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Design and analysis of the dynamic frequency divider using the BiCMOS-NDR chaos-based circuit

机译:基于BICMOS-NDR混沌电路的动态分频器的设计与分析

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A dynamic frequency divider using a negative-differential-resistance (NDR) circuit combined with an inductor and a capacitor was demonstrated. This NDR circuit was made of Si-based metal-oxide-semiconductor field-effect transistor (MOS) and SiGe-based heterojunction bipolar transistor devices. The operation of this frequency divider circuit was based on the long-period behavior of the nonlinear NDR circuit generating chaos phenomena. This circuit was analyzed by numerical simulation and the results showed that different dividing ratio could be obtained by modulating the input signal frequency using the MATLAB program and the HSPICE program. Some measured results were shown to verify our analyses. This application was designed based on a standard 0.18 mu m BiCMOS technique.
机译:演示了使用与电感器和电容器组合的负差分电阻(NDR)电路的动态分频器。 该NDR电路由基于Si的金属氧化物半导体场效应晶体管(MOS)和基于SiGe的异质结双极晶体管器件制成。 该分频器电路的操作基于产生混沌现象的非线性NDR电路的长周期行为。 通过数值模拟分析该电路,结果表明,通过使用MATLAB程序和HSPICE程序调制输入信号频率可以获得不同的分割比率。 显示一些测量结果验证了我们的分析。 该应用是基于标准的0.18 mu m Bicmos技术设计的。

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