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Analysis and design of negative resistance oscillators using surface transverse wave-based single port resonators

机译:基于表面横波的单端口谐振器的负阻振荡器的分析与设计

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This practically oriented paper presents the fundamentals for analysis, optimization, and design of negative resistance oscillators (NRO) stabilized with surface transverse wave (STW)-based single-port resonators (SPR). Data on a variety of high-Q, low-loss SPR devices in the 900- to 2000-MHz range, suitable for NRO applications, are presented, and a simple method for SPR parameter extraction through Pi-circuit measurements is outlined. Negative resistance analysis, based on S-parameter data of the active device, is performed on a tuned-base, grounded collector transistor NRO, known for its good stability and tuning at microwave frequencies. By adding a SPR in the emitter network, the static transducer capacitance is absorbed by the circuit and is used to generate negative resistance only over the narrow bandwidth of the acoustic device, eliminating the risk of spurious oscillations. The analysis allows exact prediction of the oscillation frequency, tuning range, loaded Q, and excess gain. Simulation and experimental data on a 915-MHz fixed-frequency NRO and a wide tuning range, voltage-controlled STW oscillator, built and tested experimentally, are presented. Practical design aspects including the choice of transistor, negative feedback circuits, load coupling, and operation at the highest phase slope for minimum phase noise are discussed.
机译:这篇面向实用的论文介绍了基于表面横波(STW)的单端口谐振器(SPR)稳定的负电阻振荡器(NRO)的分析,优化和设计基础。给出了适用于NRO应用的900-2000 MHz范围内的各种高Q,低损耗SPR器件的数据,并概述了通过Pi电路测量提取SPR参数的简单方法。基于有源器件的S参数数据的负电阻分析是在调谐基极接地的集电极晶体管NRO上进行的,NRO以其良好的稳定性和在微波频率下的调谐而著称。通过在发射极网络中添加SPR,静态换能器电容会被电路吸收,并仅在声学设备的窄带宽上用于产生负电阻,从而消除了寄生振荡的风险。该分析可以准确预测振荡频率,调谐范围,负载Q和过量增益。给出了在915MHz固定频率NRO和宽调谐范围,压控STW振荡器上的仿真和实验数据,并通过实验进行了测试。讨论了实际的设计方面,包括晶体管的选择,负反馈电路,负载耦合以及在最大相位斜率下工作以使相位噪声最小的问题。

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