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首页> 外文期刊>Microelectronics journal >Uncalibrated automatic bridge-based CMOS integrated interfaces for wide-range resistive sensors portable applications
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Uncalibrated automatic bridge-based CMOS integrated interfaces for wide-range resistive sensors portable applications

机译:未经校准的基于桥接的自动CMOS集成接口,适用于广泛的电阻传感器便携式应用

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摘要

In this work the authors describe improved solutions on automatic fully-analog uncalibrated Wheatstone bridge-based interfaces suitable for wide-range resistive sensors. The proposed topologies are enhanced and integrated interfaces, based on automatic bridge configurations, completely designed in a standard CMOS technology (AMS 0.35 μm), where Voltage Controlled Resistors (VCRs), formed by MOS transistors, have been properly tuned through the use of a suitable closed feedback loop that continuously ensures the bridge equilibrium condition. The microelectronic design has been performed through the use of symmetrical Operational Transconductance Amplifiers (OTAs) with low-voltage (2 V, single supply) and low-power (63.5 μW) characteristics, so the overall system can be fabricated in a single chip suitable for portable applications. Referring to the first configuration where only one VCR has been employed for both grounded and floating resistive sensors, Orcad PSpice simulations have confirmed the interface capability to estimate the sensor resistance for about 2.7 decades variations (430 Ω; 220 kΩ), with a relative error of about ± 4%. Moreover, in the second version for an extended estimation range, the interface is able to evaluate the sensor resistance for about 6.6 decades (0.1 Ω; 400 kΩ) with a reduced relative error within (-1.5%; +4%).
机译:在这项工作中,作者描述了适用于宽范围电阻传感器的,基于自动全模拟未经校准的惠斯通电桥的接口的改进解决方案。拟议的拓扑是基于自动桥配置的增强和集成接口,完全采用标准CMOS技术(AMS 0.35μm)设计,其中通过使用CMOS晶体管适当调整了由MOS晶体管形成的压控电阻(VCR)。适当的闭合反馈回路,可连续确保电桥平衡状态。微电子设计是通过使用具有低压(2 V,单电源)和低功耗(63.5μW)特性的对称运算跨导放大器(OTA)进行的,因此整个系统可以在适合的单芯片中制造用于便携式应用。关于第一种配置,其中接地电阻传感器和浮动电阻传感器均仅使用一个VCR,Orcad PSpice仿真已经确认了接口功能,可以估算大约2.7十年变化(430Ω; 220kΩ)的传感器电阻,但存在相对误差约±4%。此外,在第二个版本中,扩展了估算范围,该界面能够评估传感器电阻约6.6年(0.1Ω; 400kΩ),相对误差降低到(-1.5%; + 4%)之内。

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