利用低惯性质量电子来放大感应能量的自稳发电机

    公开(公告)号:CN101427013B

    公开(公告)日:2012-12-19

    申请号:CN200780008256.5

    申请日:2007-02-23

    CPC classification number: H01F27/006 H02K53/00 H02N11/008

    Abstract: 金属“发射线圈”中的电振荡向一个或更多的“能量放大线圈”辐射感应光子,所述能量放大线圈由覆盖金属导体的光导体或掺杂半导体组成,或者由超导体组成。在能量放大线圈中的低的惯性质量电子从发射线圈接收具有非成一直线的背向力的横向力,使所述力被从能量守恒定律免除。在所述能量放大线圈中的所述低质量电子接收到与正常电子质量除以更小电子质量的结果成正比的增加的加速度。其次,辐射的感应光子能按与电子更大加速度成比例地被放大,平方。例如,具有0.13x正常电子质量的CdSe光电子的所述感应能量放大因子为59x。放大的来自所述能量放大线圈的感应光子能量在一个或多个的金属“输出线圈”中感应振荡电能。如果所述放大的光子感应能量被定向朝向所述输出线圈的部分多于作为反作用力被定向到所述发射线圈的部分,则所述电能输出超过能量输入。在外部能量源初始化所述振荡以后,来自所述产生的剩余能量的反馈使所述装置成为自稳的、用于有用目的的电功率发电机。

    利用低惯性质量电子来放大感应能量的自稳发电机

    公开(公告)号:CN101427013A

    公开(公告)日:2009-05-06

    申请号:CN200780008256.5

    申请日:2007-02-23

    CPC classification number: H01F27/006 H02K53/00 H02N11/008

    Abstract: 金属“发射线圈”中的电振荡向一个或更多的“能量放大线圈”辐射感应光子,所述能量放大线圈由覆盖金属导体的光导体或掺杂半导体组成,或者由超导体组成。在能量放大线圈中的低的惯性质量电子从发射线圈接收具有非成一直线的背向力的横向力,使所述力被从能量守恒定律免除。在所述能量放大线圈中的所述低质量电子接收到与正常电子质量除以更小电子质量的结果成正比的增加的加速度。其次,辐射的感应光子能按与电子更大加速度成比例地被放大,平方。例如,具有0.13x正常电子质量的CdSe光电子的所述感应能量放大因子为59x。放大的来自所述能量放大线圈的感应光子能量在一个或多个的金属“输出线圈”中感应振荡电能。如果所述放大的光子感应能量被定向朝向所述输出线圈的部分多于作为反作用力被定向到所述发射线圈的部分,则所述电能输出超过能量输入。在外部能量源初始化所述振荡以后,来自所述产生的剩余能量的反馈使所述装置成为自稳的、用于有用目的的电功率发电机。

    A STARTING AID FOR AN ELECTRODELESS HIGH INTENSITY DISCHARGE LAMP

    公开(公告)号:AU7514191A

    公开(公告)日:1991-11-28

    申请号:AU7514191

    申请日:1991-04-18

    Applicant: GEN ELECTRIC

    Inventor: NAME NOT GIVEN

    Abstract: A starting aid for an electrodeless high intensity discharge (HID) lamp (10) comprises a spiral starting electrode (12) which, at least during lamp starting, conforms to the shape of the arc tube (14) so as to provide a relatively high capacitive starting current upon receipt of a radio frequency starting signal, resulting in a rapid transition from a glow discharge to a high intensity solenoidal discharge. At least one turn of the spiral starting electrode is preferably in contact with the portion of the arc tube nearest the arc discharge to be formed and is oriented so as to provide a capacitive starting current that flows in substantially the same location as the arc discharge to further ease lamp starting. In one embodiment, the spiral starting aid comprises first and second coil portions. The first coil portion conforms to the shape of the arc tube and has at least one turn disposed nearest the portion of the arc tube where the arc discharge is to be formed. The second coil portion has at least one turn in contact with the arc tube and the remaining turns extend outwardly therefrom. Once the lamp is started, the starting aid may be moved to a predetermined location away from the arc tube.

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