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A 124 to 132.5 GHz frequency quadrupler with 4.4 dBm output power in 0.13μm SiGe BiCMOS

机译:一个124到132.5 GHz频率四分夹,在0.13μmsige bicmos中具有4.4 dBm输出功率

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In this paper, a 124-132.5 GHz frequency quadrupler using inter coupling superposition (ICS) technique is presented. A phase shifting buffer based on distributed structure is designed to switch on and off the quadrupler cells orthogonally; with the concept of inter cell coupling, each quadrupler cell generates "W" shape signal during `ON' state and behaves as negative impedance to provide extra signal power to the output port when it is in `OFF' state. The outputs of the four quadrupler cells are finally added to be in phase. Through the above output power enhancement techniques, a 4.4 dBm maximum output power at 130 GHz is achieved, with power efficiency of 10.6/2.4% (without/with buffers). The 0.13μm SiGe BiCMOS process is used to fabricate the design and the quadrupler core and the buffers consume 26mW and 89mW of DC power, respectively.
机译:本文介绍了使用Inter耦合叠加(ICS)技术的124-132.5 GHz频率四分单。基于分布式结构的相移缓冲器设计为正交地开启和关闭四分波单元;利用帧间电池耦合的概念,每个四分比单元在`ON'状态期间产生“W”形状信号,并表现为负阻抗,以在“关闭”状态时向输出端口提供额外的信号电源。最终添加四个四分板单元的输出以相位。通过上述输出功率增强技术,实现了4.4dBm的最大输出功率为130GHz,功率效率为10.6 / 2.4%(没有/带缓冲液)。 0.13μmSiGeBICMOS工艺用于制造设计和四芯芯,缓冲器分别消耗26mW和89MW的直流电源。

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