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首页> 外文期刊>Microwave Theory and Techniques, IEEE Transactions on >Optimum Design of Wideband Compensated and Uncompensated Marchand Baluns With Step Transformers
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Optimum Design of Wideband Compensated and Uncompensated Marchand Baluns With Step Transformers

机译:带阶跃变压器的宽带补偿和无补偿马尔尚巴伦的优化设计

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摘要

This paper presents a design approach for wideband compensated and uncompensated Marchand baluns with stepped-impedance transformers. In order to obtain an equal-ripple bandpass response, conventional Chebyshev polynomials are modified to compensate the effect of the transfer function's dc poles. Unlike the available microwave filter design approaches, which usually require redundant elements, this approach leads to an optimum design by using the minimum number of equal length transmission line elements. Based on this design approach, both compensated and uncompensated Marchand baluns are studied. It is found that increasing difficulty arises when implementing a large bandwidth balun using the widely adopted compensated balun structure. Hence, the uncompensated balun structure becomes a better choice. To validate the proposed design approach, an uncompensated balun is designed on a standard two-sided printed circuit board. The measured results indicate that a return loss greater than 20 dB can be observed from 1 to 7.5 GHz. The phase imbalance is less than 4deg and the amplitude is less than 0.5 dB from dc to 7.2 GHz.
机译:本文提出了一种带步进阻抗变压器的宽带补偿和无补偿马尔尚巴伦的设计方法。为了获得等波纹带通响应,对常规的切比雪夫多项式进行了修改,以补偿传递函数直流极的影响。与通常需要冗余元件的可用微波滤波器设计方法不同,此方法通过使用最少数量的等长传输线元件来实现最佳设计。基于这种设计方法,研究了补偿和未补偿的马尔尚平衡-不平衡变换器。发现当使用广泛采用的补偿巴伦结构来实现大带宽巴伦时,难度增加。因此,未补偿的平衡-不平衡转换器结构成为更好的选择。为了验证所提出的设计方法,在标准的双面印刷电路板上设计了无补偿的不平衡变压器。测量结果表明,从1到7.5 GHz,可以观察到大于20 dB的回波损耗。从直流到7.2 GHz,相位不平衡小于4deg,幅度小于0.5 dB。

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