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Systematic design of companding systems by component substitution

机译:通过组件替换进行压扩系统的系统设计

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摘要

A design method for externally linear, internally nonlinear systems is presented which allows them to be derived from externally equivalent systems in a systematic way and with a minimum synthesis effort, just performing a simple component-to-component substitution. As a particular case, the synthesis of the most popular versions of voltage companding systems from externally equivalent Gm-C systems is addressed. The practical design of companding systems based on the MOS square law (Square-Root Domain systems) is fully illustrated along the complete design flow, from the Gm-C prototype to silicon. These systems, feasible in CMOS technologies and formerly difficult to obtain due to the inherent complexity of existing synthesis methods, particularly benefit from the simplicity of the proposed approach. Experimental results for two versions of tunable Square-Root Domain biquadratic filters and oscillators thus obtained and fabricated in a 2.4-μm CMOS process are presented, featuring favorable tunability and low THD.
机译:提出了一种用于外部线性,内部非线性系统的设计方法,该方法允许它们以系统化的方式从外部等效系统中导出,并且只需进行简单的组件间替换,而只需花费最少的合成工作。作为一个特殊情况,解决了从外部等效的Gm-C系统中合成最流行的压扩系统版本。从Gm-C原型到芯片,整个设计流程都充分说明了基于MOS平方律的压扩系统的实际设计(平方根域系统)。这些系统在CMOS技术中是可行的,并且由于现有合成方法的内在复杂性而以前很难获得,特别是受益于所提出方法的简单性。给出了在2.4μmCMOS工艺中获得并制造的两种版本的可调平方根域双二次滤波器和振荡器的实验结果,具有良好的可调性和低THD。

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