2021
DOI: 10.1109/jssc.2021.3106514
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A 32-kHz-Reference 2.4-GHz Fractional-N Oversampling PLL With 200-kHz Loop Bandwidth

Abstract: In this article, a mixed-signal, 32-kHz referencebased 2.4-GHz fractional-N over-sampling phase-locked loop (OSPLL) is proposed. Different from the conventional 1× sampling PLL, which only uses zero-crossing timing information of the reference signal, the proposed OSPLL fully utilizes both the voltage and timing domain information of the reference signal and realizes oversampling ratio (OSR) times phase detection (PD) in one reference cycle. The proposed OSPLL employs the digitalto-analog converter (DAC) to co… Show more

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Cited by 12 publications
(2 citation statements)
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References 39 publications
(52 reference statements)
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“…edges with an ADC [6], [46], [52]- [54] appears a promising solution, while its fractional-N operation may rely on a digitalto-time converter (DTC) [9], [10], [55]- [57] or DAC [5], [46], [53], [58]. Considering such a conceptual ADC-based TDC 'sampling' the oscillator's slope, its TDC gain, t tdc (unit: s/bit), is derived as…”
Section: ) Adc-based Tdcmentioning
confidence: 99%
“…edges with an ADC [6], [46], [52]- [54] appears a promising solution, while its fractional-N operation may rely on a digitalto-time converter (DTC) [9], [10], [55]- [57] or DAC [5], [46], [53], [58]. Considering such a conceptual ADC-based TDC 'sampling' the oscillator's slope, its TDC gain, t tdc (unit: s/bit), is derived as…”
Section: ) Adc-based Tdcmentioning
confidence: 99%
“…The architecture of NCO is shown in Fig. 7 LF parameters, proportional parameter (K p ) and integral parameter (K i ) are set to control the loop gain and stability performance [28,29].…”
Section: Proposed Carrier Recoverymentioning
confidence: 99%