Optimal Design Low Noise Amplifier and Microwave/Millimeter-Wave Dual-Mode Receiver with Transmission Zeros Filter
碩士 === 國立交通大學 === 電信工程研究所 === 103 === This thesis consists of two parts, including a low noise amplifier and a 5/60 GHz dual-mode receiver with transmission zeros filter. In chapter 2, we describe the low noise amplifier. And then, we use trifilar-type component implementing low noise amplifier...
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ndltd-TW-103NCTU54350682019-05-15T22:33:37Z http://ndltd.ncl.edu.tw/handle/526uqa Optimal Design Low Noise Amplifier and Microwave/Millimeter-Wave Dual-Mode Receiver with Transmission Zeros Filter 最佳化設計低雜訊放大器與具傳輸零點濾波器之微波/毫米波雙模態接收機 Yang, Tzu-Ching 楊子慶 碩士 國立交通大學 電信工程研究所 103 This thesis consists of two parts, including a low noise amplifier and a 5/60 GHz dual-mode receiver with transmission zeros filter. In chapter 2, we describe the low noise amplifier. And then, we use trifilar-type component implementing low noise amplifier in 0.18μm SiGe technology. Otherwise, we use 0.15μm PHEMT technology to discuss temperature effects in two different self-bias architectures of low noise amplifier. Chapter 3 introduces the circuits in 5/60 GHz dual-mode receiver will be illustrated. It is implemented in 0.18-μm CMOS technology. In order to improve the signal interference, we use an active RF filter with transmission zeros on 5GHz path. Furthermore, A passive mixer is designed for 60 GHz signal to solve the insufficient ft problem in 0.18-μm technology by using schottky diode of which the ft is nearly 200 GHz. Meng, Chin-Chun 孟慶宗 2015 學位論文 ; thesis 60 zh-TW |
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碩士 === 國立交通大學 === 電信工程研究所 === 103 === This thesis consists of two parts, including a low noise amplifier and a 5/60 GHz dual-mode receiver with transmission zeros filter.
In chapter 2, we describe the low noise amplifier. And then, we use trifilar-type component implementing low noise amplifier in 0.18μm SiGe technology. Otherwise, we use 0.15μm PHEMT technology to discuss temperature effects in two different self-bias architectures of low noise amplifier.
Chapter 3 introduces the circuits in 5/60 GHz dual-mode receiver will be illustrated. It is implemented in 0.18-μm CMOS technology. In order to improve the signal interference, we use an active RF filter with transmission zeros on 5GHz path. Furthermore, A passive mixer is designed for 60 GHz signal to solve the insufficient ft problem in 0.18-μm technology by using schottky diode of which the ft is nearly 200 GHz.
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author2 |
Meng, Chin-Chun |
author_facet |
Meng, Chin-Chun Yang, Tzu-Ching 楊子慶 |
author |
Yang, Tzu-Ching 楊子慶 |
spellingShingle |
Yang, Tzu-Ching 楊子慶 Optimal Design Low Noise Amplifier and Microwave/Millimeter-Wave Dual-Mode Receiver with Transmission Zeros Filter |
author_sort |
Yang, Tzu-Ching |
title |
Optimal Design Low Noise Amplifier and Microwave/Millimeter-Wave Dual-Mode Receiver with Transmission Zeros Filter |
title_short |
Optimal Design Low Noise Amplifier and Microwave/Millimeter-Wave Dual-Mode Receiver with Transmission Zeros Filter |
title_full |
Optimal Design Low Noise Amplifier and Microwave/Millimeter-Wave Dual-Mode Receiver with Transmission Zeros Filter |
title_fullStr |
Optimal Design Low Noise Amplifier and Microwave/Millimeter-Wave Dual-Mode Receiver with Transmission Zeros Filter |
title_full_unstemmed |
Optimal Design Low Noise Amplifier and Microwave/Millimeter-Wave Dual-Mode Receiver with Transmission Zeros Filter |
title_sort |
optimal design low noise amplifier and microwave/millimeter-wave dual-mode receiver with transmission zeros filter |
publishDate |
2015 |
url |
http://ndltd.ncl.edu.tw/handle/526uqa |
work_keys_str_mv |
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