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Bias field controlled phasing of Ferrimagnetic Coaxial Nonlinear Transmission Lines

机译:偏置场控制亚铁同轴非线性传输线的控制相位

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Coaxial Ferrimagnetic Nonlinear Transmission Lines (NLTL) are utilized as all solid state High Power Microwave (HPM) sources with virtually fixed phase relationship between input voltage pulse and output rf wave. Since the output power of a single NLTL at a given frequency, and of a given size, is limited by the effect of line dimensions as well as charge voltage on operating frequency, we employ an NLTL array to achieve higher power levels. To operate in microwave generation mode the ferrite domains are aligned along the axial direction of the NLTL using a biasing magnetic field generated by a dc current driven solenoid. This biasing method also provides a means of controlling the line delay by adjusting the magnetization of the ferrites using an auxiliary delay coil. By utilizing the delay coil and the primary biasing coil together on an NLTL, the operating frequency can be locked at a given frequency while the delay of the line can be independently adjusted. The relationship between the delay coil field and the corresponding temporal delay is investigated, and two NLTLs fed by identical voltage pulse shapes are combined using the phase control method described.
机译:同轴亚铁非线性传输线(NLT1)用作所有固态高功率微波(HPM)源,输入电压脉冲与输出RF波之间的几乎固定相位关系。由于在给定频率和给定尺寸的单个NLTL的输出功率受到线尺寸的影响和运行频率上的充电电压的限制,因此我们采用了NLTL阵列来实现更高的功率水平。为了在微波生成模式下操作,使用由DC电流驱动螺线管产生的偏置磁场沿着NLTL的轴向对准铁氧体畴。该偏置方法还提供了通过使用辅助延迟线圈调节铁氧体的磁化来控制线延迟的方法。通过利用延迟线圈和主偏置线圈在NLT1上一起,可以在给定频率上锁定工作频率,同时可以独立地调节线的延迟。研究了延迟线圈场和相应的时间延迟之间的关系,并使用相同的电压脉冲形状进料的两个NLTL使用相位控制方法组合。

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