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    • 84. 发明授权
    • Display device and method for producing the same
    • 显示装置及其制造方法
    • US06798959B2
    • 2004-09-28
    • US10230869
    • 2002-08-29
    • Yukihisa TakeuchiTsutomu NanatakiNatsumi ShimogawaKazuhiro Yamamoto
    • Yukihisa TakeuchiTsutomu NanatakiNatsumi ShimogawaKazuhiro Yamamoto
    • G02F1295
    • G02B26/02
    • A display device comprises an actuator substrate which has actuator elements, an optical waveguide plate, crosspieces which is interposed between the optical waveguide plate and the actuator substrate and which surround the actuator elements, and picture element assemblies which are joined onto the actuator elements. A stack for constructing each of the picture element assemblies has a transparent layer opposed to the optical waveguide plate. The transparent layer contains a major component of a cured resin obtained by polymerization with a principal ingredient which is composed of one or more materials selected from modified epoxy, bisphenol A type epoxy, bisphenol F type epoxy, and glycidyl ether type epoxy, and a curing agent which is composed of one or more materials selected from modified polyamine, modified alicyclic polyamine, and heterocyclic diamine modified product of tertiary amine.
    • 显示装置包括具有致动器元件的致动器基板,光波导板,介于光波导板和致动器基板之间并且围绕致动器元件的挡块以及连接到致动器元件上的图像元件组件。 用于构造每个像素组件的堆叠具有与光波导板相对的透明层。 透明层包含通过与主要成分聚合而获得的固化树脂的主要成分,所述主要成分由选自改性环氧树脂,双酚A型环氧树脂,双酚F型环氧树脂和缩水甘油醚型环氧树脂中的一种或多种材料组成, 试剂,其由选自改性多胺,改性脂环族多胺和叔胺的杂环二胺改性产物中的一种或多种材料组成。
    • 86. 发明授权
    • Piezoelectric/electrostrictive device
    • 压电/电致伸缩器件
    • US06570297B1
    • 2003-05-27
    • US09643163
    • 2000-08-21
    • Yukihisa TakeuchiTsutomu NanatakiMasato KomazawaKoji Kimura
    • Yukihisa TakeuchiTsutomu NanatakiMasato KomazawaKoji Kimura
    • H01L4108
    • H01L41/0946H01L41/27
    • A piezoelectric/electrostrictive device (P/E) includes driving, movable and fixing portions. One end of a first P/E element and P/E operating portion on the end are positioned on the fixing portion and an opposite end of the P/E operating portion of the first P/E element is positioned on a first thin plate portion. One end of a second P/E element and P/E operating portion on the end are positioned on the movable portion and an opposite end of the P/E operating portion of the second P/E element is positioned on a second thin plate portion. A hole formed by inner walls of the driving, movable and fixing portions has a central axis that extends in an axial direction substantially parallel to the thin plate portions and substantially perpendicular to the length direction, and the device is free of any other holes extending in any direction other than the axial direction.
    • 压电/电致伸缩装置(P / E)包括驱动,可移动和固定部分。 第一P / E元件的一端和端部上的P / E操作部分位于固定部分上,并且第一P / E元件的P / E操作部分的相对端位于第一薄板部分上 。 第二P / E元件的一端和端部上的P / E操作部分位于可动部分上,并且第二P / E元件的P / E操作部分的相对端位于第二薄板部分上 。 由驱动,可移动和固定部分的内壁形成的孔具有中心轴线,所述中心轴线在基本上平行于薄板部分并且基本上垂直于长度方向的轴向方向上延伸,并且该装置没有任何其它孔延伸 轴向以外的任何方向。
    • 89. 发明授权
    • Current controlling element
    • 电流控制元件
    • US06476336B1
    • 2002-11-05
    • US09688622
    • 2000-10-16
    • Yukihisa TakeuchiTsutomu NanatakiIwao Ohwada
    • Yukihisa TakeuchiTsutomu NanatakiIwao Ohwada
    • H01L4100
    • H01L41/0973H01J2201/30
    • An actuator having a fixed portion, a vibrating portion supported on the fixed portion so as to undergo vibrations, and an actuating portion including a first and a second electrodes formed on both sides or one side of a deformable layer is provided. The actuator generates displacement motion by holding the electric potential of the first electrode at a constant value and variably controlling the electric potential of the second electrode. A cathode for emitting electrons is formed on the actuator. The current controlling element changes the position of the cathode with respect to the plate by the displacement motion of the actuator to control a current value taken out of the plate.
    • 具有固定部分的致动器,支撑在固定部分上以进行振动的振动部分,以及包括形成在可变形层的两侧或一侧上的第一和第二电极的致动部分。 致动器通过将第一电极的电位保持在恒定值并可变地控制第二电极的电位而产生位移运动。 在致动器上形成用于发射电子的阴极。 电流控制元件通过致动器的位移运动来改变阴极相对于板的位置,以控制从板取出的电流值。
    • 90. 发明授权
    • Optical waveguide display with movable actuators which cause light leakage in waveguide at each display elements to provide gradation in a display image by temporal subfield modulation
    • 具有可移动致动器的光波导显示器,其在每个显示元件处引起波导中的光泄漏,以通过时域子场调制在显示图像中提供灰度
    • US06323833B1
    • 2001-11-27
    • US09046387
    • 1998-03-23
    • Yukihisa TakeuchiTsutomu NanatakiIwao OhwadaTakayoshi Akao
    • Yukihisa TakeuchiTsutomu NanatakiIwao OhwadaTakayoshi Akao
    • G09G334
    • G09G3/3493G02B26/02G09G3/2022G09G3/3473
    • Disclosed is a display-driving device for driving a display comprising an optical waveguide plate for introducing light thereinto, and a driving section provided opposingly to one plate surface of the optical waveguide plate and including a number of actuator elements arranged corresponding to a large number of picture elements, for displaying, on the optical waveguide plate, a picture image corresponding to an image signal by controlling leakage light at a predetermined portion of the optical waveguide plate by controlling displacement action of each of the actuator elements in a direction to make contact or separation with respect to the optical waveguide plate in accordance with an attribute of the image signal to be inputted; the display-driving device comprising a row electrode-driving circuit for selecting the actuator elements at least in one row unit, a column electrode-driving circuit for outputting a data signal-to the selected row, and a signal control circuit for performing gradation control for the respective driving circuits in accordance with the temporal modulation system. Accordingly, it is possible to realize a simplified arrangement of a peripheral circuit system (including the driving circuits).
    • 公开了一种用于驱动显示器的显示驱动装置,所述显示器包括用于引入光的光波导板,以及与所述光波导板的一个板表面相对设置的驱动部,并且包括多个致动器元件,所述致动器元件对应于大量 用于通过控制每个致动器元件在接触方向上的位移作用来控制在光波导板的预定部分处的泄漏光而在光波导板上显示与图像信号相对应的图像图像, 根据要输入的图像信号的属性,相对于光波导板分离; 所述显示驱动装置包括用于至少一行地选择致动器元件的行电极驱动电路,用于向选择的行输出数据信号的列电极驱动电路和用于执行灰度控制的信号控制电路 对于根据时间调制系统的各个驱动电路。 因此,可以实现外围电路系统(包括驱动电路)的简化布置。