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    • 3. 发明授权
    • Structure of multilayer ceramic device
    • 多层陶瓷器件的结构
    • US08363382B2
    • 2013-01-29
    • US13024470
    • 2011-02-10
    • Ching-Hohn LienHong-Zong Xu
    • Ching-Hohn LienHong-Zong Xu
    • H01G4/005
    • H01G4/005H01G4/30Y10T428/12056
    • A multilayer ceramic device comprises a laminated ceramic body having opposite end surfaces, a pair of conductive electrodes each respectively attached to one end surface of the laminated ceramic body and a plurality of alternately staggered internal electrodes within the laminated ceramic body configured in an alternating manner and each electrically connected to the corresponding conductive electrodes respectively; each conductive electrodes of the multilayer ceramic device is further covered with a solder paste layer so that the multilayer ceramic device is thus made without any plating step and no need of treating waste liquid nickel or waste liquid tin as well as no problem of environmental pollution caused by plating solution, thereby lowering manufacturing costs and reducing processing time.
    • 多层陶瓷器件包括具有相对端面的层叠陶瓷体,分别安装在层叠陶瓷体的一个端面上的一对导电电极和层叠陶瓷体内的多个交错交错的内部电极,其以交替的方式配置和 各自电连接到相应的导电电极; 多层陶瓷器件的每个导电电极进一步用焊膏层覆盖,使得多层陶瓷器件因此不经任何电镀步骤而制成,并且不需要处理废液镍或废液锡,并且没有引起环境污染的问题 通过电镀液,降低制造成本,缩短加工时间。
    • 4. 发明授权
    • Method for identifying a most-probable-point in original space and its
application for calculating failure probabilities
    • 识别原始空间最可能点的方法及其计算故障概率的应用
    • US5608659A
    • 1997-03-04
    • US228993
    • 1994-04-18
    • Hong-Zong LinMohammad R. Khalessi
    • Hong-Zong LinMohammad R. Khalessi
    • G06F11/25G06F11/34G06F17/18G06F17/10
    • G06F17/18G06F11/2257G06F11/34
    • The present invention is a method for identifying a Most-Probable-Point (MPP) in original space obviating the need for a probability transformation, for use in first order/second order reliability analysis. It comprises generating the linear approximation of a limit-state-function, g(x) about the median, mean point, or mode of random variables, x of g(x). g(x) is defined so that g(x)f0 denotes a failure set. The Most-Probable-Point-Locus (MPPL) of g.sub.1, MPPL.sub.1, is constructed by the steps of: i) identifying the mode of x; ii) identifying the MPP of g.sub.1 (x)=c, where c is an arbitrary constant, and iii) constructing said MPPL.sub.1 by connecting said mode of x from step i), above, and the MPPs corresponding to different c's from step ii), above. A quadratic search algorithm is to identify point MPP.sub.1, the intersection of MPPL.sub.1 and g(x)=0, based on the following convergence criteria: ##EQU1## The process is then stopped, unless the convergence criteria are not satisfied. g.sub.2, the linear approximation of the limit-state-function, g(x) about MPP.sub.1 is generated. MPP.sub.21, the Most-Probable-Point of g.sub.2 (x)=0 is located. The approximate MPPL of g.sub.2, MPPL.sub.2, is constructed by connecting the mode and the MPP.sub.21. The quadratic search algorithm is used to identify point MPP.sub.2,, the intersection of MPPL.sub.2 and g(x)=0 based on the convergence criteria. g.sub.f (x) is updated, where j=2, 3, . . . , m, where m is the total number of steps required for convergence.
    • 本发明是用于识别原始空间中的最可能点(MPP)的方法,其消除了对一阶/二阶可靠性分析中使用的概率转换的需要。 它包括生成关于随机变量的中值,平均点或模式的极限状态函数g(x)的线性近似,g(x)的x。 g(x)被定义为使得g(x)f0表示故障集合。 g1,MPPL1的最可能点轨迹(MPPL)由以下步骤构成:i)识别x的模式; ii)识别g1(x)= c的MPP,其中c是任意常数,以及iii)通过连接上述步骤i)的x的方式和与步骤ii)中对应于不同c的MPP来构建所述MPPL1, , 以上。 二次搜索算法是基于以下收敛标准来识别点MPP1,MPPL1和g(x)= 0的交点:g(+ E,uns x + EE)= 0,以及过程 然后停止,除非收敛标准不满足。 g2,产生关于MPP1的极限状态函数g(x)的线性近似。 MPP21,g2(x)= 0的最可能点位于。 通过连接模式和MPP21构建g2,MPPL2的近似MPPL。 基于收敛标准,采用二次搜索算法识别MPP2点,MPPL2和g(x)= 0。 gf(x)被更新,其中j = 2,3。 。 。 ,m,其中m是收敛所需的步骤总数。
    • 6. 发明申请
    • STRUCTURE OF MULTILAYER CERAMIC DEVICE
    • 多层陶瓷器件的结构
    • US20120208040A1
    • 2012-08-16
    • US13024470
    • 2011-02-10
    • Ching-Hohn LIENHong-Zong Xu
    • Ching-Hohn LIENHong-Zong Xu
    • B32B15/02
    • H01G4/005H01G4/30Y10T428/12056
    • A multilayer ceramic device comprises a laminated ceramic body having opposite end surfaces, a pair of conductive electrodes each respectively attached to one end surface of the laminated ceramic body and a plurality of alternately staggered internal electrodes within the laminated ceramic body configured in an alternating manner and each electrically connected to the corresponding conductive electrodes respectively; each conductive electrodes of the multilayer ceramic device is further covered with a solder paste layer so that the multilayer ceramic device is thus made without any plating step and no need of treating waste liquid nickel or waste liquid tin as well as no problem of environmental pollution caused by plating solution, thereby lowering manufacturing costs and reducing processing time.
    • 多层陶瓷器件包括具有相对端面的层叠陶瓷体,分别安装在层叠陶瓷体的一个端面上的一对导电电极和层叠陶瓷体内的多个交错交错的内部电极,其以交替的方式配置和 各自电连接到相应的导电电极; 多层陶瓷器件的每个导电电极进一步用焊膏层覆盖,使得多层陶瓷器件因此不经任何电镀步骤而制成,并且不需要处理废液镍或废液锡,并且没有引起环境污染的问题 通过电镀液,降低制造成本,缩短加工时间。