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    • 51. 发明申请
    • Method for using a timer based SMI for system configuration after a resume event
    • 在恢复事件之后使用基于计时器的SMI进行系统配置的方法
    • US20050154870A1
    • 2005-07-14
    • US10755132
    • 2004-01-09
    • Ricardo MartinezTodd MartinJim Walker
    • Ricardo MartinezTodd MartinJim Walker
    • G06F9/00G06F9/445
    • G06F9/4418
    • A method and system for an improved wake mechanism of an information handling system (IHS) includes an event handler component (EHC) for handling an event in the IHS. A first device configuration component (DCC) receives a first input from the EHC. In response to the first input, it configures a device having a wakeup latency time (WLT) less than or equal to a predefined transition time. A second DCC receives a second input from the EHC. In response to the second input, it configures a device having a WLT greater than the predefined transition time. A time delay component introduces a predefined time delay in the configuration of the device having the WLT greater than the predefined transition time. A control transfer component transfers control between a BIOS and an operating system of the IHS responsive to the event.
    • 用于改进信息处理系统(IHS)的唤醒机制的方法和系统包括用于处理IHS中的事件的事件处理器组件(EHC)。 第一设备配置组件(DCC)从EHC接收第一输入。 响应于第一输入,它配置具有小于或等于预定转换时间的唤醒等待时间(WLT)的设备。 第二个DCC从EHC接收第二个输入。 响应于第二输入,它配置具有大于预定转换时间的WLT的设备。 时间延迟组件在具有大于预定转换时间的WLT的设备的配置中引入预定义的时间延迟。 控制传输组件响应于事件在BIOS和操作系统之间传输控制。
    • 57. 发明授权
    • Fail as is mechanism and method
    • 失败的机制和方法
    • US08256518B2
    • 2012-09-04
    • US12695754
    • 2010-01-28
    • Oguzhan GuvenSeth ConawayRicardo MartinezFrank Coss
    • Oguzhan GuvenSeth ConawayRicardo MartinezFrank Coss
    • E21B34/06E21B34/00
    • E21B34/10E21B23/006E21B2034/002
    • A technique enables failsafe control over actuators used to actuate downhole tools. The technique may utilize a well system having a tool with an adjustable member. An actuation mechanism serves as a fail-as-is mechanism and works in cooperation with the adjustable member. The actuation member is shiftable upon receiving a predetermined input; however the actuation member does not move the adjustable member upon each shift. Once the actuation member has been shifted the requisite number of times to move the adjustable member to another position, at least one subsequent shift of the actuation member is not able to cause movement of the adjustable member. The result is a fail-as-is technique for ensuring the tool is not inadvertently actuated to another operational position.
    • 一种技术可以对用于启动井下工具的执行器进行故障安全控制。 该技术可以利用具有可调节构件的工具的井系统。 致动机构用作故障原因机构并且与可调节构件协同工作。 致动构件可在接收到预定输入时移动; 然而,每次移动时,致动构件不移动可调节构件。 一旦致动构件已经移动了必要次数以将可调节构件移动到另一位置,致动构件的至少一个随后的移动就不能引起可调节构件的移动。 结果是确保工具不会被无意地启动到另一个操作位置的故障现象技术。
    • 59. 发明申请
    • FAIL AS IS MECHANISM AND METHOD
    • 失败是机制和方法
    • US20100206579A1
    • 2010-08-19
    • US12695754
    • 2010-01-28
    • Oguzhan GuvenSeth ConawayRicardo MartinezFrank Coss
    • Oguzhan GuvenSeth ConawayRicardo MartinezFrank Coss
    • E21B34/06E21B34/00
    • E21B34/10E21B23/006E21B2034/002
    • A technique enables failsafe control over actuators used to actuate downhole tools. The technique may utilize a well system having a tool with an adjustable member. An actuation mechanism serves as a fail-as-is mechanism and works in cooperation with the adjustable member. The actuation member is shiftable upon receiving a predetermined input; however the actuation member does not move the adjustable member upon each shift. Once the actuation member has been shifted the requisite number of times to move the adjustable member to another position, at least one subsequent shift of the actuation member is not able to cause movement of the adjustable member. The result is a fail-as-is technique for ensuring the tool is not inadvertently actuated to another operational position.
    • 一种技术可以对用于启动井下工具的执行器进行故障安全控制。 该技术可以利用具有可调节构件的工具的井系统。 致动机构用作故障原因机构并且与可调节构件协同工作。 致动构件可在接收到预定输入时移动; 然而,每次移动时,致动构件不移动可调节构件。 一旦致动构件已经移动了必要次数以将可调节构件移动到另一位置,致动构件的至少一个随后的移动就不能引起可调节构件的移动。 结果是确保工具不会被无意地启动到另一个操作位置的故障现象技术。
    • 60. 发明申请
    • DUAL CHAMBER MEGASONIC CLEANER
    • 双室MEGASONIC CLEANER
    • US20090320875A1
    • 2009-12-31
    • US12490114
    • 2009-06-23
    • RICARDO MARTINEZAllen L. D'AmbraAdrian BlankThuy BritcherHui Chen
    • RICARDO MARTINEZAllen L. D'AmbraAdrian BlankThuy BritcherHui Chen
    • B08B3/12
    • B08B3/12H01L21/67051
    • Embodiments described herein relate to semiconductor device manufacturing, and more particularly to a vertically oriented dual megasonic module for simultaneously cleaning multiple substrates. In one embodiment, an apparatus for cleaning multiple substrates is provided. The apparatus comprises an outer tank for collecting overflow processing fluid comprising at least one sidewall and a bottom. A first inner module adapted to contain a processing fluid is positioned partially within the outer tank. The first inner module comprises one or more roller assemblies to hold a substrate in a substantially vertical orientation. A second inner module adapted to contain a processing fluid is positioned partially within the outer tank. The second inner module comprises one or more roller assemblies adapted to hold a substrate in a substantially vertical orientation. Each inner module contains a transducer adapted to direct vibrational energy through the processing fluid toward the substrates.
    • 本文所述的实施例涉及半导体器件制造,更具体地,涉及用于同时清洁多个基板的垂直取向的双兆赫模块。 在一个实施例中,提供了一种用于清洁多个基板的装置。 该装置包括用于收集包括至少一个侧壁和底部的溢流处理流体的外槽。 适于容纳处理流体的第一内部模块部分地位于外部容器内。 第一内部模块包括一个或多个辊组件以将基板保持在基本垂直的方向。 适于容纳处理流体的第二内部模块部分地位于外部罐中。 第二内部模块包括适于将基板保持在基本垂直取向的一个或多个辊组件。 每个内部模块包含适于将振动能量通过处理流体引向基板的换能器。