A robust 900MHz RFID reader chip with RC-calibration
A fully integrated RFID reader chip targeted to operate in the frequency range of 860 MHz to 960 MHz is designed, simulated and fabricated. To reduce the chip performance degradation due to process and temperature variation, resistor and capacitor calibration is adopted. The output codes of resistor...
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sg-ntu-dr.10356-1068912019-12-06T22:20:26Z A robust 900MHz RFID reader chip with RC-calibration Mou, Shouxian Ma, Kaixue Yeo, Kiat Seng School of Electrical and Electronic Engineering DRNTU::Engineering::Electrical and electronic engineering A fully integrated RFID reader chip targeted to operate in the frequency range of 860 MHz to 960 MHz is designed, simulated and fabricated. To reduce the chip performance degradation due to process and temperature variation, resistor and capacitor calibration is adopted. The output codes of resistor calibration are used to adjust main circuit blocks' biasing current while the output codes of capacitor calibration are used to fine tune filter bandwidth and Digital-to-analog converter (DAC) conversion accuracy. Dual-tuned magnetic coupled LC tanks are also introduced in our VCO design to improve phase noise performance and extend tuning range, so as to enhance the robustness of the proposed RFID reader system. The reader is implemented with a low cost 90 nm standard CMOS process and has a chip area of 3.1 mm by 3.3 mm. The chip is packaged with QFN48 and tested on PCB. The proposed RFID reader consumes 90 mW of power and has robust performance against temperature, voltage supply and process variation. The merits of the chip make it ideal for various application scenarios. 2013-11-15T06:00:45Z 2019-12-06T22:20:26Z 2013-11-15T06:00:45Z 2019-12-06T22:20:26Z 2012 2012 Journal Article Mou, S., Ma, K., & Yeo, K. S. (2012). A robust 900MHz RFID reader chip with RC-calibration. Journal of circuits, systems and computers, 21(08), 1240021-. https://hdl.handle.net/10356/106891 http://hdl.handle.net/10220/17679 http://dx.doi.org/10.1142/S021812661240021X en Journal of circuits, systems and computers |
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DRNTU::Engineering::Electrical and electronic engineering Mou, Shouxian Ma, Kaixue Yeo, Kiat Seng A robust 900MHz RFID reader chip with RC-calibration |
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A fully integrated RFID reader chip targeted to operate in the frequency range of 860 MHz to 960 MHz is designed, simulated and fabricated. To reduce the chip performance degradation due to process and temperature variation, resistor and capacitor calibration is adopted. The output codes of resistor calibration are used to adjust main circuit blocks' biasing current while the output codes of capacitor calibration are used to fine tune filter bandwidth and Digital-to-analog converter (DAC) conversion accuracy. Dual-tuned magnetic coupled LC tanks are also introduced in our VCO design to improve phase noise performance and extend tuning range, so as to enhance the robustness of the proposed RFID reader system. The reader is implemented with a low cost 90 nm standard CMOS process and has a chip area of 3.1 mm by 3.3 mm. The chip is packaged with QFN48 and tested on PCB. The proposed RFID reader consumes 90 mW of power and has robust performance against temperature, voltage supply and process variation. The merits of the chip make it ideal for various application scenarios. |
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School of Electrical and Electronic Engineering |
author_facet |
School of Electrical and Electronic Engineering Mou, Shouxian Ma, Kaixue Yeo, Kiat Seng |
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Article |
author |
Mou, Shouxian Ma, Kaixue Yeo, Kiat Seng |
author_sort |
Mou, Shouxian |
title |
A robust 900MHz RFID reader chip with RC-calibration |
title_short |
A robust 900MHz RFID reader chip with RC-calibration |
title_full |
A robust 900MHz RFID reader chip with RC-calibration |
title_fullStr |
A robust 900MHz RFID reader chip with RC-calibration |
title_full_unstemmed |
A robust 900MHz RFID reader chip with RC-calibration |
title_sort |
robust 900mhz rfid reader chip with rc-calibration |
publishDate |
2013 |
url |
https://hdl.handle.net/10356/106891 http://hdl.handle.net/10220/17679 http://dx.doi.org/10.1142/S021812661240021X |
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1681036892100886528 |