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2.45GHz low phase noise LC VCO design using Flip Chip on low cost CMOS technology

dos Anjos, A.,Pabon, A.A.,Van Noije, W.

Circuits and Systems(2012)

Cited 6|Views0
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Abstract
Phase Noise performance of LC VCOs is strongly dependent on the Quality Factor of the Inductors. As known, low cost CMOS technologies, the on-chip inductors have low quality factors compared to external inductors. But, using external inductors connected by traditional bonding technologies limits the integration capacity. To implement high performance RF circuits, the use of the Flip Chip technology is growing in ICs packaging. This work presents a comparison between two LC VCOs operating at 2.4GHz ISM band, using a standard 0.35μm CMOS process. One using internal inductor (OC-VCO), and a second using a high-Q external inductor connected by Flip Chip Technology (FC-VCO). The results for the designed FC-VCO are a low phase noise of -121dBc/Hz@1MHz and -132dBc/Hz@3MHz, tuning range of 203MHz and power consumption of 10.8mW at 3V. FC-VCO improves -9.7dBc/Hz@1MHz if compared with the OC-VCO using the same power consumption and inductance value. Additionally, FC-VCO presents a better figure of merit (FOM) than other published works, even for more advanced technologies.
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Key words
CMOS integrated circuits,Q-factor,flip-chip devices,inductors,integrated circuit bonding,integrated circuit design,integrated circuit noise,integrated circuit packaging,low-power electronics,voltage-controlled oscillators,CMOS process,CMOS technology,ICs packaging,RF circuit,bonding technology,external inductor,figure of merit,flip chip technology,frequency 2.45 GHz,frequency 203 MHz,integration capacity,internal inductor,low phase noise LC VCO design,on-chip inductor,phase noise performance,power 10.8 mW,quality factor,size 0.35 mum,voltage 3 V,
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