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    • 1. 发明申请
    • DETECTION OF FILLER MODULE PRESENCE
    • 检测填料模块存在
    • US20120120588A1
    • 2012-05-17
    • US12945359
    • 2010-11-12
    • David T. WindellJeffrey J. SmithTimothy A. MeserthSeth D. Lewis
    • David T. WindellJeffrey J. SmithTimothy A. MeserthSeth D. Lewis
    • G06F1/16
    • G06F13/409G06F1/20
    • An A filler module may include, but is not limited to: a body portion; and at least one conductive portion receivable within a component port of a computing device.A method for initializing a computing system may include but is not limited to: detecting a presence or absence of one or more filler modules within one or more computing device component ports; and determining compliance with an allowed filler module configuration according to the detection of the presence or absence of the one or more filler modules withing the one or more computing device component ports.A system comprising: a computing device component port; and a processing device configured to: detect a presence or absence of one or more filler modules within one or more computing device component ports, and determine compliance with an allowed filler module configuration according to the detection of the presence or absence of the one or more filler modules within the one or more computing device component ports.
    • 填料模块可以包括但不限于:主体部分; 以及至少一个可接收在计算设备的组件端口内的导电部分。 用于初始化计算系统的方法可以包括但不限于:检测一个或多个计算设备组件端口内的一个或多个填充模块的存在或不存在; 以及根据通过所述一个或多个计算设备组件端口检测到所述一个或多个填充模块的存在或不存在来确定对允许的填充模块配置的符合性。 一种系统,包括:计算设备组件端口; 以及处理装置,其被配置为:在一个或多个计算设备组件端口内检测一个或多个填充模块的存在或不存在,并根据对所述一个或多个计算设备组件端口的存在或不存在的检测来确定是否符合允许的填充模块配置 一个或多个计算设备组件端口内的填充模块。
    • 2. 发明授权
    • Filler module for computing devices
    • 计算设备的填充模块
    • US08677043B2
    • 2014-03-18
    • US12945359
    • 2010-11-12
    • David T. WindellJeffrey J. SmithTimothy A. MeserthSeth D. Lewis
    • David T. WindellJeffrey J. SmithTimothy A. MeserthSeth D. Lewis
    • H05K7/10G06F13/40
    • G06F13/409G06F1/20
    • An A filler module may include, but is not limited to: a body portion; and at least one conductive portion receivable within a component port of a computing device.A method for initializing a computing system may include but is not limited to: detecting a presence or absence of one or more filler modules within one or more computing device component ports; and determining compliance with an allowed filler module configuration according to the detection of the presence or absence of the one or more filler modules withing the one or more computing device component ports.A system comprising: a computing device component port; and a processing device configured to: detect a presence or absence of one or more filler modules within one or more computing device component ports, and determine compliance with an allowed filler module configuration according to the detection of the presence or absence of the one or more filler modules within the one or more computing device component ports.
    • 填料模块可以包括但不限于:主体部分; 以及至少一个可接收在计算设备的组件端口内的导电部分。 用于初始化计算系统的方法可以包括但不限于:检测一个或多个计算设备组件端口内的一个或多个填充模块的存在或不存在; 以及根据通过所述一个或多个计算设备组件端口检测到所述一个或多个填充模块的存在或不存在来确定对允许的填充模块配置的符合性。 一种系统,包括:计算设备组件端口; 以及处理装置,其被配置为:在一个或多个计算设备组件端口内检测一个或多个填充模块的存在或不存在,并根据对所述一个或多个计算设备组件端口的存在或不存在的检测来确定是否符合允许的填充模块配置 一个或多个计算设备组件端口内的填充模块。
    • 5. 发明授权
    • Implementing enhanced cover-mounted, auto-docking for multiple DASD configurations
    • 实现多种DASD配置的增强型封装,自动对接
    • US08508929B2
    • 2013-08-13
    • US12939503
    • 2010-11-04
    • Nadia Anguiano-WehdeAaron M. HegrenesSeth D. LewisThomas S. Rasmussen
    • Nadia Anguiano-WehdeAaron M. HegrenesSeth D. LewisThomas S. Rasmussen
    • G06F1/16
    • G06F1/187
    • An enclosure assembly and system are provided for implementing cover-mounted, auto-docking for multiple DASD configurations in information technology equipment. A user selected direct access storage device (DASD) configuration is mechanically attached to an enclosure cover. A cover interposer card is mechanically attached to the enclosure cover and electrically connected to each DASD in the user selected DASD configuration. An electrical connector mates with the cover interposer card as the cover is installed through a sliding motion with a chassis and base planar of the enclosure assembly. A flexible cable interconnect attached to the mating electrical connector is connected to the base planar. The enclosure assembly enables high density, high performance modular server architectures without compromising processor performance or planar electrical architecture.
    • 提供了一种外壳组件和系统,用于实现覆盖安装的自动对接,用于信息技术设备中的多个DASD配置。 用户选择的直接存取存储设备(DASD)配置机械地连接到外壳盖。 机盖连接到外壳盖上并且以用户选择的DASD配置电连接到每个DASD。 当盖子通过滑动运动而安装时,电连接器与盖插入器卡配合,底盘和底座平面的外壳组件。 连接到配合电连接器的柔性电缆互连件连接到基座平面。 外壳组件可实现高密度,高性能的模块化服务器架构,而不会影响处理器性能或平面电气架构。
    • 7. 发明申请
    • Cover Latch Of A Blade Server
    • 刀片服务器的盖子
    • US20120075800A1
    • 2012-03-29
    • US12892164
    • 2010-09-28
    • Nadia Anguiano-WehdeAaron M. HegrenesNathan D. KarlSeth D. Lewis
    • Nadia Anguiano-WehdeAaron M. HegrenesNathan D. KarlSeth D. Lewis
    • G06F1/16E05C19/00
    • E05C3/14E05B65/006G06F1/181H05K7/1487Y10T292/1043Y10T292/438
    • A cover latch is provided for coupling a blade server cover to a blade server when the cover latch is in a locked state. Embodiments include a locking surface at one end of the cover latch; a user interface at an end of the cover latch opposite from the end with the locking surface; wherein when the cover latch is in the locked state, the locking surface engages a locking surface enclosure of the blade server cover; wherein when the cover latch is in an unlocked state, the user interface is rotated into the blade server and the locking surface is rotated outward from the blade server, wherein when the locking surface is rotated outward from the blade server, the locking surface is disengaged from the locking surface enclosure of the blade server cover; and a rotational limiter hole in the cover latch that surrounds a peg of the blade server, wherein the rotation of the locking surface and the user interface is limited by the rotational limiter.
    • 提供盖闩锁,用于当盖闩锁处于锁定状态时将刀片服务器盖连接到刀片服务器。 实施例包括在盖闩锁的一端处的锁定表面; 在所述盖闩锁的端部处与所述锁定表面的端部相对的用户界面; 其中当所述盖闩锁处于锁定状态时,所述锁定表面接合所述刀片服务器盖的锁定表面外壳; 其中当所述盖闩锁处于未锁定状态时,所述用户界面被转动到所述刀片服务器中,并且所述锁定表面从所述刀片服务器向外转动,其中当所述锁定表面从所述刀片服务器向外旋转时,所述锁定表面被分离 从刀片服务器盖的锁定表面外壳; 以及围绕所述刀片服务器的栓钉的所述盖闩锁中的旋转限制器孔,其中所述锁定表面和所述用户界面的旋转受到所述旋转限制器的限制。
    • 8. 发明授权
    • System, method, and apparatus for distributing air in a blade server
    • 用于在刀片服务器中分配空气的系统,方法和装置
    • US07344439B2
    • 2008-03-18
    • US11368578
    • 2006-03-06
    • Matthew S. HenryDavid J. JensenSeth D. LewisPeter A. Smith
    • Matthew S. HenryDavid J. JensenSeth D. LewisPeter A. Smith
    • H05K7/20H05K5/00G06F1/20
    • H05K7/20736H05K7/1445
    • A system, method, and apparatus for distributing air in a blade server are disclosed. Embodiments may include a rotating damper having a damper door, sliding door, and connecting rod. The damper door may be rotatably attached to a blade server having a plurality of blade slots for receiving blades and may rotate between a blocking position and a flat position, where the damper door impedes air through a blade slot when in the blocking position. The sliding door may move between an open position and a closed position, where the sliding door allows airflow through an air opening while in the open position and blocks airflow through the air opening while in the closed position. A further embodiment may include an extension spring to apply a pulling force to the sliding door and a kick up spring to apply a pushing force to the damper door in the flat position.
    • 公开了一种用于在刀片服务器中分配空气的系统,方法和装置。 实施例可以包括具有阻尼器门,滑动门和连接杆的旋转阻尼器。 阻尼器门可以可旋转地附接到刀片服务器,刀片服务器具有用于接收刀片的多个刀片槽,并且可以在阻塞位置和平坦位置之间旋转,其中阻挡门在处于阻挡位置时阻碍空气通过刀片槽。 滑动门可以在打开位置和关闭位置之间移动,其中滑动门在处于打开位置时允许气流通过空气开口,并且在处于关闭位置时阻挡通过空气开口的气流。 另一个实施例可以包括拉伸弹簧以将拉力施加到滑动门,并且启动弹簧以在平坦位置向阻尼器门施加推力。
    • 9. 发明授权
    • Cover latch of a blade server
    • 刀片服务器的盖锁
    • US08995124B2
    • 2015-03-31
    • US13557826
    • 2012-07-25
    • Nadia Anguiano-WehdeAaron M. HegrenesNathan D. KarlSeth D. Lewis
    • Nadia Anguiano-WehdeAaron M. HegrenesNathan D. KarlSeth D. Lewis
    • G06F1/16E05C3/14G06F1/18H05K7/14E05B65/00
    • E05C3/14E05B65/006G06F1/181H05K7/1487Y10T292/1043Y10T292/438
    • A cover latch is provided for coupling a blade server cover to a blade server when the cover latch is in a locked state. Embodiments include a locking surface and a user interface; wherein when the cover latch is in the locked state, the locking surface engages a locking surface enclosure of the blade server cover; wherein when the cover latch is in an unlocked state, the user interface is rotated into the blade server and the locking surface is rotated outward from the blade server, wherein when the locking surface is rotated outward from the blade server, the locking surface is disengaged from the locking surface enclosure of the blade server cover; and a rotational limiter hole in the cover latch that surrounds a peg of the blade server, wherein the rotation of the locking surface and the user interface is limited by the rotational limiter.
    • 提供盖闩锁,用于当盖闩锁处于锁定状态时将刀片服务器盖连接到刀片服务器。 实施例包括锁定表面和用户界面; 其中当所述盖闩锁处于锁定状态时,所述锁定表面接合所述刀片服务器盖的锁定表面外壳; 其中当所述盖闩锁处于未锁定状态时,所述用户接口被转动到所述刀片服务器中,并且所述锁定表面从所述刀片服务器向外旋转,其中当所述锁定表面从所述刀片服务器向外转动时,所述锁定表面被分离 从刀片服务器盖的锁定表面外壳; 以及围绕所述刀片服务器的钉的所述盖闩锁中的旋转限制器孔,其中所述锁定表面和所述用户界面的旋转受到所述旋转限制器的限制。
    • 10. 发明申请
    • BLOWER EXHAUST BACKFLOW DAMPER METHODS
    • 鼓风式排风式逆流阻尼器方法
    • US20080280552A1
    • 2008-11-13
    • US12169378
    • 2008-07-08
    • Bruce E. BakerMatthew S. HenryDavid J. JensenSeth D. Lewis
    • Bruce E. BakerMatthew S. HenryDavid J. JensenSeth D. Lewis
    • F24F11/00F24F13/16
    • F24F7/007F04D25/14F04D29/663H05K7/20172
    • Methods for preventing exhaust backflow into a blower are disclosed. Embodiments may include a blower system with an invertible blower chassis having a blower exhaust to direct airflow from the blower chassis at an airflow angle. The system may also include a backflow damper frame attached to the blower chassis and positioned to receive airflow from the blower chassis and one or more vertical damper vanes rotatably attached to the backflow damper frame. Each damper vane may freely rotate between a first, closed position and a second, open position. The damper vanes may block airflow into the blower exhaust when in the closed position and may freely rotate to a position where the damper vanes are substantially parallel to the airflow from the blower exhaust. The damper vanes may each include a vane pin to rotatably attach to frame holes of the backflow damper frame.
    • 公开了防止排气回流到鼓风机中的方法。 实施例可以包括具有可逆式鼓风机底盘的鼓风机系统,该鼓风机底盘具有鼓风机排气以在气流角度引导来自鼓风机底盘的气流。 系统还可以包括附接到鼓风机底盘的回流阻尼器框架,并且定位成接收来自鼓风机底盘的气流和可旋转地附接到回流阻尼器框架的一个或多个垂直阻尼器叶片。 每个阻尼器叶片可以在第一闭合位置和第二打开位置之间自由旋转。 当处于关闭位置时,阻尼器叶片可阻挡气流进入鼓风机排气口,并且可以自由地转动到阻尼器叶片基本上平行于来自鼓风机排气的气流的位置。 阻尼器叶片可以各自包括可旋转地附接到回流阻尼器框架的框架孔的叶片销。