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A Highly-integrated Non-magnetic Passive Circulator Based on Rotary Traveling-wave Oscillator and Spatio-temporal Conductivity Modulation in 130 nm CMOS

机译:基于旋转行驶波振荡器的高度集成的非磁无源循环和130nm CMOS中的时空电导率调制

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A fully-integrated non-magnetic passive circulator for full-duplex wireless communication application is presented in this letter. The proposed design is based on spatio-temporal conductivity modulation to achieve non-reciprocity. This circulator also utilizes on-chip quadrature clock signals generated by a rotary traveling-wave oscillator, so it is featured with low-cost and highly integrated. Implemented 130 nm CMOS standard process, the 9 GHz Circulator achieves antenna (ANT) -to-receiver (RX) and transmitter (TX)-to-ANT insertion losses of −3.9 dB and −2.5 dB, respectively, with TX-to-RX isolation of 13.4-18.1 dB. This chip occupies a core area of 1.68 mm2, while the core power consumption is 38.6 mW with a supply of 1.2 V.
机译:这封信中介绍了一个全集成的非磁无源循环器,用于全双工无线通信应用程序。 所提出的设计基于时空电导率调制来实现非互动性。 该循环器还利用旋转行程波振荡器产生的片上正交时钟信号,因此它具有低成本和高度集成的。 实现了130nm CMOS标准过程,9 GHz循环器分别实现了天线(ANT)-To接收器(RX)和发射器(TX)-TO-Ant插入损耗 - 3.9 dB和-2.5 dB,具有Tx-to- RX隔离为13.4-18.1 dB。 该芯片占核心面积为1.68毫米 2 ,虽然核心功耗为38.6兆瓦,供应1.2 V.

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