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A High-Performance OTA With Hybrid of Inverter-Based OTA and Nauta OTA For high Speed Applications

机译:具有基于逆变器的OTA和Nauta OTA的高性能OTA,用于高速应用

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Operational transconductance amplifiers (OTAs) are widely employed as active elements in filters, data converters, and buffer amplifiers. Inverter-based implementation of OTAs is an attractive approach for low voltage realization of analog subsystems. However, there are still fundamental challenges such as how to simultaneously achieve high DC gain, bandwidth, speed, and good noise performance based on existing inverter-based OTA architectures. In this paper, a new two stage OTA, hybrid with current reuse inverter OTA and Nauta transconductor is proposed to improving performance by taking advantages of their own merits. The introduced architecture is keeping the merits of Nauta transconductor such as high bandwidth, high speed and the superior input referred noise performance of the current reuse inverter-based OTA. Furthermore, in order to reduce the PVT variations, bulk tuning circuits based on "detecting-feedback" loop applied on CMFB and the output stage of Nauta transconductor is proposed to dynamically tune the output DC levels under PVT variations. The proposed new hybrid OTA is implemented in 180nm CMOS technology and achieves very competitive performance compares with all inverter based OTAs and the other state-of-the-art OTAs.
机译:操作跨导放大器(OTAS)广泛用于滤波器,数据转换器和缓冲放大器中的有源元素。基于逆变器的OTA实施是一种有吸引力的模拟子系统实现低电压实现方法。然而,仍然存在基于现有的基于逆变器的OTA架构的高直流增益,带宽,速度和良好的噪声性能等根本的挑战。本文采用了新的两级OTA,具有电流再利用逆变器OTA和NAUTA跨导体的混合动力,以通过采取自身的优点来提高性能。介绍的架构正在保持Nauta跨导体的优点,例如高带宽,高速,高速输入的高速输入电流重用基于逆变器的OTA的噪声性能。此外,为了减少PVT变化,提出了基于在CMFB上施加的“检测反馈”环路的批量调谐电路和Nauta跨导体的输出级,以在PVT变化下动态调谐输出DC电平。拟议的新混合OTA是在180nm CMOS技术中实施的,并与所有基于逆变器的OTA和其他最先进的OTA相比,实现了非常竞争力的性能。

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