A CMOS Interface Circuit Design for a 32-level Resolution Light Sensor
A new design of interface circuit for CMOS Light sensor for pH monitoring applications is presented here. The proposed design is useful to read color (wavelength) values with the help of a photodiode and outputs a digital word representing the color value. It operates by continuously comparing analo...
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my.utp.eprints.90042013-10-25T02:35:51Z A CMOS Interface Circuit Design for a 32-level Resolution Light Sensor Israel , Yohannes Maher, Assaad Nor Hisham , Hamid TK Electrical engineering. Electronics Nuclear engineering A new design of interface circuit for CMOS Light sensor for pH monitoring applications is presented here. The proposed design is useful to read color (wavelength) values with the help of a photodiode and outputs a digital word representing the color value. It operates by continuously comparing analog voltage output from an optical transducer against a pre-stored reference levels in two cascaded stages.The design provides few advantages such as faster speed; less power consumption; higher resolution with smaller number of storage units; and small area for on-chip integration. A simulation result implementing 32 levels of resolution is presented. 2013 Citation Index Journal PeerReviewed text/html http://eprints.utp.edu.my/9004/1/IREMOS_vol_5_n_4.html Israel , Yohannes and Maher, Assaad and Nor Hisham , Hamid (2013) A CMOS Interface Circuit Design for a 32-level Resolution Light Sensor. [Citation Index Journal] http://eprints.utp.edu.my/9004/ |
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TK Electrical engineering. Electronics Nuclear engineering Israel , Yohannes Maher, Assaad Nor Hisham , Hamid A CMOS Interface Circuit Design for a 32-level Resolution Light Sensor |
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A new design of interface circuit for CMOS Light sensor for pH monitoring applications is presented here. The proposed design is useful to read color (wavelength) values with the help of a photodiode and outputs a digital word representing the color value. It operates by continuously comparing analog voltage output from an optical transducer against a pre-stored reference levels in two cascaded stages.The design provides few advantages such as faster speed; less power consumption; higher resolution with smaller number of storage units; and small area for on-chip integration. A simulation result implementing 32 levels of resolution is presented. |
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Citation Index Journal |
author |
Israel , Yohannes Maher, Assaad Nor Hisham , Hamid |
author_facet |
Israel , Yohannes Maher, Assaad Nor Hisham , Hamid |
author_sort |
Israel , Yohannes |
title |
A CMOS Interface Circuit Design for a 32-level Resolution Light Sensor |
title_short |
A CMOS Interface Circuit Design for a 32-level Resolution Light Sensor |
title_full |
A CMOS Interface Circuit Design for a 32-level Resolution Light Sensor |
title_fullStr |
A CMOS Interface Circuit Design for a 32-level Resolution Light Sensor |
title_full_unstemmed |
A CMOS Interface Circuit Design for a 32-level Resolution Light Sensor |
title_sort |
cmos interface circuit design for a 32-level resolution light sensor |
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2013 |
url |
http://eprints.utp.edu.my/9004/1/IREMOS_vol_5_n_4.html http://eprints.utp.edu.my/9004/ |
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