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    • 111. 发明申请
    • Distributor and broadcast signal receiving system using the same
    • 分配器和广播信号接收系统使用相同
    • US20050153652A1
    • 2005-07-14
    • US10999151
    • 2004-11-30
    • Junichi NoroTakao Kato
    • Junichi NoroTakao Kato
    • H04N5/38H04B1/06H04B1/08H04B1/16H04B1/18H04H40/90H04H1/00
    • H04H40/90
    • A distributor arranged between a tuner module and an antenna, the tuner module including a first input portion and a second input portion for inputting a satellite broadcast signal transmitted from an artificial satellite and a ground broadcast signal transmitted from a ground base station respectively, and the antenna receiving either one of the broadcast signals. The distributor includes a first connector portion connected to the antenna; a second connector portion connected to the first input portion; a third connector portion connected to the second input portion; and a junction connecting portion distributing the signal inputted to the first connector portion to the second and the third connector portions. A drive voltage of the antenna inputted from the first input portion is outputted to the antenna. The voltage outputted to the antenna is fed back to the second input portion through the junction connecting portion and the third connector portion.
    • 布置在调谐器模块和天线之间的分配器,调谐器模块包括第一输入部分和第二输入部分,用于输入从人造卫星发送的卫星广播信号和从地面基站发射的地面广播信号, 接收广播信号之一的天线。 分配器包括连接到天线的第一连接器部分; 连接到第一输入部分的第二连接器部分; 连接到第二输入部分的第三连接器部分; 以及将输入到第一连接器部分的信号分配到第二和第三连接器部分的接合连接部分。 从第一输入部分输入的天线的驱动电压被输出到天线。 输出到天线的电压通过接合连接部分和第三连接器部分被反馈到第二输入部分。
    • 112. 发明授权
    • Printing device control apparatus and method
    • 印刷装置控制装置及方法
    • US06760120B2
    • 2004-07-06
    • US09778936
    • 2001-02-08
    • Takao Kato
    • Takao Kato
    • G06F1500
    • H04N1/2307G06F3/1296G06K15/00G06K2215/0011G06K2215/0082H04N1/233H04N1/2361
    • The object of the invention is to automatically select an optimum printing device according to the characteristics of a page in units of pages to print the page, thereby reducing the load on the operator in print processing. For this purpose, it is determined in units of pages whether data to be printed contains color information. If color information is present, a color flag is set to ON. When the color flag is ON, print data prepared and developed in a page buffer is sent to a color printer. When the color flag is OFF, the print data prepared and developed in the page buffer is sent to a monochromatic printer.
    • 本发明的目的是根据页面的特性自动选择最佳打印装置以打印页面,从而减少打印处理中的操作者的负担。 为此,以页面为单位确定要打印的数据是否包含颜色信息。 如果存在颜色信息,则将颜色标志设置为ON。 当颜色标志为ON时,在页面缓冲器中准备和显影的打印数据被发送到彩色打印机。 当颜色标志为OFF时,在页面缓冲器中准备和显影的打印数据被发送到单色打印机。
    • 115. 发明授权
    • Fabrication apparatus employing energy beam
    • 采用能量束的制造装置
    • US6015976A
    • 2000-01-18
    • US195254
    • 1998-11-18
    • Masahiro HatakeyamaKatsunori IchikiTakao KatoYotaro HatamuraMasayuki Nakao
    • Masahiro HatakeyamaKatsunori IchikiTakao KatoYotaro HatamuraMasayuki Nakao
    • G03F1/00G03F1/20G03F7/00G03F7/20H01J9/02H01L21/033H01L21/308H01J37/302
    • H01L21/3086G03F7/00G03F7/001G03F7/2065G03F7/70358H01J9/025H01L21/0331H01L21/0337H01J2209/0223
    • Three-dimensional ultra-fine micro-fabricated structures of the order of .mu.m and less are produced for use in advanced optical communication systems and quantum effect devices. Basic components are an energy beam source, a mask member and a specimen stage. The mask member is an independent component, and various combinations of relative movements of the mask member with respect to the beam axis and/or workpiece can be made with high precision to produce curved or slanted surfaces on a workpiece, thereby producing multiple lines or arrays of convex or concave micro-lenses. Other examples of fine-structures include deposition of thin films in a multiple line pattern or in an array pattern. Because of flexibility of fabrication and material, labyrinth seals having curved surfaces with grooved structures can be used as friction reduction devices for bearing components. Fine groove dimensions of the order of nm are possible. Energy beams can be any of fast atomic beams, ion beams, electron beam, laser beams, radiation beams, X-ray beams and radical particle beams. Parallel beams are often used, but when a focused bean is used, a technique of reduced projection imaging can be utilized to produce fine-structures of the order of nm.
    • 产生了数量级小于等于30的数量级的三维超细微结构,用于先进的光通信系统和量子效应器件。 基本组件是能量束源,掩模构件和样品台。 掩模构件是独立的部件,并且可以高精度地制造掩模构件相对于射束轴线和/或工件的相对运动的各种组合,以在工件上产生弯曲或倾斜的表面,由此产生多个线或阵列 的凸或微型微透镜。 精细结构的其他实例包括以多线图案或阵列图案沉积薄膜。 由于制造和材料的灵活性,具有带槽结构的曲面的迷宫式密封件可用作轴承部件的摩擦减小装置。 可以使nm的数量级的细槽尺寸。 能量束可以是快速原子束,离子束,电子束,激光束,辐射束,X射线束和自由基粒子束中的任何一种。 通常使用平行光束,但是当使用聚焦光束时,可以利用减少投影成像的技术来产生nm级数的精细结构。
    • 119. 发明授权
    • Method of making biCMOS integrated circuit with shallow N-wells
    • 使用浅N井制作biCMOS集成电路的方法
    • US5198374A
    • 1993-03-30
    • US783191
    • 1991-10-28
    • Takao Kato
    • Takao Kato
    • H01L27/06
    • H01L27/0623Y10S148/009
    • A biCMOS integrated circuit is created on a p-type semiconductor substrate on which first an n-type epitaxial layer then a p-type epitaxial layer is grown. NPN and PMOS transistors are formed in n-wells in the p-type epitaxial layer. n.sup.+ buried layers are located below the n-wells at the interface between the substrate and the n-type epitaxial layer. The n.sup.+ buried layers underlying the n-wells containing NPN transistors are surrounded by p.sup.+ buried layers that extend from the interface between the p-type and n-type epitaxial layers through the n-type epitaxial layers and into the substrate.
    • 在p型半导体衬底上形成biCMOS集成电路,在p型半导体衬底上首先生长n型外延层,然后生长p型外延层。 NPN和PMOS晶体管形成在p型外延层的n阱中。 n +掩埋层位于衬底和n型外延层之间的界面处的n阱之下。 包含NPN晶体管的n阱的下面的n +掩埋层由p +掩埋层围绕,p +埋层从p型和n型外延层之间的界面延伸穿过n型外延层并进入衬底。