Design and Implementation of Frequency Synthesizers for 3-10 Ghz Mulitband OFDM UWB Communication

Design and Implementation of Frequency Synthesizers for 3-10 Ghz Mulitband OFDM UWB Communication
Author: Chinmaya Mishra
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Total Pages:
Release: 2010
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The allocation of frequency spectrum by the FCC for Ultra Wideband (UWB) communications in the 3.1-10.6 GHz has paved the path for very high data rate Gb/s wireless communications. Frequency synthesis in these communication systems involves great challenges such as high frequency and wideband operation in addition to stringent requirements on frequency hopping time and coexistence with other wireless standards. This research proposes frequency generation schemes for such radio systems and their integrated implementations in silicon based technologies. Special emphasis is placed on efficient frequency planning and other system level considerations for building compact and practical systems for carrier frequency generation in an integrated UWB radio. This work proposes a frequency band plan for multiband OFDM based UWB radios in the 3.1-10.6 GHz range. Based on this frequency plan, two 11-band frequency synthesizers are designed, implemented and tested making them one of the first frequency synthesizers for UWB covering 78% of the licensed spectrum. The circuits are implemented in 0.25[mu]m SiGe BiCMOS and the architectures are based on a single VCO at a fixed frequency followed by an array of dividers, multiplexers and single sideband (SSB) mixers to generate the 11 required bands in quadrature with fast hopping in much less than 9.5 ns. One of the synthesizers is integrated and tested as part of a 3-10 GHz packaged receiver. It draws 80 mA current from a 2.5 V supply and occupies an area of 2.25 mm2. Finally, an architecture for a UWB synthesizer is proposed that is based on a single multiband quadrature VCO, a programmable integer divider with 50% duty cycle and a single sideband mixer. A frequency band plan is proposed that greatly relaxes the tuning range requirement of the multiband VCO and leads to a very digitally intensive architecture for wideband frequency synthesis suitable for implementation in deep submicron CMOS processes. A design in 130nm CMOS occupies less than 1 mm2 while consuming 90 mW. This architecture provides an efficient solution in terms of area and power consumption with very low complexity.


Design and Implementation of Frequency Synthesizers for 3-10 Ghz Mulitband OFDM UWB Communication
Language: en
Pages:
Authors: Chinmaya Mishra
Categories:
Type: BOOK - Published: 2010 - Publisher:

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The allocation of frequency spectrum by the FCC for Ultra Wideband (UWB) communications in the 3.1-10.6 GHz has paved the path for very high data rate Gb/s wire
Fast Hopping Frequency Generation in Digital CMOS
Language: en
Pages: 158
Authors: Mohammad Farazian
Categories: Technology & Engineering
Type: BOOK - Published: 2012-10-12 - Publisher: Springer Science & Business Media

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Overcoming the agility limitations of conventional frequency synthesizers in multi-band OFDM ultra wideband is a key research goal in digital technology. This v
Frequency Synthesizers
Language: en
Pages: 235
Authors: Alexander Chenakin
Categories: Technology & Engineering
Type: BOOK - Published: 2011 - Publisher: Artech House

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A frequency synthesizer is an electronic system for generating any of a range of frequencies from a single fixed oscillator. They are found in modern devices li
Design and Implementation of a Frequency Synthesizer for an IEEE 802.15.4/Zigbee Transceiver
Language: en
Pages:
Authors: Rangakrishnan Srinivasan
Categories:
Type: BOOK - Published: 2007 - Publisher:

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The frequency synthesizer, which performs the main role of carrier generation for the down-conversion/up-conversion operations, is a key building block in radio
Broadband Low Noise Frequency Synthesizers for Future Wireless Communication Systems
Language: en
Pages:
Authors: Golsa Ghiaasi-Hafezi
Categories:
Type: BOOK - Published: 2009 - Publisher:

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Abstract: In this thesis the design of low phase noise frequency synthesizers for emerging wireless applications is investigated. The future wireless applicatio