Multi-GHz Frequency Synthesis & Division: Frequency Synthesizer Design for 5 GHz Wireless LAN Systems
In the past 10 years extensive effort has been dedicated to commercial wireless local area network (WLAN) systems. Despite all these efforts, however, none of the existing systems has been successful, mainly due to their low data rates. The increasing demand for WLAN systems that can support data ra...
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Hauptverfasser: | , |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
Boston, MA
Springer US
2001
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Schlagworte: | |
Online-Zugang: | FHI01 BTU01 Volltext |
Zusammenfassung: | In the past 10 years extensive effort has been dedicated to commercial wireless local area network (WLAN) systems. Despite all these efforts, however, none of the existing systems has been successful, mainly due to their low data rates. The increasing demand for WLAN systems that can support data rates in excess of 20 Mb/s enticed the FCC to create an unlicensed national information infrastructure (U–NII) band at 5 GHz. This frequency band provides 300 MHz of spectrum in two segments: a 200 MHz(5.15–5.35 GHz) and a 100 MHz (5.725–5.825 GHz) frequency band. This newly released spectrum, and the fast trend of CMOS scaling, provide an opportunity to design WLAN systems with high data rate and low cost. One of the existing standards at 5 GHz is the European high performance radio LAN (HIPERLAN) standard that supports data rates as high as 20 Mb/s. One of the main building blocks of each wireless system is the f- quency synthesizer. Phase–locked loops (PLLs) are universally used to design radio frequency synthesizers. Reducing the power consumption of the frequency dividers of a PLL has always been a challenge. In this book, we introduce an alternative solution for conventional flipflop based xiv MULTI–GHZ FREQUENCY SYNTHESIS & DIVISION frequency dividers. An injection–locked frequency divider (ILFD) takes advantage of the narrowband nature of the wireless systems and employs resonators to trade off bandwidth for power |
Beschreibung: | 1 Online-Ressource (XVIII, 148 p) |
ISBN: | 9780306481062 |
DOI: | 10.1007/b100811 |
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520 | |a In the past 10 years extensive effort has been dedicated to commercial wireless local area network (WLAN) systems. Despite all these efforts, however, none of the existing systems has been successful, mainly due to their low data rates. The increasing demand for WLAN systems that can support data rates in excess of 20 Mb/s enticed the FCC to create an unlicensed national information infrastructure (U–NII) band at 5 GHz. This frequency band provides 300 MHz of spectrum in two segments: a 200 MHz(5.15–5.35 GHz) and a 100 MHz (5.725–5.825 GHz) frequency band. This newly released spectrum, and the fast trend of CMOS scaling, provide an opportunity to design WLAN systems with high data rate and low cost. One of the existing standards at 5 GHz is the European high performance radio LAN (HIPERLAN) standard that supports data rates as high as 20 Mb/s. One of the main building blocks of each wireless system is the f- quency synthesizer. Phase–locked loops (PLLs) are universally used to design radio frequency synthesizers. Reducing the power consumption of the frequency dividers of a PLL has always been a challenge. In this book, we introduce an alternative solution for conventional flipflop based xiv MULTI–GHZ FREQUENCY SYNTHESIS & DIVISION frequency dividers. An injection–locked frequency divider (ILFD) takes advantage of the narrowband nature of the wireless systems and employs resonators to trade off bandwidth for power | ||
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author | Rategh, Hamid R. Lee, Thomas H. |
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discipline | Elektrotechnik / Elektronik / Nachrichtentechnik |
doi_str_mv | 10.1007/b100811 |
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indexdate | 2024-07-10T08:10:01Z |
institution | BVB |
isbn | 9780306481062 |
language | English |
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physical | 1 Online-Ressource (XVIII, 148 p) |
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publisher | Springer US |
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spelling | Rategh, Hamid R. Verfasser aut Multi-GHz Frequency Synthesis & Division Frequency Synthesizer Design for 5 GHz Wireless LAN Systems by Hamid R. Rategh, Thomas H. Lee Boston, MA Springer US 2001 1 Online-Ressource (XVIII, 148 p) txt rdacontent c rdamedia cr rdacarrier In the past 10 years extensive effort has been dedicated to commercial wireless local area network (WLAN) systems. Despite all these efforts, however, none of the existing systems has been successful, mainly due to their low data rates. The increasing demand for WLAN systems that can support data rates in excess of 20 Mb/s enticed the FCC to create an unlicensed national information infrastructure (U–NII) band at 5 GHz. This frequency band provides 300 MHz of spectrum in two segments: a 200 MHz(5.15–5.35 GHz) and a 100 MHz (5.725–5.825 GHz) frequency band. This newly released spectrum, and the fast trend of CMOS scaling, provide an opportunity to design WLAN systems with high data rate and low cost. One of the existing standards at 5 GHz is the European high performance radio LAN (HIPERLAN) standard that supports data rates as high as 20 Mb/s. One of the main building blocks of each wireless system is the f- quency synthesizer. Phase–locked loops (PLLs) are universally used to design radio frequency synthesizers. Reducing the power consumption of the frequency dividers of a PLL has always been a challenge. In this book, we introduce an alternative solution for conventional flipflop based xiv MULTI–GHZ FREQUENCY SYNTHESIS & DIVISION frequency dividers. An injection–locked frequency divider (ILFD) takes advantage of the narrowband nature of the wireless systems and employs resonators to trade off bandwidth for power Engineering Circuits and Systems Electrical Engineering Electrical engineering Electronic circuits Lee, Thomas H. aut Erscheint auch als Druck-Ausgabe 9780792375333 https://doi.org/10.1007/b100811 Verlag URL des Erstveröffentlichers Volltext |
spellingShingle | Rategh, Hamid R. Lee, Thomas H. Multi-GHz Frequency Synthesis & Division Frequency Synthesizer Design for 5 GHz Wireless LAN Systems Engineering Circuits and Systems Electrical Engineering Electrical engineering Electronic circuits |
title | Multi-GHz Frequency Synthesis & Division Frequency Synthesizer Design for 5 GHz Wireless LAN Systems |
title_auth | Multi-GHz Frequency Synthesis & Division Frequency Synthesizer Design for 5 GHz Wireless LAN Systems |
title_exact_search | Multi-GHz Frequency Synthesis & Division Frequency Synthesizer Design for 5 GHz Wireless LAN Systems |
title_full | Multi-GHz Frequency Synthesis & Division Frequency Synthesizer Design for 5 GHz Wireless LAN Systems by Hamid R. Rategh, Thomas H. Lee |
title_fullStr | Multi-GHz Frequency Synthesis & Division Frequency Synthesizer Design for 5 GHz Wireless LAN Systems by Hamid R. Rategh, Thomas H. Lee |
title_full_unstemmed | Multi-GHz Frequency Synthesis & Division Frequency Synthesizer Design for 5 GHz Wireless LAN Systems by Hamid R. Rategh, Thomas H. Lee |
title_short | Multi-GHz Frequency Synthesis & Division |
title_sort | multi ghz frequency synthesis division frequency synthesizer design for 5 ghz wireless lan systems |
title_sub | Frequency Synthesizer Design for 5 GHz Wireless LAN Systems |
topic | Engineering Circuits and Systems Electrical Engineering Electrical engineering Electronic circuits |
topic_facet | Engineering Circuits and Systems Electrical Engineering Electrical engineering Electronic circuits |
url | https://doi.org/10.1007/b100811 |
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