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    • 2. 发明授权
    • Excimer lamp
    • 准分子灯
    • US09355833B2
    • 2016-05-31
    • US14763278
    • 2013-11-25
    • USHIO DENKI KABUSHIKI KAISHA
    • Kenji TaninoJunya AsayamaYukiharu Tagawa
    • H01J61/26H01J65/00H01J61/36H01J61/44H01J61/54H01J7/18
    • H01J61/26H01J7/186H01J61/36H01J61/44H01J61/547H01J65/00H01J65/046
    • Provided is an excimer lamp having a simple and small structure, which can be used in, for example, a refrigerator, and can emit ultraviolet light at a wavelength effective in disinfection processing without generating ozone in a surrounding atmosphere, without leaving gas impurities and moisture in an electrical discharge vessel, and without causing a steep illuminance decrease. A fluorescent substance is disposed on an inner face of the electrical discharge vessel for converting ultraviolet light emitted upon excimer electrical discharge of a light emitting gas to ultraviolet light having a longer wavelength. An inner electrode has a coil shape. A tight winding portion is formed at a certain area of the interior electrode which extends in the center axial direction of the interior electrode such that the coil is tightly wound in the tight winding portion. A getter is attached to the tight winding portion.
    • 本发明提供一种具有简单且小型结构的准分子灯,其可用于例如冰箱,并且能够以有效消毒处理的波长发射紫外线,而不会在周围环境中产生臭氧,而不会留下气体杂质和水分 在放电容器中,并且不会导致急剧的照度降低。 荧光物质设置在放电容器的内表面上,用于将发光气体的准分子放电时发射的紫外光转换成具有较长波长的紫外光。 内部电极具有线圈形状。 在内部电极的沿着内部电极的中心轴向延伸的一定区域处形成紧密缠绕部分,使得线圈紧紧地缠绕在紧密缠绕部分中。 吸气剂连接到紧密卷绕部分。
    • 3. 发明申请
    • EXCIMER LAMP
    • EXCIMER灯
    • US20150364317A1
    • 2015-12-17
    • US14763278
    • 2013-11-25
    • USHIO DENKI KABUSHIKI KAISHA
    • Kenji TANINOJunya ASAYAMAYukiharu TAGAWA
    • H01J61/26H01J61/54H01J61/36H01J61/44
    • H01J61/26H01J7/186H01J61/36H01J61/44H01J61/547H01J65/00H01J65/046
    • Provided is an excimer lamp having a simple and small structure, which can be used in, for example, a refrigerator, and can emit ultraviolet light at a wavelength effective in disinfection processing without generating ozone in a surrounding atmosphere, without leaving gas impurities and moisture in an electrical discharge vessel, and without causing a steep illuminance decrease. A fluorescent substance is disposed on an inner face of the electrical discharge vessel for converting ultraviolet light emitted upon excimer electrical discharge of a light emitting gas to ultraviolet light having a longer wavelength. An inner electrode has a coil shape. A tight winding portion is formed at a certain area of the interior electrode which extends in the center axial direction of the interior electrode such that the coil is tightly wound in the tight winding portion. A getter is attached to the tight winding portion.
    • 本发明提供一种具有简单且小型结构的准分子灯,其可用于例如冰箱,并且能够以有效消毒处理的波长发射紫外线,而不会在周围环境中产生臭氧,而不会留下气体杂质和水分 在放电容器中,并且不会导致急剧的照度降低。 荧光物质设置在放电容器的内表面上,用于将发光气体的准分子放电时发射的紫外光转换成具有较长波长的紫外光。 内部电极具有线圈形状。 在内部电极的沿着内部电极的中心轴向延伸的一定区域处形成紧密缠绕部分,使得线圈紧紧地缠绕在紧密缠绕部分中。 吸气剂连接到紧密卷绕部分。
    • 5. 发明申请
    • HIGH-PRESSURE GAS DISCHARGE LAMP
    • 高压气体放电灯
    • US20150091431A1
    • 2015-04-02
    • US14360320
    • 2012-11-26
    • KONINKLIJKE PHILIPS N.V.
    • Juergen Gerhard Mertens
    • H01J61/36H01J61/52H01J9/24H01J61/82
    • H01J61/36H01J5/54H01J9/24H01J61/52H01J61/82
    • A high-pressure gas discharge lamp unit 10 is described including a burner 14 with a discharge vessel 18. The burner 14 comprises electrical contact leads 22,24 and protrudes from and is fixed to a lamp cap housing 12, so that at least a first of the contact leads 22, 24 extends into the housing 12. A lamp operating circuit 50 is arranged within the housing 12, electrically connected to the electrical contact leads 22, 24. In order to allow a particularly compact lamp unit, the housing comprises a bottom plate 44 made out of a metal material to dissipate heat, which comprises an opening 68 into which a cap element 60 made out of an electrically insulating material is inserted to enclose a first electrical contact lead 22.
    • 描述了一种高压气体放电灯单元10,其包括具有放电容器18的燃烧器14.燃烧器14包括电接触引线22,24并从灯帽壳体12突出并固定到灯帽壳体12,使得至少第一 接触引线22,24延伸到壳体12中。灯操作电路50布置在壳体12内,电连接到电接触引线22,24。为了允许特别紧凑的灯单元,壳体包括 底板44由金属材料制成以散热,其包括开口68,由电绝缘材料制成的盖元件60插入该开口以封闭第一电接触引线22。
    • 6. 发明申请
    • DISCHARGE TUBE AND LIGHT-EMITTING APPARATUS PROVIDED WITH DISCHARGE TUBE
    • 排放管和排放管提供的排放装置
    • US20140159570A1
    • 2014-06-12
    • US14232937
    • 2012-07-24
    • Erika KawabataKatsushi Sumisaki
    • Erika KawabataKatsushi Sumisaki
    • H01J61/06
    • H01J61/06H01J5/50H01J5/62H01J61/36H01J61/90H01R4/48
    • A discharge tube of the present invention includes a glass bulb in which noble gas is enclosed, a pair of electrodes protruding from both ends of the glass bulb in the longitudinal direction of the glass bulb, and a connector connected to each of the electrodes. Each of the electrodes includes at least an axis section and a large-diameter section with a step section and a circumferential face. The step section has a first latching section for latching onto the connector. The circumferential face has a contact section with which the connector comes in contact. The connector includes a connector body into which the electrode is inserted, a second latching section for latching onto the first latching section of the electrode, and a connecting section connected to the contact section of the electrode. This achieves a discharge tube with high connection reliability and high heat radiation efficiency, and a light-emitting apparatus provided with this discharge tube.
    • 本发明的放电管包括玻璃灯泡,其中封闭有惰性气体,一对电极从玻璃灯泡的两端沿玻璃灯泡的纵向突出,以及连接到每个电极的连接器。 每个电极至少包括轴部分和具有台阶部分和圆周面的大直径部分。 踏板部分具有用于锁定到连接器上的第一闩锁部分。 圆周面具有与连接器接触的接触部分。 连接器包括插入电极的连接器主体,用于锁定在电极的第一闩锁部分上的第二闩锁部分和连接到电极的接触部分的连接部分。 这实现了具有高连接可靠性和高散热效率的放电管,以及设置有该放电管的发光装置。
    • 8. 发明授权
    • PAR lamp
    • PAR灯
    • US08456088B2
    • 2013-06-04
    • US12589359
    • 2009-10-22
    • Michael R. KlingJeffrey P Buschmann
    • Michael R. KlingJeffrey P Buschmann
    • H01J5/46H01J5/50
    • H01J61/025H01J5/52H01J5/56H01J5/62H01J61/34H01J61/36H01J61/366
    • A light source capsule (16) having a capsule envelope (18) with a wall (20) defining an enclosed volume (22), and having a sealed portion (24). A light source (26) is positioned in the enclosed volume (22) and has deformable electrical leads-ins (28, 30) extending through the sealed portion (24) of the capsule envelope (18). Stiff lead-in engagers (32) are aligned with the sealed portion (24) of the capsule envelope (18) and are electrically coupled to the electrical leads (28, 30), the lead-in engagers being electrically conductive. The lead-in engagers are fitted through apertures in the base (14) of a lamp envelope (12) to complete a lamp (10).
    • 一种具有胶囊封套(18)的光源胶囊(16),其具有限定封闭容积(22)的壁(20),并且具有密封部分(24)。 光源(26)被定位在封闭容积(22)内并且具有延伸穿过胶囊封套(18)的密封部分(24)的可变形电引线(28,30)。 刚性引入接合器(32)与胶囊封套(18)的密封部分(24)对准并且电耦合到电引线(28,30),引入接合器是导电的。 引入接合器通过灯壳(12)的底座(14)中的孔安装以完成灯(10)。
    • 9. 发明申请
    • CERAMIC METAL HALIDE LAMP
    • 陶瓷金属卤化物灯
    • US20130106280A1
    • 2013-05-02
    • US13661795
    • 2012-10-26
    • Iwasaki Electric Co., Ltd.
    • Yasushi Sasai
    • H01J61/36H01J9/26
    • H01J61/125H01J61/20H01J61/36H01J61/366H01J61/827
    • A manufacturing method of a ceramic metal halide lamp is provided where electrical characteristics and optical characteristics changed at the first time when the lamp begins to glow can be decreased. An example lamp includes a luminous tube with silver iodide (AgI) enclosed therein with predetermined amounts of mercury, metal halides and rare gas. Luminous flux change is measured by changing AgI/total amount of metal halide (weight ratio). An upper limit of AgI is determined by specifying an upper limit value of AgI/total amount of metal halide (weight ratio) based on an allowable lowering rate of luminous flux. Lamp voltage change is measured by changing AgI/total amount of metal halide. A lower limit of AgI is determined by specifying the AgI/total amount of metal halide based on an allowable lowering rate of lamp voltage. An AgI amount falling between the upper and lower limits is sealed into the luminous tube.
    • 提供一种陶瓷金属卤化物灯的制造方法,其中电灯特性和光学特性在灯开始发光的第一时间变化。 示例灯包括其中封入有碘化银(AgI)的发光管,其中具有预定量的汞,金属卤化物和稀有气体。 通过改变AgI /金属卤化物的总量(重量比)来测量光通量变化。 通过根据允许的光通量降低率来指定AgI /金属卤化物的总量(重量比)来确定AgI的上限。 灯电压变化通过改变AgI /金属卤化物的总量来测量。 AgI的下限通过基于灯电压的允许降低速率指定金属卤化物的AgI /总量来确定。 落在上限和下限之间的AgI量被密封到发光管中。