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AC Coupled Instrumentation Amplifier with Gyrators

机译:带陀螺仪的交流耦合仪表放大器

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This paper investigates a method of excluding the input decoupling capacitors in an AC coupled instrumentation amplifier. The idea behind this paper is focusing mainly on reducing the silicon area when designing such amplifiers or the number of needed external components. Especially when the design requirements are pointed to low frequency operation but keeping AC coupling in the same time, the reactive components values may noticeably increase. As long as the GIC, Generalized Impedance Circuits, more specific the gyrators, are able to replace the capacitive and inductive behavior, they represent a good reason to study their applicability within instrumentation amplifiers. The gyrators are built around operational amplifiers so there will be a tradeoff between complexity in terms of transistor number and saved space by eliminating the capacitors at the input. The concept has been designed and validated based on simulation results using LtSpice.
机译:本文研究了一种在交流耦合仪表放大器中排除输入去耦电容器的方法。本文背后的思想主要集中在设计此类放大器时减少硅面积或所需的外部组件数量。特别是当设计要求针对低频操作但同时保持交流耦合时,电抗组件值可能会明显增加。只要GIC(广义阻抗电路)(更具体的回转器)能够代替电容性和电感性行为,它们就成为研究其在仪表放大器中的适用性的充分理由。回转器围绕运算放大器构建,因此通过消除输入端的电容器,可以在晶体管数量和节省空间之间进行权衡。该概念已根据使用LtSpice的仿真结果进行了设计和验证。

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