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CMOS Depth Image Sensor with Offset Pixel Aperture Using a Back-Side Illumination Structure for Improving Disparity

This paper presents a CMOS depth image sensor with offset pixel aperture (OPA) using a back-side illumination structure to improve disparity. The OPA method is an efficient way to obtain depth information with a single image sensor without additional external factors. Two types of apertures (i.e., l...

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Autores principales: Lee, Jimin, Kim, Sang-Hwan, Kwen, Hyeunwoo, Jang, Juneyoung, Chang, Seunghyuk, Park, JongHo, Lee, Sang-Jin, Shin, Jang-Kyoo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7570693/
https://www.ncbi.nlm.nih.gov/pubmed/32916941
http://dx.doi.org/10.3390/s20185138
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author Lee, Jimin
Kim, Sang-Hwan
Kwen, Hyeunwoo
Jang, Juneyoung
Chang, Seunghyuk
Park, JongHo
Lee, Sang-Jin
Shin, Jang-Kyoo
author_facet Lee, Jimin
Kim, Sang-Hwan
Kwen, Hyeunwoo
Jang, Juneyoung
Chang, Seunghyuk
Park, JongHo
Lee, Sang-Jin
Shin, Jang-Kyoo
author_sort Lee, Jimin
collection PubMed
description This paper presents a CMOS depth image sensor with offset pixel aperture (OPA) using a back-side illumination structure to improve disparity. The OPA method is an efficient way to obtain depth information with a single image sensor without additional external factors. Two types of apertures (i.e., left-OPA (LOPA) and right-OPA (ROPA)) are applied to pixels. The depth information is obtained from the disparity caused by the phase difference between the LOPA and ROPA images. In a CMOS depth image sensor with OPA, disparity is important information. Improving disparity is an easy way of improving the performance of the CMOS depth image sensor with OPA. Disparity is affected by pixel height. Therefore, this paper compared two CMOS depth image sensors with OPA using front-side illumination (FSI) and back-side illumination (BSI) structures. As FSI and BSI chips are fabricated via different processes, two similar chips were used for measurement by calculating the ratio of the OPA offset to pixel size. Both chips were evaluated for chief ray angle (CRA) and disparity in the same measurement environment. Experimental results were then compared and analyzed for the two CMOS depth image sensors with OPA.
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spelling pubmed-75706932020-10-28 CMOS Depth Image Sensor with Offset Pixel Aperture Using a Back-Side Illumination Structure for Improving Disparity Lee, Jimin Kim, Sang-Hwan Kwen, Hyeunwoo Jang, Juneyoung Chang, Seunghyuk Park, JongHo Lee, Sang-Jin Shin, Jang-Kyoo Sensors (Basel) Letter This paper presents a CMOS depth image sensor with offset pixel aperture (OPA) using a back-side illumination structure to improve disparity. The OPA method is an efficient way to obtain depth information with a single image sensor without additional external factors. Two types of apertures (i.e., left-OPA (LOPA) and right-OPA (ROPA)) are applied to pixels. The depth information is obtained from the disparity caused by the phase difference between the LOPA and ROPA images. In a CMOS depth image sensor with OPA, disparity is important information. Improving disparity is an easy way of improving the performance of the CMOS depth image sensor with OPA. Disparity is affected by pixel height. Therefore, this paper compared two CMOS depth image sensors with OPA using front-side illumination (FSI) and back-side illumination (BSI) structures. As FSI and BSI chips are fabricated via different processes, two similar chips were used for measurement by calculating the ratio of the OPA offset to pixel size. Both chips were evaluated for chief ray angle (CRA) and disparity in the same measurement environment. Experimental results were then compared and analyzed for the two CMOS depth image sensors with OPA. MDPI 2020-09-09 /pmc/articles/PMC7570693/ /pubmed/32916941 http://dx.doi.org/10.3390/s20185138 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Letter
Lee, Jimin
Kim, Sang-Hwan
Kwen, Hyeunwoo
Jang, Juneyoung
Chang, Seunghyuk
Park, JongHo
Lee, Sang-Jin
Shin, Jang-Kyoo
CMOS Depth Image Sensor with Offset Pixel Aperture Using a Back-Side Illumination Structure for Improving Disparity
title CMOS Depth Image Sensor with Offset Pixel Aperture Using a Back-Side Illumination Structure for Improving Disparity
title_full CMOS Depth Image Sensor with Offset Pixel Aperture Using a Back-Side Illumination Structure for Improving Disparity
title_fullStr CMOS Depth Image Sensor with Offset Pixel Aperture Using a Back-Side Illumination Structure for Improving Disparity
title_full_unstemmed CMOS Depth Image Sensor with Offset Pixel Aperture Using a Back-Side Illumination Structure for Improving Disparity
title_short CMOS Depth Image Sensor with Offset Pixel Aperture Using a Back-Side Illumination Structure for Improving Disparity
title_sort cmos depth image sensor with offset pixel aperture using a back-side illumination structure for improving disparity
topic Letter
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7570693/
https://www.ncbi.nlm.nih.gov/pubmed/32916941
http://dx.doi.org/10.3390/s20185138
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