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A New Design Approach for Asymmetric Coupled-Section Marchand Balun

机译:非对称耦合截面马尔尚和巴伦的新设计方法

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A systematic design for asymmetric coupled-section Marchand baluns is presented. Asymmetrically coupled transmission lines in multilayer configuration are exploited for constructing Marchand baluns. Design equations for characteristic impedance and electrical length of asymmetrical coupled transmission lines are derived for establishing a systematic design procedure. Novel Marchand balun based on these design equations is composed of two identical asymmetrical coupled transmission lines. However, contrary to the general conventional design approach where ranges for characteristic impedances of coupled lines are ambiguously capitalized, values for characteristic impedance and length are explicitly expressed. Our approach is fundamentally different from the design method using coupling coefficients where solution for coupling coefficient is inherently restricted. To verify the proposed method, one design example is performed for wideband Marchand balun in multilayer configuration, and is fabricated for verifying the design procedure proposed. Maintaining the return loss more than 10 dB, the bandwidth is measured from 0.43 to 1.0 GHz, where $S_{21}$ and $S_{31}$ show better than -4 dB. The measured phase and amplitude imbalances illustrate 0.5 dB and ${pm}5^{circ}$, respectively.
机译:提出了非对称耦合截面马尔尚巴伦的系统设计。利用多层配置的不对称耦合传输线来构造马尔尚巴伦。推导了非对称耦合传输线的特征阻抗和电长度的设计方程,以建立系统的设计程序。基于这些设计方程式的新型Marchand balun由两条相同的不对称耦合传输线组成。但是,与通常的常规设计方法(其中耦合线的特征阻抗的范围不明确地大写)相反,特征阻抗和长度的值明确表示。我们的方法与使用耦合系数的设计方法从根本上不同,后者的耦合系数解决方案固有地受到限制。为了验证所提出的设计方法,针对多层结构的宽带马尔尚和巴伦进行了一个设计实例,并为验证所提出的设计程序进行了制作。保持回波损耗大于10 dB,带宽在0.43至1.0 GHz范围内测量,其中$ S_ {21} $和$ S_ {31} $表现出优于-4 dB的带宽。测得的相位和幅度不平衡分别示出了0.5 dB和$ {pm} 5 ^ {circ} $。

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