Silva / Huijsing | High-Resolution IF-to-Baseband SigmaDelta ADC for Car Radios | E-Book | sack.de
E-Book

E-Book, Englisch, 217 Seiten, eBook

Reihe: Analog Circuits and Signal Processing

Silva / Huijsing High-Resolution IF-to-Baseband SigmaDelta ADC for Car Radios


2008
ISBN: 978-1-4020-8164-4
Verlag: Springer Netherland
Format: PDF
Kopierschutz: 1 - PDF Watermark

E-Book, Englisch, 217 Seiten, eBook

Reihe: Analog Circuits and Signal Processing

ISBN: 978-1-4020-8164-4
Verlag: Springer Netherland
Format: PDF
Kopierschutz: 1 - PDF Watermark



High-Resolution IF-to-Baseband SigmaDelta ADC for Car Radios addresses the theory, system level design and circuit implementation of a high-resolution continuous-time IF-to-baseband quadrature SigmaDelta ADC. The target application of this ADC is in AM/FM/IBOC car radios. The ADC achieves a dynamic range of 118dB, which eliminates the need for an IF VGA or AM channel filter in car radios. The author is very well known within the Analog Circuits community.

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Professional/practitioner

Weitere Infos & Material


Preface.

1. Introduction. Motivation. Car Radio History. References.

2. DSP based Radio Receiver Architectures. Radio Receiver Architectures. ADC Performance Metrics. Desensitization and Blocking. Image Rejection. Analog Radio Broadcasting. Digital Radio Broadcasting. Integrated Solutions for AM/FM Receivers. References.

3. Continuous-Time Sigma-Delta Modulation. Basic Principles. High-order Sigma-Delta Modulators. Tonal Behaviour. Clock Jitter. References.

4. Sigma-Delta ADC Topologies for Radio Receivers. Lowpass Sigma-Delta ADCs. IF-to-Baseband Sigma-Delta ADCs. Quadrature IF-to-Baseband Sigma-Delta ADCs. Bandpass Sigma-Delta ADCs. Quadrature Bandpass Sigma-Delta ADCs. Conclusions. References.

5. IF-to-Baseband ADC for AM/FM/IBOC Receivers. IF-to-Baseband Conversion System. IF Mixer. First Integrator. High-Order Integrators and Resonators. Feedforward Coefficients and Quantizer. SC Feedback DAC. Experimental Results. References.

6. Conclusion. Benchmarking. Economic Feasibility. References.

A. Harmonic Distortion in CT Integrators using MOSCAPs. Introduction. Harmonic Distortion in Differential Gm-C Integrators. Harmonic Distortion in Differential Feedback Integrators. References.

B Noise Analysis of CT Sigma-Delta Modulators with SC Feedback DAC. Introduction. Noise Voltage PSD across a Switched Capacitor. Input-Referred Thermal Noise due to the SC Feedback DAC MOS Switches. Input-Referred Thermal Noise due to the SC Feedback DAC Reference Voltage. Input-Referred Thermal Noise due to the OpAmp. Conclusion. References.

List of Acronyms. List of Symbols. Index. About the Authors.


Prof. Johan Huijsing is very well known within the Analog Circuits community, and he has (co-)authored and edited numerous books for Springer.



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