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Second-Order Equivalent Circuits for the Design of Doubly-Tuned Transformer Matching Networks

机译:用于双调谐变压器匹配网络设计的二阶等效电路

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The doubly-tuned magnetic transformer, comprising coupled inductors shunted by capacitors, is today widely in use as interstage network and for impedance matching in silicon millimeter waves amplifiers. It provides several advantages, compared with simple LC resonators, but the design is made complex by the high order of the network, featuring multiple resonances, and by the large number of components to be selected. In this paper, a novel approach for the analysis and design of such a network is proposed. It is shown that the response can be very well approximated, in the neighborhood of each resonance frequency, by a second-order parallel or series RLC equivalent circuit. This yields simple equations for the impedance, the bandwidth, and the power loss, giving intuition into the network behavior, and greatly simplifying the design. Based on the results of the analysis, guidelines for the network optimization are proposed, targeting minimum power loss and a flat broadband response. Design examples of practical interest are presented: the component values estimated by hand calculation are in very good agreement with those provided by a numerical circuit optimizer.
机译:双调谐磁变压器包括被电容器分流的耦合电感器,如今已广泛用作级间网络并用于硅毫米波放大器的阻抗匹配。与简单的LC谐振器相比,它具有几个优点,但是由于网络的高阶,具有多个谐振特性以及要选择的组件数量众多,设计变得复杂。本文提出了一种新颖的网络分析和设计方法。结果表明,在每个谐振频率附近,通过二阶并联或串联RLC等效电路可以很好地近似响应。这样就产生了阻抗,带宽和功率损耗的简单方程式,从而直观地了解了网络行为,并大大简化了设计。根据分析结果,针对最低功耗和平坦的宽带响应提出了网络优化指南。给出了具有实际意义的设计示例:通过手工计算估算出的元件值与数字电路优化器提供的值非常一致。

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