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    • 1. 发明申请
    • MERCURY-FREE MOLECULAR DISCHARGE LAMP
    • 无汞分子放电灯
    • US20110279065A1
    • 2011-11-17
    • US13143595
    • 2010-01-07
    • Rainer HilbigAchim Gerhard Rolf KoerberStefan SchwanDaiyu Hayashi
    • Rainer HilbigAchim Gerhard Rolf KoerberStefan SchwanDaiyu Hayashi
    • H01J61/00
    • H01J61/00G21K1/025H01J61/12H01J65/044
    • The invention relates to a mercury-free molecular discharge lamp (30), which comprises: a light-transmitting discharge vessel (32) enclosing, in a gastight manner, a discharge space comprising a gas filling (34). The mercury-free molecular discharge lamp further comprises discharge means (36) for maintaining a discharge (38) in the discharge space, and discharge-variation means (40, 42) for varying, in operation, a position of the discharge within the gas filling relative to each other, and/or for varying a dimension of the discharge within the gas filling over time. An effect of the varying of the position and/or dimension of the discharge over time is that at a specific variation-speed or variation-frequency the output power and/or luminous flux of the mercury-free molecular discharge lamp is substantially increased. This effect is found to be depending on the gas filling and on the variation-speed and/or variation-frequency.
    • 本发明涉及一种无汞分子放电灯(30),其包括:以气密方式封闭包括气体填充物(34)的放电空间的透光放电容器(32)。 无汞分子放电灯还包括用于保持放电空间中的放电(38)的放电装置(36)和用于在操作中改变气体内的放电位置的放电变化装置(40,42) 和/或用于随时间改变填充物内的排出物的尺寸。 随着时间的变化,放电位置和/或尺寸的变化的影响是,在特定的变化速度或变化频率下,无汞分子放电灯的输出功率和/或光通量显着增加。 发现该效应取决于气体填充和变化速度和/或变化频率。
    • 8. 发明授权
    • High-efficiency single-ended forward-flyback electronic driver for barrier discharge lamps
    • 用于屏障放电灯的高效率单端正向反激式电子驱动器
    • US07768213B2
    • 2010-08-03
    • US10585372
    • 2004-12-22
    • Marc Maria Alex BleukxWolfgang SchieneHeinrich Von BuschStefan Schwan
    • Marc Maria Alex BleukxWolfgang SchieneHeinrich Von BuschStefan Schwan
    • H05B41/16
    • H05B41/2806Y02B20/22
    • An electronic circuit topology (1) for driving a predominantly capacitive load (2) with a primary circuit with several components, a secondary circuit with a predominantly capacitive load (2), and a transformer device (4) with a primary side (TX Ia) and a secondary side (TX Ib), connecting the primary circuit with the secondary circuit, the primary circuit components comprise: a source device (3), a drain device (5), and a switching device (6), the transformer device (4) is for transforming an input voltage-current-signal to a suitable output voltage-current signal for supplying the predominantly capacitive load (2), wherein the source device (3) is in serial connection with the transformer device (4), the drain device (5), and the switching device (6), whereby the transformer device (4) comprises means for functioning as a resonant tank circuit, as a transformer device (4) in forward mode, and as a transformer device (4) in flyback mode, so that an single-ended forward-flyback circuit is achieved.
    • 一种用于以主要电容负载(2)驱动主要电容性负载(2)的电子电路拓扑(1),具有多个部件的主电路,具有主要容性负载(2)的次级电路和具有初级侧的变压器装置(4) )和次级侧(TX 1b),其将所述初级电路与所述次级电路连接,所述主电路部件包括:源装置(3),漏极装置(5)和开关装置(6),所述变压器装置 (4)用于将输入电压电流信号变换为用于提供主要电容性负载(2)的合适的输出电压 - 电流信号,其中所述源装置(3)与所述变压器装置(4)串联连接, 排水装置(5)和开关装置(6),由此变压器装置(4)包括用作谐振回路的装置,作为正向模式的变压器装置(4)和变压器装置(4) )在反激模式下,使得单端前向反激电路 已完成。
    • 10. 发明申请
    • High-efficiency single-ended forward-flyback electronic driver for barrier discharge lamps
    • 用于屏障放电灯的高效率单端正向反激式电子驱动器
    • US20090174339A1
    • 2009-07-09
    • US10585372
    • 2004-12-22
    • Marc Maria Alex BleukxWolfgang SchieneHeinrich Von BuschStefan Schwan
    • Marc Maria Alex BleukxWolfgang SchieneHeinrich Von BuschStefan Schwan
    • H05B41/30H01F38/00
    • H05B41/2806Y02B20/22
    • An electronic circuit topology (1) for driving a predominantly capacitive load (2) with a primary circuit with several components, a secondary circuit with a predominantly capacitive load (2), and a transformer device (4) with a primary side (TX 1a) and a secondary side (TX 1b), connecting the primary circuit with the secondary circuit, the primary circuit components comprise: a source device (3), a drain device (5), and a switching device (6), the transformer device (4) is for transforming an input voltage-current-signal to a suitable output voltage-current signal for supplying the predominantly capacitive load (2), wherein the source device (3) is in serial connection with the transformer device (4), the drain device (5), and the switching device (6), whereby the transformer device (4) comprises means for functioning as a resonant tank circuit, as a transformer device (4) in forward mode, and as a transformer device (4) in flyback mode, so that an single-ended forward-flyback circuit is achieved.
    • 一种电子电路拓扑(1),用于以主要电容驱动主要为电容性负载(2)的多电容负载(2),具有主要容性负载(2)的次级电路和具有初级侧的变压器装置(TX 1a )和次级侧(TX 1b),其将初级电路与次级电路连接起来,主电路部件包括:源装置(3),漏极装置(5)和开关装置(6),变压器装置 (4)用于将输入电压电流信号变换为用于提供主要电容性负载(2)的合适的输出电压 - 电流信号,其中所述源装置(3)与所述变压器装置(4)串联连接, 排水装置(5)和开关装置(6),由此变压器装置(4)包括用作谐振回路的装置,作为正向模式的变压器装置(4)和变压器装置(4) )在反激模式下,使得单端前向反激电路 已完成。