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    • 1. 发明授权
    • Method of manufacturing semiconductor device
    • US06432743B1
    • 2002-08-13
    • US09840578
    • 2001-04-23
    • Masao Shimada
    • Masao Shimada
    • H01L2144
    • A surface of a semiconductor wafer having a plurality of semiconductor elements thereon is laminated on a first wafer holding substrate. Subsequently, the whole rear surface of the semiconductor wafer is coated with a first conductive layer. Then a second conductive layer is selectively formed thereon. Then, a rear surface side glass substrate is laminated on the first and second conductive layer. Subsequently, the first wafer holding substrate is peeled off. Subsequently, the semiconductor wafer is selectively etched so as to be separated into semiconductor elements. Then, the first conductive layer is connected to a ground potential to measure electrical characteristics of the semiconductor elements and sort the semiconductor elements into non-defectives and defectives. Then, the first conductive layer is selectively etched so as to be separated into chips and thus semiconductor pellets are formed. Finally, the second wafer holding substrate is peeled off.
    • 9. 发明授权
    • Automatic generating system of connection configuration diagram among
units
    • 自动生成系统的连接配置图单位
    • US5038294A
    • 1991-08-06
    • US271680
    • 1988-11-16
    • Hiroshi ArakawaMasao ShimadaIsao Nakada
    • Hiroshi ArakawaMasao ShimadaIsao Nakada
    • G06F17/50
    • G06F17/509G06F2217/06G06F2217/36Y10S706/921
    • Generating apparatus and method by which all steps of the procedure for generating a configuration diagram of connection between a plurality of units constituting a system can be automated. The automatic connection configuration diagram generating system comprises a first memory for storing data indicative of the units by which the system is constituted, a second memory for storing data indicative of a layout according to which the units of the system are laid, a knowledge base for incorporating a set of rules indicative of connection specifications for all of the units of the system, a selector for selecting connection specification rules for desired units from the rule set stored in the knowledge base, a controller for determining a connection structure on the basis of the selected rules and the data stored in the first and second memories, and a third memory for storing the connection structure determined by the controller.
    • 用于生成构成系统的多个单元之间的连接的配置图的过程的所有步骤的生成装置和方法可以自动化。 自动连接配置图生成系统包括:第一存储器,用于存储指示系统构成的单元的数据;第二存储器,用于存储表示布置系统的单元的数据的数据;第二存储器, 包括指示系统的所有单元的连接规范的一组规则,用于从存储在知识库中的规则集中选择所需单元的连接规范规则的选择器,用于基于所述知识库中的所述规则集确定连接结构的控制器 选择的规则和存储在第一和第二存储器中的数据,以及第三存储器,用于存储由控制器确定的连接结构。
    • 10. 发明申请
    • COMPUTER-IMPLEMENTED METHOD FOR PERFORMING SIMULATION
    • 用于执行仿真的计算机实现方法
    • US20150025859A1
    • 2015-01-22
    • US14314925
    • 2014-06-25
    • Kumar K. TammaMasao ShimadaSiti Ujila Binti MasuriXiangmin Zhou
    • Kumar K. TammaMasao ShimadaSiti Ujila Binti MasuriXiangmin Zhou
    • G06F17/50G06F17/10
    • G06F17/504G06F17/5018G06F2217/16
    • A computer-implemented method for performing simulation includes establishing a mesh of a physical domain with nodes. The nodes represent a discretized physical quantity. The method accesses one or more different algorithms for evolving the nodes through sequential time steps. The method determines a unique combination of parameter values for each algorithm. In some examples, the parameter values can control dissipation, dispersion, and overshoot for each algorithm, as well as whether each algorithm is implicit or explicit. In some examples, the method can select one or more subsets of the nodes, and/or identify one or more time increments. The method can evolve the nodes in time, optionally using different time increments for different nodes in the mesh, and/or optionally using different algorithms for different nodes in the mesh. The method can optionally identify if an algorithm has failed to converge to a solution, and can switch to a different algorithm.
    • 用于执行仿真的计算机实现的方法包括:建立具有节点的物理域的网格。 节点表示离散的物理量。 该方法访问一个或多个不同的算法,以通过连续的时间步长来演进节点。 该方法确定每个算法的参数值的唯一组合。 在一些示例中,参数值可以控制每个算法的耗散,色散和过冲,以及每个算法是否是隐式或显式的。 在一些示例中,该方法可以选择节点的一个或多个子集,和/或识别一个或多个时间增量。 该方法可以及时地演进节点,可选地为网格中的不同节点使用不同的时间增量,和/或可选地为网格中的不同节点使用不同的算法。 该方法可以可选地识别算法是否不能收敛到解,并且可以切换到不同的算法。