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A fully integrated, low noise and low power BiCMOS front-end readout system for capacitive detectors

Bipolar transistors are interesting for low noise front-end readout systems when high speed and low power consumption are required. This paper presents a fully integrated, low noise front-end design for the future Large Hadron Collider (LHC) experiments using the radiation hard SOI BiCMOS process. I...

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Detalles Bibliográficos
Autores principales: Guo, C C, Schmitt, P, Deptuch, G, Hu, Y Y
Lenguaje:eng
Publicado: 2001
Materias:
Acceso en línea:https://dx.doi.org/10.1023/A:1011283409193
http://cds.cern.ch/record/535989
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author Guo, C C
Schmitt, P
Deptuch, G
Hu, Y Y
author_facet Guo, C C
Schmitt, P
Deptuch, G
Hu, Y Y
author_sort Guo, C C
collection CERN
description Bipolar transistors are interesting for low noise front-end readout systems when high speed and low power consumption are required. This paper presents a fully integrated, low noise front-end design for the future Large Hadron Collider (LHC) experiments using the radiation hard SOI BiCMOS process. In the present prototype, the input-referred Equivalent Noise Charge (ENC) of 990 electrons (r.m.s.) for 12 pF detector capacitance with a shaping time of 25 ns and power consumption of 1.4 mW/channel has been measured. The gain of this front-end is 90 mV/MIP (Minimum Ionisation Particle: 1 MIP=3.84 fC) with non-linearity of less than 3% and linear input dynamic range is +or-5 MIP. These results are obtained at room temperature and before irradiation. The measurements after irradiations by high intensity pion beam with an integrated flux of 1.0*10/sup 14/ pions/cm/sup 2/ are also presented in this paper. (10 refs).
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language eng
publishDate 2001
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spelling cern-5359892019-09-30T06:29:59Zdoi:10.1023/A:1011283409193http://cds.cern.ch/record/535989engGuo, C CSchmitt, PDeptuch, GHu, Y YA fully integrated, low noise and low power BiCMOS front-end readout system for capacitive detectorsDetectors and Experimental TechniquesBipolar transistors are interesting for low noise front-end readout systems when high speed and low power consumption are required. This paper presents a fully integrated, low noise front-end design for the future Large Hadron Collider (LHC) experiments using the radiation hard SOI BiCMOS process. In the present prototype, the input-referred Equivalent Noise Charge (ENC) of 990 electrons (r.m.s.) for 12 pF detector capacitance with a shaping time of 25 ns and power consumption of 1.4 mW/channel has been measured. The gain of this front-end is 90 mV/MIP (Minimum Ionisation Particle: 1 MIP=3.84 fC) with non-linearity of less than 3% and linear input dynamic range is +or-5 MIP. These results are obtained at room temperature and before irradiation. The measurements after irradiations by high intensity pion beam with an integrated flux of 1.0*10/sup 14/ pions/cm/sup 2/ are also presented in this paper. (10 refs).oai:cds.cern.ch:5359892001
spellingShingle Detectors and Experimental Techniques
Guo, C C
Schmitt, P
Deptuch, G
Hu, Y Y
A fully integrated, low noise and low power BiCMOS front-end readout system for capacitive detectors
title A fully integrated, low noise and low power BiCMOS front-end readout system for capacitive detectors
title_full A fully integrated, low noise and low power BiCMOS front-end readout system for capacitive detectors
title_fullStr A fully integrated, low noise and low power BiCMOS front-end readout system for capacitive detectors
title_full_unstemmed A fully integrated, low noise and low power BiCMOS front-end readout system for capacitive detectors
title_short A fully integrated, low noise and low power BiCMOS front-end readout system for capacitive detectors
title_sort fully integrated, low noise and low power bicmos front-end readout system for capacitive detectors
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1023/A:1011283409193
http://cds.cern.ch/record/535989
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