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    • 1. 发明授权
    • Method and circuit arrangement for operating a discharge lamp
    • 用于操作放电灯的方法和电路装置
    • US07619369B2
    • 2009-11-17
    • US10596474
    • 2004-12-16
    • Pavel PekarskiJan Alfons Julia StoffelsHolger Moench
    • Pavel PekarskiJan Alfons Julia StoffelsHolger Moench
    • H05B37/02
    • H01J61/0732H05B41/2928
    • A method and a circuit arrangement for operating a discharge lamp, in particular during the first hours of operation after lamp manufacture, are described. The method and the circuit arrangement are provided in particular for high-pressure gas discharge lamps (HID or high intensity discharge lamps or UHP or ultra high performance lamps). Furthermore, a lighting unit with a discharge lamp and such a circuit arrangement and a projection system with a projection display and such a lighting unit are described. Switching-over between various modes of operation with different operating frequencies serves to avoid that the burning voltage of the lamp drops into a region of a minimum voltage of a lamp driver unit below which the latter can no longer drive the lamp with its rated power or a desired power.
    • 描述了用于操作放电灯的方法和电路装置,特别是在灯制造之后的第一小时操作期间。 该方法和电路装置特别用于高压气体放电灯(HID或高强度放电灯或UHP或超高性能灯)。 此外,描述了具有放电灯和这种电路装置的照明单元以及具有投影显示器和这种照明单元的投影系统。 在不同操作频率的各种操作模式之间的切换用于避免灯的燃烧电压下降到灯驱动器单元的最小电压的区域中,在该区域中,后者不能以其额定功率驱动灯,或者 所需的力量
    • 3. 发明授权
    • High-pressure mercury vapor discharge lamp and method of manufacturing a high-pressure mercury vapor discharge lamp
    • 高压汞蒸气放电灯及制造高压汞汽放电灯的方法
    • US07946899B2
    • 2011-05-24
    • US12159466
    • 2006-12-21
    • Holger MoenchPavel Pekarski
    • Holger MoenchPavel Pekarski
    • H01K1/30H01J5/48
    • H01J61/822H01J61/86
    • A high-pressure mercury vapor discharge lamp (1) comprising an envelope (2) of high temperature resistant material having a discharge vessel (3) and two electrodes (5, 6) extending from two seal portions (4) into the discharge vessel (3), the two electrodes having an electrode gap (de) smaller than or equal to 2.5 mm, preferably smaller than or equal to 1.5 mm, is described. The discharge vessel (3) contains a filling which essentially comprises the following substances: rare gas, oxygen, halogen consisting of chlorine, bromine, iodine, or a mixture thereof, as well as mercury in a quantity greater than or equal to 0.15 mg/mm3′ The seal portions (4) have a cross-sectional area of between 6 mm2 and 20 mm2, preferably approximately 10 mm2. A method of manufacturing such a high-pressure mercury vapor discharge lamp (1) and a projector system for such a high-pressure mercury vapor discharge lamp (1) are also described.
    • 一种高压汞蒸汽放电灯(1),包括具有放电容器(3)的耐高温材料的外壳(2)和从两个密封部分(4)延伸到放电容器中的两个电极(5,6) 如图3所示,描述了具有小于或等于2.5mm,优选小于或等于1.5mm的电极间隙(de)的两个电极。 放电容器(3)含有填充物,其基本上包含以下物质:稀有气体,氧气,由氯,溴,碘或其混合物组成的卤素以及大于或等于0.15mg / mm3'密封部分(4)的横截面积在6mm 2和20mm 2之间,优选地大约为10mm 2。 还描述了制造这种高压汞蒸汽放电灯(1)的方法和用于这种高压汞蒸气放电灯(1)的投影仪系统。
    • 4. 发明申请
    • HIGH-PRESSURE MERCURY VAPOR DISCHARGE LAMP AND METHOD OF MANUFACTURING A HIGH-PRESSURE MERCURY VAPOR DISCHARGE LAMP
    • 高压汞蒸汽放电灯及制造高压汞蒸汽放电灯的方法
    • US20090016064A1
    • 2009-01-15
    • US12159466
    • 2006-12-21
    • Holger MoenchPavel Pekarski
    • Holger MoenchPavel Pekarski
    • F21V7/00H01J17/04H01J9/00
    • H01J61/822H01J61/86
    • A high-pressure mercury vapor discharge lamp (1) comprising an envelope (2) of high temperature resistant material having a discharge vessel (3) and two electrodes (5, 6) extending from two seal portions (4) into the discharge vessel (3), the two electrodes having an electrode gap (de) smaller than or equal to 2.5 mm, preferably smaller than or equal to 1.5 mm, is described. The discharge vessel (3) contains a filling which essentially comprises the following substances: rare gas, oxygen, halogen consisting of chlorine, bromine, iodine, or a mixture thereof, as well as mercury in a quantity greater than or equal to 0.15 mg/mm3′ The seal portions (4) have a cross-sectional area of between 6 mm2 and 20 mm2, preferably approximately 10 mm2. A method of manufacturing such a high-pressure mercury vapor discharge lamp (1) and a projector system for such a high-pressure mercury vapor discharge lamp (1) are also described.
    • 一种高压汞蒸汽放电灯(1),包括具有放电容器(3)的耐高温材料的外壳(2)和从两个密封部分(4)延伸到放电容器中的两个电极(5,6) 如图3所示,描述了具有小于或等于2.5mm,优选小于或等于1.5mm的电极间隙(de)的两个电极。 放电容器(3)含有填充物,其基本上包含以下物质:稀有气体,氧气,由氯,溴,碘或其混合物组成的卤素以及大于或等于0.15mg / mm3'密封部分(4)的横截面积在6mm 2和20mm 2之间,优选地大约为10mm 2。 还描述了制造这种高压汞蒸汽放电灯(1)的方法和用于这种高压汞蒸气放电灯(1)的投影仪系统。
    • 9. 发明申请
    • Method and circuit arrangement for operating a discharge lamp
    • 用于操作放电灯的方法和电路装置
    • US20070194723A1
    • 2007-08-23
    • US10596474
    • 2004-12-16
    • Pavel PekarskiJan StoffelsHolger Moench
    • Pavel PekarskiJan StoffelsHolger Moench
    • H05B41/36
    • H01J61/0732H05B41/2928
    • A method and a circuit arrangement for operating a discharge lamp, in particular during the first hours of operation after lamp manufacture, are described. The method and the circuit arrangement are provided in particular for high-pressure gas discharge lamps (HID or high intensity discharge lamps or UHP or ultra high performance lamps). Furthermore, a lighting unit with a discharge lamp and such a circuit arrangement and a projection system with a projection display and such a lighting unit are described. Switching-over between various modes of operation with different operating frequencies serves to avoid that the burning voltage of the lamp drops into a region of a minimum voltage of a lamp driver unit below which the latter can no longer drive the lamp with its rated power or a desired power.
    • 描述了用于操作放电灯的方法和电路装置,特别是在灯制造之后的第一小时操作期间。 该方法和电路装置特别用于高压气体放电灯(HID或高强度放电灯或UHP或超高性能灯)。 此外,描述了具有放电灯和这种电路装置的照明单元以及具有投影显示器和这种照明单元的投影系统。 在不同操作频率的各种操作模式之间的切换用于避免灯的燃烧电压下降到灯驱动器单元的最小电压的区域中,在该区域中,后者不能以其额定功率驱动灯,或者 所需的力量
    • 10. 发明授权
    • Printing apparatus and method for controlling a printing apparatus
    • 用于控制打印装置的打印装置和方法
    • US09573385B2
    • 2017-02-21
    • US13578712
    • 2011-03-16
    • Holger MoenchStephan GronenbornArmand Pruijmboom
    • Holger MoenchStephan GronenbornArmand Pruijmboom
    • B41J2/45B41J2/455B41J2/475B41J2/48B41J2/447
    • B41J2/48B41J2/447B41J2/45B41J2/451B41J2/455B41J2/475B41J2/4753
    • The invention relates to a laser based printing apparatus (100) using laser light sources (111, 112, 113, 402, 404, 406, 604, 606, 808, 810) for supplying energy to a target object (120) to form an image. The printing apparatus (100) comprises a laser light source arrangement (110, 400, 600) comprising a plurality of laser light sources (111, 112, 113, 402, 404, 406, 604, 606, 808, 810) arranged such that laser beams (114, 410, 805, 806) of the laser light sources (111, 112, 113, 402, 404, 406, 604, 606, 808, 810) intersect a surface (121) of a target object (120) at different target points (123, 24, 125, 412, 414, 416, 616, 610, 802) along a moving direction (122), a transport mechanism (130) for moving the target object (120) and the laser light sources (111, 12, 113, 402, 404, 406, 604, 606, 808, 810) relatively to each other in the moving 10 direction (122) and a controlling arrangement (140), which is realized to control the laser light sources (111, 112, 113, 402, 404, 406, 604, 606, 808, 810) and/or the transport mechanism (130) based on image data (150) in such a way, that the energy level of a target point (123, 124, 125, 412, 414, 416, 616, 610, 802) is stepwise increased by irradiation of at least two different laser light sources along the moving direction (122). The invention also describes a method for controlling such a laser based printing apparatus (100).
    • 本发明涉及一种使用激光光源(111,112,113,402,404,406,604,606,808,810)的激光打印设备(100),用于向目标物体(120)供应能量以形成 图片。 打印设备(100)包括激光光源装置(110,400,600),该激光光源装置包括多个激光光源(111,112,113,402,404,406,604,606,808,810),这些激光光源 激光光源(111,112,113,402,404,406,604,606,808,810)的激光束(114,410,805,806)与目标物体(120)的表面(121)相交, 在沿着移动方向(122)的不同目标点(123,24,225,412,414,416,616,610,802)处的传送机构(130),用于移动所述目标物体(120)和所述激光光源 (111,12,113,402,404,406,604,606,808,810)在移动的10方向(122)和控制装置(140)之间彼此相对移动,其被实现为控制激光光源 (111,112,113,402,404,406,604,606,808,810)和/或基于图像数据(150)的传送机构(130),使得目标点的能级 (123,124,125,412,414,416,616,610,802)由i逐步增加 沿着移动方向(122)辐射至少两个不同的激光光源。 本发明还描述了一种用于控制这种基于激光的打印设备(100)的方法。