A 66 MHz, 32-channel analog memory circuit with data selection for fast silicon detectors
Identifieur interne : 00D873 ( Main/Exploration ); précédent : 00D872; suivant : 00D874A 66 MHz, 32-channel analog memory circuit with data selection for fast silicon detectors
Auteurs : D. Munday [Royaume-Uni] ; A. Parker [Royaume-Uni] ; F. Anghinolfi [Suisse] ; P. Aspell [Suisse] ; M. Campbell [Suisse] ; P. Jarron [Suisse] ; E. H. M. Heijne [Suisse] ; G. Meddeler [Suisse] ; J. C. Santiard [Suisse] ; H. Verweij [Suisse] ; C. Gössling [Allemagne] ; R. Bonino [Suisse] ; A. G. Clark [Suisse] ; C. Couyoumtzelis [Suisse] ; D. La Marra [Suisse] ; X. Wu [Suisse] ; G. Moorhead [Australie] ; A. Weidberg [Royaume-Uni] ; D. Campbell [Royaume-Uni] ; P. Murray [Royaume-Uni] ; P. Seller [Royaume-Uni] ; R. Stevens [Royaume-Uni] ; E. Beuville [France] ; M. Rouger [France] ; J. Teiger [France]Source :
- Nuclear Inst. and Methods in Physics Research, A [ 0168-9002 ] ; 1993.
Descripteurs français
- Wicri :
- topic : Traitement des données.
English descriptors
- KwdEn :
- Analog, Analog array, Analog information, Analog memories, Analog memory, Analog memory array, Analog memory chip, Analog memory circuit, Anghinolfi, Block diagram, Capacitor, Cern report cern, Clock feedthrough, Clock period, Como conf, Controller cells, Controller diagram, Data processing, Data selection, Dead time, Detector, Dynamic range, Electrical measurements, Energy deposition spectrum, Hadron collider environment, Harp, Harp architecture, Heijne, Icon preamplifier, Ieee nucl science symp conf, Input charge, Jarron, Large number, Latency period, Linearity, Lvli, Maximum latency time, Maximum number, Memory array, Memory cells, Minimum number, More detail, Nucl phys, Output signal, Pedestal, Pedestal nonuniformity, Pedestal variation, Pedestal variations, Power consumption, Power dissipation, Preamplifier, Previous event, Prototype version, Radioactive source, Random noise, Readout, Same time, Sensor, Sensor element, Sensor elements, Signal charge, Silicon, Silicon detector, Sitp, Sitp detector, Storage capacitor, Successive time slices, Time slots, Timing diagram, Transmission gates, Voltage swing.
- Teeft :
- Analog, Analog array, Analog information, Analog memories, Analog memory, Analog memory array, Analog memory chip, Analog memory circuit, Anghinolfi, Block diagram, Capacitor, Cern report cern, Clock feedthrough, Clock period, Como conf, Controller cells, Controller diagram, Data processing, Data selection, Dead time, Detector, Dynamic range, Electrical measurements, Energy deposition spectrum, Hadron collider environment, Harp, Harp architecture, Heijne, Icon preamplifier, Ieee nucl science symp conf, Input charge, Jarron, Large number, Latency period, Linearity, Lvli, Maximum latency time, Maximum number, Memory array, Memory cells, Minimum number, More detail, Nucl phys, Output signal, Pedestal, Pedestal nonuniformity, Pedestal variation, Pedestal variations, Power consumption, Power dissipation, Preamplifier, Previous event, Prototype version, Radioactive source, Random noise, Readout, Same time, Sensor, Sensor element, Sensor elements, Signal charge, Silicon, Silicon detector, Sitp, Sitp detector, Storage capacitor, Successive time slices, Time slots, Timing diagram, Transmission gates, Voltage swing.
Abstract
Abstract: An analog memory array with 64 memory cells for each channel has been designed and manufactured in CMOS. A new skip logic controller allows to write at 66 MHz without dead time and to read out at a lower frequency simultaneously. The input circuit is charge-sensitive and integrates continuously. Pedestal nonuniformity is 1.4 mV rms from cell-to-cell and 3.5 mV rms between channels. The linearity range is −2.5 to +1.5 V, which corresponds to 11 bits. The chip has been used in a particle detection test.
Url:
DOI: 10.1016/0168-9002(93)90339-J
Affiliations:
- Allemagne, Australie, France, Royaume-Uni, Suisse
- Angleterre, Angleterre de l'Est, District d'Arnsberg, Oxfordshire, Rhénanie-du-Nord-Westphalie, Victoria (État), Île-de-France
- Cambridge, Dortmund, Gif-sur-Yvette, Melbourne, Oxford
- Université de Cambridge, Université de Melbourne
Links toward previous steps (curation, corpus...)
- to stream Istex, to step Corpus: 000372
- to stream Istex, to step Curation: 000372
- to stream Istex, to step Checkpoint: 002988
- to stream Main, to step Merge: 00EA94
- to stream Main, to step Curation: 00D873
Le document en format XML
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<term>Analog array</term>
<term>Analog information</term>
<term>Analog memories</term>
<term>Analog memory</term>
<term>Analog memory array</term>
<term>Analog memory chip</term>
<term>Analog memory circuit</term>
<term>Anghinolfi</term>
<term>Block diagram</term>
<term>Capacitor</term>
<term>Cern report cern</term>
<term>Clock feedthrough</term>
<term>Clock period</term>
<term>Como conf</term>
<term>Controller cells</term>
<term>Controller diagram</term>
<term>Data processing</term>
<term>Data selection</term>
<term>Dead time</term>
<term>Detector</term>
<term>Dynamic range</term>
<term>Electrical measurements</term>
<term>Energy deposition spectrum</term>
<term>Hadron collider environment</term>
<term>Harp</term>
<term>Harp architecture</term>
<term>Heijne</term>
<term>Icon preamplifier</term>
<term>Ieee nucl science symp conf</term>
<term>Input charge</term>
<term>Jarron</term>
<term>Large number</term>
<term>Latency period</term>
<term>Linearity</term>
<term>Lvli</term>
<term>Maximum latency time</term>
<term>Maximum number</term>
<term>Memory array</term>
<term>Memory cells</term>
<term>Minimum number</term>
<term>More detail</term>
<term>Nucl phys</term>
<term>Output signal</term>
<term>Pedestal</term>
<term>Pedestal nonuniformity</term>
<term>Pedestal variation</term>
<term>Pedestal variations</term>
<term>Power consumption</term>
<term>Power dissipation</term>
<term>Preamplifier</term>
<term>Previous event</term>
<term>Prototype version</term>
<term>Radioactive source</term>
<term>Random noise</term>
<term>Readout</term>
<term>Same time</term>
<term>Sensor</term>
<term>Sensor element</term>
<term>Sensor elements</term>
<term>Signal charge</term>
<term>Silicon</term>
<term>Silicon detector</term>
<term>Sitp</term>
<term>Sitp detector</term>
<term>Storage capacitor</term>
<term>Successive time slices</term>
<term>Time slots</term>
<term>Timing diagram</term>
<term>Transmission gates</term>
<term>Voltage swing</term>
</keywords>
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<term>Block diagram</term>
<term>Capacitor</term>
<term>Cern report cern</term>
<term>Clock feedthrough</term>
<term>Clock period</term>
<term>Como conf</term>
<term>Controller cells</term>
<term>Controller diagram</term>
<term>Data processing</term>
<term>Data selection</term>
<term>Dead time</term>
<term>Detector</term>
<term>Dynamic range</term>
<term>Electrical measurements</term>
<term>Energy deposition spectrum</term>
<term>Hadron collider environment</term>
<term>Harp</term>
<term>Harp architecture</term>
<term>Heijne</term>
<term>Icon preamplifier</term>
<term>Ieee nucl science symp conf</term>
<term>Input charge</term>
<term>Jarron</term>
<term>Large number</term>
<term>Latency period</term>
<term>Linearity</term>
<term>Lvli</term>
<term>Maximum latency time</term>
<term>Maximum number</term>
<term>Memory array</term>
<term>Memory cells</term>
<term>Minimum number</term>
<term>More detail</term>
<term>Nucl phys</term>
<term>Output signal</term>
<term>Pedestal</term>
<term>Pedestal nonuniformity</term>
<term>Pedestal variation</term>
<term>Pedestal variations</term>
<term>Power consumption</term>
<term>Power dissipation</term>
<term>Preamplifier</term>
<term>Previous event</term>
<term>Prototype version</term>
<term>Radioactive source</term>
<term>Random noise</term>
<term>Readout</term>
<term>Same time</term>
<term>Sensor</term>
<term>Sensor element</term>
<term>Sensor elements</term>
<term>Signal charge</term>
<term>Silicon</term>
<term>Silicon detector</term>
<term>Sitp</term>
<term>Sitp detector</term>
<term>Storage capacitor</term>
<term>Successive time slices</term>
<term>Time slots</term>
<term>Timing diagram</term>
<term>Transmission gates</term>
<term>Voltage swing</term>
</keywords>
<keywords scheme="Wicri" type="topic" xml:lang="fr"><term>Traitement des données</term>
</keywords>
</textClass>
<langUsage><language ident="en">en</language>
</langUsage>
</profileDesc>
</teiHeader>
<front><div type="abstract" xml:lang="en">Abstract: An analog memory array with 64 memory cells for each channel has been designed and manufactured in CMOS. A new skip logic controller allows to write at 66 MHz without dead time and to read out at a lower frequency simultaneously. The input circuit is charge-sensitive and integrates continuously. Pedestal nonuniformity is 1.4 mV rms from cell-to-cell and 3.5 mV rms between channels. The linearity range is −2.5 to +1.5 V, which corresponds to 11 bits. The chip has been used in a particle detection test.</div>
</front>
</TEI>
<affiliations><list><country><li>Allemagne</li>
<li>Australie</li>
<li>France</li>
<li>Royaume-Uni</li>
<li>Suisse</li>
</country>
<region><li>Angleterre</li>
<li>Angleterre de l'Est</li>
<li>District d'Arnsberg</li>
<li>Oxfordshire</li>
<li>Rhénanie-du-Nord-Westphalie</li>
<li>Victoria (État)</li>
<li>Île-de-France</li>
</region>
<settlement><li>Cambridge</li>
<li>Dortmund</li>
<li>Gif-sur-Yvette</li>
<li>Melbourne</li>
<li>Oxford</li>
</settlement>
<orgName><li>Université de Cambridge</li>
<li>Université de Melbourne</li>
</orgName>
</list>
<tree><country name="Royaume-Uni"><region name="Angleterre"><name sortKey="Munday, D" sort="Munday, D" uniqKey="Munday D" first="D." last="Munday">D. Munday</name>
</region>
<name sortKey="Campbell, D" sort="Campbell, D" uniqKey="Campbell D" first="D." last="Campbell">D. Campbell</name>
<name sortKey="Murray, P" sort="Murray, P" uniqKey="Murray P" first="P." last="Murray">P. Murray</name>
<name sortKey="Parker, A" sort="Parker, A" uniqKey="Parker A" first="A." last="Parker">A. Parker</name>
<name sortKey="Seller, P" sort="Seller, P" uniqKey="Seller P" first="P." last="Seller">P. Seller</name>
<name sortKey="Stevens, R" sort="Stevens, R" uniqKey="Stevens R" first="R." last="Stevens">R. Stevens</name>
<name sortKey="Weidberg, A" sort="Weidberg, A" uniqKey="Weidberg A" first="A." last="Weidberg">A. Weidberg</name>
</country>
<country name="Suisse"><noRegion><name sortKey="Anghinolfi, F" sort="Anghinolfi, F" uniqKey="Anghinolfi F" first="F." last="Anghinolfi">F. Anghinolfi</name>
</noRegion>
<name sortKey="Aspell, P" sort="Aspell, P" uniqKey="Aspell P" first="P." last="Aspell">P. Aspell</name>
<name sortKey="Bonino, R" sort="Bonino, R" uniqKey="Bonino R" first="R." last="Bonino">R. Bonino</name>
<name sortKey="Campbell, M" sort="Campbell, M" uniqKey="Campbell M" first="M." last="Campbell">M. Campbell</name>
<name sortKey="Clark, A G" sort="Clark, A G" uniqKey="Clark A" first="A. G." last="Clark">A. G. Clark</name>
<name sortKey="Couyoumtzelis, C" sort="Couyoumtzelis, C" uniqKey="Couyoumtzelis C" first="C." last="Couyoumtzelis">C. Couyoumtzelis</name>
<name sortKey="Heijne, E H M" sort="Heijne, E H M" uniqKey="Heijne E" first="E. H. M." last="Heijne">E. H. M. Heijne</name>
<name sortKey="Jarron, P" sort="Jarron, P" uniqKey="Jarron P" first="P." last="Jarron">P. Jarron</name>
<name sortKey="La Marra, D" sort="La Marra, D" uniqKey="La Marra D" first="D." last="La Marra">D. La Marra</name>
<name sortKey="Meddeler, G" sort="Meddeler, G" uniqKey="Meddeler G" first="G." last="Meddeler">G. Meddeler</name>
<name sortKey="Santiard, J C" sort="Santiard, J C" uniqKey="Santiard J" first="J. C." last="Santiard">J. C. Santiard</name>
<name sortKey="Verweij, H" sort="Verweij, H" uniqKey="Verweij H" first="H." last="Verweij">H. Verweij</name>
<name sortKey="Wu, X" sort="Wu, X" uniqKey="Wu X" first="X." last="Wu">X. Wu</name>
</country>
<country name="Allemagne"><region name="Rhénanie-du-Nord-Westphalie"><name sortKey="Gossling, C" sort="Gossling, C" uniqKey="Gossling C" first="C." last="Gössling">C. Gössling</name>
</region>
</country>
<country name="Australie"><region name="Victoria (État)"><name sortKey="Moorhead, G" sort="Moorhead, G" uniqKey="Moorhead G" first="G." last="Moorhead">G. Moorhead</name>
</region>
</country>
<country name="France"><region name="Île-de-France"><name sortKey="Beuville, E" sort="Beuville, E" uniqKey="Beuville E" first="E." last="Beuville">E. Beuville</name>
</region>
<name sortKey="Rouger, M" sort="Rouger, M" uniqKey="Rouger M" first="M." last="Rouger">M. Rouger</name>
<name sortKey="Teiger, J" sort="Teiger, J" uniqKey="Teiger J" first="J." last="Teiger">J. Teiger</name>
</country>
</tree>
</affiliations>
</record>
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