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    • 1. 发明申请
    • SPRING-LOADED DOORS TO PREVENT AIR RECIRCULATION WITHOUT NEED FOR ADDITIONAL SPACE
    • 弹簧式门,以防止空气回收,不需要额外的空间
    • US20100087956A1
    • 2010-04-08
    • US12245348
    • 2008-10-03
    • Laurent A. RegimbalKarl Isaac HamandLawrence Kyle
    • Laurent A. RegimbalKarl Isaac HamandLawrence Kyle
    • G05D23/00G05D7/00G05B15/00
    • H05K7/2019
    • The present disclosure relates, in some embodiments, to modular information handling systems configured to automatically adjust coolant flow upon insertion and/or removal of heat-releasing elements (e.g., blades). A system may comprise, for example, a chassis at least partially defining a cavity, at least one fan in fluid communication with the cavity and operable to move coolant through at least a portion of the cavity, and one or more bays. Each of the one or more bays (a) may be at least partially defined by a bay wall, (b) may be configured to receive a heat-releasing element, and/or (c) may comprise an obturator configured to conditionally block fluid communication between the bay and the chassis cavity, the fan, and/or a coolant, wherein the obturator allows fluid communication when a blade is present in the bay and blocks fluid communication when a blade is absent from the bay. A system may further comprise at least one heat-releasing element positioned in at least one of the one or more bays.
    • 在一些实施例中,本公开涉及被配置成在插入和/或移除散热元件(例如,叶片)时自动调节冷却剂流动的模块化信息处理系统。 系统可以包括例如至少部分地限定空腔的底盘,至少一个风扇,其与空腔流体连通并且可操作以使冷却剂移动通过空腔的至少一部分以及一个或多个隔间。 一个或多个隔间(a)中的每一个可以至少部分地由隔壁限定,(b)可以被配置为接收散热元件,和/或(c)可以包括构造成有条件地阻塞流体的闭塞器 隔间和底盘空腔之间的通信,风扇和/或冷却剂,其中当叶片存在于隔间中时,封闭器允许流体连通,并且当叶片不在隔间时阻止流体连通。 系统还可以包括定位在一个或多个隔间中的至少一个中的至少一个散热元件。
    • 2. 发明授权
    • Spring-loaded doors to prevent air recirculation without need for additional space
    • 弹簧加载的门,以防止空气再循环,无需额外的空间
    • US08305756B2
    • 2012-11-06
    • US12245348
    • 2008-10-03
    • Laurent A. RegimbalKarl Isaac HamandLawrence Kyle
    • Laurent A. RegimbalKarl Isaac HamandLawrence Kyle
    • H05K7/20
    • H05K7/2019
    • The present disclosure relates, in some embodiments, to modular information handling systems configured to automatically adjust coolant flow upon insertion and/or removal of heat-releasing elements (e.g., blades). A system may comprise, for example, a chassis at least partially defining a cavity, at least one fan in fluid communication with the cavity and operable to move coolant through at least a portion of the cavity, and one or more bays. Each of the one or more bays (a) may be at least partially defined by a bay wall, (b) may be configured to receive a heat-releasing element, and/or (c) may comprise an obturator configured to conditionally block fluid communication between the bay and the chassis cavity, the fan, and/or a coolant, wherein the obturator allows fluid communication when a blade is present in the bay and blocks fluid communication when a blade is absent from the bay. A system may further comprise at least one heat-releasing element positioned in at least one of the one or more bays.
    • 在一些实施例中,本公开涉及被配置成在插入和/或移除散热元件(例如,叶片)时自动调节冷却剂流动的模块化信息处理系统。 系统可以包括例如至少部分地限定空腔的底盘,至少一个风扇,其与空腔流体连通并且可操作以使冷却剂移动通过空腔的至少一部分以及一个或多个隔间。 一个或多个隔间(a)中的每一个可以至少部分地由隔壁限定,(b)可以被配置为接收散热元件,和/或(c)可以包括构造成有条件地阻塞流体的闭塞器 隔间和底盘空腔之间的通信,风扇和/或冷却剂,其中当叶片存在于隔间中时,封闭器允许流体连通,并且当叶片不在隔间时阻止流体连通。 系统还可以包括定位在一个或多个隔间中的至少一个中的至少一个散热元件。