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In this paper, an optimization technique for active inductor circuit forward noise, size area, and power dissipation is proposed through careful selection of the number of gate fingers Nf of a nanoscale MOS transistor. According to simulation results, the application of supply voltage scaling and multi-gate finger transistor techniques can therefore introduce simultaneously a reduction in power consumption...
Active inductors circuits are developed as an alternative solution for multiband systems. In this context, this paper presents a wide tunability, a low power, high-Q differential active inductor (DAI) using 0.13 μm CMOS technology. This work proposes a DAI using two cascode-grounded active inductors and cross-coupled negative resistance to decrease the noise and to improve the quality factor. The...
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