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Effects of the nonlinearity of the common-gate stage on the linearity of CMOS cascode low noise amplifier

机译:公共栅极阶段非线性对CMOS Cascode低噪声放大器线性度的影响

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This work presents the effects of the common-gate (CG) stage nonlinearity on the linearity of the cascode amplifier. Conventionally, the CG stage is assumed as an ideal current buffer in the CMOS cascode low noise amplifier (LNA) design, but the analysis shows that the CG stage limits the linearity of the cascode LNA as the gain increases, due to the finite output resistance of the CG stage and the parasitic capacitance at the interstage node. Therefore, the simple linearization of the CS stage has difficulties to enhance the gain of LNA as the operating frequency increases. To confirm the analysis, a 2 GHz CMOS LNA was designed and the gain and the nonlinearity were measured. The measurement results show that there exists optimum load impedance to achieve the maximum OIP3 of the LNA as expected by the analysis.
机译:该工作介绍了公共栅极(CG)阶段非线性对Cascode放大器线性度的影响。 传统上,CG阶段被认为是CMOS Cascode低噪声放大器(LNA)设计中的理想电流缓冲器,但是分析表明CG阶段由于增益增加而限制了Cascode LNA的线性,因此由于有限的输出电阻而增加。 CG阶段和壁间节点的寄生电容。 因此,随着工作频率的增加,CS阶段的简单线性化具有增强LNA的增益。 为了确认分析,设计了2GHz CMOS LNA,并测量增益和非线性。 测量结果表明,通过分析所预期的预期实现LNA的最大OIP 的最佳负载阻抗。

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