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Anew technique for controlling the cold spot temperature of low frequency driven electrodeless compact fluorescent lamps

机译:一种控制低频驱动无电极紧凑型荧光灯冷点温度的技术

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Compact fluorescent lamps have, in general, higher wall load than usual linier fluorescent lamps. For example, that of 40W linier fluorescent lamps is typically about 0.04W/ctrf while that of our product is around 0.08W/cm which easily raises mercury vapor pressure and therefore lowers the lamp efficacy. Usually, amalgam is used to control the vapor pressure of mercury during lamp burning. The use of amalgam, however, lowers the buildup characteristic of the light output because mercury is hardly released from amalgam at low temperature. We therefore enclosed pure mercury so as to obtain enough mercury pressure at the initial stage of lamp starting. Thus it becomes quite important how to control the cold spot temperature of the lamp envelope. In this study we will show another technique to control the cold spot temperature of an electrodeless fluorescent lamp with inner coil configurations [1] and thus to increase the lamp efficacy during burning.
机译:一般而言,紧凑型荧光灯具有比通常的衬里荧光灯更高的壁负荷。例如,40W衬垫荧光灯的灯通常约为0.04W / CTRF,而我们的产品约为0.08W / cm ,其容易提高汞蒸气压,从而降低灯功效。通常,汞合金用于控制灯燃烧期间汞的蒸气压。然而,使用Amalgam的使用降低了光输出的累积特性,因为汞几乎不会在低温下从汞合金释放。因此,我们封闭了纯汞,以便在灯的初始阶段获得足够的汞压力。因此,控制灯罩的冷点温度变得非常重要。在这项研究中,我们将显示另一种技术来控制具有内线圈配置的无电极荧光灯的冷点温度[1],从而增加燃烧过程中的灯功效。

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