Proceedings of the Conference on Design, Automation and Test in Europe 2008
DOI: 10.1145/1403375.1403452
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Analysis of oscillator injection locking by harmonic balance method

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Cited by 5 publications
(5 citation statements)
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“…In [5] the optimum load impedance for maximum output power for our HBT was calculated to be Z ref = 34 + 9.6 j , and a corresponding X‐parameters model was extracted at Z ref , by using a mixed passive–active load‐pull LSNA‐based measurement system. As demonstrated in previous papers by the authors [4, 5–14, 15], the model is able to correctly interpolate and extrapolate at other (close) output fundamental impedances around Z ref . This is very important for oscillator design, since depending on the design or the targeted figures of merit the optimum output impedance will change.…”
Section: Injection‐locked Oscillator Circuit Design: a New Design Metsupporting
confidence: 53%
See 2 more Smart Citations
“…In [5] the optimum load impedance for maximum output power for our HBT was calculated to be Z ref = 34 + 9.6 j , and a corresponding X‐parameters model was extracted at Z ref , by using a mixed passive–active load‐pull LSNA‐based measurement system. As demonstrated in previous papers by the authors [4, 5–14, 15], the model is able to correctly interpolate and extrapolate at other (close) output fundamental impedances around Z ref . This is very important for oscillator design, since depending on the design or the targeted figures of merit the optimum output impedance will change.…”
Section: Injection‐locked Oscillator Circuit Design: a New Design Metsupporting
confidence: 53%
“…This methodology is fully measurement-based, accurate and simple, in comparison to other previously proposed synchronised oscillator design procedures [6][7][8][9][10][11][12] being more thorough in terms of their theoretical background. Nevertheless, the new proposed methodology quickly provides a possible design solution, saving design simulation time.…”
Section: Introductionmentioning
confidence: 99%
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“…Substituting this expression into (20) the equation (19) can be written as follows (23) It is seen that the steady-state solution of (23) is , where satisfies the equation (24) that coincides with the injection locking phase algebraic equation derived in [9]. Thus the macromodel (19, 20) correctly defines the injection locking solution.…”
Section: B Injection Locking Conditionsmentioning
confidence: 89%
“…The Adler equation (1) (1) if and is taken in accordance with LC oscillator characteristics (see [9,10]). …”
Section: Adler Equationmentioning
confidence: 99%