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    • 124. 发明授权
    • Head substrate, ink jet head, and ink jet printer
    • 头基板,喷墨头和喷墨打印机
    • US06390589B1
    • 2002-05-21
    • US09422563
    • 1999-10-21
    • Yoshiyuki ImanakaMasahiko OgawaIchiro Saito
    • Yoshiyuki ImanakaMasahiko OgawaIchiro Saito
    • B41J29393
    • B41J2/14072B41J2202/17
    • A head substrate for an ink jet head that discharges ink liquid retained in the ink retaining portion by the ink discharge mechanism in accordance with the printing data inputted from the outside into the data input portion comprises one base substrate having a specific position on the surface for the ink retaining portion to be arranged, and a fuse array storing various readably data freely by selective fusing. This head substrate further comprises a fuse logic circuit for controlling the operation of selective fusing of the fuse array and data reading. Then, the fuse array and the fuse logic circuit are arranged in a position in the direction orthogonal to the surface of the base substrate, but not overlapping with the ink retaining portion. With the fuse array and fuse logic circuit thus structured, this head can be made smaller and lighter in a better productivity as compared with a head for which a ROM chip should be installed separately. Also, it becomes possible to prevent any crack that may occur due to the local heat generated by fusing of the fuse array from being developed into the ink retaining portion for the reliable operation of the head.
    • 用于喷墨头的头基板,其根据从外部输入到数据输入部分的打印数据,通过排墨机构排出保留在墨水保持部分中的墨液体,包括:一个基板,其表面上具有特定位置 待布置的墨水保持部分和通过选择性熔合自由地存储各种可读数据的熔丝阵列。 该头基板还包括用于控制熔丝阵列的选择性熔合和数据读取的操作的熔丝逻辑电路。 然后,将熔丝阵列和保险丝逻辑电路配置在与基板的表面正交的方向上,但不与墨保持部重叠。 由于如此构造的熔丝阵列和熔丝逻辑电路相比,与单独安装ROM芯片的磁头相比,该磁头可以以更好的生产率制造得更小更轻。 此外,可以防止由于保险丝阵列的熔合而产生的局部热量可能发生的任何裂纹,从而显影到墨水保留部分中,以保证头部的可靠运行。
    • 125. 发明授权
    • Electron beam deflection device for cathode ray tube
    • 阴极射线管用电子束偏转装置
    • US06346769B1
    • 2002-02-12
    • US09499613
    • 2000-02-07
    • Ichiro SaitoKoichi Iida
    • Ichiro SaitoKoichi Iida
    • H01J4000
    • H01J29/76H01J2229/7031H01J2229/7038
    • An electron beam deflection device for a cathode ray tube in which the power for deflecting an electron beam may be reduced easily and convergence may be adjusted easily. The electron beam deflection device has a horizontal deflection yoke and a vertical deflection yoke which are arranged at different positions relative to each other in the fore-and-aft direction. A first core constituting the horizontal deflection yoke is of a flat annular shape. The upper and lower inner surfaces of the first core operate as opposing magnetic poles. A second core constituting the vertical deflection yoke may be of a flat annular shape or of a circular or square annular shape. The forward or rear end of the first core or the forward or rear end of the second core is provided with a cut-out for adjusting the convergence.
    • 用于阴极射线管的电子束偏转装置,其中用于偏转电子束的功率可以容易地减小,并且可以容易地调整会聚。 电子束偏转装置具有在前后方向上相对于彼此不同位置配置的水平偏转线圈和垂直偏转线圈。 构成水平偏转线圈的第一铁芯是平的环形。 第一芯的上下内表面作为相对的磁极工作。 构成垂直偏转线圈的第二芯可以是平的环形形状或圆形或方形环形形状。 第一芯的前端或后端或第二芯的前端或后端设置有用于调整会聚的切口。
    • 126. 发明授权
    • Field emission cathode manufacturing method
    • 场发射阴极制造方法
    • US6116975A
    • 2000-09-12
    • US301556
    • 1999-04-29
    • Ichiro SaitoKoichi IidaTokiko Takahashi
    • Ichiro SaitoKoichi IidaTokiko Takahashi
    • H01J1/304H01J9/02
    • H01J9/025
    • A field emission cathode manufacturing method is provided which comprise the steps of forming a cathode electrode on a substrate; forming an insulative layer and gate electrode, each having fine holes formed therein, in this order on the cathode electrode; thereafter immersing them in a solution in which particles of an electron-emitting substance is dispersed; and electrically depositing particles of the electron emission substance on the cathode electrode facing the fine holes by an electrophoresis using the cathode electrode as a positive or negative electrode, thereby forming an electron emitter. The wet method is adopted to form the field emission cathode, which permits to considerably reduce the plant and equipment investment and manufacture even a large-screen FED with an improved yield. Also, since the electron missive substance particles are fully exposed, a very low accuracy is allowed in producing the electron emitter. Therefore, the field emission cathode manufacturing method permits to produce a large-screen cathode plate of which the electron emission characteristic will not be deteriorated, with a greater ease and an improved yield.
    • 提供了一种场致发射阴极的制造方法,其包括在基板上形成阴极电极的步骤; 在阴极电极上依次形成绝缘层和形成有细孔的绝缘层和栅电极; 然后将其浸入其中分散有电子发射物质的颗粒的溶液中; 并且通过使用阴极作为正极或负极的电泳将电子发射物质的颗粒电沉积在面对细孔的阴极上,从而形成电子发射体。 采用湿式方法形成场致发射阴极,大大减少了厂房和设备的投资和制造,甚至大幅度提高了FED产量。 此外,由于电子传播物质颗粒完全暴露,所以在制造电子发射体时允许非常低的精度。 因此,场致发射阴极的制造方法允许产生电子发射特性不会劣化的大屏幕阴极板,更容易和提高产量。