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    • 1. 发明授权
    • System and method for interlocking support blocks
    • 联锁支撑块的系统和方法
    • US08069630B2
    • 2011-12-06
    • US11728868
    • 2007-03-27
    • David C. SlackNavin Kadakia
    • David C. SlackNavin Kadakia
    • E04C3/00E04C2/04E04B2/00B01D24/00B01D24/12
    • B01D24/24B01D24/4631Y10T29/49826
    • A system and method for forming a filter media support system with multiple locking mechanisms. The support system comprises two or more interlocking rows of support blocks. One or more slides and one or more guides protrude from the side walls of the blocks. Each guide is conformed to receive one slide from a neighboring block, forming a first locking joint. The side walls also comprise one or more nubs and one or more recesses. Each nub is conformed to fit within one recess of a neighboring block, forming a second locking joint. In one embodiment, the method for assembling the support system comprises aligning a slide of a first support block with a guide of a second support block. The slide of the first support block is vertically moved into the guide of the second support block. Force is applied so that the nubs are flexed within the recesses.
    • 一种用于形成具有多个锁定机构的过滤介质支撑系统的系统和方法。 支撑系统包括两个或更多个互锁排的支撑块。 一个或多个滑块和一个或多个引导件从块体的侧壁突出。 每个引导件都符合从相邻块接收一个滑块,形成第一锁定接头。 侧壁还包括一个或多个凹部和一个或多个凹部。 每个凸块均配合在相邻块的一个凹部中,形成第二锁定接头。 在一个实施例中,用于组装支撑系统的方法包括将第一支撑块的滑块与第二支撑块的引导件对准。 第一支撑块的滑动件垂直地移动到第二支撑块的引导件中。 施加力,使得凸块在凹部内弯曲。
    • 4. 发明授权
    • Dynamic software tracing
    • 动态软件跟踪
    • US08140911B2
    • 2012-03-20
    • US12407435
    • 2009-03-19
    • Stefano BorghettiAntonio Sgro′
    • Stefano BorghettiAntonio Sgro′
    • G06F11/00
    • G06F11/3636G06F11/3409G06F11/3476G06F11/3616G06F2201/865G06F2201/875
    • A method, computer program product and system for dynamically changing a trace level, and optionally the trace size, depending on a recognized critical path. In one embodiment of the invention, a method of dynamic software tracing includes identifying one or more critical patterns of a software code which can influence its execution; allocating a software logging metric to each identified critical pattern; searching for one or more critical patterns in the software code to determine one or more actual critical patterns; and attributing the software logging metric associated with each identified critical pattern to the actual critical pattern to discover areas in the software code that may impact performance.
    • 一种方法,计算机程序产品和系统,用于根据识别的关键路径来动态地改变跟踪级别,以及可选的跟踪大小。 在本发明的一个实施例中,动态软件跟踪​​的方法包括识别可影响其执行的软件代码的一个或多个关键模式; 将软件记录度量分配给每个识别的关键模式; 在软件代码中搜索一个或多个关键模式以确定一个或多个实际临界模式; 并将与每个确定的关键模式相关联的软件记录度量归因于实际的关键模式,以发现可能影响性能的软件代码中的区域。
    • 7. 发明授权
    • System method for interlocking support blocks
    • 联锁支撑块的系统方法
    • US07997041B2
    • 2011-08-16
    • US12279364
    • 2006-02-15
    • David C. SlackNavin KadakiaJoseph M. Bonazza
    • David C. SlackNavin KadakiaJoseph M. Bonazza
    • E04C3/00E04C2/04E04B2/00B01D24/00B01D24/12
    • B01D24/24B01D24/4631Y10T29/49826
    • A system and method for forming a filter media support system with dual locking mechanisms. The support system comprises two or more interlocking rows of support blocks. One or more slides and one or more guides protrude from the side walls of the blocks. Each guide is conformed to receive one slide from a neighboring block, forming a first locking joint. The side walls also comprise one or more posts and one or more sockets. Each post is conformed to fit within one socket of a neighboring block, forming a second locking joint.In one embodiment, the method for assembling the support system comprises aligning a slide of a first support block with a guide of a second support block. The slide of the first support block is vertically moved into the guide of the second support block. Force is applied so that the posts snap-lock into the sockets.
    • 一种用于形成具有双重锁定机构的过滤介质支撑系统的系统和方法。 支撑系统包括两个或更多个互锁排的支撑块。 一个或多个滑块和一个或多个引导件从块体的侧壁突出。 每个引导件都符合从相邻块接收一个滑块,形成第一锁定接头。 侧壁还包括一个或多个柱和一个或多个插座。 每个柱子均符合相邻块的一个插座内,形成第二个锁定接头。 在一个实施例中,用于组装支撑系统的方法包括将第一支撑块的滑块与第二支撑块的引导件对准。 第一支撑块的滑动件垂直地移动到第二支撑块的引导件中。 施加力以使柱体卡入锁孔。
    • 10. 发明授权
    • Validation of processors using a self-generating test case framework
    • 使用自生产测试用例框架验证处理器
    • US08140901B2
    • 2012-03-20
    • US12627618
    • 2009-11-30
    • Prathiba KumarSatish Kumar SadasivamSrinivasan Subramanian
    • Prathiba KumarSatish Kumar SadasivamSrinivasan Subramanian
    • G06F11/00
    • G06F11/3672G06F11/2242G06F11/263
    • A method for testing processors is disclosed. The method includes generating a plurality of pools, where each pool includes a test program that includes a plurality of test cases, and setting a flag for each of the plurality of pools indicating that the pool is ready to be executed. Each processor performs a pool execution cycle a predetermined number of times. The pool execution cycle includes selecting a pool that is ready to be executed and unsetting the flag for the selected pool, performing an execution cycle of the test program included in the selected pool, and setting the flag indicating that the pool is ready to be executed upon completion of the execution cycle of the test program. The execution cycle of the test program includes regenerating a test case to create a new case that is flagged as the next test case for execution in the execution cycle.
    • 公开了一种用于测试处理器的方法。 该方法包括生成多个池,其中每个池包括包括多个测试用例的测试程序,并且为多个池中的每一个设置指示池准备执行的标志。 每个处理器执行池执行周期预定次数。 池执行周期包括选择准备执行的池并取消设置所选择的池的标志,执行包括在所选择的池中的测试程序的执行周期,以及设置指示池准备执行的标志 完成测试程序的执行周期。 测试程序的执行周期包括重新生成一个测试用例,以创建一个新的案例,该案例被标记为下一个在执行周期中执行的测试用例。