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    • 1. 发明授权
    • Annular dosing capsule for electric discharge lamp and method of dosing
the lamp using the capsule
    • 用于放电灯的环形剂量胶囊和使用该胶囊对灯投光的方法
    • US5374871A
    • 1994-12-20
    • US917563
    • 1992-07-21
    • Wayne D. Johnson
    • Wayne D. Johnson
    • H01J9/395H01J61/24H01J61/72
    • H01J9/395H01J61/24H01J61/72
    • An electric arc discharge lamp includes an elongated hollow tubular transparent envelope having a pair of opposite ends, a pair of electrode mounts respectively disposed in the ends of the tubular envelope, and a dosing capsule defining a hermetically sealed annular cavity containing a predetermined quantity of a dosing liquid therein. The dosing capsule has an inner edge defining an opening through the capsule for receiving a portion of one the electrode mounts therethrough such that the capsule is supported by the one electrode mount with the sealed annular cavity substantially surrounding the one electrode mount. The electrode mount includes a glass stem having inner and outer axially-displaced opposite ends, a pair of lead-in conductors extending through the glass stem and from the opposite ends of the glass stem, and an electrode supported between a pair of inner ends of the lead-in conductors adjacent to and spaced from the inner end of the glass stem. The capsule is supported about the glass stem of the electrode mount spaced from the inner and outer opposite ends thereof. The capsule is rupturable by directing heat energy through the envelope and into contact with a portion of the capsule so as to raise the temperature and cause a rupture of the capsule portion, resulting in release of the dosing liquid from the annular cavity of the capsule into the lamp envelope.
    • 电弧放电灯包括具有一对相对端的细长中空管状透明外壳,分别设置在管状外壳的端部中的一对电极安装件和限定密封的环形空腔的定量胶囊,所述密封环形空腔包含预定量的 给药液体。 给药胶囊具有限定通过胶囊的开口的内边缘,用于接收一个电极安装件的一部分穿过其中,使得胶囊由一个电极安装件支撑,密封的环形空腔基本上围绕一个电极安装座。 电极安装件包括玻璃杆,其具有内部和外部轴向移位的相对端,一对穿过玻璃杆并从玻璃杆的相对端延伸的引入导体,以及支撑在一对内端之间的电极 导线导体与玻璃干柱的内端相邻并间隔开。 胶囊围绕电极安装座的玻璃杆支撑,与其内部和外部相对的两端分开。 通过将热能引导通过外壳并与胶囊的一部分接触以使胶囊是可破裂的,以便升高温度并引起胶囊部分的破裂,导致计量液体从胶囊的环形空腔释放到 灯罩。
    • 2. 发明申请
    • Base contact member for improved welding and associated method
    • 用于改善焊接和相关方法的基座接触件
    • US20080143231A1
    • 2008-06-19
    • US11584689
    • 2006-10-20
    • Wayne D. JohnsonJon Mallery
    • Wayne D. JohnsonJon Mallery
    • H01J5/48
    • H01J5/62H01J5/54
    • A new contact member is provided to establish intimate contact between a lead wire and the contact member of a lamp base. A flap is formed in a planar wall and connected to the body by a hinge region. The opening formed by the flap is dimensioned to freely receive the lead wire therethrough. The flap is then deflected along the hinge region to pinch the lead wire with the flap and assure continuity of a ground path during welding. The contact member is then grounded, and the welding electrode disposed adjacent an antenna of the lead wire extending outwardly from the contact member. Welding is preferably established by forming an arc between the welding electrode and the lead wire so that the lead wire is melted to form the weld with contact member.
    • 提供新的接触构件以建立引线和灯座的接触构件之间的紧密接触。 翼片形成在平面壁中并通过铰链区域连接到身体。 由翼片形成的开口的尺寸被设计成能够自由地接收穿过其中的引线。 然后,翼片沿着铰链区域偏转,以将引线与翼片夹紧,并确保焊接过程中的接地路径的连续性。 接触构件然后接地,并且焊接电极邻近导线的天线设置,从接触构件向外延伸。 焊接优选通过在焊接电极和引线之间形成电弧而形成,使得引线熔化以形成具有接触部件的焊接。
    • 3. 发明授权
    • Fluorescent lamp having uniquely configured container containing amalgam for regulating mercury vapor equilibrium
    • 荧光灯具有独特配置的容器,含有用于调节汞蒸气平衡的汞齐
    • US06456004B1
    • 2002-09-24
    • US09393564
    • 1999-09-10
    • Wayne D. JohnsonAndrew P. Blau
    • Wayne D. JohnsonAndrew P. Blau
    • H01J1722
    • H01J61/28H01J61/24H01J61/72
    • An apparatus and method for improving the performance of a lamp includes an envelope (10) enclosing an amalgam or dose (24) of mercury housed in a container (20). The container maintains mercury vapor equilibrium during lamp operation and prevents mercury diffusion during lamp off periods. The container has an opening (24) therein selectively adjustable between an open position and a closed position. A bimetal member (30) is associated with the opening of the container and provides the actuating means by which the container opens and closes. A stopping member (32), such as a valve or ball bearing, is attached to the bimetal member and extends into the container. When the lamp is in operation, the bimetal member is heated causing it to deflect. The deflection moves the stopping member from the container opening and enables the amalgam to maintain mercury vapor pressure equilibrium. When the lamp is turned off, the bimetal material contracts, closing the container and preventing diffusion of mercury into the amalgam. As a result, sufficient mercury vapor remains in the lamp envelope to provide peak lumen output upon lamp ignition.
    • 用于改善灯的性能的装置和方法包括封闭容纳在容器(20)中的汞齐或汞(24)的封套(10)。 容器在灯操作期间保持汞蒸汽平衡,并防止灯熄灭期间的汞扩散。 容器具有其中在打开位置和关闭位置之间可选择性地调节的开口(24)。 双金属构件(30)与容器的开口相关联并且提供致动装置,容器打开和关闭。 诸如阀或滚珠轴承的止动构件(32)附接到双金属构件并延伸到容器中。 当灯处于工作状态时,双金属件被加热使其偏转。 偏转使止动构件从容器开口移动,并使汞齐能够保持汞蒸汽压力平衡。 当灯关闭时,双金属材料收缩,关闭容器并防止汞扩散到汞齐中。 结果是,足够的汞蒸汽保留在灯泡中,以便在灯点火时提供峰值流明输出。
    • 4. 发明授权
    • Septic tank drainage conduit structures
    • 化粪池排水管道结构
    • US4313692A
    • 1982-02-02
    • US115693
    • 1980-01-28
    • Wayne D. Johnson
    • Wayne D. Johnson
    • E03F1/00E02B11/00E02B13/00
    • E03F1/002
    • This invention is in regard to septic tank drainage conduit structures, including an open-sided conduit structure for installation in clay type soil conditions and a U-shaped conduit structure for use in loose or sandy soil conditions. Each conduit structure is constructed of an integral material and of a large size to achieve maximum absorption of waste septic fluid into the surrounding soil area. Each conduit structure is supported on leg members with a completely open bottom area between the leg members to achieve maximum waste water absorption downwardly from each conduit structure.
    • 本发明涉及化粪池排水管道结构,包括用于安装在粘土型土壤条件下的开放式管道结构和用于松散或沙质土壤条件下的U形管道结构。 每个管道结构由整体材料和大尺寸构成,以最大限度地吸收废弃的污水进入周围土壤区域。 每个管道结构被支撑在腿部构件上,在腿部构件之间具有完全敞开的底部区域,以实现从每个管道结构向下的最大的废水吸收。