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    • 1. 发明申请
    • Using a call stack hash to record the state of a process
    • 使用调用堆栈哈希来记录进程的状态
    • US20060253837A1
    • 2006-11-09
    • US11108087
    • 2005-04-15
    • William HudsonVamshidhar KommineniYi MengKenneth MaGerald Maffeo
    • William HudsonVamshidhar KommineniYi MengKenneth MaGerald Maffeo
    • G06F9/44
    • G06F11/366G06F11/3636
    • In embodiments of the invention, selected aspects of a process' call stacks are hashed, and the hash is used to capture the execution state of the process in a concise form and with minimal impact on the performance of the process and with no modification to the process code. The hash allows vendors and developers to classify failures in order to associate them with their known root causes to support rapid customer feedback and to maximize efficiency of correction. Further, the hash provides a metric usable to prioritize diagnosis of failures. In an embodiment of the invention, the identities of modules on the call stack are hashed in combination with some but not all offset information to minimize the affect of patches and minor changes to the code, and improve the ability to discriminate different execution paths.
    • 在本发明的实施例中,过程“调用堆栈”的选定方面被散列,并且散列用于以简洁的形式捕获进程的执行状态,并且对该进程的性能具有最小的影响,并且不修改 过程代码。 哈希允许供应商和开发人员对故障进行分类,以便将其与已知的根本原因相关联,以支持快速的客户反馈并最大限度地提高纠正效率。 此外,散列提供了可用于优先排除故障诊断的度量。 在本发明的一个实施例中,调用堆栈上的模块的标识与一些但不是全部的偏移信息相结合地散列,以最小化补丁的影响和对该代码的微小变化,并提高区分不同的执行路径的能力。
    • 6. 发明申请
    • ELECTRODES WITH SOLID POLYMER ELECTROLYTES AND REDUCED POROSITY
    • 具有固体聚合物电解质的电极和减少的孔隙度
    • US20110281175A1
    • 2011-11-17
    • US13128234
    • 2009-11-06
    • William HudsonMohit SinghMichael Geier
    • William HudsonMohit SinghMichael Geier
    • H01M10/0565
    • H01M10/056H01M4/13H01M4/485H01M4/624H01M10/0565Y02E60/122
    • An electrode/electrolyte assembly that has a well-integrated interface between an electrode and a solid polymer electrolyte film, which provides continuous, ionically-conducting and electronically insulating paths between the films is provided. A slurry is made containing active electrolyte material, a liquefied, ionically-conductive first polymer electrolyte with dissolved lithium salt, and conductive additive. The binder may have been liquefied by dissolving in a volatile solvent or by melting. The slurry is cast or extruded as a thin film and dried or cooled to form an electrode layer that has some inherent porosity. A liquefied second polymer electrolyte that includes a salt is cast over the electrode film. Some of the liquefied second polymer electrolyte fills at least some of the pores in the electrode film and the rest forms an electrolyte layer on top of the electrode film. After solidifying by either drying or cooling, the dual-cast electrode assembly includes both an electrode with low porosity and an adjacent solid polymer electrolyte film. A lithium secondary battery that employs the novel electrode assembly is also provided.
    • 提供了一种在电极和固体聚合物电解质膜之间具有良好集成的界面的电极/电解质组件,其在膜之间提供连续的离子导电和电绝缘路径。 制备含有活性电解质材料,具有溶解的锂盐的液化,离子导电的第一聚合物电解质和导电添加剂的浆料。 粘合剂可能通过溶解在挥发性溶剂中或通过熔化而液化。 将浆料浇铸或挤出为薄膜并干燥或冷却以形成具有一定固有孔隙率的电极层。 将包含盐的液化的第二聚合物电解质浇铸在电极膜上。 一些液化的第二聚合物电解质填充电极膜中的至少一些孔,其余的在电极膜的顶部形成电解质层。 在通过干燥或冷却固化之后,双电极电极组件包括具有低孔隙率的电极和相邻的固体聚合物电解质膜。 还提供了采用新型电极组件的锂二次电池。