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Current-Mode Capacitive Sensor Interface Circuit With Single-Ended to Differential Output Capability

机译:具有单端至差分输出能力的电流模式电容传感器接口电路

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This paper presents a current-mode interface circuit for capacitive sensors, with the main features being its ability to produce a differential output from a single-ended sensor (using a fixed reference capacitor) and its simplicity in realization. These advantages make it a potential candidate for applications where differential sensors are not available and where a simple design is required. The principle is, however, easily applicable to differential sensors as well. The interface concept can be realized in different ways; however, to present a proof of concept on silicon, a prototype has been fabricated and tested in a commercially available 0.8- $muhbox{m}$ CMOS process. The circuit has been designed using common analog building blocks such as a fully differential operational transconductance amplifier (OTA), a high-output-resistance wide-swing current source, and a single clock phase. The estimated linearity error was 0.2% relative to full-scale swing with a simple two-point calibration. The circuit consumes 145 $muhbox{A}$ from a 5-V power supply.
机译:本文介绍了一种用于电容传感器的电流模式接口电路,其主要特征是它能够从单端传感器(使用固定参考电容器)产生差分输出,并且实现简单。这些优点使其成为潜在的候选应用,这些应用中没有可用的差分传感器,并且需要简单的设计。但是,该原理也容易适用于差分传感器。接口概念可以通过不同的方式来实现。然而,为了提供关于硅的概念证明,已经在可商购的0.8-muhbox {m} $ CMOS工艺中制造并测试了原型。该电路采用通用的模拟构建模块进行设计,例如全差分运算跨导放大器(OTA),高输出电阻的宽摆幅电流源和单个时钟相位。通过简单的两点校准,相对于满量程摆幅,估计的线性误差为0.2%。该电路通过5 V电源消耗145 $ muhbox {A} $。

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