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    • 1. 发明授权
    • Power economizing by powering down hub partitions
    • 通过关闭集线器分区来节省电力
    • US08838932B2
    • 2014-09-16
    • US12942853
    • 2010-11-09
    • Allen K. BatesYun MouStephen L. SchwartzPankaj TandonDaniel J. Winarski
    • Allen K. BatesYun MouStephen L. SchwartzPankaj TandonDaniel J. Winarski
    • G06F12/00G06F3/06
    • G06F3/0625G06F3/0634G06F3/0647G06F3/0686Y02D10/154
    • An approach to power economization in a spoke and hub environment is presented. When a hub receives a data set from a first spoke, the hub writes the data set to a first partition that is associated with the first spoke. After the data transfer is complete, the hub powers down the first partition. If the first spoke sends additional data transfers to the hub while the first partition is powered down, the hub stores the additional data transfers in a second partition. When the first partition is powered up again, the hub moves the data intended for the first partition and that was stored in the second partition. The data is moved from the second partition to the first partition. The hub may monitor the size of the addition data transfers. If the data transfer is large, the hub may power up the first partition, write the data in the first partition, and move to the first partition any data that was intended for the first partition but written to the second partition while the first partition was powered down.
    • 介绍了辐射和枢纽环境中的电力节约方法。 当集线器从第一辐条接收数据集时,集线器将数据集写入与第一辐条相关联的第一分区。 数据传输完成后,集线器将关闭第一个分区。 如果第一个辐条在第一个分区断电时向轮毂发送额外的数据传输,则集线器将附加数据传输存储在第二个分区中。 当第一个分区再次通电时,集线器将移动第一个分区的数据,并存储在第二个分区中。 数据从第二个分区移动到第一个分区。 集线器可以监视添加数据传输的大小。 如果数据传输量较大,集线器可能会启动第一个分区,将数据写入第一个分区,并将第一个分区的数据写入第一个分区,并将第一个分区的数据写入第二个分区 关机
    • 2. 发明申请
    • POWER ECONOMIZING BY POWERING DOWN HUB PARTITIONS
    • 通过发电降低共享空间来实现电力经济
    • US20120117350A1
    • 2012-05-10
    • US12942853
    • 2010-11-09
    • Allen K. BatesYun MouStephen L. SchwartzPankaj TandonDaniel J. Winarski
    • Allen K. BatesYun MouStephen L. SchwartzPankaj TandonDaniel J. Winarski
    • G06F12/02
    • G06F3/0625G06F3/0634G06F3/0647G06F3/0686Y02D10/154
    • An approach to power economization in a spoke and hub environment is presented. When a hub receives a data set from a first spoke, the hub writes the data set to a first partition that is associated with the first spoke. After the data transfer is complete, the hub powers down the first partition. If the first spoke sends additional data transfers to the hub while the first partition is powered down, the hub stores the additional data transfers in a second partition. When the first partition is powered up again, the hub moves the data intended for the first partition and that was stored in the second partition. The data is moved from the second partition to the first partition. The hub may monitor the size of the addition data transfers. If the data transfer is large, the hub may power up the first partition, write the data in the first partition, and move to the first partition any data that was intended for the first partition but written to the second partition while the first partition was powered down.
    • 介绍了辐射和枢纽环境中的电力节约方法。 当集线器从第一辐条接收数据集时,集线器将数据集写入与第一辐条相关联的第一分区。 数据传输完成后,集线器将关闭第一个分区。 如果第一个辐条在第一个分区断电时向轮毂发送额外的数据传输,则集线器将附加数据传输存储在第二个分区中。 当第一个分区再次通电时,集线器将移动第一个分区的数据,并存储在第二个分区中。 数据从第二个分区移动到第一个分区。 集线器可以监视添加数据传输的大小。 如果数据传输量较大,集线器可能会启动第一个分区,将数据写入第一个分区,并将第一个分区的数据写入第一个分区,并将第一个分区的数据写入第二个分区 关机
    • 7. 发明申请
    • Trenched Sample Assembly for Detection of Analytes with Electromagnetic Read-Write Heads
    • 用于用电磁读写头检测分析物的倾斜的样品组件
    • US20120157330A1
    • 2012-06-21
    • US12970837
    • 2010-12-16
    • Dylan J. BodayStephen L. SchwartzAnna Wanda TopolSandra L. WatersDaniel J. Winarski
    • Dylan J. BodayStephen L. SchwartzAnna Wanda TopolSandra L. WatersDaniel J. Winarski
    • C40B30/04C40B50/06B82Y15/00
    • G01N33/54333B82Y15/00G01N27/745G01N33/543G01N33/54346G01N33/54366
    • Described are embodiments of an invention for a sample assembly with trenches for detection of analytes with electromagnetic read heads. The sample assembly includes an outer layer with at least one sample trench. The sample trench includes a first set of antibodies that are bonded on a first surface of a base layer. Target antigens are bonded with the first set of antibodies, and a second set of antibodies are bonded to the target antigens. Further, the sample trench includes nanoparticles that are bonded to the second set of antibodies. A head module includes a write head for magnetizing nanoparticles and a read sensor for detecting the magnetized nanoparticles, and thus, the target antigens. The sample trench constrains the biological sample, and thus the target antigen, during the preparation and subsequent analysis of the biological sample. Accordingly, the target antigen is aligned with read elements of a head module such that the target antigen is reliably and accurately detected. Further, to ensure reliable and accurate detection, the outer layer is formed with a low friction material allowing the read head to remain in contact with the upper surface of the outer layer during the process of detection.
    • 描述了具有用于检测具有电磁读取头的分析物的沟槽的样品组件的发明的实施例。 样品组件包括具有至少一个样品沟槽的外层。 样品槽包括结合在基层的第一表面上的第一组抗体。 靶抗原与第一组抗体结合,第二组抗体与靶抗原结合。 此外,样品沟槽包括与第二组抗体结合的纳米颗粒。 头模块包括用于磁化纳米颗粒的写入头和用于检测磁化纳米颗粒的读取传感器,从而检测靶抗原。 样品沟槽在生物样品的制备和随后分析过程中约束生物样品,从而限制靶抗原。 因此,目标抗原与头部模块的读取元件对准,从而可靠且准确地检测靶抗原。 此外,为了确保可靠且准确的检测,外层由低摩擦材料形成,允许读取头在检测过程中与外层的上表面保持接触。
    • 8. 发明授权
    • Trenched sample assembly for detection of analytes with electromagnetic read-write heads
    • 用电磁读写头检测分析物的倾斜样品组件
    • US09304130B2
    • 2016-04-05
    • US12970837
    • 2010-12-16
    • Dylan J. BodayStephen L. SchwartzAnna Wanda TopolSandra L. WatersDaniel J. Winarski
    • Dylan J. BodayStephen L. SchwartzAnna Wanda TopolSandra L. WatersDaniel J. Winarski
    • G01N33/553G01N33/543B82Y15/00
    • G01N33/54333B82Y15/00G01N27/745G01N33/543G01N33/54346G01N33/54366
    • Described are embodiments of an invention for a sample assembly with trenches for detection of analytes with electromagnetic read heads. The sample assembly includes an outer layer with at least one sample trench. The sample trench includes a first set of antibodies that are bonded on a first surface of a base layer. Target antigens are bonded with the first set of antibodies, and a second set of antibodies are bonded to the target antigens. Further, the sample trench includes nanoparticles that are bonded to the second set of antibodies. A head module includes a write head for magnetizing nanoparticles and a read sensor for detecting the magnetized nanoparticles, and thus, the target antigens. The sample trench constrains the biological sample, and thus the target antigen, during the preparation and subsequent analysis of the biological sample. Accordingly, the target antigen is aligned with read elements of a head module such that the target antigen is reliably and accurately detected. Further, to ensure reliable and accurate detection, the outer layer is formed with a low friction material allowing the read head to remain in contact with the upper surface of the outer layer during the process of detection.
    • 描述了具有用于检测具有电磁读取头的分析物的沟槽的样品组件的发明的实施例。 样品组件包括具有至少一个样品沟槽的外层。 样品槽包括结合在基层的第一表面上的第一组抗体。 靶抗原与第一组抗体结合,第二组抗体与靶抗原结合。 此外,样品沟槽包括与第二组抗体结合的纳米颗粒。 头模块包括用于磁化纳米颗粒的写入头和用于检测磁化纳米颗粒的读取传感器,从而检测靶抗原。 样品沟槽在生物样品的制备和随后分析过程中约束生物样品,从而限制靶抗原。 因此,目标抗原与头部模块的读取元件对准,从而可靠且准确地检测靶抗原。 此外,为了确保可靠且准确的检测,外层由低摩擦材料形成,允许读取头在检测过程中与外层的上表面保持接触。