0.6 v, Sub-nW,二阶低通滤波器,使用翻转电压跟随器

C. Sawigun, P. Pawarangkoon
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引用次数: 12

摘要

本文提出了一种利用翻转电压从动器作为二阶低通滤波器的概念。将两个电容与众所周知的双晶体管翻转电压跟随电路相结合,得到了一个能够在低电源电压下工作的单支路晶体管gm-C滤波器。此外,所提出的滤波器可以配置为单端和差分形式。采用0.35 μm CMOS工艺进行的电路仿真表明,当电源电压为0.6 V时,差分滤波器工作在亚阈值区域,为获得100 hz的截止频率和52.2 db的动态范围,总电容为36 pF,功耗为0.36 nW。与之前报道的低功耗生物医学滤波器的设计相比,该滤波器是最节能的,并且在最低的电源电压水平下工作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
0.6-V, Sub-nW, second-order lowpass filters using flipped voltage followers
This paper presents a concept of using the flipped voltage follower as a 2nd-order lowpass filter. Combining two capacitors with the well-known two-transistor flipped voltage follower circuit, a single-branch transistorized gm-C filter, able to function from a low supply voltage, is obtained. Besides, the proposed filter can be configured as both single-ended and differential forms. Circuit simulation using 0.35-μm CMOS process shows that, to obtain a 100-Hz cutoff frequency with a 52.2-dB dynamic range, total capacitance of 36 pF and power consumption of 0.36 nW are required for the differential filter that operates in subthreshold region from a supply voltage of 0.6 V. Compared with the previously reported designs in the category of low-power biomedical filters, this proposed filter is the most power-efficient and operates from the lowest level of supply voltage.
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