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    • 1. 发明申请
    • Method for analyzing impurities
    • 杂质分析方法
    • US20050208674A1
    • 2005-09-22
    • US11080469
    • 2005-03-16
    • Kaori TokushimaYoshihiro Kawabata
    • Kaori TokushimaYoshihiro Kawabata
    • G01N1/28B08B3/12H01L21/00
    • H01L21/67253Y10T436/255
    • The impurity analyzing method is for analyzing impurities that exist on a surface of a semiconductor wafer, which includes a step of bubbling a mixed solution including hydrofluoric acid and aqueous hydrogen peroxide or a mixed solution including hydrofluoric acid and aqueous ozone to generate a vapor including hydrofluoric acid and aqueous hydrogen peroxide or a vapor including hydrofluoric acid and aqueous ozone, a step of dissolving a film formed on the surface of the semiconductor wafer by means of the vapor including hydrofluoric acid and aqueous hydrogen peroxide or the vapor including hydrofluoric acid and aqueous ozone, a step of supplying liquid drops onto the surface of the semiconductor wafer and collecting the impurities along with the liquid drops, and a step of analyzing the collected impurities.
    • 杂质分析方法是用于分析存在于半导体晶片表面的杂质,该杂质包括使包含氢氟酸和过氧化氢水的混合溶液或包含氢氟酸和臭氧水溶液的混合溶液鼓泡的步骤,以产生包含氢氟酸的蒸汽 酸和水性过氧化氢或包含氢氟酸和臭氧水溶液的蒸气,通过包含氢氟酸和过氧化氢水溶液或包含氢氟酸和臭氧水溶液的蒸气溶解形成在半导体晶片的表面上的膜的步骤 向半导体晶片的表面供给液滴并与液滴一起收集杂质的步骤,以及分析所收集的杂质的步骤。
    • 3. 发明授权
    • Engine mount
    • 发动机支架
    • US07350777B2
    • 2008-04-01
    • US11270744
    • 2005-11-10
    • Yuichi OgawaAkio SaikiYoshihiro Kawabata
    • Yuichi OgawaAkio SaikiYoshihiro Kawabata
    • F16F7/00
    • F16F1/54F16F2230/0047
    • An engine mount has: a mount body including an upper and lower fitting of plate shape, and a pair of rubber mount elements of block shape; and an inner tube fitting situated within a through-hole in the upper fitting, formed at a location between the pair of rubber mount elements, and a vibration damping bushing integrally vulcanization bonded with the inner tube fitting and the upper fitting, and connecting the inner and upper fittings in the diametrical direction. The pair of rubber mount elements and the bushing rubber are integrally vulcanization molded. A stopper fitting is affixed within the inner tube fitting, with a vehicle front-back direction fitting stopper portion and/or a left-right direction fitting stopper portion being disposed on the stopper fitting, and a corresponding rubber stopper portion is disposed on the upper fitting side, with the fitting stopper portion and the rubber stopper portion being placed abutting one another.
    • 发动机支架具有:具有板状的上下配件的安装体和块状的一对橡胶安装元件; 以及内管配件,其位于所述上配件的通孔内,形成在所述一对橡胶安装元件之间的位置处,以及与所述内管接头和所述上配件一体硫化的减振衬套, 和上部配件在直径方向。 一对橡胶安装元件和衬套橡胶是一体硫化成型的。 止动配件固定在内管配件内,车辆前后方向配合止动部分和/或左右方向配合止动部分设置在止动器配件上,相应的橡胶止动部分设置在上部 配合止动部和橡胶止动部被配置为彼此抵接。
    • 4. 发明申请
    • Engine mount
    • 发动机支架
    • US20060108725A1
    • 2006-05-25
    • US11270744
    • 2005-11-10
    • Yuichi OgawaAkio SaikiYoshihiro Kawabata
    • Yuichi OgawaAkio SaikiYoshihiro Kawabata
    • F16F13/00
    • F16F1/54F16F2230/0047
    • An engine mount has: a mount body including an upper and lower fitting of plate shape, and a pair of rubber mount elements of block shape; and an inner tube fitting situated within a through-hole in the upper fitting, formed at a location between the pair of rubber mount elements, and a vibration damping bushing integrally vulcanization bonded with the inner tube fitting and the upper fitting, and connecting the inner and upper fittings in the diametrical direction. The pair of rubber mount elements and the bushing rubber are integrally vulcanization molded. A stopper fitting is affixed within the inner tube fitting, with a vehicle front-back direction fitting stopper portion and/or a left-right direction fitting stopper portion being disposed on the stopper fitting, and a corresponding rubber stopper portion is disposed on the upper fitting side, with the fitting stopper portion and the rubber stopper portion being placed abutting one another.
    • 发动机支架具有:具有板状的上下配件的安装体和块状的一对橡胶安装元件; 以及内管配件,其位于所述上配件的通孔内,形成在所述一对橡胶安装元件之间的位置处,以及与所述内管接头和所述上配件一体硫化的减振衬套, 和上部配件在直径方向。 一对橡胶安装元件和衬套橡胶是一体硫化成型的。 止动配件固定在内管配件内,车辆前后方向配合止动部分和/或左右方向配合止动部分设置在止动器配件上,相应的橡胶止动部分设置在上部 配合止动部和橡胶止动部被配置为彼此抵接。
    • 5. 发明申请
    • ELECTRONIC COMPONENT MOUNTING APPARATUS AND METHOD OF MOUNTING ELECTRONIC COMPONENTS
    • 电子元件安装装置和安装电子元件的方法
    • US20090031559A1
    • 2009-02-05
    • US12181944
    • 2008-07-29
    • Yoshihiro KAWABATAShigeo KATSUTAKoichi IZUHARAAkio WATANABEToshiaki WADA
    • Yoshihiro KAWABATAShigeo KATSUTAKoichi IZUHARAAkio WATANABEToshiaki WADA
    • H05K3/30B23P19/00
    • H05K13/0452H05K13/085Y10T29/4913Y10T29/53174Y10T29/53191
    • The invention is directed to manufacturing a divided board without wasting an electronic component by judging whether or not a shortage of electronic components of a given type to be mounted on divided board portions will occur during the mounting before mounting electronic components on the divided board. A printed board having three board portions is carried onto an XY table from a supply conveyer and positioned by positioning means. Then, for each of component feeding units, a CPU judges whether or not the number of remaining electronic components is smaller than the number of necessary electronic components for manufacturing all the divided board portions. When the number is judged smaller, for example, when the number of remaining electronic components of Fdr. No. “102” is judged to be two that is less than three, the CPU calculates that the number of manufacturable divided board portions is two. The CPU then decides that the divided board portions on the left side and in the middle are to be manufactured, adds “S” to a skip code space of a step number 3 for the third divided board portion, and manufactures only the divided board portions not given “S”.
    • 本发明涉及通过在将电子部件安装在划分的板上之前判断在安装期间是否将发生将要安装在分割板部分上的给定类型的电子部件的不足而不浪费电子部件的制造。 具有三个板部分的印刷电路板从供应输送机承载在XY工作台上并通过定位装置定位。 然后,对于每个分量供给单元,CPU判断剩余的电子部件的数量是否小于用于制造所有划分的板部分的必需的电子部件的数量。 当判断数量较小时,例如,当Fdr的剩余电子部件的数量。 判断为“102”为小于3的2,CPU计算出可制造的分隔板部分的数量为2。 然后CPU决定要制造左侧和中间的分隔板部分,将第三分割板部分的步骤3的跳过代码空间添加“S”,仅制造分割板部分 没有给予“S”。