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首页> 外文期刊>International journal of RF and microwave computer-aided engineering >Composite Right/left Handed Artificial Transmission Line Structures In Cmos For Controlled Insertion Phase At 30 Ghz
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Composite Right/left Handed Artificial Transmission Line Structures In Cmos For Controlled Insertion Phase At 30 Ghz

机译:在Cmos中以30 Ghz控制插入相位的复合右/左手人工传输线结构

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摘要

Two CMOS integrated circuits are presented that utilize metamaterial composite right/left handed (CRLH) transmission lines (TLs) for zero insertion phase at 30 GHz. Specifically, 2 and 3 unit cell structures are presented with controlled insertion phase that is achieved by cascading lumped element capacitors and spiral inductors in an LC network configuration defining the TL unit cells. Furthermore, the fixed TL structures suggest the possibility of zero, advanced or delayed insertion phases by element variation, or by the use of simple active components. Simulation and measured results are in good agreement with CRLH TL theory, and display a linear insertion phase and flat group delay values that are dependent on the number of unit cells with an insertion loss of ~0.8 dB per cell. These findings suggest that such high speed CRLH TLs structures can be implemented for linear array feeding networks and compact antenna designs in CMOS at millimeter wave frequencies.
机译:提出了两种CMOS集成电路,它们利用超材料复合右/左手(CRLH)传输线(TL)在30 GHz时实现零插入相位。具体地,呈现具有受控插入阶段的2和3单位单元结构,该插入阶段是通过在定义TL单位单元的LC网络配置中级联集总元件电容器和螺旋电感器来实现的。此外,固定的TL结构建议通过元素变化或使用简单的有源组件来实现零插入,提前插入或延迟插入的可能性。仿真和测量结果与CRLH TL理论非常吻合,并显示线性插入相位和平坦群延迟值,这些值取决于单位单元的数量,每个单元的插入损耗为〜0.8 dB。这些发现表明,这种高速CRLH TL结构可用于毫米波频率下的线性阵列馈电网络和CMOS中的紧凑型天线设计。

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