异步通信
计算机科学
桥接(联网)
炸薯条
同步(交流)
背景(考古学)
过程(计算)
计算机硬件
嵌入式系统
电信
操作系统
生物
频道(广播)
计算机网络
古生物学
作者
D. Dobrijević,P. P. Allport,Ignacio Asensi Tortajada,D.V. Berlea,D. Bortoletto,C. M. Buttar,F. Dachs,V. Dao,H. Denizli,L. Flores Sanz De Acedo,A. Gabrielli,L. Gonella,V. González,M. LeBlanc,Marcos Vázquez Núñez,K. Y. Oyulmaz,H. Pernegger,F. Piro,P. Riedler,H. Sandaker
标识
DOI:10.1088/1748-0221/18/03/c03013
摘要
Abstract The planned MALTA3 DMAPS designed in the standard TowerJazz 180 nm imaging process will implement the numerous process modifications, as well as front-end changes in order to boost the charge collection efficiency after the targeted fluence of 1 × 10 15 1 MeV n eq /cm 2 . The effectiveness of these changes have been demonstrated with recent measurements of the full size MALTA2 chip. With the original MALTA concept being fully asynchronous, a small-scale MiniMALTA demonstrator chip has been developed with the intention of bridging the gap between the asynchronous pixel matrix, and the synchronous DAQ. This readout architecture will serve as a baseline for MALTA3, with focus on improved timing performance. The synchronization memory has been upgraded to allow clock speeds of up to 1.28 GHz, with the goal of achieving a sub-nanosecond on-chip timing resolution. The subsequent digital readout chain has been modified and will be discussed in the context of the overall sensor architecture.
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