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    • 1. 发明申请
    • RARE GAS DISCHARGE LAMP APPARATUS
    • 稀有气体放电灯装置
    • US20100052493A1
    • 2010-03-04
    • US12550721
    • 2009-08-31
    • Masaharu OtsukaYoshihiro KanahashiYoshihisa Yokokawa
    • Masaharu OtsukaYoshihiro KanahashiYoshihisa Yokokawa
    • H01J61/94
    • H01J65/00
    • A rare gas discharge lamp apparatus has two or more rare gas discharge lamps aligned in parallel, each of which has a glass bulb that contains rare gas therein and first and second external electrodes that are formed on an outer surface of the glass bulb, extends in a glass bulb length direction, and are arranged apart from each other. The first and second external electrodes are made from metallic foils, and project in an outer length direction of the glass bulb from the respective glass bulbs to form extended portions. In addition, the first external electrode of one of the two or more rare gas discharge lamps and that of another one of the two or more rare gas discharge lamps are joined by a pressure bonding member at the extended portions of the respective first external electrodes.
    • 稀有气体放电灯装置具有平行排列的两个以上的稀有气体放电灯,每个具有含有稀有气体的玻璃灯泡,形成在玻璃灯泡的外表面上的第一外部电极和第二外部电极延伸 玻璃灯泡长度方向,并且彼此分开布置。 第一外部电极和第二外部电极由金属箔制成,并且从相应的玻璃灯泡在玻璃灯泡的外部长度方向上突出以形成延伸部分。 另外,两个以上的稀有气体放电灯中的一个或两个以上的稀有气体放电灯中的一个的第一外部电极通过压接部件在各个第一外部电极的延伸部分接合。
    • 5. 发明授权
    • Fluorescent lamp of the external electrode type and irradiation unit
    • US5889366A
    • 1999-03-30
    • US981008
    • 1997-12-24
    • Yoshihisa YokokawaMotomori TadaMasaki InoueMasaki Yoshioka
    • Yoshihisa YokokawaMotomori TadaMasaki InoueMasaki Yoshioka
    • H01J61/02H01J61/70H01J65/04H01J11/00
    • H01J61/025H01J61/70H01J65/046
    • The invention relates to a fluorescent lamp of the external electrode type and an irradiation unit using this fluorescent lamp. In a fluorescent lamp of the external electrode type, a glass tube with fluorescent material applied to its inside is hermetically filled with a suitable amount of rare gas, in the axial direction of the outside surface of the glass tube there is at least one pair of electrodes, and on the side which is opposite the aperture for emission of the light to the outside there is reflector material. The electrodes are at least partially translucent, and the reflector material is located in these translucent regions. In this way the electrostatic capacity of the lamp is not significantly reduced even if the electrodes are partially provided with translucent regions. The energy input into the lamp thus has a value which would be obtained essentially even if the translucent regions were absent. Therefore the light intensity can be increased according to the arrangement of the reflector material. The translucent regions can have any shapes, as in the form of slits, openings or the like. Furthermore, in a fluorescent lamp of the external electrode type the external electrodes exhibit light transmission. When the lamp is being operated the light is emitted to the outside from the aperture, and at the same time the light is emitted from the translucent regions which are located in the external electrodes. The light emitted from the translucent regions is reflected from a reflector device and is radiated from the opening of this U-shaped reflector device. Light intensity can be increased by the measure that the external electrodes of the lamp are partially translucent and that the light passed by the translucent regions is reflected by this reflector device and is radiated onto a region to be irradiated.
    • 6. 发明授权
    • Device for operation of a discharge lamp
    • 放电灯操作装置
    • US6084360A
    • 2000-07-04
    • US147051
    • 1998-09-25
    • Yoshihisa YokokawaMasaki YoshiokaTakafumi Mizojiri
    • Yoshihisa YokokawaMasaki YoshiokaTakafumi Mizojiri
    • H05B41/24H05B41/28H05B41/16
    • H05B41/2806H05B41/24Y02B20/22
    • A device for operation of a discharge lamp in which a dielectric barrier discharge lamp can discharge with high efficiency. A discharge lamp of the outside electrode type, a dielectric barrier discharge excimer lamp type, or the like, is operated by applying a lamp voltage of 1 kV to 10 kV with a periodic waveform by an operation circuit. In this lamp, within bulb including a dielectric, at least one type of rare gas is hermetically enclosed in a given amount. A dielectric barrier is located between at least one electrode and the gas, and a discharge is produced in the bulb via this dielectric barrier. The rise time or fall time of a waveform which represents a main energy supply time in the periodic waveform, is fixed at greater than or equal to 0.03 .mu.s and less than or equal to 9 .mu.s. Furthermore, the distance between the waveform which represents the main energy supply and a adjacent waveform which represents an adjacent main energy supply is greater than or equal to 3.4 .mu.s.
    • PCT No.PCT / JP98 / 00451 Sec。 371日期:1998年9月25日 102(e)1998年9月25日日期PCT提交1998年2月4日PCT公布。 公开号WO98 / 35536 日期1998年8月13日一种放电灯的操作装置,其中介质阻挡放电灯可以高效率地放电。 外部电极型放电灯,电介质阻挡放电准分子灯型等通过用运算电路施加周期性波形的1kV〜10kV的灯电压进行动作。 在该灯中,在包括电介质的灯泡内,至少一种类型的稀有气体以给定的量密封。 电介质阻挡层位于至少一个电极和气体之间,并且通过该电介质阻挡层在灯泡中产生放电。 表示周期波形中的主能量供给时间的波形的上升时间或下降时间固定为大于或等于0.03μs且小于或等于9μs。 此外,代表主能源的波形与代表相邻主能源的相邻波形之间的距离大于或等于3.4μs。