Accurate Prediction, Validation of Ambient Microwave Breakdown Threshold in High Power Very Narrowband Microwave Filters and Novel Design Techniques to Establish Sufficient Margins

P. Ambati, Vikrant Singh, Shilpi Soni, V. Parekh
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Abstract

This paper describes the method to accurately predict air breakdown threshold in high power microwave filters using theoretical analysis carried out in 3D FEM electromagnetic field solver. The effects of various factors like atmospheric pressure, relative humidity, output VSWR on the air breakdown threshold are also evaluated. Predicted air breakdown threshold is experimentally verified. Details of High power tests required to demonstrate air breakdown are included in the paper. The impacts of air breakdown on RF parameters of the filter during and after breakdown have been discussed and visual signatures of breakdown on filter surface have been included in the paper. Novel methods to improve air breakdown margin without compromising on other performance parameters, have been discussed. Moreover, necessary precautions required for carrying out high power test in ambient environment on such very narrow band filters have also been detailed.
高功率甚窄带微波滤波器中环境微波击穿阈值的准确预测和验证,以及建立足够余量的新设计技术
本文介绍了利用三维有限元电磁场求解器进行理论分析,准确预测高功率微波滤波器空气击穿阈值的方法。分析了大气压力、相对湿度、输出驻波比等因素对空气击穿阈值的影响。通过实验验证了预测的空气击穿阈值。为证明空气击穿所需的高功率试验的详细信息包括在本文中。讨论了空气击穿对滤波器击穿时和击穿后射频参数的影响,并给出了击穿在滤波器表面的视觉特征。讨论了在不影响其他性能参数的情况下提高空气击穿裕度的新方法。此外,还详细介绍了在环境中对这种极窄带滤波器进行高功率测试所需的必要注意事项。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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