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A 21.6-30.3 GHz injection-locked frequency tripler with Darlington injection for 5G communication systems

机译:A 21.6-30.3 GHz注射锁定频率三倍,可用于5G通信系统的达林顿注射

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摘要

This paper proposes an injection locked frequency tripler which can cover 27 GHz frequency band of the fifth generation communication. By adopting the Darlington cell as injectors, the injection current is improved greatly and thus obtains a wide locking range. In addition, an inductive peaking technique is proposed to enhance the fundamental rejection and further improve the locking range. Implemented in 0.13 mu m Complementary Metal Oxide Semiconductor (CMOS) technology, the post-layout simulation in collaboration with electromagnetic simulation is used to validate the proposed injection locked frequency tripler. The Precess Voltage Temperature (PVT) and Monte Carlo analysis are also performed to check the robustness of the circuit. At 0 dBm injection power, the injection locked frequency triple displays a 33.5% locking range and larger than 27 dB fundamental rejection, while consumes 8.3 mW from 1.2 V supply voltage. The core area is 0.56 x 0.23 mm(2).
机译:本文提出了一种注射锁定频率三倍,可以覆盖第五代通信的27 GHz频带。通过采用达林顿电池作为喷射器,喷射电流大大提高,从而获得宽锁定范围。此外,提出了一种感应峰值技术,以增强基本排斥并进一步改善锁定范围。在0.13μm互补金属氧化物半导体(CMOS)技术中实现,与电磁仿真合作的布局后仿真用于验证所提出的注射锁定频率三倍。还执行了精力电压温度(PVT)和蒙特卡罗分析以检查电路的鲁棒性。在0 dBm喷射功率下,喷射锁定频率三重射频显示33.5%锁定范围,大于27 dB的基础抑制,而从1.2 V电源电压消耗8.3兆瓦。芯面积为0.56×0.23mm(2)。

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