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Evaluation of Negative Capacitance Ferroelectric MOSFET for Analog Circuit Applications

机译:评估模拟电路应用中的负电容铁电MOSFET

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摘要

Negative capacitance ferroelectric (FE) field-effect transistor (FeFET) is promising to address the issue of the increasing power density in digital circuit by realizing sub-60 mV/decade subthreshold swing. This inspires us to evaluate its applications in analog circuit. In this paper, the evaluation is performed based on the equivalent circuit model and through device- and circuit-level benchmarking against MOSFET counterpart. It is found that the selection of FE thickness is important to balance current amplification and saturated output characteristics. As compared with MOSFET, FeFET exhibits a larger current, transconductance, and current-to-transconductance generation efficiency. Its output resistance is smaller in the linear region and larger in the saturation region. It also has less variation in threshold voltage with temperature. When implementing FeFETs into various analog circuit applications, we find that a node capacitor could be discharged within shorter time to increase circuit speed; A better analog switch consisting of complementary FeFETs exhibits a lower and more linear on-resistance; Differential amplifier provides larger voltage amplification to small input signal; Current mirror transfers a more precise output current to the reference one.
机译:负电容铁电(FE)场效应晶体管(FeFET)有望通过实现低于60 mV /十年的亚阈值摆幅来解决数字电路中功率密度增加的问题。这激励我们评估其在模拟电路中的应用。在本文中,评估是基于等效电路模型以及针对MOSFET的器件和电路级基准进行的。发现FE厚度的选择对于平衡电流放大和饱和输出特性很重要。与MOSFET相比,FeFET具有更大的电流,跨导和电流至跨导的产生效率。其输出电阻在线性区域较小,而在饱和区域较大。阈值电压随温度的变化也较小。当在各种模拟电路应用中实现FeFET时,我们发现节点电容器可以在更短的时间内放电以提高电路速度。由互补的FeFET组成的更好的模拟开关表现出更低的线性通态电阻;差分放大器为较小的输入信号提供更大的电压放大;电流镜将更精确的输出电流传输到参考电流。

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