A low noise, 1.28µA quiescent regulator with broadband high PSR for micropower sensors
An ultra-low power, low-noise, high power supply rejection (PSR) op-ampless regulator is presented in this paper. It uses a native composite power transistor plus a sandwich on-chip native capacitor in the pre-regulator to enhance broadband high PSR performance. Besides, a pseudo-resistor based low-...
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sg-ntu-dr.10356-1065252019-12-06T22:13:25Z A low noise, 1.28µA quiescent regulator with broadband high PSR for micropower sensors Chan, Pak Kwong Ong, G. T. School of Electrical and Electronic Engineering IEEE International Symposium on Circuits and Systems (2012 : Seoul, Korea) An ultra-low power, low-noise, high power supply rejection (PSR) op-ampless regulator is presented in this paper. It uses a native composite power transistor plus a sandwich on-chip native capacitor in the pre-regulator to enhance broadband high PSR performance. Besides, a pseudo-resistor based low-pass filter is used to reduce the Brokaw's voltage regulator circuit noise. Realized using GlobalFoundries 1.8V/3.3V CMOS 0.18μm process, the regulator gives a mean output 0.992V for 8 samples while occupying a silicon area of 0.095mm2. It consumes only 1.28μA and drives a maximum output current of 2mA. The measured output noise is 80.1nV/vHz at 1kHz and 14.2nV/vHz at 100kHz while the integrated output noise over 10Hz-100kHz bandwidth is 13.88μVrms. The measured PSR is -79.1dB @ 10Hz, -55.3dB @ 1MHz and -41.6dB @ 10MHz. The proposed regulator is useful for sensor circuit applications using energy harvesting power source. 2013-11-29T06:50:44Z 2019-12-06T22:13:25Z 2013-11-29T06:50:44Z 2019-12-06T22:13:25Z 2012 2012 Conference Paper Ong, G. T., & Chan, P. K. (2012). A low noise, 1.28µA quiescent regulator with broadband high PSR for micropower sensors. 2012 IEEE International Symposium on Circuits and Systems, 2833-2836. https://hdl.handle.net/10356/106525 http://hdl.handle.net/10220/17943 http://dx.doi.org/10.1109/ISCAS.2012.6271901 en |
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An ultra-low power, low-noise, high power supply rejection (PSR) op-ampless regulator is presented in this paper. It uses a native composite power transistor plus a sandwich on-chip native capacitor in the pre-regulator to enhance broadband high PSR performance. Besides, a pseudo-resistor based low-pass filter is used to reduce the Brokaw's voltage regulator circuit noise. Realized using GlobalFoundries 1.8V/3.3V CMOS 0.18μm process, the regulator gives a mean output 0.992V for 8 samples while occupying a silicon area of 0.095mm2. It consumes only 1.28μA and drives a maximum output current of 2mA. The measured output noise is 80.1nV/vHz at 1kHz and 14.2nV/vHz at 100kHz while the integrated output noise over 10Hz-100kHz bandwidth is 13.88μVrms. The measured PSR is -79.1dB @ 10Hz, -55.3dB @ 1MHz and -41.6dB @ 10MHz. The proposed regulator is useful for sensor circuit applications using energy harvesting power source. |
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School of Electrical and Electronic Engineering |
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School of Electrical and Electronic Engineering Chan, Pak Kwong Ong, G. T. |
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Conference or Workshop Item |
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Chan, Pak Kwong Ong, G. T. |
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Chan, Pak Kwong Ong, G. T. A low noise, 1.28µA quiescent regulator with broadband high PSR for micropower sensors |
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Chan, Pak Kwong |
title |
A low noise, 1.28µA quiescent regulator with broadband high PSR for micropower sensors |
title_short |
A low noise, 1.28µA quiescent regulator with broadband high PSR for micropower sensors |
title_full |
A low noise, 1.28µA quiescent regulator with broadband high PSR for micropower sensors |
title_fullStr |
A low noise, 1.28µA quiescent regulator with broadband high PSR for micropower sensors |
title_full_unstemmed |
A low noise, 1.28µA quiescent regulator with broadband high PSR for micropower sensors |
title_sort |
low noise, 1.28µa quiescent regulator with broadband high psr for micropower sensors |
publishDate |
2013 |
url |
https://hdl.handle.net/10356/106525 http://hdl.handle.net/10220/17943 http://dx.doi.org/10.1109/ISCAS.2012.6271901 |
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