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Frequency-dependent harmonic-distortion analysis of a linearized cross-coupled CMOS OTA and its application to OTA-C filters

机译:线性交叉耦合CMOS OTA的频率相关谐波失真分析及其在OTA-C滤波器中的应用

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Recent progress of wide-band communication systems demands high-frequency circuits. Conventionally, the linearity of the operational transconductance amplifier and capacitor (OTA-C) has been analyzed using Taylor series expansion. Unfortunately, this approach does not predict the frequency-dependent linearity degradation. Thus, to properly design linearized OTAs, the frequency dependence of these coefficients must be determined. In this paper, we present a frequency-dependent harmonic-distortion analytical method applied to a linear-enhanced OTA. This OTA, which is suitable for high-frequency operation, uses three linearization techniques simultaneously: 1) attenuation through floating-gate MOS transistors; 2) source degeneration; and 3) polynomial cancellation techniques. By using the harmonic-distortion analysis, some properties on the performance of OTA are used to improve the performance of OTA-C based circuits at high frequencies. A 0.5-mum CMOS OTA simulation and experimental results are shown to verify the harmonic-distortion analytical method
机译:宽带通信系统的最新进展需要高频电路。常规上,已经使用泰勒级数展开来分析运算跨导放大器和电容器(OTA-C)的线性。不幸的是,这种方法不能预测与频率有关的线性度下降。因此,为了正确设计线性化的OTA,必须确定这些系数的频率依赖性。在本文中,我们提出了一种应用于线性增强型OTA的频率相关谐波失真分析方法。该OTA适用于高频操作,同时使用三种线性化技术:1)通过浮栅MOS晶体管的衰减; 2)源变性; 3)多项式抵消技术。通过使用谐波失真分析,可以使用OTA性能的某些属性来提高基于OTA-C的电路在高频下的性能。给出了0.5μmCMOS OTA仿真和实验结果,验证了谐波失真分析方法

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