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    • 43. 发明授权
    • Door and system providing radio frequency shielding against high-altitude electromagnetic pulse
    • 门和系统为高空电磁脉冲提供射频屏蔽
    • US08800209B2
    • 2014-08-12
    • US14077318
    • 2013-11-12
    • Gaven Industries, Inc.
    • John J. Gaviglia
    • E06B7/16E06B5/18E06B7/23
    • E06B7/16E06B5/18E06B7/2318
    • Pneumatic door system of fluid lines, valves, switches, and sensors integrated into hinge mechanisms, door frame, and door connected to a fluid pressurization system to inflate and deflate one or more fluid seals attached to outer perimeter of door adjacent to inner perimeter of door frame to close gap between outer perimeter of door and inner perimeter of door frame to provide radio frequency shielding against, for example, high-altitude electromagnetic pulse. Air seal creates a substantially impermeable barrier against radio frequency transmission, as well as air infiltration, when fully inflated. Separate fluid channels in each component interconnect to act as one fluid circuit or network when door is closed. Pneumatic door system can be fluidly connected to a conventional fluid pressurization system in communication with a programmable logic controller to respond to user input or automatic commands with system overrides to react to system air pressure and air flow conditions.
    • 流体线路,阀门,开关和传感器的气动门系统集成到铰链机构,门框和门中,连接到流体加压系统以使附接到门的外周边的一个或多个流体密封件膨胀和放气 框架以闭合门的外周和门框的内周之间的间隙,以提供例如高空电磁脉冲的射频屏蔽。 当充分充气时,空气密封件将产生基本上不可渗透的屏障,防止射频传输以及空气渗透。 当门关闭时,每个组件互连中的独立流体通道用作一个流体回路或网络。 气动门系统可以流体地连接到与可编程逻辑控制器通信的常规流体加压系统,以响应用户输入或具有系统覆盖的自动命令以对系统空气压力和空气流动状况做出反应。
    • 44. 发明授权
    • Door and system providing radio frequency shielding against high-altitude electromagnetic pulse
    • 门和系统为高空电磁脉冲提供射频屏蔽
    • US08595983B2
    • 2013-12-03
    • US13091448
    • 2011-04-21
    • John J. Gaviglia
    • John J. Gaviglia
    • E06B7/16
    • E06B7/16E06B5/18E06B7/2318
    • Pneumatic door system of fluid lines, valves, switches, and sensors integrated into hinge mechanisms, door frame, and door connected to a fluid pressurization system to inflate and deflate one or more fluid seals attached to outer perimeter of door adjacent to inner perimeter of door frame to close gap between outer perimeter of door and inner perimeter of door frame to provide radio frequency shielding against, for example, high-altitude electromagnetic pulse. Air seal creates a substantially impermeable barrier against radio frequency transmission, as well as air infiltration, when fully inflated. Separate fluid channels in each component interconnect to act as one fluid circuit or network when door is closed. Pneumatic door system can be fluidly connected to a conventional fluid pressurization system in communication with a programmable logic controller to respond to user input or automatic commands with system overrides to react to system air pressure and air flow conditions.
    • 流体线路,阀门,开关和传感器的气动门系统集成到铰链机构,门框和门中,连接到流体加压系统以使附接到门的外周边的一个或多个流体密封件膨胀和放气 框架以缩小门的外周和门框的内周之间的间隙,以提供例如高空电磁脉冲的射频屏蔽。 当充分充气时,空气密封件将产生基本上不可渗透的屏障,防止射频传输以及空气渗透。 当门关闭时,每个组件互连中的独立流体通道用作一个流体回路或网络。 气动门系统可以流体地连接到与可编程逻辑控制器通信的常规流体加压系统,以响应用户输入或具有系统覆盖的自动命令以对系统空气压力和空气流动状况做出反应。
    • 46. 发明申请
    • DOOR AND SYSTEM PROVIDING RADIO FREQUENCY SHIELDING AGAINST HIGH-ALTITUDE ELECTROMAGNETIC PULSE
    • 提供高分辨率电磁脉冲的无线电频率屏蔽门和系统
    • US20110258934A1
    • 2011-10-27
    • US13091448
    • 2011-04-21
    • John J. Gaviglia
    • John J. Gaviglia
    • E06B7/16
    • E06B7/16E06B5/18E06B7/2318
    • Pneumatic door system of fluid lines, valves, switches, and sensors integrated into hinge mechanisms, door frame, and door connected to a fluid pressurization system to inflate and deflate one or more fluid seals attached to outer perimeter of door adjacent to inner perimeter of door frame to close gap between outer perimeter of door and inner perimeter of door frame to provide radio frequency shielding against, for example, high-altitude electromagnetic pulse. Air seal creates a substantially impermeable barrier against radio frequency transmission, as well as air infiltration, when fully inflated. Separate fluid channels in each component interconnect to act as one fluid circuit or network when door is closed. Pneumatic door system can be fluidly connected to a conventional fluid pressurization system in communication with a programmable logic controller to respond to user input or automatic commands with system overrides to react to system air pressure and air flow conditions.
    • 流体线路,阀门,开关和传感器的气动门系统集成到铰链机构,门框和门中,连接到流体加压系统以使附接到门的外周边的一个或多个流体密封件膨胀和放气 框架以缩小门的外周和门框的内周之间的间隙,以提供例如高空电磁脉冲的射频屏蔽。 当充分充气时,空气密封件将产生基本上不可渗透的屏障,防止射频传输以及空气渗透。 当门关闭时,每个组件互连中的独立流体通道用作一个流体回路或网络。 气动门系统可以流体地连接到与可编程逻辑控制器通信的常规流体加压系统,以响应用户输入或具有系统覆盖的自动命令以对系统空气压力和空气流动状况做出反应。
    • 49. 发明授权
    • Magnetic shielding door and magnetic shielding room
    • 磁屏蔽门和磁屏蔽室
    • US07501588B2
    • 2009-03-10
    • US11667868
    • 2005-10-18
    • Hideki NodaMasao MurakamiKoji UnoKentaro MatsushitaTakubi HamanoTakeshi SaitoYasushi Sato
    • Hideki NodaMasao MurakamiKoji UnoKentaro MatsushitaTakubi HamanoTakeshi SaitoYasushi Sato
    • H05K9/00
    • H05K9/0001E05G1/024E06B5/18
    • A magnetic shielding door (10) opens and closes a gate (16) of a magnetic shielding room. Magnetic members (15) made of a magnetic material are aligned at intervals on walls of the magnetic shielding room. Magnetic shielding forming members (27) are disposed to correspond to the respective magnetic members (15) and are made of a magnetic body that forms a magnetic shielding in corporation with the magnetic members (15). A movable mechanism (28) moves the magnetic shielding forming members (27) at the door closing position at which the gate (16) is closed. The movable mechanism (28) moves the magnetic shielding forming members (27) between a join position at which the magnetic members (15) and the corresponding magnetic shielding forming members (27) are joined to each other and a spaced-apart position at which the magnetic members (15) and the corresponding magnetic shielding forming members (27) are spaced apart.
    • 磁屏蔽门(10)打开和关闭磁屏蔽室的门(16)。 由磁性材料制成的磁性构件(15)在磁屏蔽室的壁上被间隔地排列。 磁屏蔽形成构件(27)设置成对应于各个磁性构件(15),并且由与磁性构件(15)一体形成磁屏蔽的磁体制成。 可移动机构(28)在门关闭位置的门关闭位置移动磁屏蔽形成构件(27)。 可移动机构(28)使磁屏蔽形成构件(27)在磁性构件(15)和相应的磁屏蔽形成构件(27)彼此接合的连接位置和间隔开的位置之间移动, 磁性构件(15)和相应的磁屏蔽形成构件(27)间隔开。
    • 50. 发明申请
    • Multiple glazed insulating unit, especially for an aircraft window, with electromagnetic armour
    • 多层玻璃绝缘单元,特别适用于飞机窗户,具有电磁装甲
    • US20030087048A1
    • 2003-05-08
    • US10183508
    • 2002-06-28
    • Saint-Gobain Vitrage
    • Pierre ChaussadeXavier Drouet
    • E06B003/24
    • H05K9/0094B64C1/1492E06B3/66328E06B5/18H05K9/00
    • A multiple glazed insulating unit, especially for an aircraft window, with electromagnetic armour. An insulating multiple glazing unit includes a glazed section provided with at least two superposed panes of mechanically-strong transparent substrate, between which is interposed at least one gap filled with gas. The panes are mounted at their periphery in a seal, by which the glazing unit can be built into a structure designed to enclose a space containing instruments susceptible to being disturbed by an electromagnetic field, and which has an electromagnetic shielding function. The glazed section is provided with at least one continuous electrically-conductive transparent thin layer, and the seal is made conductive at least in part to ensure connection of the electrically-conductive transparent thin layer to the structure. Conductivities of the electrically-conductive transparent thin layer and of the seal are chosen to ensure continuity of the electromagnetic shielding of the structure.
    • 多层玻璃绝缘单元,特别是用于飞机窗户,具有电磁装甲。 绝缘多层玻璃单元包括设置有至少两个机械强的透明基板的叠置的玻璃板的玻璃部分,其间插入填充有气体的至少一个间隙。 窗玻璃在其周边安装有密封件,通过该密封件,玻璃窗单元可以被构造成设计成包围易受电磁场干扰的仪器的空间的结构,并具有电磁屏蔽功能。 上光部分设置有至少一个连续的导电透明薄层,并且密封件至少部分地导电以确保导电透明薄层与结构的连接。 选择导电透明薄层和密封件的电导率以确保结构的电磁屏蔽的连续性。