High performance RF and baseband building blocks for wireless receivers

Because of the unique architecture of wireless receivers, a designer must understand both the high frequency aspects as well as the low-frequency analog considerations for different building blocks of the receiver. The primary goal of this research work is to explore techniques for implementing high...

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Bibliographic Details
Main Author: Bahmani, Faramarz
Other Authors: Edgar, Sanchez-Sinencio.
Format: Others
Language:en_US
Published: Texas A&M University 2007
Subjects:
Online Access:http://hdl.handle.net/1969.1/5818
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spelling ndltd-tamu.edu-oai-repository.tamu.edu-1969.1-58182013-01-08T10:38:48ZHigh performance RF and baseband building blocks for wireless receiversBahmani, FaramarzRF circuitBaseband circuitWirelessReceiverBecause of the unique architecture of wireless receivers, a designer must understand both the high frequency aspects as well as the low-frequency analog considerations for different building blocks of the receiver. The primary goal of this research work is to explore techniques for implementing high performance RF and baseband building blocks for wireless applications. Several novel techniques to improve the performance of analog building blocks are presented. An enhanced technique to couple two LC resonators is presented which does not degrade the loaded quality factor of the resonators which results in an increased dynamic range. A novel technique to automatically tune the quality factor of LC resonators is presented. The proposed scheme is stable and fast and allows programming both the quality factor and amplitude response of the LC filter. To keep the oscillation amplitude of LC VCOs constant and thus achieving a minimum phase noise and a reliable startup, a stable amplitude control loop is presented. The proposed scheme has been also used in a master-slave quality factor tuning of LC filters. An efficient and low-cost architecture for a 3.1GHz-10.6GHz ultra-wide band frequency synthesizer is presented. The proposed scheme is capable of generating 14A novel pseudo-differential transconductance amplifier is presented. The proposed scheme takes advantage of the second-order harmonic available at the output current of pseudo-differential structure to cancel the third-order harmonic distortion. A novel nonlinear function is proposed which inherently removes the third and the fifth order harmonics at its output signal. The proposed nonlinear block is used in a bandpass-based oscillator to generate a highly linear sinusoidal output. Finally, a linearized BiCMOS transconductance amplifier is presented. This transconductance is used to build a third-order linear phase low pass filter with a cut-off frequency of 264MHz for an ultra-wide band receiver. carrier frequencies.Texas A&M UniversityEdgar, Sanchez-Sinencio.2007-09-17T19:34:01Z2007-09-17T19:34:01Z2003-052007-09-17T19:34:01ZBookThesisElectronic Dissertationtext3342751 byteselectronicapplication/pdfborn digitalhttp://hdl.handle.net/1969.1/5818en_US
collection NDLTD
language en_US
format Others
sources NDLTD
topic RF circuit
Baseband circuit
Wireless
Receiver
spellingShingle RF circuit
Baseband circuit
Wireless
Receiver
Bahmani, Faramarz
High performance RF and baseband building blocks for wireless receivers
description Because of the unique architecture of wireless receivers, a designer must understand both the high frequency aspects as well as the low-frequency analog considerations for different building blocks of the receiver. The primary goal of this research work is to explore techniques for implementing high performance RF and baseband building blocks for wireless applications. Several novel techniques to improve the performance of analog building blocks are presented. An enhanced technique to couple two LC resonators is presented which does not degrade the loaded quality factor of the resonators which results in an increased dynamic range. A novel technique to automatically tune the quality factor of LC resonators is presented. The proposed scheme is stable and fast and allows programming both the quality factor and amplitude response of the LC filter. To keep the oscillation amplitude of LC VCOs constant and thus achieving a minimum phase noise and a reliable startup, a stable amplitude control loop is presented. The proposed scheme has been also used in a master-slave quality factor tuning of LC filters. An efficient and low-cost architecture for a 3.1GHz-10.6GHz ultra-wide band frequency synthesizer is presented. The proposed scheme is capable of generating 14A novel pseudo-differential transconductance amplifier is presented. The proposed scheme takes advantage of the second-order harmonic available at the output current of pseudo-differential structure to cancel the third-order harmonic distortion. A novel nonlinear function is proposed which inherently removes the third and the fifth order harmonics at its output signal. The proposed nonlinear block is used in a bandpass-based oscillator to generate a highly linear sinusoidal output. Finally, a linearized BiCMOS transconductance amplifier is presented. This transconductance is used to build a third-order linear phase low pass filter with a cut-off frequency of 264MHz for an ultra-wide band receiver. carrier frequencies.
author2 Edgar, Sanchez-Sinencio.
author_facet Edgar, Sanchez-Sinencio.
Bahmani, Faramarz
author Bahmani, Faramarz
author_sort Bahmani, Faramarz
title High performance RF and baseband building blocks for wireless receivers
title_short High performance RF and baseband building blocks for wireless receivers
title_full High performance RF and baseband building blocks for wireless receivers
title_fullStr High performance RF and baseband building blocks for wireless receivers
title_full_unstemmed High performance RF and baseband building blocks for wireless receivers
title_sort high performance rf and baseband building blocks for wireless receivers
publisher Texas A&M University
publishDate 2007
url http://hdl.handle.net/1969.1/5818
work_keys_str_mv AT bahmanifaramarz highperformancerfandbasebandbuildingblocksforwirelessreceivers
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