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Design realization of an improved high directional coupler with ultra wideband

机译:一种改进的超宽带高定向耦合器的设计实现

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A novel improved high directional coupler with super wide frequency band was designed in this paper. The device is composed of a coaxial-cable balun and a resistance power divider circuit. The coaxial-cable balun make signals transfer from unbalance to balance, and the power divider redistribute the two signals outputted from the balance ports of coaxial-cable balun. The two sections together realized signals directional transmission. To improve the wideband performance we introduced coupling capacitor design technique and thick film workmanship. The coupling capacitor design introduced into the device can repair the lower frequency response error of the coaxial-cable balun balance ports. The printed resistance can improve the high frequency working performance of the power divider. We firstly emulated the design using Serenade. The schematic model was built using thick film models and coupling capacitor chosen from the passive device library. The simulation results met our expectations that the working band was expanded. Then the assuming was verified in experiments. The directional coupler was tested using vector network analyzer. The test result showed that the novel directional coupler expanded the low work frequency limit to 100 kHz and the high work frequency limit to 40GHz. The directivity in the whole frequency range was larger than 15dB. The directivity was larger than 20dB in low frequency section (100 kHz∼45MHz). The thick film also elevated the power capacity and the fighting against static wearing ability. In conclusion, resistance power divider has significant influence on the final character of the directional coupler, effective mend on resistance circuit and fair matching of resistance power divider circuit with coaxial-cable balun are available ways to improve the directional coupler.
机译:本文设计了一种新颖的改进型超宽带超指向性耦合器。该设备由同轴电缆巴伦和电阻功率分配器电路组成。同轴电缆巴伦使信号从不平衡传递到平衡,并且功率分配器重新分配从同轴电缆巴伦的平衡端口输出的两个信号。这两部分共同实现了信号定向传输。为了提高宽带性能,我们引入了耦合电容器设计技术和厚膜工艺。器件中引入的耦合电容器设计可以修复同轴电缆巴伦平衡端口的较低频率响应误差。印刷电阻可以改善功率分配器的高频工作性能。我们首先使用Serenade来模拟设计。使用厚膜模型和从无源器件库中选择的耦合电容器构建了原理图模型。仿真结果满足了我们对工作范围扩大的期望。然后在实验中验证了这一假设。使用矢量网络分析仪对定向耦合器进行了测试。测试结果表明,新型定向耦合器将低工作频率限制扩展到100 kHz,将高工作频率限制扩展到40GHz。在整个频率范围内的方向性都大于15dB。在低频部分(100 kHz〜45MHz),方向性大于20dB。厚膜还提高了功率容量和抗静电磨损能力。综上所述,电阻分压器对定向耦合器的最终性能有很大的影响,对电阻电路的有效修补以及电阻分压器电路与同轴电缆巴伦的合理匹配是改善定向耦合器的有效方法。

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