Input range driver for measurement of a differential 10 bit SAR ADC
Imbalance and out-of-range input signals can cause inaccuracy in fully differential successive approximation (SAR) analog to digital converter (ADC). Therefore, implementation of an ADC driver can solve the problem since the input can be properly adjusted to suit with an ADC input. AD8139 single to...
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my.upm.eprints.684392019-06-10T02:18:29Z http://psasir.upm.edu.my/id/eprint/68439/ Input range driver for measurement of a differential 10 bit SAR ADC Yusuf, Siti Idzura Abdul Majid, Hasmayadi Musa, Rohana Mohd Sidek, Roslina Abdul Halin, Izhal Shafie, Suhaidi Imbalance and out-of-range input signals can cause inaccuracy in fully differential successive approximation (SAR) analog to digital converter (ADC). Therefore, implementation of an ADC driver can solve the problem since the input can be properly adjusted to suit with an ADC input. AD8139 single to differential amplifier was chosen as an ADC driver in this design and placed on a printed circuit board (PCB) to drive differential input signal of SAR ADC. The result shows each of output amplitude of the amplifier remains equal and is 180° out of phase for DC and AC input signal. The fabricated 10 bit SAR ADC is capable to digitize full code from analog input produced by the ADC driver. IEEE 2018 Conference or Workshop Item PeerReviewed text en http://psasir.upm.edu.my/id/eprint/68439/1/Input%20range%20driver%20for%20measurement%20of%20a%20differential%2010%20bit%20SAR%20ADC.pdf Yusuf, Siti Idzura and Abdul Majid, Hasmayadi and Musa, Rohana and Mohd Sidek, Roslina and Abdul Halin, Izhal and Shafie, Suhaidi (2018) Input range driver for measurement of a differential 10 bit SAR ADC. In: 2018 IEEE 5th International Conference on Smart Instrumentation, Measurement and Applications (ICSIMA 2018), 28-30 Nov. 2018, Songkla, Thailand. . 10.1109/ICSIMA.2018.8688760 |
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Imbalance and out-of-range input signals can cause inaccuracy in fully differential successive approximation (SAR) analog to digital converter (ADC). Therefore, implementation of an ADC driver can solve the problem since the input can be properly adjusted to suit with an ADC input. AD8139 single to differential amplifier was chosen as an ADC driver in this design and placed on a printed circuit board (PCB) to drive differential input signal of SAR ADC. The result shows each of output amplitude of the amplifier remains equal and is 180° out of phase for DC and AC input signal. The fabricated 10 bit SAR ADC is capable to digitize full code from analog input produced by the ADC driver. |
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Conference or Workshop Item |
author |
Yusuf, Siti Idzura Abdul Majid, Hasmayadi Musa, Rohana Mohd Sidek, Roslina Abdul Halin, Izhal Shafie, Suhaidi |
spellingShingle |
Yusuf, Siti Idzura Abdul Majid, Hasmayadi Musa, Rohana Mohd Sidek, Roslina Abdul Halin, Izhal Shafie, Suhaidi Input range driver for measurement of a differential 10 bit SAR ADC |
author_facet |
Yusuf, Siti Idzura Abdul Majid, Hasmayadi Musa, Rohana Mohd Sidek, Roslina Abdul Halin, Izhal Shafie, Suhaidi |
author_sort |
Yusuf, Siti Idzura |
title |
Input range driver for measurement of a differential 10 bit SAR ADC |
title_short |
Input range driver for measurement of a differential 10 bit SAR ADC |
title_full |
Input range driver for measurement of a differential 10 bit SAR ADC |
title_fullStr |
Input range driver for measurement of a differential 10 bit SAR ADC |
title_full_unstemmed |
Input range driver for measurement of a differential 10 bit SAR ADC |
title_sort |
input range driver for measurement of a differential 10 bit sar adc |
publisher |
IEEE |
publishDate |
2018 |
url |
http://psasir.upm.edu.my/id/eprint/68439/1/Input%20range%20driver%20for%20measurement%20of%20a%20differential%2010%20bit%20SAR%20ADC.pdf http://psasir.upm.edu.my/id/eprint/68439/ |
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