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CMOS Ring Oscillators Based on Doping-Modified Nanowire FETs: a Novel Design Strategy

机译:基于掺杂修饰纳米线场效应管的CMOS环形振荡器:一种新的设计策略

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Abstract We present a new Step Doped Drain and Source Nanowire FET (NWFET) using doping profile engineering to modify the energy band diagram. This transistor exhibits improved electrical characteristics suitable for digital design applications, such as the decreased off-current and subthreshold swing and the increased on–off current ratio. We also present the design of a CMOS inverter based on the proposed SDDS-NWFET. The voltage transfer characteristic (VTC) of the inverter exhibits higher noise margins compared to the inverter using traditional NWFET. All the delay parameters of the SDDS-NWFET-based inverter have higher values, which can be varied by changing the step doping concentration, NSD. Consequently, this inverter provides flexibility in the design of ring oscillators for a wide range of oscillation frequencies. We present simulation results to demonstrate the variation of the propagation delay of SDDS-NWFET-based CMOS inverter and the oscillation frequency of CMOS ring oscillator by changing NSD. Mathematical functions for the average propagation delay and fosc versus NSD are proposed. The instantaneous current and power as well as the average DC supply power are calculated to demonstrate the dependency of the power consumption of the proposed Nanowire device-based oscillator on the varying NSD.
机译:摘要 提出了一种新的阶跃掺杂漏源纳米线场效应晶体管(NWFET),采用掺杂曲线工程对能带图进行修正。该晶体管具有适用于数字设计应用的改进电气特性,例如减小关断电流和亚阈值摆幅以及增加通断电流比。我们还介绍了基于SDDS-NWFET的CMOS逆变器设计。与使用传统NWFET的逆变器相比,逆变器的电压传输特性(VTC)表现出更高的噪声容限。基于SDDS-NWFET的逆变器的所有延迟参数都具有更高的值,可以通过改变阶跃掺杂浓度NSD来改变。因此,该逆变器为宽范围振荡频率的环形振荡器设计提供了灵活性。仿真结果验证了基于SDDS-NWFET的CMOS逆变器的传播延迟和CMOS环形振荡器通过改变NSD的变化而变化的振荡频率。提出了平均传播延迟和fosc与NSD的数学函数。计算瞬时电流和功率以及平均直流电源功率,以证明所提出的基于Nanowire器件的振荡器的功耗对变化NSD的依赖性。

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