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    • 1. 发明授权
    • Sychronous switching device for fluorescent lamp
    • 荧光灯同步开关装置
    • US06348765B1
    • 2002-02-19
    • US09628216
    • 2000-07-28
    • Kuang-Lung TsaiChun-Hui TsaiShih-Hsien LinChie-Ching LinLai-Cheng Chen
    • Kuang-Lung TsaiChun-Hui TsaiShih-Hsien LinChie-Ching LinLai-Cheng Chen
    • G09G310
    • H01J61/305G02F1/133604H05B41/245H05B41/2822
    • A synchronous switching device. The switching device includes a common electrode, distributed electrodes, voltage converters and a signal generator. The distributed electrodes are aligned in a straight line facing the common electrode. Each distributed electrode has a length smaller than the common electrode. Each voltage converter is electrically coupled to the common electrode as well as one distributed electrode. All voltage converters are electrically coupled to the signal generator. A first panel, a second panel and two side panels together form a planar lamp with a hollow space inside. A layer of fluorescent coating is deposited on the interior surface of the first and the second panel. The distributed electrodes and the common electrodes are mounted on each side of the hollow space. Through high voltage synchronous signals generated by the signal generator and the voltage converters, the planar fluorescent lamp is lit.
    • 同步开关装置。 开关器件包括公共电极,分布电极,电压转换器和信号发生器。 分布电极在面对公共电极的直线上排列。 每个分布电极的长度小于公共电极。 每个电压转换器电耦合到公共电极以及一个分布电极。 所有电压转换器电耦合到信号发生器。 第一面板,第二面板和两个侧面板一起形成内部具有中空空间的平面灯。 一层荧光涂层沉积在第一和第二面板的内表面上。 分布电极和公共电极安装在中空空间的每一侧。 通过信号发生器和电压转换器产生的高压同步信号,平面荧光灯点亮。
    • 2. 发明授权
    • Fluorescent lamp having additional and interior fluorescent surfaces to
increase luminosity
    • 荧光灯具有额外的内部荧光表面以增加亮度
    • US5804914A
    • 1998-09-08
    • US757572
    • 1996-11-27
    • Lyuji OzawaKuang-Lung TsaiChun-hui TsaiChie-Ching Lin
    • Lyuji OzawaKuang-Lung TsaiChun-hui TsaiChie-Ching Lin
    • H01J61/42H01J61/72H01J1/62H01J63/04
    • H01J61/42H01J61/72
    • A fluorescent lamp with multiple fluorescent surfaces including a hollow outer tube of any desirable shape, and at least one transparent inner tube or plate-like structure of any shape disposed inside the outer tube. The filaments are mounted at each end of the outer tube. The outer tube is filled with mercury vapor when it is in a vacuum state (less than 10.sup.-3 torr). The inner and outer wall surfaces of the inner tube or plate-like structure and the inner wall surface of the outer tube are all coated with fluorescent materials. When the filaments are supplied with electric currents to release electrons which collide with the mercury molecules to generate ultra-violet rays, much more fluorescent materials will be reached by the ultra-violet rays to generate visible light, thus increasing the luminosity of the fluorescent lamp. A method of manufacturing the fluorescent lamp is also disclosed.
    • 一种具有多个荧光表面的荧光灯,包括任何期望形状的中空外管,以及设置在外管内的任何形状的至少一个透明内管或板状结构。 长丝安装在外管的每一端。 当外管在真空状态(小于10-3乇)时,充满水银蒸气。 内管或板状结构的内壁和外壁表面以及外管的内壁表面都涂有荧光材料。 当灯丝被供应电流以释放与汞分子碰撞的电子以产生紫外线时,紫外线将达到更多的荧光材料以产生可见光,从而增加荧光灯的亮度 。 还公开了一种制造荧光灯的方法。
    • 6. 发明授权
    • Phosphor particle with antireflection coating
    • 具抗反射涂层的荧光粉
    • US5910333A
    • 1999-06-08
    • US90355
    • 1998-06-04
    • Chie-Ching LinKuang-Lung TsaiLyuji Ozawa
    • Chie-Ching LinKuang-Lung TsaiLyuji Ozawa
    • C09K11/02H01J9/20B05D5/06C23C14/34
    • H01J9/20C09K11/025
    • Improved luminous efficiency in plasma displays has been achieved by coating phosphor particles with a dielectric layer having a refractive index, for the ultraviolet light emitted by the plasma, that is intermediate between that of the phosphor and vacuum. When deposited in a thickness range between 0.5 and 5 microns, the layer causes the particle's reflectivity to be reduced because of reduced reflection at the vacuum-coating interface as well as internal reflection at the coating-vacuum interface. For coating thicknesses in the range of 0.1 to 0.5 microns, reflectivity is reduced because of interference between rays reflected at the vacuum-coating interface and the coating-phosphor interface. Several methods for forming these antireflection coatings are described. These include CVD, PVD, and suspension in molten dielectric followed by decanting onto either sticky or non-stick surfaces.
    • 已经通过用等离子体发射的紫外线具有折射率的介电层涂覆荧光体颗粒来实现等离子体显示器中的改善的发光效率,其中介于荧光体和真空之间。 当沉积在0.5和5微米之间的厚度范围时,该层由于在真空 - 涂层界面处的反射减小以及在涂覆 - 真空界面处的内部反射而导致颗粒的反射率降低。 对于0.1至0.5微米范围内的涂层厚度,由于在真空镀膜界面和涂层 - 磷光体界面反射的射线之间的干涉,反射率降低。 描述了形成这些抗反射涂层的几种方法。 这些包括CVD,PVD和在熔融电介质中的悬浮液,随后倾析到粘性或非粘性表面上。