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    • 1. 发明公开
    • 촉각센서와 발광 소자를 융합한 스마트 스위치 및 그 제어방법
    • 智能开关集成触觉传感器和发光元件及其控制方法
    • KR1020160110653A
    • 2016-09-22
    • KR1020150033225
    • 2015-03-10
    • 한국표준과학연구원
    • 김종호양태헌김민석박연규최재혁송한욱우삼용이창훈
    • H03K17/96
    • H03K17/9625H03K17/9627H03K17/9645
    • 본발명은터치의위치와세기에따라발광소자의출력을제어함으로써다양한감성을제공할수 있는스마트스위치및 그제어방법에관한것이다. 본발명의일례와관련된촉각센서와발광소자를융합한스마트스위치는, 스위치에소정의터치가인가되는경우, 상기터치의위치및 상기터치의세기에대응되는전기신호가형성되는촉각센서; 빛을조사하는발광소자(Luminous Element); 및상기촉각센서에형성된전기신호를이용하여상기터치의위치및 상기터치의세기를측정하고, 상기측정결과에따라상기발광소자에서조사되는빛의출력을제어하는제어부;를포함하되, 상기촉각센서는, 상기터치에따라저항값변화가유도되는복수의감지저항체; 및각각이상기복수의감지저항체사이에배치되는복수의중간저항체;를더 포함할수 있다.
    • 智能开关及其控制方法技术领域本发明涉及智能开关及其控制方法,其能够通过根据触摸的位置和强度控制发光元件的输出而提供多种灵敏度。 根据本发明的实施例,与触觉传感器和发光元件集成的智能开关包括:形成与触摸位置相对应的电信号的触觉传感器和当对 开关; 发光的发光元件; 以及控制部分,用于使用形成在触觉传感器中的电信号来测量触摸位置和触摸强度,并且根据测量结果控制从发光元件辐射的光的输出。 触觉传感器可以另外包括:多个感测电阻,其根据触摸导出电阻值的变化; 以及分别设置在多个感测电阻之间的多个中间电阻器。
    • 7. 发明公开
    • 터치패널
    • 触控面板
    • KR1020110019329A
    • 2011-02-25
    • KR1020100071386
    • 2010-07-23
    • 이노럭스 코포레이션
    • 황,풔싼쪼우,쯔한스,붜썽쩡,지아슝
    • G06F3/041G06F3/045
    • H03K17/9645B82Y15/00G06F3/045H03K2217/96015Y10S977/956G06F2203/04103H01B5/14
    • PURPOSE: A touch panel is provided to improve the productivity and reliability of the touch panel, by avoiding a substrate breakage due to an etching. CONSTITUTION: A first insulation board(110) is an ornamental panel for a character or a pattern. A second insulation board(150) is connected to an external circuit and facing the first insulation board. A first conductive film(120) installed on the first insulation board touches the first insulation board. A second conductive film(160) installed on the second insulation board touches the second insulation board. A first insulation layer(130) covering some part of the first conductive film forms a first capture area on the first insulation layer. The first conductive circuit comprises a first extension port which is isolated from the first conductive film.
    • 目的:通过避免由于蚀刻引起的基板破裂,提供触摸面板以提高触摸面板的生产率和可靠性。 构成:第一绝缘板(110)是用于字符或图案的装饰板。 第二绝缘板(150)连接到外部电路并面向第一绝缘板。 安装在第一绝缘板上的第一导电膜(120)接触第一绝缘板。 安装在第二绝缘板上的第二导电膜(160)接触第二绝缘板。 覆盖第一导电膜的一部分的第一绝缘层(130)在第一绝缘层上形成第一捕获区域。 第一导电电路包括与第一导电膜隔离的第一延伸端口。
    • 8. 发明公开
    • 전기 장치용, 특히 차량 부품용 작동 유닛
    • 电动装置的驱动装置,尤其是车辆部件的驱动装置
    • KR1020170033404A
    • 2017-03-24
    • KR1020177004751
    • 2015-07-08
    • 베르-헬라 테르모콘트롤 게엠베하
    • 베슈니트,알렉산더푸스트,윈프라이드스타인캠프,미카엘보그트,프랭크피셔,크리스토프뵘,닐스
    • H01H23/30B60K37/06H03K17/96H03K17/969H03K17/98H03K17/97
    • H03K17/9625B60H1/0065B60K35/00B60K37/06B60K2350/1036H01H15/14H01H23/30H03K17/962H03K17/9627H03K17/9645H03K17/969H03K17/98H03K2017/9706
    • 본발명은전기장치용, 특히, 예를들어난방, 환기및/또는공조장치와같은차량부품용작동유닛(10)에관한것으로서, 이는전방벽(14)을구비하는하우징(12)과, 전방벽(14)를넘어돌출되고복수의인접하게배치된작동영역(22, 24, 26, 28, 30)을갖는연장된작동면(20)을구비하는작동스트립(18)과, 하우징(12) 내에배치되는, 작동스트립(18)을위한지지요소(32)를구비한다. 작동스트립(18)은작동스트립(18)의작동패널(22, 24, 26, 28, 30) 사이의각 영역에서돌출되는연결웹(48)에의해지지요소(32)에연결된다. 각작동영역을위한작동스트립(18)으로부터돌출되고지지요소(32)에연결되는, 플렉시블웹(50)은, 즉, 탄성적인방식으로그리고연결웹(48)을통한작동스트립(18)의지지요소(32)로의연결보다더 플렉시블하게연결웹(48) 사이에배치된다. 적어도하나의작동영역동작센서(70, 72)가작동스트립(18)의작동영역(22, 24, 26, 28, 30)에수동작동력이인가될때 작동스트립(18)의국부적인굽힘을검출하기위해각 플렉시블웹(50)을위한지지요소(32)에배치된다. 또한, 작동유닛(10)은작동영역동작센서(70, 72)의신호를수신하고, 상기신호를근거로작동스트립(18)의수동작동상에서한 손의손가락이적용되는작동영역(22, 24, 26, 28, 30)을결정하며, 결정된작동영역(22, 24, 26, 28, 30)에대응하는각 작동영역(22, 24, 26, 28, 30)과관련된장치기능을동작시키기위한평가및 제어유닛(78)을포함한다.
    • 用于电气设备的操作单元技术领域本发明涉及一种用于电气设备特别是车辆部件例如供热,通风和/或空调系统的操作单元(10),其包括具有前壁(14)的壳体(12) 伸出障碍物14并具有延伸的工作表面20的操作带18,该工作表面20具有多个相邻布置的操作区域22,24,26,28和30; 并且用于操作带18的支撑元件32, 致动条18连接到连接接片48上的保持元件32,所述连接接片48在致动条18的致动面板22,24,26,28,30之间的每个区域中突出。 对于每个操作区域从操作带18突出并连接到支撑元件32的柔性腹板50以弹性方式连接到操作带18, 在与连接元件32的连接处比在连接连接板48之间更柔性地定位。 当操作动力被施加到工作带18的操作区域22,24,26,28,30时,至少一个操作区域运动传感器70检测操作带18的局部弯曲 对于每个柔性织物(50)。 操作单元10还接收来自操作区域运动传感器70和72的信号,并且生成操作区域22,24和24,在该区域上单手的手指施加在操作带18的操作行程的数量上, 并且用于评估与对应于所确定的操作区域(22,24,26,28,30)的每个操作区域(22,24,26,28,30)相关联的装置功能, 和控制单元78。
    • 10. 发明公开
    • 터치센서의 정전용량 측정회로 및 이를 갖는 정전용량식 터치패널
    • 触摸传感器和电容式触控面板的电容测量电路
    • KR1020130101859A
    • 2013-09-16
    • KR1020120022923
    • 2012-03-06
    • 주식회사 리딩유아이
    • 한상현
    • G01R27/26G06F3/044
    • G01R27/2605G01R15/00G06F3/0416G06F3/044H01L29/78H03K17/9622H03K17/9645H03K2217/960715
    • PURPOSE: A capacitance measurement circuit of a touch sensor and a capacitive touch panel having the same are provided to reduce an error rate by changing the route of a sensing signal via the touch sensor. CONSTITUTION: A capacitance measurement circuit (400) of a touch sensor (470) comprises a voltage comparison unit (420), a control unit (430), a timer unit (440), a charging/discharging circuit (450), and a composite switch (460). The voltage comparison unit compares a sensing voltage by the touch sensor with a first reference voltage and compares the sensing voltage with a second reference voltage in response to a first control signal provided from the outside to output first and second comparison signals. The control unit outputs a charging/discharging control signal based on the first and second comparison signals in response to a second control signal provided from the outside. The composite switch is connected to both ends of the touch sensor and sets up a route for transmission of the sensing signal to the touch sensor and a route for reception of the sensing signal in response to a third control signal provided from the outside. The charging/discharging circuit charges the touch sensor selected by the composite switch from the first reference voltage to the second reference voltage or discharges the selected touch sensor from the second reference voltage to the first reference voltage in response to the charging/discharging control signal. The timer unit measures the charging/discharging time of the charging/discharging circuit and the entire charging/discharging time and outputs an output signal depending on the measurement. [Reference numerals] (430) Control unit; (440) High-speed PLL/timer unit; (460) Composite switch; (AA) Touch sensor; (BB) Measurement result
    • 目的:提供触摸传感器的电容测量电路和具有该电容测量电路的电容式触控面板,通过改变经由触摸传感器的感测信号的路径来降低错误率。 构成:触摸传感器(470)的电容测量电路(400)包括电压比较单元(420),控制单元(430),定时单元(440),充电/放电电路(450)和 复合开关(460)。 电压比较单元将触摸传感器的感测电压与第一参考电压进行比较,并响应于从外部提供的第一控制信号将感测电压与第二参考电压进行比较,以输出第一和第二比较信号。 控制单元响应于从外部提供的第二控制信号,输出基于第一和第二比较信号的充电/放电控制信号。 复合开关连接到触摸传感器的两端,并且设置用于将感测信号传输到触摸传感器的路线和响应于从外部提供的第三控制信号接收感测信号的路线。 充电/放电电路将由复合开关选择的触摸传感器从第一参考电压充电到第二参考电压,或者响应于充电/放电控制信号将所选择的触摸传感器从第二参考电压放电到第一参考电压。 定时器单元测量充电/放电电路的充电/放电时间和整个充电/放电时间,并根据测量输出输出信号。 (附图标记)(430)控制单元; (440)高速PLL /定时器单元; (460)复合开关; (AA)触摸传感器; (BB)测量结果