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Design and Implementation of a 1-V Dual-Transformer-Feedback LNA and a 5-GHz-Band Transformer-Feedback VCO

机译:1 V双变压器反馈LNA的设计与实现和5 GHz波段变压器 - 反馈VCO

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In this paper, a dual-transformer-feedback LNA architecture is proposed. One of the transformer-feedback is for reducing the supply voltage, the other is for improving the linearity of the LNA. A 1-V fully integrated dual-transformer-feedback LNA was implemented in standard 0.18μm CMOS process to demonstrate the idea. The LNA exhibits voltage gain of 11.5 dB, input return loss (S{sub}11) of -11 dB, reverse isolation (S{sub}12) of -29.9 dB, NF of 2.65 dB, and IIP3 of 7 dBm at 2.4 GHz. The chip area is only 0.28 mm{sup}2, excluding the test pads. This LNA drains 15.3 mA current at supply voltage of 1 V, i.e. it consumes 15.3 mW power. Besides, a 1.2 V 5-GHz band transformer-feedback VCO was also implemented. The VCO exhibits tuning range of 165 MHz (5.449 - 5.614 GHz for V{sub}(tune) = 0-0.7 V), phase noise of -97 dBc/Hz at 1 MHz offset from 5.6 GHz. The chip area is only 0.525 mm{sup}2, excluding the test pads. The VCO consumes 8.82 mW power.
机译:本文提出了一种双变压器反馈LNA架构。其中一个变压器 - 反馈用于降低电源电压,另一个用于改善LNA的线性度。在标准0.18μmCMOS过程中实施了1V全集成的双变压器反馈LNA,以展示该想法。 LNA表现出11.5dB的电压增益,-11dB的输入返回损耗(S {sub} 11),-29.9 dB,NF为2.65 dB的反向隔离(S {Sub} 12),以及7 dBm的IIP3为2.4 GHz。芯片面积仅为0.28毫米{SUP} 2,不包括测试垫。该LNA在电源电压为1V时介绍15.3 mA电流,即它消耗15.3 MW功率。此外,还实施了1.2 V 5-GHz频带变压器 - 反馈VCO。 VCO展示了165 MHz的调谐范围(5.449 - 5.614 GHz for V {sub}(tune)= 0-0.7 v),从5.6 GHz的1 MHz偏移量的相位噪声。芯片面积仅为0.525 mm {sup} 2,不包括测试垫。 VCO消耗了8.82兆瓦的力量。

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