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    • 3. 发明申请
    • Shale shaker with vertical screens
    • 具有垂直筛网的页岩摇床
    • US20100181265A1
    • 2010-07-22
    • US12321358
    • 2009-01-20
    • David L. Schulte, JR.Paul DufilhoThomas Larson
    • David L. Schulte, JR.Paul DufilhoThomas Larson
    • B01D33/03B07B1/46B07B1/28
    • B01D33/0315B07B1/28B07B1/4609B07B2230/01
    • A screen assembly for a vibratory separator, the screen assembly vertically-mountable and further including a support, at least two screening faces on the support, said at least two screening faces each including screening material through which fluid is flowable from outside the screen assembly into a space within the screen assembly and interiorly of the at least two screening faces, and the support including an exit from which fluid may exit from within the screen assembly; shakers with at least one such screen assembly; and methods of using such a screen assembly in a vibratory separator. This abstract is provided to comply with the rules requiring an abstract which will allow a searcher or other reader to quickly ascertain the subject matter of the technical disclosure and is submitted with the understanding that it will not be used to interpret or limit the scope or meaning of the claims, 37 CFR 1.72(b).
    • 一种用于振动分离器的屏幕组件,所述屏幕组件可垂直安装并且还包括支撑件,所述支撑件上的至少两个屏蔽面,所述至少两个屏蔽面各自包括屏蔽材料,流体可从屏幕组件外部流动通过该屏蔽材料流入屏幕组件外部 屏幕组件内的空间以及至少两个筛面的内部,并且支撑件包括出口,流体可从该出口从筛网组件内出来; 具有至少一个这样的屏幕组件的振动器; 以及在振动分离器中使用这种筛网组件的方法。 提供此摘要是为了遵守规定要求摘要的规则,允许搜索者或其他读者快速确定技术信息的主题,并提交一个理解,即它不会用于解释或限制范围或含义 的权利要求,37 CFR 1.72(b)。
    • 4. 发明申请
    • Foldable stretching monitor
    • 可折叠拉伸监视器
    • US20060135332A1
    • 2006-06-22
    • US11016012
    • 2004-12-17
    • Thomas Larson
    • Thomas Larson
    • A63B23/00
    • A61B5/11A63B23/00A63B2023/006
    • A testing device for monitoring the stretching ability of a user. The device has a generally box-like structure that includes a monitor to measure the user's extent of reach and thus flexibility. The device can be configured for use by two users simultaneously. The device includes a system that allows the device to be configured in a first, “in-use” position, and in a second, “collapsed” position, during non-use. When in the second position, the device is compact, occupies less volume, occupies less surface area on a floor or other support surface, and is easy to carry.
    • 一种用于监测用户伸展能力的测试装置。 该设备具有通常为盒状结构,其包括用于测量用户的触及范围和因此灵活性的监视器。 该设备可以配置为同时由两个用户使用。 该设备包括允许在不使用期间将设备配置在第一“使用中”位置并且在第二“折叠”位置中的系统。 当处于第二位置时,该装置结构紧凑,体积小,占地面或其他支撑面的表面积少,易于携带。
    • 6. 发明授权
    • Techniques for analyzing data generated by instruments
    • 用于分析仪器产生的数据的技术
    • US07231324B2
    • 2007-06-12
    • US11118683
    • 2005-04-29
    • James OrrockThomas LarsonBruno SchuelerLawrence BotJames QuigleyEmir Gurer
    • James OrrockThomas LarsonBruno SchuelerLawrence BotJames QuigleyEmir Gurer
    • G06F15/00
    • G01N23/2273
    • According to one embodiment of the invention, a method for analyzing data from an instrument is disclosed. The raw data generated by the instrument, along with configuration data generated by a user, is packaged into a calling model. The raw data may include, for example, counts having a certain kinetic energy when analyzing photoelectron spectroscopy data. The configuration data may include several parameters selected by the user based on the composition and configuration of the structure being measured. The calling model may serve as an interface between the instrument and an engine for generating an algorithm for returning desired results to the user. The engine then generates the algorithm as well as the results specified by the user, and the calling model returns the results to the user. This allows a specific algorithm and results for a specific measured sample or structure to be generated using known algorithms and functions.
    • 根据本发明的一个实施例,公开了一种用于分析来自仪器的数据的方法。 由仪器生成的原始数据以及用户生成的配置数据被打包成一个呼叫模型。 原始数据可以包括例如在分析光电子能谱数据时具有一定动能的计数。 配置数据可以包括基于所测量结构的组成和配置的用户选择的几个参数。 呼叫模型可以用作仪器和引擎之间的接口,用于生成用于将期望结果返回给用户的算法。 然后,引擎生成算法以及用户指定的结果,调用模型将结果返回给用户。 这允许使用已知的算法和功能来生成特定的测量样本或结构的特定算法和结果。
    • 7. 发明申请
    • Techniques for analyzing data generated by instruments
    • 用于分析仪器产生的数据的技术
    • US20060247899A1
    • 2006-11-02
    • US11118683
    • 2005-04-29
    • James OrrockThomas LarsonBruno SchuelerLawrence BotJames QuigleyEmir Gurer
    • James OrrockThomas LarsonBruno SchuelerLawrence BotJames QuigleyEmir Gurer
    • G06F15/00
    • G01N23/2273
    • According to one embodiment of the invention, a method for analyzing data from an instrument is disclosed. The raw data generated by the instrument, along with configuration data generated by a user, is packaged into a calling model. The raw data may include, for example, counts having a certain kinetic energy when analyzing photoelectron spectroscopy data. The configuration data may include several parameters selected by the user based on the composition and configuration of the structure being measured. The calling model may serve as an interface between the instrument and an engine for generating an algorithm for returning desired results to the user. The engine then generates the algorithm as well as the results specified by the user, and the calling model returns the results to the user. This allows a specific algorithm and results for a specific measured sample or structure to be generated using known algorithms and functions.
    • 根据本发明的一个实施例,公开了一种用于分析来自仪器的数据的方法。 由仪器生成的原始数据以及用户生成的配置数据被打包成一个呼叫模型。 原始数据可以包括例如在分析光电子能谱数据时具有一定动能的计数。 配置数据可以包括基于所测量结构的组成和配置的用户选择的几个参数。 呼叫模型可以用作仪器和引擎之间的接口,用于生成用于将期望结果返回给用户的算法。 然后,引擎生成算法以及用户指定的结果,调用模型将结果返回给用户。 这允许使用已知的算法和功能来生成特定的测量样本或结构的特定算法和结果。