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    • 3. 发明授权
    • Non-volatile memory and manufacturing method thereof
    • 非易失性存储器及其制造方法
    • US08471328B2
    • 2013-06-25
    • US12843093
    • 2010-07-26
    • Chien-Hung ChenTzu-Ping ChenYu-Jen Chang
    • Chien-Hung ChenTzu-Ping ChenYu-Jen Chang
    • H01L29/82
    • H01L29/792H01L21/28282H01L27/11573H01L29/4234H01L29/66833
    • A manufacturing method of a non-volatile memory is disclosed. A gate structure is formed on a substrate and includes a gate dielectric layer and a gate conductive layer. The gate dielectric layer is partly removed, thereby a symmetrical opening is formed among the gate conductive layer, the substrate and the gate dielectric layer, and a cavity is formed on end sides of the gate dielectric layer. A first oxide layer is formed on a sidewall and bottom of the gate conductive layer, and a second oxide layer is formed on a surface of the substrate. A nitride material layer is formed covering the gate structure, the first and second oxide layer and the substrate and filling the opening. An etching process is performed to partly remove the nitride material layer, thereby a nitride layer is formed on a sidewall of the gate conductive layer and extending into the opening.
    • 公开了一种非易失性存储器的制造方法。 栅极结构形成在衬底上,并且包括栅极介电层和栅极导电层。 部分地去除栅介质层,从而在栅极导电层,基板和栅极电介质层之间形成对称的开口,并且在栅极电介质层的端侧形成空腔。 在栅极导电层的侧壁和底部上形成第一氧化物层,并且在衬底的表面上形成第二氧化物层。 形成覆盖栅极结构,第一和第二氧化物层和衬底并填充开口的氮化物材料层。 执行蚀刻处理以部分地去除氮化物材料层,由此在栅极导电层的侧壁上形成并延伸到开口中的氮化物层。
    • 9. 发明授权
    • Signal controlling method for 3D image display device
    • 3D图像显示装置的信号控制方法
    • US08848115B2
    • 2014-09-30
    • US12954869
    • 2010-11-27
    • Shih-Chieh LinHsiang-Tan LinChien-Hung ChenChun-Chieh Chiu
    • Shih-Chieh LinHsiang-Tan LinChien-Hung ChenChun-Chieh Chiu
    • G02F1/1335H04N13/02G02B27/26H04N13/04
    • G02B27/26H04N13/337
    • The present invention provides a 3D image signal controlling method. The method comprises inputting a left eye image into the first liquid crystal layer, turning off the backlight module and switching gray levels of the second liquid crystal layer to a minimum gray level during (4N−3)th time interval, wherein N is natural number; stopping inputting the left eye image, turning on the backlight module and remaining the gray levels of the second liquid crystal layer as the minimum gray level during (4N−2)th time interval; inputting a right eye image into the first liquid crystal layer, turning off the backlight module and switching the gray levels of the second liquid crystal layer as a maximum gray level during (4N−1)th time interval; and stopping inputting the right eye image, turning on the backlight module and remaining the gray levels of the second liquid crystal layer as the maximum gray level during (4N)th time interval.
    • 本发明提供一种3D图像信号控制方法。 该方法包括在(4N-3)时间间隔期间将左眼图像输入到第一液晶层中,关闭背光模块并将第二液晶层的灰度级切换到最小灰度级,其中N是自然数 ; 停止输入左眼图像,在(4N-2)时间间隔期间打开背光模块并保持第二液晶层的灰度级为最小灰度级; 在第(4N-1)次间隔期间,将右眼图像输入到第一液晶层中,关闭背光模块并将第二液晶层的灰度级切换为最大灰度级; 停止输入右眼图像,在(4N)时间间隔期间打开背光模块并保持第二液晶层的灰度级为最大灰度级。