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Design of two digital radiation tolerant integrated circuits for high energy physics experiments data readout

High Energy Physics research (HEP) involves the design of readout electron- ics for its experiments, which generate a high radiation ¯eld in the detectors. The several integrated circuits placed in the future Large Hadron Collider (LHC) experiments' environment have to resist the radiation and...

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Autor principal: Bonacini, Sandro
Lenguaje:eng
Publicado: CERN 2003
Materias:
Acceso en línea:http://cds.cern.ch/record/836431
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author Bonacini, Sandro
author_facet Bonacini, Sandro
author_sort Bonacini, Sandro
collection CERN
description High Energy Physics research (HEP) involves the design of readout electron- ics for its experiments, which generate a high radiation ¯eld in the detectors. The several integrated circuits placed in the future Large Hadron Collider (LHC) experiments' environment have to resist the radiation and carry out their normal operation. In this thesis I will describe in detail what, during my 10-months partic- ipation in the digital section of the Microelectronics group at CERN, I had the possibility to work on: - The design of a radiation-tolerant data readout digital integrated cir- cuit in a 0.25 ¹m CMOS technology, called \the Kchip", for the CMS preshower front-end system. This will be described in Chapter 3. - The design of a radiation-tolerant SRAM integrated circuit in a 0.13 ¹m CMOS technology, for technology radiation testing purposes and fu- ture applications in the HEP ¯eld. The SRAM will be described in Chapter 4. All the work has carried out under the supervision and with the help of Dr. Kostas Kloukinas and the section leader Dr. Alessandro Marchioro.
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spelling cern-8364312019-09-30T06:29:59Zhttp://cds.cern.ch/record/836431engBonacini, SandroDesign of two digital radiation tolerant integrated circuits for high energy physics experiments data readoutEngineeringHigh Energy Physics research (HEP) involves the design of readout electron- ics for its experiments, which generate a high radiation ¯eld in the detectors. The several integrated circuits placed in the future Large Hadron Collider (LHC) experiments' environment have to resist the radiation and carry out their normal operation. In this thesis I will describe in detail what, during my 10-months partic- ipation in the digital section of the Microelectronics group at CERN, I had the possibility to work on: - The design of a radiation-tolerant data readout digital integrated cir- cuit in a 0.25 ¹m CMOS technology, called \the Kchip", for the CMS preshower front-end system. This will be described in Chapter 3. - The design of a radiation-tolerant SRAM integrated circuit in a 0.13 ¹m CMOS technology, for technology radiation testing purposes and fu- ture applications in the HEP ¯eld. The SRAM will be described in Chapter 4. All the work has carried out under the supervision and with the help of Dr. Kostas Kloukinas and the section leader Dr. Alessandro Marchioro.CERNCERN-THESIS-2005-026oai:cds.cern.ch:8364312003
spellingShingle Engineering
Bonacini, Sandro
Design of two digital radiation tolerant integrated circuits for high energy physics experiments data readout
title Design of two digital radiation tolerant integrated circuits for high energy physics experiments data readout
title_full Design of two digital radiation tolerant integrated circuits for high energy physics experiments data readout
title_fullStr Design of two digital radiation tolerant integrated circuits for high energy physics experiments data readout
title_full_unstemmed Design of two digital radiation tolerant integrated circuits for high energy physics experiments data readout
title_short Design of two digital radiation tolerant integrated circuits for high energy physics experiments data readout
title_sort design of two digital radiation tolerant integrated circuits for high energy physics experiments data readout
topic Engineering
url http://cds.cern.ch/record/836431
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