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    • 2. 发明授权
    • Starting aid for an electrodeless high intensity discharge lamp
    • 启动无电极高强度放电灯
    • US5248918A
    • 1993-09-28
    • US866395
    • 1992-04-09
    • James T. DakinMark E. DuffyRaymond A. Heindl
    • James T. DakinMark E. DuffyRaymond A. Heindl
    • H01J61/54H01J65/04H05B41/24
    • H05B41/24H01J61/547H01J65/042H01J65/048
    • This electrodeless high intensity discharge lamp including a light-transmissive arc tube having spaced wall portions of dielectric material and a first gaseous fill within the arc tube. An excitation coil about the arc tube is energizable with RF current effective to develop a toroidal arc discharge in the first gaseous fill upon a dielectric breakdown of the fill. A starting container is joined to the arc tube and has an end wall constituted by one of said arc-tube wall portions. A second gaseous fill within the starting container has a dielectric strength lower than that of the first gaseous fill. For initiating the rotoidal arc discharge, we provide an arrangement for producing a dielectric breakdown of the gaseous fill within the starting container that develops into an electric discharge that changes the potential at the end wall in such a manner as to cause a dielectric breakdown of the first gaseous fill.
    • 该无电极高强度放电灯包括具有电介质材料隔开的壁部分和在电弧管内的第一气态填充物的透光电弧管。 围绕电弧管的激励线圈可激励RF电流,其有效地在填充物的介电击穿时在第一气态填充物中形成环形电弧放电。 起动容器与电弧管接合,具有由所述电弧管壁部之一构成的端壁。 起动容器内的第二气态填充物的介电强度低于第一气态填充物的介电强度。 为了启动旋转电弧放电,我们提供了一种用于产生起动容器内的气态填充物的电介质击穿的布置,其发展成放电,其以这样的方式改变端壁处的电位,使得导致 第一次充气。
    • 6. 发明授权
    • Gas probe starter for an electrodeless high intensity discharge lamp
    • 无极高强度放电灯的气体探头启动器
    • US5095249A
    • 1992-03-10
    • US622247
    • 1990-12-04
    • Victor D. RobertsJames T. DakinMark E. DuffyRaymond A. Heindl
    • Victor D. RobertsJames T. DakinMark E. DuffyRaymond A. Heindl
    • H05B41/24H05B41/28
    • H05B41/2806H05B41/24Y02B20/22
    • A gas probe starter for an electrodeless high intensity discharge (HID) lamp includes a fixed starting electrode for coupling a starting voltage to a chamber which is attached to the outer wall of the arc tube and contains a gas. The gas in the starting chamber, which is preferably at a low pressure relative to that of the arc tube fill, is switched between conducting and nonconducting states corresponding to lamp-starting and normal running operation, respectively. To start the lamp, the starting voltage is applied to the starting electrode, causing a discharge current to flow in the gas chamber which, in turn, results in the capacitive coupling of a sufficiently high voltage to the arc tube in order to initiate an arc discharge therein. After the arc discharge is initiated, the starting voltage is substantially reduced so that the discharge current in the starting chamber is extinguished.
    • 用于无电极高强度放电(HID)灯的气体探针启动器包括用于将启动电压耦合到附接到电弧管的外壁并且包含气体的室的固定起动电极。 起动室中优选相对于电弧管填充物的低压的气体分别在对应于起动和正常运行操作的导电状态和非导通状态之间切换。 为了启动灯,启动电压被施加到起始电极,导致放电电流在气室中流动,这进而导致足够高的电压与电弧管的电容耦合,以便引发电弧 放电。 在电弧放电开始之后,启动电压大大降低,使起动室中的放电电流熄灭。
    • 7. 发明授权
    • Crimp length gauge for ceramic metal halide electrodes
    • 陶瓷金属卤化物电极的压接长度表
    • US5879215A
    • 1999-03-09
    • US797704
    • 1997-02-11
    • Mark E. DuffyRaymond A. Heindl
    • Mark E. DuffyRaymond A. Heindl
    • H01J9/24H01J9/42
    • H01J9/247
    • A method and apparatus for assembling a ceramic metal halide high intensity discharge (HID) lamp is disclosed. The apparatus includes a base adapted to receive a ceramic arc tube body, a movable gauge arm having a first portion contacting an end surface of the arc tube body, an electrode holder for supporting an electrode in contact with a second portion of the gauge arm, and a crimper for securing a stop to the electrode at a position determined by the extent of movement of the gauge arm. The apparatus permits stops to be secured to electrodes, either simultaneously or sequentially, thereby correcting for a length deviation of the arc tube body. As a result, half of the required correction is made on each electrode. Since both electrodes are set to the same insertion length, an arc gap is inherently centered in the arc tube body during assembly.
    • 公开了一种用于组装陶瓷金属卤化物高强度放电(HID)灯的方法和装置。 该装置包括:适于容纳陶瓷电弧管体的基座;具有与电弧管主体的端面接触的第一部分的可移动量规臂,用于支撑与量规臂的第二部分接触的电极的电极支架, 以及用于在由量规臂的移动程度确定的位置处固定到电极的压接器。 该装置允许停止件同时或顺序地固定到电极,从而校正电弧管体的长度偏差。 结果,在每个电极上进行所需校正的一半。 由于两个电极都被设置成相同的插入长度,所以在组装期间电弧间隙固有地集中在电弧管体中。
    • 10. 发明授权
    • Rapid restrike metal halide lamp and a method of operating such
    • 快速再起弧金属卤化物灯及其操作方法
    • US4853597A
    • 1989-08-01
    • US114467
    • 1987-10-30
    • Raymond A. HeindlGilbert H. ReilingAlbert L. Suster
    • Raymond A. HeindlGilbert H. ReilingAlbert L. Suster
    • H01J61/54H05B41/38
    • H01J61/54H05B41/382H05B41/384Y02B20/204Y02B20/206
    • A rapid restrike metal halide lamp and method of operating such a lamp are disclosed which are particularly suitable for sports stadium lighting applications. The rapid restrike metal halide lamp has an arc tube containing constituents which require a waveform having a relatively high voltage and at a relatively high current in order to rapidly restrike the arc tube after the lamp has experienced a power interruption so as to initiate a sustaining arc condition of the arc tube. The relatively high waveform in the form of a series of pulse trains is routed to the arc tube by means of a two path arrangement comprising a conductive base at the bottom of the lamp and a insulative cap at the top of the lamp. This two-way path substantially reduces and even eliminates any arcing condition within the confines of the lamp. The rapid restrike metal halide lamp may have a keep-alive heater arranged around at least a portion of the arc tube so as to assist in the rapid restriking of the lamp after the lamp has experienced an extended shut-down or cool-down condition. The disclosed method specifies particular ranges for an ignition voltage which obtain the rapid restrike of the arc tube.
    • 公开了一种快速重启金属卤化物灯和操作这种灯的方法,其特别适用于体育场馆照明应用。 快速再起弧金属卤化物灯具有包含需要具有较高电压和较高电流的波形的成分的电弧管,以便在灯经历电源中断之后快速重新起弧电弧管,以便启动维持电弧 电弧管的状况。 一系列脉冲串形式的相对较高的波形通过包括在灯底部的导电基座和灯顶部的绝缘帽的双路布置路由到电弧管。 该双向路径基本上减少并且甚至消除了灯的范围内的任何电弧状态。 快速再起弧金属卤化物灯可以具有围绕电弧管的至少一部分布置的保持活体加热器,以便在灯经历了延长的关闭或冷却状态之后帮助灯的快速再起弧。 所公开的方法指定获得电弧管的快速再起弧的点火电压的特定范围。