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Transconductance enhancement in bulk-driven input stages and its applications

机译:批量驱动输入级中的跨导增强及其应用

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摘要

Two different circuit techniques to enhance the effective transconductance of a CMOS bulk-driven differential input stage are presented in this paper. Both approaches rely on a partial positive feedback, which leads to improved values for the DC gain and the gain-bandwidth product. The operation principle of the first solution is based on modifying the effective conductance of the active load of the input stage, while the second method acts directly on the input differential pair. The suitability of the presented techniques is demonstrated by the design of operational transconductance amplifiers operating at two different supply voltages, i.e., 2.4 and 1.0 V. Besides, the overall design of two applications, namely a 3 V input/output rail-to-rail operational amplifier with high linearity and a 1.2 V second-order OTA-C low-pass filter, is addressed. Simulated results obtained in standard 0.35 μm CMOS technology demonstrate the applicability of the solutions introduced.
机译:本文提出了两种不同的电路技术,以增强CMOS大容量驱动的差分输入级的有效跨导。两种方法都依赖于部分正反馈,这会改善DC增益和增益带宽积的值。第一种解决方案的工作原理是基于修改输入级有功负载的有效电导,而第二种方法则直接作用于输入差分对。通过在两个不同的电源电压(即2.4和1.0 V)下工作的跨导放大器的设计,证明了所提出技术的适用性。此外,两种应用的总体设计,即3 V输入/输出轨到轨解决了具有高线性度和1.2 V二阶OTA-C低通滤波器的运算放大器。在标准0.35μmCMOS技术中获得的模拟结果证明了所介绍解决方案的适用性。

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