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    • 61. 发明授权
    • Method for manufacturing nonvolatile storage device
    • 非易失性存储装置的制造方法
    • US08153488B2
    • 2012-04-10
    • US12726749
    • 2010-03-18
    • Kazuhito NishitaniEiji ItoMachiko TsukijiHiroyuki FukumizuNaoya HayamizuKatsuhiro Sato
    • Kazuhito NishitaniEiji ItoMachiko TsukijiHiroyuki FukumizuNaoya HayamizuKatsuhiro Sato
    • H01L21/336
    • H01L27/101H01L27/24H01L45/04H01L45/145
    • Manufacturing a nonvolatile storage device including: stacking a first electrode film forming a first electrode and a first storage unit film forming a first storage unit on a substrate; processing the first electrode film and the first storage unit film into a strip shape; burying a sacrifice layer between the processed first electrode films and between the processed first storage unit films; forming a second electrode film forming a second electrode on the first storage unit film and the sacrifice layer; forming a mask layer on the second electrode film; processing the second electrode film into a strip shape using the mask layer; removing a portion of the first storage unit film exposed from the sacrifice layer using the mask layer processing the first storage unit film into a columnar shape, removing the sacrifice layer exposing the first storage unit film; and removing the exposed first storage unit film.
    • 制造非易失性存储装置,包括:在基板上堆叠形成第一电极的第一电极膜和形成第一存储单元的第一存储单元膜; 将第一电极膜和第一存储单元膜加工成带状; 在经处理​​的第一电极膜之间和处理的第一存储单元膜之间埋设牺牲层; 在所述第一存储单元膜和所述牺牲层上形成形成第二电极的第二电极膜; 在所述第二电极膜上形成掩模层; 使用掩模层将第二电极膜加工成带状; 使用将所述第一存储单元膜处理成柱状的掩模层来除去从所述牺牲层暴露的所述第一存储单元膜的一部分,去除暴露所述第一存储单元膜的所述牺牲层; 以及去除所暴露的第一存储单元膜。
    • 66. 发明授权
    • Method for manufacturing laminated ceramic electronic component
    • 叠层陶瓷电子元件的制造方法
    • US06793751B2
    • 2004-09-21
    • US10336020
    • 2003-01-03
    • Takanobu KatsuyamaEiji ItoNagato OmoriYasunobu Yoneda
    • Takanobu KatsuyamaEiji ItoNagato OmoriYasunobu Yoneda
    • B32B3126
    • C04B35/62218B32B18/00B32B2037/243B32B2311/22B32B2315/02C04B2235/963C04B2237/346C04B2237/68C04B2237/704H01F41/046H01G4/308H05K1/0306H05K3/4611H05K3/4629
    • A method for manufacturing a laminated ceramic electronic component allows for production of highly reliable laminated ceramic electronic components even when the coating rate of a ceramic slurry on a surface of a carrier film is increased in order to reduce the thickness of the ceramic green sheet. A ceramic green sheet is formed by pulling out a carrier film from a carrier film roll, coating the film with a ceramic slurry using a coating apparatus, drying the film with a drying apparatus, and rolling up the film using a take-up apparatus. The carrier film is unrolled, an internal electrode pattern is printed thereon by a printing apparatus, the surface of the film is dried, and the film is rolled up by the take-up apparatus. The rolled carrier film is pulled out, the ceramic green sheet is peeled away, and a plurality of the ceramic green sheets are laminated. Following the cutting of the laminated body into individual elements, these elements are fired, and external electrodes are formed thereon. In this manufacturing process, a film used as the carrier film is such that Rmax of the ceramic slurry coated surface is about 0.2 &mgr;m or less, and Rmax of the opposite surface thereof is about 0.5 &mgr;m to 1.0 &mgr;m.
    • 层叠陶瓷电子部件的制造方法即使在增加载体膜表面的陶瓷浆料的涂布速度的同时,也可以生产高度可靠的层叠陶瓷电子部件,以减少陶瓷生片的厚度。 通过从载体膜辊拉出载体膜,使用涂布装置用陶瓷浆料涂布膜,用干燥装置干燥膜,并使用卷取装置卷起膜,形成陶瓷生片。 展开载体膜,通过印刷装置在其上印刷内部电极图案,将膜的表面干燥,并且通过卷取装置将膜卷起。 拉出轧制的载体膜,将陶瓷生片剥离,并且层叠多个陶瓷生片。 在将层压体切割成单个元件之后,将这些元件烧制,并在其上形成外部电极。 在该制造方法中,用作载体膜的膜的陶瓷浆料涂布表面的Rmax为约0.2μm或更小,并且其相对表面的Rmax为约0.5μm至1.0μm。
    • 70. 发明授权
    • Bank note conveying apparatus
    • 银行纸币输送设备
    • US5564544A
    • 1996-10-15
    • US229838
    • 1994-04-19
    • Takatoshi TakemotoNoriaki KanoEiji ItoKoji MurakamiShoshiti Takahashi
    • Takatoshi TakemotoNoriaki KanoEiji ItoKoji MurakamiShoshiti Takahashi
    • B65H9/16G07D11/00G07D7/00
    • B65H9/163G07D11/0027B65H2701/1912
    • A bank note conveying apparatus which corrects the skew or the widthwise direction of the bank notes in the conveying path. The bank note conveying apparatus comprises a path forming member which forms a conveying path having a width larger than that of the bank note, and pinching roller mechanisms which send the bank notes in the conveying path in the conveying direction. The path forming member includes a bank note guide formed along one widthwise end of the conveying path. It also comprises a bank note widthwise arranging mechanism which directs the bank notes in the conveying path toward the bank note guide while feeding the bank notes in the conveying direction. The bank note widthwise arranging mechanism comprises an endless belt which is driven to come into contact with one of the two faces of the bank note, and rotatably supported balls which come into contact with the opposite face of the bank note.
    • 一种纸币输送装置,其校正输送路径中纸币的偏斜或宽度方向。 纸币输送装置包括形成宽度大于纸币宽度的输送路径的路径形成部件,以及在输送方向上将纸币送入输送路径的夹送辊机构。 路径形成构件包括沿着输送路径的一个宽度方向端部形成的纸币引导件。 它还包括纸币宽度方向布置机构,该纸币横向排列机构在输送方向上输送纸币时将纸币在输送路径中引向钞票引导件。 纸币宽度方向布置机构包括被驱动以与钞票的两个面中的一个接触的环形带,以及与钞票的相对面接触的可旋转的支撑的球。