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Steep Subthreshold Slope n- and p-Type Tunnel-FET Devices for Low-Power and Energy-Efficient Digital Circuits

机译:用于低功耗和节能数字电路的陡峭亚阈值斜率n型和p型隧道FET器件

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摘要

In this paper, novel n- and p-type tunnel field-effect transistors (T-FETs) based on heterostructure Si/intrinsic–SiGe channel layer are proposed, which exhibit very small subthreshold swings, as well as low threshold voltages. The design parameters for improvement of the characteristics of the devices are studied and optimized based on the theoretical principles and simulation results. The proposed devices are designed to have extremely low off currents on the order of 1 $hbox{fA}!/!muhbox{m}$ and engineered to exhibit substantially higher on currents compared with previously reported T-FET devices. Subthreshold swings as low as 15 mV/dec and threshold voltages as low as 0.13 V are achieved in these devices. Moreover, the T-FETs are designed to exhibit input and output characteristics compatible with CMOS-type digital-circuit applications. Using the proposed n- and p-type devices, the implementation of an inverter circuit based on T-FETs is reported. The performance of the T-FET-based inverter is compared with the 65-nm low-power CMOS-based inverter, and a gain of $sim!!hbox{10}^{4}$ is achieved in static power consumption for the T-FET-based inverter with smaller gate delay.
机译:在本文中,提出了基于异质结构Si /本征-SiGe沟道层的新型n型和p型隧道场效应晶体管(T-FET),该晶体管具有很小的亚阈值摆幅以及低阈值电压。根据理论原理和仿真结果,研究和优化了用于改善器件特性的设计参数。所提出的器件被设计成具有极低的截止电流,约为1 $ hbox {fA}!/!muhbox {m} $,并且设计成与先前报道的T-FET器件相比,具有更高的导通电流。在这些器件中,亚阈值摆幅低至15 mV / dec,阈值电压低至0.13V。此外,T-FET设计为具有与CMOS型数字电路应用兼容的输入和输出特性。使用提出的n型和p型器件,报告了基于T-FET的逆变器电路的实现。将基于T-FET的逆变器的性能与基于65nm低功耗CMOS的逆变器进行了比较,从而在静态功耗方面实现了$ sim !! hbox {10} ^ {4} $的增益。基于T-FET的逆变器具有较小的栅极延迟。

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