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- W2131563672 abstract "<para xmlns:mml=http://www.w3.org/1998/Math/MathML xmlns:xlink=http://www.w3.org/1999/xlink> A technique to achieve highly linear scaling of differential currents in CMOS technology is presented. It is based on operation in weak or moderate inversion, and features performance improvements over previous proposals aimed to the same goal, like reduced supply voltage requirements, increased power efficiency, and avoidance of bulk effect. As an example, this technique is applied to attain continuous tuning for two novel voltage-to-current converters, achieving highly linear programmable transconductance over a rail-to-rail input range. Both implementations fabricated in a 0.5-<formula formulatype=inline> <tex>$mu{hbox {m}}$</tex></formula> CMOS technology using a dual supply of <formula formulatype=inline><tex>$pm$</tex></formula>1.5 V achieve a THD of <formula formulatype=inline><tex>$-$</tex></formula>60 dB with differential input swings of 6 <formula formulatype=inline><tex>${rm V}_{rm pp}$</tex></formula> (i.e., twice the supply voltage). The area and power consumption are 0.12 <formula formulatype=inline><tex>${hbox {mm}}^{2}$</tex> </formula> and 2.6 mW for the first implementation and 0.11 <formula formulatype=inline> <tex>${hbox {mm}}^{2}$</tex></formula> and 2.2 mW for the second one, respectively. </para>" @default.
- W2131563672 created "2016-06-24" @default.
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- W2131563672 date "2008-05-01" @default.
- W2131563672 modified "2023-10-12" @default.
- W2131563672 title "CMOS Transconductors With Continuous Tuning Using FGMOS Balanced Output Current Scaling" @default.
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- W2131563672 doi "https://doi.org/10.1109/jssc.2008.920333" @default.
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