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    • 1. 发明授权
    • Method for manufacturing array substrate of translucent LCD
    • 制造半透明液晶显示阵列基板的方法
    • US07480015B2
    • 2009-01-20
    • US11595455
    • 2006-11-09
    • Byung Hoon KimSam Ho Ihm
    • Byung Hoon KimSam Ho Ihm
    • G02F1/136
    • G02F1/133555G02F1/134309G02F2001/136231
    • Disclosed is a method for manufacturing an array substrate of a translucent LCD capable of simultaneously forming source and drain metal layers as reflective electrodes while improving both the contact resistance in a transmissive region and the reflectivity properties in a reflective region. The source and drain metal layers have a triple-layered structure of Mo—Al—Mo and, the top Mo is selectively removed from the reflective region. As a result, the screen quality of products improves. In addition, about 5-6 masks are enough to manufacture an array substrate using half-tone exposure technology, in contrast to the prior art which uses 8-11 masks. As the number of masks and processes is reduced in this manner, the manufacturing cost decreases accordingly and the process is simplified.
    • 公开了一种半导体LCD的阵列基板的制造方法,其能够同时形成源极和漏极金属层作为反射电极,同时提高透射区域中的接触电阻和反射区域中的反射率特性。 源极和漏极金属层具有Mo-Al-Mo的三层结构,并且从反射区域选择性地去除顶部Mo。 结果,产品的屏幕质量提高。 此外,与使用8-11掩模的现有技术相比,约5-6个掩模足以制造使用半色调曝光技术的阵列基板。 由于以这种方式减少了掩模和处理的数量,因此制造成本相应降低,并且简化了处理。
    • 4. 发明授权
    • Digital/analog converter
    • 数字/模拟转换器
    • US07330143B2
    • 2008-02-12
    • US11428363
    • 2006-06-30
    • Byung Hoon KimWon Tae ChoiYoun Joong LeeChan Woo Park
    • Byung Hoon KimWon Tae ChoiYoun Joong LeeChan Woo Park
    • H03M1/78
    • H03M1/682
    • The present invention relates to a digital/analog converter. The digital/analog converter includes a divided-voltage generating section that divides a reference supply voltage through the voltage distribution; a decoder section that receives a digital signal so as to output a decoded selection signal; a first divided-voltage selecting section that selects and outputs a plurality of divided voltages among the divided-voltages generated from the divided-voltage generating section on the basis of the selection signal output from the decoder section; a second divided-voltage selecting section that selects and outputs a plurality of divided-voltages among the divided-voltages output from the first divided-voltage selecting section on the basis of the selection signal output from the decoder section; a divided-voltage storing section that charges and discharges the plurality of divided-voltages output from the second divided-voltage selecting section; a third divided-voltage selecting section that selects a predetermined voltage among the divided-voltages discharged from the divided-voltages storing section on the basis of the selection signal output from the decoder; and a voltage output section that outputs the predetermined voltage selected from the third divided-voltage selecting section.
    • 本发明涉及数字/模拟转换器。 该数/模转换器包括分压电压产生部分,该分压产生部分通过电压分配来划分参考电源电压; 解码器部分,其接收数字信号以输出解码的选择信号; 第一分压电压选择部分,根据从解码器部分输出的选择信号,在从分压产生部分产生的分压中选择和输出多个分压; 第二分压选择部,根据从解码部输出的选择信号,选择并输出从第一分压电压选择部输出的分压电压中的多个分压; 分压电压存储部,对从第二分压选择部输出的多个分压进行充放电; 第三分压电压选择部,其根据从解码器输出的选择信号,选择从分压存储部放电的分压中的规定电压; 以及电压输出部,输出从第三分压选择部选择的预定电压。
    • 7. 发明申请
    • APPARATUS AND METHOD FOR CONTROLLING AUTO EXPOSURE
    • 用于控制自动曝光的装置和方法
    • US20100097492A1
    • 2010-04-22
    • US12467504
    • 2009-05-18
    • Joo Young HaBong Soon KangKyung Rin KimWon Tae ChoiByung Hoon Kim
    • Joo Young HaBong Soon KangKyung Rin KimWon Tae ChoiByung Hoon Kim
    • H04N5/235
    • H04N5/2353
    • There is provided an apparatus and method for controlling auto exposure (AE) that is used in digital imaging devices. The apparatus which controls the luminance of an image being outputted from an image sensor by controlling exposure time and analog gain of the image sensor includes: a luminance operation unit operating and outputting a mean luminance of the image outputted from the image sensor; a shutter index determination unit comparing a predetermined target luminance with the mean luminance of the outputted image and determining a shutter index in different manners according to the magnitude of the difference between the target luminance and the mean luminance of the outputted image; and an exposure time/analog gain determination unit generating exposure time and analog gain corresponding to the shutter index determined in the shutter index determination unit and applying the generated exposure time and analog gain to the image sensor. Therefore, the apparatus may be useful to stably reproduce an image with an adequate luminance even when there is a rapid change in brightness of a subject for photography.
    • 提供了一种用于控制在数字成像装置中使用的自动曝光(AE)的装置和方法。 通过控制图像传感器的曝光时间和模拟增益来控制从图像传感器输出的图像的亮度的装置,包括:亮度操作单元,操作并输出从图像传感器输出的图像的平均亮度; 快门指标确定单元,将预定目标亮度与输出图像的平均亮度进行比较,并根据目标亮度和输出图像的平均亮度之间的差值的大小以不同的方式确定快门指数; 以及曝光时间/模拟增益确定单元,其生成与在快门指定确定单元中确定的快门指标相对应的曝光时间和模拟增益,并将所生成的曝光时间和模拟增益应用于图像传感器。 因此,即使在摄影对象的亮度急剧变化的情况下,该装置也可以用于以足够的亮度稳定再现图像。
    • 9. 发明申请
    • Method of Fabricating Liquid Crystal Display Device
    • 制造液晶显示装置的方法
    • US20080254559A1
    • 2008-10-16
    • US12099630
    • 2008-04-08
    • Suk ChoiSoon Ju JangByung Hoon Kim
    • Suk ChoiSoon Ju JangByung Hoon Kim
    • H01L21/64
    • G02F1/133502G02F1/133512
    • Provided is a method of fabricating a liquid crystal display device. The method includes fabricating a liquid crystal panel divided into transmission and non-transmission regions, and including an upper substrate and a lower substrate, which are spaced apart from and opposite to each other, and a liquid crystal layer filled between the substrates, wherein the lower substrate has a plurality of thin film transistors; depositing a transparent conductive layer having a certain thickness on the upper substrate exposed to the exterior of the liquid crystal panel; and performing an etching process for removing the entire transparent conductive layer and a portion of the upper substrate to form irregular prominences and depressions on a surface of the upper substrate exposed to the exterior. Therefore, it is possible to improve readability and contrast ratio by diffusely reflecting external light and scattering internal light.
    • 提供一种制造液晶显示装置的方法。 该方法包括制造分为透射区域和非透射区域的液晶面板,并且包括彼此间隔开和相对的上基板和下基板以及填充在基板之间的液晶层,其中 下基板具有多个薄膜晶体管; 在暴露于液晶面板的外部的上基板上沉积具有一定厚度的透明导电层; 以及进行用于去除整个透明导电层和上部基板的一部分的蚀刻工艺,以在暴露于外部的上基板的表面上形成不规则的凸起和凹陷。 因此,可以通过漫反射外部光和散射内部光来提高可读性和对比度。
    • 10. 发明授权
    • Three-dimensional nanodevices including nanostructures
    • 包括纳米结构在内的三维纳米器件
    • US08263964B2
    • 2012-09-11
    • US12672995
    • 2008-05-19
    • Han Young YuByung Hoon KimAn Soon KimIn Bok BaekChil Seong AhJong Heon YangChan Woo ParkChang Geun Ahn
    • Han Young YuByung Hoon KimAn Soon KimIn Bok BaekChil Seong AhJong Heon YangChan Woo ParkChang Geun Ahn
    • H01L29/06
    • H01J49/4205B81B7/0025B81B2201/0214B81B2201/0271B82Y10/00B82Y40/00G01N2291/0257H01J49/0018H01L29/0673H01L29/7613H01L29/775H03H2009/02314
    • Provided are three-dimensional (3D) nanodevices including 3D nanostructures. The 3D nanodevice includes at least one nanostructure, each nanostructure including an oscillation portion floating over a substrate and support portions for supporting both lengthwise end portions of the oscillation portion, supports disposed on the substrate to support the support portions of each of the nanostructures, at least one controller disposed at an upper portion of the substrate, a lower portion of the substrate, or both the upper and lower portions of the substrate to control each of the nanostructures, and a sensing unit disposed on each of the oscillation portions to sense an externally supplied adsorption material. Thus, unlike in a typical planar device, generation of impurities between a nanodevice and a substrate can be reduced, and mechanical vibration can be caused. In particular, since 3D nanostructures have mechanical and electrical characteristics, 3D nanodevices including new 3D nanostructures can be provided using nano-electro-mechanical systems (NEMS). Also, a single electron device, a spin device, or a single electron transistor (SET)-field effect transistor (FET) hybrid device can be formed using a simple process unlike in planar devices.
    • 提供了三维(3D)纳米器件,包括3D纳米结构。 3D纳米装置包括至少一个纳米结构,每个纳米结构包括漂浮在基板上的振荡部分和支撑部分,用于支撑振荡部分的两个纵向端部,支撑件设置在基板上以支撑每个纳米结构的支撑部分, 设置在基板的上部,基板的下部或基板的上部和下部的至少一个控制器,以控制每个纳米结构;以及感测单元,设置在每个振荡部分上以感测 外部供应的吸附材料。 因此,与典型的平面器件不同,可以减少纳米器件与衬底之间的杂质的产生,并且可能引起机械振动。 特别地,由于3D纳米结构具有机械和电学特性,可以使用纳米机电系统(NEMS)提供包括新的3D纳米结构的3D纳米器件。 此外,可以使用与平面器件不同的简单工艺来形成单电子器件,自旋器件或单电子晶体管(SET)场效应晶体管(FET)混合器件。