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Autore: | Zhao Feng |
Titolo: | Low-Noise Low-Power Design for Phase-Locked Loops : Multi-Phase High-Performance Oscillators / / by Feng Zhao, Fa Foster Dai |
Pubblicazione: | Cham : , : Springer International Publishing : , : Imprint : Springer, , 2015 |
Edizione: | 1st ed. 2015. |
Descrizione fisica: | 1 online resource (106 p.) |
Disciplina: | 620 |
621.381 | |
621.3815 | |
621.382 | |
Soggetto topico: | Electronic circuits |
Electronics | |
Microelectronics | |
Signal processing | |
Image processing | |
Speech processing systems | |
Circuits and Systems | |
Electronics and Microelectronics, Instrumentation | |
Signal, Image and Speech Processing | |
Persona (resp. second.): | DaiFa Foster |
Note generali: | Description based upon print version of record. |
Nota di contenuto: | Introduction -- Analysis of Quantization Noise Reduction Techniques for Fractional-N PLL -- A Wide-Band 0.13µm SiGe BiCMOS PLL for X-Band Radar -- Design and Analysis of QVCO with Different Coupling Techniques -- Design and Analysis of a 0.6V QVCO with Capacitive-Coupling Technique -- Conclusions. |
Sommario/riassunto: | This book introduces low-noise and low-power design techniques for phase-locked loops and their building blocks. It summarizes the noise reduction techniques for fractional-N PLL design and introduces a novel capacitive-quadrature coupling technique for multi-phase signal generation. The capacitive-coupling technique has been validated through silicon implementation and can provide low phase-noise and accurate I-Q phase matching, with low power consumption from a super low supply voltage. Readers will be enabled to pick one of the most suitable QVCO circuit structures for their own designs, without additional effort to look for the optimal circuit structure and device parameters. . |
Titolo autorizzato: | Low-Noise Low-Power Design for Phase-Locked Loops |
ISBN: | 3-319-12200-2 |
Formato: | Materiale a stampa |
Livello bibliografico | Monografia |
Lingua di pubblicazione: | Inglese |
Record Nr.: | 9910299860203321 |
Lo trovi qui: | Univ. Federico II |
Opac: | Controlla la disponibilità qui |