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    • 4. 发明公开
    • Capacitive sensor element, use of such capacitive sensor element and electrical appliance comprising such capacitive sensor element
    • 电容式传感器元件,使用这样的电容式传感器元件,以及电气设备具有这样的电容式传感器元件
    • EP2730892A1
    • 2014-05-14
    • EP12192122.5
    • 2012-11-09
    • Clicktouch
    • Demets, Luc
    • G01D5/241G01D3/08H03K17/975G01L1/14
    • G01D5/2417G01D3/08G01L1/146H03K17/9622H03K17/975H03K17/98H03K2217/96066
    • Capacitive sensor element (1) for electrical appliances, the capacitive sensor element (1) comprising a capacitor (2) with a first electrically conductive sensor surface (3), at least one second electrically conductive sensor surface (4) adjacent to and opposing the first sensor surface (3) and a dielectric layer (5) in between the first and the second conductive surface (3, 4) and capacitance measuring means (6) for measuring the capacitance of the capacitor (2), the first sensor surface (3) being provided to be pressed such that by pressure the first sensor surface (3) approaches at least partly the second sensor surface (4) resulting in a change in capacitance measured by the capacitance measuring means (6), characterized in that the first electrically conductive sensor surface (3) comprises an electrical insulation layer (7) on a side of the first electrically conductive sensor surface (3) facing away from the second electrically conductive sensor surface (4).
    • 电容式传感器元件(1),用于电器,所述电容式传感器元件(1)包括一个电容器(2)具有第一导电传感器表面(3)的至少一个第二导电传感器表面(4)相邻并相对的 第一传感器表面(3)以及第一和第二导电表面之间的电介质层(5)(在(3,4)和电容测量装置(6),用于测量所述电容器(2),所述第一传感器表面的电容 3)被提供给被按压检索按压力做的第一传感器表面(3)至少部分地接近第二传感器表面(4)在由电容测量装置(6),在DASS特点测量的电容的变化引起的第一管芯 导电传感器表面(3)包括电绝缘层(7)上的第一导电传感器表面的一个侧(3)的背离第二导电传感器表面离开(4)。
    • 8. 发明公开
    • ELECTRICAL CAPACITANCE SENSOR
    • 电容传感器
    • EP1378737A1
    • 2004-01-07
    • EP01934326.8
    • 2001-05-23
    • Nitta Corporation
    • MORIMOTO, Hideo, c/o Nara Factory of Nitta Corp.
    • G01L1/14G01L5/22G06F3/033
    • G06F3/044G01L5/165G06F3/0338H01H25/008H01H25/041H03K17/98
    • A capacitance element electrode (E 1) and a reference electrode (E31) are formed on a substrate (20) so as to be opposite to a displacement electrode (40). A dome-shaped movable switch electrode (E21) is disposed so as to be in contact with the reference electrode (E31) and at a distance from a fixed switch electrode (E 11) formed inside the reference electrode (E31), and to cover the fixed switch electrode (E11). When an operation is applied to a detective member (30) and a portion of the movable switch electrode (E21) in the vicinity of its top is displaced to be brought into contact with fixed switch electrode (E11), a switch is turned ON. On the other hand, from a change in capacitance value of a capacitance element (C1) formed between the displacement electrode (40) and the capacitance element electrode (E1), the intensity of the force to the detective member (30) can be recognized.
    • 电容元件电极(E1)和参考电极(E31)形成在衬底(20)上以与位移电极(40)相对。 圆顶状的可动开关电极(E21)以与参考电极(E31)接触的方式配置,并与形成于参照电极(E31)的内部的固定开关电极(E11)隔开距离配置, 固定开关电极(E11)。 当对检测部件(30)进行操作时,其上端附近的可动开关电极(E21)的一部分发生位移而与固定开关电极(E11)接触时,开关导通。 另一方面,由位移电极(40)和电容元件电极(E1)之间形成的电容元件(C1)的电容值的变化,可以识别到检测部件(30)的力的强度 。