发明名称 Method of driving a gas-discharge lamp
摘要 The invention describes a method of driving a gas-discharge lamp (1) according to conditions in a specific region (R) of the lamp (1), which gas-discharge lamp (1) comprises a burner (2) in which a first electrode (4) and a second electrode (5) are arranged on either side of a discharge gap, which lamp (1) is realised such that the position (PCs) of a coldest spot during an AC mode of operation is in the vicinity of the first electrode (4), which method comprises the steps of initially driving the lamp (1) in the AC mode of operation; monitoring an environment variable of the lamp (1), which environment variable is indicative of conditions in a specific region (R) of the lamp (1); switching to a temporary DC mode of operation at a DC power value on the basis of the monitored environment variable, whereby the first electrode (4) is allocated as the anode; and driving the lamp (1) in the DC mode of operation until the monitored environment variable has returned to an intermediate environment variable threshold value (TDCAC). The invention also describes a gas-discharge lamp and a driver for a gas-discharge lamp.
申请公布号 US9161423(B2) 申请公布日期 2015.10.13
申请号 US201214003172 申请日期 2012.03.05
申请人 Koninklijke Philips N.V. 发明人 Haacke Michael;Dabringhausen Lars;Riederer Xaver;Huedepohl Heinz Helmut
分类号 H01J7/24;H01J19/36;H05B41/36;H05B41/292;H05B41/38 主分类号 H01J7/24
代理机构 代理人
主权项 1. A method of driving a gas-discharge lamp according to conditions in a specific region of the lamp, which gas-discharge lamp comprises a burner in which a first electrode and a second electrode are arranged on either side of a discharge gap, which lamp is realised such that the position of a coldest spot during an AC mode of operation is in the vicinity of the first electrode, which method comprises the steps of initially driving the lamp in the AC mode of operation; monitoring an environment variable of the lamp, which environment variable is indicative of conditions in the specific region of the lamp; switching to a temporary DC mode of operation at a DC power value on the basis of the monitored environment variable, whereby the first electrode is allocated as the anode; and driving the lamp in the DC mode of operation until the monitored environment variable has returned to an intermediate environment variable threshold value.
地址 Eindhoven NL