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    • 62. 发明申请
    • 3D DISPLAY DEVICE AND PHASE RETARDER FILM THEREOF
    • 3D显示设备及其相位延迟膜
    • US20130286305A1
    • 2013-10-31
    • US13574526
    • 2012-05-04
    • Chia-chiang HsiaoChih-wen Chen
    • Chia-chiang HsiaoChih-wen Chen
    • G02F1/1335
    • G02F1/13363G02B5/201G02B5/3083G02B27/26G02F2001/133631
    • The present invention discloses a 3D display device and a phase retarder film thereof. The phase retarder film is used to be mounted on an outer surface of a polarizer and has a plurality of first phase retarder rows; and a plurality of second phase retarder rows being arranged alternately with the first phase retarder rows. Each two of the adjacent first phase retarder rows and second phase retarder rows have a non-retardation row disposed therebetween. The non-retardation row has an optical axis being perpendicular or parallel to a transmission axis of the polarizer. The non-retardation row can reduce the brightness at boundary regions between phase-retarding areas and further improve image-crosstalk when the phase retarder film is mounted with a positional error.
    • 本发明公开了一种3D显示装置及其相位延迟膜。 相位延迟膜用于安装在偏振片的外表面上,并具有多个第一相位延迟器列; 并且与第一相位延迟器列交替布置的多个第二相位延迟器行。 相邻的第一相位延迟器行和第二相位延迟器行中的每两个在它们之间具有非延迟行。 非延迟行具有与偏振器的透射轴垂直或平行的光轴。 非延迟行可以降低相位延迟区域之间的边界区域的亮度,并且当相位延迟膜以位置误差安装时,进一步提高图像 - 串扰。
    • 64. 发明申请
    • MANUFACTURING METHOD FOR SEMICONDUCTOR DEVICE HAVING METAL GATE
    • 具有金属栅的半导体器件的制造方法
    • US20130280900A1
    • 2013-10-24
    • US13454337
    • 2012-04-24
    • Chien-Ming LaiRai-Min HuangTong-Jyun HuangChe-Hua HsuYi-Wen Chen
    • Chien-Ming LaiRai-Min HuangTong-Jyun HuangChe-Hua HsuYi-Wen Chen
    • H01L21/283
    • H01L21/823842H01L29/66545
    • A manufacturing method for a semiconductor device having a metal gate is provided. First and second gate trenches are respectively formed in first and second semiconductor devices. A work-function metal layer is formed in the first and second gate trenches. A shielding layer is formed on the substrate. A first removing step is performed, so that the remaining shielding layer is at bottom of the second gate trench and fills up the first gate trench. A second removing step is performed, so that the remaining shielding layer is at bottom of the first gate trench to expose the work-function metal layer at sidewall of the first gate trench and in the second gate trench. The work-function metal layer not covered by the remaining shielding layer is removed, so that the remaining work-function metal layer is only at bottom of the first gate trench. The remaining shielding layer is removed.
    • 提供一种具有金属栅极的半导体器件的制造方法。 第一和第二栅极沟槽分别形成在第一和第二半导体器件中。 工作功能金属层形成在第一和第二栅极沟槽中。 在基板上形成屏蔽层。 执行第一去除步骤,使得剩余的屏蔽层位于第二栅极沟槽的底部并填充第一栅极沟槽。 执行第二去除步骤,使得剩余的屏蔽层位于第一栅极沟槽的底部,以在第一栅极沟槽的侧壁和第二栅极沟槽中露出功函数金属层。 除去未被剩余屏蔽层覆盖的功函数金属层,使剩余的功函数金属层仅在第一栅极沟槽的底部。 剩下的屏蔽层被去除。
    • 66. 发明申请
    • THREE-DIMENSIONAL IMAGE DISPLAY APPARATUS
    • 三维图像显示设备
    • US20130258465A1
    • 2013-10-03
    • US13503651
    • 2012-03-30
    • Zan YangChia-chiang HsiaoChih-wen Chen
    • Zan YangChia-chiang HsiaoChih-wen Chen
    • G02B27/26
    • G02B27/26G02B5/201
    • A three-dimensional image display apparatus is described. The three-dimensional image display apparatus includes a display panel and a film-type patterned retarder. The three-dimensional image display apparatus allows the phase retarding regions of the film-type patterned retarder to be deviated from the pixel regions of the display panel so that the line of vision the viewer along the extension of the phase retarding direction corresponds to the pixel regions of the display panel. In other words, the phase retarding regions of the film-type patterned retarder deviate from the pixel of the display panel to avoid the image crosstalk when the viewer looks on the three-dimensional image display apparatus.
    • 描述三维图像显示装置。 三维图像显示装置包括显示面板和薄膜型图案化延迟器。 三维图像显示装置允许膜型图案化延迟器的相位延迟区域偏离显示面板的像素区域,使得观看者沿着相位延迟方向的延伸线的视线对应于像素 显示面板的区域。 换句话说,当观看者看到三维图像显示装置时,膜型图案化延迟器的相位延迟区域偏离显示面板的像素,以避免图像串扰。
    • 69. 发明授权
    • Method for preparing a water-soluble polyamide
    • 水溶性聚酰胺的制备方法
    • US08541539B2
    • 2013-09-24
    • US12345171
    • 2008-12-29
    • Yu-Chi TsengChin-Wen ChenS-P Rwei
    • Yu-Chi TsengChin-Wen ChenS-P Rwei
    • C08G69/08
    • H01B1/24C08G69/36C08G69/42C08J3/212C08J3/226C08J2377/00C08J2477/00C08L77/06D01F1/09D01F6/80Y10T428/249921
    • A method for preparing a water-soluble polyamide, includes copolymerizing reactive monomers including caprolactam; ethylene glycol bis(2-aminoethyl)ether or ethylene glycol bis(3-aminopropyl)ether; and 5-sulfoisophthalic acid monosodium salt, wherein a molar ratio of caprolactam:ethylene glycol bis(2-aminoethyl)ether or ethylene glycol bis(3 -aminopropyl)ether:5-sulfoisophthalic acid monosodium salt is about 0:1:1 to about 5:1:1, advantageously about 1.85:1:1. Copolymerizing takes place at a copolymerization temperature of about 222-250° C. and a copolymerization pressure of about 3 Bar. The method further includes maintaining a temperature of about 222-250° C. for about 2-3 hours under normal pressure after the copolymerization step. The water-soluble polyamide has a solubility in water of about 10-70%.
    • 一种制备水溶性聚酰胺的方法,包括使包含己内酰胺的反应性单体共聚; 乙二醇双(2-氨基乙基)醚或乙二醇双(3-氨基丙基)醚; 和5-磺基间苯二甲酸单钠盐,其中己内酰胺:乙二醇双(2-氨基乙基)醚或乙二醇双(3-氨基丙基)醚:5-磺基间苯二甲酸一钠盐的摩尔比为约0:1:1至约 5:1:1,有利地约1.85:1:1。 共聚发生在约222-250℃的共聚温度和约3巴的共聚压力下进行。 该方法还包括在共聚步骤之后在常压下保持约222-250℃的温度约2-3小时。 水溶性聚酰胺在水中的溶解度为约10-70%。