D. Francis
CERN
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Featured researches published by D. Francis.
Journal of Physics: Conference Series | 2015
J. Anderson; A. Borga; H. Boterenbrood; H. Chen; K. Chen; G. Drake; D. Francis; B. Gorini; Francesco Lanni; G. Lehmann Miotto; L. J. Levinson; J. Narevicius; Christian Plessl; A. Roich; S. Ryu; F. Schreuder; J. Schumacher; W. Vandelli; J. C. Vermeulen; J. Zhang
The ATLAS experiment at CERN is planning full deployment of a new unified optical link technology for connecting detector front end electronics on the timescale of the LHC Run 4 (2025). It is estimated that roughly 8000 GBT (GigaBit Transceiver) links, with transfer rates up to 10.24 Gbps, will replace existing links used for readout, detector control and distribution of timing and trigger information. A new class of devices will be needed to interface many GBT links to the rest of the trigger, data-acquisition and detector control systems. In this paper FELIX (Front End LInk eXchange) is presented, a PC-based device to route data from and to multiple GBT links via a high-performance general purpose network capable of a total throughput up to O(20 Tbps). FELIX implies architectural changes to the ATLAS data acquisition system, such as the use of industry standard COTS components early in the DAQ chain. Additionally the design and implementation of a FELIX demonstration platform is presented and hardware and software aspects will be discussed.
Journal of Instrumentation | 2016
J. Anderson; K. Bauer; A. Borga; H. Boterenbrood; H. Chen; K. Chen; G. Drake; M. Dönszelmann; D. Francis; D. Guest; B. Gorini; M. Joos; Francesco Lanni; G. Lehmann Miotto; L. J. Levinson; J. Narevicius; W. Panduro Vazquez; A. Roich; S. Ryu; F. Schreuder; J. Schumacher; W. Vandelli; J. C. Vermeulen; Daniel Whiteson; Weihao Wu; J. Zhang
The ATLAS Phase-I upgrade (2019) requires a Trigger and Data Acquisition (TDAQ) system able to trigger and record data from up to three times the nominal LHC instantaneous luminosity. The Front-End LInk eXchange (FELIX) system provides an infrastructure to achieve this in a scalable, detector agnostic and easily upgradeable way. It is a PC-based gateway, interfacing custom radiation tolerant optical links from front-end electronics, via PCIe Gen3 cards, to a commodity switched Ethernet or InfiniBand network. FELIX enables reducing custom electronics in favour of software running on commercial servers. The FELIX system, the design of the PCIe prototype card and the integration test results are presented in this paper.
Journal of Instrumentation | 2016
J. Anderson; A. Borga; H. Boterenbrood; H. Chen; K. Chen; G. Drake; M. Dönszelmann; D. Francis; B. Gorini; Francesco Lanni; G. Lehmann Miotto; L. J. Levinson; J. Narevicius; A. Roich; Soo Ryu; F. Schreuder; J. Schumacher; W. Vandelli; J. C. Vermeulen; Weihao Wu; Jinlong Zhang
For new detector and trigger systems to be installed in the ATLAS experiment after LHC Run 2, a new approach will be followed for Front-End electronics interfacing. The FELIX (Front-End LInk eXchange) system will function as gateway connecting: on one side to detector and trigger electronics links, as well as providing timing and trigger information; and on the other side a commodity switched network built using standard technology (either Ethernet or Infiniband). The new approach is described in this paper, and results achieved so far are presented.
ieee npss real time conference | 2016
J. Anderson; A. Borga; H. Boterenbrood; H. Chen; K. Chen; G. Drake; M. Dönszelmann; D. Francis; B. Gorini; D. Guest; Francesco Lanni; G. Lehmann Miotto; L. J. Levinson; J. Narevicius; A. Roich; Soo Ryu; F. Schreuder; Jörn Schumacher; W. Vandelli; J. C. Vermeulen; Weihao Wu; J. Zhang
From the ATLAS Phase-I upgrade and onward, new or upgraded detectors and trigger systems will be interfaced to the data acquisition, detector control and timing (TTC) systems by the Front-End Link eXchange (FELIX). FELIX is the core of the new ATLAS Trigger/DAQ architecture. Functioning as a router between custom serial links and a commodity network, FELIX is implemented by server PCs with commodity network interfaces and PCIe cards with large FPGAs and many high speed serial fiber transceivers. By separating data transport from data manipulation, the latter can be done by software in commodity servers attached to the network. Replacing traditional point-to-point links between Front-end components and the DAQ system by a switched network, FELIX provides scaling, flexibility uniformity and upgradability and reduces the diversity of custom hardware solutions in favour of software.
Archive | 2016
J. Narevicius; F. Schreuder; A. Borga; H. Boterenbrood; Daniel Guest; J "orn Schumacher; K. Chen; B. Gorini; H. Chen; J. Anderson; W. Vandelli; Lorne Levinson; Francesco Lanni; Mark Donszelmann; Gary Drake; Weihao Wu; Giovanna Lehmann Miotto; Jos Vermeulen; D. Francis; Jinlong Zhang; A. Roich
Archive | 2015
Jörn Schumacher; F. Schreuder; A. Borga; H. Boterenbrood; K. Chen; W. Vandelli; H. Chen; J. Anderson; Jos Vermeulen; Lorne Levinson; Francesco Lanni; B. Gorini; Gary Drake; Soo Ryu; Giovanna Lehmann Miotto; J. Narevicius; D. Francis; Jinlong Zhang; A. Roich