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    • 33. 发明申请
    • METHOD FOR RECOGNIZING MULTI-TOUCH OF RESISTIVE TOUCH SCREEN
    • 用于识别电阻触摸屏的多触点的方法
    • US20110254803A1
    • 2011-10-20
    • US12818013
    • 2010-06-17
    • Kyoung Soo CHAEHee Bum LeeYun Ki HongYong Soo OhJong Young Lee
    • Kyoung Soo CHAEHee Bum LeeYun Ki HongYong Soo OhJong Young Lee
    • G06F3/045
    • G06F3/045G06F2203/04104
    • Disclosed herein is a method for recognizing a resistive touch screen. The method for recognizing the resistive touch screen includes: sensing touch generated at the resistive touch screen; calculating a difference value, a searching value by detecting voltage at two electrode wirings connected with a transparent resistive layer of the resistive touch screen; and comparing the searching value with a reference value that is a difference value between voltages detected at the two electrode wirings when the resistive touch screen is single-touched, whereby the single touch and the multi-touch can be differentiated.Further, the embodiment sets the error range in the single touch and the error range in the multi-touch and compares these error ranges, thereby making it possible to more accurately differentiate the multi-touch and the single touch and provides various input information, thereby making it possible to provide various user interfaces.
    • 本文公开了一种用于识别电阻式触摸屏的方法。 用于识别电阻式触摸屏的方法包括:感测在电阻式触摸屏上产生的触摸; 通过检测与电阻式触摸屏的透明电阻层连接的两个电极布线处的电压来计算差值; 以及当所述电阻式触摸屏被单触摸时,将所述搜索值与作为在所述两个电极布线处检测到的电压之间的差值的参考值进行比较,从而可以区分所述单触摸和所述多点触摸。 此外,本实施例在单触摸中设置误差范围和多点触摸中的误差范围,并比较这些误差范围,从而可以更准确地区分多点触摸和单触摸并提供各种输入信息,由此 使得可以提供各种用户界面。
    • 34. 发明申请
    • Touch Screen
    • 触摸屏
    • US20110199317A1
    • 2011-08-18
    • US12780737
    • 2010-05-14
    • Sang Hwa KIMYong Soo OhJong Young LeeHo Joon Park
    • Sang Hwa KIMYong Soo OhJong Young LeeHo Joon Park
    • G06F3/041
    • G06F3/0412G02F1/13338G02F2001/133311G02F2202/022G06F3/041
    • Disclosed herein is a touch screen, including: a liquid crystal layer including a localized polymer layer formed on a surface thereof; and transparent electrodes disposed on both sides of the liquid crystal layer. The touch screen can be used as an integral touch screen without optical and physical losses because a localized polymer layer is formed on the surface of a liquid crystal layer, can improve durability and obtain high-speed response characteristics in liquid crystal behavior because a uniform polymer layer formed in a liquid crystal layer, and can improve durability without increasing thickness or additionally forming a protective film and does not deteriorate intrinsic display properties such as light and darkness ratio (LD ratio), response characteristics and the like, because a localized polymer layer is formed on the surface of a liquid crystal layer.
    • 本发明公开了一种触摸屏,包括:在其表面上形成有局部聚合物层的液晶层; 以及设置在液晶层两侧的透明电极。 由于在液晶层的表面上形成了局部聚合物层,所以可以将触摸屏用作整体的触摸屏而没有光学和物理损失,因为均匀的聚合物可以提高耐久性并获得液晶行为的高速响应特性 层,形成在液晶层中,并且可以提高耐久性而不增加厚度或另外形成保护膜,并且不会劣化诸如亮度和黑暗率(LD比),响应特性等的本征显示性能,因为局部聚合物层 形成在液晶层的表面上。
    • 35. 发明授权
    • Shutter device
    • 快门装置
    • US07857529B2
    • 2010-12-28
    • US12207806
    • 2008-09-10
    • Soo Cheol LimYoung Ho ChoDae Geon SeoJae Ho MoonYoung Bok YoonChuel Jin ParkJi Hwan ShinYong Soo Oh
    • Soo Cheol LimYoung Ho ChoDae Geon SeoJae Ho MoonYoung Bok YoonChuel Jin ParkJi Hwan ShinYong Soo Oh
    • G03B9/08
    • G03B9/10
    • Provided is a shutter device including a coil layer that includes one or more substrates having a through-hole formed in the center thereof and a coil installed thereon, the coil generating a magnetic field when a current is applied; and a shutter layer that is installed on one surface of the coil layer and includes a shutter case having a shape corresponding to the substrate and a pair of shutter blades which are connected to flexible suspensions formed in the shutter case, respectively. The shutter blades open and close the through-hole of the substrate, while being moved in the reverse direction to each other by an electromagnetic force caused by an interaction with the magnetic field generated by the coil and returning to the original position due to the recovery force of the flexible suspensions when the electromagnetic force is canceled.
    • 本发明提供一种快门装置,其包括线圈层,该线圈层包括一个或多个具有形成在其中心的通孔的基板和安装在其上的线圈,所述线圈在施加电流时产生磁场; 以及安装在所述线圈层的一个表面上并且包括具有与所述基板对应的形状的快门外壳和分别连接到形成在所述快门外壳中的柔性悬置的一对快门叶片的快门层。 快门叶片通过由与线圈产生的磁场的相互作用产生的电磁力并由于恢复而返回到原始位置而使基板的通孔打开和关闭,同时以相反的方向彼此移动 当电磁力消除时,柔性悬架的力。
    • 36. 发明申请
    • SHUTTER DEVICE
    • 快门装置
    • US20090263119A1
    • 2009-10-22
    • US12207806
    • 2008-09-10
    • Soo Cheol LimYoung Ho ChoDae Geon SeoJae Ho MoonYoung Bok YoonChuel Jin ParkJi Hwan ShinYong Soo Oh
    • Soo Cheol LimYoung Ho ChoDae Geon SeoJae Ho MoonYoung Bok YoonChuel Jin ParkJi Hwan ShinYong Soo Oh
    • G03B9/10
    • G03B9/10
    • Provided is a shutter device including a coil layer that includes one or more substrates having a through-hole formed in the center thereof and a coil installed thereon, the coil generating a magnetic field when a current is applied; and a shutter layer that is installed on one surface of the coil layer and includes a shutter case having a shape corresponding to the substrate and a pair of shutter blades which are connected to flexible suspensions formed in the shutter case, respectively. The shutter blades open and close the through-hole of the substrate, while being moved in the reverse direction to each other by an electromagnetic force caused by an interaction with the magnetic field generated by the coil and returning to the original position due to the recovery force of the flexible suspensions when the electromagnetic force is canceled.
    • 本发明提供一种快门装置,其包括线圈层,该线圈层包括一个或多个具有形成在其中心的通孔的基板和安装在其上的线圈,所述线圈在施加电流时产生磁场; 以及安装在所述线圈层的一个表面上并且包括具有与所述基板对应的形状的快门外壳和分别连接到形成在所述快门外壳中的柔性悬置的一对快门叶片的快门层。 快门叶片通过由与线圈产生的磁场的相互作用产生的电磁力并由于恢复而返回到原始位置而使基板的通孔打开和关闭,同时以相反的方向彼此移动 当电磁力消除时,柔性悬架的力。
    • 37. 发明授权
    • Touch panel
    • 触控面板
    • US08698763B2
    • 2014-04-15
    • US12823751
    • 2010-06-25
    • Woon Chun KimYong Soo OhJong Young Lee
    • Woon Chun KimYong Soo OhJong Young Lee
    • G06F3/041
    • G06F3/044H03K17/9622H03K2017/9602
    • Disclosed herein is a touch panel 100 including: bar type transparent electrodes 120 that are formed on a transparent substrate 110, bar type opening parts 130 that are formed in the bar type transparent electrodes 120 so as to be surrounded by the bar type transparent electrodes 120, and wirings 140 of which one ends are connected to the bar type transparent electrodes 120 and the other ends are collected at one side of the transparent substrate 110. The touch panel 100 includes the bar type transparent electrodes 120 in which the bar type opening parts 130 are formed and subdivides the transparent electrodes, thereby making it possible to improve touch sensitivity without increasing the wirings 140 and improve transparency.
    • 这里公开了一种触摸面板100,其包括:形成在透明基板110上的棒状透明电极120,形成在棒状透明电极120中的棒状开口部130,以便被棒状透明电极120包围 并且其一端的布线140连接到条形透明电极120,另一端收集在透明基板110的一侧。触摸面板100包括条形透明电极120,其中条形开口部分 130形成并细分透明电极,从而使得可以在不增加布线140并提高透明度的情况下提高触摸灵敏度。
    • 39. 发明授权
    • Resistive touch screen
    • 电阻式触摸屏
    • US08446388B2
    • 2013-05-21
    • US12979629
    • 2010-12-28
    • Woon Chun KimYong Soo OhHyun Jun KimJong Young Lee
    • Woon Chun KimYong Soo OhHyun Jun KimJong Young Lee
    • G06F3/045
    • G06F3/045G06F3/0412
    • Disclosed herein is a resistive touch screen. The resistive touch screen includes a resistive touch panel configured to include a lower substrate formed with a lower electrode pattern in an active region through which images pass, an upper substrate formed with an upper electrode pattern to be opposite to the lower electrode pattern, and a spacer spacing the upper substrate from the lower substrate in order to contact the upper electrode pattern to the lower electrode pattern by external pressure; and a window bonded to the upper portion of the resistive touch panel by an optical clear adhesive, and including a covering film formed in the outer side region on the lower surface thereof and an elastic suppressing layer formed in the inner side region of the covering film.
    • 这里公开了电阻式触摸屏。 电阻式触摸屏包括电阻式触摸屏,其被配置为包括在图像通过的有源区域中形成有下电极图案的下基板,形成有与下电极图案相对的上电极图案的上基板,以及 间隔物将上基板与下基板间隔开以便通过外部压力接触上电极图案到下电极图案; 以及通过光学透明粘合剂粘合到电阻式触摸屏的上部的窗口,并且包括形成在其下表面的外侧区域中的覆盖膜和形成在覆盖膜的内侧区域中的弹性抑制层 。