Electrodeless lighting system
    1.
    发明申请
    Electrodeless lighting system 有权
    无电极照明系统

    公开(公告)号:US20050122049A1

    公开(公告)日:2005-06-09

    申请号:US10950466

    申请日:2004-09-28

    CPC分类号: H01J65/044

    摘要: Disclosed is an electrodeless lighting system capable of being used as an optical source of an electronic device by being minimized and capable of obtaining an optimum impedance matching and controlling a resonance frequency. The electrodeless lighting system comprises: a magnetron for generating microwave and having an antenna through which the microwave is outputted; a resonator having a resonance space where the microwave is resonated and having an inner diameter partially different along a path that the microwave passes; a bulb installed inside the resonator and having a light emitting material therein for emitting light by the microwave energy; and a microwave feeder of which one side is connected to the antenna and another side thereof is connected to the bulb, for guiding microwave to the bulb, in which a ratio of an outer diameter of the microwave feeder and a ratio of an inner diameter of the resonator corresponding to the outer diameter of the microwave feeder are varied along a progressive direction of the microwave.

    摘要翻译: 公开了一种无电极照明系统,其能够通过最小化而被用作电子设备的光源,并且能够获得最佳的阻抗匹配和控制谐振频率。 无电极照明系统包括:用于产生微波并具有天线的磁控管,通过该天线输出微波; 具有共振空间的共振器,其中所述微波谐振并沿着所述微波通过的路径具有部分不同的内径; 安装在谐振器内的灯泡,其中具有用于通过微波能量发光的发光材料; 以及微波馈电器,其一侧连接到天线,另一侧连接到灯泡,用于将微波引导到灯泡,其中微波馈电装置的外径与外径之比 对应于微波馈线的外径的谐振器沿微波的逐行方向变化。

    Electrodeless lighting system
    2.
    发明授权
    Electrodeless lighting system 失效
    无电极照明系统

    公开(公告)号:US07521852B2

    公开(公告)日:2009-04-21

    申请号:US11178428

    申请日:2005-07-12

    IPC分类号: H01J5/48 H01J7/46

    摘要: An electrodeless lighting system comprises: a first case in which a microwave generator, a waveguide for guiding microwave energy and a luminous part communicating with the waveguide, for emitting light by the microwave energy are installed, wherein one side of the first case is opened so that light from the luminous part is emitted to the outside; a second case coupled to the first case to open or close the opened one side of the first case and configured to pass the light from the luminous part; and a third case positioned at one outer side of the first case, in which a high voltage generator for supplying a high voltage to the microwave generator is installed. Accordingly, in the electrodeless lighting system, lateral lighting can be made like a streetlight, heat generating components and lighting components can be installed at separated spaces, respectively, and the generated heat can be smoothly emitted to the outside.

    摘要翻译: 无电极照明系统包括:第一种情况,其中安装微波发生器,用于引导微波能量的波导和与波导连通的发光部分,用于通过微波能量发射光,其中第一壳体的一侧被打开 来自发光部分的光被发射到外面; 第二壳体,联接到第一壳体,以打开或关闭第一壳体的打开的一侧,并且被配置为使来自发光部件的光通过; 以及位于所述第一壳体的一个外侧的第三壳体,其中安装用于向所述微波发生器提供高电压的高压发生器。 因此,在无电极照明系统中,可以像路灯一样形成侧面照明,能够分别在分离的空间设置发热部件和照明部件,并且能够将发热发光到外部。

    Electrodeless lighting system
    3.
    发明授权
    Electrodeless lighting system 有权
    无电极照明系统

    公开(公告)号:US07161304B2

    公开(公告)日:2007-01-09

    申请号:US10950466

    申请日:2004-09-28

    IPC分类号: H01J25/50

    CPC分类号: H01J65/044

    摘要: Disclosed is an electrodeless lighting system capable of being used as an optical source of an electronic device by being minimized and capable of obtaining an optimum impedance matching and controlling a resonance frequency. The electrodeless lighting system comprises: a magnetron for generating microwave and having an antenna through which the microwave is outputted; a resonator having a resonance space where the microwave is resonated and having an inner diameter partially different along a path that the microwave passes; a bulb installed inside the resonator and having a light emitting material therein for emitting light by the microwave energy; and a microwave feeder of which one side is connected to the antenna and another side thereof is connected to the bulb, for guiding microwave to the bulb, in which a ratio of an outer diameter of the microwave feeder and a ratio of an inner diameter of the resonator corresponding to the outer diameter of the microwave feeder are varied along a progressive direction of the microwave.

    摘要翻译: 公开了一种无电极照明系统,其能够通过最小化而被用作电子设备的光源,并且能够获得最佳的阻抗匹配和控制谐振频率。 无电极照明系统包括:用于产生微波并具有天线的磁控管,通过该天线输出微波; 具有共振空间的共振器,其中所述微波谐振并沿着所述微波通过的路径具有部分不同的内径; 安装在谐振器内的灯泡,其中具有用于通过微波能量发光的发光材料; 以及微波馈电器,其一侧连接到天线,另一侧连接到灯泡,用于将微波引导到灯泡,其中微波馈电装置的外径与外径之比 对应于微波馈线的外径的谐振器沿微波的逐行方向变化。

    Low-output microwave, lighting system and flicker removing method using the same
    5.
    发明授权
    Low-output microwave, lighting system and flicker removing method using the same 失效
    低输出微波,照明系统和使用其的闪烁消除方法

    公开(公告)号:US07026590B2

    公开(公告)日:2006-04-11

    申请号:US10750847

    申请日:2004-01-05

    IPC分类号: H05B6/66 H01J25/50

    摘要: A low-output microwave lighting system includes: a rectifier for rectifying general AC power inputted through a power source unit and outputting a DC voltage; a power factor compensator for compensating a power factor of the DC voltage inputted through the rectifier; and an inverter circuit unit for receiving the power factor-compensated DC voltage and outputting an AC voltage through frequency varying. 120 Hz of ripple generated at a low output can be reduce, and it is driven at a frequency of 20 KHz or higher, so that a flicker phenomenon does not occur and a volume and weight in facility can be reduced.

    摘要翻译: 低输出微波照明系统包括:整流器,用于整流通过电源单元输入的一般AC电力并输出直流电压; 功率因数补偿器,用于补偿通过整流器输入的直流电压的功率因数; 以及逆变器电路单元,用于接收功率因数补偿的DC电压并通过频率变化输出AC电压。 可以减少在低输出处产生的脉动的120Hz,并且以20KHz或更高的频率驱动,从而不会发生闪烁现象,并且可以降低设备中的体积和重量。

    Middle output electrodeless lighting system
    7.
    发明授权
    Middle output electrodeless lighting system 失效
    中输出无极照明系统

    公开(公告)号:US07129639B2

    公开(公告)日:2006-10-31

    申请号:US11037016

    申请日:2005-01-19

    IPC分类号: H05B41/16

    CPC分类号: H01J65/044

    摘要: An electrodeless lighting system includes a resonator which passes light. The resonator communicates with a waveguide which guides microwave energy generated by a microwave generator. The microwave energy forms an electric field in the resonator. The electrodeless lighting system further includes a bulb, positioned in the resonator, that generates light from the electric field, a first coil which is wound around an outer circumferential surface of the resonator, and a second coil which is wound around the outer circumferential surface of the resonator. The bulb is disposed between the first coil and the second coil, with the first coil and the second coil forming a magnetic field around the bulb. Accordingly, initial lighting can be more easily achieved, and if the intensity of the magnetic field is properly controlled, the total quantity of light is increased, thereby improving luminous efficiency of the bulb.

    摘要翻译: 无电极照明系统包括通过光的谐振器。 谐振器与引导由微波发生器产生的微波能量的波导连通。 微波能量在谐振器中形成电场。 无电极照明系统还包括位于谐振器中的灯泡,其从电场产生光,卷绕在谐振器的外周面上的第一线圈和缠绕在谐振器的外周面上的第二线圈, 谐振器。 灯泡设置在第一线圈和第二线圈之间,第一线圈和第二线圈在灯泡周围形成磁场。 因此,可以更容易地实现初始照明,并且如果适当地控制磁场的强度,则总的光量增加,从而提高灯泡的发光效率。

    Bulb of electrodeless lighting system
    9.
    发明申请
    Bulb of electrodeless lighting system 审中-公开
    无电极照明系统灯泡

    公开(公告)号:US20060087255A1

    公开(公告)日:2006-04-27

    申请号:US11029373

    申请日:2005-01-06

    IPC分类号: H05B41/24

    摘要: Disclosed is a bulb of an electrodeless lighting system, comprising: a resonator communicated with a waveguide which guides microwave energy generated in a microwave generator, for allowing light to pass therethrough and resonating the microwave energy therein; and a bulb placed in the resonator, for emitting light by exciting a light emitting material therein depending on the microwave energy, wherein the light emitting material is composed of a sulfur and an additive combined with the sulfur for varying a correlated color temperature during emission, thereby capable of varying the correlated color temperature of the light emitted from the bulb up to 6000K˜2500K with a high efficiency.

    摘要翻译: 公开了一种无电极照明系统的灯泡,包括:与波导连通的谐振器,其引导在微波发生器中产生的微波能量,以允许光通过并谐振微波能量; 和放置在谐振器中的灯泡,用于通过根据微波能量激发其中的发光材料来发光,其中发光材料由硫和与硫结合的添加剂组成,用于改变发射期间的相关色温, 从而能够以高效率将从灯泡发出的光的相关色温变化到6000K〜2500K。