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    • 4. 发明申请
    • METHOD OF SHUTTING DOWN A HIGH PRESSURE DISCHARGE LAMP AND DRIVING UNIT FOR DRIVING A HIGH PRESSURE DISCHARGE LAMP
    • 切断高压放电灯和驱动单元的方法,用于驱动高压放电灯
    • WO2007132369A2
    • 2007-11-22
    • PCT/IB2007051526
    • 2007-04-25
    • PHILIPS INTELLECTUAL PROPERTYKONINKL PHILIPS ELECTRONICS NVTOLLE TOBIAS GEORGSCHREEL LUDO VALERE MAURICEDEPPE CARSTEN
    • TOLLE TOBIAS GEORGSCHREEL LUDO VALERE MAURICEDEPPE CARSTEN
    • H05B41/292
    • H05B41/2928H04N9/3144H04N9/3155H05B41/384Y02B20/206
    • The invention describes a method of shutting down a high pressure discharge lamp (1) in which a pair of electrodes (2) is disposed in an arc tube (3), which method comprises reducing, upon receipt of a shut-down request (SR), the lamp power (P) towards a reduced power level (PR) required to sustain a long-term arc discharge between the electrodes (2), and driving the lamp (1) towards the reduced power level (PR) for a reduced power duration before completely shutting down the lamp power (P), whereby, prior to reducing the lamp power (P) towards the reduced power level (PR), the lamp power (P) is reduced to an undershoot power level (Pu), which undershoot power level (Pu) is lower than the reduced power level (PR) required to sustain a long- term arc discharge between the electrodes (2), and the lamp is driven at this undershoot power level (Pu) for an undershoot power duration (tu) before increasing the lamp power (P) again to approach the reduced power level (PR). Moreover the invention describes an appropriate driving unit (4) for driving a high pressure discharge lamp (1) and an image rendering system (40), particularly a projector system, comprising such a driving unit (4).
    • 本发明描述了一种关闭其中一对电极(2)设置在电弧管(3)中的高压放电灯(1)的方法,该方法包括在接收到关闭请求(SR ),朝向维持电极(2)之间的长期电弧放电所需的降低功率电平(PR)的灯功率(P)),并且朝向降低的功率电平(PR)驱动灯(1)以减少 在完全关闭灯泡功率(P)之前的功率持续时间,由此,在将灯功率(P)降低到降低功率水平(PR)之前,灯功率(P)减小到下冲功率水平(Pu) 其功率水平(Pu)低于在电极(2)之间维持长期电弧放电所需的降低的功率电平(PR),并且灯以该下冲功率电平(Pu)被驱动用于下冲功率 在再次提高灯功率(P)以接近降低的功率电平(PR)之前的持续时间(tu)。 此外,本发明描述了用于驱动高压放电灯(1)和图像渲染系统(40)的合适的驱动单元(4),特别是包括这种驱动单元(4)的投影仪系统。
    • 5. 发明申请
    • A SYSTEM, AN INDUCTIVE POWERING DEVICE, AN ENERGIZABLE LOAD AND A METHOD OF FOR ENABLING A WIRELESS POWER TRANSFER
    • 一种系统,一种感应动力装置,一种能量载荷和一种用于实现无线电力传输的方法
    • WO2006097870A2
    • 2006-09-21
    • PCT/IB2006050740
    • 2006-03-09
    • PHILIPS INTELLECTUAL PROPERTYKONINKL PHILIPS ELECTRONICS NVTOLLE TOBIAS GEORGWAFFENSCHMIDT EBERHARD
    • TOLLE TOBIAS GEORGWAFFENSCHMIDT EBERHARD
    • H01F38/14H01F7/0263H01F27/06
    • The system (1) according to the invention comprises an energizable load (2) and an inductive powering device (9) as well as a permanent magnet (8) arranged on the conductor (4) for interacting with the further conductor (9a) for aligning the inductor winding (6) with respect to the further inductor winding (9b). The energizable load (2) for enabling the inductive power receipt comprises a wiring (6) which cooperates with the conductor (4) for forming a secondary wiring of the transformer. In order to form the system for inductive energy transfer, the energizable load (2) is to be placed on the inductive powering device (9), whereby the surface (2a) will contact the surface (7). The inductive powering device (9) comprises a further magnetizable conductor (9a) provided with a further winding (9b), thus forming a primary wiring of the split-core electric transformer. When the winding (6) is brought in the vicinity of the further winding (9b), the magnetic force acting on the further magnetizable conductor (9a) provides for instant proper mutual alignment of the winding (6) and further winding (9b). The invention further relates to an inductive powering device, an inductive load and a method of enabling an inductive energy transfer to an energizable load.
    • 根据本发明的系统(1)包括可激励负载(2)和感应供电装置(9)以及布置在导体(4)上的永磁体(8),用于与另外的导体(9a)相互作用,用于 将电感器绕组(6)相对于另外的电感器绕组(9b)对准。 用于启用感应功率接收的可激励负载(2)包括与导体(4)配合用于形成变压器的次级布线的布线(6)。 为了形成用于感应能量转移的系统,可激励负载(2)被放置在感应供电装置(9)上,由此表面(2a)将接触表面(7)。 感应供电装置(9)包括设置有另外的绕组(9b)的另外的可磁化导体(9a),从而形成分裂型电力变压器的初级布线。 当绕组(6)进入另一个绕组(9b)附近时,作用在另一个可磁化导体(9a)上的磁力提供了绕组(6)和另外的绕组(9b)的即时适当相互对准。 本发明还涉及感应供电装置,感性负载以及使感应能量传递到可激励负载的方法。
    • 6. 发明专利
    • DE602006008906D1
    • 2009-10-15
    • DE602006008906
    • 2006-03-09
    • PHILIPS INTELLECTUAL PROPERTYKONINKL PHILIPS ELECTRONICS NV
    • TOLLE TOBIAS GEORGWAFFENSCHMIDT EBERHARD
    • H01F38/00
    • The system 1 according to the invention comprises an energizable load 2 and an inductive powering device 9 and a permanent magnet 8 arranged on the conductor 4 for interacting with the further conductor 9a for aligning the inductor winding 6 with respect to the further inductor winding 9b. The energizable load 2 for enabling the inductive power receipt comprises a wiring 6 which cooperates with the conductor 4 for forming a secondary wiring of the transformer. In order to form the system for inductive energy transfer, the energizable load 2 is to be placed on the inductive powering device 9, whereby the surface 2a will contact the surface 7. The inductive powering device 9 comprises a further magnetizable conductor 9a provided with a further winding 9b thus forming a primary wiring of the split-core electric transformer. When the winding 6 is brought in the vicinity of the further winding 9b, the magnetic force acting on the further magnetizable conductor 9a serves for an instant proper mutual alignment of the winding 6 and further winding 9b. The invention further relates to a inductive powering device, an inductive load and a method for enabling an inductive energy transfer to en energizable load.
    • 7. 发明专利
    • AT441933T
    • 2009-09-15
    • AT06711063
    • 2006-03-09
    • KONINKL PHILIPS ELECTRONICS NV
    • TOLLE TOBIAS GEORGWAFFENSCHMIDT EBERHARD
    • H01F38/00
    • The system 1 according to the invention comprises an energizable load 2 and an inductive powering device 9 and a permanent magnet 8 arranged on the conductor 4 for interacting with the further conductor 9a for aligning the inductor winding 6 with respect to the further inductor winding 9b. The energizable load 2 for enabling the inductive power receipt comprises a wiring 6 which cooperates with the conductor 4 for forming a secondary wiring of the transformer. In order to form the system for inductive energy transfer, the energizable load 2 is to be placed on the inductive powering device 9, whereby the surface 2a will contact the surface 7. The inductive powering device 9 comprises a further magnetizable conductor 9a provided with a further winding 9b thus forming a primary wiring of the split-core electric transformer. When the winding 6 is brought in the vicinity of the further winding 9b, the magnetic force acting on the further magnetizable conductor 9a serves for an instant proper mutual alignment of the winding 6 and further winding 9b. The invention further relates to a inductive powering device, an inductive load and a method for enabling an inductive energy transfer to en energizable load.