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    • 1. 发明授权
    • Detecting a fouled air filter in a computer equipment enclosure
    • 检测计算机设备外壳中的污垢空气过滤器
    • US07751990B2
    • 2010-07-06
    • US12176795
    • 2008-07-21
    • Brian M. KerriganRandolph S. KolvickJason A. MattesonThomas D. Pahel, Jr.Mark E. Steinke
    • Brian M. KerriganRandolph S. KolvickJason A. MattesonThomas D. Pahel, Jr.Mark E. Steinke
    • G01B3/44
    • B01D46/0086H05K7/20181
    • Detecting a fouled air filter in a computer equipment enclosure that includes an air filter, a supply plenum connecting the air filter and the computer equipment enclosure, a fan operating at a current fan speed, and a filter monitoring module connected for data communications to a management module. Detecting a fouled air filter according to embodiments of the present invention includes calculating, by the filter monitoring module, a pressure differential across the air filter; determining, for the current fan speed by the filter monitoring module in dependence upon a pressure differential profile for the air filter, whether the calculated pressure differential across the air filter exceeds a predetermined threshold value; and if the calculated pressure differential across the air filter exceeds the predetermined threshold value, reporting, by the filter monitoring module to the management module, that the calculated pressure differential across the air filter exceeds the predetermined threshold value.
    • 在包括空气过滤器,连接空气过滤器和计算机设备外壳的供气室,以当前风扇速度运行的风扇和连接到管理数据通信的过滤器监控模块的计算机设备外壳中检测污浊空气过滤器 模块。 检测根据本发明的实施例的污浊空气过滤器包括通过过滤器监控模块计算空气过滤器两端的压力差; 根据所述空气过滤器的压差曲线来确定由所述过滤器监控模块获得的当前风扇速度,所述计算出的所述空气过滤器上的压差是否超过预定阈值; 并且如果计算出的空气过滤器的压差超过预定阈值,则由过滤器监视模块向管理模块报告计算出的空气过滤器上的压力差超过预定阈值。
    • 2. 发明申请
    • Detecting A Fouled Air Filter In A Computer Equipment Enclosure
    • 在计算机设备外壳中检测污垢空气过滤器
    • US20100017151A1
    • 2010-01-21
    • US12176795
    • 2008-07-21
    • Brian M. KerriganRandolph S. KolvickJason A. MattesonThomas D. Pahel, JR.Mark E. Steinke
    • Brian M. KerriganRandolph S. KolvickJason A. MattesonThomas D. Pahel, JR.Mark E. Steinke
    • G01F1/34G01N15/08
    • B01D46/0086H05K7/20181
    • Detecting a fouled air filter in a computer equipment enclosure that includes an air filter, a supply plenum connecting the air filter and the computer equipment enclosure, a fan operating at a current fan speed, and a filter monitoring module connected for data communications to a management module. Detecting a fouled air filter according to embodiments of the present invention includes calculating, by the filter monitoring module, a pressure differential across the air filter; determining, for the current fan speed by the filter monitoring module in dependence upon a pressure differential profile for the air filter, whether the calculated pressure differential across the air filter exceeds a predetermined threshold value; and if the calculated pressure differential across the air filter exceeds the predetermined threshold value, reporting, by the filter monitoring module to the management module, that the calculated pressure differential across the air filter exceeds the predetermined threshold value.
    • 在包括空气过滤器,连接空气过滤器和计算机设备外壳的供气室,以当前风扇速度运行的风扇和连接到管理数据通信的过滤器监控模块的计算机设备外壳中检测污浊空气过滤器 模块。 检测根据本发明的实施例的污浊空气过滤器包括通过过滤器监控模块计算空气过滤器两端的压力差; 根据所述空气过滤器的压差曲线来确定由所述过滤器监控模块获得的当前风扇速度,所述计算出的所述空气过滤器上的压差是否超过预定阈值; 并且如果计算出的空气过滤器的压差超过预定阈值,则由过滤器监视模块向管理模块报告计算出的空气过滤器上的压力差超过预定阈值。
    • 8. 发明申请
    • MULTI-LEVEL DIMM ERROR REDUCTION
    • 多级DIMM错误减少
    • US20120079314A1
    • 2012-03-29
    • US12891309
    • 2010-09-27
    • Vinod KamathJason A. MattesonGregory J. McKnightMark E. Steinke
    • Vinod KamathJason A. MattesonGregory J. McKnightMark E. Steinke
    • G06F11/07
    • G06F11/0793G06F11/073
    • Embodiments of the present invention include computer-implemented methods for selectively applying remedial actions, according to a predefined order, for reducing the error rate in a computer memory system. In one embodiment, an ordered set of remedial actions are sequentially invoked in response to a single-bit error (SBE) in a DIMM reaching successive error thresholds. For example, in an air-cooled system, the remedial actions may include dynamically increasing a DIMM refresh rate, dynamically increasing a rate of airflow used to cool the DIMMs, and dynamically throttling the DIMMs. The remedial actions may be layered as they are successively invoked, to provide a cumulative remedial effect. At least two of the remedial actions may be simultaneously invoked in response to a multi-bit error rate reaching an associated threshold.
    • 本发明的实施例包括用于根据预定义的顺序选择性地应用补救动作以减少计算机存储器系统中的错误率的计算机实现的方法。 在一个实施例中,响应于DIMM中的单位错误(SBE)达到连续的错误阈值,顺序地调用有序的一组补救动作。 例如,在风冷系统中,补救措施可以包括动态地增加DIMM刷新速率,动态地增加用于冷却DIMM的气流速率,以及动态地调节DIMM。 补救措施可以按照它们被依次调用来分层,以提供累积的补救效果。 响应于达到相关阈值的多位错误率,可以同时调用至少两个补救动作。