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    • 11. 发明授权
    • Wire fixing structure, electrical equipment mount device and air conditioner using the same
    • 线固定结构,电气设备安装装置和使用其的空调
    • US06701738B2
    • 2004-03-09
    • US10232102
    • 2002-08-28
    • Kiyoshi KobayashiMasakazu HosoyaAkira OkadaJunichi Goya
    • Kiyoshi KobayashiMasakazu HosoyaAkira OkadaJunichi Goya
    • F25D2312
    • F24F1/027F24F13/20F24F2013/207F25D2400/40
    • In an air conditioner having an electrical equipment mount device containing at least one circuit board on which electrical parts connected to wires are mounted, plural wire abutting portions are formed on a wire fixing face so as to be different in height from said wire fixing face, and a wire is fixedly pinched between a wire press member and one of the wire abutting portions that is selected in accordance with the diameter of the wire. The wire fixing face has a conduit fixing member having a conduit fixing face to which one end portion of a conduit having electrical wires inserted therein is fixed. Plural engaging holes are formed in the wire fixing face, and the conduit fixing member is equipped with plural engaging members which are fixedly engageable with the engaging holes of the electrical equipment mount plate. The engaging members are located at different positions on the conduit fixing member with respect to the conduit fixing face.
    • 在具有安装了与电线连接的电气部件的至少一个电路基板的电气设备安装装置的空调机中,在电线固定面上形成多个电线抵接部,其高度与所述电线固定面的高度不同, 并且电线被固定地夹在电线按压构件和根据线的直径选择的电线抵接部中的一个之间。 电线固定面具有导管固定部件,该管道固定部件具有导管固定面,固定有插入电线的导管的一个端部。 电线固定面上形成有多个接合孔,导管固定部件具有与电气设备安装板的接合孔固定接合的多个接合部件。 接合构件相对于导管固定面位于导管固定构件上的不同位置。
    • 13. 发明授权
    • Method for detecting defects in dielectric film
    • 电介质膜缺陷检测方法
    • US06118280A
    • 2000-09-12
    • US49201
    • 1998-03-27
    • Hideki MatsunagaIsao SuzukiHiroshi TomitaShiro TakenoAkira Okada
    • Hideki MatsunagaIsao SuzukiHiroshi TomitaShiro TakenoAkira Okada
    • G01N27/00G01N1/28G01N21/84H01L21/66
    • G01N21/8422G01N1/2813
    • Disclosed are a method and an apparatus for detecting a defect in a dielectric film. The dielectric film is electrified in an electrolyte solution containing a metal in such a manner the dielectric film is charged negative, thereby the metal is deposited on the dielectric film at a position corresponding to the defect. The detecting method has a first deposition step for forming a first metal deposit on the dielectric film in an annular form surrounding the position corresponding to the defect; and a second deposition step for forming a second metal deposit located on the position corresponding to the defect, on the dielectric film. The detecting apparatus has a vessel for accommodating the electrolyte solution; a first electrode for electrifying the dielectric film and a second electrode; and an electric power source for controlably applying a voltage to electrifying between the first electrode and the second electrode in which a value and a direction of the applied voltage is variable.
    • 公开了一种用于检测电介质膜中的缺陷的方法和装置。 电介质膜以含有金属的电解质溶液的方式通电,使电介质膜带电为负电荷,从而在对应于该缺陷的位置处将金属沉积在电介质膜上。 检测方法具有第一沉积步骤,用于以包围与缺陷相对应的位置的环形形式在电介质膜上形成第一金属沉积物; 以及第二沉积步骤,用于在所述电介质膜上形成位于与所述缺陷相对应的位置上的第二金属沉积物。 检测装置具有用于容纳电解质溶液的容器; 用于使所述电介质膜带电的第一电极和第二电极; 以及用于可控制地施加电压以在所述第一电极和所述第二电极之间通电的电源,其中所述施加电压的值和方向可变。
    • 18. 发明授权
    • Channel forming fuel permittivity sensor with automatic temperature
compensation
    • 通道形成燃料介电常数传感器,具有自动温度补偿功能
    • US5592098A
    • 1997-01-07
    • US487515
    • 1995-06-07
    • Hiroyoshi SuzukiAkira OkadaTakahiro Moronaga
    • Hiroyoshi SuzukiAkira OkadaTakahiro Moronaga
    • G01N27/22G01N33/28G01R27/26
    • G01N33/2852G01N27/226
    • A tubular single-layer winding coil is installed on the outer periphery of a thin wall portion of a cylindrical container case and a columnar electrode is provided at the center of the inside of the cylindrical container case. A fuel channel is formed between the coil and the electrode so that the permittivity of fuel flowing through the fuel channel is detected from the electrostatic capacity therebetween. Further, variation of the electrostatic capacity due to the temperature characteristics of the fuel is compensated by the temperature characteristics of the permittivity of the thin wall portion of the sensor unit. Furthermore, variation of the electrostatic capacity due to the temperature characteristics of the fuel is compensated by the temperature compensation capacitor which is connected with the single layer winding coil in parallel.
    • 在筒状容器壳体的薄壁部的外周部安装有管状单层绕线圈,在筒状容器壳体的内部的中央设有柱状电极。 在线圈和电极之间形成燃料通道,以便从它们之间的静电容量来检测流过燃料通道的燃料的介电常数。 此外,由于燃料的温度特性引起的静电电容的变化由传感器单元的薄壁部分的介电常数的温度特性补偿。 此外,由与燃料的温度特性相关的静电容量的变化由与单层绕组线圈并联的温度补偿电容器补偿。
    • 20. 发明授权
    • Production method of sintered silicon nitride
    • 烧结氮化硅的生产方法
    • US5545362A
    • 1996-08-13
    • US143233
    • 1993-10-29
    • Naoto HirosakiAkira OkadaYoshio Akimune
    • Naoto HirosakiAkira OkadaYoshio Akimune
    • C04B35/584C04B35/58C04B35/593C04B35/594
    • C04B35/5935
    • A sintered silicon nitride excellent in high temperature performance is produced by the following method: First, silicon nitride powder and oxide of at least one element selected from elements in the group IIIb of a periodic table are mixed with each other to obtain a mixture. The silicon nitride powder contains silicon oxide in an amount ranging from 0.1% by weight of the silicon nitride powder to a value not more than a content of the silicon oxide. Second, the mixture is compacted to form a compact. Finally, the compact is fired in atmosphere of nitrogen at a pressure ranging from 5 to 200 atmosphere (atm) and a temperature ranging from 1800.degree. to 2000.degree. C. to obtain a sintered silicon nitrite having a bulk density not less than 95% of a theoretical density of the sintered silicon nitride.
    • 通过以下方法制造高温性能优异的烧结氮化硅。首先,将选自元素周期表的IIIb族中的元素的至少一种元素的氮化硅粉末和氧化物彼此混合,得到混合物。 氮化硅粉末含有量为0.1重量%的氮化硅粉末的氧化硅至不大于氧化硅含量的值。 第二,将混合物压实成小块体。 最后,将压坯在氮气气氛中在5〜200个大气压(atm)和1800〜2000℃的温度范围内烧制,得到堆积密度不小于95%的烧结硅亚硝酸盐 烧结氮化硅的理论密度。