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A CCII-based non-inverting Schmitt trigger and its application as astable multivibrator for capacitive sensor interfacing

机译:基于CCII的同相施密特触发器及其作为用于电容传感器接口的不稳定多谐振荡器的应用

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This paper presents a novel second-generation current conveyor (CCII)-based non-inverting Schmitt trigger topology. By means of the use of only three resistances, it is possible to set easily the threshold values or, in addition, the trigger can be set also to work as a zero-voltage comparator. The theoretical working principle has been confirmed through PSpice simulations implementing an integrated CCII, designed in a low-cost standard complementary metal-oxide-semiconductor technology (Austria Micro Systems (AMS) 0.35 mu m) with low-voltage low-power characteristics, and then by experimental tests on the fabricated printed circuit board prototype through the use of the commercial component AD844 (Analog Devices) as CCII. As its main application example, the presented trigger has been employed to implement an astable multivibrator proposed here as a capacitive sensor interface capable to accurately detect about five decades of capacitive variations in the range of [100pF-5.5F] with a maximum relative error lower than +/- 10%. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:本文提出了一种新颖的基于第二代电流传输器(CCII)的同相施密特触发器拓扑。通过仅使用三个电阻,可以容易地设置阈值,或者此外,触发器也可以设置为用作零电压比较器。 PSpice通过实施集成CCII的仿真已证实了理论工作原理,该CCII是采用低成本标准互补金属氧化物半导体技术(奥地利微系统(AMS)0.35微米)设计的,具有低压低功耗特性,并且然后,通过使用商业组件AD844(模拟设备)作为CCII对制成的印刷电路板原型进行实验测试。作为其主要应用示例,已提出的触发器已用于实现此处提出的作为电容式传感器接口的不稳定多谐振荡器,该接口能够准确检测在[100pF-5.5F]范围内约五十年的电容变化,且最大相对误差较低超过+/- 10%。版权所有(c)2016 John Wiley&Sons,Ltd.

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