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    • 2. 发明专利
    • Gas alarm fitting method and fitting unit for the same
    • 气体报警配合方法及其配套单元
    • JP2013025443A
    • 2013-02-04
    • JP2011157714
    • 2011-07-19
    • Kazuo Amano一男 天野
    • AMANO KAZUO
    • G08B21/16
    • PROBLEM TO BE SOLVED: To enable an existing gas alarm to be utilized as it is and its fitting position to be freely set without interfering with drawing-out of any drawer of a built-in kitchen.SOLUTION: After forming a rectangular opening H in a wall face W, a fitting box 19 comprising an engaging part 17 for fitting an AC outlet 15 and a gas alarm K onto the surface of a bottom plate 13 of a box-shaped fitting box body 11 open on the side of an opening matching the opening H is inserted into the opening H to fix it to the wall face W after connecting the AC outlet 15 of the fitting box 19 to a power supply cable arranged inside the wall face W in advance. Then, a power plug P of the gas alarm K is inserted into the AC outlet 15 of the fitting box 19 to fit the gas alarm K by engaging it with the engaging part 17.
    • 要解决的问题是:使现有的气体报警器能够被直接利用,并且其安装位置可自由设置,而不会干扰内置厨房的任何抽屉的抽出。 解决方案:在壁面W中形成矩形开口H之后,装配箱19包括用于将AC出口15和气体报警器K装配到接合部分17的底板13的表面上 在与开口H相匹配的开口侧开口的装配箱体11插入到开口H中,以将配件箱19的AC出口15连接到布置在壁面内的电源电缆 提前W。 然后,将气体报警器K的电源插头P插入到装配箱19的AC出口15中,以通过与接合部17接合而装配气体报警器K.版权所有:(C)2013,JPO&INPIT
    • 3. 发明申请
    • PLASMA GENERATOR
    • 等离子发生器
    • US20110042008A1
    • 2011-02-24
    • US12735807
    • 2009-02-20
    • Masaru HoriHiroyuki KanoKazuo AmanoTetsuya KoikeNaofumi YoshidaToshiyuki Ikedo
    • Masaru HoriHiroyuki KanoKazuo AmanoTetsuya KoikeNaofumi YoshidaToshiyuki Ikedo
    • C23F1/08H05H1/48
    • H05H1/48H01J37/3244H01J37/32449H01J37/32467H01J37/3255
    • To provide a plasma generator having a plasma-generating zone of an increased volume.A plasma generator 100 has a casing 10 made of a sintered ceramic produced from alumina (Al2O3) as a raw material. The casing 10 has a slit-like gas intake section 12, and a gas discharge section 20 in which a plurality of holes are disposed in a line. From the gas intake section 12 to the top of a plasma-generating zone P, the slits have a width of 1 mm. There is provided a second gas discharge section 22 including holes 24 which have a diameter of 0.5 mm and a length of 16 mm and which are arranged in a line along the longitudinal axis of the plasma-generating zone P. The plasma-generating zone P has a cross-section which is a rectangle having a side of 2 to 5 mm. Electrodes 2a, 2b are provided with hollow portions on the surfaces thereof facing each other. A power sources supplies about 9 kV, which is obtained by boosting 100 V (60 Hz) and is applied to the electrodes 2a, 2b with a current of 20 mA. When argon gas is supplied through a gas intake section 12, a plasma was generated, even when the electrodes 2a, 2b were separated at a maximum spacing of 4 cm. No electric discharge was generated between the tips of the holes 24 and a treatment object.
    • 提供具有增加体积的等离子体产生区域的等离子体发生器。 等离子体发生器100具有由作为原料的氧化铝(Al 2 O 3)制成的烧结陶瓷制成的壳体10。 壳体10具有狭缝状的气体吸入部12和排列在多个孔中的气体排出部20。 从气体吸入部12到等离子体产生区P的顶部,狭缝的宽度为1mm。 设置有第二气体排出部22,该第二气体排出部22具有直径为0.5mm,长度为16mm的孔24,沿着等离子体产生区P的纵轴线排列。等离子体产生区P 具有侧面为2〜5mm的矩形的截面。 电极2a,2b在其彼此面对的表面上设置有中空部分。 电源提供约9kV,其通过升压100V(60Hz)而获得,并以20mA的电流施加到电极2a,2b。 当通过气体进入部分12供应氩气时,即使电极2a,2b以4cm的最大间距分离,也产生等离子体。 在孔24的尖端和处理对象物之间不产生放电。