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    • 2. 发明公开
    • DISPOSITIF DE DÉTECTION CAPACITIVE ET DISPOSITIF DE MESURE L'INCLUANT
    • 电容检测装置和包括该装置的测量装置
    • EP3246667A1
    • 2017-11-22
    • EP17171076.7
    • 2017-05-15
    • Université Grenoble Alpes
    • THIBAULT, Pierre Jean-Yves
    • G01D5/241G01D5/24
    • G01F23/268G01D5/2405G01D5/2412G01R27/2605
    • Dispositif de détection capacitive comprenant :
      un détecteur capacitif (1A) comprenant
      - un ruban en une matière diélectrique (2),
      - un couple (3) d'électrodes formé sur une première face dudit ruban et comprenant une première électrode (4) et une deuxième électrode (5) en forme de peignes dont les branches sont disposées alternativement les unes entre les autres ; et
      - une troisième électrode (7) en forme de couche formée sur l'autre face dudit ruban ;

      et comprenant en outre une électrode de confinement (1B) disposée au moins en partie en regard et à distance dudit couple d'électrodes, cette électrode de confinement étant connectée électriquement à ladite troisième électrode.
      Dispositifs de mesure incluant ce dispositif de détection capacitive.
    • 1。一种电容式感测装置,包括:电容式传感器(1A),包括 - 电介质材料带(2), - 形成在所述带的第一面上并包括第一电极(4)和第二电极 梳状的第二电极(5),其分支彼此交替排列; 和 - 在所述带的另一侧上形成的第三层状电极(7) 并且还包括限制电极(1B),所述限制电极(1B)至少部分地与所述一对电极相对并且远离所述一对电极,所述限制电极电连接到所述第三电极。 测量设备包括这种电容式感应设备。
    • 4. 发明公开
    • ANORDNUNG UND VERFAHREN ZUR KAPAZITIVEN ABTASTUNG DER DREHBEWEGUNG EINES DREHELEMENTS
    • 安排及方法旋转元件的电容触摸传感的轮换
    • EP2691743A1
    • 2014-02-05
    • EP12701240.9
    • 2012-01-13
    • Techem Energy Services GmbH
    • REUS, Jürgen
    • G01D5/241
    • G01R27/2605G01D5/2412G01P3/483
    • The invention relates to an arrangement and a method for capacitive sensing of the rotary movement of a rotary element, wherein the arrangement has four electrodes (1, 2, 3, 4) disposed in a plane, an evaluation unit (18) connected to the electrodes (1, 2, 3, 4) and an electrically conductive coupling surface (5) which is disposed on the rotary element opposite the electrodes (1, 2, 3, 4). The electrodes (1, 2, 3, 4) comprise a central excitation electrode (4) around which the remaining electrodes (1, 2, 3) are disposed. In each rotated position the coupling surface (5) lies opposite the surface of the excitation electrode (4) and covers a part of the surface formed by the other electrodes (1, 2, 3) and sweeps over different areas of the surface formed by the remaining electrodes (1, 2, 3) during rotation of the rotary element. The evaluation unit (18) has an excitation circuit (19) connected to the excitation electrode (4) to generate excitation pulses (13) having a predetermined frequency, and an evaluation circuit (20) connected to the remaining electrodes (1, 2, 3) for detecting the voltage signals applied to the remaining electrodes (1, 2, 3) and for comparing these voltage signals. The remaining electrodes (1, 2, 3) are formed by two sensor electrodes (1, 3) and a common reference electrode (2), wherein at least the common reference electrode (2) is formed differently by the sensor electrodes (1, 3), and the evaluation circuit (20) is designed in such a way that a respective difference (DIFF1, DIFF2) of the voltage signal between one of the two sensor electrodes (1, 3) and the common reference electrode (2) is formed.
    • 8. 发明公开
    • Inertial drive actuator
    • Trägheitsantriebsaktuator
    • EP2117057A3
    • 2011-11-23
    • EP09006185.4
    • 2009-05-06
    • Olympus Corporation
    • Matsuki, Kaoru
    • H01L41/04G01D5/241H01L41/09
    • H02N2/025G01D5/2412Y10T74/18888
    • An inertial drive actuator includes a fixed member (11), a displacement generating mechanism (12) which is connected to the fixed member, and which generates a minute displacement in a first direction and a second direction, a vibration substrate (13) which reciprocates by the minute displacement generated by the displacement generating mechanism, a mobile object (24) which is disposed on the vibration substrate, and which is movable by inertia, a driving mechanism which is connected to the mobile object, and which controls a frictional force between the mobile object and the vibration substrate by making an electromagnetic force to act in the mobile object by applying a current, a detecting electrode (35,36) having a position detection function, which is disposed on a flat surface of the vibration substrate, to be facing the mobile object via an insulating body layer, and which is formed such that, an area face-to-face thereof with the mobile object either increases continuously or decreases continuously with the movement of the mobile object, and a position detecting mechanism which detects a position of the mobile object by detecting an electrostatic capacitance generated between the mobile object and the detecting electrode.