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    • 21. 发明授权
    • Apparatus for delay calibration of a forward clock using three feedback clocks and a state transition table
    • 使用三个反馈时钟和状态转换表对正向时钟进行延迟校准的装置
    • US07131021B2
    • 2006-10-31
    • US10315154
    • 2002-12-10
    • Chien-Ming Chen
    • Chien-Ming Chen
    • G06F1/12
    • H03L7/0805H03K5/135H03K2005/00104H03K2005/0013H03L7/0814H04L7/0008H04L7/0037
    • An apparatus for automatic delay calibration of a forward clock. According to the invention, the apparatus includes control logic to receive a normal clock, a lead clock and a lag clock. The control logic therefore generates a delay control signal based on a timing relationship among the normal, the lead and the lag clocks. The apparatus also includes a delay calibrator to receive a reference clock having the same frequency as the forward clock. The delay calibrator generates the lead, the phase lag and the normal clocks from the reference clock and provides them as feedback to the control logic. According to the delay control signal, the delay calibrator can adjust the lead and the lag clocks. Once the timing relationship meets a predetermined condition, the delay control signal is provided to calibrate a delay for the forward clock.
    • 用于正向时钟的自动延迟校准的装置。 根据本发明,该装置包括用于接收正常时钟,引导时钟和滞后时钟的控制逻辑。 因此,控制逻辑基于正常,引导和滞后时钟之间的定时关系产生延迟控制信号。 该装置还包括延迟校准器,以接收具有与正向时钟相同频率的参考时钟。 延迟校准器产生引脚,相位滞后和来自参考时钟的正常时钟,并将其作为反馈给控制逻辑。 根据延迟控制信号,延迟校准器可以调节引线和滞后时钟。 一旦定时关系满足预定条件,则提供延迟控制信号以校准前向时钟的延迟。
    • 25. 发明授权
    • Process for forming a quantum-dot particle layer on a substrate
    • 在基板上形成量子点粒子层的工艺
    • US07935388B2
    • 2011-05-03
    • US12494706
    • 2009-06-30
    • Hsueh-Shih ChenDai-Luon LoGwo-Yang ChangChien-Ming Chen
    • Hsueh-Shih ChenDai-Luon LoGwo-Yang ChangChien-Ming Chen
    • H01L21/00
    • H01L29/0665B82Y10/00H01L29/0673H01L33/08
    • A method for manufacturing a quantum-dot element utilizes a reaction chamber for evaporating or sputtering at least one electrode layer or at least one buffer layer on a substrate. A substrate-supporting base is located inside the reaction chamber for fixing the substrate. An atomizer has a gas inlet and a sample inlet. More specifically, the gas inlet and the sample inlet feed the atomizer respectively with a gas and a precursor solution having a plurality of functionalized quantum dots, and thereby form a quantum-dot layer on the substrate. The method for manufacturing a quantum-dot element forms a quantum dot layer with uniformly distributed quantum dots and integrates the processes for forming the quantum-dot layer, the buffer layer, and the electrode layer together in the same chamber.
    • 用于制造量子点元件的方法利用反应室来蒸发或溅射基板上的至少一个电极层或至少一个缓冲层。 基板支撑基座位于反应室内部,用于固定基板。 雾化器具有气体入口和样品入口。 更具体地,气体入口和样品入口分别向雾化器供给具有多个官能化量子点的气体和前体溶液,从而在衬底上形成量子点层。 量子点元件的制造方法形成了具有均匀分布的量子点的量子点层,并且将同时形成量子点层,缓冲层和电极层的工序集成在一起。
    • 27. 发明授权
    • Method of manufacturing a quantum-dot element
    • 量子点元件的制造方法
    • US07303937B2
    • 2007-12-04
    • US11187829
    • 2005-07-25
    • Hsueh-Shih ChenDai-Luon LoGwo-Yang ChangChien-Ming Chen
    • Hsueh-Shih ChenDai-Luon LoGwo-Yang ChangChien-Ming Chen
    • H01L21/00
    • H01L29/0665B82Y10/00H01L29/0673H01L33/08
    • A method for manufacturing a quantum-dot element is disclosed. The method includes the following steps. First, a deposition chamber having at least one atomizer and a substrate-supporting base is provided. The atomizer is connected to a gas inlet and a sample inlet. Afterwards, a sample solution is prepared composed of a plurality of functionalized quantum dots dispersed in a solvent. Simultaneously, a substrate is placed on the substrate-supporting base in the deposition chamber. Finally, the sample solution and a gas are transferred into the atomizer through the sample inlet and the gas inlet respectively for generating quantum-dot droplets, which subsequently deposit on the substrate in the deposition chamber. The quantum-dot element manufactured by the present invention has a uniform distribution of quantum dots that have a small size and, therefore, the quality of the quantum-dot element can be substantially improved.
    • 公开了一种制造量子点元件的方法。 该方法包括以下步骤。 首先,提供具有至少一个雾化器和基板支撑基底的沉积室。 雾化器连接到气体入口和样品入口。 然后,制备由分散在溶剂中的多个官能化量子点构成的样品溶液。 同时,将基板放置在沉积室中的基板支撑基底上。 最后,样品溶液和气体分别通过样品入口和气体入口转移到雾化器中,用于产生量子点液滴,其随后沉积在沉积室中的基底上。 由本发明制造的量子点元件具有尺寸小的量子点的均匀分布,因此量子点元件的质量可以显着提高。
    • 28. 发明授权
    • Repairing method for a liquid crystal display panel
    • 液晶显示面板的修理方法
    • US07256862B2
    • 2007-08-14
    • US10711035
    • 2004-08-19
    • Chien-Ming ChenKei-Hsiung Yang
    • Chien-Ming ChenKei-Hsiung Yang
    • G02F1/13G02F1/1339G02F1/1341
    • G02F1/1341G02F1/1309
    • A repairing method of a liquid crystal display panel having a gravity defect includes steps of removing the sealant outside the liquid crystal injection hole and providing a first pressure to the liquid crystal display panel. Next, a second pressure is continuously provided to the liquid crystal display panel, and the sealant in the liquid crystal injection hole is removed. Then, a third pressure is continuously provided to the liquid crystal display panel for pressing the liquid crystal out through the injection hole, and the flowed liquid crystal is cleaned out. After that, the liquid crystal injection hole is sealed with a fresh sealant and a fourth pressure is continuously provided to the liquid crystal display panel. Finally, the fresh sealant is cured and the fourth pressure is removed.
    • 具有重力缺陷的液晶显示面板的修复方法包括在液晶注入孔外部去除密封剂并向液晶显示面板提供第一压力的步骤。 接下来,向液晶显示面板连续地设置第二压力,并且去除液晶注入孔中的密封剂。 然后,向液晶显示面板连续地提供第三压力,用于通过注入孔将液晶挤出,并且流出的液晶被清除。 之后,用新鲜的密封剂密封液晶注入孔,向液晶显示面板连续提供第四压力。 最后,将新鲜的密封剂固化并除去第四压力。
    • 29. 发明授权
    • Method for generating header and transition flags using DPD technology and optical device using the same
    • 使用DPD技术生成报头和转换标志的方法以及使用其的光学设备
    • US06801484B2
    • 2004-10-05
    • US09949748
    • 2001-09-12
    • Ying-Tzung WangChien-Ming Chen
    • Ying-Tzung WangChien-Ming Chen
    • G11B700
    • G11B27/24G11B7/005G11B7/007G11B7/00718G11B2220/216G11B2220/2575
    • A method for generating header and transition flags using the DPD technology and an optical device using the same are disclosed. The method first sets a first and a second threshold levels. Then, the method generates a phase difference signal, i.e. starting a phase detection function to generate a phase difference signal. The method generates a first transition flag signal and a second transition flag signal, wherein the first transition flag signal is enable if the phase difference signal is greater than a first threshold level and the second transition flag signal is enable if the phase difference signal is smaller than the second threshold level. The method then generates a first header flag signal and a second header flag signal according to the transition flag signal. The first header flag signal is enable if the first transition flag signal becomes enable before the second transition flag does, and the second header flag signal is enable if the second transition flag signal becomes enable before the first transition flag does.
    • 公开了一种使用DPD技术产生报头和转换标志的方法以及使用其的光学装置。 该方法首先设置第一和第二阈值水平。 然后,该方法产生相位差信号,即开始相位检测功能以产生相位差信号。 该方法产生第一转变标志信号和第二转变标志信号,其中如果相位差信号大于第一阈值电平,则第一转变标志信号被使能,并且如果相位差信号较小则第二转变标志信号被使能 比第二阈值水平高。 该方法然后根据转换标志信号产生第一标题标志信号和第二标题标志信号。 如果第一转变标志信号在第二转变标志执行之前变为使能,则第一标题标志信号被使能,并且如果第二转变标志信号在第一转换标志有效之前变为使能,则第二报头标志信号被使能。