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Capacitive Transducers With Curved Electrodes

机译:弯曲电极电容式传感器

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The design, performance, and potential applications are described for capacitive transducers with curved electrodes. A curved electrode governs the deflection of a compliant electrode under applied stress. A dielectric film on one electrode provides a variable region of fixed electrode spacing. The sensitivity and linear dynamic range of the transducers are higher and wider than devices with parallel electrodes. An electrical advantage is obtained from the permittivity of the dielectric film and a mechanical advantage from its thinness. Transducers have been constructed with silicon diaphragms that bend and polymer membranes that stretch in response to uniform pressure. The silicon sensors measured dynamic pressure changes over a linear range of 125 dB. An 885percent change in capacitance was obtained for a sensor with a thin silicon diaphragm. Sensors with polycarbonate membranes demonstrated the ability of a low-cost transducer to measure pressure, fluid flow, displacement, and tilt. An active capacitive bridge circuit was developed to linearly measure capacitance changes up to 1000percent and to control electrostatic actuators by force-balanced feedback. Methods and materials to construct microscale transducers are discussed along with the performance limitations of electrostatic actuation.
机译:描述了具有弯曲电极的电容传感器的设计,性能和潜在应用。弯曲的电极控制施加应力下柔顺电极的挠度。一个电极上的介电膜可提供固定电极间距的可变区域。换能器的灵敏度和线性动态范围比带有平行电极的设备更高和更宽。从介电膜的介电常数获得电优势,并从其薄度获得机械优势。换能器已构造成具有弯曲的硅膜片和响应于均匀压力而拉伸的聚合物膜。硅传感器测量的动态压力在125 dB的线性范围内变化。对于具有薄硅膜片的传感器,电容变化了885%。带有聚碳酸酯膜的传感器证明了低成本传感器能够测量压力,流体流量,位移和倾斜度。开发了一种有源电容电桥电路,可线性测量高达1000%的电容变化,并通过力平衡反馈来控制静电执行器。讨论了构建微型传感器的方法和材料,以及静电致动的性能局限性。

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