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    • 3. 发明授权
    • Fluorescent lamp and amalgam assembly therefor
    • 荧光灯和汞合金组合
    • US06653775B1
    • 2003-11-25
    • US10226556
    • 2002-08-23
    • Richard S. SpeerLouise D. ClearyJoseph V. Lima
    • Richard S. SpeerLouise D. ClearyJoseph V. Lima
    • H01J162
    • H01J61/28H01J65/048
    • An amalgam assembly for a fluorescent lamp includes a glass exhaust tubulation extending toward a base portion of the lamp, the tubulation being closed at an end adjacent the lamp base portion, and a metal cup disposed in the tubulation and retained by a pinched portion of the tubulation. The cup defines an annular outer wall having a free edge extending toward the tubulation closed end, a tubular central core portion extending toward the tubulation closed end, and an annular trough formed by the core portion and the outer wall. A mercury amalgam ball is disposed between the metal cup and the tubulation closed end, a diameter of the ball exceeding an inner diameter of the core portion, and a coating of a metal wetting agent is disposed on interior surfaces of the trough.
    • 用于荧光灯的汞齐组件包括朝向灯的基部延伸的玻璃排出管,在与灯底部相邻的端部封闭的管,以及设置在管中的金属杯,并且被夹持部分 管状。 杯子限定了环形外壁,其具有朝向管状封闭端延伸的自由边缘,朝向管状封闭端延伸的管状中心芯部分,以及由芯部分和外壁形成的环形槽。 在金属杯和管状封闭端之间设置汞汞齐球,球的直径超过芯部的内径,并且金属润湿剂的涂层设置在槽的内表面上。
    • 5. 发明申请
    • Method of Applying Phosphor Coatings
    • 应用磷光体涂层的方法
    • US20070292609A1
    • 2007-12-20
    • US11750023
    • 2007-05-17
    • Richard S. SpeerMadis Raukas
    • Richard S. SpeerMadis Raukas
    • B05B5/00
    • C09K11/0883C09K11/02C09K11/7706C09K11/7734
    • A method of applying a phosphor coating is described. The method comprises forming a suspension of a phosphor and a polymer binder dissolved in a solvent, the phosphor comprising at least one of a nitridosilicate or an oxonitridosilicate phosphor, the polymer binder being capable of decomposing thermally; applying the suspension to a substrate to form a coating; drying the coating; and baking the coating in an inert atmosphere to thermally decompose the polymer binder to form the phosphor coating, preferably at a temperature less than about 400° C. in a nitrogen atmosphere. A preferred polymer binder is polyisobutyl methacrylate
    • 描述了施加荧光体涂层的方法。 所述方法包括形成溶解在溶剂中的磷光体和聚合物粘合剂的悬浮液,所述荧光体包括氮化硅酸盐或氧代烟草硅酸盐荧光体中的至少一种,所述聚合物粘合剂能够热分解; 将悬浮液施加到基底以形成涂层; 干燥涂层; 并在惰性气氛中烘烤该涂层以热分解聚合物粘合剂以形成荧光体涂层,优选在氮气气氛中在低于约400℃的温度下进行。 优选的聚合物粘合剂是甲基丙烯酸异丁酯
    • 7. 发明授权
    • Method of applying phosphor coatings
    • 施加荧光体涂层的方法
    • US08282986B2
    • 2012-10-09
    • US11750023
    • 2007-05-17
    • Richard S. SpeerMadis Raukas
    • Richard S. SpeerMadis Raukas
    • B05D5/06B05D3/02
    • C09K11/0883C09K11/02C09K11/7706C09K11/7734
    • A method of applying a phosphor coating is described. The method comprises forming a suspension of a phosphor and a polymer binder dissolved in a solvent, the phosphor comprising at least one of a nitridosilicate or an oxonitridosilicate phosphor, the polymer binder being capable of decomposing thermally; applying the suspension to a substrate to form a coating; drying the coating; and baking the coating in an inert atmosphere to thermally decompose the polymer binder to form the phosphor coating, preferably at a temperature less than about 400° C. in a nitrogen atmosphere. A preferred polymer binder is polyisobutyl methacrylate
    • 描述了施加荧光体涂层的方法。 所述方法包括形成溶解在溶剂中的磷光体和聚合物粘合剂的悬浮液,所述荧光体包括氮化硅酸盐或氧代烟草硅酸盐荧光体中的至少一种,所述聚合物粘合剂能够热分解; 将悬浮液施加到基底以形成涂层; 干燥涂层; 并在惰性气氛中烘烤该涂层以热分解聚合物粘合剂以形成荧光体涂层,优选在氮气气氛中在低于约400℃的温度下进行。 优选的聚合物粘合剂是甲基丙烯酸异丁酯
    • 8. 发明授权
    • Mercury dispenser, method of making mercury dispenser and method of dosing mercury into ARC discharge lamp
    • 汞分配器,制造汞分配器的方法和汞投入ARC放电灯的方法
    • US07812533B2
    • 2010-10-12
    • US11983626
    • 2007-11-09
    • David W. JohnstonWilliam A. GeorgeRichard S. SpeerGregory Zaslavsky
    • David W. JohnstonWilliam A. GeorgeRichard S. SpeerGregory Zaslavsky
    • H01J17/26
    • H01J61/28H01J9/395H01J61/72
    • A fluorescent lamp (10) includes a tubular member or envelope (12) having an arc generating and sustaining medium (15) therein. As known, the tubular envelope (12) is constructed of a suitable glass, for example lime glass. An electrode (14) is provided in each end of the tubular member (12) and a phosphor coating (16) is applied to the interior surface (18) of the tubular member (12). A mercury dispenser (20) is situated within the tubular member (12). The mercury dispenser (20) includes a body (21) composed of a material selected from the group consisting of glass and ceramic materials. The body (21) is provided with a bore (22). A first material (24) capable of wetting mercury coats the bore. In a preferred embodiment the first material (24) is silver having a thickness between 0.1μ and 8μ. A quantity of mercury (26) is deposited in the bore (22) in contact with the first material (24).
    • 荧光灯(10)包括其中具有电弧产生和维持介质(15)的管状部件或外壳(12)。 众所周知,管状外壳(12)由合适的玻璃(例如石灰玻璃)构成。 在管状构件(12)的每个端部设置电极(14),并且将荧光体涂层(16)施加到管状构件(12)的内表面(18)上。 水银分配器(20)位于管状构件(12)内。 汞分配器(20)包括由选自玻璃和陶瓷材料的材料组成的主体(21)。 主体(21)设置有孔(22)。 能够润湿水银的第一种材料(24)可覆盖孔。 在优选实施例中,第一材料(24)是厚度在0.1μ和8μ之间的银。 一定量的汞(26)沉积在与第一材料(24)接触的孔(22)中。
    • 9. 发明授权
    • Modular lighting techniques
    • 模块化照明技术
    • US09243790B2
    • 2016-01-26
    • US13667476
    • 2012-11-02
    • Richard S. SpeerDavid W. HambyThomas D. DreebenAdam M. ScotchKenneth G. Grossman
    • Richard S. SpeerDavid W. HambyThomas D. DreebenAdam M. ScotchKenneth G. Grossman
    • F21V29/00F21V23/06F21S2/00F21Y101/02
    • F21V23/06F21S2/005F21Y2115/10
    • Techniques and architecture are disclosed for providing a modular lighting system/luminaire having an integrated heat sink assembly. In some cases, the system/luminaire may comprise a plurality of individual modular light sources which have been operatively coupled with one another. In some instances, a modular light source may include one or more light engines (e.g., light emitting diodes or LEDs) which have been operatively coupled with an individual heat sink module. When assembled, the plurality of heat sink modules may define, in the aggregate, a plurality of heat conduits which dissipate thermal energy from the light engines by convective heat transfer. Also, in some cases, the heat sink modules may be electrically isolated from one another, allowing for the heat sink assembly itself, in part or in whole, to function as part of the desired circuit.
    • 公开了用于提供具有集成散热器组件的模块化照明系统/灯具的技术和架构。 在一些情况下,系统/灯具可以包括已经可操作地彼此耦合的多个单独的模块化光源。 在一些情况下,模块化光源可以包括已经与各个散热器模块操作耦合的一个或多个光引擎(例如,发光二极管或LED)。 当组装时,多个散热器模块可以集中地限定多个热导管,其通过对流热传递从光引擎消散热能。 此外,在一些情况下,散热器模块可以彼此电隔离,允许散热器组件本身部分或全部地用作所需电路的一部分。