This paper presents a Fast-Tracker front-end (FTfe) for ATLAS small-diameter Muon Drift Tube (sMDT) detectors of the Phase-II Upgrade HL-LHC. This design addresses the higher rate capability required by sMDT and reduces the dead-time below the maximum drift time, further increasing the efficiency. The front-end ensures a fast baseline restoration with a reset interval of maximum 160 ns, so that the secondary spurious pulses are avoided and the successive muon signals can be detected soon and correctly. The device has been designed in 1V-28nm-CMOS technology; 4.7mV/fC sensitivity and 0.24fC ENC are achieved with a core area of 0.03mm2
Mangiagalli, L., Pipino, A., De Matteis, M., Resta, F., Baschirotto, A., Kroha, H., et al. (2019). A 28 nm Fast Tracker Front-End for Phase-II Atlas sMDT Detectors. In 2018 Topical Workshop on Electronics for Particle Physics, TWEPP 2018 (pp.1-5). Sissa Medialab Srl [10.22323/1.343.0091].
A 28 nm Fast Tracker Front-End for Phase-II Atlas sMDT Detectors
Mangiagalli, Luca;Pipino, Alessandra;De Matteis, Marcello;Resta, Federica;Baschirotto, Andrea;
2019
Abstract
This paper presents a Fast-Tracker front-end (FTfe) for ATLAS small-diameter Muon Drift Tube (sMDT) detectors of the Phase-II Upgrade HL-LHC. This design addresses the higher rate capability required by sMDT and reduces the dead-time below the maximum drift time, further increasing the efficiency. The front-end ensures a fast baseline restoration with a reset interval of maximum 160 ns, so that the secondary spurious pulses are avoided and the successive muon signals can be detected soon and correctly. The device has been designed in 1V-28nm-CMOS technology; 4.7mV/fC sensitivity and 0.24fC ENC are achieved with a core area of 0.03mm2File | Dimensione | Formato | |
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