In digital bang-bang phase-locked loops (BBPLLs), both the hard nonlinearity of the phase detector and the frequency granularity of the digitally controlled oscillator (DCO) can give rise to undesired tones or peaking in the output spectrum. This work derives the maximum ratio between DCO resolution and jitter, which avoids limit cycles, in the case of dominant DCO noise over reference noise. Moreover, the output jitter is expressed in closed form as a function of the loop parameters and latency, revealing the existence of a minimum and suggesting an optimum design criterion. Finally, an estimation of the BBPLL output spectrum taking into account the quantization noise is provided
This work introduces an accurate linearized model and phase noise spectral analysis of digital bang-...
This work introduces an accurate linearized model and phase noise spectral analysis of digital bang-...
Digital phase-locked loops based on bang-bang phase detectors are attractive candidates for low-jitt...
In digital bang-bang phase-locked loops (BBPLLs), both the hard nonlinearity of the phase detector ...
In digital bang-bang phase-locked loops (BBPLLs), both the hard nonlinearity of the phase detector ...
In digital bang-bang phase-locked loops (BBPLLs), both the hard nonlinearity of the phase detector ...
In digital bang-bang phase-locked loops (BBPLLs), both the hard nonlinearity of the phase detector ...
Digital phase-locked loops based on bang-bang phase detectors are attractive candidates for frequenc...
Digital phase-locked loops based on bang-bang phase detectors are attractive candidates for frequenc...
Digital phase-locked loops based on bang-bang phase detectors are attractive candidates for frequenc...
Digital phase-locked loops based on bang-bang phase detectors are attractive candidates for frequenc...
Digital phase-locked loops based on bang-bang phase detectors are attractive candidates for frequenc...
This work introduces an accurate linearized model and phase noise spectral analysis of digital bang-...
This work introduces an accurate linearized model and phase noise spectral analysis of digital bang-...
This work introduces an accurate linearized model and phase noise spectral analysis of digital bang-...
This work introduces an accurate linearized model and phase noise spectral analysis of digital bang-...
This work introduces an accurate linearized model and phase noise spectral analysis of digital bang-...
Digital phase-locked loops based on bang-bang phase detectors are attractive candidates for low-jitt...
In digital bang-bang phase-locked loops (BBPLLs), both the hard nonlinearity of the phase detector ...
In digital bang-bang phase-locked loops (BBPLLs), both the hard nonlinearity of the phase detector ...
In digital bang-bang phase-locked loops (BBPLLs), both the hard nonlinearity of the phase detector ...
In digital bang-bang phase-locked loops (BBPLLs), both the hard nonlinearity of the phase detector ...
Digital phase-locked loops based on bang-bang phase detectors are attractive candidates for frequenc...
Digital phase-locked loops based on bang-bang phase detectors are attractive candidates for frequenc...
Digital phase-locked loops based on bang-bang phase detectors are attractive candidates for frequenc...
Digital phase-locked loops based on bang-bang phase detectors are attractive candidates for frequenc...
Digital phase-locked loops based on bang-bang phase detectors are attractive candidates for frequenc...
This work introduces an accurate linearized model and phase noise spectral analysis of digital bang-...
This work introduces an accurate linearized model and phase noise spectral analysis of digital bang-...
This work introduces an accurate linearized model and phase noise spectral analysis of digital bang-...
This work introduces an accurate linearized model and phase noise spectral analysis of digital bang-...
This work introduces an accurate linearized model and phase noise spectral analysis of digital bang-...
Digital phase-locked loops based on bang-bang phase detectors are attractive candidates for low-jitt...