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    • 7. 发明申请
    • LASER DESPECKLER BASED ON ANGULAR DIVERSITY
    • 基于角度多样性的激光切割机
    • WO2012136970A1
    • 2012-10-11
    • PCT/GB2012/000331
    • 2012-04-10
    • POPOVICH, Milan MomciloWALDERN, Jonathan, David
    • POPOVICH, Milan MomciloWALDERN, Jonathan, David
    • G02B27/48G02F1/1334
    • G02B27/48G02B5/0252G02B5/32G02B6/0051G02B27/283G02F1/133371G02F1/13342G02F1/133606G02F1/292G02F2203/22G03B21/008G03B21/208
    • There is provided a device for reducing laser speckle comprising: a micro scanner and a holographic diffuser. The micro scanner device comprises: a first transparent optical substrate with an input surface and an output surface; a second transparent optical substrate with an input surface and an output surface and a variable refractive index medium sandwiched between the output surface of the first substrate and the input surface of the second substrate. Transparent electrodes are applied to the output surface of the first substrate and the input surface of the second substrate. The electrodes are coupled to a voltage generator. The input surface of the first substrate is optically coupled to a laser source. The input surface of the second substrate is configured as an array of prismatic elements. Advantageously, at least one of the input surface of the first substrate or the output surfaces of the second substrate is planar. At least one of said transparent electrodes is patterned into independently addressable electrode elements. The average refractive index of any region of said variable refractive index medium is proportional to the voltage applied across the electrode elements sandwiching said region. The micro scanner deflects input light from the laser source into output light at an angle determined by the refractive index of the substrates and the average refractive index of the variable refractive index medium. The voltage applied across each electrode element is varied temporally. Each point in the holographic diffuser diffracts incident light rays of a predefined angle into output light rays having a predefined range of angles to form a diffuse illumination patch.
    • 提供了一种用于减少激光散斑的装置,包括:微型扫描仪和全息漫射器。 微型扫描仪装置包括:具有输入表面和输出表面的第一透明光学基底; 第二透明光学基板,具有输入表面和输出表面以及夹在第一基板的输出表面和第二基板的输入表面之间的可变折射率介质。 将透明电极施加到第一基板的输出表面和第二基板的输入表面。 电极耦合到电压发生器。 第一衬底的输入表面光学耦合到激光源。 第二基板的输入表面被配置为棱镜元件阵列。 有利地,第一衬底的输入表面或第二衬底的输出表面中的至少一个是平面的。 至少一个所述透明电极被图案化成可独立寻址的电极元件。 所述可变折射率介质的任何区域的平均折射率与夹着所述区域的电极元件上施加的电压成比例。 微扫描仪将来自激光源的输入光以基板的折射率和可变折射率介质的平均折射率确定的角度偏转为输出光。 施加在每个电极元件上的电压在时间上是变化的。 全息漫射器中的每个点将具有预定角度的入射光线衍射成具有预定角度范围的输出光线,以形成漫射照明贴片。
    • 10. 发明申请
    • METHOD AND APPARATUS FOR PROVIDING A TRANSPARENT DISPLAY
    • 提供透明显示的方法和装置
    • WO2007130130A2
    • 2007-11-15
    • PCT/US2006/043938
    • 2006-11-13
    • SBG LABS INC.WALDERN, Jonathan, DavidGUNTHER, John, EdwardPOPOVICH, Milan, Momcilo
    • WALDERN, Jonathan, DavidGUNTHER, John, EdwardPOPOVICH, Milan, Momcilo
    • H01L21/54
    • G02F1/13342
    • There is provided a method of fabricating an improved HPDLC transparent symbolic data display for projecting symbology into the field of view of a viewing device in which the HPDLC is localized to the display regions covered by the symbols. In a first step, a substrate to which an anti reflection coating and a transparent electrode layer have been applied is provided. In a second step, portions of said transparent electrode layer are removed to provide a patterned electrode layer including a symbol pad. In a third step, a layer of UV absorbing dielectric material is deposited over said patterned electrode layer. In a fourth step, the portion of said UV absorbing dielectric material overlapping said symbol pad is removed. In a fifth step, a second substrate to which an anti reflection coating and a transparent electrode layer have been applied is provided. In a sixth step, the transparent electrode layer of said second substrate layer is etched to provide a patterned electrode layer including an electrode element substantially identical to and spatially corresponding with the symbol pad. In a seventh step, the substrates are combined to form a display cell with the coated surfaces of the two cells aligned in opposing directions and having a small separation. In an eight step, said display cell is filled with a PDLC mixture. In the final step, the cell face formed by the first substrate is illuminated by crossed UV laser beams, and simultaneously illuminating the cell face formed by the second substrate by an incoherent UV source.
    • 提供了一种制造改进的HPDLC透明符号数据显示器的方法,用于将符号系统投影到观察设备的视场中,其中HPDLC被定位到由符号覆盖的显示区域。 在第一步骤中,提供了已经施加有抗反射涂层和透明电极层的基板。 在第二步骤中,去除所述透明电极层的部分以提供包括符号垫的图案化电极层。 在第三步骤中,在所述图案化电极层上沉积一层UV吸收介电材料。 在第四步骤中,除去与所述符号垫重叠的所述UV吸收介电材料的部分。 在第五步骤中,提供了已经施加有抗反射涂层和透明电极层的第二基板。 在第六步骤中,蚀刻所述第二衬底层的透明电极层以提供包括基本上与符号衬垫相同并在空间上对应的电极元件的图案化电极层。 在第七步骤中,将基板组合以形成显示单元,其中两个单元的涂覆表面以相反的方向排列并具有小的分离。 在八步骤中,所述显示单元填充有PDLC混合物。 在最后的步骤中,由交叉的UV激光束照射由第一基板形成的单元面,并且通过非相干的UV源同时照射由第二基板形成的单元面。