira Sato
    • Takako MurosawaMari MiyauchiKazunori NoguchiAkira Sato
    • H01G4/12H01G4/30H01G4/06
    • H01G4/12H01G4/30
    • A multilayer ceramic capacitor comprising an internal electrode layer, an internal dielectric layer having a thickness of less than 2 μm, and an external dielectric layer is provided, wherein the internal dielectric layer and external dielectric layer contain a plurality of dielectric particles, and when assuming that an average particle diameter of the entire dielectric particles in the internal dielectric layer is D50a (unit: μm), an average particle diameter of the entire dielectric particles existing at a position being away at least by 5 μm from the outermost internal electrode layer in the thickness direction is D50b (unit: μm), a ratio (D50a/D50b) of the D50a and D50b is y (no unit), standard deviation of a particle size distribution of the entire dielectric particles in the internal dielectric layer is σ (no unit), and a ratio that dielectric particles (coarse particles) having an average particle diameter of 2.25 times of the D50a exist in the entire dielectric particles is p (unit: %), the y and x satisfy a relationship of y −0.75x+1.740, the σ satisfies σ
    • 提供了包括内部电极层,厚度小于2μm的内部电介质层和外部电介质层的多层陶瓷电容器,其中内部电介质层和外部电介质层包含多个电介质颗粒,并且当假定 内部电介质层中的整个电介质颗粒的平均粒径为D50a(单位:mum),存在于距离最外部内部电极层至少离开5μm的位置的整个电介质粒子的平均粒径 厚度方向为D50b(单位:mum),D50a和D50b的比率(D50a / D50b)为y(无单位),内部电介质层中的整个电介质粒子的粒度分布的标准偏差为σ( 无单位),并且在整个电介质粒子中存在平均粒径为D25a的2.25倍的电介质粒子(粗粒子)的比例 es是p(单位:%),y和x满足y <-0.75x + 2.015和y> -0.75x + 1.740的关系,σ满足σ<0.091,p满足p <2.85%。 即使当内部电介质层变薄时,也可以期望改善TC偏压特性,同时保持各种电特性,特别是足够的介电常数。