105,92 €
117,69 €
-10% with code: EXTRA
Design of Low Power and Low Area Passive SIGMA Delta Modulators for Audio Applications
Design of Low Power and Low Area Passive SIGMA Delta Modulators for Audio Applications
105,92
117,69 €
  • We will send in 10–14 business days.
This book presents the study, design, modulation, optimization and implementation of low power, passive DT-ΣΔMs for use in audio applications. The high gain and bandwidth amplifier normally used for integration in ΣΔ modulation, is replaced by passive, switched-capacitor branches working under the Ultra Incomplete Settling (UIS) condition, leading to a reduction of the consumed power. The authors describe a design process that uses high level models and an optimization proce…
  • Publisher:
  • Year: 2017
  • ISBN-10: 3319570323
  • ISBN-13: 9783319570327
  • Format: 15.6 x 23.4 x 0.5 cm, softcover
  • Language: English
  • SAVE -10% with code: EXTRA

Design of Low Power and Low Area Passive SIGMA Delta Modulators for Audio Applications (e-book) (used book) | bookbook.eu

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This book presents the study, design, modulation, optimization and implementation of low power, passive DT-ΣΔMs for use in audio applications. The high gain and bandwidth amplifier normally used for integration in ΣΔ modulation, is replaced by passive, switched-capacitor branches working under the Ultra Incomplete Settling (UIS) condition, leading to a reduction of the consumed power. The authors describe a design process that uses high level models and an optimization process based in genetic algorithms to achieve the desired performance.

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  • Author: David Fouto
  • Publisher:
  • Year: 2017
  • ISBN-10: 3319570323
  • ISBN-13: 9783319570327
  • Format: 15.6 x 23.4 x 0.5 cm, softcover
  • Language: English English

This book presents the study, design, modulation, optimization and implementation of low power, passive DT-ΣΔMs for use in audio applications. The high gain and bandwidth amplifier normally used for integration in ΣΔ modulation, is replaced by passive, switched-capacitor branches working under the Ultra Incomplete Settling (UIS) condition, leading to a reduction of the consumed power. The authors describe a design process that uses high level models and an optimization process based in genetic algorithms to achieve the desired performance.

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