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Non-Magnetic CMOS Switched-Transmission-Line Circulators With High Power Handling and Antenna Balancing: Theory and Implementation

机译:具有高功率处理和天线平衡的非磁性CMOS开关传输线路循环器:理论与实现

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Recently, CMOS non-magnetic circulators have been demonstrated based on switch-based spatio-temporal conductivity modulation, but these initial demonstrations remain limited in transmitter power handling, linearity, and ability to combat antenna variations. This paper describes a non-magnetic circulator architecture that uses no external components, and employs a variety of linearity enhancement techniques, such as device stacking, optimal switch biasing, and localized electrostatic discharge (ESD) design to achieve watt-class power handling and high 11P3. A new antenna balancing approach is described that uses no inductors or lossy resistors and yet allows high isolation in the face of strong antenna reflections. The concepts are validated through a 1-GHz 180-nm SO1 CMOS prototype that achieves >1-W TX ANT P-1 dB, > +50-dBm TX ANT 11P3, and high isolation for as high as 1.85 ANT VSWR and beyond. The circulator also exhibits low insertion losses of 2.1/2.9 dB in the TX ANT and ANT RX paths, and ANT RX noise figure (NF) of 3.1 dB. These results represent a 10-100x enhancement in linearity/power handling over prior non-magnetic circulators and are shown to lower the power consumption of a communication link when compared with the state-of-the-art electrical balance duplexers in scenarios, where dynamic range is limited by P-1 dB and NF.
机译:最近,基于基于开关的时空电导率调制来证明CMOS非磁循环器,但是这些初始演示在发射机功率处理,线性度和打击天线变化的能力中仍然有限。本文介绍了一种非磁性循环器架构,不使用外部元件,采用各种线性增强技术,例如设备堆叠,最佳开关偏置和局部静电放电(ESD)设计,以实现WATT类功率处理和高11p3。描述了一种新的天线平衡方法,其使用没有电感器或有损电阻,并且在面对强的天线反射面上允许高隔离。该概念通过1-GHz 180-NM SO1 CMOS原型进行验证,可实现> 1-W TX Ant P-1 dB,> + 50-DBM TX Ant 11p3,高度为1.85蚁VSWR及更高的高度隔离。循环器还在TX Ant和Ant Rx路径中表现出2.1 / 2.9 dB的低插入损耗,以及3.1 dB的Ant Rx噪声系数(NF)。这些结果表示在现有的非磁性循环器上的线性/功率处理中的10-100倍增强,并且与场景中的最先进的电气平衡双工器相比,较低的通信链路的功耗降低,其中动态范围受P-1 dB和NF的限制。

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