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Low-noise, low-offset modulator demodulator circuit for chopper stabilization technique in CMOS-MEMS sensor applications

机译:用于CMOS-MEMS传感器应用中的斩波稳定技术的低噪声,低失调调制器解调器电路

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This paper presents a design and technique for low noise, low offset modulation demodulation circuit for chopper stabilized amplifiers use in CMOS-MEMS sensor applications. In these sensors, where the sensed signals are usually very weak, a low-noise interface readout circuit plays a crucial role in determining the overall sensor performance and success in the market. Amplifiers are the core building blocks of these circuits and hence there is a growing demand for low noise and low offset designs and fabrication. Chopper stabilization technique has been widely used in amplifiers for flicker (1/f) noise and offsets reduction purposes using the principles of modulation and demodulation. Thus, the functionality and performance of the modulation and demodulation circuit determines the realization and attainment of chopper stabilization. The demonstrated circuits in this work are designed in MIMOS 0.35 µm AMS CMOS 3.3 V CMOS process technology. Cadence Spectre simulation results show the presented circuit achieves chopper stabilization with total noise contribution of 0.885 nV√Hz and minimized offset.
机译:本文提出了一种用于CMOS-MEMS传感器应用中的斩波稳定放大器的低噪声,低失调调制解调电路的设计和技术。在这些传感器中,通常检测到的信号非常微弱,低噪声接口读出电路在确定整体传感器性能和在市场上取得成功时起着至关重要的作用。放大器是这些电路的核心组成部分,因此对低噪声和低失调设计与制造的需求不断增长。斩波稳定技术已广泛用于放大器中,以利用调制和解调原理实现闪烁(1 / f)噪声和减少失调的目的。因此,调制和解调电路的功能和性能决定了斩波器稳定的实现和获得。这项工作中演示的电路是采用MIMOS 0.35 µm AMS CMOS 3.3 V CMOS工艺技术设计的。 Cadence Spectre仿真结果表明,该电路实现了斩波器稳定,总噪声贡献为0.885nV√Hz,并且失调最小。

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