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  1. Home
  2. Volume 9, Issue 7
  3. Author

Online ISSN: 2515-8260

Volume9, Issue7

QR DECOMPOSITION FOR A LOW POWER CMOS OPERATIONAL TRANSCONDUCTANCE AMPLIFIER OPERATION

    Papiya Mukherjee, Bandi Aruna, Supriya Tatavarthi

European Journal of Molecular & Clinical Medicine, 2022, Volume 9, Issue 7, Pages 8556-8571

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Abstract

The purpose of this study is to investigate the benefits and drawbacks associated with applying CMFB in entirely differentiated three-stage OTAs using two loops. Specifically, the investigation will focus on determining which configuration, a single loop or two loops, yields the best results. The advantages of each method are dissected, and the ways in which they affect stability, linearity, noise, and CMR are taken into account. The results indicate that a multi-loop CMFB has the potential to enhance the filter 1-dB compression when compared to a single loop, which shows that this improvement is possible. In spite of the fact that the differential path was not altered in any way, this improvement was nonetheless accomplished.
Keywords:
    CMOS CMFB OTA Single Loop Multi-Loop
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(2022). QR DECOMPOSITION FOR A LOW POWER CMOS OPERATIONAL TRANSCONDUCTANCE AMPLIFIER OPERATION. European Journal of Molecular & Clinical Medicine, 9(7), 8556-8571.
Papiya Mukherjee, Bandi Aruna, Supriya Tatavarthi. "QR DECOMPOSITION FOR A LOW POWER CMOS OPERATIONAL TRANSCONDUCTANCE AMPLIFIER OPERATION". European Journal of Molecular & Clinical Medicine, 9, 7, 2022, 8556-8571.
(2022). 'QR DECOMPOSITION FOR A LOW POWER CMOS OPERATIONAL TRANSCONDUCTANCE AMPLIFIER OPERATION', European Journal of Molecular & Clinical Medicine, 9(7), pp. 8556-8571.
QR DECOMPOSITION FOR A LOW POWER CMOS OPERATIONAL TRANSCONDUCTANCE AMPLIFIER OPERATION. European Journal of Molecular & Clinical Medicine, 2022; 9(7): 8556-8571.
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