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Analysis of Frequency Divider RTD Circuits

机译:分频器RTD电路分析

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摘要

The behavior of a novel circuit topology able to implement a frequency divider is studied. This circuit is composed of a resonant tunnelling diode (RTD), an inductor, and a capacitor, so it exhibits a very high operating frequency and low power consumption. It employs the period-adding sequences which appear in its bifurcation diagram to perform the frequency division. Compared to a previously reported similar circuit, it has wider operation windows and a higher division factor for the driver frequency, while maintaining the extremely high operating frequency, its simplicity, and the division factor tunability through the selection of circuit parameters. Simulation results using the HSPICE RTD model from project LOCOM as well as several realistic para-sitics elements are given, which confirm the theoretical capabilities previously analyzed.
机译:研究了能够实现分频器的新型电路拓扑的行为。该电路由谐振隧道二极管(RTD),电感器和电容器组成,因此具有很高的工作频率和较低的功耗。它使用出现在其分叉图中的周期添加序列来执行分频。与先前报道的类似电路相比,它具有更宽的工作窗口和更高的驱动器频率分频系数,同时通过选择电路参数保持极高的工作频率,简单性和分频系数可调性。给出了使用来自LOCOM项目的HSPICE RTD模型以及几个实际的寄生因素的仿真结果,这些结果证实了先前分析的理论能力。

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