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High Speed A/D Converters, 2001 Understanding Data Converters Through SPICE The Springer International Series in Engineering and Computer Science Series, Vol. 601

Langue : Anglais

Auteur :

Couverture de l’ouvrage High Speed A/D Converters
The Analog to Digital Converters represent one half of the link between the world we live in - analog - and the digital world of computers, which can handle the computations required in digital signal processing. These devices are mathematically very complex due to their nonlinear behavior and thus fairly difficult to analyze without the use of simulation tools. High Speed A/DConverters: Understanding Data Converters Through SPICE presents the subject from the practising engineer's point of view rather than from the academic's point of view. A practical approach is emphasized.
High Speed A/D Converters: Understanding Data Converters Through SPICE is intended as a learning tool by providing building blocks that can be stacked on top of each other to build higher order systems. The book provides a guide to understanding the various topologies used in A/D converters by suggesting simple methods for the blocks used in an A/D converter. The converters discussed throughout the book constitute a class of devices called undersampled or Nyquist converters.
The tools used in deriving the results presented are:
  • TopSpice® by Penzar - a mixed mode SPICE simulator - version 5.90. The files included in Appendix A were written for this tool. However, most circuit files need only minor adjustments to be used on other SPICE simulators such as PSpice, Hspice, IS_Spice and Micro-Cap IV;
  • Mathcad 2000 - Professional by Mathsoft. This tool is very useful in performing FFT analysis as well as drawing some of the graphs. Again, the mathcad files are included to help the user analyze the data.
High Speed A/D Converters:Understanding Data Converters Through SPICE not only supplies the models for the A/D converters for SPICE program but also describes the physical reasons for the converter's performance.
Acknowledgements. Preface. A/D Terminology. 1.1. The Static Parameters. 1.2. The Dynamic Parameters. 1.3. The FFT Analysis. The Comparator. 1.1. Comparator Macro-Model. 1.2. Comparator Delay Relative to Input Overdrive. 1.3. Propagation Delay Relative to Slew Rate. 1.4. Pulse Reproduction Fidelity. 1.5. CMOS Comparator Model. Flash A/D. 1.1. A practical 3-B A/D. 1.2. A 6-B A/D. 1.3. ILE/DLE Effects on SINAD. 1.4. Delay Between Analog-Input and Clock. 1.5. Slew Rate Limitation. Track and Hold Amplifier. 1.1. THA - The SPICE Model. 1.2. Errors Affecting THA Accuracy. SAR A/D. 1.1. Physical Limitations in SAR A/D. 1.2. Time Interleaved Converters. Folding A/D Converters. 1.1. The Analog Preprocessor. 1.2. Folding Preprocessor - An Example. 1.3. The Linear Interpolator. 1.4. Folding 8-B A/D - An Example. Pipelined A/D Converter. 1.1. Component Accuracy Requirements. 1.2. Errors in a Practical Pipelined A/D. 1.3. Errors Correction - An Example. 1.4. Residue A/D Error. Serial Pipeline A/D With 1.5-Bit/Stage. 1.1. An 8-Bit Serial Pipelined A/D - Example. Bibliography. Index.

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