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Breakdown voltage reliability improvement in gas-discharge tube surge protectors employing graphite field emitters

机译:使用石墨场发射器的气体放电管电涌保护器的击穿电压可靠性提高

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摘要

Gas-discharge tube (GDT) surge protectors are known for many decades as passive units used in low-voltage telecom networks for protection of electrical components from transient over-voltages (discharging) such as lightning. Unreliability of the mean turn-on DC breakdown voltage and the run-to-run variability has been overcome successfully in the past by adding, for example, a radioactive source inside the tube. Radioisotopes provide a constant low level of free electrons, which trigger the breakdown. In the last decades, any concept using environmentally harmful compounds is not acceptable anymore and new solutions were searched. In our application, a cold field electron emitter source is used as the trigger for the gas discharge but with no activating compound on the two main electrodes. The patent literature describes in details the implementation of the so-called trigger wires (auxiliary electrodes) made of graphite, placed in between the two main electrodes, but no physical explanation has been given yet. We present experimental results, which show that stable cold field electron emission current in the high vacuum range originating from the nano-structured edge of the graphite layer is well correlated to the stable breakdown voltage of the GDT surge protector filled with a mixture of clean gases.
机译:气体放电管(GDT)电涌保护器作为低压电信网络中使用的无源单元已有数十年的历史,用于保护电气组件免受瞬态过电压(放电)的影响,例如雷电。过去,通过在管内添加例如放射源,已成功克服了平均导通直流击穿电压和运行间变化的不可靠性。放射性同位素提供恒定的低水平自由电子,这会触发击穿。在过去的几十年中,任何使用对环境有害的化合物的概念都不再被接受,并寻求了新的解决方案。在我们的应用中,使用冷场电子发射源作为气体放电的触发源,但在两个主电极上没有激活化合物。专利文献详细描述了放置在两个主电极之间的所谓的由石墨制成的触发线(辅助电极)的实现方式,但是尚未给出物理解释。我们提供的实验结果表明,在高真空范围内源自石墨层纳米结构边缘的稳定的冷场电子发射电流与填充有干净气体混合物的GDT电涌保护器的稳定击穿电压密切相关。

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  • 来源
    《Journal of Applied Physics》 |2012年第8期|p.083301.1-083301.6|共6页
  • 作者单位

    Jozef Stefan Institute, Jamova cesta 39,1000 Ljubljana, Slovenia;

    Jozef Stefan Institute, Jamova cesta 39,1000 Ljubljana, Slovenia;

    Iskra Zascite d.o.o., Stegne 35,1521 Ljubljana, Slovenia;

    Jozef Stefan Institute, Jamova cesta 39,1000 Ljubljana, Slovenia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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