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A Discrete-Time MOS Parametric Amplifier-Based Chopped Signal Demodulator

机译:基于离散时间的MOS参数放大器的切碎信号解调器

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This article presents a discrete-time parametric amplifier (DTPA) as the signal demodulator for chopper amplifier. Unlike the conventional chopper, the DTPA demodulator features noise-efficient gain augmentation while demodulating the chopped signal. The demodulator also enables low-frequency noise cancellation during the inherent track-and-hold (T/H) process of the charge parametrization. The positive feedback loop and the dc servo loop are implemented for applications requiring larger input impedance and dc input offset cancellation using a bandpass transfer function. Design considerations for the DTPA-based demodulator circuit and the merits and demerits of the chopper–DTPA amplifier are discussed as well. The proposed design has been fabricated in a standard 180-nm CMOS technology node. The complete design occupies 0.127 mm2 of the die area and consumes 2.4- $mu ext{W}$ power from a 1.5 V of $ext{V}_{ext {DD}}$ . The measurement results show that the DTPA demodulator provides 8-dB gain enhancement while improving on the prior art of T/H-based demodulator and the amplifier achieves input referred noise voltage of $2~ mu ext {V}_{ext {rms}}$ in 143-Hz bandwidth.
机译:本文介绍了一种离散时间参数放大器(DTPA),作为斩波放大器的信号解调器。与传统的斩波器不同,DTPA解调器具有噪声高效增益增强,同时解调切碎的信号。解调器还可以在电荷参数化的固有轨道和保持(T / H)过程中实现低频噪声消除。正反馈回路和DC伺服环路用于需要使用带通传输功能的更大输入阻抗和DC输入偏移消除的应用。还讨论了基于DTPA的解调器电路的设计考虑和斩波器-DTPA放大器的优点和缺点。所提出的设计已在标准的180nm CMOS技术节点中制造。完整的设计占用0.127毫米 2 模具区域和消耗2.4-<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> $ mu text {w} $ 从1.5 V的电力<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> $ text {v} _ { text {dd}} $ 。测量结果表明,DTPA解调器提供了8-DB增益增强,同时提高了基于T / H基解调器的现有技术,并且放大器实现了输入的引用噪声电压<内联公式XMLNS:MML =“http://www.w3.org/1998/math/mathml”xmlns:xlink =“http://www.w3.org/1999/xlink”> $ 2〜 mu text {v} _ { text {rms}} $ 在143-Hz带宽。

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