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JSSC 2019第2期RF & Wireless65nm

85110-GHz CMOS Magnetic-Free Nonreciprocal Components for Full-Duplex Transceive

展示两种用于全双工收发器的CMOS非互易组件:隔离器和环行器,在100GHz频段实现超过45dB隔离。
45dB隔离度,1.5GHz带宽,4.5-5.6dB插入损耗
CMOS非互易组件全双工100GHz隔离器
创新点1:基于时域调制的非互易结构,采用约RF频率六分之一的信号进行调制,实现了85-110 GHz频段内超过45 dB的隔离度和1.5 GHz带宽,显著提升了全双工通信系统的性能。
创新点2:改进的delta拓扑环行器设计,通过简化电路结构和减少芯片面积(仅0.21 mm²),在65 nm CMOS工艺下实现了5.6 dB的插入损耗和超过45 dB的隔离度,具有较高的集成度和性能优势。
创新点3:谐振型宽带匹配隔离器,利用两个电容性混频器和偏置网络形成宽带匹配,降低了插入损耗(最大4.5 dB),并在整个带宽内实现了>10 dB的回波损耗,提升了信号传输效率。
创新点4:高频段(100 GHz)非互易组件的CMOS实现,通过创新的电路设计和调制技术,在毫米波频段实现了高性能的隔离器和环行器,为超高速无线通信系统提供了紧凑且高效的解决方案。
Abstract
Two CMOS nonreciprocal components: 1) an iso- lator and 2) a circulator are demonstrated at 100-GHz band for full-duplex transceivers for ultra-high-data-rate wireless com- munication. The proposed nonreciprocal structures are based on a time-domain modulation by signals at around one-sixth of the RF frequencies and spatial duplexing throughout their RF signal paths, demonstrating over 45-dB isolation in a bandwidth of 1.5 GHz over the tuning range of 85–110 GHz. In the presented isolator, two c