Ping-Pong Operated Inverter-based OTA using Correlated Level Shifting Technique

Tianqiao Wu, Z. Tan, N. Xie, Hao Zhang, Le Ye
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Abstract

This paper presents an inverter-based operational transconductance amplifier (OTA) which obtains high loop gain by correlated level shifting (CLS) technique with ping-pong operation. Thanks to the shifting capacitor providing voltage step between the OTA output and the inverter output, the suppressed inverter output swing helps OTA to achieve higher DC gain yielding better accuracy in the application of charge amplifier or integrator. The proposed technique utilizes two identical sub-OTA structures working in the ping-pong way to provide level shifting reference voltage for each other. This operation allows inverter-based OTA to work at the amplification mode in both clock phases, thus double sampling technique can be adopted to achieve twice of the charge transfer efficiency. Compared with the conventional inverter-based charge amplifier, the proposed topology improves DC gain from 39dB to 71dB at the cost of 17% power consumption increase from 7.1µA to 8.6µA.
基于相关电平移位技术的乒乓式逆变器OTA
本文提出了一种基于逆变器的运算跨导放大器,该放大器采用乒乓操作的相关电平移位技术获得高环路增益。由于移位电容在OTA输出和逆变器输出之间提供电压阶跃,抑制逆变器输出摆幅有助于OTA获得更高的直流增益,从而在电荷放大器或积分器的应用中获得更好的精度。所提出的技术利用两个相同的子ota结构以乒乓方式工作,为彼此提供电平移动参考电压。该操作允许基于逆变器的OTA在两个时钟相位都工作在放大模式,因此可以采用双采样技术实现两倍的电荷转移效率。与传统的基于逆变器的电荷放大器相比,该拓扑将直流增益从39dB提高到71dB,功耗从7.1µA提高到8.6µA,功耗增加17%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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