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    • 5. 发明授权
    • Turbulent flow cooling for electronic ballast
    • 湍流冷却电子镇流器
    • US08334640B2
    • 2012-12-18
    • US12540250
    • 2009-08-12
    • William G. ReedJohn O. Renn
    • William G. ReedJohn O. Renn
    • H01J7/26F21V29/00H01K1/58
    • F21V29/60F21K9/23F21V23/026F21V29/507F21V29/67F21V29/677F21V29/773F21V29/83F21Y2115/10
    • An apparatus for heat dissipation for a luminaire comprises an active heat transfer device and a thermally-conductive housing. The active heat transfer device causes turbulence in an ambient fluid. The thermally-conductive housing includes a cavity and a first end. The cavity is structured for an electronic ballast of the luminaire to be housed therein and thermally attached to an interior surface of the housing to allow the housing to absorb at least a portion of heat generated by the electronic ballast. The first end is structured for the active heat transfer device to be mountable to the first end of the housing. The housing further includes at least one thermally-conductive protrusion extending from an exterior surface of the housing and exposed to the turbulence in the ambient fluid to transfer at least a portion of the heat absorbed by the housing to the ambient fluid.
    • 用于照明器的散热装置包括主动传热装置和导热壳体。 活性传热装置引起环境流体中的湍流。 导热壳体包括空腔和第一端。 该腔被构造成用于照明器的电子镇流器被容纳在其中并且热附接到壳体的内表面,以允许外壳吸收由电子镇流器产生的热量的至少一部分。 第一端构造成用于主动传热装置可安装到壳体的第一端。 壳体还包括从壳体的外表面延伸并暴露于环境流体中的湍流的至少一个导热突起,以将壳体吸收的热量的至少一部分转移到环境流体。
    • 7. 发明申请
    • Luminaire
    • 灯具
    • US20120217872A1
    • 2012-08-30
    • US13391392
    • 2010-08-12
    • David Bruce Eeles
    • David Bruce Eeles
    • H01J7/26H01Q1/26H01J25/50
    • H01J61/52H01J65/044
    • A luminaire has a light source in the form of a quartz crucible, having a plasma void. A power supply has a magnetron for providing microwaves for generating a plasma in the void. An air wave guide is connected below the magnetron and a connector is connected below the wave guide. The plasma crucible is fitted to the bottom of the connector and is enclosed by a Faraday cage. Arranged with the crucible at its focal point is a reflector. It has a central aperture through which the connector extends. A lower, hemispherical shell of a casing for the power supply supports the reflector at a similar aperture, with the interposition of one or more focus adjusting spacers.
    • 灯具具有石英坩埚形式的光源,具有等离子体空隙。 电源具有磁控管,用于提供用于在空隙中产生等离子体的微波。 一个空气波导连接在磁控管的下面,一个连接器连接在波导下方。 等离子坩埚安装在连接器的底部,并被法拉第笼罩住。 坩埚在其焦点处排列为反射器。 它具有连接器延伸穿过的中心孔。 用于电源的壳体的下半球形外壳以相似的孔支撑反射器,并插入一个或多个聚焦调节间隔件。
    • 9. 发明申请
    • Discharge lamp having cooling means
    • 具有冷却装置的放电灯
    • US20060001340A1
    • 2006-01-05
    • US10520804
    • 2003-07-03
    • Jens Pollmann-RetschHolger MoenchWouter MaesEdmond Verstraeten
    • Jens Pollmann-RetschHolger MoenchWouter MaesEdmond Verstraeten
    • H01J61/52H01J7/26H01J7/24
    • H01J61/52
    • A discharge lamp, and particularly a high-pressure gas-discharge lamp (an HID (high-intensity discharge) lamp or UHP (ultra-high performance) lamp), having a reflector and a cooling means is described. The cooling means comprises at least one nozzle (3) by which a flow of gas can be directed onto the discharge lamp, the at least one nozzle (3) being so arranged that it does not extend, at least to any substantial degree, into a beam path produced by the lamp (2) and the reflector (1). In this way, the cooling means does not produce any obstacles on the beam path for the light. With preferred embodiments, it is possible to produce a turbulent flow that surrounds particularly the discharge vessel (21) of the lamp and that considerably increases the effectiveness of the cooling means. Further embodiments also allow the discharge lamp to be operated in a plurality of different positions without individual regions of the lamp being too little or too severely cooled.
    • 描述具有反射器和冷却装置的放电灯,特别是具有反射器和冷却装置的高压气体放电灯(HID(高强度放电)灯或UHP(超高性能)灯)。 冷却装置包括至少一个喷嘴(3),气体流可以通过该喷嘴引导到放电灯上,所述至少一个喷嘴(3)被布置成使得其不至少在任何实质上延伸到 由灯(2)和反射器(1)产生的光束路径。 以这种方式,冷却装置在光束的光路上不产生任何障碍物。 利用优选实施例,可以产生特别围绕灯的放电容器(21)的湍流,并且显着增加了冷却装置的有效性。 另外的实施例还允许放电灯在多个不同位置操作,而灯的各个区域太小或太严重地被冷却。