This work is concerned with the design and the characterization of front-end channels, developed in a 28 nm CMOS technology, conceived for the readout of pixel sensors in future, high-rate applications at the next generation facilities. Two front-end architectures are discussed. In the first one, an in-pixel flash ADC is exploited for the digitization of the signal, whereas the second one features a Time-over-Threshold (ToT) approach. A prototype including the ADC-based front-end has been submitted and the characterization of the chip is discussed in the paper. Simulation results relevant to the ToT-based architecture are reported.

(2024). 28 nm front-end channels for the readout of pixel sensors in future high-rate applications [journal article - articolo]. In JOURNAL OF INSTRUMENTATION. Retrieved from https://hdl.handle.net/10446/268710

28 nm front-end channels for the readout of pixel sensors in future high-rate applications

Gaioni, Luigi;Galliani, Andrea;Re, Valerio;Traversi, Gianluca
2024-04-02

Abstract

This work is concerned with the design and the characterization of front-end channels, developed in a 28 nm CMOS technology, conceived for the readout of pixel sensors in future, high-rate applications at the next generation facilities. Two front-end architectures are discussed. In the first one, an in-pixel flash ADC is exploited for the digitization of the signal, whereas the second one features a Time-over-Threshold (ToT) approach. A prototype including the ADC-based front-end has been submitted and the characterization of the chip is discussed in the paper. Simulation results relevant to the ToT-based architecture are reported.
articolo
2-apr-2024
Gaioni, Luigi; Galliani, Andrea; Ratti, L.; Re, Valerio; Traversi, Gianluca
(2024). 28 nm front-end channels for the readout of pixel sensors in future high-rate applications [journal article - articolo]. In JOURNAL OF INSTRUMENTATION. Retrieved from https://hdl.handle.net/10446/268710
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10446/268710
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