Insulation window having a double layered glass structure
    1.
    发明公开
    Insulation window having a double layered glass structure 审中-公开
    具有双层玻璃结构的绝缘窗

    公开(公告)号:KR20120035256A

    公开(公告)日:2012-04-16

    申请号:KR20100096624

    申请日:2010-10-05

    CPC classification number: E06B3/677 E06B3/54 Y02B10/20 Y02B80/24 Y02B80/50

    Abstract: PURPOSE: An insulation window having a double layered glass structure is provided to efficiently shield inflow of sunlight energy into the indoor and sunlight hotwires by blocking near-infrared rays and far-infrared rays and have excellent insulation effect in the summer and the winter season. CONSTITUTION: An insulation window having a double layered glass structure includes an outer window(110), an inner window(210), a near-infrared ray absorption layer(120), a far-infrared ray reflection layer(220). The inner window is installed to be faced with the outer window. The near-infrared ray absorption layer is coated on the inner surface of the outer window which is faced to the inner window. The near-infrared ray absorption layer absorbs the near-infrared rays which is applied from external light and penetrated through the outer window. The far-infrared ray reflection layer is coated in the inner surface of the inner window which is faced to the near-infrared ray absorption layer. The far-infrared ray reflection layer reflects the far-infrared rays which are penetrated not to be absorbed by the near-infrared ray absorption layer.

    Abstract translation: 目的:提供具有双层玻璃结构的绝缘窗,通过阻挡近红外线和远红外线有效地屏蔽阳光能量进入室内和阳光热线,并在夏季和冬季节能保持良好的隔热效果。 构成:具有双层玻璃结构的绝缘窗包括外窗(110),内窗(210),近红外线吸收层(120),远红外线反射层(220)。 内窗安装为面向外窗。 近红外线吸收层被涂覆在面向内窗的外窗的内表面上。 近红外线吸收层吸收从外部光施加并穿过外窗的近红外线。 远红外线反射层被涂覆在面向近红外线吸收层的内窗的内表面。 远红外线反射层反射穿透不被近红外线吸收层吸收的远红外线。

    Capacitance touch screen operation method
    2.
    发明公开
    Capacitance touch screen operation method 有权
    电容触摸屏操作方法

    公开(公告)号:KR20120037424A

    公开(公告)日:2012-04-19

    申请号:KR20120005908

    申请日:2012-01-18

    Abstract: PURPOSE: A driving method of a capacitive touch screen is provided to reduce recognition error about a touch location by including touch position recognition resource and a force recognition resolution. CONSTITUTION: First electrodes are selected as a vertical scanning group(S902). Second electrodes are selected as a horizontal scanning group(S903). A signal corresponding to conductive capacity value is collected in a touch cell(S904). First and second electrodes are selected. A touch position is recognized by using conductive capacity which is generated from all touch cells(S910).

    Abstract translation: 目的:提供电容式触摸屏的驱动方法,通过包括触摸位置识别资源和力识别分辨率来减少关于触摸位置的识别误差。 构成:选择第一电极作为垂直扫描组(S902)。 选择第二电极作为水平扫描组(S903)。 对应于导电容量值的信号被收集在触摸单元中(S904)。 选择第一和第二电极。 通过使用从所有触摸单元产生的导电容量来识别触摸位置(S910)。

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