This work discusses the design, carried out in the framework of the INFN Falaphel project, of analog front-end circuits for future, high-rate pixel detector applications. In particular, two front-end architectures are being developed, one with Time-over-Threshold (ToT) digitization of the input signal and the other based on an in-pixel flash ADC featuring a novel, clocked comparator conceived to dramatically reduce the threshold dispersion of the front-end. The paper includes a description of the analog processors being developed. The main analog performance parameters, as obtained from circuit simulations and including equivalent noise charge and threshold dispersion, are reported.
(2023). 28 nm CMOS analog front-end channels for future pixel detectors [journal article - articolo]. In NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH. SECTION A, ACCELERATORS, SPECTROMETERS, DETECTORS AND ASSOCIATED EQUIPMENT. Retrieved from https://hdl.handle.net/10446/233882
28 nm CMOS analog front-end channels for future pixel detectors
Gaioni, Luigi;Fratus, Matteo;Galliani, Andrea;Manghisoni, Massimo;Re, Valerio;Riceputi, Elisa;Traversi, Gianluca
2023-01-01
Abstract
This work discusses the design, carried out in the framework of the INFN Falaphel project, of analog front-end circuits for future, high-rate pixel detector applications. In particular, two front-end architectures are being developed, one with Time-over-Threshold (ToT) digitization of the input signal and the other based on an in-pixel flash ADC featuring a novel, clocked comparator conceived to dramatically reduce the threshold dispersion of the front-end. The paper includes a description of the analog processors being developed. The main analog performance parameters, as obtained from circuit simulations and including equivalent noise charge and threshold dispersion, are reported.File | Dimensione del file | Formato | |
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