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    • 1. 发明授权
    • Miniature ceramic metal halide lamp having a thin leg
    • 微型陶瓷金属卤化物灯具有细腿
    • US08415883B2
    • 2013-04-09
    • US11964416
    • 2007-12-26
    • Gary R. AllenLei Deng
    • Gary R. AllenLei Deng
    • H01J17/18H01J61/36
    • H01J61/36H01J61/827
    • A low watt ceramic metal halide lamp has a body with a discharge chamber disposed therein. First and second hollow legs extend from the discharge chamber and received first and second electrode assemblies, respectively, therethrough with first ends of the electrode assemblies disposed in spaced relation in the discharge chamber. Use of thin legs limits heat flux from the discharge chamber. Preferably, thin legs are defined by a load dissipation factor of the ceramic part being less than 0.065 mm2/watt. In addition, thermal conductance along the leg is controlled via a load dissipation factor of the molybdenum mandrel portion of the electrode assembly being maintained less than 0.0008 mm2/watt.
    • 低瓦特陶瓷金属卤化物灯具有放置在其中的放电室的主体。 第一和第二空心腿分别从放电室延伸并分别接收第一和第二电极组件,其中电极组件的第一端以间隔关系设置在放电室中。 使用细腿限制来自放电室的热通量。 优选地,细腿由陶瓷部件的负载损耗因子定义为小于0.065mm 2 /瓦。 此外,沿着支腿的导热通过电极组件的钼心轴部分的负载耗散因数被控制在小于0.0008mm 2 /瓦特。
    • 2. 发明申请
    • MINIATURE CERAMIC METAL HALIDE LAMP HAVING A THIN LEG
    • 微型陶瓷金属卤化物灯具有薄膜
    • US20090167179A1
    • 2009-07-02
    • US11964416
    • 2007-12-26
    • Gary R. AllenLei Deng
    • Gary R. AllenLei Deng
    • H01J61/36
    • H01J61/36H01J61/827
    • A low watt ceramic metal halide lamp has a body with a discharge chamber disposed therein. First and second hollow legs extend from the discharge chamber and received first and second electrode assemblies, respectively, therethrough with first ends of the electrode assemblies disposed in spaced relation in the discharge chamber. Use of thin legs limits heat flux from the discharge chamber. Preferably, thin legs are defined by a load dissipation factor of the ceramic part being less than 0.065 mm2/watt. In addition, thermal conductance along the leg is controlled via a load dissipation factor of the molybdenum mandrel portion of the electrode assembly being maintained less than 0.0008 mm2/watt.
    • 低瓦特陶瓷金属卤化物灯具有放置在其中的放电室的主体。 第一和第二空心腿分别从放电室延伸并分别接收第一和第二电极组件,其中电极组件的第一端以间隔关系设置在放电室中。 使用细腿限制来自放电室的热通量。 优选地,细腿由陶瓷部件的负载损耗因子定义为小于0.065mm 2 /瓦。 此外,沿着支腿的导热通过电极组件的钼心轴部分的负载耗散因数被控制在小于0.0008mm 2 /瓦特。
    • 3. 发明授权
    • Multi-functional mini-reflector in a ceramic metal halide lamp
    • 陶瓷金属卤化物灯中的多功能微型反射器
    • US08232710B2
    • 2012-07-31
    • US12947500
    • 2010-11-16
    • Lei Deng
    • Lei Deng
    • H01T13/46
    • F21V7/00H01J61/025H01J61/34H01J61/54H01J61/545H01J61/827
    • A light assembly includes a metal halide light source having an arc tube with first and second legs extending from a discharge chamber. A light transmissive capsule surrounds the light source. A reflector is received in the capsule and has a large diameter, annular first portion that receives light from the discharge chamber and is dimensioned to operatively engage an inner surface of the capsule to mount the reflector assembly and light source relative to the capsule. In addition, a small diameter portion of the reflector assembly is received around the first leg. By electrically interconnecting the reflector with the second electrode assembly, namely the support leg, and positioning the small diameter portion closer to the first electrode assembly than the dimension between the electrode terminal ends allows the reflector to also serve as an ignition aid. The reflector is formed of a material that serves as a heat shield for the seal glass in the first leg and also serves as a heat shield for the capsule seal region.
    • 一种灯组件包括具有电弧管的金属卤化物光源,第一和第二支柱从放电室延伸。 透光胶囊围绕光源。 反射器被容纳在胶囊中并且具有大直径的环形第一部分,其接收来自排出室的光并且尺寸设计成可操作地接合胶囊的内表面以相对于胶囊安装反射器组件和光源。 此外,反射器组件的小直径部分被接收在第一支腿周围。 通过将反射器与第二电极组件(即支撑腿)电互连,并且将小直径部分定位成比电极端部端部之间的尺寸更靠近第一电极组件,允许反射器也用作点火助燃剂。 反射器由用作第一腿部中的密封玻璃的隔热罩的材料形成,并且还用作胶囊密封区域的隔热罩。
    • 5. 发明申请
    • MULTI-FUNCTIONAL MINI-REFLECTOR IN A CERAMIC METAL HALIDE LAMP
    • 陶瓷金属卤化物灯中的多功能微反射器
    • US20120119637A1
    • 2012-05-17
    • US12947500
    • 2010-11-16
    • Lei Deng
    • Lei Deng
    • H01J61/52H01K1/26
    • F21V7/00H01J61/025H01J61/34H01J61/54H01J61/545H01J61/827
    • A light assembly includes a metal halide light source having an arc tube with first and second legs extending from a discharge chamber. A light transmissive capsule surrounds the light source. A reflector is received in the capsule and has a large diameter, annular first portion that receives light from the discharge chamber and is dimensioned to operatively engage an inner surface of the capsule to mount the reflector assembly and light source relative to the capsule. In addition, a small diameter portion of the reflector assembly is received around the first leg. By electrically interconnecting the reflector with the second electrode assembly, namely the support leg, and positioning the small diameter portion closer to the first electrode assembly than the dimension between the electrode terminal ends allows the reflector to also serve as an ignition aid. The reflector is formed of a material that serves as a heat shield for the seal glass in the first leg and also serves as a heat shield for the capsule seal region.
    • 一种灯组件包括具有电弧管的金属卤化物光源,第一和第二支柱从放电室延伸。 透光胶囊围绕光源。 反射器被容纳在胶囊中并且具有大直径的环形第一部分,其接收来自排出室的光并且尺寸设计成可操作地接合胶囊的内表面以相对于胶囊安装反射器组件和光源。 此外,反射器组件的小直径部分被接收在第一支腿周围。 通过将反射器与第二电极组件(即支撑腿)电互连,并且将小直径部分定位成比电极端部端部之间的尺寸更靠近第一电极组件,允许反射器也用作点火助燃剂。 反射器由用作第一腿部中的密封玻璃的隔热罩的材料形成,并且还用作胶囊密封区域的隔热罩。
    • 10. 发明申请
    • Ceramic arc chamber having shaped ends
    • 具有成形端的陶瓷电弧室
    • US20070138963A1
    • 2007-06-21
    • US11311111
    • 2005-12-19
    • Timothy RussellLei DengJames LeonardThomas Boyle
    • Timothy RussellLei DengJames LeonardThomas Boyle
    • H01J61/30H01J17/16H01J63/04
    • H01J61/32H01J9/266H01J61/30H01J61/827
    • Arc chambers for discharge lamps, such as ceramic metal halide lamps, have ends, where the electrodes for the arc chambers are introduced, that are configured such that, when the arc chambers are arranged vertically, the metal halide additives in the arc chambers will accumulate substantially only on the inner surfaces of the ends, which can have closure walls that are thicker than the thickness of the walls of the body portions of the arc chambers. The ends can be further configured such that the metal halides are deposited substantially uniformly in a thin layer over the ends of the arc chambers. The ends can also be configured in a manner that no sharp edges are provided at the ends of the arc chambers so that corrosive effects to the arc chamber resulting from localized temperature variations are minimized.
    • 用于放电灯的电弧室,例如陶瓷金属卤化物灯,具有引入电弧室的电极的端部,其结构使得当电弧室垂直布置时,电弧室中的金属卤化物添加剂将积聚 基本上仅在端部的内表面上,其可以具有比电弧室的主体部分的壁的厚度更厚的封闭壁。 端部可进一步配置,使得金属卤化物基本均匀地沉积在电弧室的端部上的薄层中。 端部也可以以在弧室的端部处没有尖锐边缘的方式构造,使得由局部温度变化引起的对电弧室的腐蚀作用最小化。