A Fast Locking 5.8-7.2-GHz Fractional-N Synthesizer With Sub-2-us Settling in 22-nm FDSOI

This letter presents a fast frequency hopping all-digital fractional-N synthesizer with linear frequency tuning word estimation and aggressive type-I and type-II loop settling. It has a linearized DCO allowing wide-band and closed-loop operation and employs digital zero-phase reset to reduce phase t...

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Veröffentlicht in:IEEE solid-state circuits letters 2020, Vol.3, p.546-549
Hauptverfasser: Prinzie, Jeffrey, Andrabi, Shuja, Beghein, Christophe, Cao, Changhua, Chen, Hsinhua, Guo, Xiaochuan, Strange, Jon, Tenbroek, Bernard
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Sprache:eng
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Zusammenfassung:This letter presents a fast frequency hopping all-digital fractional-N synthesizer with linear frequency tuning word estimation and aggressive type-I and type-II loop settling. It has a linearized DCO allowing wide-band and closed-loop operation and employs digital zero-phase reset to reduce phase transients during switch over due to type-I settling. The DCO gain is equalized by exploiting routing inductances and a hybrid binary-thermometric segmentation provides improved DNL performance for closed-loop operation in a 5.8-7.2-GHz range. The circuit was processed in a 22-nm FDSOI technology and achieves a settling time below 2~\mu \text{s} in a 200-MHz hopping range.
ISSN:2573-9603
2573-9603
DOI:10.1109/LSSC.2020.3036122