集成可扩展和可调谐RF CMOS SOI正交混合耦合器

V. Knopik, B. Moret, E. Kerhervé
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引用次数: 15

摘要

混合电路是射频和微波设计的关键元件,尤其是平衡功率放大器(PA)。本文描述了一种实用的正交混合元件设计方法,并与测量结果相结合。它将单元格视为2个简单元素的组合,而不是X/4行。这种混合可以扩展到给定的频率,并且可以通过添加简单的小型扭曲单元来优化。其主要优点是保持两个输入(或输出)块完全平行,并将两个块之间的距离作为第一维参数考虑。该组件还可以在频率上进行调谐。它的外形是矩形的,至少使用了2层金属,可以很容易地集成到硅技术中。在5.85GHz和14GHz时,H9SOIFEM的典型插入损耗低于0.7dB,而在28GHz时,28FDSOI的可调性可将频率延长25%以上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Integrated scalable and tunable RF CMOS SOI quadrature hybrid coupler
Hybrid is a key component in RF and Microwave design, and particularly for balanced power amplifier (PA). This paper describes a pragmatic approach of the quadrature hybrid component design, aligned with measurements. It considers the cell as a combination of 2 simple elements rather than X/4 lines. The hybrid becomes scalable to reach a given frequency, and can be optimized by adding simple small twisted cells. The main advantages are to keep the two input (or output) blocks perfectly in parallel, and to consider the distance between the two blocks as a first dimension parameter. The component can also be tunable over frequency. The form factor is rectangular, using 2 metal layers at least and can be easily integrated in silicon technologies. The typical insertion loss is below 0.7dB in H9SOIFEM at 5.85GHz and 14GHz, while tunability can extend the frequency by more than 25% at 28GHz in 28FDSOI.
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