Novel 2.4 GHz/5.2 GHz Dual-Band Fractional-N Frequenncy Synthesizers

碩士 === 國立中正大學 === 電機工程研究所 === 93 === The thesis accomplishes three fractional-N frequenncy synthesizers. Firstly, a new architecture with proposed prescalar and sigma-delta modular controller is presented. The design example of fractional-N frequency synthesizer is accomplished and applied to the Bl...

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Main Authors: Bing-Han Wang, 王秉翰
Other Authors: Shuenn-Yuh Lee
Format: Others
Language:zh-TW
Published: 2005
Online Access:http://ndltd.ncl.edu.tw/handle/87214540263095974081
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spelling ndltd-TW-093CCU004420212015-10-13T11:39:19Z http://ndltd.ncl.edu.tw/handle/87214540263095974081 Novel 2.4 GHz/5.2 GHz Dual-Band Fractional-N Frequenncy Synthesizers 新型2.4GHz/5.2GHz雙頻帶分數式頻率合成器 Bing-Han Wang 王秉翰 碩士 國立中正大學 電機工程研究所 93 The thesis accomplishes three fractional-N frequenncy synthesizers. Firstly, a new architecture with proposed prescalar and sigma-delta modular controller is presented. The design example of fractional-N frequency synthesizer is accomplished and applied to the Bluetooth system. In addition, a new dual-band franctional-N Frequency Synthesizer architecture is also proposed. This architecture adopts dual-band voltage-controlled oscillator (VCO) with small area due to less inductor rquirement. The whole chip is fabricated and can be applied to Bluetooth system and 802.11a system, respectively. Lastly, Because the low jitter and fast-locking are very important in frequency synthesizer. Therefore, a new phase-and-frequency detecter (PFD), which can adjust the charge-pump current properly, is proposed and applied on the 2.4 GHz franctional-N frequency synthesizer design. The three frequency synthesizers are implemented in TSMC 0.18um 1P6M CMOS process. The measured parts of results show that the tuning range of VCO is 2.298 GHz~2.915 GHz, and phase noise is -98.60 dBc/Hz @100 KHz at power consumption of 19.8 mW. The maximum operation frequency of multi-mode prescaler is 1.6 GHz, at the power consumption of 10.7334 mW. Shuenn-Yuh Lee 李順裕 2005 學位論文 ; thesis 74 zh-TW
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description 碩士 === 國立中正大學 === 電機工程研究所 === 93 === The thesis accomplishes three fractional-N frequenncy synthesizers. Firstly, a new architecture with proposed prescalar and sigma-delta modular controller is presented. The design example of fractional-N frequency synthesizer is accomplished and applied to the Bluetooth system. In addition, a new dual-band franctional-N Frequency Synthesizer architecture is also proposed. This architecture adopts dual-band voltage-controlled oscillator (VCO) with small area due to less inductor rquirement. The whole chip is fabricated and can be applied to Bluetooth system and 802.11a system, respectively. Lastly, Because the low jitter and fast-locking are very important in frequency synthesizer. Therefore, a new phase-and-frequency detecter (PFD), which can adjust the charge-pump current properly, is proposed and applied on the 2.4 GHz franctional-N frequency synthesizer design. The three frequency synthesizers are implemented in TSMC 0.18um 1P6M CMOS process. The measured parts of results show that the tuning range of VCO is 2.298 GHz~2.915 GHz, and phase noise is -98.60 dBc/Hz @100 KHz at power consumption of 19.8 mW. The maximum operation frequency of multi-mode prescaler is 1.6 GHz, at the power consumption of 10.7334 mW.
author2 Shuenn-Yuh Lee
author_facet Shuenn-Yuh Lee
Bing-Han Wang
王秉翰
author Bing-Han Wang
王秉翰
spellingShingle Bing-Han Wang
王秉翰
Novel 2.4 GHz/5.2 GHz Dual-Band Fractional-N Frequenncy Synthesizers
author_sort Bing-Han Wang
title Novel 2.4 GHz/5.2 GHz Dual-Band Fractional-N Frequenncy Synthesizers
title_short Novel 2.4 GHz/5.2 GHz Dual-Band Fractional-N Frequenncy Synthesizers
title_full Novel 2.4 GHz/5.2 GHz Dual-Band Fractional-N Frequenncy Synthesizers
title_fullStr Novel 2.4 GHz/5.2 GHz Dual-Band Fractional-N Frequenncy Synthesizers
title_full_unstemmed Novel 2.4 GHz/5.2 GHz Dual-Band Fractional-N Frequenncy Synthesizers
title_sort novel 2.4 ghz/5.2 ghz dual-band fractional-n frequenncy synthesizers
publishDate 2005
url http://ndltd.ncl.edu.tw/handle/87214540263095974081
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