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    • 5. 发明申请
    • WAFER CONTAINER WITH TUBULAR ENVIRONMENTAL CONTROL COMPONENTS
    • 带有管状环境控制组件的集水器
    • US20110114534A1
    • 2011-05-19
    • US12922408
    • 2009-03-13
    • James A. WatsonJohn BurnsMartin I. ForbesMatthew A. FullerMark V. Smith
    • James A. WatsonJohn BurnsMartin I. ForbesMatthew A. FullerMark V. Smith
    • B65D85/86
    • H01L21/67393
    • A wafer container utilizes a rigid polymer tubular tower with slots and a “getter” therein for absorbing and filtering moisture and vapors within the wafer container. The tower preferably utilizes a purge grommet at the base of the container and may have a check valve therein to control the flow direction of gas (including air) into and out of the container and with respect to the tower. The tower is sealingly connected with the grommet. The tower may have a getter media piece rolled in an elongate circular fashion forming or shaped as a tube and disposed within the tower and may have axially extending. The media can provide active and/or passive filtration as well as having capabilities to be recharged. Front opening wafer containers for 300 mm sized wafers generally have a pair of recesses on each of the left and right side in the inside rear of the container portions. These recesses are preferably utilized for elongate towers, such towers extending substantially from a bottom wafer position to a top wafer position. In alternative embodiment, a tubular shape of getter material is exposed within the front opening container without containment of the getter other than at the ends. The tubular getter form is preferably supported at discrete locations to maximize exposure to the internal container environment. A blocker member can selectively close the apertures. An elastomeric cap can facilitate securement of the tubular component in the container portion.
    • 晶片容器利用具有槽的刚性聚合物管状塔和其中的“吸气剂”,用于吸收和过滤晶片容器内的水分和蒸气。 塔优选在容器的底部使用吹扫索环,并且可以在其中具有止回阀以控制进入和离开容器的气体(包括空气)的流动方向并相对于塔。 塔与护环密封连接。 塔可以具有以细长的圆形方式卷绕的吸气剂介质片,其形成或成形为管,并且设置在塔内并且可以具有轴向延伸。 介质可以提供主动和/或无源过滤以及具有再充电能力。 用于300mm尺寸晶片的前开口晶片容器通常在容器部分的内侧后部的左侧和右侧各具有一对凹部。 这些凹槽优选地用于细长塔,这种塔基本上从底部晶片位置延伸到顶部晶片位置。 在替代实施例中,吸气剂材料的管状形状暴露在前开口容器内,而不会吸收除了末端之外的吸气剂。 管状吸气剂形式优选地在离散位置处被支撑以最大程度地暴露于内部容器环境。 阻挡件可以选择性地封闭孔。 弹性帽可有助于管状部件固定在容器部分中。
    • 8. 发明授权
    • Wafer container with tubular environmental control components
    • 晶圆容器带管状环境控制元件
    • US08783463B2
    • 2014-07-22
    • US12922408
    • 2009-03-13
    • James A. WatsonJohn BurnsMartin L. ForbesMatthew A. FullerMark V. Smith
    • James A. WatsonJohn BurnsMartin L. ForbesMatthew A. FullerMark V. Smith
    • B65D85/00
    • H01L21/67393
    • A wafer container utilizes a rigid polymer tubular tower with slots and a “getter” therein for absorbing and filtering moisture and vapors within the wafer container. The tower preferably utilizes a purge grommet at the base of the container and may have a check valve therein to control the flow direction of gas (including air) into and out of the container and with respect to the tower. The tower is sealingly connected with the grommet. The tower may have a getter media piece rolled in an elongate circular fashion forming or shaped as a tube and disposed within the tower and may have axially extending. The media can provide active and/or passive filtration as well as having capabilities to be recharged. Front opening wafer containers for 300 mm sized wafers generally have a pair of recesses on each of the left and right side in the inside rear of the container portions. These recesses are preferably utilized for elongate towers, such towers extending substantially from a bottom wafer position to a top wafer position. In alternative embodiment, a tubular shape of getter material is exposed within the front opening container without containment of the getter other than at the ends. The tubular getter form is preferably supported at discrete locations to maximize exposure to the internal container environment. A blocker member can selectively close the apertures. An elastomeric cap can facilitate securement of the tubular component in the container portion.
    • 晶片容器利用具有槽的刚性聚合物管状塔和其中的“吸气剂”,用于吸收和过滤晶片容器内的水分和蒸气。 塔优选在容器的底部使用吹扫索环,并且可以在其中具有止回阀以控制进入和离开容器的气体(包括空气)的流动方向并相对于塔。 塔与护环密封连接。 塔可以具有以细长的圆形方式卷绕的吸气剂介质片,其形成或成形为管,并且设置在塔内并且可以具有轴向延伸。 介质可以提供主动和/或无源过滤以及具有再充电能力。 用于300mm尺寸晶片的前开口晶片容器通常在容器部分的内侧后部的左侧和右侧各具有一对凹部。 这些凹槽优选地用于细长塔,这种塔基本上从底部晶片位置延伸到顶部晶片位置。 在替代实施例中,吸气剂材料的管状形状暴露在前开口容器内,而不会吸收除了末端之外的吸气剂。 管状吸气剂形式优选地在离散位置处被支撑以最大程度地暴露于内部容器环境。 阻挡件可以选择性地封闭孔。 弹性帽可有助于管状部件固定在容器部分中。
    • 9. 发明授权
    • Method and circuit for controlling an antenna system
    • 用于控制天线系统的方法和电路
    • US07088288B1
    • 2006-08-08
    • US10340006
    • 2003-01-10
    • Michael A. MargoleseJames A. Watson
    • Michael A. MargoleseJames A. Watson
    • H01Q3/00H04M1/00
    • H01Q3/2605
    • A method of controlling an antenna system of a wireless communication network having a plurality of cells is disclosed. The method comprises the steps of determining antenna weights to enable communication between a wireless communication network and the wireless communication device within the wireless communication network; storing the antenna weights in a programmable memory associated with the wireless communication network; and providing predetermined stored antenna weights to the antenna system based upon a location of the wireless communication device. A circuit and wireless communication network for controlling an antenna system are also disclosed.
    • 公开了一种控制具有多个小区的无线通信网络的天线系统的方法。 该方法包括以下步骤:确定天线权重以实现无线通信网络内无线通信网络与无线通信设备之间的通信; 将所述天线权重存储在与所述无线通信网络相关联的可编程存储器中; 并且基于所述无线通信设备的位置,向所述天线系统提供预定的存储的天线权重。 还公开了一种用于控制天线系统的电路和无线通信网络。