A 18.2-29.3 GHz Colpitts VCOs bank with -119.5 dBc/Hz Phase Noise at 1 MHz Offset for 5G Communications
Fabio Quadrelli, F. Panazzolo, Marc Tiebout, Fabio Padovan, Matteo Bassi, Andrea Bevilacqua
Abstract
Fabio Quadrelli, F. Panazzolo, Marc Tiebout, Fabio Padovan, Matteo Bassi, Andrea Bevilacqua
Abstract
This paper describes a bank of four SiGe BiCMOS oscillators tailored to cover the 18.2-29.3 GHz frequency range, needed to tackle the needs of 5G communications. The Colpitts oscillator topology is leveraged to achieve a lower absolute phase noise compared to Class-C oscillators, at the expense of deteriorated figure of merit. Benefiting from the proper technology choice, a careful tank design was carried out to maximize Q, minimize KVCOand phase noise variations. The four oscillators feature state-of-the-art phase noise, ranging from -119.5 dBc/Hz to -116.5 dBc/Hz at 1MHz offset for 18.2 GHz and 29.3 GHz carrier frequency, respectively. For each oscillator the phase noise variation is only <;2 dB over -20°C to 85°C temperature range and <;6 dB over the whole 47% tuning range.
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This paper describes a bank of four SiGe BiCMOS oscillators tailored to cover the 18.2-29.3 GHz frequency range, needed to tackle the needs of 5G communications. The Colpitts oscillator topology is leveraged to achieve a lower absolute phase noise compared to Class-C oscillators, at the expense of deteriorated figure of merit. Benefiting from the proper technology choice, a careful tank design was carried out to maximize Q, minimize KVCOand phase noise variations. The four oscillators feature state-of-the-art phase noise, ranging from -119.5 dBc/Hz to -116.5 dBc/Hz at 1MHz offset for 18.2 GHz and 29.3 GHz carrier frequency, respectively. For each oscillator the phase noise variation is only <;2 dB over -20°C to 85°C temperature range and <;6 dB over the whole 47% tuning range.
Key concepts: Colpitts oscillator, Phase noise, dBc, BiCMOS, Voltage-controlled oscillator, Electrical engineering, Offset (computer science), Frequency offset