We identify limitations of the models for phase noise in frequency dividers by Egan and by Phillips and present a new model applicable to both high frequency and low power frequency divider design. Further, we design both synchronous and asynchronous frequency divider test chips that allow us to observe experimentally the effects of noise accumulation, sampling frequency and biasing conditions on the total phase noise performance of frequency dividers. We use our measurements to validate the simulated values obtained by time domain phase noise analysis offered by the commercial simulator Spectre RF. The measured data show good agreement with the simulation result
The explosive growth of wireless communication market today has brought an increasing demand for hig...
This paper proposes a phase-noise analysis of injection-locked frequency dividers that are based on ...
This paper proposes a phase-noise analysis of injection-locked frequency dividers that are based on ...
We identify limitations of the models for phase noise in frequency dividers by Egan and by Phillips ...
We identify limitations of the models for phase noise in frequency dividers by Egan and by Phillips ...
We identify limitations of the models for phase noise in frequency dividers by Egan and by Phillips ...
Abstract — We identify limitations of the models for phase noise in frequency dividers by Egan and b...
We identify limitations of the models for phase noise in frequency dividers by Egan and by Phillips ...
We identify limitations of the models for phase noise in frequency dividers by Egan and by Phillips ...
This paper presents a physical derivation of phase noise in source-coupled-logic frequency dividers....
This paper presents a physical derivation of phase noise in source-coupled-logic frequency dividers....
This paper presents a physical derivation of phase noise in source-coupled-logic frequency dividers....
This paper presents a physical derivation of phase noise in source-coupled-logic frequency dividers....
Abstract—The phase noise of phase/frequency detectors can sig-nificantly raise the in-band phase noi...
This paper proposes a phase-noise analysis of injection-locked frequency dividers that are based on ...
The explosive growth of wireless communication market today has brought an increasing demand for hig...
This paper proposes a phase-noise analysis of injection-locked frequency dividers that are based on ...
This paper proposes a phase-noise analysis of injection-locked frequency dividers that are based on ...
We identify limitations of the models for phase noise in frequency dividers by Egan and by Phillips ...
We identify limitations of the models for phase noise in frequency dividers by Egan and by Phillips ...
We identify limitations of the models for phase noise in frequency dividers by Egan and by Phillips ...
Abstract — We identify limitations of the models for phase noise in frequency dividers by Egan and b...
We identify limitations of the models for phase noise in frequency dividers by Egan and by Phillips ...
We identify limitations of the models for phase noise in frequency dividers by Egan and by Phillips ...
This paper presents a physical derivation of phase noise in source-coupled-logic frequency dividers....
This paper presents a physical derivation of phase noise in source-coupled-logic frequency dividers....
This paper presents a physical derivation of phase noise in source-coupled-logic frequency dividers....
This paper presents a physical derivation of phase noise in source-coupled-logic frequency dividers....
Abstract—The phase noise of phase/frequency detectors can sig-nificantly raise the in-band phase noi...
This paper proposes a phase-noise analysis of injection-locked frequency dividers that are based on ...
The explosive growth of wireless communication market today has brought an increasing demand for hig...
This paper proposes a phase-noise analysis of injection-locked frequency dividers that are based on ...
This paper proposes a phase-noise analysis of injection-locked frequency dividers that are based on ...