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Millimeter-Wave Digitally Intensive Frequency Generation in CMOS

Autor Wanghua Wu, Robert Bogdan Staszewski, John R. Long
en Limba Engleză Hardback – 24 sep 2015
This book describes the digitally intensive time-domain architectures and techniques applied to millimeter-wave frequency synthesis, with the objective of improving performance and reducing the cost of implementation. Coverage includes system architecture, system level modeling, critical building block design, and digital calibration techniques, making it highly suitable for those who want to learn about mm-wave frequency generation for communication and radar applications, integrated circuit implementation, and time-domain circuit and system techniques.


  • Highlights the challenges of frequency synthesis at mm-wave band using CMOS technology
  • Compares the various approaches for mm-wave frequency generation (pros and cons)
  • Introduces the digitally intensive synthesizer approach and its advantages
  • Discusses the proper partitioning of the digitally intensive mm-wave frequency synthesizer into mm-wave, RF, analog, digital and software components
  • Provides detailed design techniques from system level to circuit level
  • Addresses system modeling, simulation techniques, design-for-test, and layout issues
  • Demonstrates the use of time-domain techniques for high-performance mm-wave frequency synthesis
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Specificații

ISBN-13: 9780128022078
ISBN-10: 0128022078
Pagini: 200
Dimensiuni: 152 x 229 x 15 mm
Greutate: 0.48 kg
Editura: ELSEVIER SCIENCE

Public țintă

University researchers, R&D engineers in industry, RFIC design engineers, and graduate students who want to learn about mm-wave frequency generation for communication and radar applications, integrated circuit implementation, and time-domain circuit and system techniques.

Cuprins

Chapter 1 IntroductionChapter 2 Millimeter-Wave Frequency Synthesizer ArchitectureChapter 3 Circuit Design Techniques for mm-Wave Frequency SynthesizerChapter 4 All-Digital Phase-Locked Loop Chapter 5 Millimeter-Wave Digitally controlled OscillatorChapter 6 A 60-GHz All-digital PLL for FMCW Transmitter ApplicationsChapter 7 Digital Techniques for higher RF performanceChapter 8 Design for Test for mm-Wave ADPLLIndex