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    • 71. 发明授权
    • Plasma generating electrode and plasma reactor
    • 等离子发生电极和等离子体反应器
    • US07727488B2
    • 2010-06-01
    • US10562467
    • 2004-07-07
    • Yukio MiyairiYasumasa FujiokaMasaaki MasudaTakeshi Sakuma
    • Yukio MiyairiYasumasa FujiokaMasaaki MasudaTakeshi Sakuma
    • B01J19/08
    • B01D53/92B01D53/56B01D53/62B01J19/088B01J2219/0813B01J2219/0835B01J2219/0843B01J2219/0875F01N3/0892
    • A plasma generating electrode 1 of the present invention includes two or more electrodes 2 disposed to face each other, and holding members 3 for holding electrodes 2 at a predetermined interval, and can generate plasma by applying voltage between electrodes 2. At least one of electrodes facing each other 2 has a plate-shaped ceramic body 6 serving as a dielectric body, and a conductive film 7 disposed inside the body 6, and the holding members 3 fix the opposite side end portions 5 (fixed end portions 5a) of electrodes facing each other 2 in the state of a cantilever in such a condition that electrodes 2 are held by holding members in the state of cantilevers of the different directions alternately at a predetermined interval as a whole. This relaxes the thermal stress and effectively prevents distortion and breakage of electrodes caused by to a temperature change.
    • 本发明的等离子体发生电极1包括彼此相对设置的两个或更多个电极2和用于以预定间隔保持电极2的保持构件3,并且可以通过在电极2之间施加电压来产生等离子体。至少一个电极 彼此相对的是具有作为电介质体的板状陶瓷体6和配置在主体6内部的导电膜7,保持部件3将电极的相对侧端部5(固定端部5a) 彼此以悬臂的状态彼此2,在这样的状态下,电极2由整体上以预定间隔交替地以不同方向的悬臂状态的保持构件保持。 这样放松了热应力,并有效地防止了由温度变化引起的电极的变形和断裂。
    • 74. 发明授权
    • High voltage pulse generating circuit
    • 高电压脉冲发生电路
    • US07489052B2
    • 2009-02-10
    • US10579557
    • 2004-11-17
    • Tatsuhiko HatanoTakeshi Sakuma
    • Tatsuhiko HatanoTakeshi Sakuma
    • H03K3/00
    • H03K3/53H05H1/46
    • A high voltage pulse generating circuit comprises an inductor, a first semiconductor switch and a second semiconductor switch connected in series between both ends of a direct current power supply, and a diode wherein a cathode terminal is connected to one end of the inductor whose other end is connected to an anode terminal of the first semiconductor switch, and an anode terminal is connected to a gate terminal of the first semiconductor switch. The inductor has a first coil and a second coil. A diode is connected in parallel to the first semiconductor switch, and a capacitor is connected in parallel to the first coil of the inductor.
    • 高压脉冲发生电路包括串联连接在直流电源的两端之间的电感器,第一半导体开关和第二半导体开关,以及二极管,其中阴极端子连接到电感器的另一端 连接到第一半导体开关的阳极端子,阳极端子连接到第一半导体开关的栅极端子。 电感器具有第一线圈和第二线圈。 二极管并联连接到第一半导体开关,并且电容器与电感器的第一线圈并联连接。
    • 75. 发明授权
    • Electric discharger using semiconductor switch
    • 使用半导体开关的放电器
    • US07482786B2
    • 2009-01-27
    • US11293324
    • 2005-12-05
    • Takayuki SekiyaShoji TangeTakeshi Sakuma
    • Takayuki SekiyaShoji TangeTakeshi Sakuma
    • H01M10/46
    • H03K17/567H03K3/57
    • An electric discharger includes: an inductor, a first semiconductor switch, and a second semiconductor switch which are connected in series between opposite terminals of a DC power supply unit; and a reactor connected to output terminals of the inductor. Induced energy is stored in the inductor when the first semiconductor switch is turned on. The inductor generates a high voltage when the first semiconductor switch is turned off. The reactor is discharged under the high voltage. The reactor has a pair of electrodes, a dielectric body and a space, the dielectric body and the space being disposed between the electrodes. The first semiconductor switch is turned on again when charging of the dielectric body of the reactor under the high voltage is substantially finished.
    • 放电器包括:串联连接在直流电源单元的相对端子之间的电感器,第一半导体开关和第二半导体开关; 和连接到电感器的输出端子的电抗器。 当第一半导体开关导通时,感应能量被存储在电感器中。 当第一个半导体开关关闭时,电感器产生高电压。 电抗器在高电压下放电。 反应器具有一对电极,电介质体和空间,介电体和空间设置在电极之间。 当在高电压下的电抗器的电介质体的充电基本上完成时,第一半导体开关再次导通。
    • 76. 发明授权
    • High-voltage pulse generating circuit
    • 高电压脉冲发生电路
    • US07414333B2
    • 2008-08-19
    • US11447377
    • 2006-06-06
    • Tatsuhiko HatanoTakeshi SakumaKatsuji Iida
    • Tatsuhiko HatanoTakeshi SakumaKatsuji Iida
    • H03K3/00
    • H03K17/105H03K3/57
    • A high-voltage pulse generating circuit has an inductor, a first semiconductor switch, and a second semiconductor switch which are connected in series between opposite terminals of a DC power supply unit, and a diode having a cathode terminal connected to a terminal of the inductor which has another terminal connected to an anode terminal of the first semiconductor switch, and an anode terminal connected to a gate terminal of the first semiconductor switch. The inductor stores an induction energy when the first semiconductor switch is rendered conductive by a turn-on of the second semiconductor switch, and generates a high-voltage pulse when the first semiconductor switch is turned off by a turn-off of the second semiconductor switch.
    • 高压脉冲发生电路具有串联连接在直流电源单元的相对端子之间的电感器,第一半导体开关和第二半导体开关,以及具有连接到电感器的端子的阴极端子的二极管 其具有连接到第一半导体开关的阳极端子的另一端子和连接到第一半导体开关的栅极端子的阳极端子。 当第一半导体开关通过第二半导体开关导通而导通时,电感器存储感应能量,并且当第一半导体开关通过第二半导体开关的截止而被切断时,产生高电压脉冲 。
    • 77. 发明申请
    • High voltage pulse generating circuit
    • 高电压脉冲发生电路
    • US20070145960A1
    • 2007-06-28
    • US10579557
    • 2004-11-17
    • Tatsuhiko HatanoTakeshi Sakuma
    • Tatsuhiko HatanoTakeshi Sakuma
    • G05F1/00
    • H03K3/53H05H1/46
    • A high voltage pulse generating circuit comprises an inductor, a first semiconductor switch and a second semiconductor switch connected in series between both ends of a direct current power supply, and a diode wherein a cathode terminal is connected to one end of the inductor whose other end is connected to an anode terminal of the first semiconductor switch, and an anode terminal is connected to a gate terminal of the first semiconductor switch. The inductor has a first coil and a second coil. A diode is connected in parallel to the first semiconductor switch, and a capacitor is connected in parallel to the first coil of the inductor.
    • 高压脉冲发生电路包括串联连接在直流电源的两端之间的电感器,第一半导体开关和第二半导体开关,以及二极管,其中阴极端子连接到电感器的另一端 连接到第一半导体开关的阳极端子,阳极端子连接到第一半导体开关的栅极端子。 电感器具有第一线圈和第二线圈。 二极管并联连接到第一半导体开关,并且电容器与电感器的第一线圈并联连接。