This book is dedicated to the analysis of parametric amplification with special emphasis on the MOS discrete-time implementation. This implementation is demonstrated by the presentation of several circuits where the MOS parametric amplifier cell is used: small gain amplifier, comparator with embedded pre-amplification, discrete-time mixer/IIR-Filter, and analog-to-digital converter (ADC).? Experimental results are shown to validate the overall design technique.This book analyzes parametric amplification with emphasis on the MOS discrete-time implementation. Examples include a small gain amplifier, discrete-time mixer/IIR-Filter, and analog-to-digital converter. Offers experimental data validating the overall design.
Wireless System and Circuit Design Space in Modern Digital CMOS Technology.- Parametric Signal Amplification in Continuous Time Domain.- Discrete Time Parametric Amplification in Digital CMOS Technology.- Design of a Pipeline ADC Fully Based in MOS Parametric Amplification.- Integrated Prototype and Experimental Evaluation.- Conclusion.
This book is dedicated to the analysis of parametric amplification with special emphasis on the MOS discrete-time implementation. This implementation is demonstrated by the presentation of several circuits where the MOS parametric amplifier cell is used: small gain amplifier, comparator with embedded pre-amplification, discrete-time mixer/IIR-Filter, and analog-to-digital converter (ADC).? Experimental results are shown to validate the overall design technique.
- Provides the complete theoretical analysis, supported by electrical simulations, of the parametric amplification technique in both continuous time and discrete time domains;
- Describes the design flow of an ADC fully based on discrete-time parametric amplification in CMOS technology;
- Presents a high speed time-interleaved pipeline ADC, based on parametric MOS amplificationl%