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    • 7. 发明授权
    • Liquid crystal display device performing both image display mode and fingerprint recognition mode
    • 执行图像显示模式和指纹识别模式的液晶显示装置
    • US08723806B2
    • 2014-05-13
    • US11857508
    • 2007-09-19
    • Choong Hoo KimKyu Chang ParkMin Soo Shim
    • Choong Hoo KimKyu Chang ParkMin Soo Shim
    • G06F3/041G09G3/36
    • G06K9/0004G02F1/13338G02F2001/13312G06F1/1601G06F3/0412G06F2203/0339G09G3/3648G09G2300/0809
    • Disclosed is a liquid crystal display device of novel construction, in which a fingerprint recognition device is integrally formed with the liquid crystal display device, thereby minimizing the increase in the price and size of a final product. The liquid crystal display device comprises an image display panel and a fingerprint recognition panel which are integrally formed, wherein the image display panel comprises a scan drive unit which sequentially turns on rows formed in the image display panel for each frame in order to display images, and a data drive unit which outputs data signals to a turned-on row provided in the image display panel, and wherein the fingerprint recognition panel comprises a switch control unit which sequentially turns on rows formed in the fingerprint recognition panel for each frame in order to perform fingerprint recognition, and a reading unit, to which fingerprint information recognized from a turned-on row is outputted.
    • 公开了一种新颖结构的液晶显示装置,其中指纹识别装置与液晶显示装置整体形成,从而最小化最终产品的价格和尺寸的增加。 液晶显示装置包括一体形成的图像显示面板和指纹识别面板,其中,图像显示面板包括扫描驱动单元,该扫描驱动单元依次打开每帧的图像显示面板中形成的行以便显示图像, 以及数据驱动单元,其将数据信号输出到设置在图像显示面板中的开启行,并且其中指纹识别面板包括切换控制单元,其顺序地打开每个帧的指纹识别面板中形成的行,以便 执行指纹识别,以及读取单元,从被打开的行被识别的指纹信息被输出。
    • 8. 发明授权
    • Display driving circuit gate driver with shift register stages
    • 显示带移位寄存器级的驱动电路栅极驱动器
    • US08542178B2
    • 2013-09-24
    • US12815942
    • 2010-06-15
    • Se Jong YooKi Min SonJoon Sung AnSeong Jun An
    • Se Jong YooKi Min SonJoon Sung AnSeong Jun An
    • G09G3/36
    • G09G3/20G09G3/344G09G3/3674G09G2300/0408G09G2300/0417G09G2300/0426G09G2310/0267G09G2310/0281G09G2310/0286G09G2310/08G09G2330/021
    • A display driving circuit is provided. The display driving circuit, in which a gate driver shifting and outputting an input signal is embedded, includes an input portion receiving a pulse input signal consisting of a high-level signal and a low-level signal and transferring the pulse input signal to a boosting node, an inverter portion connected with the input portion, and inverting the pulse input signal to output the inverted signal, and a pull-up/pull-down portion consisting of a pull-up portion connected to the input portion, receiving a boosting voltage from the boosting node, and outputting a pull-up output signal, and a pull-down portion connected to the inverter portion, receiving the inverted signal, and outputting a pull-down output signal. Here, the inverter portion outputs a signal having a lower level than the low-level signal for a predetermined time period in which the pull-up output signal is output. Accordingly, the display driving circuit exhibits excellent output characteristics due to improved performance and also has excellent reliability.
    • 提供显示驱动电路。 嵌入了输入信号的栅极驱动器的显示驱动电路包括:输入部,其接收由高电平信号和低电平信号构成的脉冲输入信号,并将该脉冲输入信号转换为升压 与输入部分连接的反相器部分,并且反相脉冲输入信号以输出反相信号;以及上拉/下拉部分,由连接到输入部分的上拉部分组成,接收升压电压 并且输出上拉输出信号,以及连接到逆变器部分的下拉部分,接收反相信号并输出​​下拉输出信号。 这里,逆变器部分在输出上拉输出信号的预定时间段内输出具有比低电平信号低的电平的信号。 因此,显示驱动电路由于性能的提高而表现出优异的输出特性,并且也具有优异的可靠性。
    • 9. 发明申请
    • Sputtering Method Using Sputtering Device
    • 使用溅射装置的溅射方法
    • US20130112545A1
    • 2013-05-09
    • US13660263
    • 2012-10-25
    • Hydis Technologies Co., Ltd.
    • Jai Chun Lee
    • C23C14/34
    • C23C14/35H01J37/3408H01J37/3455
    • The present invention relates to a sputtering method using a sputtering device, wherein entire scan region is defined from one side to the other side of a sputtering target, and the sputtering target is scanned with a magnet moving back and forth along the entire scan region multiple times. The entire scan region of a sputtering target is divided by N parts to be uniformly eroded, such that a magnet moves back and forth along some part of the divided entire scan region. A sputtering method using a sputtering device can therefore extend an alternating cycle of a sputtering target, by virtue of improving utilization efficiency of the sputtering target through uniform erosion of the sputtering target, and can also reduce manufacturing cost.
    • 本发明涉及使用溅射装置的溅射方法,其中整个扫描区域从溅射靶的一侧到另一侧限定,并且用沿着整个扫描区域多次前后移动的磁体扫描溅射靶 次 将溅射靶的整个扫描区域除以N个部分以均匀地侵蚀,使得磁体沿着分割的整个扫描区域的某些部分来回移动。 因此,利用溅射装置的溅射方法可以通过溅射靶的均匀腐蚀提高溅射靶的利用效率,延长溅射靶的交替循环,并且还可以降低制造成本。