Dual-Mode and Dual-Band Circuit Techniques for CMOS Automotive Radar Transmitter Applications
博士 === 國立臺灣大學 === 電子工程學研究所 === 104 === In this thesis, dual-mode and dual-band circuit techniques for CMOS automotive radar transmitter applications are developed. The first technique is motivated by facilitating the frequency planning of a novel 77-GHz FMCW transceiver architecture. By means of a 1...
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ndltd-TW-104NTU054280152017-06-03T04:41:37Z http://ndltd.ncl.edu.tw/handle/67772741354745851209 Dual-Mode and Dual-Band Circuit Techniques for CMOS Automotive Radar Transmitter Applications 應用於金氧半導體汽車雷達發射機之雙模與雙頻電路技術 Yi-Keng Hsieh 謝易耕 博士 國立臺灣大學 電子工程學研究所 104 In this thesis, dual-mode and dual-band circuit techniques for CMOS automotive radar transmitter applications are developed. The first technique is motivated by facilitating the frequency planning of a novel 77-GHz FMCW transceiver architecture. By means of a 19-GHz integer-N phase-locked loop along with a frequency modulation loop, the required 19-GHz sinusoidal signal and 19–19.5 GHz FMCW frequency chirp can be generated simultaneously without excessive hardware overhead. The second technique targets on the concurrent operation for 22–29 GHz short-range pulse radar and 76–77 GHz long-range FMCW radar. Based on the previous signal generation concept, the required K-band sinusoidal carrier and W-band FMCW frequency chirp can be provided simultaneously. Besides signal generators, a novel 24/77-GHz dual-band PA topology is presented. By exploring the optimal load impedance for both bands in a systematic manner, on-chip passive devices for the output matching network is effectively reused. As a result, a two-way power-combing scheme for dual-band operation is established. In addition, the bulky input matching networks of a 24-GHz and a 77-GHz PA are amalgamated into the same hardware by introducing MOS switches for reconfiguration. 呂良鴻 2015 學位論文 ; thesis 127 en_US |
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博士 === 國立臺灣大學 === 電子工程學研究所 === 104 === In this thesis, dual-mode and dual-band circuit techniques for CMOS automotive radar transmitter applications are developed. The first technique is motivated by facilitating the frequency planning of a novel 77-GHz FMCW transceiver architecture. By means of a 19-GHz integer-N phase-locked loop along with a frequency modulation loop, the required 19-GHz sinusoidal signal and 19–19.5 GHz FMCW frequency chirp can be generated simultaneously without excessive hardware overhead. The second technique targets on the concurrent operation for 22–29 GHz short-range pulse radar and 76–77 GHz long-range FMCW radar. Based on the previous signal generation concept, the required K-band sinusoidal carrier and W-band FMCW frequency chirp can be provided simultaneously. Besides signal generators, a novel 24/77-GHz dual-band PA topology is presented. By exploring the optimal load impedance for both bands in a systematic manner, on-chip passive devices for the output matching network is
effectively reused. As a result, a two-way power-combing scheme for dual-band operation is established. In addition, the bulky input matching networks of a 24-GHz and a 77-GHz PA are amalgamated into the same hardware by introducing MOS switches for reconfiguration.
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author2 |
呂良鴻 |
author_facet |
呂良鴻 Yi-Keng Hsieh 謝易耕 |
author |
Yi-Keng Hsieh 謝易耕 |
spellingShingle |
Yi-Keng Hsieh 謝易耕 Dual-Mode and Dual-Band Circuit Techniques for CMOS Automotive Radar Transmitter Applications |
author_sort |
Yi-Keng Hsieh |
title |
Dual-Mode and Dual-Band Circuit Techniques for CMOS Automotive Radar Transmitter Applications |
title_short |
Dual-Mode and Dual-Band Circuit Techniques for CMOS Automotive Radar Transmitter Applications |
title_full |
Dual-Mode and Dual-Band Circuit Techniques for CMOS Automotive Radar Transmitter Applications |
title_fullStr |
Dual-Mode and Dual-Band Circuit Techniques for CMOS Automotive Radar Transmitter Applications |
title_full_unstemmed |
Dual-Mode and Dual-Band Circuit Techniques for CMOS Automotive Radar Transmitter Applications |
title_sort |
dual-mode and dual-band circuit techniques for cmos automotive radar transmitter applications |
publishDate |
2015 |
url |
http://ndltd.ncl.edu.tw/handle/67772741354745851209 |
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