Title
Analysis And Design Of Autonomous Microwave Circuits
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Presents simulation techniques that substantially increase designers' control over the oscillationin autonomous circuitsThis book facilitates a sound understanding of the freerunning oscillation mechanism, the startup from the noise level, and the establishment of the steadystate oscillation. It deals with the operation principles and main characteristics of freerunning and injectionlocked oscillators, coupled oscillators, and parametric frequency dividers.Analysis and Design of Autonomous Microwave Circuits provides:An exploration of the main nonlinearanalysis methods, with emphasis on harmonic balance and envelope transient methodsTechniques for the efficient simulation of the most common autonomous regimesA presentation and comparison of the main stabilityanalysis methods in the frequency domainA detailed examination of the instabilization mechanisms that delimit the operation bands of autonomous circuitsCoverage of techniques used to eliminate common types of undesired behavior, such as spurious oscillations, hysteresis, and chaosA thorough presentation of the oscillator phase noiseA comparison of the main methodologies of phasenoise analysisTechniques for autonomous circuit optimization, based on harmonic balanceA consideration of different design objectives: presetting the oscillation frequency and output power, increasing efficiency, modifying the transient duration, and imposing operation bandsAnalysis and Design of Autonomous Microwave Circuits is a valuable resource for microwave designers, oscillator designers, and graduate students in RF microwave design.
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