UTBB-Based Single Transistor Image Sensor of Submicron Pixel Using Back Gate Modulation

Image sensor has developed for decades. Now, submicron photo sensor device with high performance is required. In this work, a UTBB (ultra-thin body and box) based single transistor image sensor has been investigated. The light collection and signal readout are accomplished by a single transistor, so...

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Autores principales: Liqiao Liu, Xiaoyan Liu, Gang Du
Formato: article
Lenguaje:EN
Publicado: IEEE 2019
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Acceso en línea:https://doaj.org/article/47c6fd62c405411fa9e95ebf2098fcbc
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spelling oai:doaj.org-article:47c6fd62c405411fa9e95ebf2098fcbc2021-11-19T00:01:07ZUTBB-Based Single Transistor Image Sensor of Submicron Pixel Using Back Gate Modulation2168-673410.1109/JEDS.2019.2937916https://doaj.org/article/47c6fd62c405411fa9e95ebf2098fcbc2019-01-01T00:00:00Zhttps://ieeexplore.ieee.org/document/8815756/https://doaj.org/toc/2168-6734Image sensor has developed for decades. Now, submicron photo sensor device with high performance is required. In this work, a UTBB (ultra-thin body and box) based single transistor image sensor has been investigated. The light collection and signal readout are accomplished by a single transistor, so the pixel of the UTBB image sensor can shrink down to the submicron. The main parameters impacting the performance of the UTBB image sensor such as back voltage, the thickness of the BOX, well doping concentration and well depth are investigated. Besides, the UTBB image sensor can achieve multi-resolution to adapt to different requirements. The performance of the UTBB image sensor is evaluated by TCAD simulations.Liqiao LiuXiaoyan LiuGang DuIEEEarticleUTBB image sensorsubmicron pixel sizeback gate modulationElectrical engineering. Electronics. Nuclear engineeringTK1-9971ENIEEE Journal of the Electron Devices Society, Vol 7, Pp 919-924 (2019)
institution DOAJ
collection DOAJ
language EN
topic UTBB image sensor
submicron pixel size
back gate modulation
Electrical engineering. Electronics. Nuclear engineering
TK1-9971
spellingShingle UTBB image sensor
submicron pixel size
back gate modulation
Electrical engineering. Electronics. Nuclear engineering
TK1-9971
Liqiao Liu
Xiaoyan Liu
Gang Du
UTBB-Based Single Transistor Image Sensor of Submicron Pixel Using Back Gate Modulation
description Image sensor has developed for decades. Now, submicron photo sensor device with high performance is required. In this work, a UTBB (ultra-thin body and box) based single transistor image sensor has been investigated. The light collection and signal readout are accomplished by a single transistor, so the pixel of the UTBB image sensor can shrink down to the submicron. The main parameters impacting the performance of the UTBB image sensor such as back voltage, the thickness of the BOX, well doping concentration and well depth are investigated. Besides, the UTBB image sensor can achieve multi-resolution to adapt to different requirements. The performance of the UTBB image sensor is evaluated by TCAD simulations.
format article
author Liqiao Liu
Xiaoyan Liu
Gang Du
author_facet Liqiao Liu
Xiaoyan Liu
Gang Du
author_sort Liqiao Liu
title UTBB-Based Single Transistor Image Sensor of Submicron Pixel Using Back Gate Modulation
title_short UTBB-Based Single Transistor Image Sensor of Submicron Pixel Using Back Gate Modulation
title_full UTBB-Based Single Transistor Image Sensor of Submicron Pixel Using Back Gate Modulation
title_fullStr UTBB-Based Single Transistor Image Sensor of Submicron Pixel Using Back Gate Modulation
title_full_unstemmed UTBB-Based Single Transistor Image Sensor of Submicron Pixel Using Back Gate Modulation
title_sort utbb-based single transistor image sensor of submicron pixel using back gate modulation
publisher IEEE
publishDate 2019
url https://doaj.org/article/47c6fd62c405411fa9e95ebf2098fcbc
work_keys_str_mv AT liqiaoliu utbbbasedsingletransistorimagesensorofsubmicronpixelusingbackgatemodulation
AT xiaoyanliu utbbbasedsingletransistorimagesensorofsubmicronpixelusingbackgatemodulation
AT gangdu utbbbasedsingletransistorimagesensorofsubmicronpixelusingbackgatemodulation
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