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A low-power 10 bit ADC in a 0.25$\mu$m CMOS: design considerations and test results

This paper presents the design and test of a low power analog to digital converter implemented in a commercial 0.25 mu m CMOS technology. The circuit has been developed to serve as a building block in multi-channel data acquisition systems for high energy physics (HEP) applications. Therefore medium...

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Detalles Bibliográficos
Autores principales: Rivetti, A, Anelli, G, Anghinolfi, Francis, Mazza, G, Rotondo, F
Lenguaje:eng
Publicado: 2000
Materias:
Acceso en línea:http://cds.cern.ch/record/560391
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author Rivetti, A
Anelli, G
Anghinolfi, Francis
Mazza, G
Rotondo, F
author_facet Rivetti, A
Anelli, G
Anghinolfi, Francis
Mazza, G
Rotondo, F
author_sort Rivetti, A
collection CERN
description This paper presents the design and test of a low power analog to digital converter implemented in a commercial 0.25 mu m CMOS technology. The circuit has been developed to serve as a building block in multi-channel data acquisition systems for high energy physics (HEP) applications. Therefore medium resolution (10 bits), very low power consumption and high modularity are the key features of the design. In HEP experiments the resistance of the electronics to the ionizing radiation is often a primary issue. Hence the ADC has been laid-out using a radiation tolerant approach. The test results show that the chip operates as a full 10 bit converter up to a clock frequency of 30 MHz. No degradation in performance has been measured after a total dose of 10 Mrd (SiO/sub 2/). (7 refs).
id cern-560391
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2000
record_format invenio
spelling cern-5603912019-09-30T06:29:59Zhttp://cds.cern.ch/record/560391engRivetti, AAnelli, GAnghinolfi, FrancisMazza, GRotondo, FA low-power 10 bit ADC in a 0.25$\mu$m CMOS: design considerations and test resultsDetectors and Experimental TechniquesThis paper presents the design and test of a low power analog to digital converter implemented in a commercial 0.25 mu m CMOS technology. The circuit has been developed to serve as a building block in multi-channel data acquisition systems for high energy physics (HEP) applications. Therefore medium resolution (10 bits), very low power consumption and high modularity are the key features of the design. In HEP experiments the resistance of the electronics to the ionizing radiation is often a primary issue. Hence the ADC has been laid-out using a radiation tolerant approach. The test results show that the chip operates as a full 10 bit converter up to a clock frequency of 30 MHz. No degradation in performance has been measured after a total dose of 10 Mrd (SiO/sub 2/). (7 refs).oai:cds.cern.ch:5603912000
spellingShingle Detectors and Experimental Techniques
Rivetti, A
Anelli, G
Anghinolfi, Francis
Mazza, G
Rotondo, F
A low-power 10 bit ADC in a 0.25$\mu$m CMOS: design considerations and test results
title A low-power 10 bit ADC in a 0.25$\mu$m CMOS: design considerations and test results
title_full A low-power 10 bit ADC in a 0.25$\mu$m CMOS: design considerations and test results
title_fullStr A low-power 10 bit ADC in a 0.25$\mu$m CMOS: design considerations and test results
title_full_unstemmed A low-power 10 bit ADC in a 0.25$\mu$m CMOS: design considerations and test results
title_short A low-power 10 bit ADC in a 0.25$\mu$m CMOS: design considerations and test results
title_sort low-power 10 bit adc in a 0.25$\mu$m cmos: design considerations and test results
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/560391
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