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    • 4. 发明授权
    • Multilayer ceramic parts
    • 多层陶瓷件
    • US5683790A
    • 1997-11-04
    • US514796
    • 1995-08-14
    • Kazuaki SuzukiMakoto KobayashiTaro MiuraKeizou Kawamura
    • Kazuaki SuzukiMakoto KobayashiTaro MiuraKeizou Kawamura
    • C04B35/64C04B37/00H01L21/48H01P1/203H01P7/08H01P11/00H05K3/46B32B3/00B32B15/00C03C8/22C03C27/04
    • H01L21/4857H01P11/008Y10S428/901Y10T428/12618Y10T428/24917Y10T428/24926
    • A multilayer ceramic part including dielectric ceramic layers and internal conductor layers is prepared by forming dielectric ceramic layers from an oxide system dielectric ceramic material having a sintering completion temperature between the melting point and the boiling point of the internal conductor. A pattern of internal conductor is formed on dielectric ceramic layers. The dielectric ceramic layers are placed one on another so as to sandwich the internal conductor pattern therebetween. The laminate is fired at or above the melting point of the internal conductor, optionally in an atmosphere having a controlled oxygen partial pressure. Since the dielectric ceramic material has an improved dielectric constant and dielectric loss and the internal conductor is densified and improved in surface property, the part is improved in resonator Q value and other properties. This minimizes the occurrence of defective parts in which the internal conductor is separated from the dielectric ceramic layer and minimizes a failure in the internal conductor layer.
    • 通过从具有在内部导体的熔点和沸点之间的烧结完成温度的氧化物系介电陶瓷材料形成介电陶瓷层来制备包括电介质陶瓷层和内部导体层的多层陶瓷部件。 在介电陶瓷层上形成内部导体的图形。 电介质陶瓷层一个接一个地放置在其间夹着内部导体图案。 层压体在内部导体的熔点以上或任意地在具有受控氧分压的气氛中烧制。 由于介电陶瓷材料具有改善的介电常数和介电损耗,并且内部导体致密化并且表面性能得到改善,所以该部件在谐振器Q值和其它性能方面得到改善。 这使得内部导体与介电陶瓷层分离的缺陷部件的发生最小化,并使内部导体层的故障最小化。
    • 6. 发明授权
    • Method of manufacturing microwave circulator
    • 微波循环器的制造方法
    • US5611878A
    • 1997-03-18
    • US407855
    • 1995-03-21
    • Taro MiuraMakoto KobayashiKazuaki Suzuki
    • Taro MiuraMakoto KobayashiKazuaki Suzuki
    • H01P1/383H01P1/387H01P11/00B32B31/12B32B31/26
    • H01P11/00H01P1/387
    • A method of manufacturing a circulator includes the steps of forming, on at least one sheet (41, 42) of an insulating ferromagnetic material, dummy inner conductors (44a, 44b, 44c, 45a, 45b, 45e) made of a material which is thermally decomposed at a temperature equal to or less than a sintering completion temperature of the insulating ferromagnetic material, laminating a plurality of the sheets (40, 41, 42) of the insulating ferromagnetic material so that at least one insulating ferromagnetic material sheet (40, 41) covers the dummy inner conductors formed on the sheets (41, 42), firing the laminated insulating ferromagnetic material sheets (40, 41, 42) to form an insulating ferromagnetic material body (46) in a single continuous body and to form ducts (47) for inner conductors at portions occupied by the dummy inner conductors, injecting with pressure conductive paste into the ducts (47) in the insulating ferromagnetic material body (46), and firing the insulating ferromagnetic material body (46) to form the inner conductors (48) in the insulating ferromagnetic body (46).
    • 制造循环器的方法包括以下步骤:在绝缘铁磁材料的至少一个片材(41,42)上形成由材料制成的虚拟内导体(44a,44b,44c,45a,45b,45e) 在等于或小于绝缘铁磁材料的烧结完成温度的温度下热分解,层叠绝缘铁磁材料的多个片材(40,41,42),使得至少一个绝缘铁磁材料片(40, 41)覆盖形成在片材(41,42)上的虚拟内部导体,焙烧层叠的绝缘铁磁材料片(40,41,42)以在单个连续体中形成绝缘铁磁材料体(46)并形成导管 (47),用于在虚拟内部导体所占据的部分处的内部导体,将压力导电浆料注入到绝缘铁磁材料体(46)中的管道(47)中,并且将绝缘铁磁材料 (46),以在绝缘铁磁体(46)中形成内部导体(48)。
    • 10. 发明授权
    • Heat treatment furnace and heat treatment apparatus
    • 热处理炉和热处理设备
    • US08957352B2
    • 2015-02-17
    • US13533291
    • 2012-06-26
    • Makoto Kobayashi
    • Makoto Kobayashi
    • H05B3/06H01L21/67F27D5/00
    • H01L21/67103H01L21/67109
    • Provided is a heat treatment furnace, which includes a processing vessel configured to accommodate at least one object to be processed, a heat insulating member configured to cover a periphery of the processing vessel, and a heating unit configured to be arranged along an inner peripheral surface of the heat insulating member. The heat insulating member includes an inner heat insulating member and an outer heat insulating member formed independently of the inner heat insulating member. The outer heat insulating member contains a finely-powdered compressed silica material, and at least an outer surface thereof is covered with an anti-scattering member configured to prevent the finely-powdered compressed silica material from being scattered.
    • 本发明提供一种热处理炉,其包括配置成容纳至少一个待处理物体的处理容器,构造成覆盖处理容器周围的绝热构件和构造成沿着内周面 的绝热构件。 绝热构件包括内绝热构件和独立于内绝热构件形成的外绝热构件。 外绝热构件包含细粉状压缩二氧化硅材料,并且至少其外表面覆盖有防止粉碎的压缩二氧化硅材料分散的抗散射构件。