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    • 21. 发明专利
    • PHASE LEAD CAPACITOR DEVICE
    • JP2002010490A
    • 2002-01-11
    • JP2001137821
    • 2001-05-08
    • KANSAI TECH CORP
    • OKU SEIJI
    • H02J3/01H02J3/18H02M1/12
    • PROBLEM TO BE SOLVED: To provide an inexpensive phase lead capacitor device which uses a parallel connected capacitor, whose capacitance is smaller than the phase lead capacitor, and reduces the fifth harmonic components in the serial reactor, at the same time. SOLUTION: A capacitor C1 is parallel connected with a reactor L, which is series connected to a phase lead capacitor C. The capacitance of this capacitor C1 is made 1/4 of the phase lead capacitor C. Thus, the phase lead capacitor circuit is set up in parallel. The capacitance of the parallel capacitor C1 suppresses the fifth harmonic currents, running into the serial reactor L down to 1/3 and prevents the reactor from becoming overloaded and also avoids its burning, overheating and abnormal noises in it. Further, since the parallel capacitor C1 has a capacitance smaller than the capacitor C, it can be made smaller unlike the case in prior art, while reducing its cost.
    • 22. 发明专利
    • WATTHOUR METER ADAPTOR
    • JP2001330629A
    • 2001-11-30
    • JP2000152547
    • 2000-05-24
    • KANSAI ELECTRIC POWER COKANSAI TECH CORPNICHIFU CO LTD
    • TAYAMA HIROFUMIKUMAKAWA HIROYUKIHATA YOSHIYUKIMIYASATO KENJISOGA JIROMORI KATSUHISAYAMAGATA KYUZOKAGITA GOJI
    • G01R11/04G01R11/00
    • PROBLEM TO BE SOLVED: To perform transmission stopping work in a short time by simply attaching a simple adaptor to a household watthour meter, without having to stop the supply of power to a home at the time of repairing or replacement of the watthour meter. SOLUTION: The watthour meter adaptor consists of the adaptor body B attached to the watthour meter A and the connector C attached detachably to the adaptor body B. Plural pairs of terminal metal fittings 1, etc., which have the connection parts 1a to the watthour meter connected to the electrical wire connecting output and input terminals 11, etc., of the watthour meter A at the upper ends thereof and have external electrical wire connection parts 1b at the lower ends thereof, are housed in the adaptor body B and an opening part 3 for connecting connection elements 7, etc., to the terminal metal fittings 1 is provided to the side surface of a case 2, and a plurality of the connection elements 7, etc., for mutually short-circuiting and for not short-circuiting the terminal metal fittings of the same polarity housed in the adaptor body B and a moving means 8 for moving the connection elements 7, etc., to a short-circuiting position and a non-short-circuiting position are provided to the connector C and a lock means 12 with an unlocking function for locking the short-circuiting position, when the connection elements 7, etc., are moved to the short- circuiting position is provided to the moving means 8.
    • 25. 发明专利
    • PHASE ADVANCE CAPACITOR DEVICE
    • JP2000236627A
    • 2000-08-29
    • JP3541799
    • 1999-02-15
    • KANSAI TECH CORP
    • OKU SEIJI
    • H02J3/01H02J3/18H02M1/12
    • PROBLEM TO BE SOLVED: To provide an inexpensive phase advance capacitor device by reducing the guintic harmonic component flowing to a DC smoothing series reactor and, at the same time, using a parallel capacitor having a capacitance smaller than that of a phase advance capacitor. SOLUTION: A parallel capacitor C1 is connected in parallel with a DC smoothing series reactor L which is connected in series with a phase advance capacitor C. The capacitance of the capacitor C1 is set at quarter or half that of the capacitor C. Therefore, a phase advance capacitor circuit is connected in parallel. The capacitance of the capacitor C1 can suppress the quintic harmonic components flowing to the reactor L to 1/10-1/3, can prevent the reactor L from being overloaded, and can prevent the occurrence of such faults as burning, abnormal sound, overheating, etc., of the reactor L. In addition, since the capacitance of the parallel capacitor C1 is made smaller than that of the phase advance capacitor C, the size and cost of the capacitor C1 can be reduced.
    • 27. 发明专利
    • Rise and fall control device of flexible film structure and inundation preventing facility using this device
    • 柔性膜结构的上升和下降控制装置和使用该装置的防止装置的发生
    • JP2005029967A
    • 2005-02-03
    • JP2003192997
    • 2003-07-07
    • Kansai Tech CorpMarushima Sangyo KkTakenaka Komuten Co Ltd丸島産業株式会社株式会社竹中工務店株式会社関西テック
    • KOISHI HIDEMASAAKAI YOSHIYUMIAKIYAMA KAZUOKAWASE TAKAMITSUYAMAMOTO KEIJI
    • E02B7/20E04H9/14E06B5/00
    • PROBLEM TO BE SOLVED: To provide a rise and fall control device of a flexible film structure capable of quickly raising up/bringing down the flexible film structure by a simple device, and capable of automatically holding its rising state.
      SOLUTION: A suction side three-way valve 28 of a switching device 18 is switched to a position for supplying outside air to a suction port 16a of a high pressure air blower 16. A delivery side three-way valve 30 is switched to a position for sending compressed air delivered from a delivery port 16b to the flexible film structure 12. When operating the high pressure air blower 16, the outside air is sent into the flexible film structure 12. Operation of the high pressure air blower 16 is controlled, so that air pressure of the compressed air filled in the flexible film structure 12 becomes a prescribed preset pressure range by a pressure relay 40. While, the suction side three-way valve 28 and the delivery side three-way valve 30 of the switching device 18 are switched to an inverse position of a rising case. When operating the high pressure air blower 16, the compressed air filled in the flexible film structure 12 is forcibly sucked, and is discharged into the atmospheric air.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决的问题:提供一种能够通过简单的装置快速升高/降低柔性膜结构并且能够自动保持其上升状态的柔性膜结构的升降控制装置。 解决方案:切换装置18的吸入侧三通阀28切换到用于向外部空气供给到高压鼓风机16的吸入口16a的位置。输出侧三通阀30被切换 送到从输送口16b输送到柔性膜结构体12的压缩空气的位置。当操作高压送风机16时,外部空气被送入柔性膜结构12中。高压鼓风机16的操作是 使得通过压力继电器40填充在柔性膜结构体12中的压缩空气的空气压力成为规定的预定压力范围。而且,吸入侧三通阀28和排出侧三通阀30 切换装置18切换到上升情况的反转位置。 当操作高压鼓风机16时,填充在柔性膜结构体12中的压缩空气被强制吸入,并被排出到大气中。 版权所有(C)2005,JPO&NCIPI