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A 5GHz/1.8V CMOS Active Balun Integrated with LNA

机译:集成LNA的5GHz / 1.8V CMOS有源巴伦

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摘要

The development of high performance monolithic RF front-ends requires innovative RF circuit design to make the best of a good technology. A fully differential approach is usually preferred, due to its well-known properties. Although the differential approach must be preserved inside the chip, there are cases where the input signal is single-ended such as RF image filters and IF filters in a RF receiver. In these situations, a stage able to convert single-ended into differential signals (balun) is needed. The most cited topology, which is capable of providing high gain, consists on a differential stage with one of the two inputs grounded. Unfortunately, this solution has some drawbacks when implemented monolithically. This work presents the design and simulated results of an innovative high-performance monolithic single to differential converter, which overcomes the limitations of the circuits.The integration of the monolithic active balun circuit with an LNA on a 0.18μm CMOS process is also reported. The circuits presented here are aimed at 802.11a. Section 2 describes the balun circuit and section 3 presents its performance when it is connected to a conventional single-ended LNA. Section 4 shows the simulated performance results focused at phase/amplitude balance and noise figure. Finally, the last section draws conclusions and future work.
机译:高性能单片RF前端的开发需要创新的RF电路设计,以充分利用好的技术。由于其众所周知的特性,通常首选全差分方法。尽管差分方法必须保留在芯片内部,但在某些情况下,输入信号是单端的,例如RF接收器中的RF图像滤波器和IF滤波器。在这些情况下,需要一个能够将单端转换为差分信号(巴伦)的级。引用最多的拓扑能够提供高增益,它是由一个差分级构成的,该差分级的两个输入之一接地。不幸的是,当整体实施时,该解决方案具有一些缺点。这项工作提出了一种创新的高性能单片单至差分转换器的设计和仿真结果,克服了电路的局限性,还报道了将单片有源巴伦电路与LNA集成在0.18μmCMOS工艺上。这里介绍的电路针对802.11a。第2节介绍了平衡-不平衡转换器电路,第3节介绍了与常规单端LNA连接时的性能。第4节显示了针对相位/幅度平衡和噪声系数的仿真性能结果。最后,最后一部分得出结论和未来的工作。

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