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A simple transformer-based resonator architecture for low phase noise LC oscillators

机译:一种简单的基于变压器的谐振器架构,用于低相位噪声LC振荡器

摘要

This thesis investigates the use of a simple transformer-coupled resonator to increase the loaded Q of a LC resonant tank. The windings of the integrated transformer replace the simple inductors as the inductive elements of the resonator. The resonator topology considered in this project is a simpler alternative to another proposed by Straayer et al [5] because it just requires a single varactor. A prime objective of this project is to prove that a transformer-coupled resonator which is simpler than that proposed by Straayer in [5] produces the same reduction in phase noise. The use of this type of resonator topology is a valuable technique which can be employed by RF engineers to reduce the phase noise generated by oscillators in high speed RF systems. Such techniques which increase the loaded Q of the resonator are very useful in practice because of the inverse squared relationship between resonator Q and the phase noise in the output signals of LC oscillators. The important aspect of this technique is that magnetic coupling between the windings of an integrated transformer increases their effective inductance while leaving their series resistance relatively unchanged. As a result, the Q of these inductive elements is increased and the phase noise generated by the oscillator is reduced. SpectreRF simulations of an LC oscillator with a center frequency of 5GHz were used to verify the performance of the proposed transformer-coupled resonator.
机译:本文研究了使用简单的变压器耦合谐振器来增加LC谐振回路的负载Q。集成变压器的绕组代替简单的电感器作为谐振器的电感元件。该项目中考虑的谐振器拓扑是Straayer等人[5]提出的另一种更简单的替代方案,因为它仅需要一个变容二极管。该项目的主要目的是证明比Straayer在文献[5]中提出的谐振器更简单的变压器耦合谐振器能够产生相同的相位噪声降低。这种谐振器拓扑的使用是一种有价值的技术,可以被RF工程师用来减少高速RF系统中振荡器产生的相位噪声。由于谐振器Q与LC振荡器的输出信号中的相位噪声之间的平方反比关系,这种增加谐振器的负载Q的技术在实践中非常有用。该技术的重要方面在于,集成变压器的绕组之间的磁耦合会增加其有效电感,而其串联电阻则相对不变。结果,增加了这些电感性元件的Q,并且减小了由振荡器产生的相位噪声。使用中心频率为5GHz的LC振荡器的SpectreRF仿真来验证所提出的变压器耦合谐振器的性能。

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