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    • 1. 发明公开
    • OZONE GENERATOR
    • 臭氧发生器
    • EP3205623A1
    • 2017-08-16
    • EP14907014.6
    • 2014-11-27
    • Mitsubishi Electric Corporation
    • NAKATANI HajimeTAKAUCHI DaisukeHIRANABE NaokiODAI YoshiakiYOSHIDA Toshihiro
    • C01B13/11
    • C01B13/11C01B13/115C01B2201/14C01B2201/22H05H1/2406H05H2001/2412H05H2001/245
    • This invention aims at improving the reliability of the electrode in an ozone generator, and also at shortening the start-up time of the ozone generator after the maintenance. The ozone generator comprising; a dielectric discharge tube, having a closed end and an open end which are faced each other, and including an electrode formed on an inner surface thereof, a sealing lid, covering the open end of the dielectric discharge tube and fixed to the dielectric discharge tube with an adhesive, a power supply brush, in inscribed contact with the electrode formed on the inner surface of the dielectric discharge tube, and a grounding electrode, arranged concentrically with the dielectric discharge tube; wherein the sealing lid includes a main body part and a cylinder part, which are connected together, and an inside diameter of the cylinder part is larger than an outside diameter of the dielectric discharge tube.
    • 本发明的目的在于提高臭氧发生器中电极的可靠性,并缩短维护后臭氧发生器的启动时间。 臭氧发生器包括: 介质放电管,其具有彼此相对的封闭端和开口端,并且包括形成在其内表面上的电极;密封盖,其覆盖介电放电管的开口端并固定到介电放电管 与电介质放电管的内表面上形成的电极以内切的方式接触的电源刷,以及与电介质放电管同心设置的接地电极; 其中,所述密封盖包括连接在一起的主体部分和圆柱部分,并且所述圆柱部分的内径大于所述介电放电管的外径。
    • 6. 发明公开
    • WASHING MACHINE, AND OZONE GENERATOR
    • 加油站UND OZENENERATOR
    • EP1975299A1
    • 2008-10-01
    • EP06842903.4
    • 2006-12-19
    • Sanyo Electric Co., Ltd.
    • SUZUKI, MasamiHOSOKAWA, Akihiro
    • D06F39/08C01B13/11C02F1/78D06F39/00D06F58/02
    • C01B13/115C01B2201/22C01B2201/62C02F1/78C02F2103/002C02F2201/782D06F35/001
    • Provided is an ozone generator (47) including two sheets of ozone generating electrodes (156, 157). These two ozone generating electrodes (156, 157) are arranged in a treating passage (152) in series along an air flowing direction. Thus, the air to come in from an air inlet port flows at first along the ozone generating electrode (156) of the first sheet, and receives, while flowing, the creeping discharge of the first ozone generating electrode (156) thereby to generate the ozone. The air thus having generated the ozone further flows in the treatingpassage (152) to the ozone generating electrode (157) of the second sheet, and receives, while flowing, the creeping discharge of the second ozone generating electrode (157) thereby to generate the additional ozone. The highly dense ozone can be used to clean the washing water.
    • 提供了包括两片臭氧发生电极(156,157)的臭氧发生器(47)。 这两个臭氧发生电极(156,157)沿着空气流动方向排列在处理通道(152)中。 因此,从空气导入口入口的空气首先沿着第一片的臭氧发生电极(156)流动,并且在流动的同时接收第一臭氧发生电极(156)的蠕变放电从而产生 臭氧。 由此产生臭氧的空气进一步在处理通道152中流到第二片的臭氧发生电极157,并且在流动的同时接收第二臭氧发生电极157的蠕变放电从而产生 额外的臭氧。 高密度臭氧可用于清洗洗涤水。
    • 10. 发明公开
    • Drive circuit and method for FET
    • Treiberschaltung und -verfahrenfüreinen FET
    • EP1331735A1
    • 2003-07-30
    • EP02026753.0
    • 2000-02-24
    • POTCHEFSTROOM UNIVERSITY FOR CHRISTIAN HIGHER EDUCATION
    • Visser, Barend
    • H03K3/354
    • C01B13/11C01B13/115
    • A field effect transistor (FET) (38) comprising a gate (39) is driven by means of charge storage means (34) and switching means (36) connected in a circuit to the gate of the FET to apply a charge pulse to the gate so as to switch the FET from an off state to an on state. The duration of the pulse is such that the pulse is substantially complete prior to the onset of current flow through the FET. Alternatively, the charge storage means (34) and the switching means (36) are connected in a circuit to the gate of the FET to apply from the charge storage means to the gate a charge pulse (51) driving a voltage on the gate beyond (53) a maximum voltage rating of the FET.
    • 包括栅极(39)的场效应晶体管(FET)(38)通过电荷存储装置(34)和开关装置(36)驱动,电路连接到FET的栅极,以将电荷脉冲施加到 栅极,以便将FET从截止状态切换到导通状态。 脉冲的持续时间使得脉冲在通过FET的电流开始之前基本完成。 或者,电荷存储装置(34)和开关装置(36)在电路中连接到FET的栅极,以从电荷存储装置向栅极施加驱动栅极上的电压的充电脉冲(51) (53)FET的最大额定电压。