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    • 5. 发明申请
    • PLASMA LAMP WITH SMALL POWER COUPLING SURFACE
    • 具有小功率耦合表面的等离子体灯
    • US20110298354A1
    • 2011-12-08
    • US13210547
    • 2011-08-16
    • Frederick M. EspiauYian ChangFrederick M. EspiauMarc DeVincentis
    • Frederick M. EspiauYian ChangFrederick M. EspiauMarc DeVincentis
    • H01J65/04
    • H01J65/044H01J65/042H05B41/2806Y02B20/22
    • In an example embodiment, an electrodeless plasma lamp is provided which comprises a dielectric body having an effective dielectric constant greater than two. The dielectric body may have a surface with a first region coated with an electrically conductive material and a second region that is not coated with the electrically conductive material. A bulb is located proximate to the second region of the dielectric body and having an outer surface area and the second region may have an uncoated surface area that is less than about sixty percent (60%) of the outer surface area of the bulb. A power source is coupled to the dielectric body to provide radio frequency power to the dielectric body at a frequency that resonates at a fundamental mode in the dielectric body. The bulb contains a fill that forms a plasma when the radio frequency power is provided from the dielectric body through the second region.
    • 在一个示例性实施例中,提供了一种无电极等离子体灯,其包括具有大于2的有效介电常数的介电体。 电介质体可以具有涂覆有导电材料的第一区域和未涂覆导电材料的第二区域的表面。 灯泡位于电介质体的第二区域附近并且具有外表面区域,而第二区域可具有小于灯泡外表面积的约60%(60%)的未涂覆表面积。 电源耦合到电介质体,以在介电体中以基模谐振的频率向电介质体提供射频功率。 当从电介质体通过第二区域提供射频功率时,灯泡包含形成等离子体的填充物。
    • 9. 发明授权
    • Integrated RF electrodeless plasma lamp device and methods
    • 集成RF无极等离子灯装置及方法
    • US08384300B2
    • 2013-02-26
    • US12873129
    • 2010-08-31
    • Mehran MatloubianFrederick M. Espiau
    • Mehran MatloubianFrederick M. Espiau
    • H05B41/16
    • H01J65/044H01J61/56
    • An RF electrode-less plasma lighting device has a base member, which includes an outer region capable of being coupled to first AC potential and an inner region capable of being coupled to a second AC potential. In a preferred embodiment, the device has an RF module mechanically and integrally coupled to the base member. The RF module has an RF source, which has an output. The RF module has a first DC input and a second DC input. The first DC input of the RF module is coupled to a first DC potential and the second DC input of the RF module is coupled to a second DC potential. In a specific embodiment, the present device has an RF electrodeless plasma lighting assembly integrally coupled to the base member. The RF plasma lighting assembly has an RF input, which is coupled to the output of the RF source.
    • RF无电极等离子体照明装置具有基座部件,其包括能够耦合到第一AC电位的外部区域和能够耦合到第二AC电位的内部区域。 在优选实施例中,该装置具有机械地并且整体地联接到基座构件的RF模块。 RF模块具有RF源,其具有输出。 RF模块具有第一DC输入和第二DC输入。 RF模块的第一DC输入耦合到第一DC电位,并且RF模块的第二DC输入耦合到第二DC电位。 在具体实施例中,本装置具有一体地耦合到基座构件的RF无电极等离子体照明组件。 RF等离子体照明组件具有RF输入,其耦合到RF源的输出​​。
    • 10. 发明授权
    • Electrodeless plasma lamp array
    • 无电极等离子灯阵列
    • US08373352B2
    • 2013-02-12
    • US12814321
    • 2010-06-11
    • Douglas A. DoughtyMehran MatloubianFrederick M. Espiau
    • Douglas A. DoughtyMehran MatloubianFrederick M. Espiau
    • H05B41/16
    • H05B41/2806H01J65/044H05B41/39Y02B20/22
    • An electrodeless plasma lamp array structure uses multiple plasma lamps to produce large amounts of electromagnetic radiation (visible, IR, UV, or a combination of visible, IR, and UV). An M by N array configuration is powered by either a single RF power source or multiple RF power sources. The array incorporates controllers to adjust the power delivered from the RF power source to each lamp within the array. By adjusting the delivered RF power, the intensity of electromagnetic radiation that is emitted from each lamp is controlled independently allowing for the creation of an array of lamps that emit electromagnetic radiation of varying intensity levels at different places within the array. Using lamps with different color temperatures as part of the array allows the color temperature and the color rendering index of the illumination to achieve different lighting conditions.
    • 无电极等离子体灯阵列结构使用多个等离子体灯产生大量的电磁辐射(可见光,IR,UV或可见光,IR和UV的组合)。 M / N阵列配置由单个RF电源或多个RF电源供电。 该阵列包含控制器,用于调整从RF电源传送到阵列内的每个灯的功率。 通过调节传送的RF功率,独立地控制从每个灯发射的电磁辐射的强度,允许产生在阵列内的不同位置发射不同强度水平的电磁辐射的灯阵列。 使用具有不同色温的灯作为阵列的一部分允许照明的色温和显色指数达到不同的照明条件。