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    • 1. 发明授权
    • Compact electrodeless fluorescent lamp with improved cooling
    • 紧凑型无极荧光灯,具有改进的冷却
    • US06555954B1
    • 2003-04-29
    • US09616167
    • 2000-07-14
    • Robert ChandlerEdward K. ShapiroOleg A. PopovJakob Maya
    • Robert ChandlerEdward K. ShapiroOleg A. PopovJakob Maya
    • H01J162
    • H01J65/042H01J65/048
    • The present invention comprises a compact electrodeless fluorescent lamp that includes a transparent envelope containing a fill of inert gas along with a vaporizable metal such as mercury. An induction coil is operated by a driver circuit, and is positioned inside of a reentrant cavity in the envelope with an adjacent permeable magnetic field manipulation structure having a shunting surface ending at a shunting surface periphery. A thermally and electrically conductive primary cooling structure is positioned adjacent the magnetic field manipulation structure to extend within the shunting surface periphery while being separated from the induction coil thereby. A further component cooling structure is provided to at least partially enclose the driver circuit connected to the induction coil.
    • 本发明包括一种紧凑的无电极荧光灯,其包括含有惰性气体填充物和可汽化金属如汞的透明外壳。 感应线圈由驱动器电路操作,并且具有相邻的可渗透磁场操纵结构,位于外壳内的可重入腔内,具有在分流表面周边终止的分流表面。 导电和导电的主冷却结构邻近磁场操纵结构定位,以在分流表面周边内延伸,同时与感应线圈分离。 提供另一部件冷却结构以至少部分地包围连接到感应线圈的驱动电路。
    • 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。
    • 3. 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。
    • 4. 发明授权
    • High light output electrodeless fluorescent closed-loop lamp
    • 高光输出无极荧光闭环灯
    • US06522085B2
    • 2003-02-18
    • US09907210
    • 2001-07-16
    • Oleg A. PopovJagannathan RaviRobert ChandlerEdward Shapiro
    • Oleg A. PopovJagannathan RaviRobert ChandlerEdward Shapiro
    • H05B4116
    • H05B41/24H01J65/048
    • An electrodeless fluorescent lamp comprises a closed-loop (“tokamak”) envelope, two ferrite cores, and an induction coil that is disposed on the envelope walls inside the closed-loop formed by the envelope. The envelope comprises two straight tubes of the same diameter. All coils' turns have essential the same length and are parallel to each other and to the closed-loop axis. Each ferrite core encircles a segment of each the coil's turn and one connecting tube. The lamp can be operated at driving frequencies of 100-600 kHz and lamp powers of 50-250 W. The ferrite core power losses were 6-8 W when the lamp was operated at a frequency of 200-300 kHz and lamp power of 140-150 W. The lamp light output was 12,500 lumen and luminous efficacy was 87 LPW.
    • 无电极荧光灯包括闭环(“托卡马克”)外壳,两个铁氧体磁心和设置在由信封形成的闭环内的信封壁上的感应线圈。 信封包括两个相同直径的直管。 所有线圈的匝必须具有相同的长度,并且彼此平行并且与闭环轴线平行。 每个铁氧体磁芯都围绕线圈的每一圈和一个连接管。 该灯可以在100-600kHz的驱动频率和50-250W的灯功率下操作。当灯以200-300kHz的频率操作并且灯功率为140时,铁氧体磁芯功率损耗为6-8W -150 W.灯光输出为12,500流明,发光效率为87 LPW。
    • 6. 发明申请
    • Electrodeless fluorescent lamp with controlled cold spot temperature
    • 无极荧光灯具有受控冷点温度
    • US20060103314A1
    • 2006-05-18
    • US10991304
    • 2004-11-17
    • Robert ChandlerJakob Maya
    • Robert ChandlerJakob Maya
    • H01J17/16H01J61/30H01J1/50
    • H01J61/33H01J65/048
    • An electrodeless lamp includes a bulbous lamp envelope enclosing an inert gas and a vaporizable metal fill, the lamp envelope having a reentrant cavity; an electromagnetic coupler positioned within the reentrant cavity; and a cold spot structure configured for low temperature, low duty cycle operation and for room temperature, 100% duty cycle operation. In some embodiments, the cold spot structure includes a dimple in the lamp envelope, the dimple having a thinned sidewall. In further embodiments, a shield is positioned near the dimple to control cold spot temperature. In additional embodiments, the cold spot structure includes a heat sink attached to the exhaust tube of the lamp envelope and thermally isolated from the lamp base.
    • 无电极灯包括包围惰性气体的球状灯管和可汽化的金属填充物,灯泡具有可折入腔; 位于所述凹陷腔内的电磁耦合器; 以及低温,低占空比运行和室温100%占空比运行的冷点结构。 在一些实施例中,冷点结构包括灯壳中的凹坑,凹坑具有变薄的侧壁。 在另外的实施例中,屏蔽件位于凹坑附近以控制冷点温度。 在另外的实施例中,冷点结构包括附接到灯壳的排气管并与灯座热隔离的散热器。
    • 7. 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
    • Elevated platform cooling assembly and method
    • 高架平台冷却装配及方法
    • US09593688B1
    • 2017-03-14
    • US14196359
    • 2014-03-04
    • Robert Chandler
    • Robert Chandler
    • F04B23/00F04D25/02
    • E21B1/00F04D19/002F04D29/601
    • An elevated platform cooling assembly includes a portable assembly frame; a mast carried by the assembly frame, the mast selectively positional between a folded, collapsed transport configuration and an erected, extended functional and operational configuration; a fan carried by the mast; a fan motor drivingly engaging the fan; a working fluid pump and supply mechanism disposed in fluid communication with the fan motor; and 4 prime mover drivingly engaging the working fluid pump and supply mechanism. A method of cooling an elevated platform is also disclosed.
    • 升降平台冷却组件包括便携式组装框架; 由组装框架承载的桅杆,所述桅杆选择性地位于折叠的,折叠的输送构造和竖立的延伸的功能和操作构型之间; 由桅杆承载的风扇; 风扇马达驱动地接合风扇; 设置成与风扇马达流体连通的工作流体泵和供给机构; 和4个原动机驱动地接合工作流体泵和供应机构。 还公开了一种冷却升高平台的方法。