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    • 8. 发明授权
    • Gas discharge lamp, in particular for a motor-vehicle headlight
    • 气体放电灯,特别是用于汽车前灯
    • US06194834B1
    • 2001-02-27
    • US09142788
    • 1999-01-08
    • Hartmut SeilerRobert Kern
    • Hartmut SeilerRobert Kern
    • H01J744
    • H05B41/042F21S41/17F21S41/192H01J61/56H01J61/84
    • Proposed is a gaseous-discharge lamp, in particular for motor-vehicle headlamps, comprising a burner vessel of glass or the like having at least two electrodes, the burner vessel being provided with a lamp base that includes the electrical terminals and that is insertable into a lamp base socket. Arranged in the lamp base is an electronic ballast unit that supplies the lamp with the necessary ignition and maintaining voltage. By accomodating the balast unit in the lamp base, one can achieve a small-volume gaseous-discharge lamp having short high-voltage leads i an integrated type of construction, making it possible to keep the ignition voltage to a minimum.
    • 提出了一种气体放电灯,特别是用于机动车辆前照灯的气体放电灯,包括具有至少两个电极的玻璃等的燃烧器容器,燃烧器容器设置有包括电端子的灯座,并且可插入 一个灯座插座。 安装在灯座中的是电子镇流器单元,为灯具提供必要的点火和保持电压。 通过容纳灯座中的平板单元,可以实现具有短路高压引线的小容量气体放电灯,这是一种集成式结构,使得可以将点火电压保持在最小值。
    • 9. 发明申请
    • High pressure discharge lamp and luminaire
    • 高压放电灯和灯具
    • US20030076041A1
    • 2003-04-24
    • US10191054
    • 2002-07-10
    • Hisashi HondaSeiji Ashida
    • H01J061/33
    • H01J61/84H01J61/30
    • A high pressure discharge lamp comprises a light-transmissive ceramic discharge vessel having a swollen portion defining a discharge space and a pair of slender cylindrical portions formed in integral with the swollen portion and communicating with the swollen portion at opposite ends of the swollen portion, wherein the inner surface of the boundary portion between the swollen portion and the each slender cylindrical portion defines a discontinuous inflection, and a pair of the electrodes which penetrate the slender cylindrical portions of the light-transmissive ceramic discharge vessel and lie in the swollen portion of the light-transmissive ceramic discharge vessel at their distal ends, lead-conductors connected to the proximal ends of the electrodes, sealed in the light-transmissive ceramic discharge vessel at least at their mid-portions and exposing outside from the light-transmissive ceramic discharge vessel at their proximal ends, and a filling filled in the light-transmissive ceramic discharge vessel.
    • 高压放电灯包括透光陶瓷放电容器,其具有限定放电空间的膨胀部分和形成为与肿胀部分成一体并与膨胀部分的相对端处的膨胀部分连通的一对细长圆柱形部分,其中 膨胀部分和每个细长圆柱形部分之间的边界部分的内表面限定了不连续的拐点,并且一对电极穿透透光陶瓷放电容器的细长圆柱形部分并且位于 在其远端的透光陶瓷放电容器,连接到电极的近端的引线导体至少在其中间部分处密封在透光陶瓷放电容器中,并从透光陶瓷放电容器 在其近端处,并且填充物填充在透光ce中 放电容器。
    • 10. 发明授权
    • Inner/outer coaxial tube arrangement for a plasma pinch chamber
    • 用于等离子体夹送室的内/外同轴管布置
    • US06445134B1
    • 2002-09-03
    • US09727247
    • 2000-11-30
    • John F. Asmus
    • John F. Asmus
    • H01J724
    • H05H1/52G03F7/2004G03F7/2039H01J61/302H01J61/34H01J61/523H01J61/84H01J61/90H01J65/04
    • A plasma pinch having an inner/outer coaxial tube arrangement, which nested tube arrangement yields a higher-performance pinchlamp than is capable with a single-tube configuration. Further, each tube contains a separate gas, the inner tube filled with Argon, and the outer tube filled with Helium. The inner/outer coaxial tube arrangement of the present invention facilitates the use of an inner tube to contain a volume of Argon gas as the working gas. The outer tube is coaxial with the inner tube, surrounding the inner tube with contained Helium gas. The configuration of an outer tube filled with Helium presents external pressures to the inner tube. The contained Helium gas in the outer tube, among other things, compresses and supports the walls of the inner tube, enabling the inner tube to be smaller in diameter than prior art plasma chambers, which chambers would shatter if made with as small a diameter as the present inner tube.
    • 具有内/外同轴管布置的等离子体夹管,该嵌套管布置产生比具有单管构造的更高性能的夹纱灯。 此外,每个管含有单独的气体,内管充满氩气,外管充满氦气。 本发明的内/外同轴管装置有助于使用内管来容纳一定体积的氩气作为工作气体。 外管与内管同轴,围绕包含氦气的内管。 填充有氦气的外管的结构向内管提供外部压力。 外管中包含的氦气除其他外,压缩和支撑内管的壁,使得内管的直径比现有技术的等离子体室小,如果制成的直径小至 目前的内管。