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    • 71. 发明申请
    • Mercury free metal halide lamp
    • 无汞金属卤化物灯
    • US20060066243A1
    • 2006-03-30
    • US11234168
    • 2005-09-26
    • Masaaki MutoShinya Omori
    • Masaaki MutoShinya Omori
    • H01J61/18
    • H01J61/125H01J61/827
    • In a metal halide lamp, xenon gas having a pressure of at least 3 atmospheres at room temperature and at least a metal halide including indium iodide are sealed in a discharge space not containing mercury. If the volume of the discharge space is denoted by V (mm3), the electric power applied to the arc tube by P (W), and the weight of the indium iodide by X (μg), these parameters are set so as to satisfy a relationship (P/V)(X/V)0.2>3.0. A continuous emission spectrum can thereby be produced by indium over the entire visible wavelength range, thus obtaining a mercury-free metal halide lamp that is usable as an excellent white light source suitable for data projectors, automobile lamps, headlights, and other systems and devices.
    • 在金属卤化物灯中,在室温下具有至少3个大气压的氙气和至少含有碘化铟的金属卤化物的氙气密封在不含汞的放电空间中。 如果放电空间的体积由V(mm 3)表示,则通过P(W)施加到电弧管的电力,以及通过X(杯)的碘化铟的重量, 这些参数被设定为满足关系(P / V)(X / V)<0.2> 3.0。 由此可以在整个可见光波长范围内通过铟产生连续的发射光谱,从而获得可用作适用于数据投影仪,汽车灯,头灯等系统和装置的优异白光源的无汞金属卤化物灯 。
    • 72. 发明申请
    • Seal for ceramic discharge lamp arc tube
    • 陶瓷放电灯电弧管密封
    • US20060001380A1
    • 2006-01-05
    • US10883870
    • 2004-07-02
    • Nanu BratesHuiling ZhuJakob Maya
    • Nanu BratesHuiling ZhuJakob Maya
    • H01J17/18
    • H01J61/827H01J61/366
    • An arc discharge metal halide lamp having a discharge chamber with visible light permeable walls bounding a discharge region through which walls a pair of electrode assemblies are supported with interior ends thereof positioned in the discharge region spaced apart from one another. These electrode assemblies each also extend through a corresponding capillary tube affixed to the walls to have exterior ends thereof positioned outside the arc discharge chamber. At least one of these electrode assemblies comprises an electrode discharge structure with a discharge region shaft extending into the capillary tube corresponding thereto. A discharge region shaft extends outwardly in that corresponding capillary tube to be in direct contact with an interconnection shaft extending outside of that corresponding capillary tube to provide an exterior end of this electrode assembly, and which is in direct contact with a sealing cap over the end of the tube.
    • 一种电弧放电金属卤化物灯,具有具有可见光透过壁的放电室,所述放电室限定放电区域,通过该放电区域,壁的一对电极组件被支撑,其内端定位在彼此间隔开的放电区域中。 这些电极组件还延伸穿过固定在壁上的对应的毛细管,使其外端位于电弧放电室的外部。 这些电极组件中的至少一个包括电极放电结构,其中放电区域轴延伸到与其对应的毛细管中。 放电区域轴在对应的毛细管中向外延伸以与延伸到对应的毛细管外侧的互连轴直接接触,以提供该电极组件的外端,并且在末端与密封帽直接接触 的管。
    • 78. 发明授权
    • Plasma lamp and method
    • 等离子灯和方法
    • US06897609B2
    • 2005-05-24
    • US10112024
    • 2002-04-01
    • Eric KrislAbbas LamouriLeonid PekkerPaul MorandJuris SulcsNorman L. Boling
    • Eric KrislAbbas LamouriLeonid PekkerPaul MorandJuris SulcsNorman L. Boling
    • H01J9/395H01J9/20H01J9/24H01J61/20H01J61/34H01J61/35H01J61/40H01J61/82H01J61/88H01J17/20H01J61/12
    • H01J61/35H01J9/20H01J9/247H01J61/40H01J61/827
    • An apparatus and method for achieving desired spectral emission characteristics in plasma lamps is disclosed. The apparatus and method use multi-layer thin film optical interference coatings to selectively reflect a portion of the light such that it can be absorbed in the plasma. The multi-layer thin film coating is applied to any surface of the lamp, which substantially surrounds the plasma. The number and thickness of the layers in the coating are selected to ensure that a significant portion of the selected light emitted from the plasma is reflected by the coating and absorbed by the plasma. The properties of the coating, reflectance, transmittance and absorption are determined as a function of plasma and lamp characteristics. These characteristics include the spectral emission characteristics of the plasma, the spectral absorption characteristics of the plasma, the physical dimensions of the plasma, the angular distribution of the light emitted from the plasma on the coating and the geometry of the coated surface.
    • 公开了一种在等离子体灯中实现期望的光谱发射特性的装置和方法。 该装置和方法使用多层薄膜光学干涉涂层来选择性地反射光的一部分,使其能够被吸收在等离子体中。 将多层薄膜涂层施加到基本上围绕等离子体的灯的任何表面上。 选择涂层中层数和厚度以确保从等离子体发射的所选择的光的大部分被涂层反射并被等离子体吸收。 涂层的性质,反射率,透射率和吸收值是等离子体和灯泡特性的函数。 这些特征包括等离子体的光谱发射特性,等离子体的光谱吸收特性,等离子体的物理尺寸,从等离子体在涂层上发射的光的角分布和涂覆表面的几何形状。
    • 79. 发明申请
    • Metal halide lamp and lighting device
    • 金属卤化物灯和照明装置
    • US20050082987A1
    • 2005-04-21
    • US10963215
    • 2004-10-12
    • Kozo UemuraHiromichi Kawashima
    • Kozo UemuraHiromichi Kawashima
    • H01J61/16H01J9/00H01J9/18H01J9/24H01J17/20H01J61/12H01J61/18H01J61/20H01J61/82H01J61/88
    • H01J9/247H01J61/125H01J61/827
    • A metal halide lamp comprises a refractory, light-transmitting airtight container defining therein a discharge space with an internal volume of not more than 0.1 cc, electrodes sealed in the container, opposing each other with a distance of not more than 5 mm interposed, and a discharge medium sealed in the container and including a metal halide material and a rare gas. The metal halide includes first and second halide materials. The first halide material contains scandium (Sc) and sodium (Na) halides. The second halide material contains at least one of indium (In) and zinc (Zn) halides. The discharge medium contains substantially no mercury. The load on the wall of the container in a stable state is 50 W/cm2 or more. A/B≦0.21 where A represents the intensity of an impurity chromium (Cr) spectrum in lighting spectra, and B represents the intensity of a scandium (Sc) spectrum.
    • 一种金属卤化物灯包括耐火透光密封容器,其中限定了内部容积不大于0.1cc的放电空间,密封在容器中的电极彼此相对地插入不大于5mm的距离,以及 密封在容器中并包括金属卤化物材料和稀有气体的放电介质。 金属卤化物包括第一和第二卤化物材料。 第一种卤化物材料含有钪(Sc)和钠(Na)卤化物。 第二卤化物材料含有铟(In)和锌(Zn)卤化物中的至少一种。 放电介质基本上不含汞。 处于稳定状态的容器壁上的负荷为50W / cm 2以上。 A / B <= 0.21其中A表示照明光谱中杂质铬(Cr)光谱的强度,B表示钪(Sc)光谱的强度。