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A design method for active high-CMRR fully-differential circuits

机译:有源高共模抑制比全差分电路的设计方法

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摘要

A simple method for designing instrumentation fully-differential (FD) circuits based on standard single-ended (SE) operational amplifiers (OAs) is presented. It departs from a SE prototype that verifies the desired differential-mode transfer function, thereby leading to FD versions of the circuit. These circuits have a high common mode rejection ratio (CMRR), independent of component imbalances, and a unity common-mode gain. The proposed method does not allow the design of common-mode response, but it does verify common-mode stability, thus ensuring stable FD circuits. It is intended for instrumentation applications in which high CMRRs are required. The proposed approach makes it possible to design and implement inverter and non-inverter topologies as well. Design examples and experimental data are presented. Using general-purpose OAs and 5%-tolerance components, the CMRR of these circuits easily exceeds 90 to 100 dB.
机译:提出了一种基于标准单端(SE)运算放大器(OAs)设计仪器全差分(FD)电路的简单方法。它与SE原型不同,后者验证所需的差模传递函数,从而导致电路的FD版本。这些电路具有高共模抑制比(CMRR),与组件不平衡无关,并且具有统一的共模增益。所提出的方法不允许设计共模响应,但是可以验证共模稳定性,从而确保稳定的FD电路。它适用于需要高CMRR的仪器应用。所提出的方法使得设计和实现逆变器和非逆变器拓扑成为可能。给出了设计实例和实验数据。使用通用OA和容差为5%的组件,这些电路的CMRR很容易超过90至100 dB。

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