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    • 12. 发明授权
    • Circuit fabrication method
    • 电路制造方法
    • US07198885B2
    • 2007-04-03
    • US10482101
    • 2003-05-19
    • Takeo Kawase
    • Takeo Kawase
    • G03F7/26
    • G02F1/1368G02F1/133305G02F2202/02H01L27/1292H01L27/3244H01L51/0004
    • A thin film circuit is fabricated using a lithographic technique in combination with an inkjet printing technique. The lithographic technique, providing extremely high resolution, is used to fabricate transistor source and drain electrodes, parts of interconnections and circuit electrodes, enabling highly conductive materials to be used. Semiconductor regions, insulator regions, gate electrodes and other parts of the interconnections, and in particular interconnection cross-over points, are patterned using an inkjet printing technique. A variety of materials can be used in the inkjet printing technique and the alignment concerns associated with the use of multiple lithographic steps and, in particular, with the use of plastics substrates, are substantially alleviated.
    • 使用光刻技术与喷墨印刷技术组合制造薄膜电路。 提供极高分辨率的光刻技术用于制造晶体管源极和漏极,互连部分和电路电极,使得能够使用高导电性材料。 使用喷墨印刷技术对半导体区域,绝缘体区域,栅极电极和互连的其它部分,特别是互连交叉点进行图案化。 可以在喷墨印刷技术中使用各种材料,并且基本上减轻了与使用多个光刻步骤有关的对准问题,特别是使用塑料底物。
    • 13. 发明申请
    • Display device
    • 显示设备
    • US20050218791A1
    • 2005-10-06
    • US11141005
    • 2005-06-01
    • Takeo Kawase
    • Takeo Kawase
    • H01L51/50G09F9/30H01L21/336H01L27/08H01L27/28H01L27/32H01L29/786H01L51/05H05B33/26H05B33/08
    • H01L27/3293G02F1/13336H01L27/3255H01L27/3262H01L27/3274H01L27/3281H01L51/0508
    • The invention provides a display device (26) including a plurality of discrete display segments (2). Each display segment (2) is provided with a drive circuit for driving the display elements arranged within the display area. The display device may be provided either as a passive, active or direct pixel addressed array. By interconnecting a number of display segments, a large area display can be achieved without the requirement for long electrodes. This reduces the electrical resistance and parasitic capacitance of the addressing electrodes, enabling the display to provide improved luminance in a displayed image and to operate at higher speeds, providing improved resolution. An active matrix addressing scheme can also be implemented using relatively low mobility organic thin film transistors.
    • 本发明提供了一种包括多个离散显示段(2)的显示设备(26)。 每个显示段(2)设置有用于驱动布置在显示区域内的显示元件的驱动电路。 显示装置可以被提供为无源,有源或直接像素寻址阵列。 通过互连多个显示段,可以实现大面积显示,而不需要长电极。 这降低了寻址电极的电阻和寄生电容,使得显示器能够在显示的图像中提供改善的亮度并以更高的速度工作,从而提供改进的分辨率。 还可以使用相对低迁移率的有机薄膜晶体管来实现有源矩阵寻址方案。
    • 15. 发明授权
    • Method of processing solution on a substrate
    • 在基板上处理溶液的方法
    • US06808972B2
    • 2004-10-26
    • US10175909
    • 2002-06-21
    • Henning SirringhausTakeo KawaseRichard Henry Friend
    • Henning SirringhausTakeo KawaseRichard Henry Friend
    • H01L218238
    • H01L51/52B82Y30/00H01L21/31133H01L21/76838H01L27/283H01L27/32H01L51/0004H01L51/0012H01L51/0018H01L51/002H01L51/0021H01L51/0036H01L51/0037H01L51/0039H01L51/0043H01L51/0059H01L51/052H01L51/0541H01L51/0545
    • A method for forming on a substrate an electronic device including an electrically conductive or semiconductive material in a plurality or regions, the operation of the device utilising current flow from a first region to a second region, the method comprising: forming a mixture by mixing the material with a liquid; forming on the substrate a confinement structure including a first zone in a first area of the substrate and a second zone in a second area of the substrate, the first zone having a greater repellence for the mixture than the second zone, and a third zone in a third area of the substrate spaced from the second area by the first area, the first zone having a greater repellence for the mixture than the third zone, and depositing the material on the substrate by applying the mixture over the substrate whereby the deposited material may be confined by the relative repellence of the first zone to spaced apart regions defining the said first and second regions of the device and being electrically separate in their plane by means of the relative repellence of the first zone and to be absent from the first area of the substrate so as to resist the flow across the first zone of electrical current between the spaced a part regions of the deposited material.
    • 一种在衬底上形成包括多个或多个区域中的导电或半导体材料的电子器件的方法,所述器件利用从第一区域到第二区域的电流的操作,所述方法包括:通过将 液体材料; 在所述基板上形成约束结构,所述约束结构包括所述基板的第一区域中的第一区域和所述基板的第二区域中的第二区域,所述第一区域具有比所述第二区域更大的对混合物的排斥性,以及第三区域 所述基板的第三区域与所述第二区域间隔开所述第一区域,所述第一区域具有比所述第三区域更大的对混合物的排斥性,以及通过将所述混合物施加在所述基板上而将所述材料沉积在所述基板上,由此所沉积的材料 被限制为第一区域相对排斥限定装置的所述第一和第二区域的间隔开的区域,并且通过第一区域的相对排斥性在其平面中电分离,并且不存在于第一区域的第一区域 衬底,以便抵抗在沉积材料的间隔开的部分区域之间穿过第一区域的电流的流动。
    • 20. 发明授权
    • Display, display method, and electronic device
    • 显示,显示方式和电子设备
    • US08217857B2
    • 2012-07-10
    • US12043698
    • 2008-03-06
    • Takeo KawaseTakayuki KondoHitoshi FukushimaYuji Shinohara
    • Takeo KawaseTakayuki KondoHitoshi FukushimaYuji Shinohara
    • G09G3/19G09G3/30G09G3/10
    • G09G3/3446G02F1/167G02F2203/34
    • A display, comprising: a planar display section; a pixel space provided next to a side adjacent to one surface of the display section and encapsulating a plurality of kinds of colorants, each kind having a different color; an accumulation section provided in the pixel space and accumulating the colorants; a separation system that separates a specific kind of colorant from the accumulated colorants in the accumulation section; a transfer system that selects at least one kind of colorant from the separated colorants and transfers this colorant to the side adjacent to the display section of the pixel space. The separation system performs separation utilizing the magnitude of a dielectrophoretic force generated in each colorant upon receipt of an alternating electric field of a specific frequency applied by this system, the magnitude varying depending on the kind of the colorant. A color of at least the one kind of colorant transferred by the transfer system is displayed at the display section.
    • 一种显示器,包括:平面显示部分; 设置在与显示部的一个表面相邻的一侧的像素空间,并且封装多种着色剂,每种着色剂具有不同的颜色; 设置在像素空间中并累积着色剂的累积部分; 分离系统,其将特定种类的着色剂与累积部分中的累积着色剂分离; 转移系统,其从分离的着色剂中选择至少一种着色剂并将该着色剂转移到与像素空间的显示部分相邻的一侧。 分离系统在接收到由该系统施加的特定频率的交变电场时,利用每种着色剂中产生的介电电泳力的大小进行分离,其大小根据着色剂的种类而变化。 在显示部分显示至少一种由转印系统转印的着色剂的颜色。