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    • 61. 发明授权
    • Polymer-dispersed liquid crystal composition
    • 聚合物分散液晶组合物
    • US5906770A
    • 1999-05-25
    • US606931
    • 1996-02-26
    • Karl R. AmundsonMohan Srinivasarao
    • Karl R. AmundsonMohan Srinivasarao
    • G02F1/1333C08F2/48C09D4/02C09K19/54G02F1/13C09K19/52F21V9/00
    • C09K19/544
    • A novel PDLC film composition that contains a mixture of acrylate monomers that provide certain advantages when combined with a liquid crystal. The mixture of acrylate monomers contains one monofunctional monomer that gives rise to a homeotropic anchoring condition, and one monofunctional monomer that gives rise to homogeneous anchoring condition in the PDLC film made from the composition of the present invention at a selected temperature. The monomer mixture also contains a polyfunctional acrylate monomer. PDLC films made from these compositions have advantages over films made from compositions that have only one monofunctional acrylate monomer. Also, by using the process of the present invention, one can prepare a PDLC film that exhibits a low switching voltage in a desired temperature range.
    • 含有丙烯酸酯单体的混合物的新型PDLC膜组合物,当与液晶结合时提供某些优点。 丙烯酸酯单体的混合物含有产生垂直锚定条件的一种单官能单体和一种单官能单体,其在所选温度下由本发明组合物制成的PDLC膜中产生均匀的锚定状态。 单体混合物还含有多官能丙烯酸酯单体。 由这些组合物制成的PDLC膜比由仅具有一个单官能丙烯酸酯单体的组合物制成的膜具有优点。 此外,通过使用本发明的方法,可以制备在所需温度范围内显示低切换电压的PDLC膜。
    • 62. 发明申请
    • PROCESSES FOR FORMING BACKPLANES FOR ELECTRO-OPTIC DISPLAYS
    • 用于形成电光显示器的背板的方法
    • US20100265239A1
    • 2010-10-21
    • US12825991
    • 2010-06-29
    • Karl R. AmundsonGuy M. DannerGregg M. DuthalerPeter T. KazlasYu ChenKevin L. DenisNathan R. KaneAndrew P. Ritenour
    • Karl R. AmundsonGuy M. DannerGregg M. DuthalerPeter T. KazlasYu ChenKevin L. DenisNathan R. KaneAndrew P. Ritenour
    • G06F3/038H01J9/24H01L21/20
    • H01L27/1266B60C23/04G02F1/133305G02F1/1362G02F1/167G02F2001/13613H01L27/1214H01L27/1288H01L29/66765H01L29/78603
    • A non-linear element is formed on a flexible substrate by securing the substrate to a rigid carrier, forming the non-linear element, and then separating the flexible substrate from the carrier. The process allows flexible substrates to be processed in a conventional fab intended to process rigid substrates. In a second method, a transistor is formed on a insulating substrate by forming gate electrodes, depositing a dielectric layer, a semiconductor layer and a conductive layer, patterning the conductive layer to form source, drain and pixel electrodes, covering the channel region of the resultant transistor with an etch-resistant material and etching using the etch-resistant material and the conductive layer as a mask, the etching extending substantially through the semiconductor layer between adjacent transistors. The invention also provides a process for forming a diode on a substrate by depositing on the substrate a first conductive layer, and a second patterned conductive layer and a patterned dielectric layer over parts of the first conductive layer, and etching the first conductive layer using the second conductive layer and dielectric layer as an etch mask. Finally, the invention provides a process for driving an impulse-sensitive electro-optic display.
    • 通过将基板固定到刚性载体上,形成非线性元件,然后将柔性基板与载体分离,在柔性基板上形成非线性元件。 该方法允许柔性基底在旨在处理刚性基底的常规晶圆中进行加工。 在第二种方法中,通过形成栅电极,沉积介电层,半导体层和导电层,在绝缘基板上形成晶体管,图案化导电层以形成源极,漏极和像素电极,覆盖该沟道区 具有耐蚀刻材料的合成晶体管和使用耐蚀刻材料和导电层作为掩模的蚀刻,蚀刻基本上延伸通过相邻晶体管之间的半导体层。 本发明还提供了一种通过在衬底上沉积第一导电层以及第二图案化导电层和在第一导电层的部分上的图案化电介质层在衬底上形成二极管的工艺,并且使用 第二导电层和介电层作为蚀刻掩模。 最后,本发明提供一种驱动脉冲敏感电光显示器的方法。
    • 63. 发明授权
    • Methods for driving bistable electro-optic displays
    • 双稳态电光显示器的驱动方法
    • US07492339B2
    • 2009-02-17
    • US10906985
    • 2005-03-15
    • Karl R. Amundson
    • Karl R. Amundson
    • G09G3/36
    • G09G3/344G09G2310/06G09G2320/0204G09G2320/0257
    • A bistable electro-optic display having at least one pixel is driven using a waveform V(t) such that: J = ∫ 0 T ⁢ V ⁡ ( t ) ⁢ M ⁡ ( T - t ) ⁢ ⅆ t (where T is the length of the waveform, the integral is over the duration of the waveform, V(t) is the waveform voltage as a function of time t, and M(t) is a memory function that characterizes the reduction in efficacy of the remnant voltage to induce dwell-time-dependence arising from a short pulse at time zero) is less than about 1 volt sec.
    • 使用波形V(t)驱动具有至少一个像素的双稳态电光显示器,使得: = 0 > V t M > (其中T是波形的长度,积分在波形的持续时间内,V(t)是作为时间t的函数的波形电压,M(t)是表示减小的记忆功能 剩余电压在时间零点产生的短脉冲引起停留时间依赖性的功效)小于约1伏秒。
        • 69. 发明授权
        • Electrophoretic display element with filler particles
        • 带有填料颗粒的电泳显示元件
        • US08115729B2
        • 2012-02-14
        • US11308326
        • 2006-03-16
        • Guy M. DannerKarl R. AmundsonCraig HerbLibing Zhang
        • Guy M. DannerKarl R. AmundsonCraig HerbLibing Zhang
        • G09G3/34
        • G02F1/167G02F2001/1678G09G3/344G09G2310/06
        • The invention relates to methods and materials for controlling stability and color intensity in an electrophoretic display element. Filler particles in the electrophoretic display element, serves as a medium that the electrophoretic particles must travel through during switching between optical states of the display. The filler particles provide improved control over the color intensity of the electrophoretic display element. In addition, the filler particles create resistance to the migration of the electrophoretic particles, thereby improving the bistability of the electrophoretic displays and inhibiting settling of the electrophoretic particles. Also, migration resistance provided by the filler particles can enable threshold addressing of an electrophoretic display.
        • 本发明涉及用于控制电泳显示元件中的稳定性和颜色强度的方法和材料。 电泳显示元件中的填料颗粒用作在显示器的光学状态之间切换期间电泳颗粒必须穿过的介质。 填料颗粒提供对电泳显示元件的颜色强度的改进的控制。 此外,填料颗粒对电泳颗粒的迁移产生抗性,从而提高电泳显示器的双稳定性并抑制电泳颗粒的沉降。 此外,由填料颗粒提供的迁移阻力可以实现电泳显示器的阈值寻址。