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Characteristics of Fluorescent Lamps in Direct Current Operation under High Ambient-Temperature Condition

机译:高环境温度下直流工作的荧光灯的特性

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References(4) Cited-By(1) Characteristics of a fluorescent lamp in direct current operation under high ambient-temperature conditions are investigated for application to the back-light system. It is shown that the problems relating to direct current operation of fluorescent lamps, which are light output reduction and short electrode life due to cataphoresis, can be solved by operating the lamp in such a high ambient-temperature obtained in closed fixtures of back-light systems. When the wall temperature was kept to be approximately 80°C, the total light output was approximately 6% higher in direct current operation than in alternate current operation. This may be due to the fact that the mercury atom density in the positive column is closer to the optimum value in direct current operation than in alternate current operation, when the lamp is operated in high ambient-temperature. The electrode life in direct current operation is as long as that in alternate current operation. The high mercury atom density in the cathode region due to cataphoresis may be effective to improve electrode life because of reducing cathode fall voltage.
机译:参考文献(4)By(1)研究了在高环境温度条件下直流工作的荧光灯的特性,并将其应用于背光系统。结果表明,与荧光灯直流操作有关的问题,如光输出减少和由于电泳引起的电极寿命短,可以通过在封闭的背光固定装置中获得的如此高的环境温度下操作灯来解决。系统。当壁温保持在大约80°C时,直流电运行的总光输出比交流电运行高约6%。这可能是由于在高环境温度下操作灯时,与交流操作相比,直流操作中正极中的汞原子密度更接近最佳值。直流电操作的电极寿命与交流电操作的电极寿命一样长。由于减少了阴极降落电压,由于电泳而在阴极区域中的高汞原子密度可能有效地改善了电极寿命。

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