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This book introduces low-noise and low-power design techniques for
phase-locked loops and their building blocks. It summarizes the
noise reduction techniques for fractional-N PLL design and
introduces a novel capacitive-quadrature coupling technique for
multi-phase signal generation. The capacitive-coupling technique
has been validated through silicon implementation and can provide
low phase-noise and accurate I-Q phase matching, with low power
consumption from a super low supply voltage. Readers will be
enabled to pick one of the most suitable QVCO circuit structures
for their own designs, without additional effort to look for the
optimal circuit structure and device parameters.
This book introduces low-noise and low-power design techniques for
phase-locked loops and their building blocks. It summarizes the
noise reduction techniques for fractional-N PLL design and
introduces a novel capacitive-quadrature coupling technique for
multi-phase signal generation. The capacitive-coupling technique
has been validated through silicon implementation and can provide
low phase-noise and accurate I-Q phase matching, with low power
consumption from a super low supply voltage. Readers will be
enabled to pick one of the most suitable QVCO circuit structures
for their own designs, without additional effort to look for the
optimal circuit structure and device parameters.
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