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    • 31. 发明申请
    • CLIMATE REGULATOR CONTROL FOR DEVICE ENCLOSURES
    • 用于装置外壳的气候调节器控制
    • US20130344794A1
    • 2013-12-26
    • US13530899
    • 2012-06-22
    • Mark ShawMatthew Allen FaistEric C. PetersonHarry Raymond Rogers
    • Mark ShawMatthew Allen FaistEric C. PetersonHarry Raymond Rogers
    • F24F11/02
    • G06F1/206H05K7/20836
    • Climate regulation within an enclosure (e.g., a case of a workstation or a rack or cabinet of servers) may be achieved through a climate regulator featuring several selectable climate regulator settings (e.g., a variable-speed fan array). Controllers of such climate regulators often select climate regulator settings based on current conditions inside the enclosure, such as the temperature of one or more processors operating within the enclosure. However, such control fails to account for the climate of air outside the enclosure that is drawn in to provide climate regulation, even though the climate properties of inlet air may significantly affect the effectiveness of climate regulation. Accordingly, a controller of a climate regulator may be configured to detect inlet climate properties of air directed into the enclosure, and to map the inlet climate properties (alone or in combination with other factors) to a selected climate regulator setting for the climate regulator.
    • 外壳内的气候调节(例如,工作站或机架或机柜的服务器的情况)可以通过具有若干可选气候调节器设置(例如,变速风扇阵列)的气候调节器来实现。 这种气候调节器的控制器通常根据机箱内的当前条件(例如在机箱内运行的一个或多个处理器的温度)来选择气候调节器设置。 然而,这种控制不能解释为了提供气候调节而被吸引到外壳外部的空气气候,即使入口空气的气候特性可能会显着影响气候调节的有效性。 因此,气候调节器的控制器可以被配置为检测引导到外壳中的空气的入口气候特性,并且将入口气候特性(单独地或与其他因素组合)映射到用于气候调节器的选定的气候调节器设置。
    • 32. 发明申请
    • MULTI-CHASSIS CLIMATE REGULATOR PLENUM
    • 多层次气候变化监管机构
    • US20130295834A1
    • 2013-11-07
    • US13465164
    • 2012-05-07
    • Matthew Allen FaistEric C. Peterson
    • Matthew Allen FaistEric C. Peterson
    • F24F7/00H05K5/02
    • H05K7/20736F24F2011/0006
    • Climate regulation within a chassis of an electronics enclosure (e.g., a workstation case or a server cabinet) may be achieved through an airflow regulated by at least one climate regulator devices (e.g., a variable-speed fan array) and a plenum configured to direct the airflow at the components of the enclosure. The enclosure may store a set of chassis, each having a dedicated plenum and climate regulator devices. However, this architecture may be less efficient than an architecture wherein adjacently mounted chassis may connect plenums (e.g., directly connecting an exhaust of one plenum with an inlet of the adjacent plenum) to unify the airflow directed through several chassis. Additionally, the chassis may feature a removable portion of the plenum wall that provides access to the plenum, and the climate regulator devices may be mounted on the removable portion, such that detachment enables withdrawal and servicing of the climate regulator devices.
    • 可以通过由至少一个气候调节器装置(例如,可变速风扇阵列)调节的气流和被配置为引导的气室来实现电子机箱(例如,工作站外壳或服务器机柜)的底盘内的气候调节 外壳部件的气流。 外壳可以存储一组底盘,每个底盘具有专用的气室和气候调节器装置。 然而,这种架构可能比其中相邻安装的底盘可以连接气室(例如,将一个增压室的排气直接连接到相邻增压室的入口)的架构效率较低,以统一通过多个机架引导的气流。 此外,底盘可以具有提供通向气室的通风壁的可移除部分,并且气候调节器装置可以安装在可移除部分上,使得分离能够撤回和维修气候调节器装置。
    • 40. 发明授权
    • Enclosures with redundant fans in doors with interlocks
    • 带有冗余风扇的外壳带有联锁门
    • US07578733B2
    • 2009-08-25
    • US10900862
    • 2004-07-27
    • Christian L. BeladyEric C. Peterson
    • Christian L. BeladyEric C. Peterson
    • H05K5/00H05K7/20G06F1/20
    • H05K5/0208
    • An equipment rack including front and back doors is configured with fans for air cooling enclosed electronic devices in both doors. The fans in each door are sufficient, by themselves, to provide sufficient airflow to cool the electronic devices. The two doors include switches and magnetic interlocks configured such that when one door is opened, the magnetic interlock on the other door is activated preventing both doors from being opened at the same time. This ensures that at least one door is always closed while the system is powered up, and since the fans in each door provide sufficient cooling for the equipment rack, the rack is always sufficiently cooled to prevent electronic device failure from overheating.
    • 包括前门和后门的设备机架配置有用于两个门的空气冷却封闭电子设备的风扇。 每个门中的风扇本身足以提供足够的气流来冷却电子设备。 这两个门包括开关和磁性联锁,其构造使得当一个门打开时,另一个门上的磁互锁被启动,防止两个门同时打开。 这确保了在系统通电时至少有一个门总是关闭,并且由于每个门中的风扇为设备机架提供足够的冷却,所以机架总是被充分冷却以防止电子设备故障过热。