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    • 4. 发明申请
    • COMPONENT FOR AN ELECTRIC LAMP WITH OUTER BULB
    • 用于具有外壳的电动灯的组件
    • US20100102702A1
    • 2010-04-29
    • US12532153
    • 2008-02-29
    • Karen TwestenSascha Piltz
    • Karen TwestenSascha Piltz
    • H01J5/48H01J5/00
    • H01J61/34H01J61/30H01J61/36
    • An assembly for an electric lamp with an elongated inner bulb, which is sealed at two ends, the inner bulb including a lamp axis, and a light-emitter-being accommodated in the inner bulb, the inner bulb being surrounded by an outer bulb, wherein the outer bulb is substantially circular-cylindrical, and includes two parts, at least one part having a rounded-off, sealed first end, and the two parts each having an open second end, which ends are matched to one another in terms of diameter, and the parts being connected to one another in the region of the open end via a certain sealing path, the inner bulb being held in the outer bulb via two frame wires, which are passed out of the outer bulb between the two parts.
    • 一种用于具有细长内灯泡的电灯的组件,其在两端密封,内灯泡包括灯轴,并且发光器被容纳在内灯泡中,内灯泡被外灯泡包围, 其中所述外灯泡基本上是圆柱形的,并且包括两个部分,至少一个部分具有圆形的密封的第一端,并且所述两个部分各自具有开口的第二端,所述端部彼此匹配 并且所述部件经由一定的密封路径在开口端的区域中彼此连接,所述内灯泡经由两个框架线保持在外灯泡中,所述两根框架线在所述两个部件之间从所述外灯泡排出。
    • 5. 发明授权
    • Component for an electric lamp with outer bulb
    • 带有外灯泡的电灯组件
    • US07977854B2
    • 2011-07-12
    • US12532153
    • 2008-02-29
    • Karen TwestenSascha Piltz
    • Karen TwestenSascha Piltz
    • H01J1/02
    • H01J61/34H01J61/30H01J61/36
    • An assembly for an electric lamp with an elongated inner bulb, which is sealed at two ends, the inner bulb including a lamp axis, and a light-emitter being accommodated in the inner bulb, the inner bulb being surrounded by an outer bulb, wherein the outer bulb is substantially circular-cylindrical, and includes two parts, at least one part having a rounded-off, sealed first end, and the two parts each having an open second end, which ends are matched to one another in terms of diameter, and the parts being connected to one another in the region of the open end via a certain sealing path, the inner bulb being held in the outer bulb via two frame wires, which are passed out of the outer bulb between the two parts.
    • 一种用于具有细长内灯泡的电灯的组件,其在两端密封,所述内灯泡包括灯轴,并且发光器容纳在所述内灯泡中,所述内灯泡被外灯泡包围,其中 外灯泡基本上是圆柱形的,并且包括两个部分,至少一个部分具有圆形的密封的第一端,并且两个部分各自具有开口的第二端,该端部在直径方面彼此匹配 并且所述部件经由一定的密封路径在开口端的区域中彼此连接,所述内灯泡经由两个框架线保持在所述外灯泡中,所述两根框架线在所述两个部件之间从所述外灯泡中流出。
    • 10. 发明授权
    • Method and device for determining the purity and/or pressure of gases
for electric lamps
    • 用于确定电灯气体纯度和/或压力的方法和装置
    • US5920400A
    • 1999-07-06
    • US860805
    • 1997-07-09
    • Hans EisemannKaren Twesten
    • Hans EisemannKaren Twesten
    • G01N21/31G01N21/66G01N21/67G01N21/69G01J3/46
    • G01N21/69
    • According to the method the intensity of at least one pressure-independent (impurity detection) or pressure-dependent (gas pressure determination) spectral line is measured selectively. Indirect detection utilizes the intensity of spectral lines whose wavelengths correspond to higher levels of excitation energy than those of the impurities. The intensity of these spectral lines is a measure of the impurities. Alternatively, the intensity of at least one spectral line of the respective impurity is measured directly. In order to eliminate co-phasal interference, two spectral lines are measured and the ratio is formed therefrom. The intensity ratio of argon lines of wavelengths .lambda..sub.1 =772.4 nm and .lambda..sub.2 =738.4 nm has in particular proved acceptable for the indirect detection of impurities in argon and the intensity ratio V of the argon lines of wavelengths .lambda..sub.1 =763.5 nm and .lambda..sub.2 =738.4 nm has proved acceptable for determining the argon pressure. The measuring process is in particular suitable for integration in high-speed production lines for discharge lamps.
    • PCT No.PCT / DE96 / 00232 Sec。 371日期1997年7月9日第 102(e)日期1997年7月9日PCT 1996年2月14日PCT PCT。 出版物WO96 / 25658 日期1996年8月22日根据该方法,选择性地测量至少一个压力无关(杂质检测)或压力依赖(气体压力测定)谱线的强度。 间接检测利用波长对应于比杂质更高水平的激发能量的光谱线的强度。 这些谱线的强度是杂质的量度。 或者,直接测量各个杂质的至少一个谱线的强度。 为了消除共相干扰,测量两条光谱线,并由此形成比例。 波长λ1 = 772.4nm和λ2 = 738.4nm的氩线的强度比对于间接检测氩中的杂质和波长λ1 = 763.5nm的氩线的强度比V以及λ 2 = 738.4nm已被证明可以用于确定氩气压力。 测量过程特别适用于集成在高速放电灯生产线上。