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A 1.8 V 8.62 μW Inverter-based Gain-boosted OTA with 109.3 dB dc Gain for SC Circuits

机译:用于SC电路的基于1.8 V 8.62μW逆变器的增益增强型OTA,具有109.3 dB dc增益

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摘要

This paper presents a low-power inverter-based gain-boosted operational transconductance amplifier (OTA) for switched capacitor (SC) circuits operating at higher supply voltage (>1 V). The proposed OTA is implemented using UMC 180 nm CMOS technology with a supply voltage of 1.8 V and it offers a high dc gain with a unity gain bandwidth (UGB) suitable for audio applications. All the transistors of the proposed OTA are operated in sub-threshold region to minimize the power consumption. Gain-boosting technique is employed to achieve a higher dc gain. The post-layout simulations demonstrate the robust performance of the proposed OTA, which delivers a high dc gain of 109.3 dB and a UGB of 5.29 MHz at 81 degrees phase margin (PM) with a capacitive load of 2.5 pF for a typical process corner at room temperature (27 degrees C). The proposed OTA draws a quiescent current () of 4.79 mu A, resulting in a power consumption of 8.62 mu W.
机译:本文提出了一种基于低功率逆变器的增益增强型运算跨导放大器(OTA),用于在较高电源电压(> 1 V)下工作的开关电容器(SC)电路。拟议的OTA使用UMC 180 nm CMOS技术以1.8 V的电源电压实现,并提供高dc增益和适合音频应用的单位增益带宽(UGB)。建议的OTA的所有晶体管都在亚阈值区域内工作,以最大程度地降低功耗。增益增强技术用于实现更高的直流增益。布局后的仿真证明了所提出的OTA的强大性能,它在81度的相位裕度(PM)下可提供109.3 dB的高直流增益和5.29 MHz的UGB,对于典型的工艺拐角处的电容负载为2.5 pF。室温(27摄氏度)。拟议的OTA消耗4.79μA的静态电流(),导致功耗为8.62μW。

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