Novel Transceiver Structure with Power Management Technique by Dynamic Supply for Non-contact Vital Sign Detection
碩士 === 國立中山大學 === 通訊工程研究所 === 100 === The power management technique is employed in the direct down-conversion non-quadrature microwave Doppler radar transceiver for the non-contact vital sign detection based on 0.18 µm CMOS technology. The overshoot and undershoot types of the transient waveform di...
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ndltd-TW-100NSYS56500122015-10-13T21:17:53Z http://ndltd.ncl.edu.tw/handle/12994374572764499245 Novel Transceiver Structure with Power Management Technique by Dynamic Supply for Non-contact Vital Sign Detection 具動態供應電源的功率管理技術於一新型收發機架構以作為非接觸生命徵兆之感測 Yu-Her Chen 陳禹何 碩士 國立中山大學 通訊工程研究所 100 The power management technique is employed in the direct down-conversion non-quadrature microwave Doppler radar transceiver for the non-contact vital sign detection based on 0.18 µm CMOS technology. The overshoot and undershoot types of the transient waveform distortion and the simultaneous switching noise (SSN) caused by the high speed pulse signal will severely influence the accuracy for the vital sign detection, so that this investigation clearly analyzes the pulse period, pulse width, rise/fall times and the voltage levels of the pulse bias. In the circuit design, the low power current-reused (CRU) power amplifier (PA) can maintain enough output power by using the crucial double primary transformer (DPTF) and balun. The presented LNA with a differential inductor can provide the noise matching needed and increase the transducer gain in order to achieve the optimal power consumption and the transducer gain in the Rx mode. The excellent isolation between the Tx and Rx mode is obtained with the new parallel directed switch. The overall power consumption of the presented transceiver with the optimal pulse bias is 60% lower than the conventional transceiver with the direct current (DC) bias, and the null detection point and DC offset can be eliminated by the tunable phase shifter. Chie-In Lee 李杰穎 2012 學位論文 ; thesis 112 zh-TW |
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碩士 === 國立中山大學 === 通訊工程研究所 === 100 === The power management technique is employed in the direct down-conversion non-quadrature microwave Doppler radar transceiver for the non-contact vital sign detection based on 0.18 µm CMOS technology. The overshoot and undershoot types of the transient waveform distortion and the simultaneous switching noise (SSN) caused by the high speed pulse signal will severely influence the accuracy for the vital sign detection, so that this investigation clearly analyzes the pulse period, pulse width, rise/fall times and the voltage levels of the pulse bias. In the circuit design, the low power current-reused (CRU) power amplifier (PA) can maintain enough output power by using the crucial double primary transformer (DPTF) and balun. The presented LNA with a differential inductor can provide the noise matching needed and increase the transducer gain in order to achieve the optimal power consumption and the transducer gain in the Rx mode. The excellent isolation between the Tx and Rx mode is obtained with the new parallel directed switch. The overall power consumption of the presented transceiver with the optimal pulse bias is 60% lower than the conventional transceiver with the direct current (DC) bias, and the null detection point and DC offset can be eliminated by the tunable phase shifter.
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author2 |
Chie-In Lee |
author_facet |
Chie-In Lee Yu-Her Chen 陳禹何 |
author |
Yu-Her Chen 陳禹何 |
spellingShingle |
Yu-Her Chen 陳禹何 Novel Transceiver Structure with Power Management Technique by Dynamic Supply for Non-contact Vital Sign Detection |
author_sort |
Yu-Her Chen |
title |
Novel Transceiver Structure with Power Management Technique by Dynamic Supply for Non-contact Vital Sign Detection |
title_short |
Novel Transceiver Structure with Power Management Technique by Dynamic Supply for Non-contact Vital Sign Detection |
title_full |
Novel Transceiver Structure with Power Management Technique by Dynamic Supply for Non-contact Vital Sign Detection |
title_fullStr |
Novel Transceiver Structure with Power Management Technique by Dynamic Supply for Non-contact Vital Sign Detection |
title_full_unstemmed |
Novel Transceiver Structure with Power Management Technique by Dynamic Supply for Non-contact Vital Sign Detection |
title_sort |
novel transceiver structure with power management technique by dynamic supply for non-contact vital sign detection |
publishDate |
2012 |
url |
http://ndltd.ncl.edu.tw/handle/12994374572764499245 |
work_keys_str_mv |
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