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CMOS Single Chip Fast Frequency Hopping Synthesizers for Wireless Multi Gigahertz Applications Design Methodology Analysis and Implementation 2007th Edition by Taoufik Bourdi, Izzet Kale ISBN 1402059272 978-1402059278

  • SKU: BELL-2124638
CMOS Single Chip Fast Frequency Hopping Synthesizers for Wireless Multi Gigahertz Applications Design Methodology Analysis and Implementation 2007th Edition by Taoufik Bourdi, Izzet Kale ISBN 1402059272 978-1402059278
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CMOS Single Chip Fast Frequency Hopping Synthesizers for Wireless Multi Gigahertz Applications Design Methodology Analysis and Implementation 2007th Edition by Taoufik Bourdi, Izzet Kale ISBN 1402059272 978-1402059278 instant download after payment.

Publisher: Springer
File Extension: PDF
File size: 3.19 MB
Pages: 214
Author: Taoufik Bourdi, Izzet Kale
ISBN: 1402059272
Language: English
Year: 2007
Edition: 1

Product desciption

CMOS Single Chip Fast Frequency Hopping Synthesizers for Wireless Multi Gigahertz Applications Design Methodology Analysis and Implementation 2007th Edition by Taoufik Bourdi, Izzet Kale ISBN 1402059272 978-1402059278 by Taoufik Bourdi, Izzet Kale 1402059272 instant download after payment.

CMOS Single Chip Fast Frequency Hopping Synthesizers for Wireless Multi-Gigahertz Applications: Design Methodology, Analysis, and Implementation 2007th Edition by Taoufik Bourdi, Izzet Kale - Ebook PDF Instant Download/Delivery: 1402059272, 978-1402059278

Full download CMOS Single Chip Fast Frequency Hopping Synthesizers for Wireless Multi-Gigahertz Applications: Design Methodology, Analysis, and Implementation 2007th Edition after payment

 

Product details:

ISBN 10: 1402059272 

ISBN 13: 978-1402059278

Author: Taoufik Bourdi, Izzet Kale

Recently, wireless LAN standards have emerged in the market. Those standards operate in various frequency ranges. To reduce component count, it is of importance to design a multi-mode frequency synthesizer that serves all wireless LAN standards including 802.11a, 802.11b and 802.11g standards. With different specifications for those standards, designing integer-based phase-locked loop frequency synthesizers can not be achieved. Fractional-N frequency synthesizers offer the solution required for a common multi-mode local oscillator. Those fractional-N synthesizers are based on delta-sigma modulators which in combination with a divider yield the fractional division required for the desired frequency of interest.

In CMOS Single Chip Fast Frequency Hopping Synthesizers for Wireless Multi-Gigahertz Applications, the authors outline detailed design methodology for fast frequency hopping synthesizers for RF and wireless communications applications. Great emphasis on fractional-N delta-sigma based phase locked loops from specifications, system analysis and architecture planning to circuit design and silicon implementation.

The book describes an efficient design and characterization methodology that has been developed to study loop trade-offs in both open and close loop modelling techniques. This is based on a simulation platform that incorporates both behavioral models and measured/simulated sub-blocks of the chosen frequency synthesizer. The platform predicts accurately the phase noise, spurious and switching performance of the final design. Therefore excellent phase noise and spurious performance can be achieved while meeting all the specified requirements. The design methodology reduces the need for silicon re-spin enabling circuit designers to directly meet cost, performance and schedule milestones.

The developed knowledge and techniques have been used in the successful design and implementation of two high speed multi-modefractional-N frequency synthesizers for the IEEE 801.11a/b/g standards. Both synthesizer designs are described in details.

Table of contents:

  1. Front Matter

  2. Introduction

  3. Wireless Communication Systems

  4. Phase-Locked Loop Frequency Synthesizers

  5. System Simulation of Δ-Σ-Based Fractional-N Synthesizers

  6. Multimode Δ-Σ-Based Fractional-N Frequency Synthesizer

  7. Improved Performance Fractional-N Frequency Synthesizer

  8. Conclusion And Further Work

  9. Back Matter

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Tags: Taoufik Bourdi, Izzet Kale, CMOS, Single Chip, Fast Frequency Hopping, Synthesizers, Wireless, Multi Gigahertz, Applications, Design, Methodology, Analysis, Implementation, 2007

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