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Concepts and methods in optimization of integrated LC VCOs

IEEE Journal of Solid-State Circuits · 2001 · Vol. 36(6) · pp. 896–909
Donhee HamAli Hajimiri

Abstract

Underlying physical mechanisms controlling the noise properties of oscillators are studied. This treatment shows the importance of inductance selection for oscillator noise optimization. A design strategy centered around an inductance selection scheme is executed using a practical graphical optimization method to optimize phase noise subject to design constraints such as power dissipation, tank amplitude, tuning range, startup condition, and diameters of spiral inductors. The optimization technique is demonstrated through a design example, leading to a 2.4-GHz fully integrated, LC voltage-controlled oscillator (VCO) implemented using 0.35-/spl mu/m MOS transistors. The measured phase-noise values are -121, -117, and -115 dBc/Hz at 600-kHz offset from 1.91, 2.03, and 2.60-GHz carriers, respectively. The VCO dissipates 4 mA from a 2.5-V supply voltage. The inversion mode MOSCAP tuning is used to achieve 26% of tuning range. Two figures of merit for performance comparison of various oscillators are introduced and used to compare this work to previously reported results.

Radio Frequency Integrated Circuit DesignAdvancements in PLL and VCO TechnologiesElectromagnetic Compatibility and Noise SuppressionPhase noiseVoltage-controlled oscillatorInductanceFigure of meritInductorElectronic engineeringdBcVoltageDissipationElectrical engineering

Funding

  • Massachusetts Institute of Technology
  • California Institute of Technology
Citations
680
FWCI
41.80
field-weighted impact
References
39
Percentile
100%
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Citations per year
References
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IEEE Journal of Solid-State Circuits · 1999 · 917 citations
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IEEE Journal of Solid-State Circuits · 1998 · 2,354 citations
Analysis, design, and optimization of spiral inductors and transformers for Si RF ICs
IEEE Journal of Solid-State Circuits · 1998 · 716 citations
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