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    • 1. 发明授权
    • Photo-micrographing device and its control method
    • 照相显影装置及其控制方法
    • US07486886B2
    • 2009-02-03
    • US11330874
    • 2006-01-11
    • Hideaki EndoAkitsugu KagayamaKatsuyoshi Yamaguchi
    • Hideaki EndoAkitsugu KagayamaKatsuyoshi Yamaguchi
    • G02B21/36
    • G02B21/367G02B21/26
    • A photo-micrographing device includes a microscope, a unit for obtaining an image of an inspection object, a unit for setting a plurality of view fields of the microscope and storing position information of a stage corresponding to each view field, a unit for storing setting information of the microscope and a camera unit in each view field, a unit for storing shooting conditions corresponding to each view field where time-lapse shooting is applied, a unit for obtaining a time-lapse shooting image for each view field where the time-lapse shooting is applied, based on the stored position information, the stored setting information and the stored shooting conditions, and a unit for collectively displaying latest taken time-lapse shooting images for each view field where the time-lapse shooting is applied.
    • 照相显影装置包括显微镜,用于获得检查对象的图像的单元,用于设置显微镜的多个视场的单元,并存储与每个视野相对应的台的位置信息,用于存储设置的单元 每个视野中的显微镜和相机单元的信息,用于存储与应用了延时拍摄的每个视野相对应的拍摄条件的单元,用于获得每个视场的延时拍摄图像的单元, 基于所存储的位置信息,存储的设置信息和存储的拍摄条件来应用经过拍摄,以及用于对应用延时拍摄的每个视野进行集体显示最新拍摄的延时拍摄图像的单元。
    • 5. 发明申请
    • LAMINATED CERAMIC CAPACITOR
    • 层压陶瓷电容器
    • US20110075321A1
    • 2011-03-31
    • US12989406
    • 2009-04-24
    • Katsuyoshi Yamaguchi
    • Katsuyoshi Yamaguchi
    • H01G4/12
    • H01G4/1227C04B35/46H01G4/30
    • Disclosed is a laminated ceramic capacitor that comprises a capacitor body (1) comprising alternately stacked dielectric layers (5) and internal electrode layers (7), and an external electrode (3) provided on the end face of the capacitor body (1) on which the internal electrode layer (7) is exposed. The dielectric layers (5, 5) disposed on both respective sides of the internal electrode layer (7) held between the dielectric layers (5, 5) are formed integrally with a dielectric bonding material (8) disposed so as to extend through a part of the internal electrode layer (7). The dielectric layer (5) has a crystal phase, composed mainly of barium titanate, as a main crystal phase, The crystal phase has a crystal structure based on a cubic system. The average grain diameter of crystal grains constituting the crystal phase is 0.05 to 0.2 pm. The dielectric layer (5) is formed of a dielectric ceramic containing yttrium, manganese, magnesium, and ytterbium. The dielectric bonding material (8) is formed of a dielectric ceramic containing the same components as the components of the main crystal phase of the dielectric ceramic constituting the dielectric layer (5).
    • 公开了一种层叠陶瓷电容器,其包括电容器主体(1),其包括交替堆叠的电介质层(5)和内部电极层(7),以及外部电极(3),设置在电容器主体(1)的端面上 内部电极层(7)露出。 设置在保持在电介质层(5,5)之间的内部电极层(7)的两侧的电介质层(5,5)与形成在电介质层(5)的一部分 的内部电极层(7)。 电介质层(5)具有主要由钛酸钡组成的晶相作为主晶相。晶相具有基于立方晶系的晶体结构。 构成结晶相的晶粒的平均粒径为0.05〜0.2μm。 电介质层(5)由含有钇,锰,镁和镱的电介质陶瓷形成。 介电接合材料(8)由包含与构成电介质层(5)的介电陶瓷的主晶相的成分相同的成分的电介质陶瓷形成。
    • 8. 发明授权
    • Process for preparing multilayer ceramic capacitor and the multilayer ceramic capacitor
    • 制备多层陶瓷电容器和多层陶瓷电容器的工艺
    • US07224570B2
    • 2007-05-29
    • US11168256
    • 2005-06-27
    • Katsuyoshi YamaguchiKoshiro Sugimoto
    • Katsuyoshi YamaguchiKoshiro Sugimoto
    • H01G4/008
    • H01G4/30H01G4/0085Y10T29/435
    • A process for preparing a multilayer ceramic capacitor of the present invention comprises the steps of forming a pattern sheet, laminating a plurality of the pattern sheets and firing to obtain a multilayer ceramic capacitor comprising dielectric layers and internal electrode layers that are alternately laminated. The pattern sheet comprises a dielectric material green sheet and a conductor pattern. The conductor pattern is formed on the dielectric material green sheet and contains a main component selected from Ni, Cu and their alloy, at least one selected from the elements of the groups 3B to 6B of the periodic table and at least one selected from Mn, Co and Fe. The multilayer ceramic capacitor so obtained has an internal electrode layer wherein occurrence of discontinuous portions in conductor patterns is suppressed even after firing.
    • 制备本发明的多层陶瓷电容器的方法包括以下步骤:形成图案片,层叠多个图案片材并进行烧制以获得包括交替层压的电介质层和内部电极层的多层陶瓷电容器。 图案片包括电介质材料生片和导体图案。 导体图案形成在电介质材料生片上,并含有选自Ni,Cu及其合金中的主要成分,选自周期表第3B〜6B族元素中的至少一种以及选自Mn, Co和Fe。 如此获得的层叠陶瓷电容器具有内部电极层,其中甚至在烧制之后也抑制导体图案中不连续部分的发生。
    • 9. 发明申请
    • Process for preparing multilayer ceramic capacitor and the multilayer ceramic capacitor
    • 制备多层陶瓷电容器和多层陶瓷电容器的工艺
    • US20050286204A1
    • 2005-12-29
    • US11168256
    • 2005-06-27
    • Katsuyoshi YamaguchiKoshiro Sugimoto
    • Katsuyoshi YamaguchiKoshiro Sugimoto
    • H01G4/008H01G4/30H01G4/32
    • H01G4/30H01G4/0085Y10T29/435
    • A process for preparing a multilayer ceramic capacitor of the present invention comprises the steps of forming a pattern sheet, laminating a plurality of the pattern sheets and firing to obtain a multilayer ceramic capacitor comprising dielectric layers and internal electrode layers that are alternately laminated. The pattern sheet comprises a dielectric material green sheet and a conductor pattern. The conductor pattern is formed on the dielectric material green sheet and contains a main component selected from Ni, Cu and their alloy, at least one selected from the elements of the groups 3B to 6B of the periodic table and at least one selected from Mn, Co and Fe. The multilayer ceramic capacitor so obtained has an internal electrode layer wherein occurrence of discontinuous portions in conductor patterns is suppressed even after firing.
    • 制备本发明的多层陶瓷电容器的方法包括以下步骤:形成图案片,层叠多个图案片材并进行烧制以获得包括交替层压的电介质层和内部电极层的多层陶瓷电容器。 图案片包括电介质材料生片和导体图案。 导体图案形成在电介质材料生片上,并含有选自Ni,Cu及其合金中的主要成分,选自元素周期表第3B-6B族元素中的至少一种和选自 Mn,Co和Fe。 如此获得的层叠陶瓷电容器具有内部电极层,其中甚至在烧制之后也抑制导体图案中不连续部分的发生。