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    • 23. 发明授权
    • Method and apparatus for making a mimeographic printing plate
    • 制造印刷版的方法和装置
    • US5355793A
    • 1994-10-18
    • US933196
    • 1992-08-21
    • Masamichi SatoKenji Yamakawa
    • Masamichi SatoKenji Yamakawa
    • B41C1/055B41C1/14B41F15/10B41L13/00
    • B41C1/144
    • A heat-sensitive material is used for making a mimeographic printing plate. The plate material includes a screen where printing ink is passable, and a resinous membrane formed on its surface. The resinous membrane is heated and melted so as to form a number of minute holes therein for passing the ink therethrough. A thermal head, having a large number of heating elements disposed in a main scan direction, is applied to the plate material. The plate material is moved in a sub scan direction by a predetermined distance, which is a pitch of a plurality of pixels on the plate material. In accordance with the optical density to be reproduced, the time of driving the heating elements is controlled in order to form holes in the pixels, so as to change a length of the hole in the pixels. As a result, the mimeographic plate for printing an image of half-tone can be obtained.
    • 热敏材料用于制造油版印刷版。 板材包括印刷油墨可通过的筛网和在其表面上形成的树脂膜。 树脂膜被加热熔化,从而在其中形成许多微孔以使油墨通过。 将具有大量沿主扫描方向设置的加热元件的热​​敏头施加到板材。 板材沿副扫描方向移动预定距离,该预定距离是板材上的多个像素的间距。 根据要再现的光密度,驱动加热元件的时间被控制以在像素中形成孔,以改变像素中的孔的长度。 结果,可以获得用于打印半色调图像的印刷版。
    • 25. 发明申请
    • PIEZOELECTRIC VIBRATION DEVICE AND PORTABLE TERMINAL USING THE SAME
    • 压电振动装置和使用它的便携式终端
    • US20130259274A1
    • 2013-10-03
    • US13993897
    • 2012-07-31
    • Harumi HayashiKenji YamakawaSatoru Iwasaki
    • Harumi HayashiKenji YamakawaSatoru Iwasaki
    • H01L41/09
    • H01L41/0926H04M1/0266H04M1/03H04R7/045H04R17/00H04R2499/11
    • A piezoelectric vibration device capable of being made thin and generating strong vibration, and a portable terminal using the same. Disclosed are a piezoelectric vibration device including at least: a support body; a vibration member that is mounted to the support body to be able to vibrate; a vibration element capable of being independently subjected to bending vibration by application of an electric signal; and a deformable first connecting member that is at least partly formed of a viscoelastic body, the deformable first connecting member being disposed between a first surface of the vibration element that is a bending surface and one main surface of the vibration member, and connecting the first surface of the vibration element and the one main surface of the vibration member, and a portable terminal using the piezoelectric vibration device.
    • 一种能够变薄并产生强烈振动的压电振动装置,以及使用该压电振动装置的便携式终端。 公开了一种至少包括:支撑体的压电振动装置; 振动构件,其安装到所述支撑体以能够振动; 能够通过施加电信号而独立地受到弯曲振动的振动元件; 以及可变形的第一连接构件,其至少部分地由粘弹性体形成,所述可变形的第一连接构件设置在所述振动元件的作为弯曲表面的第一表面和所述振动构件的一个主表面之间, 振动元件的表面和振动元件的一个主表面以及使用压电振动器件的便携式终端。
    • 26. 发明申请
    • Piezoelectric Oscillation Element and Piezoelectric Oscillation Component Using the Same
    • 压电振荡元件和使用它的压电振荡元件
    • US20090200900A1
    • 2009-08-13
    • US11814797
    • 2006-01-25
    • Yasuhiro NakaiKenji Yamakawa
    • Yasuhiro NakaiKenji Yamakawa
    • H01L41/047
    • H03H9/177H03H9/0538H03H9/1035
    • A piezoelectric oscillation element (1) comprising a piezoelectric substrate (10), a first conductor film (21) formed on one main surface of the piezoelectric substrate (10), a second conductor film (22) formed on the other main surface, and grounding terminals (31a, 31b) formed on the side surfaces of the piezoelectric substrate (10). Specified capacitances are respectively formed between the first and second conductor films (21, 22) formed on the main surfaces of the piezoelectric substrate (10) and the grounding terminals (31a, 31b) formed on the side surfaces thereof. Larger capacitances can be formed than when electrodes are disposed on the same main surface in proximity of each other to form a capacitance, whereby no adverse effect is given to thickness vibration occurring between the first and second conductor films (21, 22).
    • 一种压电振动元件(1),包括压电基板(10),形成在压电基板(10)的一个主表面上的第一导体膜(21),形成在另一主表面上的第二导体膜(22) 形成在压电基板(10)的侧面上的接地端子(31a,31b)。 分别在形成在压电基板(10)的主表面上的第一和第二导体膜(21,22)和形成在其侧表面上的接地端子(31a,31b)之间形成指定电容。 可以形成比在彼此靠近的电极设置在同一主表面上以形成电容的电容量大,从而不会对在第一和第二导体膜(21,22)之间产生的厚度振动产生不利影响。
    • 27. 发明授权
    • Thermal head and thermal printer
    • 热敏头和热敏打印机
    • US07212222B2
    • 2007-05-01
    • US11073520
    • 2005-03-08
    • Kenji Yamakawa
    • Kenji Yamakawa
    • B41J2/335
    • B41J2/335B41J2/3351B41J2/33515B41J2/3353B41J2/3354B41J2/3357
    • A heating element of a thermal head has a first electrode layer formed on a glaze layer and a second electrode layer formed opposite to the first electrode layer. A first insulation layer is formed on the first electrode layer to expose both ends of the first electrode layer in a transporting direction of a recording paper. A third electrode layer is formed on the first insulation layer to expose both ends of the first insulation layer in the transporting direction, and a heating resistor layer is formed across the first to the third electrode layers and the first insulation layer. A protective layer is formed covering the first to the third electrode layers, the first insulation layer, and the heating resistor layer. A system controller selectively applies the current to among the first, the second and the third electrode layers based on the image data to record.
    • 热敏头的加热元件具有形成在釉层上的第一电极层和与第一电极层相对形成的第二电极层。 在第一电极层上形成第一绝缘层,以在记录纸的输送方向上露出第一电极层的两端。 在第一绝缘层上形成第三电极层,以在输送方向上露出第一绝缘层的两端,并且在第一至第三电极层和第一绝缘层之间形成发热电阻层。 形成覆盖第一至第三电极层,第一绝缘层和加热电阻层的保护层。 系统控制器基于要记录的图像数据选择性地将电流施加到第一,第二和第三电极层之中。