Pll Modulation And Mixed Signal Calibration Techniques For Fmcw Radar

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PLL Modulation and Mixed-Signal Calibration Techniques for FMCW Radar

Author: Pratap Tumkur Renukaswamy
language: en
Publisher: Springer Nature
Release Date: 2024-06-14
This book covers analysis and design of PLL-based frequency modulators, used in the hearth of modern FMCW radars. The desired radar performance targets are translated into the modulator specifications first. The authors then focus on describing the optimal modulator architecture, with special care given to core building blocks of the system. The central analog building block described is a novel charge integrating-based chirp generator, which breaks limits of similar art in the field where performance (noise, area) is typically traded for power. The book then continues to describe power-efficient, mixed-signal background calibration engine implementation, which when applied in context of the presented system, ensures pristine linearity of the generated chirps. The detailed design guide shows how robust duty-cycling can be enabled, to ensure low-power consumption of the system, without compromise in radar performance. A complete overview of all circuit-level building blocks is provided, to ensure that readers can tackle every aspect of the system. Finally, the book covers description of a rigorous chirp-linearity and phase-noise performance characterization methodology, critical for evaluation of radar system performance metrics. This book provides insightful design guidelines for DTC-based fractional-N PLL synthesizers and QDAC-based FMCW frequency modulators for both academic researchers and industry IC design engineers.
Millimeter-Wave Digitally Intensive Frequency Generation in CMOS

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