High CMRR and wideband current-mode instrumentation amplifier using fully differential operational floating conveyor

Hossam ElGemmazy, A. Helmy, H. Mostafa, Y. Ismail
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引用次数: 1

Abstract

This paper presents a current-mode instrumentation amplifier (CMIA) based on the fully differential operational floating conveyor (FD-OFC). The FD-OFC, as a novel general purpose building block introduced by the authors, has the advantages of fully differential signal processing like higher design flexibility and higher noise rejection. The proposed CMIA provides wide bandwidth reaches 975 MHz and high CMRR exceeds 240 dB. The simplicity of the design is one of its advantages where only one FD-OFC is required and it can operate under biasing condition as low as 1.2 Volt. The operating conditions recommend the proposed CMIA to be integrated to wide range of low power high speed application, particularly when a high CMRR is required. The terminal behavior of the proposed design is mathematically modeled and its operation is simulated using the UMC 130 nm technology kit in Cadence environment.
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采用全差动浮动输送机的高CMRR和宽带电流模式仪表放大器
提出了一种基于全差动式浮动输送机的电流型仪表放大器(CMIA)。FD-OFC作为一种新型的通用模块,具有设计灵活性高、抗噪能力强等全差分信号处理的优点。该CMIA具有975 MHz的宽带带宽和超过240 dB的高CMRR。设计简单是其优点之一,只需要一个FD-OFC,它可以在低至1.2伏的偏置条件下工作。运行条件建议将拟议的CMIA集成到大范围的低功率高速应用中,特别是当需要高CMRR时。利用UMC 130nm技术套件在Cadence环境下对该设计的终端行为进行了数学建模,并对其运行进行了仿真。
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