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Design of an integrated low power high CMRR instrumentation amplifier for biomedical applications

机译:面向生物医学应用的集成式低功耗高CMRR仪表放大器的设计

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The objective of this paper is to discuss the advantages and drawbacks of using Trapezoidal Association of Transistors (TAT) in the implementation of a low-power high-CMRR CMOS instrumentation amplifier (IA) aimed for biomedical applications. IAs are well suited for biomedical applications due to its high CMRR. For the sake of comparison, two versions of the circuit were designed, prototyped and characterized. The performance of a version with its current mirrors implemented with TAT, where supposedly higher CMRR could be achievable, is compared to another with single-transistor implementation of current mirrors in order to analyze the CMRR performance. The IA circuit was designed in AMIS 1.5 μm technology and manufactured through the MOSIS Service. In addition to the better performance attained by the classic implementation of the amplifier, with CMRR higher than 120 dB, this version of the IA consumed less than one third of the area from the TAT version. Comparison of both versions from same topology indicates no advantages of using TATs in the current mirrors of this type of IA.
机译:本文的目的是讨论使用梯形晶体管协会(TAT)在针对生物医学应用的低功率高CMRR CMOS仪表放大器(IA)的实现中的优缺点。 IA具有很高的CMRR,因此非常适合生物医学应用。为了进行比较,设计,原型化和表征了两种电路版本。为了分析CMRR性能,将使用TAT实现其当前镜像的版本的性能(据称可以实现更高的CMRR)与使用当前镜像的单晶体管实现的另一版本的性能进行比较。 IA电路采用AMIS 1.5μm技术设计,并通过MOSIS Service制造。除了通过经典的放大器实现更好的性能(CMRR高于120 dB)之外,此版本的IA消耗的面积还不到TAT版本的三分之一。比较来自相同拓扑的两个版本表明,在此类IA的当前镜像中使用TAT没有优势。

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