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    • 1. 发明授权
    • Ultraviolet curing apparatus for continuous material
    • 用于连续材料的紫外线固化装置
    • US07923706B2
    • 2011-04-12
    • US12245282
    • 2008-10-03
    • Robert BrassellEdward C. McGheeJames W. Schmitkons
    • Robert BrassellEdward C. McGheeJames W. Schmitkons
    • A61N5/06
    • H01J65/044B05D3/029B05D3/067B05D7/20B29C35/0888B29C35/10B29C71/04B29C2035/0827F26B3/28F26B13/002
    • An ultraviolet radiation curing system is disclosed for treating a substrate, such as fiber optic cable or silicone tubing. The system comprises a processing chamber allowing transport of a continuous piece of substrate to be treated. As the substrate moves through the processing chamber, ultraviolet radiation from a plasma lamp activated by a microwave generator treats the surface of the substrate. The system comprises two elliptical reflectors of different sizes so that larger diameter substrates may be efficiently treated with ultraviolet radiation. The system may also comprise an ultraviolet-transmissive conduit enclosing the substrate and split into a first portion and a second portion, where the second portion is movable from the first portion to open the conduit and allow insertion or alignment of the substrate within the conduit and processing chamber.
    • 公开了用于处理诸如光纤电缆或硅胶管的基底的紫外线辐射固化系统。 该系统包括允许输送待处理的基片的连续片的处理室。 当衬底移动通过处理室时,由微波发生器激活的等离子体灯的紫外线辐射处理衬底的表面。 该系统包括两种不同尺寸的椭圆形反射器,从而可以用紫外线辐射有效地处理较大直径的基底。 该系统还可以包括紫外线透射导管,其封闭基板并分成第一部分和第二部分,其中第二部分可从第一部分移动以打开导管并允许基板在导管内的插入或对准,以及 处理室。
    • 6. 发明申请
    • DETECTOR FOR AN ULTRAVIOLET LAMP SYSTEM AND A CORRESPONDING METHOD FOR MONITORING MICROWAVE ENERGY
    • 用于超紫外灯系统的检测器和用于监测微波能量的相应方法
    • US20090001990A1
    • 2009-01-01
    • US11771085
    • 2007-06-29
    • James W. SchmitkonsCarl A. Bretmersky
    • James W. SchmitkonsCarl A. Bretmersky
    • G01R31/00H01J99/00
    • H01J65/044H05B41/24
    • A detector for an ultraviolet lamp system of the type having a microwave generator includes a first circuit that is configured to detect the microwave energy generated from the microwave generator. The first circuit includes at least one radiation sensitive component capable of failing upon exposure to an excessive amount of microwave energy. A second circuit is coupled to the first circuit and configured to intermittently test whether the radiation sensitive component has failed. An ultraviolet lamp system includes the detector. An associated method includes monitoring the microwave energy through the first circuit including at least one radiation sensitive component capable of failing upon exposure to an excessive amount of microwave energy and testing the radiation sensitive component to determine whether the radiation sensitive component has failed.
    • 用于具有微波发生器的类型的紫外灯系统的检测器包括被配置为检测从微波发生器产生的微波能量的第一电路。 第一电路包括能够在暴露于过量微波能量时失效的至少一种辐射敏感元件。 第二电路耦合到第一电路并且被配置为间歇地测试辐射敏感部件是否失效。 紫外灯系统包括检测器。 相关联的方法包括监测通过第一电路的微波能量,其包括能够在暴露于过量的微波能量时能够失效的至少一种辐射敏感组件,并且测试辐射敏感组件以确定辐射敏感组件是否已经失效。
    • 7. 发明申请
    • ULTRAVIOLET LAMP SYSTEM AND METHOD FOR CONTROLLING EMITTED UV LIGHT
    • 紫外线灯系统和控制发光紫外线灯的方法
    • US20090001901A1
    • 2009-01-01
    • US11771105
    • 2007-06-29
    • Carl A. BretmerskyJames W. Schmitkons
    • Carl A. BretmerskyJames W. Schmitkons
    • H05B37/02
    • H05B41/2806Y02B20/22
    • An ultraviolet lamp assembly and corresponding methods is operable to generate ultraviolet light for irradiating a substrate.. The lamp assembly includes a magnetron, an electrodeless lamp for emitting ultraviolet light when excited by microwave radiation generated from the magnetron, and a power control circuit arrangement configured to control an output power of the microwave radiation generated by the magnetron corresponding to the intensity of ultraviolet light produced by the lamp. A first control loop of the power control circuit is configured to regulate an input current to the magnetron based upon an input current setting associated with a desired intensity of UV light output of the lamp and a second control loop coupled to the first control loop configured to adjust the input current setting used by the first control loop to regulate the input current to the magnetron based upon an input power to the magnetron, which is proportional to the intensity of UV light output from the lamp.
    • 紫外线灯组件和相应的方法可操作以产生用于照射基板的紫外光。灯组件包括磁控管,当由磁控管产生的微波辐射激发时,用于发射紫外光的无电极灯以及配置成 以控制与由该灯产生的紫外线的强度对应的由磁控管产生的微波辐射的输出功率。 功率控制电路的第一控制回路被配置为基于与灯的UV光输出的期望强度相关联的输入电流设置来调节到磁控管的输入电流,以及耦合到第一控制回路的第二控制回路,其被配置为 调整第一控制回路所使用的输入电流设置,以根据与从灯管输出的UV光强度成比例的磁控管的输入功率来调节到磁控管的输入电流。