A Local Positive Feedback Loop-Reused Technique for Enhancing Performance of Folded Cascode Amplifier

Zhang Yu, Zhao Xiao, Dong Liyuan
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Abstract

A current-reused folded cascode operational transconductance amplifier (OTA) using a local positive feedback (LPFB) technique has been proposed in previous literature, which does not achieve maximum unity gain-bandwidth (GBW). Besides, the stability of LPFB in the LPFB OTA is limited by local common mode feedback (LCMFB) resistors. Based on the analysis, a local positive feedback loop-reused (LPFBR) technique is proposed to improve the performance of conventional LPFB OTA. For a fair comparison, both conventional and proposed OTAs working at saturation region are designed and simulated in SMIC 0.18 μm process. The simulated results demonstrate that the proposed LPFBR OTA has almost 10.5 times the bandwidth and maintains stability compared to that of the conventional LPFB OTA under the condition that LCMFB resistors are increased by a factor of 10.
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提高折叠级联放大器性能的局部正反馈环复用技术
先前的文献中提出了一种使用局部正反馈(LPFB)技术的电流重用折叠级联运算跨导放大器(OTA),该放大器不能实现最大单位增益带宽(GBW)。此外,局部共模反馈(LCMFB)电阻限制了LPFB在LPFB OTA中的稳定性。在此基础上,提出了一种局部正反馈循环复用(LPFBR)技术,以提高传统LPFB OTA的性能。为了公平比较,在SMIC 0.18 μm工艺中设计并模拟了在饱和区域工作的传统ota和所提出的ota。仿真结果表明,在LCMFB电阻增加10倍的情况下,所提出的LPFBR OTA的带宽几乎是传统LPFB OTA的10.5倍,并且保持了稳定性。
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