Multi-core LC-tank oscillators have attracted a great deal of attention since their capability to achieve ultra-low phase noise in a scalable and power-efficient way. This brief presents a study of 1/f2 phase noise in active-coupling oscillators. A complete frequency domain analysis is proposed to describe the steady-state oscillators amplitude and phase. Closed-form formulas are derived for phase noise degradation caused by resonance frequency mismatches between the LC-tanks. The theoretical analysis is first validated through extensive simulations and then exploited to compare the robustness to LC-tank frequency mismatches in active- and resistive-coupling oscillators, proving the superior performance of the latter.

1/f2Phase Noise Analysis in Active-Coupling LC-Tank Oscillators With Frequency Mismatch

Riccardi D.;Franceschin A.;Mazzanti A.
2022-01-01

Abstract

Multi-core LC-tank oscillators have attracted a great deal of attention since their capability to achieve ultra-low phase noise in a scalable and power-efficient way. This brief presents a study of 1/f2 phase noise in active-coupling oscillators. A complete frequency domain analysis is proposed to describe the steady-state oscillators amplitude and phase. Closed-form formulas are derived for phase noise degradation caused by resonance frequency mismatches between the LC-tanks. The theoretical analysis is first validated through extensive simulations and then exploited to compare the robustness to LC-tank frequency mismatches in active- and resistive-coupling oscillators, proving the superior performance of the latter.
2022
Inglese
69
2
319
323
5
Couplings; Degradation; Mathematical model; Oscillators; Phase noise; Resonant frequency; Synchronization
no
3
info:eu-repo/semantics/article
262
Riccardi, D.; Franceschin, A.; Mazzanti, A.
1 Contributo su Rivista::1.1 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1451912
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