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首页> 外文期刊>Solid-State Circuits, IEEE Journal of >Switched-Mode Operational Amplifiers and Their Application to Continuous-Time Filters in Nanoscale CMOS
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Switched-Mode Operational Amplifiers and Their Application to Continuous-Time Filters in Nanoscale CMOS

机译:开关模式运算放大器及其在纳米级CMOS中连续时间滤波器中的应用

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摘要

We introduce a new class of feedback amplifiers, called switched-mode operational amplifiers (SMOAs) that address voltage-swing limitations of classical feedback amplifiers in scaled CMOS technologies. By exploiting the increased timing resolution available in scaled CMOS, SMOAs encode analog signal information in the time domain and provide near-rail-to-rail output-signal swing, high output-stage efficiency and better linearity. A 4th-order, 70 MHz continuous-time active-RC Butterworth filter is presented in 65 nm CMOS to demonstrate the advantages of SMOAs. The filter consumes 25.4 mW from a 0.6 V supply and achieves 55.8 dB peak SNDR while operating at a full-scale of 873 mV. Thanks to SMOAs, the full-scale (73% of the 0.6 V supply voltage) and the bandwidth are respectively, a 2.5 and 6.2 improvement over other state-of-the-art low-voltage filters.
机译:我们介绍了一种新型的反馈放大器,称为开关模式运算放大器(SMOA),它解决了比例缩放CMOS技术中传统反馈放大器的电压摆幅限制。通过利用可缩放的CMOS中增加的时序分辨率,SMOA在时域中对模拟信号信息进行编码,并提供近轨到轨输出信号摆幅,高输出级效率和更好的线性度。在65 nm CMOS中提供了一个四阶,70 MHz连续时间有源RC Butterworth滤波器,以证明SMOA的优势。该滤波器从0.6 V电源消耗25.4 mW功率,并在873 mV满量程工作时达到55.8 dB的峰值SNDR。多亏了SMOA,满量程(0.6 V电源电压的73%)和带宽分别比其他最新的低压滤波器提高了2.5和6.2。

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