100kHz - 20MHz可重构nutagm - c双路低通滤波器,0.13µm CMOS

P. Crombez, J. Craninckx, M. Steyaert
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引用次数: 15

摘要

提出了一种完全可重构的gm-C双二次低通滤波器,带宽可调超过两个数量级,从100 kHz到20 MHz,能够覆盖所有常见的无线标准。此外,由于Nauta的transconductor内部采用了一种新的开关技术,可以独立改变其跨导和输入电容,因此可以交换功率和性能。带宽,质量因数,噪声水平,线性度和共模抑制都可以在很宽的范围内进行编程。该电路采用0.13 mum CMOS技术实现,功耗在103 muA (100 kHz)至11.85 mA (20 MHz)之间,来自1.2 V电源,集成噪声设置在25至35 muVrms左右,IIP3为10 dBVp, SFDR为68 dB。当允许更高的噪音水平时,可以节省额外的电力。测量结果证实了biquad架构的灵活性、噪声功率缩放和线性特性。
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A 100kHz – 20MHz reconfigurable nauta gm-C biquad low-pass filter in 0.13µm CMOS
A fully reconfigurable gm-C biquadratic low-pass filter is presented with a bandwidth tunable over more than two orders of magnitude starting from 100 kHz up to 20 MHz able to cover all common wireless standards. Furthermore, power and performance can be traded thanks to a new switching technique inside Nauta's transconductor that allows changing its transconductance and input capacitance independently. Bandwidth, quality factor, noise level, linearity and common mode suppression arc all programmable over a very wide range. The circuit is realized in a 0.13 mum CMOS technology and consumes between 103 muA (100 kHz) and 11.85 mA (20 MHz) from a 1.2 V supply for a low integrated noise setting around 25 to 35 muVrms and an IIP3 of 10 dBVp giving an SFDR of 68 dB. Extra power can be saved when higher noise levels are allowed. Measurement results confirm flexibility, noise-power scaling and linearity behavior of the biquad architecture.
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