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Background Calibration of Time-Interleaved Data Converters [electronic resource] / by Manar El-Chammas, Boris Murmann.

By: El-Chammas, Manar [author.].
Contributor(s): Murmann, Boris [author.] | SpringerLink (Online service).
Material type: materialTypeLabelBookSeries: Analog Circuits and Signal Processing: Publisher: New York, NY : Springer New York, 2012Description: XIX, 123p. 73 illus. online resource.Content type: text Media type: computer Carrier type: online resourceISBN: 9781461415114.Subject(s): Engineering | Electronics | Systems engineering | Engineering | Circuits and Systems | Electronics and Microelectronics, Instrumentation | Signal, Image and Speech ProcessingDDC classification: 621.3815 Online resources: Click here to access online
Contents:
Introduction -- Time-Interleaved ADCs -- Mitigation of Timing Skew -- Architecture Optimization -- Circuit Design -- Measurement Results -- Conclusion.
In: Springer eBooksSummary: This book describes techniques for time-interleaving a number of analog-to-digital data converters to achieve demanding bandwidth requirements.  Readers will benefit from the presentation of a low-power solution that can be used in actual products, while alleviating the time-varying signal artifacts that typically arise when implementing such a system architecture. Discusses time-interleaved ADC theory in detail; Presents and analyzes a full solution for timing-skew in time-interleaved ADCs; Demonstrates how to optimize the design of a time-interleaved ADC for extremely low-power and very high sample rate.   Presents and analyzes a full solution for timing-skew in time-interleaved ADCs; Demonstrates how to optimize the design of a time-interleaved ADC for extremely low-power and very high sample rate.  
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Introduction -- Time-Interleaved ADCs -- Mitigation of Timing Skew -- Architecture Optimization -- Circuit Design -- Measurement Results -- Conclusion.

This book describes techniques for time-interleaving a number of analog-to-digital data converters to achieve demanding bandwidth requirements.  Readers will benefit from the presentation of a low-power solution that can be used in actual products, while alleviating the time-varying signal artifacts that typically arise when implementing such a system architecture. Discusses time-interleaved ADC theory in detail; Presents and analyzes a full solution for timing-skew in time-interleaved ADCs; Demonstrates how to optimize the design of a time-interleaved ADC for extremely low-power and very high sample rate.   Presents and analyzes a full solution for timing-skew in time-interleaved ADCs; Demonstrates how to optimize the design of a time-interleaved ADC for extremely low-power and very high sample rate.  

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