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A 65-nm CMOS Readout Channel Based on a Charge Amplifier With DTMOS Feedback for Dynamic Signal Compression

Articolo
Data di Pubblicazione:
2026
Citazione:
(2026). A 65-nm CMOS Readout Channel Based on a Charge Amplifier With DTMOS Feedback for Dynamic Signal Compression [journal article - articolo]. In IEEE TRANSACTIONS ON NUCLEAR SCIENCE. Retrieved from https://hdl.handle.net/10446/331171
Abstract:
This article presents the design and experimental characterization of a low-noise analog readout channel implemented in a commercial 65-nm CMOS technology. The circuit targets the readout of large-area silicon-strip detectors for astroparticle physics tracker applications and is based on a charge-sensitive amplifier followed by a unipolar semi-Gaussian time-invariant filter. Dynamic signal compression is achieved by exploiting the nonlinear behavior of a dynamic-threshold MOS capacitor in the amplifier feedback network, providing a gain that decreases with increasing input signal and enabling a wide input dynamic range while maintaining high resolution at low deposited charge. The amplifier also incorporates an enhanced Krummenacher feedback network that, through an additional bulk-controlled device, compensates detector leakage currents up to 200 nA. The design criteria and circuit architecture are described, with emphasis on the dynamic-threshold capacitor and the improved charge restoration network. Experimental results are presented to validate and support the proposed design and architectural choices.
Tipologia CRIS:
1.1.01 Articoli/Saggi in rivista - Journal Articles/Essays
Elenco autori:
Ghislotti, Luca; Lazzaroni, Paolo; Manghisoni, Massimo; Re, Valerio; Riceputi, Elisa; Ratti, Lodovico
Autori di Ateneo:
LAZZARONI Paolo
MANGHISONI Massimo
RE Valerio
RICEPUTI Elisa
Link alla scheda completa:
https://aisberg.unibg.it/handle/10446/331171
Pubblicato in:
IEEE TRANSACTIONS ON NUCLEAR SCIENCE
Journal
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Settori (2)


PE7_5 - (Micro- and nano-) electronic, optoelectronic and photonic components - (2024)

Settore IINF-01/A - Elettronica
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