采用共模前馈技术的一种新型低功率高CMRR伪差分CMOS OTA

M. Shahabi, Roya Jafarnejad, J. Sobhi, Ziaeddin Daei Kouzehkanani
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引用次数: 7

摘要

提出了一种新型低功耗伪差分(PD) CMOS运算跨导放大器。该OTA基于在输出节点前馈对消输入共模信号,以最小的面积、功耗和寄生元件成本提高共模抑制比(CMRR)。通过提出的共模前馈(CMFF)技术配置,该OTA的跨导增益几乎是传统CMFF OTA的两倍和四倍。与传统的CMFF ota相比,它还降低了实现相同跨导增益所需的功率。后置仿真结果表明,该OTA具有46.4 dB直流增益,14.5 MHz增益带宽(GBW)和85°相位裕度,适用于2pf容性负载。该OTA的CMRR为110.1 dB。在1.2 V单电源电压下,OTA功耗仅为28.6 μW,占地面积很小,仅为33 × 10-5 mm2。采用台积电0.18 μm CMOS工艺对OTA进行了设计和仿真。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel low power high CMRR pseudo-differential CMOS OTA with common-mode feedforward technique
This paper presents a novel low-power (LP) pseudo-differential (PD) CMOS operational transconductance amplifier (OTA). The proposed OTA is based on a feedforward cancellation of the input common mode signal at the output nodes in order to enhance the common-mode rejection ratio (CMRR) with the minimum cost of area, the power consumption and the parasitic components. By means of the proposed configuration of the common-mode feedforward (CMFF) technique, the transconductance gain of this OTA is almost two times and four times the transconductance gain of the traditional CMFF OTAs. It also reduces the power needed in comparison with the traditional CMFF OTAs to achieve the same transconductance gain. The post-simulation results shows that the proposed OTA has a 46.4 dB DC gain, a 14.5 MHz gain bandwidth (GBW) and a 85° phase margin for 2 PF capacitive loads. The proposed OTA achieved 110.1 dB CMRR. The OTA consumes only 28.6 μW under a 1.2 V single supply voltage and occupies a very small area of 33 × 10-5 mm2. This OTA is designed and simulated by the TSMC 0.18 μm CMOS process.
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