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    • 4. 发明申请
    • VERTICAL PUMPING APPARATUS AND METHOD FOR DISTRIBUTION MERCURY IN A PUMPING AND LAMP GAS-FILLING PROCESS
    • 垂直泵送装置及其在泵送和燃气充填过程中分配的方法
    • US20140287645A1
    • 2014-09-25
    • US14355061
    • 2012-11-01
    • Auralight International AB
    • Tommy PeterssonHans Mårtensson
    • H01J9/395
    • H01J9/395H01J9/38H01J9/39H01J9/48H01J61/72
    • The present invention relates to a method of and a vertical pumping device (1) for internally distributing Hg in a fluorescent tube body (3). The bottom (7) of the fluorescent tube body (3) is closed. The device (1) arranges, in a first position, a first solid body (9′) comprising a predetermined first amount of bound Hg. The device (1) arranges, in a second position, a second solid body (9″) comprising a predetermined second amount of bound Hg. A first release (E1) of the first amount of Hg is achieved in the fluorescent tube body (3) by gasification with heat and under pressure for purification of contaminant particles in the fluorescent tube body. A second release (E2) of the second amount of Hg is achieved in the fluorescent tube body (3) by gasification attained for the occluded mercury vapour of the fluorescent tube body (3).
    • 本发明涉及一种用于在荧光管体(3)内部分配Hg的垂直泵送装置(1)的方法和方法。 荧光管主体(3)的底部(7)关闭。 设备(1)在第一位置布置包括预定的第一量的结合Hg的第一固体(9')。 装置(1)在第二位置布置包括预定第二量的结合Hg的第二固体(9“)。 在荧光管体(3)中通过在热和压力下气化以净化荧光管体中的污染物颗粒来实现第一量Hg的第一释放(E1)。 通过对于荧光管体(3)的闭塞的汞蒸气获得的气化,在荧光管体(3)中实现第二量的Hg的第二释放(E2)。
    • 5. 发明授权
    • Lamp part fixing by shape memory alloy in the discharge tube of fluorescent lamps
    • 荧光灯放电管中的形状记忆合金的灯部分固定
    • US08633642B2
    • 2014-01-21
    • US13297816
    • 2011-11-16
    • Peter Ivan PoczikPeter MoraPeter LuczBalazs Torok
    • Peter Ivan PoczikPeter MoraPeter LuczBalazs Torok
    • H01J1/62H01J63/04
    • H01J7/186H01J61/26H01J61/28H01J61/327H01J61/72
    • The present disclosure relates to a lamp part fixing device and method for lamp components made of shape memory alloy. The device includes a main body that carries, for example, a main or auxiliary amalgam, getter, etc. located at a desired position within a discharge tube of a fluorescent lamp. For example, the amalgam can be advantageously located at preselected axial locations and/or within a diffusion path. The main body is configurable between a first configuration and a second configuration. The first configuration allows the mount to move within the discharge tube when the shape memory alloy is below an alloy transition temperature. The second configuration of the main body allows for controlled placement and immobilization of the device within the discharge tube when the shape memory alloy is raised above the alloy transition temperature. The device is shaped in a generally planar or non-planar configuration.
    • 本发明涉及由形状记忆合金制成的灯部件的灯部件固定装置和方法。 该装置包括主体,其承载例如位于荧光灯的放电管内的期望位置处的主要或辅助汞齐,吸气剂等。 例如,汞齐可以有利地位于预选的轴向位置和/或扩散路径内。 主体可配置在第一配置和第二配置之间。 当形状记忆合金低于合金转变温度时,第一种配置允许安装件在放电管内移动。 当形状记忆合金升高到合金转变温度以上时,主体的第二构造允许装置在放电管内的受控放置和固定。 该装置成形为大致平面或非平面构型。
    • 8. 发明申请
    • METHOD FOR OPERATING AN AMALGAM LAMP
    • 操作AMALGAM灯的方法
    • US20130020942A1
    • 2013-01-24
    • US13635156
    • 2011-03-14
    • Alex Voronov
    • Alex Voronov
    • H05B41/36
    • H01J61/28H01J61/523H01J61/72
    • In a known method for operating an amalgam lamp having a nominal power Poptimum, it is provided that a lamp voltage Uoptimum designed for a maximum UVC emission is applied between electrodes or a lamp current Ioptimum designed for a maximum UVC emission flows between electrodes. The discharge space is accessible for an amalgam deposit, which is heatable by a heating element in which a heating current Iheating is conducted through the heating element. Starting from this background, in order to provide an operating mode that ensures a stable operation in the region of the optimum power, it is proposed that a target value of the lamp current Itarget is set that is less than Ioptimum and that the heating current Iheating is turned on or increased when the lamp current falls below a lower limit I1 and is turned off or reduced when it exceeds an upper limit I2 for the lamp current.
    • 在用于操作具有标称功率Poptimum的汞齐灯的已知方法中,提供了设计用于最大UVC发射的灯电压U最佳值被施加在电极之间或设计用于电极之间的最大UVC发射流动的灯电流Ioptimum。 放电空间可用于汞齐沉积物,其可通过加热元件加热,其中通过加热元件进行加热电流加热。 从该背景开始,为了提供确保在最佳功率区域中的稳定操作的操作模式,提出将灯电流目标值设定为小于最大值,并且加热电流Iheating 当灯电流下降到下限I1以下时,导通或增加,并且当灯电流超过灯电流的上限I2时,其被关断或减小。
    • 10. 发明授权
    • Cold cathode fluorescent lamp for illumination
    • 冷阴极荧光灯用于照明
    • US08269407B1
    • 2012-09-18
    • US13281898
    • 2011-10-26
    • Seung-pyo Lee
    • Seung-pyo Lee
    • H01J61/06
    • H01J61/0672H01J61/72
    • Provided is a cold cathode fluorescent lamp (CCFL) that can be used as an illumination light source. The CCFL includes cold cathode electrodes disposed at both ends of a glass tube, a fluorescent layer being formed on an inner surface of the glass tube. Each of the cold cathode electrodes includes: a base metal connected to front ends of lead wires for connection with a power source; a helical wire coil formed by helically winding a tungsten or tungsten-alloy wire around a cup shape, the helical wire coil being connected to the base metal in a manner such that the helical wire coil is erected in a length direction of the glass tube; and an emitter-coated coil inserted in the helical wire coil and coated with an emitter for inducing emission of electrons.
    • 提供可以用作照明光源的冷阴极荧光灯(CCFL)。 CCFL包括设置在玻璃管两端的冷阴极电极,荧光层形成在玻璃管的内表面上。 每个冷阴极电极包括:连接到用于与电源连接的引线前端的母金属; 螺旋线圈,其通过螺丝缠绕钨或钨合金线绕杯状形成,所述螺旋线圈以与所述基座金属相连的方式连接,使得所述螺旋线圈在所述玻璃管的长度方向上竖立; 以及插入在螺旋线圈中并且涂覆有用于引发电子发射的发射体的发射极涂覆的线圈。