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    • 2. 发明授权
    • Green-state ceramic discharge vessel parts
    • 绿色陶瓷放电容器部件
    • US07404496B2
    • 2008-07-29
    • US11160334
    • 2005-06-20
    • Jeffrey T. NeilGregory ZaslavskyVictor E. PerezJoseph V. Lima
    • Jeffrey T. NeilGregory ZaslavskyVictor E. PerezJoseph V. Lima
    • B65D6/00B65D25/28
    • H01J9/266H01J61/30
    • A ceramic discharge vessel in a green state prior to assembly includes a first discharge vessel part in a green state, a second discharge vessel part in a green state, wherein the first and second discharge vessel parts form a discharge vessel when joined together, and a first capillary attached to the first discharge vessel part and a second capillary attached to one of the first and second discharge vessel parts. To facilitate joining the first and second discharge vessel parts, a first removable handle is temporarily attached to the first discharge vessel part for maneuvering the first discharge vessel part, and a second removable handle is temporarily attached to the second discharge vessel part for maneuvering the second discharge vessel part.
    • 在组装之前,处于绿色状态的陶瓷放电容器包括处于绿色状态的第一放电容器部分,处于绿色状态的第二放电容器部分,其中第一和第二放电容器部分在接合时形成放电容器,并且 附着于第一放电容器部分的第一毛细管和连接到第一和第二放电容器部分之一的第二毛细管。 为了便于连接第一和第二放电容器部分,第一可移除手柄临时附接到第一放电容器部分以操纵第一放电容器部分,并且第二可移除手柄临时附接到第二放电容器部分,以操纵第二放电容器部分 放电容器部分。
    • 3. 发明授权
    • LED light source having glass heat pipe with fiberglass wick
    • LED光源具有玻璃纤维灯管的玻璃热管
    • US08827498B2
    • 2014-09-09
    • US12286438
    • 2008-09-30
    • David W. JohnstonGregory ZaslavskyJeffery J. Serre
    • David W. JohnstonGregory ZaslavskyJeffery J. Serre
    • F21V29/00F21S8/10F21S8/02F21Y101/02
    • F21V29/51F21S8/02F21S45/47F21V29/004F21V29/70F21V29/74F21Y2115/10
    • A light source (10) comprises a tubular glass heat pipe (12) having a given inside diameter ID. A tubular fiberglass wick (14) is positioned within the glass heat pipe (12). The fiberglass wick (14) has an outside diameter OD substantially equal to the given inside diameter ID and has a substantially centrally located open chamber (16) extending the length thereof. A quantity of an evaporable-condensable medium (17) is provided within the glass heat pipe (12) and a metal cap (18) selected from the group of glass-sealing metals and alloys is fixed to a proximal end (20) of the glass heat pipe (12). Heat dissipaters (22) are fixed to the distal end (24) of the heat pipe (12) and a light emitting diode (26) is fixed to the metal cap (18). Power conducting traces (28) are formed with the heat pipe (12) and are electrically connected to the light emitting diode (26). A lamp (40) can be formed with a plurality of the light sources (10).
    • 光源(10)包括具有给定内径ID的管状玻璃热管(12)。 管状玻璃纤维芯(14)位于玻璃热管(12)内。 玻璃纤维芯(14)具有基本上等于给定的内径ID的外径OD,并且具有延伸其长度的基本中心定位的开放室(16)。 在玻璃热管(12)内设有一定数量的可蒸发冷凝介质(17),从该组玻璃密封金属和合金中选择的金属帽(18)固定到 玻璃热管(12)。 散热器(22)固定在热管(12)的远端(24)上,发光二极管(26)固定在金属盖(18)上。 功率传导迹线(28)与热管(12)形成并且电连接到发光二极管(26)。 灯(40)可以形成有多个光源(10)。
    • 4. 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。
    • 8. 发明授权
    • Glow discharge starter containing cylindrical capacitor
    • 发光放电启动器包含圆柱形电容器
    • US4912370A
    • 1990-03-27
    • US276836
    • 1988-11-28
    • Gregory ZaslavskyNikolaos BarakitisSheppard Cohen
    • Gregory ZaslavskyNikolaos BarakitisSheppard Cohen
    • H05B41/08
    • H05B41/08
    • A glow discharge starter having an integral thermal protector includes a glow bottle having an hermetically sealed discharge envelope containing an ionizable medium, a bimetallic electrode and a counter electrode. A pair of conductors extend from the main body of a radio frequency suppressing capacitor and electrically couple respective electrodes of the glow bottle. The cylindrically-shaped main body of the capacitor is coaxially positioned with respect to the discharge envelope so as to be responsive to heat generated within the envelope. When an abnormal temperature limit (e.g., 450 degrees Celsius) is reached by the discharge envelope, a short circuit is created within the main body of the capacitor and extinguishes the discharge.
    • 具有整体式热保护器的辉光放电起动器包括具有包含可电离介质,双金属电极和对电极的气密密封的放电外壳的辉光瓶。 一对导体从射频抑制电容器的主体延伸并且电耦合发光瓶的各个电极。 电容器的圆柱形主体相对于放电封套同轴定位,以便响应于在封套内产生的热量。 当放电外壳达到异常温度限制(例如450摄氏度)时,在电容器的主体内产生短路并熄灭放电。