External resonator electrode-less plasma lamp and method of exciting with radio-frequency energy
    1.
    发明授权
    External resonator electrode-less plasma lamp and method of exciting with radio-frequency energy 有权
    外部谐振器无电极等离子体灯和射频能量激发的方法

    公开(公告)号:US08427067B2

    公开(公告)日:2013-04-23

    申请号:US13327760

    申请日:2011-12-16

    IPC分类号: H05B41/16

    摘要: Described is an electrode-less plasma lamp comprising a gas-fill vessel, a gas-fill contained within the gas-fill vessel, an RF electromagnetic radiation source, an RF electromagnetic resonator, an output probe that couples RF energy from the RF electromagnetic resonator to the gas-fill vessel, an input probe that couples RF energy from the RF electromagnetic radiation source to the resonator, and a grounding strap that holds a metal veneer surrounding the resonator and a portion of the gas-fill vessel at RF ground. Also described are many variations of the electrode-less plasma lamp; non-limiting examples of which include embodiments that employ other probes in a Dielectric Resonant Oscillator to drive the lamp, and many methods of improving light-harvesting, including raising the gas-fill vessel away from the resonator via a coaxial type transmission line, and collecting light with an optical reflector.

    摘要翻译: 描述了一种无电极等离子体灯,其包括气体填充容器,气体填充容器内包含的气体填充物,RF电磁辐射源,RF电磁谐振器,将来自RF电磁谐振器的RF能量耦合的输出探头 将来自RF电磁辐射源的RF能量耦合到谐振器的输入探针以及将谐振器周围的金属薄板和RF接地的气体填充容器的一部分的接地带连接到气体填充容器。 还描述了无电极等离子体灯的许多变化; 其非限制性实例包括采用介质谐振器中的其它探针驱动灯的实施例,以及许多改善光收集的方法,包括通过同轴型传输线使气体填充容器远离谐振器,以及 用光学反射器收集光。

    EXTERNAL RESONATOR ELECTRODE-LESS PLASMA LAMP AND METHOD OF EXCITING WITH RADIO-FREQUENCY ENERGY
    2.
    发明申请
    EXTERNAL RESONATOR ELECTRODE-LESS PLASMA LAMP AND METHOD OF EXCITING WITH RADIO-FREQUENCY ENERGY 有权
    外部谐振器无电极等离子体灯和无频率能量的方法

    公开(公告)号:US20120086352A1

    公开(公告)日:2012-04-12

    申请号:US13327760

    申请日:2011-12-16

    IPC分类号: H01J65/04 H05B41/16

    摘要: Described is an electrode-less plasma lamp comprising a gas-fill vessel, a gas-fill contained within the gas-fill vessel, an RF electromagnetic radiation source, an RF electromagnetic resonator, an output probe that couples RF energy from the RF electromagnetic resonator to the gas-fill vessel, an input probe that couples RF energy from the RF electromagnetic radiation source to the resonator, and a grounding strap that holds a metal veneer surrounding the resonator and a portion of the gas-fill vessel at RF ground. Also described are many variations of the electrode-less plasma lamp; non-limiting examples of which include embodiments that employ other probes in a Dielectric Resonant Oscillator to drive the lamp, and many methods of improving light-harvesting, including raising the gas-fill vessel away from the resonator via a coaxial type transmission line, and collecting light with an optical reflector.

    摘要翻译: 描述了一种无电极等离子体灯,其包括气体填充容器,气体填充容器内包含的气体填充物,RF电磁辐射源,RF电磁谐振器,将来自RF电磁谐振器的RF能量耦合的输出探头 将来自RF电磁辐射源的RF能量耦合到谐振器的输入探针以及将谐振器周围的金属薄板和RF接地的气体填充容器的一部分的接地带连接到气体填充容器。 还描述了无电极等离子体灯的许多变化; 其非限制性实例包括采用介质谐振器中的其它探针驱动灯的实施例,以及许多改善光收集的方法,包括通过同轴型传输线使气体填充容器远离谐振器,以及 用光学反射器收集光。

    EXTERNAL RESONATOR ELECTRODE-LESS PLASMA LAMP AND METHOD OF EXCITING WITH RADIO-FREQUENCY ENERGY
    3.
    发明申请
    EXTERNAL RESONATOR ELECTRODE-LESS PLASMA LAMP AND METHOD OF EXCITING WITH RADIO-FREQUENCY ENERGY 有权
    外部谐振器无电极等离子体灯和无频率能量的方法

    公开(公告)号:US20110285306A1

    公开(公告)日:2011-11-24

    申请号:US11981884

    申请日:2007-10-31

    IPC分类号: H05B41/16

    摘要: Described is an electrode-less plasma lamp comprising a gas-fill vessel, a gas-fill contained within the gas-fill vessel, an RF electromagnetic radiation source, an RF electromagnetic resonator, an output probe that couples RF energy from the RF electromagnetic resonator to the gas-fill vessel, an input probe that couples RF energy from the RF electromagnetic radiation source to the resonator, and a grounding strap that holds a metal veneer surrounding the resonator and a portion of the gas-fill vessel at RF ground. Also described are many variations of the electrode-less plasma lamp, non-limiting examples of which include embodiments that employ other probes in a Dielectric Resonant Oscillator to drive the lamp, a lamp employing more than one resonator per gas-fill vessel, and many methods of improving light-harvesting, including raising the gas-fill vessel away from the resonator via a coaxial transmission line, and collecting light with an optical reflector.

    摘要翻译: 描述了一种无电极等离子体灯,其包括气体填充容器,气体填充容器内包含的气体填充物,RF电磁辐射源,RF电磁谐振器,将来自RF电磁谐振器的RF能量耦合的输出探头 将来自RF电磁辐射源的RF能量耦合到谐振器的输入探针以及将谐振器周围的金属薄板和RF接地的气体填充容器的一部分的接地带连接到气体填充容器。 还描述了无电极等离子体灯的许多变化,其非限制性实例包括采用介质谐振器中的其它探针来驱动灯的实施例,每个气体填充容器采用多于一个谐振器的灯以及许多 改善光收集的方法,包括通过同轴传输线使气体填充容器远离谐振器,以及用光学反射器收集光。

    External resonator/cavity electrode-less plasma lamp and method of exciting with radio-frequency energy
    4.
    发明申请
    External resonator/cavity electrode-less plasma lamp and method of exciting with radio-frequency energy 有权
    外部谐振器/空腔无电极等离子体灯和射频能量激励的方法

    公开(公告)号:US20100072910A1

    公开(公告)日:2010-03-25

    申请号:US12589795

    申请日:2009-10-27

    IPC分类号: H05B41/36 H01J9/24

    摘要: Described is a plasma electrode-less lamp. The device comprises an electromagnetic resonator and an electromagnetic radiation source conductively connected with the electromagnetic resonator. The device further comprises a pair of field probes, the field probes conductively connected with the electromagnetic resonator. A gas-fill vessel is formed from a closed, transparent body, forming a cavity. The gas-fill vessel is not contiguous with (detached from) the electromagnetic resonator and is capacitively coupled with the field probes. The gas-fill vessel further contains a gas within the cavity, whereby the gas is induced to emit light when electromagnetic radiation from the electromagnetic radiation source resonates inside the electromagnetic resonator, the electromagnetic resonator capacitively coupling the electromagnetic radiation to the gas, which becomes a plasma and emits light.

    摘要翻译: 描述了等离子体无电极灯。 该装置包括电磁谐振器和与电磁谐振器导通的电磁辐射源。 该装置还包括一对场探针,该场探头与电磁谐振器导电连接。 填充容器由封闭的透明体形成,形成空腔。 气体填充容器不与电磁谐振器相邻(与之分离)并与场探头电容耦合。 气体填充容器还在空腔内包含气体,由此当来自电磁辐射源的电磁辐射在电磁谐振器内部谐振时,气体被感应发光,电磁谐振器将电磁辐射电容耦合到气体,该气体成为 等离子体并发光。

    External resonator/cavity electrode-less plasma lamp and method of exciting with radio-frequency energy
    5.
    发明授权
    External resonator/cavity electrode-less plasma lamp and method of exciting with radio-frequency energy 有权
    外部谐振器/空腔无电极等离子体灯和射频能量激励的方法

    公开(公告)号:US08154216B2

    公开(公告)日:2012-04-10

    申请号:US12589795

    申请日:2009-10-27

    IPC分类号: H05B41/16

    摘要: Described is a plasma electrode-less lamp. The device comprises an electromagnetic resonator and an electromagnetic radiation source conductively connected with the electromagnetic resonator. The device further comprises a pair of field probes, the field probes conductively connected with the electromagnetic resonator. A gas-fill vessel is formed from a closed, transparent body, forming a cavity. The gas-fill vessel is not contiguous with (detached from) the electromagnetic resonator and is capacitively coupled with the field probes. The gas-fill vessel further contains a gas within the cavity, whereby the gas is induced to emit light when electromagnetic radiation from the electromagnetic radiation source resonates inside the electromagnetic resonator, the electromagnetic resonator capacitively coupling the electromagnetic radiation to the gas, which becomes a plasma and emits light.

    摘要翻译: 描述了等离子体无电极灯。 该装置包括电磁谐振器和与电磁谐振器导通的电磁辐射源。 该装置还包括一对场探针,该场探头与电磁谐振器导电连接。 填充容器由封闭的透明体形成,形成空腔。 气体填充容器不与电磁谐振器相邻(与之分离)并与场探头电容耦合。 气体填充容器还在空腔内包含气体,由此当来自电磁辐射源的电磁辐射在电磁谐振器内部谐振时,气体被感应发光,电磁谐振器将电磁辐射电容耦合到气体,该气体成为 等离子体并发光。

    External resonator electrode-less plasma lamp and method of exciting with radio-frequency energy
    6.
    发明授权
    External resonator electrode-less plasma lamp and method of exciting with radio-frequency energy 有权
    外部谐振器无电极等离子体灯和射频能量激发的方法

    公开(公告)号:US08102123B2

    公开(公告)日:2012-01-24

    申请号:US11981884

    申请日:2007-10-31

    IPC分类号: H01J7/27 H01Q1/26

    摘要: Described is an electrode-less plasma lamp comprising a gas-fill vessel, a gas-fill contained within the gas-fill vessel, an RF electromagnetic radiation source, an RF electromagnetic resonator, an output probe that couples RF energy from the RF electromagnetic resonator to the gas-fill vessel, an input probe that couples RF energy from the RF electromagnetic radiation source to the resonator, and a grounding strap that holds a metal veneer surrounding the resonator and a portion of the gas-fill vessel at RF ground. Also described are many variations of the electrode-less plasma lamp, non-limiting examples of which include embodiments that employ other probes in a Dielectric Resonant Oscillator to drive the lamp, a lamp employing more than one resonator per gas-fill vessel, and many methods of improving light-harvesting, including raising the gas-fill vessel away from the resonator via a coaxial transmission line, and collecting light with an optical reflector.

    摘要翻译: 描述了一种无电极等离子体灯,其包括气体填充容器,气体填充容器内包含的气体填充物,RF电磁辐射源,RF电磁谐振器,将来自RF电磁谐振器的RF能量耦合的输出探头 将来自RF电磁辐射源的RF能量耦合到谐振器的输入探针以及将谐振器周围的金属薄板和RF接地的气体填充容器的一部分的接地带连接到气体填充容器。 还描述了无电极等离子体灯的许多变化,其非限制性实例包括采用介质谐振器中的其它探针来驱动灯的实施例,每个充气容器采用多于一个谐振器的灯以及许多 改善光收集的方法,包括通过同轴传输线使气体填充容器远离谐振器,以及用光学反射器收集光。

    3D PRINTED RADIO FREQUENCY ABSORBER
    8.
    发明申请

    公开(公告)号:US20200220275A1

    公开(公告)日:2020-07-09

    申请号:US16821872

    申请日:2020-03-17

    IPC分类号: H01Q17/00 B29C64/106

    摘要: Described is a method for manufacturing a radio frequency (RF) absorber. The method includes first determining a set of desired RF absorption properties for a RF absorber. A computer model for the RF absorber having the determined set of desired RF absorption properties is then produced. Using a three-dimensional (3D) printing process, melted plastic filament loaded with a RF absorber material is deposited in in computer controlled patterns according to the computer model, thereby producing the RF absorber having the set of desired RF absorption properties.

    3D PRINTED RADIO FREQUENCY ABSORBER
    9.
    发明申请
    3D PRINTED RADIO FREQUENCY ABSORBER 审中-公开
    3D打印无线电频率吸收器

    公开(公告)号:US20160263823A1

    公开(公告)日:2016-09-15

    申请号:US15064451

    申请日:2016-03-08

    IPC分类号: B29C67/00 H01Q17/00

    摘要: Described is a method and system for producing a three-dimensional (3D) structure using 3D printing. A 3D structure, having multiple regions, is produced using a 3D printer having at least one extruder formed to receive a printer filament. The printer filament has at least one type of material having radio frequency (RF) absorption properties. The RF absorption properties are varied at different regions of the 3D structure by varying the extrusion of the at least one type of material at different regions of the 3D structure.

    摘要翻译: 描述了使用3D打印产生三维(3D)结构的方法和系统。 具有多个区域的3D结构使用具有形成为接收打印机细丝的至少一个挤出机的3D打印机来生产。 打印机丝具有至少一种具有射频(RF)吸收特性的材料。 通过改变3D结构的不同区域的至少一种类型的材料的挤出,RF吸收特性在3D结构的不同区域是变化的。