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    • 12. 发明公开
    • 멀티존 용량식 힘 측정장치 및 방법
    • 多区域电力感应装置及方法
    • KR1020090019779A
    • 2009-02-25
    • KR1020087026960
    • 2007-03-23
    • 로드스타 센서스 인코포레이티드
    • 하리쉬,다비아시마달린백,윌리암웡,킹슐츠,존
    • G01L5/10G01B7/00G01L5/00G01B7/16
    • G01G7/06G01G23/3728G01G23/3735G01L1/146G01L5/0076
    • A multi-zone capacitive force sensing apparatus/method is disclosed. In one embodiment, an apparatus includes one or more capacitors each having an upper conductive surface and a lower conductive surface substantially parallel to the upper conductive surface, a housing with a top plate and a bottom plate to encompass the capacitors, and a sensor in the housing to generate a measurement based on a change in a distance between the upper conductive surface and the lower conductive surface of each of the capacitors when a contact zone of the top plate associated with the each of the plurality of capacitors is deflected by a force applied on the contact zone. The apparatus may also include a comparison module associated with the sensor to generate a signal indicating unevenness of a force applied on the top plate when there is any significant difference between measurements of the capacitors.
    • 公开了一种多区域电容力感测装置/方法。 在一个实施例中,一种装置包括一个或多个电容器,每个电容器具有基本上平行于上导电表面的上导电表面和下导电表面,具有顶板和底板的壳体,以包围电容器,以及传感器 壳体,用于当与多个电容器中的每一个相关联的顶板的接触区域通过施加的力而偏转时,基于每个电容器的上导电表面和下导电表面之间的距离的变化产生测量值 在接触区。 该装置还可以包括与传感器相关联的比较模块,以产生指示当电容器的测量之间存在任何显着差异时施加在顶板上的力的不均匀性的信号。
    • 13. 发明公开
    • 캐패시티브 기술을 통한 갭-변화 감지
    • 通过电容技术进行GAP变化传感
    • KR1020070068438A
    • 2007-06-29
    • KR1020077009759
    • 2005-09-28
    • 로드스타 센서스 인코포레이티드
    • 달렌바크윌리암디.하리쉬디브야심하
    • H01L23/34
    • G01B7/22G01G7/06G01G23/3735G01L1/142
    • A gap-change sensing through capacitive techniques is disclosed. In one embodiment, an apparatus includes a first conductive surface and a second conductive surface substantially parallel to the first conductive surface, and a sensor to generate a measurement based on a change in a distance between the first conductive surface and the second conductive surface. The change in the distance may be caused by a deflection of the first conductive surface with respect to the second conductive surface, and the deflection may be a compressive force and/or an expansive force. The sensor may apply an algorithm that converts a change in capacitance to at least one of a change in voltage and/or a change in frequency to generate the measurement. The change in the distance may be caused by a load applied to the surface above the first conductive surface with respect to the second conductive surface.
    • 公开了通过电容技术的间隙变化感测。 在一个实施例中,装置包括基本上平行于第一导电表面的第一导电表面和第二导电表面,以及用于基于第一导电表面和第二导电表面之间的距离的变化产生测量的传感器。 距离的变化可能由第一导电表面相对于第二导电表面的偏转引起,并且偏转可以是压缩力和/或膨胀力。 传感器可以应用将电容变化转换为电压变化和/或频率变化中的至少一个的算法,以产生测量。 距离的变化可能由相对于第二导电表面施加到第一导电表面上方的表面的负载引起。
    • 14. 发明授权
    • 용량성 계량장치
    • 容量称重系统
    • KR1019900001772B1
    • 1990-03-24
    • KR1019860000322
    • 1986-01-20
    • 아메크스어드밴스드마이크로일렉트로닉컴포넌츠앤드시스템즈.남로제
    • 버트란드보브
    • G01G7/00
    • G01G7/06G01G19/44G01G21/23
    • The weighing device having a frame (1) acting on a capacitive sensor (3) comprises four arms (4) arranged as a cross and supported on knife-edges in the frame. A vertically movable weighing plate acts on the arms through knife-edges received in notches in the arms. The sensor is formed as a four-sided box (11) having a bottom plate (14) integral with the sides (12). The lower capacitor electrode (15) is supported on and insulated from the bottom plate. The upper capacitor electrode (16) is supported from a spring plate (17) by a pair of insulated rivets (18). The four frame arms are arranged to depress the spring plate as a function of the weight applied to the device.
    • 具有作用在电容式传感器(3)上的框架(1)的称重装置包括布置为十字架并且支撑在框架中的刀刃上的四个臂(4)。 一个可垂直移动的称重板通过手臂中凹口收到的刀刃作用在臂上。 传感器形成为具有与侧面(12)成一体的底板(14)的四面盒(11)。 下电容器电极(15)被支撑在底板上并与底板绝缘。 上部电容器电极(16)由一对绝缘铆钉(18)由弹簧板(17)支撑。 四个框架臂布置成根据施加到该装置的重量的函数来按压弹簧板。