2016
DOI: 10.1016/j.ijleo.2016.04.075
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Performance enhancement of current differencing transconductance amplifier (CDTA) by using a new approach of gm boosting and its application

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Cited by 9 publications
(2 citation statements)
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References 28 publications
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“…Therefore, the slight deviation in the boosting of transconductance gains is observed when source degeneration resistances are the reported structure of CDTA. Only 2 structures reported in [20] and [34] have greater GBW but their power dissipations are much more than the proposed HTG-CDTA-II. It is also observed that the bandwidth of proposed HTG-CDTA-II has been increased by more than 5 times over the bandwidth of HTG-CDTA-I while power dissipations of both structures remain in the same range.…”
Section: Simulation Results Of Htg-cdta-imentioning
confidence: 88%
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“…Therefore, the slight deviation in the boosting of transconductance gains is observed when source degeneration resistances are the reported structure of CDTA. Only 2 structures reported in [20] and [34] have greater GBW but their power dissipations are much more than the proposed HTG-CDTA-II. It is also observed that the bandwidth of proposed HTG-CDTA-II has been increased by more than 5 times over the bandwidth of HTG-CDTA-I while power dissipations of both structures remain in the same range.…”
Section: Simulation Results Of Htg-cdta-imentioning
confidence: 88%
“…In another circuit of CDTA, partial positive feedback and parallel MOSFETs in place of differential pair have been used in order to achieve significant range and values of transconductance [33]. A high performance CDTA has been reported in [34] where the transconductance is boosted by combining the output of 2 current mirror structures. Recently, a paper has been published on transconductance boosting by utilizing common source amplifiers in between gate and source terminals of differential pair MOSFETs.…”
Section: Introductionmentioning
confidence: 99%