High Speed Power Efficient, Noble Performance OTA Using Adaptive Biasing Technique

This Paper presents proposed noble technology to perform fast operation of CMOS Operational transconductance amplifier (OTA). In this paper Gain enhancement technique implies positive feedback system to enhance the overall performance of the circuit output. For fast operation of OTA NMOS adaptive biasing is used with 5.5$\mu$ A Quiescent current source (IB). Miller frequency compensation is used to provide stability to the circuit. Comparative study has been done in tabular and graphical form. This work has been done on 18$\theta$ nm technology using EDA Cadence Virtuoso for schematic designing and other analysis. At input 1. 8V supply voltage 94. 12dB gain is measured with 294nW with 35.23$\displaystyle \frac{V}{\mu s}$ and-37.5 $\displaystyle \frac{\gamma}{\mu s}$ positive and negative slew rate respectively. Power consumption and load capacitance CL is of 2 $\theta$ pf is used to take output.

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High Speed Power Efficient, Noble Performance OTA Using Adaptive Biasing Technique

Semantic Scholar · Engineering · 2019

Abstract

This Paper presents proposed noble technology to perform fast operation of CMOS Operational transconductance amplifier (OTA). In this paper Gain enhancement technique implies positive feedback system to enhance the overall performance of the circuit output. For fast operation of OTA NMOS adaptive biasing is used with 5.5$\mu$ A Quiescent current source (IB). Miller frequency compensation is used to provide stability to the circuit. Comparative study has been done in tabular and graphical form. This work has been done on 18$\theta$ nm technology using EDA Cadence Virtuoso for schematic designing and other analysis. At input 1. 8V supply voltage 94. 12dB gain is measured with 294nW with 35.23$\displaystyle \frac{V}{\mu s}$ and-37.5 $\displaystyle \frac{\gamma}{\mu s}$ positive and negative slew rate respectively. Power consumption and load capacitance CL is of 2 $\theta$ pf is used to take output.

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