Flicker Noise in CMOS LC Oscillators: Estimation in Hardware and Adaptive Control of Hajimiri Impulse Sensitivity Function Components

 
9783639130843: Flicker Noise in CMOS LC Oscillators: Estimation in Hardware and Adaptive Control of Hajimiri Impulse Sensitivity Function Components
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CMOS implementations of direct conversion receivers, the architecture most amenable to complete monolithic integration, are hindered by the 1/f^3 noise of the local oscillator. This work explores sources of flicker noise generation in the cross-coupled negative resistance oscillator (NMOS, PMOS, and CMOS). Prior and current work in the area of phase noise modeling is reviewed, including the work of Leeson, Hajimiri, Hegazi, and others, seeking the mechanisms by which flicker noise is upconverted. The work of Hajimiri is extended with a simple hardware ¿DC estimator for the special case of LC CMOS oscillators. A method of adaptive control of an oscillator core is presented, as well, using this estimate to maintain the condition of minimum flicker noise upconversion in the oscillator. A Figure of Merit (FOM) methodology suitable to the 1/f^3 phase noise region is also developed. This work will be of particular interest to practicing engineers in RFIC design, as well as graduate students and advanced undergraduates.

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Dale S. Douglas has received both BEE and MSECE degrees from Georgia Institute of Technology, Atlanta, USA. Currently he is an IC designer at Silicon Creations, Dacula, Georgia, USA. His research interests include RF design, adaptive circuits, and analog signal processing generally. Mr. Douglas has been granted three US patents.

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Book Description Condition: New. Publisher/Verlag: VDM Verlag Dr. Müller | Estimation in Hardware and Adaptive Control of Hajimiri Impulse Sensitivity Function Components | CMOS implementations of direct conversion receivers,the architecture most amenable to complete monolithic integration, arehindered by the 1/f^3 noise of the local oscillator. This workexplores sources of flicker noise generation in the cross-coupled negativeresistance oscillator (NMOS, PMOS, and CMOS). Prior and current work in thearea of phase noise modeling is reviewed, including the work ofLeeson, Hajimiri, Hegazi, and others, seeking the mechanisms by whichflicker noise is upconverted. The work of Hajimiri is extended with asimple hardware DC estimator for the special case of LC CMOSoscillators. A method of adaptive control of an oscillator core is presented,as well, using this estimate to maintain the condition of minimum flickernoise upconversion in the oscillator. A Figure of Merit(FOM) methodology suitable to the 1/f^3 phase noise region is alsodeveloped. This work will be of particular interest to practicingengineers in RFIC design, as well as graduate students and advanced undergraduates. | Format: Paperback | Language/Sprache: english | 130 gr | 88 pp. Seller Inventory # K9783639130843

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Book Description VDM Verlag. Paperback. Condition: New. 88 pages. Dimensions: 9.1in. x 5.8in. x 0.3in.CMOS implementations of direct conversion receivers, the architecture most amenable to complete monolithic integration, are hindered by the 1f3 noise of the local oscillator. This work explores sources of flicker noise generation in the cross-coupled negative resistance oscillator (NMOS, PMOS, and CMOS). Prior and current work in the area of phase noise modeling is reviewed, including the work of Leeson, Hajimiri, Hegazi, and others, seeking the mechanisms by which flicker noise is upconverted. The work of Hajimiri is extended with a simple hardware DC estimator for the special case of LC CMOS oscillators. A method of adaptive control of an oscillator core is presented, as well, using this estimate to maintain the condition of minimum flicker noise upconversion in the oscillator. A Figure of Merit (FOM) methodology suitable to the 1f3 phase noise region is also developed. This work will be of particular interest to practicing engineers in RFIC design, as well as graduate students and advanced undergraduates. This item ships from multiple locations. Your book may arrive from Roseburg,OR, La Vergne,TN. Paperback. Seller Inventory # 9783639130843

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Book Description VDM Verlag, Germany, 2009. Paperback. Condition: New. Language: English . Brand New Book. CMOS implementations of direct conversion receivers, the architecture most amenable to complete monolithic integration, are hindered by the 1/f3 noise of the local oscillator. This work explores sources of flicker noise generation in the cross-coupled negative resistance oscillator (NMOS, PMOS, and CMOS). Prior and current work in the area of phase noise modeling is reviewed, including the work of Leeson, Hajimiri, Hegazi, and others, seeking the mechanisms by which flicker noise is upconverted. The work of Hajimiri is extended with a simple hardware DC estimator for the special case of LC CMOS oscillators. A method of adaptive control of an oscillator core is presented, as well, using this estimate to maintain the condition of minimum flicker noise upconversion in the oscillator. A Figure of Merit (FOM) methodology suitable to the 1/f3 phase noise region is also developed. This work will be of particular interest to practicing engineers in RFIC design, as well as graduate students and advanced undergraduates. Seller Inventory # KNV9783639130843

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