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High-Performance Four-Stage CMOS OTA Suitable for Large Capacitive Loads

机译:适用于大容性负载的高性能四阶段CMOS OTA

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Designing four-stage operational transconductance amplifiers (OTAs) is often considered a challenging task mainly because of the required non trivial frequency compensation procedure. In this study, starting from the simplest architecture (a differential stage cascaded by three common source stages) a high-performance OTA is demonstrated, outperforming all the (few) previous implementations. Thanks to the frequency compensation scheme and to the adoption of a slew-rate enhancer section, the solution is able to drive large capacitive loads as high as 1 nF, rivaling in terms of bandwidth and speed even with three-stage counterparts, traditionally credited to be better because of the less number of high-impedance nodes. The solution, fabricated in a 0.35- technology, occupies 0.014- with DC consumption of 170 . It also achieves nearly 3-MHz gain bandwidth product while driving the 1-nF load with less than 0.5- 1% settling time.
机译:设计四级运算跨导放大器(OTA)通常被认为是一项具有挑战性的任务,主要是因为需要非平凡的频率补偿程序。在本研究中,从最简单的架构(一个由三个公共源级串联而成的差分级)开始,演示了一种高性能的OTA,其性能优于以前的所有(少数)实现。得益于频率补偿方案和压摆率增强器部分的采用,该解决方案能够驱动高达1 nF的大容性负载,在带宽和速度方面甚至可以与传统上公认的三级对等器件相媲美。更好,因为高阻抗节点的数量较少。该解决方案采用0.35技术制造,占用0.014,直流功耗为170。在驱动1-nF负载的同时,建立时间还不到0.5-1%,因此,它还能获得近3MHz的增益带宽乘积。

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