Implementation of OTA in 90nm Technology with Bandgap Reference Application

None Halesh M R, None Pavan S, None Pappuru Tejaswini
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Abstract

Operational Transconductance Amplifier (OTA) is the basic building block of Analog circuit with linear input/output characteristics. Because it associates closely linked parameters like noise and settling performance, the current design methodologies for two-stage OTAs frequently result in sub-optimal solutions. The study discusses the implementation of an Operational transconductance amplifier (OTA) with a bandgap reference (BGR) circuit and its importance in providing a stable and accurate reference voltage for various analog and digital circuits. The combination of OTA and BGR provides a stable and accurate reference voltage that can be used in various analog and digital circuits. OTAs are used to drive high capacitive loads. To scale the dimensions of Complementary Metal Oxide Semiconductor (CMOS) technology requires proportional scaling, also taking supply voltage into consideration. In addition to the simplicity and strong performance that the Band Gap Reference (BGR) achieves as a load for the OTA circuit, the architecture of OTA with BGR as load is easily adaptable to attain high accuracy. Because the performance of the used amplifier has a significant impact on the OTA’s performance, consideration must be given to the design and its architecture. Therefore, it is essential to carry out a comparison analysis in order to get the optimal results of the outputs of OTA having BGR as the load.
基于带隙参考应用的90纳米技术OTA实现
运算跨导放大器(OTA)是具有线性输入/输出特性的模拟电路的基本组成部分。由于它与噪音和沉降性能等密切相关的参数有关,目前两阶段ota的设计方法经常导致次优解决方案。本研究讨论了一种带带隙参考电路的运算跨导放大器(OTA)的实现及其在为各种模拟和数字电路提供稳定和精确的参考电压方面的重要性。OTA和BGR的结合提供了一个稳定和精确的参考电压,可用于各种模拟和数字电路。ota用于驱动高容性负载。要扩展互补金属氧化物半导体(CMOS)技术的尺寸,需要按比例缩放,还需要考虑电源电压。除了带隙参考(BGR)作为OTA电路负载的简单性和强大的性能外,带隙参考(BGR)作为负载的OTA架构易于适应以获得高精度。由于所用放大器的性能对OTA的性能有重大影响,因此必须考虑其设计及其架构。因此,为了得到以BGR为负载的OTA输出的最优结果,有必要进行对比分析。
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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