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Local Biasing and the Use of Nullator-Norator Pairs in Analog Circuits Designs

机译:在模拟电路设计中的局部偏置和零零-负数对的使用

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摘要

A new technique is presented for biasing of analog circuits. The biasing design begins with local biasing of the nonlinear components (transistors), done according to the pre-specified operating points (OPs) and for the best performance of the circuit. Next, the transistors are replaced with their linear models to perform the AC design. Upon finishing with the AC design we need to move from the local biasing to global (normal) biasing while the OPs are kept unchanged. Here fixators - nullators plus sources - are shown to be very instrumental and with norators - as the place holders for the DC supplies in the circuit - they make pairs. The solution of the circuit so prepared provides the DC supplies at the designated locations in the circuit. The rules to engage in circuit analysis with fixator-norator pairs are discussed, and numerous pitfalls in this line are specified. Finally, two design examples are worked out that clearly demonstrate the capability and power of the proposed technique for biasing any analog circuit.
机译:提出了一种用于偏置模拟电路的新技术。偏置设计始于对非线性元件(晶体管)进行局部偏置,并根据预先指定的工作点(OP)进行操作,以实现电路的最佳性能。接下来,将晶体管替换为其线性模型以执行AC设计。完成AC设计后,我们需要从局部偏置转换为全局(正常)偏置,同时保持OP不变。在这里,固定器-消除器和信号源-发挥了很大的作用,并带有标准化器-作为电路中直流电源的占位符-它们成对出现。如此准备的电路解决方案在电路中的指定位置提供了直流电源。讨论了使用定色剂-配色剂对进行电路分析的规则,并指定了此行中的许多陷阱。最后,设计出两个设计实例,清楚地证明了所提出技术对任何模拟电路偏置的能力和能力。

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