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    • 1. 发明授权
    • Electrodeless inductively-coupled fluorescent lamp with improved cavity
and tubulation
    • 无电极感应耦合荧光灯具有改进的腔和管
    • US5723947A
    • 1998-03-03
    • US772139
    • 1996-12-20
    • Oleg PopovJakob MayaKoichi KobayashiEdward K. Shapiro
    • Oleg PopovJakob MayaKoichi KobayashiEdward K. Shapiro
    • H01J61/30H01J61/35H01J61/52H01J65/04H01H65/04H01H65/00
    • H01J65/048H01J61/30H01J61/35H01J61/52
    • An electrodeless inductively-coupled fluorescent lamp which operates at ro frequency comprising a bulbous envelope (1) filled with rare gas and metal vapor. A reentrant cavity (4) and an induction coil (6) are disposed in the cavity (4). The inner walls of the envelope (1) and the cavity (4) have a protective coating (3) and a phosphor coating (2). A metal Faraday cylinder (12) welded to the lamp base (13) is disposed between the cavity (4) and the coil (6) to reduce capacitive RF voltage between the coil and the plasma to improve lamp maintenance and remove heat. A tubulation (16) is disposed on the lamp axis to evacuate the envelope (1). The proximal end of the tubulation (16) has an expansion (20) with the volume (23) where the initial capacitive discharge is ignited. The RF coil voltage needed for the ignition of the capacitive discharge in the expansion area (23) is substantially lower than that needed for the ignition of the capacitive discharge in the area (14) along the inner cavity walls (4) to decrease the lamp starting voltage. In one of the embodiments of the present invention the expansion is conically shaped and in another it is cylindrically shaped and is used to generate the inductive plasma to increase the light generation in the top part of the bulb (28) and improve light output through the bulb top surface (27).
    • 一种无电感电耦合荧光灯,其在射频下工作,包括填充有稀有气体和金属蒸汽的球状外壳(1)。 凹入腔(4)和感应线圈(6)设置在空腔(4)中。 信封(1)和空腔(4)的内壁具有保护涂层(3)和荧光体涂层(2)。 焊接到灯座(13)的金属法拉第圆筒(12)设置在空腔(4)和线圈(6)之间,以减小线圈和等离子体之间的电容RF电压,以改善灯的维护和去除热量。 管(16)设置在灯轴上以排空外壳(1)。 管状物(16)的近端具有膨胀(20),其中引发初始电容放电的体积(23)。 在扩展区域(23)中点燃电容放电所需的RF线圈电压基本上低于沿着内腔壁(4)点燃区域(14)中的电容放电所需的RF线圈电压,以减少灯 启动电压。 在本发明的一个实施例中,膨胀是圆锥形的,并且在另一个中它是圆柱形的并且用于产生感应等离子体以增加灯泡(28)的顶部部分中的光产生,并且改善通过 灯泡顶面(27)。
    • 2. 发明授权
    • High frequency electrodeless compact fluorescent lamp
    • 高频无极小型荧光灯
    • US06433478B1
    • 2002-08-13
    • US09435960
    • 1999-11-09
    • Robert ChandlerOleg PopovEdward K. ShapiroJakob Maya
    • Robert ChandlerOleg PopovEdward K. ShapiroJakob Maya
    • H01J162
    • H01J65/048Y02B20/19
    • An electrodeless compact fluorescent lamp operated at a frequency from 50 KHz to 1000 KHz and RF power from 10 W to 40 W is described. The lamp includes a bulbous glass envelope (1) filled with rare gas and metal vapor, reentrant glass cavity (2), an induction coil (6) made from Litz wire, a ferrite assembly comprising a ferrite core (7) and MnZn ferrite disk (11), a cooling structure comprising a metal (or ceramic) tube (8) positioned inside the ferrite core (7) and a metal (or ceramic) unit (9) that transmits the heat from the cavity and ferrite assembly to the Edison socket (10), a thermal shield (12), and a driver and matching network located inside the lamp base (13). A protective coating (15) and phosphor coating (16) are coated on the inner surface of the envelope (1) and reentrant cavity (2). The reflective coating (17) made from alumina is coated on the inner surface of the cavity (2) and on the outer surface of the envelope bottom (4). The mercury pressure is controlled in the envelope by the temperature of the amalgam (5) positioned in the tubulation (3) or by the temperature of pure mercury located in the cold spot.
    • 描述了以50KHz至1000KHz的频率操作的无电极小型荧光灯和10W至40W的RF功率。 该灯包括填充有稀有气体和金属蒸气的球状玻璃外壳(1),可重入玻璃腔(2),由丽兹线制成的感应线圈(6),包括铁氧体磁芯(7)和铁氧体磁芯 (11),包括位于铁氧体磁芯(7)内部的金属(或陶瓷)管(8)的冷却结构和将来自空腔和铁氧体组件的热量传递到爱迪生的金属(或陶瓷)单元(9) 插座(10),热屏蔽(12)以及位于灯座(13)内部的驱动器和匹配网络。 保护涂层(15)和荧光体涂层(16)涂覆在外壳(1)和凹槽(2)的内表面上。 由氧化铝制成的反射涂层(17)涂覆在空腔(2)的内表面和信封底部(4)的外表面上。 水银压力通过置于(3)中的汞齐(5)的温度或位于冷点的纯汞的温度控制在信封内。
    • 5. 发明授权
    • Electrodeless lamp
    • 无电极灯
    • US06768248B2
    • 2004-07-27
    • US09748310
    • 2000-12-26
    • Robert ChandlerOleg PopovEdward K. ShapiroJakob Maya
    • Robert ChandlerOleg PopovEdward K. ShapiroJakob Maya
    • H01J6152
    • H01J65/048Y02B20/19
    • An electrodeless lamp includes an envelope (1) containing a fill of discharge gas, a magnetic core t(7), an induction coil (6) wound around the magnetic core (7), a driver circuit for supplying an electric current to the induction coil (6) to operate the electrodeless lamp, a socket (10) for receiving electrical power supplied to the electrodeless lamp, and a heat conduction means (8,9) thermally coupled to the magnetic core (7) for conducting heat generated in the magnetic core (7) to the ambient atmosphere to dissipate heat therein, or coupled to the socket (10) for conducting heat generated in the magnetic core (7) to the socket to dissipate heat therethrough.
    • 无电极灯包括包含放电气体填充物的外壳(1),缠绕在磁芯(7)上的磁芯t(7),感应线圈(6)),用于向感应电路提供电流的驱动电路 线圈(6)以操作无电极灯,用于接收供给无电极灯的电力的插座(10)和热耦合到磁芯(7)的热传导装置(8,9),用于传导在 磁芯(7)连接到环境大气中以在其中散热或耦合到插座(10),用于将在磁芯(7)中产生的热量传导到插座以散热通过其中。
    • 6. 发明授权
    • Electrodeless fluorescent lamp with low wall loading
    • 无壁灯荧光灯低壁装载
    • US06548965B1
    • 2003-04-15
    • US09505756
    • 2000-02-16
    • Jakob MayaOleg PopovRobert Chandler
    • Jakob MayaOleg PopovRobert Chandler
    • H05B4116
    • H05B41/24H01J65/048
    • An electrodeless fluorescent lamp employs a glass envelope made from a single linear tube or bulb and a reentry cavity disposed on the envelope axis and sealed to the envelope. The envelope is filled with inert gas and mercury vapor. Phosphor and protective coatings are disposed on the inner surfaces of the envelope and the cavity. An induction coil of A few turns made from silver coated copper wire is wrapped around the envelope in its axial direction. The inductively-coupled axially uniform plasma is generated inside the envelope. The discharge electric field and current form a closed-loop path inside the envelope along its walls. The introduction of the reentry cavity decreases the lamp wall loading without loosing lamp power efficiency and efficacy. The lamp is operated at frequencies from 50 kHz to 200 MHz and RF power from 5 W to 2000 W without the use of ferrite inside of the reentry cavity.
    • 无电极荧光灯采用由单个线性管或灯泡制成的玻璃封套和设置在封套轴线上的密封到封套的折返腔。 信封充满惰性气体和汞蒸气。 荧光粉和保护涂层设置在外壳和腔体的内表面上。 由镀银铜丝制成的几圈感应线圈沿其轴向缠绕在外壳上。 电感耦合轴向均匀等离子体在封套内产生。 放电电场和电流沿着其壁部在封套内部形成闭环路径。 折返腔的引入减少了灯壁负载,而不会降低灯的功率效率和功效。 该灯以50kHz至200MHz的频率运行,RF功率从5W至2000W,而不需要在折返腔内使用铁氧体。
    • 10. 发明授权
    • Electrodeless fluorescent lamp with spread induction coil
    • 无极荧光灯带扩展感应线圈
    • US06249090B1
    • 2001-06-19
    • US08674783
    • 1996-07-03
    • Oleg PopovJakob Maya
    • Oleg PopovJakob Maya
    • H05B4116
    • H01J61/523H01J61/70H01J65/048
    • An electrodeless inductively-coupled fluorescent lamp which operates at radio frequencies and contains an induction coil (1) which is inserted in a reentrant cavity (2) of the envelope (7) and is spread along the length of the reentrant cavity (2). The coil (1) is disposed within a cylinder (14) of thermally conductive metal. The use of the spread coil provides for reduction of starting and operation voltages of the lamp and results in lowering of the energy of ions bombarding the inner surface of the envelope (7) and the cavity (2) and therefore improves lamp maintenance and increases lamp life.
    • 一种无电极感应耦合荧光灯,其以无线电频率操作并且包含插入在所述外壳(7)的折返腔(2)中并且沿着所述可重入腔(2)的长度扩展的感应线圈(1)。 线圈(1)设置在导热金属的圆筒(14)内。 扩展线圈的使用提供了降低灯的起动和操作电压并导致离子轰击外壳(7)和空腔(2)的内表面的能量的降低,因此改善了灯的维护并增加了灯 生活。