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A Compact SPICE Model for Carbon-Nanotube Field-Effect Transistors Including Nonidealities and Its Application—Part I: Model of the Intrinsic Channel Region

机译:包含非理想性的碳纳米管场效应晶体管的紧凑SPICE模型及其应用-第一部分:固有沟道区模型

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This paper presents a circuit-compatible compact model for the intrinsic channel region of the MOSFET-like single-walled carbon-nanotube field-effect transistors (CNFETs). This model is valid for CNFET with a wide range of chiralities and diameters and for CNFET with either metallic or semiconducting carbon-nanotube (CNT) conducting channel. The modeled nonidealities include the quantum confinement effects on both circumferential and axial directions, the acoustical/optical phonon scattering in the channel region, and the screening effect by the parallel CNTs for CNFET with multiple CNTs. In order to be compatible with both large-(digital) and small-signal (analog) applications, a complete transcapacitance network is implemented to deliver the real-time dynamic response. This model is implemented with an HSPICE. Using this model, we project a 13 times CV/I improvement of the intrinsic CNFET with (19, 0) CNT over the bulk n-type MOSFET at the 32-nm node. The model described in this paper serves as a starting point toward the complete CNFET-device model incorporating the additional device/circuit-level non-idealities and multiple CNTs reported in the paper of Deng and Wong.
机译:本文为MOSFET类单壁碳纳米管场效应晶体管(CNFET)的本征沟道区域提供了电路兼容的紧凑模型。此模型适用于具有多种手性和直径的CNFET,以及具有金属或半导体碳纳米管(CNT)导电通道的CNFET。建模的非理想性包括在周向和轴向方向上的量子限制效应,在沟道区域中的声/光子声子散射以及平行CNT对具有多个CNT的CNFET的屏蔽效应。为了与大(数字)和小信号(模拟)应用程序兼容,实施了完整的跨电容网络来交付实时动态响应。该模型是通过HSPICE实现的。使用该模型,我们预计在32-nm节点处,具有(19,0)CNT的本征CNFET的CV / I改善将比体n型MOSFET改善13倍。本文中描述的模型是通向完整的CNFET器件模型的起点,该模型包含Deng和Wong论文中报道的其他器件/电路级非理想性和多个CNT。

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