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A 0.6-V Power-Efficient Active-RC Analog Low-Pass Filter With Cutoff Frequency Selection

机译:具有截止频率选择的0.6V功率高效的Active-RC模拟低通滤波器

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摘要

This article presents a fully differential (FD) low-voltage (LV) fourth-order Butterworth active-RC low-pass filter (LPF) with a maximum cutoff frequency (f(0)) of 160 MHz, f(0) programmability, and adaptive power. The proposed filter targets communication systems requiring high and reconfigurable f(0) at supply voltages (V(DD)s) of 0.6 V. The filter is implemented with an active-RC topology, a programmable f(0) between four steps, 20/40/80/160 MHz, and a f(0) fine-tuning option after fabrication via capacitor banks. A compact LV FD amplifier with feedforward gain-boosting implementation is used to meet the stringent filter's performance. The novel amplifier achieves an open loop gain of 66 dB and a maximum unity-gain frequency (UGF) of 759 MHz with V-DD = 0.6 V and 5.27 mW of power dissipation. Using the proposed amplifier, the filter achieves the highest f(0) reported in the literature for LV active-RC implementations and 40% power reduction over similar high-f(0) LV filters. The filter was fabricated in a CMOS 130-nm technology; it has a THD = 50.7 dB, signal-to-noise and distortion (SNDR) = 45.37 dB, P-1dB = 4.26 dBm and 520-mu V RMS integrated noise over the filter's bandwidth (BW), while consuming 23.8 mA from a 0.6-V supply for f(0) = 160 MHz.
机译:本文介绍了一个全差分(FD)低压(LV)第四阶Butterworth Active-RC低通滤波器(LPF),最大截止频率(F(0))为160 MHz,F(0)可编程性,和自适应力量。所提出的滤波器针对在电源电压(V(DD))的电源电压(V(DD))的通信系统为0.6 V.滤波器用Active-RC拓扑实现,可编程F(0)在四个步骤之间,20 / 40/80/160 MHz和AF(0)通过电容器组制造后的微调选项。具有前馈增益实现的紧凑型LV FD放大器用于满足严格的过滤器的性能。新颖的放大器实现了66dB的开环增益和759 MHz的最大单位增益频率(UGF),V-DD = 0.6 V和5.27mW的功率耗散。使用所提出的放大器,过滤器实现了LV Active-RC实现的文献中报告的最高F(0),并且在类似的高F(0)LV滤波器上的40%功率降低。将过滤器以CMOS 130-NM技术制成;它具有THD = 50.7dB,信号 - 噪声和失真(SNDR)= 45.37 dB,P-1dB = 4.26 dBm和520-mu V rms集成噪声在过滤器的带宽(BW)上,同时消耗23.8 mA F(0)= 160 MHz的0.6V电源。

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