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    • 72. 发明授权
    • Image processing apparatus with attachable/detachable functional units
    • 具有可附接/可拆卸功能单元的图像处理装置
    • US06219507B1
    • 2001-04-17
    • US09209708
    • 1998-12-11
    • Yoshiharu YonedaTatsuya InoueHiroyuki NagaoShinji SugitaHiranaga Yamamoto
    • Yoshiharu YonedaTatsuya InoueHiroyuki NagaoShinji SugitaHiranaga Yamamoto
    • G03G1500
    • G03G15/6514G03G21/1623G03G2221/1684
    • When the manual feeder and developer collecting container is attached to the copier body, there is a space which is formed by translating the developer collecting container in the attaching direction (the B-direction) of the developer collecting container, between the developer collecting container and the rear frame. The manual feeder is attached so that part of the manual feeder is disposed in this space. The attached developer collecting container, is arranged out side of a space which is the paths of the manual feeder for movement in the X-direction and in the Y-direction. The attached manual feeder is disposed outside the space which is the path of the developer collecting container. A lever as a shifting element of shifting a pickup feeding element between active and inactive positions resides in a space defined by translating the mid area across the full sheet width of the acceptable maximum size, in the direction of the sheet thickness. The space of the path of the pickup feeding element for movement between the active and inactive positions, is arranged so as to be in contact with the two planes normal to the direction of the sheet thickness, and the lever resides within this space. This lever is extended to a space defined by translating a boundary area of the full sheet width of the acceptable maximum size in the direction of the sheet thickness so that the extended portion is coupled to a pickup solenoid as the movement drive source for the pickup feeder.
    • 当手动进料器和显影剂收集容器附接到复印机主体时,存在通过在显影剂收集容器和显影剂收集容器之间沿显影剂收集容器的附接方向(B方向)平移显影剂收集容器而形成的空间, 后框架。 安装手动进纸器,使手动进纸器的一部分放置在该空间中。 附着的显影剂收集容器布置在作为在X方向和Y方向上移动的手动进给器的路径的空间的外侧。 附着的手动进料器设置在作为显影剂收集容器的路径的空间的外部。 作为将拾取器馈送元件在主动位置和非活动位置之间移动的移动元件的杠杆位于通过在片材厚度的方向上跨过可接受的最大尺寸的整个片材宽度平移中间区域所限定的空间。 用于在主动位置和非活动位置之间移动的拾取馈送元件的路径的空间被布置成与垂直于板厚方向的两个平面接触,并且杆位于该空间内。 该杠杆延伸到通过在片材厚度的方向上平移可接受的最大尺寸的整个片材宽度的边界区域所限定的空间,使得延伸部分耦合到拾取螺线管,作为用于拾取馈送器的移动驱动源 。
    • 74. 发明授权
    • Method of manufacturing a ceramic electronic component
    • 制造陶瓷电子部件的方法
    • US5769988A
    • 1998-06-23
    • US752837
    • 1996-11-20
    • Hiroshi KagataIchiro KameyamaTatsuya InoueJunichi Kato
    • Hiroshi KagataIchiro KameyamaTatsuya InoueJunichi Kato
    • C04B35/00C04B35/64C04B41/51C04B41/88H01G4/12H01P7/04H01P11/00C04B37/00B05D5/12
    • C04B41/009C04B41/5116C04B41/88H01P11/008C04B2111/00844
    • A method of manufacturing a ceramic electronic component having a dielectric ceramic and a conductor containing Ag as a main component, wherein a dielectric resonator with a high Q value is produced by heat treating at 400.degree. C. or more in an atmosphere containing 10% or less by volume of oxygen after sintering the dielectric ceramic. Using a BaO--TiO.sub.2 --Nd.sub.2 O.sub.3 --Bi.sub.2 O.sub.3 based composition (.epsilon..sub.r =92, Qf=5000 GHz) as a dielectric, a coaxial type dielectric ceramic is produced by granulating calcined powder of the dielectric and then compacting the powder, followed by sintering. A dielectric resonator of .lambda./4 is produced by coating the dielectric ceramic with Ag paste at a position other than either the upper or lower side and then burning the paste. Thereafter, the electrodes(1,4) are formed by burning the paste at 400.degree. C. or more in an atmosphere containing 10% or less by volume of oxygen. The coaxial type dielectric resonator accepts electromagnetic waves from the open end and obtains output by utilizing TEM mode.
    • 一种制造具有介电陶瓷和含有Ag作为主要成分的导体的陶瓷电子部件的制造方法,其特征在于,在含有10%以上的气氛中,在400℃以上的温度下进行热处理, 烧结介电陶瓷后的氧气体积小。 使用BaO-TiO2-Nd2O3-Bi2O3基组合物(ε= r = 92,Qf = 5000GHz)作为电介质,通过对电介质的煅烧粉末进行造粒,然后压实粉末,随后烧结来制造同轴型电介质陶瓷。 通过在不同于上侧或下侧的位置用Ag浆料涂覆电介质陶瓷,然后燃烧该糊料来制造λ/ 4的介质谐振器。 此后,通过在含有10体积%以下氧气的气氛中,在400℃以上的温度下将糊状物烧成而形成电极(1,4)。 同轴型介质谐振器从开口端接受电磁波,并利用TEM模式获得输出。