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Performance and stability characterization of a 3rd order continuous-time delta-sigma modulator with active time-constant tuning

  • We present the results of an extensive characterization of the performance and stability of a third-order continuous-time delta-sigma modulator with active coefficient error compensation. Using our previously published coefficient tuning technique, process variation induced R-C time-constant (TC) errors in the forward signal path can be compensated indirectly using continuously tunable DACs in the feedback path. To validate our technique experimentally with a range of real TC variations, we designed a modulator with discretely configurable integration capacitor arrays in a 0.35-μm CMOS process. We configured the capacitors of the fabricated device for a range of total TC variations from -28.4 % to +19.3 % and measured the signal-to-noise ratio (SNR) as a function of the input amplitude before and after compensating the variations electrically using the feedback DACs. The results show that our tuning technique is capable of restoring the desired nominal modulator performance over the entire parameter variation range, including the system’s nominal maximum stable amplitude (MSA).

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Metadaten
Author of HS ReutlingenWolfer, Tobias; Hennig, Eckhard
DOI:https://doi.org/10.1109/NEWCAS57931.2023.10198152
ISBN:979-8-3503-0024-6
ISSN:2474-9672
Erschienen in:21st IEEE Interregional NEWCAS Conference (NEWCAS 2023) : 26-28 June 2023, Edinburgh, proceedings
Publisher:IEEE
Place of publication:Piscataway, NJ
Document Type:Conference proceeding
Language:English
Publication year:2023
Tag:CMOS process; array signal processing; capacitors; delta-sigma modulation; electric variables measurement; error compensation; modulation
Page Number:4
DDC classes:620 Ingenieurwissenschaften und Maschinenbau
Open access?:Nein
Licence (German):License Logo  In Copyright - Urheberrechtlich geschützt