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Design and simulation of L-band coaxial ceramic resonator oscillator

机译:L波段同轴陶瓷谐振器的设计与仿真

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In recent years space and military communication technology relying on sensors to monitor and improve subsystem performance by using high efficiency, low noise, small size, low cost & highly reliable components. Many of these subsystem components contain oscillator as one of the key circuit component with lowest phase noise as requirement. A typical RF / Microwave oscillator consists of an active device (transistor) and passive frequency determining element (resonator). This paper proposed a novel design of L-band Coaxial Ceramic Resonator Oscillator (CRO) of 1100MHz resonance frequency by using Skyworks (Trans-Tech) 8800 series coaxial ceramic resonator with dielectric constant of 39. The CRO gives a better performance, improved quality factor, high Q and eliminate the micro phonics effects. The customized user-configurable and parameterized coaxial ceramic resonator 3D element model developed to analyze the oscillator using Electronic Design Automation (EDA) tool. Infineon BFP520 device a silicon bipolar junction transistor (BJT) used as active device for the oscillator analysis. The analysis is done by using nonlinear circuit &electromagnetic (EM) co-simulations so that effects such as the behavior of large signals, the parasitic effects of packages, resonator coupling with routed traces &visa, etc., are taken into consideration. This work can be used in applications like low phase noise VCO (Voltage Controlled Oscillator), tuned oscillators, coaxial ceramic filters, and tuned amplifiers. The L-band CRO's circuit & EM simulation is done by using National Instrumentation/Applied Wave Research (NI/AWR) Microwave Office (MWO) & Analyst environment.
机译:近年来,太空和军事通信技术依靠传感器来监视和提高子系统性能,方法是使用高效,低噪声,小尺寸,低成本和高度可靠的组件。这些子系统中的许多组件都包含振荡器,这是关键电路组件之一,其要求的相位噪声最低。典型的RF /微波振荡器由有源器件(晶体管)和无源频率确定元件(谐振器)组成。本文采用介电常数为39的Skyworks(Trans-Tech)8800系列同轴陶瓷谐振器,提出了一种谐振频率为1100MHz的L带同轴陶瓷谐振器(CRO)的新颖设计。CRO具有更好的性能,改善了品质因数,高Q值并消除了微音效应。定制的用户可配置和参数化的同轴陶瓷谐振器3D元素模型,旨在使用电子设计自动化(EDA)工具分析振荡器。 Infineon BFP520器件是一种硅双极结型晶体管(BJT),用作振荡器分析的有源器件。该分析是通过使用非线性电路和电磁(EM)协同仿真完成的,因此考虑了诸如大信号的行为,封装的寄生效应,谐振器与走线和visa耦合之类的影响。这项工作可用于低相位噪声VCO(电压控制振荡器),调谐振荡器,同轴陶瓷滤波器和调谐放大器等应用中。 L波段CRO的电路和EM仿真是通过使用National Instrumentation / Applied Wave Research(NI / AWR)微波办公室(MWO)和分析人员环境完成的。

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