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    • 7. 发明申请
    • Memory command delay balancing in a daisy-chained memory topology
    • 内存命令延迟平衡菊花链内存拓扑
    • US20060041730A1
    • 2006-02-23
    • US10922299
    • 2004-08-19
    • Douglas Larson
    • Douglas Larson
    • G06F13/00
    • G11C7/22G06F3/0611G06F3/0629G06F3/0671G06F13/4243Y02D10/14Y02D10/151
    • A methodology for a daisy-chained memory topology wherein, in addition to the prediction of the timing of receipt of a response from a memory module (DIMM), the memory controller can effectively predict when a command sent by it will be executed by the addressee DIMM. By programming DIMM-specific command delay in the DIMM's command delay unit, the command delay balancing methodology according to the present disclosure “normalizes” or “synchronizes” the execution of the command signal across all DIMMs in the memory channel. With such ability to predict command execution timing, the memory controller can efficiently control power profile of all the DRAM devices (or memory modules) on a daisy-chained memory channel. A separate DIMM-specific response delay unit in the DIMM may also be programmed to provide DIMM-specific delay compensation in the response path, further allowing the memory controller to accurately ascertain the timing of receipt of a response thereat, and, hence, to better manage further processing of the response.
    • 一种菊花链存储器拓扑的方法,其中除了预测从存储器模块(DIMM)的响应的接收时间之外,存储器控制器可以有效地预测由其发送的命令何时由收件人执行 DIMM。 通过在DIMM的命令延迟单元中编程DIMM特定的命令延迟,根据本公开的命令延迟平衡方法“在规范化”或“同步”命令信号在存储器通道中的所有DIMM上的执行。 通过这种预测命令执行定时的能力,存储器控制器可以有效地控制菊花链式存储器通道上的所有DRAM设备(或存储器模块)的功率分布。 还可以将DIMM中的单独的DIMM特定的响应延迟单元编程为在响应路径中提供特定于DIMM的延迟补偿,进一步允许存储器控制器准确地确定在那里接收响应的时间,并因此更好地 管理响应的进一步处理。
    • 8. 发明申请
    • Filter system
    • 过滤系统
    • US20050082238A1
    • 2005-04-21
    • US10962335
    • 2004-10-08
    • Douglas Larson
    • Douglas Larson
    • B01D17/02
    • B01D17/0214B01D17/045Y10S210/05
    • A filter system for receiving an oil-in-water emulsion contaminated with an emulsified contaminant oil, and separating the emulsified contaminant oil from the oil-in-water emulsion includes a filter media for receiving the oil-in-water emulsion and emulsified contaminant oil, having an inner filter element formed from a 95 percent single pass efficiency 48 micron (5 micron nominal) filtering material of needle punch polypropylene felt, an outer filter element formed from a 95 percent single pass efficiency 19 micron absolute filtering material of a polypropylene microfiber material and a porous spunbond polypropylene sandwiching the outer filter media. The filter element de-emulsifies the emulsified contaminant oil from the oil-in-water emulsion into the contaminant oil and the oil-in-water emulsion, separates the de-emulsified contaminant oil from the oil-in-water emulsion, coalesces the separated contaminant oil and passes both the coalesced de-emulsified contaminant oil and the oil-in-water emulsion. A first tank supports the filter element and is further configured to hold a quantity of the separated coalesced contaminant oil and the oil-in-water emulsion. The first tank has an overflow passing to a second tank. The second tank has an oil separation assembly for removing the oil-in-water emulsion from the contaminant oil and passing the oil-in-water emulsion therefrom. A method for separating the emulsified contaminant oil from the oil-in-water emulsion and recovering the oil-in-water emulsion is also disclosed.
    • 一种用于接收被乳化污染物油污染的水包油乳液的过滤系统,并且将乳化的污染物油与水包油乳液分离,包括用于接收水包油乳液和乳化污染油的过滤介质 具有内部过滤元件,其由针刺聚丙烯毡的95%单通效率48微米(5微米标称)过滤材料形成,外部过滤元件由聚丙烯微纤维的95%单程效率19微米绝对过滤材料形成 材料和夹带外部过滤介质的多孔纺粘聚丙烯。 过滤元件将乳化的污染物油从水包油乳液中乳化成污染物油,水包油乳液将去乳化的污染物油与水包油乳液分离,将分离的 污染的油并且通过聚结的去乳化的污染物油和水包油乳液。 第一罐支撑过滤元件,并且进一步构造成容纳一定量的分离的聚结污染物油和水包油乳液。 第一个坦克有一个溢流通过第二个坦克。 第二罐具有油分离组件,用于从污染油中除去水包油乳液并从其中通过水包油乳液。 还公开了一种从水包油乳液中分离乳化的污染物油并回收水包油乳液的方法。