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Luminous flux improvement of xenon fluorescent lamps by applying synchronized high-voltage pulse to the auxiliary external electrode

机译:通过向辅助外部电极施加同步高压脉冲来改善氙气荧光灯的光通量

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摘要

As the environmental awareness of people becomes stronger, the demand for mercury-free light sources also becomes stronger. The authors have been developing cold cathode fluorescent lamps in which xenon gas is filled as an ultraviolet radiator instead of mercury. Previously the authors reported the luminous flux enhancement method using a grounded auxiliary external electrode (AEE). In this paper, in order to improve the luminous flux much more, a positive voltage pulse which was synchronized to the main driving negative voltage pulse was applied to the AEE. As a result, the maximum input power increased under which the positive column did not constrict and the luminous flux improved by 70% at the xenon filling pressure of 6.7 kPa. It is proved that the positive voltage pulse application to the AEE with the amplitude of more than 2 kV expands the positive column in the radial direction. It is attributed to the phenomenon that the residual ions and electrons, which are generated by dielectric barrier discharge between the AEE and the anode during the falling edge of the negative pulse to the cathode, spread the discharge path from the anode towards the AEE during the cold cathode discharge mode. By increasing the xenon filling pressure, luminous efficacy was improved to 25 lm W~(-1).
机译:随着人们对环境的意识增强,对无汞光源的需求也越来越强。作者一直在开发冷阴极荧光灯,其中氙气被填充为紫外线辐射剂而不是汞。以前,作者报道了使用接地辅助外部电极(AEE)的光通量增强方法。在本文中,为了进一步提高光通量,将与主驱动负电压脉冲同步的正电压脉冲应用于AEE。结果,在氙气充入压力为6.7 kPa的情况下,最大输入功率增加了,在该最大输入功率下,正极柱不会收缩,光通量提高了70%。事实证明,施加到振幅大于2 kV的AEE的正电压脉冲使正列在径向方向上扩展。这归因于以下现象:在负脉冲的下降沿到阴极期间,由AEE和阳极之间的介电势垒放电产生的残留离子和电子,在放电过程中从阳极向AEE扩散了放电路径。冷阴极放电模式。通过增加氙气填充压力,发光效率提高到25 lm W〜(-1)。

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