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    • 1. 发明授权
    • Ceramic capacitor
    • 陶瓷电容器
    • US06326052B1
    • 2001-12-04
    • US09484950
    • 2000-01-18
    • Mitsuru NagashimaKazuhiro YoshidaMasanobu KishiMakoto Murata
    • Mitsuru NagashimaKazuhiro YoshidaMasanobu KishiMakoto Murata
    • B05D512
    • A ceramic capacitor having an improved electrode soldering performance, little or no diffusion of solder even in the case of being used under a high temperature environment and a reduced characteristic deterioration is provided. The dry plating electrodes have a three-layer structure. First layers of the electrodes are respectively provided on both surfaces of a ceramic element assembly and made of any one or more of Cu, Ni-Cu alloy and Zn. Second layers of the electrodes are respectively provided on the surfaces of the first layers and made of a material different from the material of the first layers and any one or more of Cr, Ni-Cr alloy, Fe-Cr alloy, Co-Cr alloy, Ti, Zn, Al, W, V and Mo. Third layers of the electrodes are respectively provided on the surfaces of the second layers and made of any one or more of Cu, Ni-Cu alloy, Ag and Au.
    • 提供一种具有改善的电极焊接性能,即使在高温环境下使用并且特性劣化降低的情况下焊料扩散少的陶瓷电容器。 干电镀电极具有三层结构。 电极的第一层分别设置在陶瓷元件组件的两个表面上,由Cu,Ni-Cu合金和Zn中的任何一种或多种制成。 电极的第二层分别设置在第一层的表面上,并且由不同于第一层的材料和Cr,Ni-Cr合金,Fe-Cr合金,Co-Cr合金中的一种或多种的材料制成 ,Ti,Zn,Al,W,V和Mo。第三层电极分别设置在第二层的表面上,由Cu,Ni-Cu合金,Ag和Au中的一种或多种制成。
    • 2. 发明授权
    • Ceramic capacitor
    • 陶瓷电容器
    • US6043973A
    • 2000-03-28
    • US974289
    • 1997-11-19
    • Mitsuru NagashimaKazuhiro YoshidaMasanobu KishiMakoto Murata
    • Mitsuru NagashimaKazuhiro YoshidaMasanobu KishiMakoto Murata
    • H01G4/12B05D5/12H01G4/005H01G4/008H01G4/01
    • H01G4/008Y10T29/435
    • A ceramic capacitor having an improved electrode soldering performance, little or no diffusion of solder even in the case of being used under a high temperature environment and a reduced characteristic deterioration is provided. The dry plating electrodes have a three-layer structure. First layers of the electrodes are respectively provided on both surfaces of a ceramic element assembly and made of any one or more of Cu, Ni--Cu alloy and Zn. Second layers of the electrodes are respectively provided on the surfaces of the first layers and made of a material different from the material of the first layers and any one or more of Cr, Ni--Cr alloy, Fe--Cr alloy, Co--Cr alloy, Ti, Zn, Al, W, V and Mo. Third layers of the electrodes are respectively provided on the surfaces of the second layers and made of any one or more of Cu, Ni--Cu alloy, Ag and Au.
    • 提供一种具有改善的电极焊接性能,即使在高温环境下使用并且特性劣化降低的情况下焊料扩散少的陶瓷电容器。 干电镀电极具有三层结构。 电极的第一层分别设置在陶瓷元件组件的两个表面上,由Cu,Ni-Cu合金和Zn中的任何一种或多种制成。 电极的第二层分别设置在第一层的表面上,并且由不同于第一层的材料和Cr,Ni-Cr合金,Fe-Cr合金,Co-Cr合金中的一种或多种的材料制成 ,Ti,Zn,Al,W,V和Mo。第三层电极分别设置在第二层的表面上,由Cu,Ni-Cu合金,Ag和Au中的一种或多种制成。
    • 7. 发明授权
    • Outboard motor
    • 舷外马达
    • US07238069B2
    • 2007-07-03
    • US11288547
    • 2005-11-29
    • Yu ItoMitsuru NagashimaNoriyoshi HiraokaMasanori Takahashi
    • Yu ItoMitsuru NagashimaNoriyoshi HiraokaMasanori Takahashi
    • B63H20/32
    • F02M35/168B63H20/32F02B61/045F02M35/10262F02M35/116Y02T10/146
    • An outboard motor has a cowling for enclosing an engine. Air inlet openings are formed in the cowling. An air intake chamber connects the air inlet openings and an air intake duct. Air that flows through the air inlet openings passes through the air intake chamber to the air intake duct. The air is then introduced into the engine. A front wall of the air intake chamber has a center portion positioned rearwardly of outer portions of the front wall. The air intake duct is positioned rearwardly of the front wall of the air intake chamber. The air inlet openings are positioned on both sides of the air intake duct. A rear wall is positioned rearwardly of the air intake duct. Each of the air inlet openings extends from the rear wall to one of the outer ends of the front wall of the air intake chamber.
    • 舷外马达具有用于封闭发动机的整流罩。 整流罩内形成进气口。 进气室连接进气口和进气管。 流过空气入口的空气通过进气室进入进气管。 然后将空气引入发动机。 进气室的前壁具有位于前壁的外部部分的后方的中心部分。 进气管道位于进气室前壁的后方。 进气口位于进气管两侧。 后壁位于进气管道的后方。 每个空气入口开口从后壁延伸到进气室前壁的一个外端。