基于模块化跨导减小技术的1 v, 74 db,亚hz Gm-C滤波器

Surachoke Thanapitak
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引用次数: 6

摘要

提出1 V 33.2 pS OTA,功耗5.5 nW。该OTA采用输入电压预衰减技术,该技术基于CMOS共漏极电路与二极管连接负载,以降低整体跨导增益。对于1%的跨导增益变化,该OTA的线性范围为370 mV。此外,基于该OTA拓扑的伪差分GM-C二阶LPF在1v电源下功耗为82 nW,动态范围为74 dB,截止频率为0.69 Hz - 76 Hz。与原作品相比,预输入电压衰减后的OTA;提高了器件的功耗、输出电压摆幅、IRN和DR。所有结果都在0.35 μm标准CMOS工艺上进行了仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An 1-V, 74-dB, sub-Hz Gm-C filter based on a modular transconductance reduction technique
An 1 V 33.2 pS OTA, which consumes power at 5.5 nW, is proposed. This OTA employs the input voltage pre-attenuation technique which based on CMOS common drain circuits with diode connected load to reduce the overall transconductance gain. The linear range of this proposed OTA is 370 mV for 1 % transconductance gain variation. Additionally, the pseudo-differential GM-C 2nd order LPF based on this OTA topology which dissipates 82 nW at 1 V supply with 74 dB dynamic range and cutoff frequency from 0.69 Hz - 76 Hz has been demonstrated. With comparison to the original work of the pre-input voltage attenuated OTA; the power dissipation, output voltage swing, IRN and DR are improved. All results of this work are simulated on 0.35 μm standard CMOS process.
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