CONDUCTIVE TUBE FOR USE AS A REFLECTRON LENS

    公开(公告)号:IL160873D0

    公开(公告)日:2004-08-31

    申请号:IL16087304

    申请日:2004-03-15

    Abstract: A reflectron lens and method are provided. The reflectron lens comprises a tube having a continuous conductive surface along the length of the tube for providing an electric field interior to the tube that varies in strength along the length of the tube. The tube may comprise glass, and in particular, a glass comprising metal ions, such as lead, which may be reduced to form the conductive surface. The method includes a step of introducing a beam of ions into a first end of a dielectric tube having a continuous conductive surface along the length of the tube. The method further includes a step of applying an electric potential across the tube to create an electric field gradient that varies in strength along the length of the tube so the electric field deflects the ions to cause the ions to exit the tube through the first end of the tube.

    22.
    发明专利
    未知

    公开(公告)号:BR9004568A

    公开(公告)日:1991-09-10

    申请号:BR9004568

    申请日:1990-09-06

    Applicant: FIBERSTARS INC

    Abstract: A lighting apparatus for illuminating optical fibers includes a high-intensity gas-discharge lamp comprising electrodes (9,11) positioned within a reflector assembly (24) that focuses radiation (51,53) from the electrodes (9,11) onto a remote focal point (39), and that selectively transmits and reflects desired visible radiation and attenuates undesirable ultraviolet and infrared radiation. Alignment procedures in assembly process ensure maximization of flux intensity supplied to optical fibers positioned at the remote focal point (39) of the reflector assembly.

    CONDUCTIVE TUBE FOR USE AS A REFLECTRON LENS AND METHOD OF USE THEREOF

    公开(公告)号:IL160873A

    公开(公告)日:2011-12-29

    申请号:IL16087304

    申请日:2004-03-15

    Abstract: A reflectron lens and method are provided. The reflectron lens comprises a tube having a continuous conductive surface along the length of the tube for providing an electric field interior to the tube that varies in strength along the length of the tube. The tube may comprise glass, and in particular, a glass comprising metal ions, such as lead, which may be reduced to form the conductive surface. The method includes a step of introducing a beam of ions into a first end of a dielectric tube having a continuous conductive surface along the length of the tube. The method further includes a step of applying an electric potential across the tube to create an electric field gradient that varies in strength along the length of the tube so the electric field deflects the ions to cause the ions to exit the tube through the first end of the tube.

    REFLECTOR LUMINOSO TERMICAMENTE CONDUCTIVO.

    公开(公告)号:MXPA04001937A

    公开(公告)日:2006-03-21

    申请号:MXPA04001937

    申请日:2002-08-28

    Inventor: MILLER JAMES S

    Abstract: Se proporciona un reflector luminoso termicamente conductivo (10) que disipa calor de una fuente de luz (20) dentro del reflector (10). La instalacion luminosa (10) incluye una envoltura (12) que tiene una capa metalizada (16) en su superficie. La cubierta (12) se hace de una composicion que incluye aproximadamente 30% a aproximadamente 80% en volumen de una matriz de polimero base y aproximadamente 20% a aproximadamente 70% en volumen de un material de relleno termicamente conductivo. El reflector (10) tiene una conductividad termica mayor a 3 W/m??K y preferentemente mayor a 22 W/m??K. Los reflectores (10) pueden utilizarse en faros de automovil, luces de destello, y otros artefactos de iluminacion. Un metodo para formar el reflector luminoso (10) tambien se proporciona.

    SMOOTH-ADJUSTABLE SOURCE OF REACTANCE

    公开(公告)号:BG100583A

    公开(公告)日:1998-05-29

    申请号:BG10058396

    申请日:1996-05-10

    Applicant: GENCHEV PETROV

    Abstract: The smooth adjustable source finds application in industryfor increasing the power. When operating induction loads thesupply mains is additionally loaded by reactive energy for whichreason such a source is being used. It reduces the overalldimensions and the number of the components used. The sourceconsists of three capacitors (2) connected to a Larionov rectifierbridge (3), throtle (4), switching inductance (8), two switchingcapacitors (5 & 7) and two thyristors (6 & 9) which are connectedin the DC diagonal of the Larionov bridge (3).1 claim, 1 figure

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